EMSCOPE, 9kHz - 110MHz, 2 channel Receiver/LISN
EMI Measu... Read More
EMI Measu... Read More
EMI Measu... Read More
EMI Measu... Read More
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Protocol r... Read More
BOLAB´s new... Read More
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AN-Series is an a... Read More
AN-Series is an a... Read More
Axos 5 - ... Read More
Axos ... Read More
The Schwazbeck Bi... Read More
Audio Transformer... Read More
The EMC test syst... Read More
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" A Probe Kit on ... Read More
Capability... Read More
Cap... Read More
Capability... Read More
The EPS Test Tabl... Read More
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By Frequency Rang... Read More
The fiber connect... Read More
LSPM 1.0 Triple H... Read More
LSPM 1.1 Laser Po... Read More
LSPM 2.0 Triple H... Read More
LSPM 2.1 Laser Po... Read More
The LSProbe 1.2 V... Read More
The LSProbe 2.0 F... Read More
MAG 1000 ... Read More
Onyx 16... Read More
Onyx ... Read More
opto, Fiber-optic, A... Read More
PEFT 8010... Read More
PSURGE 30... Read More
Frequency ... Read More
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The Absolute Coax... Read More
The Absolute ... Read More
Quick find... Read More
The broadband hor... Read More
The broadband hor... Read More
Coupling Network... Read More
Coupling Network... Read More
CABCISPR2515A... Read More
CABCISPR2532A... Read More
The CAR-PFS-80 is... Read More
Compact EMC test ... Read More
Modular co... Read More
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High-Frequency T... Read More
Low-Frequency Tr... Read More
Capacitor Cx, sta... Read More
The dAV series inclu... Read More
Discontin... Read More
The dAV-Cr-HD-30-... Read More
The dAV-Cr-HD-mini c... Read More
The extra small came... Read More
Emergency stop switc... Read More
The EPS Test Tabl... Read More
Ac... Read More
Ac... Read More
FP-COMB 32... Read More
FP-COMB 63/690-1... Read More
Helmholtz C... Read More
Full compl... Read More
Full compl... Read More
The oscillatory wave... Read More
The oscillatory w... Read More
The oscillatory w... Read More
The oscillatory w... Read More
The LSProbe 1.2 V... Read More
The LSProbe 1.2 V... Read More
LVDS (Low-voltage di... Read More
The MF EASY is a ... Read More
The compact magne... Read More
The infrared camera ... Read More
The optoCAN-FD syste... Read More
The optoCAN-HS syste... Read More
The optoCAN-LS syste... Read More
The optoCAN-SW syste... Read More
This optical devi... Read More
The optoL... Read More
The Marvell® 88Q101... Read More
The Marvell® 88Q211... Read More
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The optoLAN-TJA1100-... Read More
The optoLIN system c... Read More
For EMC tests acc... Read More
Precision Loop Anten... Read More
The PLA set consi... Read More
The Precision Omn... Read More
The STLP 9129 Spe... Read More
External partial dis... Read More
The Analog transm... Read More
Vertikal A... Read More
Linear polarized Log... Read More
Warning / signal lam... Read More
The Wood Test Tab... Read More
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The broadband ho... Read More
Broad-Band Horn A... Read More
The Burst Calibra... Read More
Battery si... Read More
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The coupling clamp C... Read More
The CWG-CE5 is a ... Read More
The Combination Wave... Read More
Matched test clam... Read More
The Conformity As... Read More
The Conformity As... Read More
The Conformity As... Read More
DGA 9552 N is a b... Read More
DGA 9553 BNC... Read More
The Capacitive Coupl... Read More
The EFTC-CK is a cal... Read More
The Electrical Fa... Read More
EMC SHAC-200,&nbs... Read More
The ESD Test Tabl... Read More
Static Dissipatio... Read More
Footswitch to trigge... Read More
Full compl... Read More
Full compl... Read More
The circul... Read More
The Schwarzbeck l... Read More
The external impe... Read More
Absolute EMC offe... Read More
IPG 612T RING-WAVE G... Read More
LSFrame is LUMILO... Read More
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Acc. to CI... Read More
Low cost 2... Read More
opto1394 This sys... Read More
This system is used ... Read More
The optoK system can... Read More
The optoSENT system ... Read More
The optoSENT system ... Read More
The optoSPI-HS syste... Read More
ptoTTL 5-3-u is u... Read More
The optoUART... Read More
The optoUSB-2.0-R... Read More
The optoUSB-2.0 s... Read More
Highly Accurate A... Read More
The Power Fail Si... Read More
Power supply to e... Read More
Power supply to e... Read More
Power supply to e... Read More
An electromagneti... Read More
Any shielded room... Read More
Small bico... Read More
The Surge Calibra... Read More
The Surge Calibra... Read More
GTEMCELL Ltda shi... Read More
Gtemcell develops... Read More
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Linear polarized ... Read More
The STLP 9129 was... Read More
Stacked Logarithm... Read More
Linear polarized ... Read More
U-DC... Read More
These measuring s... Read More
These measuring s... Read More
These measuring s... Read More
VHBB 9124 ... Read More
VHBD 9133 ... Read More
VHBD 9134a... Read More
Motor-driven variabl... Read More
VRC ... Read More
The magnetic fixt... Read More
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In this section, you... Read More
High input... Read More
The double telesc... Read More
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The broadband hor... Read More
Booster co... Read More
This power supply ca... Read More
This system is used ... Read More
This system is used ... Read More
This system is used ... Read More
This system is used ... Read More
0.5 Ohm 1% Shunt ... Read More
1.0 Ohm 1% S... Read More
Simulator ... Read More
The CAR arbitrary... Read More
The CAR arbitrary... Read More
The CAR arbitrary... Read More
... Read More
Coupling b... Read More
According ... Read More
CAR LD-PS include... Read More
Low induct... Read More
The Capacitor Calibr... Read More
The capacitive Co... Read More
The capacitive Co... Read More
The capacitive Co... Read More
The capacitive Co... Read More
for testin... Read More
for testin... Read More
Common-Mod... Read More
Quad view system to ... Read More
The dAV receivers... Read More
The Conformity As... Read More
The original EMC ... Read More
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The original ... Read More
The original ... Read More
The original ... Read More
The original ... Read More
The original EMC&... Read More
10 kHz -&n... Read More
10 kHz -&n... Read More
20 MHz -&n... Read More
Magnetic, ... Read More
Magnetic, ... Read More
Magnetic, ... Read More
Magnetic, ... Read More
Magnetic, ... Read More
After furt... Read More
Nearfield Probe S... Read More
The GTEMCELL GTEM... Read More
Model GTEMCELL GT... Read More
The GTEMCELL GTEM 40... Read More
GTEM-500 F made w... Read More
The GTEMCELL GTEM... Read More
The surge current te... Read More
The recorder serves ... Read More
Full compl... Read More
HFBA 9122 ... Read More
High-Voltage DC Test... Read More
The High-Voltage ... Read More
High-Voltage Puls... Read More
The HV - Impulse ... Read More
The High-Voltage ... Read More
HV - Impulse generat... Read More
The Loop Antenna ... Read More
EMI Absorb... Read More
Multichannel charger... Read More
Measuremen... Read More
Measuremen... Read More
Measuremen... Read More
Measuremen... Read More
Acc. to CI... Read More
Acc. to CI... Read More
Acc. to CI... Read More
Measuremen... Read More
Measuremen... Read More
High Curre... Read More
2 path&nbs... Read More
T-ISN 150 ... Read More
Impedance ... Read More
The optoA2B can b... Read More
The optoR... Read More
The optoRS422 sys... Read More
The optoRS485 sys... Read More
The optoTTL 12-5-... Read More
The optoTTL b-12 ... Read More
The optoUSB-3.0 s... Read More
Highly Accurate R... Read More
The high-voltage imp... Read More
High-Voltage Puls... Read More
The high-voltage imp... Read More
The high-voltage imp... Read More
The high-voltage pul... Read More
Highly accurate refe... Read More
With the help of the... Read More
High-voltage pulse g... Read More
Adapter fo... Read More
STLP 9128 E - Sta... Read More
The STLP 9128 E s... Read More
The SteppIR SY3-E... Read More
TEM-6000 STRIPLIN... Read More
These measuring s... Read More
These measuring s... Read More
VHA 9... Read More
VHBB 9123 ... Read More
VHBD 9134-... Read More
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Mast Adapter for ... Read More
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The alternating volt... Read More
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The Antenna Mast ... Read More
The Antenna Mast ... Read More
The Antenna Mast ... Read More
APL-100kg - 3 Axi... Read More
APTL & EAP An... Read More
APTL-50kg - 4 Axi... Read More
Connector ... Read More
ASP 1.0/1.8-10 kg... Read More
The Boresight Ant... Read More
The Boresight Ant... Read More
BAN broadb... Read More
The broadband hor... Read More
The broadband hor... Read More
The Bavarian Engi... Read More
The Bavarian Engi... Read More
The Conformity As... Read More
Calibratio... Read More
The Compact Anten... Read More
The Compact Anten... Read More
The Compact Anten... Read More
Impedance ... Read More
Impedance ... Read More
Designed for appl... Read More
Designed for appl... Read More
The capacitive Co... Read More
The capacitive Co... Read More
The Coupling- / D... Read More
The Coupling- / D... Read More
The Coupling- / D... Read More
The Coupling / De... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Fr... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
Frequency ... Read More
CGR 5.4 Cable Gui... Read More
The measurement m... Read More
The CNA280 meets ... Read More
Galvanical... Read More
Current-viewing-resi... Read More
WSM-type AC/DC curre... Read More
Calibratio... Read More
The Dual Antenna ... Read More
The Dual Antenna ... Read More
The Antenna Mast ... Read More
Double Transverse... Read More
Double Transverse... Read More
DYN 4WD - I Dynam... Read More
DYN 8WD I-30... Read More
Dynamometer for E... Read More
EAP - 15kg Electr... Read More
EAS 1.0/2.0 Elect... Read More
EAS 1.5 10kg Elec... Read More
EAS 1.5 Electric ... Read More
EAS 365-15kg Elec... Read More
ECAT Lightning Te... Read More
10 kHz -&n... Read More
10 kHz -&n... Read More
30 MH... Read More
30 MH... Read More
0.1 - 26.5... Read More
10 MHz - 6... Read More
30 MHz - 6... Read More
500 MHz - ... Read More
500 MHz - ... Read More
1-18GHz Fr... Read More
1-18GHz Fr... Read More
1 - 2... Read More
1 - 2... Read More
1 - 6... Read More
Replaceme... Read More
18 - 40 GH... Read More
18 - 40 GH... Read More
9 kHz... Read More
9 kHz... Read More
F-DYN 4WD –... Read More
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FPP2.3 Manual Fie... Read More
FPP2.3/1.5 Field ... Read More
F-DYN 4WD –... Read More
The GTEMCELL GTEM... Read More
The GTEMCELL GTEM... Read More
The GTEMCELL GTEM... Read More
The GTEMCELL GTEM... Read More
The GTEMCELL GTEM... Read More
Pyramidal standar... Read More
Pyramidal standar... Read More
Pyramidal standar... Read More
Pyramidal standar... Read More
Pyramidal standar... Read More
Pyramidal standar... Read More
Full compl... Read More
10 kHz to ... Read More
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Circular H... Read More
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Square&nbs... Read More
Power frequency magn... Read More
Display an... Read More
3D DC Magn... Read More
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The high-voltage mea... Read More
The Broadband high-v... Read More
The broadband hor... Read More
The broadband hor... Read More
Linear polarized ... Read More
The front-chopped-wa... Read More
The front-chopped-wa... Read More
The High-Voltage ... Read More
ISN acc. C... Read More
Impedance ... Read More
KE 2.5-R Tilt Dev... Read More
MAP 2.5-T Manual ... Read More
MAS 2.0 Manual An... Read More
MAS 2.0-10kg Manu... Read More
MAS 2.0-15kg Manu... Read More
MAS 3162-01 ... Read More
MAS 4.0-C Manual ... Read More
There are many optio... Read More
Compensati... Read More
Compensati... Read More
Compensati... Read More
Compensati... Read More
Compensati... Read More
Small bico... Read More
Measuremen... Read More
Acc. to CI... Read More
Acc. to CI... Read More
Acc. to CI... Read More
Acc. to CI... Read More
Acc. to CI... Read More
High Curre... Read More
High Curre... Read More
These Open TEM-ce... Read More
OTAP-10kg Over Th... Read More
PAS 2.0 Pneumatic... Read More
PAS 2.0-10kg Pneu... Read More
... Read More
The PG 10-150 con... Read More
The HV-Pulse gene... Read More
The Combination W... Read More
The Combination W... Read More
The HV-Pulse gene... Read More
The Surge Test Ge... Read More
The VARISTOR-TESTER ... Read More
The high-voltage ... Read More
The Pulse Voltage Di... Read More
... Read More
RefRad X Comb Gen... Read More
The radiat... Read More
Small bico... Read More
Small bico... Read More
The Vertical Coup... Read More
2m Grounding cabl... Read More
Avalible ESD Test... Read More
ESD - Generators ... Read More
SG 4.5 – 10... Read More
Low induct... Read More
The testing and perf... Read More
... Read More
The stacked Log P... Read More
The stacked Log P... Read More
Stacked Logarithm... Read More
The Boresight Ant... Read More
The Boresight Ant... Read More
TD 1.5-10kg Turn ... Read More
TD 1.5-2kg Turn D... Read More
Transverse Electr... Read More
Open, unsy... Read More
Open, unsy... Read More
Closed, un... Read More
Closed, un... Read More
Linear polarized ... Read More
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The turntable TT ... Read More
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The turntable TT ... Read More
The turntable TT ... Read More
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The turntable TT ... Read More
The turntable TT ... Read More
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The turntable TT ... Read More
The turntable TT ... Read More
The turntable TT ... Read More
The turntable TT ... Read More
The turntable TT ... Read More
The turntable TT ... Read More
These measuring s... Read More
Biconical ... Read More
UBAA 9114 ... Read More
UBAA 9115 ... Read More
UHF Half-W... Read More
Tuneable U... Read More
Tuneable U... Read More
UHF Precis... Read More
VHF Half-W... Read More
VHF Precis... Read More
Vert... Read More
Vertical p... Read More
Biconical ... Read More
Linear polarized Log... Read More
Linear polarized ... Read More
Linear polarized ... Read More
Linear polarized Log... Read More
Small bico... Read More
Small bico... Read More
Small bico... Read More
A non-metallic ma... Read More
Mast Adapter for ... Read More
... Read More
Antenna adapter t... Read More
... Read More
Detachable Antenn... Read More
The broadband hor... Read More
The broadband hor... Read More
The broadband hor... Read More
The BBHA 9120 K i... Read More
The broadband hor... Read More
... Read More
Low Noise ... Read More
Discontin... Read More
Low Noise ... Read More
Low Noise ... Read More
Low Noise ... Read More
Low Noise ... Read More
In order to be co... Read More
To be compliant t... Read More
To be compliant t... Read More
The capacitive Co... Read More
The capacitive Co... Read More
The capacitive Co... Read More
CISPR 32 Annex C sec... Read More
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The impulse gener... Read More
EMCL- NW 10 / MN-... Read More
The ESD-Sense has... Read More
The ESLP 9145&nbs... Read More
The controller FC... Read More
The controller FC... Read More
The controller FC... Read More
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FMZB 1512 &... Read More
FMZB 1513 ... Read More
FMZB 1513-60&nbs... Read More
Isotropic ... Read More
The HCC consists ess... Read More
13.56 ... Read More
Circular T... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
The circul... Read More
1 - 300 MH... Read More
0.07 ... Read More
0.05 - 30 ... Read More
0.009 - 40... Read More
HFS 1546&nbs... Read More
... Read More
Shield Box... Read More
Shield Box... Read More
The High-Voltage Tes... Read More
The High-Voltage Tes... Read More
... Read More
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Small batt... Read More
Impedance ... Read More
&nbs... Read More
The Antenna Hinge... Read More
Current Tr... Read More
The Multiple Cont... Read More
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Measuremen... Read More
High Curre... Read More
High Curre... Read More
High Curre... Read More
High Curre... Read More
High Curre... Read More
High Curre... Read More
T-ISN 150 ... Read More
The safety test c... Read More
The SURGE TEST GENER... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
The surge current ge... Read More
HV - Impulse gene... Read More
The high current pul... Read More
The high current pul... Read More
The high-current pul... Read More
Positioner for li... Read More
Pneumatic polaris... Read More
For high-voltage tes... Read More
Small bico... Read More
Support arm with... Read More
Spectrum G... Read More
Spectrum G... Read More
Spectrum G... Read More
Linear polarized sta... Read More
The Surge Sense h... Read More
Swivel handle for... Read More
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TA 9204 Thread Ad... Read More
The TBCAS1 coaxia... Read More
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The H20, H10, H5,... Read More
The H20, H10, H5,... Read More
The H20, H10, H5,... Read More
The Trans Sense h... Read More
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The UHALP 9108 A&... Read More
The USLP 9142 is ... Read More
The USLP 9143 is ... Read More
The USLP 9143 B i... Read More
These measuring s... Read More
These measuring s... Read More
The VDips-Sense h... Read More
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The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VULP 911... Read More
The VUSLP 91... Read More
The VUSLP 91... Read More
The VUSLP 91... Read More
The VUSLP 91... Read More
The VUSLP 91... Read More
The VUSLP 91... Read More
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The AC sep... Read More
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This is one-off d... Read More
Low Noise ... Read More
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Clamp-on C... Read More
CDN ABCL-20 Decou... Read More
EM Clamp for immu... Read More
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Conical Lo... Read More
A resistiv... Read More
The coupli... Read More
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9 kHz - 30... Read More
Isotropic ... Read More
E-field, 9 kHz - ... Read More
H-field, 9 kHz - ... Read More
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Universal ... Read More
Calibratio... Read More
The pulse generat... Read More
Impedance ... Read More
Measuremen... Read More
Line Imped... Read More
The High-Voltage ... Read More
PLC Power ... Read More
Our custom-design... Read More
symmetric ... Read More
symmetric ... Read More
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Vertical p... Read More
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Vertical p... Read More
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Horizontal... Read More
IEC / EN 61000-4-... Read More
IEC / EN 61000-4-... Read More
A resistiv... Read More
Current Tr... Read More
Current Tr... Read More
Clamp-on C... Read More
Clamp-on C... Read More
Symmetrica... Read More
... Read More
The TBAS1 RF 2W a... Read More
The TBAS2 RF SMA ... Read More
The TBAS3 RF 10W ... Read More
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The TBCG1 is a ra... Read More
The TBCG2 is a pa... Read More
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The TBCP1-200, TB... Read More
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The TBLC08 is a L... Read More
The TBLM1 LISN Ma... Read More
The TBOH01 5&micr... Read More
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TEMPEST AM... Read More
Safely con... Read More
CalStan 11 is a soft... Read More
In accordance wit... Read More
The Capacitor Cal... Read More
CDG CMP-45 Curren... Read More
CDG CMP-46 Curren... Read More
BCI-P1 Bulk Curre... Read More
CDN BCI-P1_MT-1 B... Read More
list of current e... Read More
The Tekbox EMC compl... Read More
The Microsoft-Window... Read More
Hilo Remote Control ... Read More
Hilo Remote Control ... Read More
The TBFL1 is a co... Read More
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The CAR- Transien... Read More
Discontinued&nbs... Read More
Meets Section 15 ... Read More
For automotive ES... Read More
Ac... Read More
The LSAOL 1.0/1.1... Read More
The LSAOL 1.0/1.1... Read More
The Multi-CE5 is ... Read More
The Multi-CE7 is ... Read More
The ESD simulator... Read More
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The TBGTC1 open G... Read More
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The TBOH02 is a s... Read More
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The TBSB line of ... Read More
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Radiated emission... Read More
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Linear polarized ... Read More
Linear polarized ... Read More
EMI Measurements:
EMI Measurements:
EMI Measurements:
BOLAB´s new and world´s unique solutions in testing High Voltage profiles for Electric Vehicles are very powerful, flexible, and modular.
Three different solutions for high-speed testing, a medium-range for covering most profiles, and a low budget. Powerful solutions for starting and gaining experience are available.
Modularity is one of the most important characteristics of BOLAB´s systems.
Start with a “small” system of 1 KW (1.000 V, 15 A) and expand module by module as applications require and budgets allow.
It was never this easy to get involved with high voltage tests for Electric Vehicles and to build up these tests to a most powerful solution.
BOLAB WaveMaster software and the BOLAB AnyWave control unit allow the control of power supplies as well as 4 quadrant amplifiers via the analog interfaces.
The powerful and easy-to-use BOLAB WaveMaster software is unique in the world. Without any knowledge in software development, designing ordinary and complex waveforms is very easy. A graphic waveform editor allows the generation
of individual curves in no time. Also, with tabular input, all types of waveforms can be produced instantly.
BOLAB WaveMaster software and the BOLAB AnyWave control unit allow the control of power supplies as well as 4 quadrant amplifiers via the analog interfaces.
The powerful and easy-to-use BOLAB WaveMaster software is unique in the world. Without any knowledge in software development, designing ordinary and complex waveforms is very easy. A graphic waveform editor allows the generation
of individual curves in no time. Also, with tabular input, all types of waveforms can be produced instantly.
Absolute EMC has designed low-cost pre-compliance systems to meet a wide range of RF emissions and immunity needs. Some form of pre-complaint testing is a must for any company that needs to demonstrate their product for EMC compliance. This enables companies to be responsive when issues happen and to also be proactive before going to the lab to better your chances of passing the first time.
AN-Series is an artificial Network that electrically recreates the vehicular power-net impedance for component tests of voltage class B (high voltage) components in laboratories and test benches. The AN-Series uses an analog system with a bandwidth covering up to 150 kHz. An artificial network like the AN-Series is crucial for the proper testing of all voltage class B components in both hybrid and electric vehicles.
In accordance with LV123, ISO 21498, MBN 11123, VW 80300, and IEC 61851-23.
AN-Series is an artificial Network that electrically recreates the vehicular power-net impedance for component tests of voltage class B (high voltage) components in laboratories and test benches. The AN-Series uses an analog system with a bandwidth covering up to 150 kHz. An artificial network like the AN-Series is crucial for the proper testing of all voltage class B components in both hybrid and electric vehicles.
In accordance with LV123, ISO 21498, MBN 11123, VW 80300, and IEC 61851-23.
Axos 5 - Compact
Axos 8 - Compact
The Schwazbeck Biconical elements come in many sizes and offer different performances depending on what your needs are. For best low-frequency performance (good gain, low antenna factor), larger elements work better. The downfall of larger elements is handling or fitting in the test space. Many situations may not need outstanding performance with larger elements. The benefits of these elements and antenna baluns are that they all use the same connections (10mm), allowing for versatile sharing/switching of elements. No need to purchase a new antenna; get new elements.
Audio Transformer 200W, 50A
The EMC test system is designed for testing electromagnetic immunity of the electrical installation of vehicles and components against supply line transients. EMC - Test Equipment for the electrical installation of vehicles.
The CDG 7000 is a new test generator for all standards on immunity to conducted disturbances induced by high-frequency fields - including BCI tests (ISO 11452-4). One of the very few combined IEC 61000-4-6 test systems that contain the RF signal generator, an RF power amplifier, a 3-channel RF voltmeter, and a directional coupler at a very affordable price.
The CDG 7000 is a new test generator for all standards on immunity to conducted disturbances induced by high-frequency fields - including BCI tests (ISO 11452-4). One of the very few combined IEC 61000-4-6 test systems that contain the RF signal generator, an RF power amplifier, a 3-channel RF voltmeter, and a directional coupler at a very affordable price. IEC 60601-1-2 calling out IEC 61000-4-39 magnetic immunity for close proximity testing requirements can also now be met with the 10 kHz unit.
The CDG 7000-E is a new test generator for all standards on immunity to conducted disturbances induced by high-frequency fields - including BCI tests (ISO 11452-4). One of the very few combined IEC 61000-4-6 test systems that contain the RF signal generator, a 3-channel RF voltmeter, and a directional coupler at a very affordable price. Use an external Amplifier you already have or one that matches your application.
" A Probe Kit on Steroids"
The EPS Test Table Lt is a simple, inexpensive solution for your EMI testing. It is made from durable, expanded polystyrene (EPS) material and can be customized to your requirements. Complies with CISPR, ISO, & IEC requirements for having a low permittivity and can be used for additional standards.
By Frequency Range
The fiber connector cleaning kit allows for cleansing the fiber optic connector to ensure reliable operation of the LSProbes and other Fiber optic products.
LSPM 1.0 Triple High-Speed Power Meter, 9 kHz – 6 GHz (12GHz)
LSPM 1.1 Laser Powered, Triple High-Speed Power Meter, 9 kHz – 6 GHz (12GHz)
LSPM 2.0 Triple High-Speed Power Meter, 9 kHz – 26.5 GHz (40GHz)
LSPM 2.1 Laser Powered, Triple High-Speed Power Meter, 9 kHz – 26.5 GHz
The LSProbe 1.2 Variant E Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.
The LSProbe 2.0 Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.
MAG 1000
Onyx 16
Onyx 30
opto, Fiber-optic, Automotive Link Overview
PEFT 8010
PSURGE 30.2
The Absolute Coax series of cables are designed specifically to meet the requirements for EMC testing. Each industry has requirements that are unique. EMC is no different. Absolute EMC has gone through the selection process to only offer the best performance quality and value. Taking away the need to spend hours searching and looking through specs and manufacturers to find what you hope is the best value. 4 options are available fitting most EMC applications.
The Absolute EMC106 series of cables is a very high-performing Coax operating up to 18GHz with incredibly low losses. It can be used for high-power applications resulting in more power reaching your antenna. Also ideal for emissions testing up to 18GHz. allowing for long-distance runs with less loss.
The broadband horn antenna BBHA 9120 D is a linear polarized double ridged horn antenna.
The broadband horn antenna BBHA 9120 L is a linear polarized double-ridged horn antenna.
CABCISPR2515A
CABCISPR2532A
The CAR-PFS-80 is an automotive power fail simulator, which is designed for performing fast voltage dips and drops (micro-interruptions) according to standard requirements, mainly from vehicle manufacturers. The electronic switches in the generator allow switching times below 1 microsecond.
Compact EMC test unit designed for testing electromagnetic immunity of the electrical installation of vehicles and components against supply line transients. PG 2804 includes the generation of pulses #5 / Test A and Test B. It is designed to be connected to the power supply interface of the CAR-TESTER. Load Dump Generator EMC-Test Equipment for the electrical installation of vehicles.
The transient generator CAR-TG 20 is designed according to strict specifications of Ford standards. As per standards FORD FMC1278 and EMC-CS-2009.1 the transient tests defined in RI130, CI220 and CI 260 are generated by CAR-TG20. By that is meant pulse forms: A1, A2-1, A2-2, C-1, C-2, and F.
Therefore, a specified 12VAC Potter & Brumfield relay as well as other parts defined by standard create pulses that are close to real appearing transients.
Capacitor Cx, stand-alone
The dAV series includes not only the digital, optical transmission of camera signals (dAV-C), it can also transmit analog audio and/or video signals uni- or bidirectionally. Fields of application are e.g. the acoustical monitoring of engine speed or surveillance of an audio or video system in immunity tests. The main unit dAV is thus equipped with different options. The dimensions of the housing depends on the options chosen.
Discontinued - See dAV-Cr-HD 30x digital Camera
The dAV-Cr-HD-30-nd camera comes with 30x optical zoom and can be used for the optical and acoustical monitoring of devices under test during EMC measurements. It has an integrated mono microphone and can be locally controlled via eight buttons on the rear case side or via remote control from the control room. The integrated short range LEDs are helpfull for dark test conditions. Because of the HD-resolution, high quality DUT surveillance can be done. With the optical transmission and the shielded case, the camera is well equipped for EMI and EME tests. Counterpart is a receiver of the dAV-Rr-HD series. No PC needed for display!
The dAV-Cr-HD-mini camera can be used for the optical and acoustical monitoring of devices under test during EMC measurements. It has an integrated mono microphone and can be remote controlled via fiber from the receiver in the control room. Because of its miniature size and the HD-resolution, high quality DUT surveillance can be done at locations with limited space, e.g. GTEM cells, cars, ... With the optical transmission and the shielded case, the camera is well equipped for EMI and EME tests. No PC needed for display!
The extra small camera dAV-Cr-HD-µ can be used for the optical monitoring of devices under test during EMC measurements. It has especially been developed for restricted space applications (dimensions approx. 30 x 30 x 110mm) and can be remote-controlled from the control room (digital zoom, integrated short-range LED and so on).
Emergency stop switch for interrupting / close the internal safety circuits.
The EPS Test Table is a simple, inexpensive solution for your EMI testing. It is made from durable, expanded polystyrene (EPS) material and can be customized to your requirements. Complies with CISPR, ISO, & IEC requirements for having a low permittivity and can be used for additional standards.
Active, shielded Loop Antenna with nearly constant antenna factor over the entire frequency range (9 kHz - 30 MHz), battery-driven to minimize disturbance influence from the power line.
Active, shielded Loop Antenna with nearly constant antenna factor over the entire frequency range (9 kHz - 30 MHz), battery-driven to minimize disturbance influence from the power line.
FP-COMB 32
FP-COMB 63/690-1
Helmholtz Coils Overview see below
The oscillatory wave generator IPG 2553 has been designed for immunity testing of electrical and electronic equipment against repetitive damped oscillatory magnetic field according to IEC 61000-4-10 requirements. It generates a decaying cosine current waveform with ringing frequency of 100 kHz or 1.0 MHz. The generator output is connected to special designed Helmholtz-coil which generates magnetic field with 10 - 100 A/m.
The oscillatory wave generator IPG 2554 F has been designed for immunity testing of electrical and electronic equipment against repetitive damped oscillatory waves (DOW) according to IEC 61000-4-18 requirements. It generates a decaying sine waveform with ringing frequencies 3, 10, and 30.0 MHz. These waveforms represent disturbances occurring in power, control and signal cables installed in high voltage and medium voltage stations and in heavy industrial installations.
The oscillatory wave generator IPG 2554 S has been designed for immunity testing of electrical and electronic equipment against repetitive damped oscillatory waves according to IEC 61000-4-18 requirements. It generates a decaying sine waveform with ringing frequency from 100 kHz and 1 MHz. These are considered the slow waves. These waveforms represent disturbances occurring in power, control, and signal cables installed in high voltage and medium voltage stations and in heavy industrial installations.
The oscillatory wave generator IPG 2554 has been designed for immunity testing of electrical and electronic equipment against repetitive damped oscillatory waves according to IEC 61000-4-18 requirements. It generates a decaying sine waveform with ringing frequency from 100 kHz to 30.0 MHz. These waveforms represent disturbances occurring in power, control and signal cables installed in high voltage and medium voltage stations and in heavy industrial installations.
The LSProbe 1.2 Variant F Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.
The LSProbe 1.2 Variant E Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.
LVDS (Low-voltage differential signaling) systems are tailored to each individual application. We work closely without clients to understand and develop a perfect fit product that will have no issues once implemented. We have the most experience in the industry developing and delivering such systems. See below examples of what we have offered.
The MF EASY is a scalable and flexible multichannel measurement and assessment system for magnetic fields in the frequency range DC – 400 kHz. It is available with 5 or 10 (on request up to 15) fully isotropic measurement channels enabling simultaneous magnetic field measurements on 5 or 10 (15) measurement positions.
Different standard probe types (sizes and shapes) are available for the MF EASY. Customized probes are available on request. Iso-centrically arranged coil and Hall sensor enable a measurement frequency range from DC to 400 kHz and a measurement sensitivity suitable for assessing human exposure.
The compact magnetic field generator and analyzer MGA 1033 allows susceptibility tests against magnetic fields from DC to 250 kHz according to the standard EN 55103-2 and their measurement according to EN 55103-1. In addition, EMC tests are possible according to various standards such as automotive, avionic and MIL-STD.; Generation of magnetic fields from DC to 250 kHz; Field strength up to 1000 A/m; EN 55103-1/2, MIL-STD 461, Automotive etc.; Accessories: Loop sensors, Helmholtz coils etc.;
The infrared camera opto-LWIR was developed specifically for EMC tests. In high field strengths with directional antennas (fire protection!), an overload of the DUT or the absorbers can be detected early.
The optoCAN-FD system can be used for the bidirectional optical transmission of CAN-signals with transmission rates of up to 10 Mbit/s. It consists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoCAN-HS system can be used for the bidirectional optical transmission of CAN-signals with transmission rates of up to 1Mbit/s. It consists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoCAN-LS system can be used for the bidirectional optical transmission of CAN optical transmitter for low speed-CAN signals with transmission rates of up to 125kbit/s. It consists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoCAN-SW system can be used for the optical transmission of single-wire CAN signals with transmission rates of up to 33kbit/s (max. 83kbit/s). It optical transmitter of single-wire CAN signals: optoCAN-SWconsists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
This optical device is used for the bidirectional optical transmission of ethernet signals with a transmission rate of 1 GBit/s. It is downward compatible to 100BaseT and 10BaseT (automatically detected). The system consists of two identical transceivers supplied by batteries and a duplex 62.5/125µm-multimode optical cable.
A new type of connector is available now: The M12 connector (MMT471A315, counterpart MNF881A315-0001) by Metz Connect was integrated into our optical transmitter for Ethernet signals optoLAN, as well as optoLAN-Gb. Therefore, these devices are even fitter for tests of electromagnetic compatibility.
The optoLAN-100-MAX system can be used for the optical transmission of Ethernet (LAN-) signals with a data rate of up to 100Mbit/s (100BaseTx). The two identical transceivers are supplied by internal batteries and connected with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests. The device is not downward compatible to 10BaseT. If you need this option you can get the optoLAN-Gb.
The Marvell® 88Q1010 solution is a single pair Ethernet physical layer transceiver (PHY). Our optoLAN-88Q1010 is suitable for EMC tests of devices with this kind of chipset. The standard connector is a 4 pole Rosenberger HSD to minimize the emission of our optical link.
The Marvell® 88Q2112 solution is a single pair Ethernet physical layer transceiver (PHY) for 100/1000Base-T1 signals. Our optoLAN-88Q2112 is suitable for EMC tests of devices with this kind of chipset. The standard connector is a 4 pole Rosenberger HSD to minimize the emission of our optical link.
The optoLAN-BCM89811 system can be used for the optical transmission of automotive ethernet signals with Broadcom© BCM89811© and other 100BaseT1 chipsets. There are two setups available, T1 to T1 (standard) or T1 to Tx (with integrated media converter => optoLAN-BCM89811 -MC), see separate setup document. The standard connector is Rosenberger HSD (Z-coded).
The optoLAN-TJA1100-MAX system can be used for the optical transmission of automotive ethernet signals with NXP© TJA1100© chipset (unshielded twisted pair UTP ethernet). The system can be set up with two identical transceivers or one side automotive ethernet and the other 100BaseT. With this setup, the link can be used as a media converter. The devices are supplied by internal batteries and connected with an optical fiber. The standard connector is a 4 pole Rosenberger HSD.
The optoLIN system can be used for the optical transmission of LIN signals with transmission rates of up to 20kbit/s. It consists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
For EMC tests according to the standard IEC/ EN 61000-4-16, -19 and IEC/ EN 61543
Precision Loop Antenna The PLA-R antenna is an active, battery-powered loop antenna for fully compliant radiated disturbance measurements. Due to the broad frequency range from 9 kHz to 30 MHz, it is suitable for all emission standards. A very low noise floor allows for compliance measurements with low limits. Furthermore, the passive operation mode ensures that strong emissions e.g. from wireless charging applications don't overload the preamplifier. With the integrated tripod, positioning is convenient and fast as the loop antenna needs to be oriented in x, y, and z orientation. Two integrated laser pointers support the alignment.
The PLA set consists of two active, battery powered loop antennas intended for site validation. With the broad frequency range from 9 kHz to 30 MHz it is suitable for Normalized Site Attenuation (NSA) measurements and Shielding Effectiveness (SE) measurements.
The Precision Omnidirectional Dipoles POD 16 and POD 618 are fully compliant to CISPR 16-1-4 for site validation above 1 GHz. The POD 16 and POD 618 are precision broadband dipole antennas with conically shaped radiation elements covered by an RF-transparent radome. This rugged construction enables an excellent dipole-like radiation pattern up to 18 GHz.
The STLP 9129 Special was specially designed for wideband immunity tests. This unrivaled bandwidth was achieved by combining both well-proven antenna designs STLP 9128 D and STLP 9149. The STLP 9129 Special does provide the optimum gain and field uniformity at the same time, as well as both basic antennas, do. Main Application: Generation of defined high field strength levels for radiated immunity testing acc. IEC 61000-4-3.
External partial discharges at high-voltage electrodes (corona) possess an acoustic spectrum, which extends to the ultrasonic region. Because of the strong directivity of high-frequency sound waves, ultrasonic detectors do not only allow detection, but also the localization of corona discharges, for instance, in switchyards, high-voltage test set-ups or transmission lines. The ultrasonic detector USD 38O1/38O2 operates at a frequency of approx. 33 kHz that is particularly suitable for external partial discharge detection. The combination of a highly directional ultrasonic microphone and a parabolic reflector system allows an exceptional directivity of the acoustic sensitivity. The microphone output signal is picked up by a selective amplifier and transformed into an audible signal. This allows a simple evaluation of the partial discharge intensity by headphones.
The Analog transmission links of the „U-series“ can be used to transmit analog or digital signals 1:1. They can be used to optically transmit signals from inside to the outside of the ALC or to transmit a stimulus inside the chamber (with optional output filter).
Linear polarized Logarithmic Periodic Broadband Antenna combined with a 4:1 Broadband Dipole (Aluminium tubing) for Receive and Transmit Applications.
Warning / signal lamps for visualizing the generator state. Signal red: "Warning Hazard", signal green: "all clear".
The Wood Test Table is a simple, inexpensive solution for your EMC testing. The table is built to be ship flattened to reduce shipping costs and easily assembled on site quickly. The picture is shown with a ground plane.
BBHA 9120 F is linear polarized double ridged broadband horn antenna for receive and transmits applications made of aluminum. An optional 7-16 connector is available for high power applications.
Broad-Band Horn Antenna
The Burst Calibration Kit has been designed to measure the pulse output voltage and the pulse output current of burst generators, e.g. the EFTG-CE5 or the burst generator sub-unit of the Multi-CE5. It essentially consists of a load resistor, a pulse voltage divider, and a double-shielded coaxial cable. ? Burst Calibration Kit ? Input voltage: 5 kV ? Ratio, 200/400:1 ? Bandwidth: 400 MHz
CAR AN-HV is used to simulate various types of transients that appear on the high voltage supply lines generated by the switching of various devices.
Pulse A represents ringing caused by switching operations of high voltage semiconductors. Pulse B represents sinusoidal waves generated by harmonics from the grid and revolutions from, for example, electric propulsion motors.
The coupling clamp CDN 2012 conforms exactly to the requirements of ISO 7637-3 and other standards, guaranteeing that tests are carried out in strict compliance with the standard. The CDN allows the fast nanosecond pulse bursts ( ISO 3a and 3b) to be injected in cable runs. Very high impedance signal lines are also to be found in vehicles on which the disruptive effects of ISO pulses 1 and 2 can also show up through capacitive coupling.
The CWG-CE5 is a compact EMC test unit designed for testing electromagnetic immunity against pulsed and conducted interference. Demonstrating such immunity is generally a requirement for compliance with the European EMC directive, a necessary step leading to the CE mark.
The Combination Wave Generator CWG-CE7 is a combined impulse-current-/impulse-voltage generator which, for high-impedance loads, RL > 100?, delivers a standard impulse voltage with waveform 1.2/50?s and, for short-circuited output, a standard impulse current with waveform 8/20?s.
Matched test clamp for DCS05 Test Generator, the Generator produces damped oscillatory wave transients in the frequency range 500kHz to 50 MHz that meet the definition of a type 1N Generator verification requirements Defence Standard 59-411. 9 Fixed frequencies are available: 500 kHz, 1 MHz, 2 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, 35 MHz, and 50 MHz.
The Conformity Assessment Business Model DCS05 Test Generator. When coupled to its matched test clamp, the Generator produces damped oscillatory wave transients in the frequency range 500kHz to 50 MHz that meet the definition of a type 1N Generator verification requirements Defence Standard 59-411. 9 Fixed frequencies are available: 500 kHz, 1 MHz, 2 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, 35 MHz, and 50 MHz.
The Conformity Assessment Business Model DCS06 Test Generator has been designed to operate with its complementary injection clamp to fully meet the pulse requirements of DCS06 when tested into a 5? load. It operates from an intuitive touch screen interface and has full phase synchronization up to 800 Hz input frequency with 1-degree steps. It has been designed with future revisions of the test standard in mind.
The Conformity Assessment Business Model DCS12 Test Generator meets all the DCS12 wave verification parameters for testing DC, single and three-phase equipment, that is source impedance and verification of damping and frequency when measured into a 10 Ω load. Output amplitude is software adjustable with permanent memory, should re-alignment be needed during calibration.
DGA 9552 N is a bidirectional attenuator, i.e. the attenuation and power capability specification is valid for both directions.
There is a large variety of applications for this attenuator: The measuring range of a spectrum analyzer can be increased. Any kind of meter can be protected against overload; it can be used to control the linearity of a meter reading. It can minimize measurement uncertainty caused by mismatched impedances. During an EMI receiver calibration, an attenuator directly at the pulse generator output is inevitable.
DGA 9553 BNC is a bidirectional attenuator, i.e. the attenuation and power capability specification is valid for both directions.
There is a large variety of applications for this attenuator: The measuring range of a spectrum analyzer can be increased. Any kind of meter can be protected against overload; it can be used to control the linearity of a meter reading. It can minimize measurement uncertainty caused by mismatched impedances. During an EMI receiver calibration, an attenuator directly at the pulse generator output is inevitable.
The Capacitive Coupling Clamp, EFTC 2012, provides the ability to couple Burst / EFT pulses to data lines. It can also be used for coupling to main lines where no CDN is available, for example, high current lines >200 A.
The EFTC-CK is a calibration kit for burst/EFT coupling clamps as specified in IEC 6100-4-4:2012. It has been designed for calibration of coupling clamps like EFTC2012. The set consists of a transducer plate and a termination bracket (connecting adapter).
The Electrical Fast Transient Generator EFTG-CE5 is a compact EMC test unit for testing electromagnetic immunity against electrical fast transients. The generator provides burst-pulses, which are adjustable in frequency, amplitude, duration and repetition rate. It is suitable to test the susceptibility levels of electrical systems and installations full compliant to IEC 61000-4-4.
EMC SHAC-200, 700MHz-40GHz
The ESD Test Table Kit is a simple inexpensive solution for your ESD testing. Complies to the requirements of IEC 61000-4-2 and can be used for additional standards. Comes with a Horizontal Coupling Plane (HCP), resistive cable to tie HCP to floor ground plane, bleeder wire for discharging ungrounded battery powered EUTs, 0.05mm insulator and an alternative low impedance ground for using the table for additional setups such as IEC 61000-4-6 requirements.
Static Dissipation Brush is designed to meet section 7.2.4.1 of EN 61000-4-2: 2009. It is used to dissipate the charge on ungrounded equipment being tested.
Footswitch to trigger certain generator functions.
The Schwarzbeck line of biconical antennas is ideally suited for EMC testing. The interchangeable design can be paired easily with different elements for different applications. The kits offered here make the selection process simple and straight forward. Testing < 150 MHz and at 1 or 3 meters in the near field of each antenna becomes difficult to predict, especially in small chambers.
The use of these kits gives many antenna options in a single solution. With the alternative element options, the possibility of finding a better match to your chamber and requirements increases.
The external impedance IMP8 is the impedance, required for the pulse specifications according to standard IEC 61000-4-5 Ed.3, for measuring the pulse output voltage of surge generators.
Absolute EMC offers an assortment of injection test kits for the use of conducted immunity. The kits can be used with many available conducted immunity systems, including the Schlöder CDG 7000, to make selection and setup easy. All calibration fixtures, injection clamps, attenuators, and termination resistors necessary for meeting the requirements of conducted immunity systems. All all-in-one systems are covered.
IPG 612T RING-WAVE GENERATOR is a High-voltage pulse generator producing Ring Wave 0.5 µs / 100 kHz acc. to IEC 61000-4-12. The output peak voltage can be preset continuously from 0.2 - 6 kV. Rise time 0.5µs to the first peak, ringing frequency 100 kHz. The picture is shown with PA 503 Option.
LSFrame is LUMILOOP’s solution for straight-forward and reliable integration of one or more LUMILOOP products in a LAN-controlled, standard 19 inch form factor appliance.
LSFrame can host:
The Motion Detection Software (mk-motion) analyses video images of a test object to detect deviations between target and actual behaviour. The mk-motion motion detection software is thus an optimal support for your EMC technician in his daily requirements.
opto1394 This system is used for the optical transmission of IEEE1394/Firewire-signals and can transmit data rates of up to 400 Mbit/s (800 Mbit/s at 1394b). The transmitter system consists of two similar transceivers supplied by batteries and a duplex-62,5/125µm-multimode optical cable. Due to its insensitivity against strong electromagnetic fields, the opto1394 is fit for tests of electromagnetic compatibility in EMC-test chambers, TEM-cells, and striplines. The system can also be used for the fail-proof transmission of signals across long distances.
This system is used for the optical transmission of Flexray-signals and allows the transmission in both directions with a sampling rate of 10 MBit/s. It consists of two identical transceivers, supplied by batteries, and a simplex-62,5/125µm-multimode optical cable (1-fiber-version available on demand).
The optoK system can be used for the optical transmission of K-Line signals with transmission rates of more than 30kbit/s at supply voltages of up to 24V. It consists of two identical battery supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoSENT system was developed for the transmission of asynchronous SENT signals (Single Edge Nibble Transfer) aThis system is used for the optical transmission of PSI5-signals and allows the transmission in both directions with a sampling rate of 50 MS/s. It consists of a transceiver, supplied by batteries, for the connection of a sensor, a simplex-62,5/125µm-multimode optical cable, and a receiver with internal batteries as well.nd exists in two different versions.
The optoSENT system was developed for the transmission of asynchronous SENT signals (Single Edge Nibble Transfer) and exists in two different versions.
The optoSPI-HS system can be used for the bidirectional optical transmission of SPI signals with transmission rates of up to 1Mbit/s. It consists of two battery supplied transceivers connected to each other with an optical fiber. With the optical transmission of the shielded case and the external filter, the system is well equipped for EMI and EME tests.
ptoTTL 5-3-u is used for the optical transmission of TTL (Transistor-Transistor Logic) 3.5 & 5 V TTL signals digital signals. Up to 16 digital signals with a sampling rate of 40 MS/s (each channel) can be transmitted. The system consists of a transmitter supplied by batteries, a simplex-62,5/125µm-multimode optical cable, and a receiver – which has integrated batteries as well.
The optoUART system can be used for the optical transmission of UART-signals up to a data rate of 1 Mbit/s.
It can be used to transmit UART-signals over long distances or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoUSB-2.0-RBDIR system can be used for the optical transmission of USB-signals up to a data rate of 480 Mbit/s according to USB2.0. It can be used to transmit USB-signals over long distances or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoUSB-2.0 system can be used for the optical transmission of USB-signals up to a data rate of 480 Mbit/s according to USB2.0. It can be used to transmit USB-signals over long distances or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
Highly Accurate Antenna for Exposure evaluation next to mobile communication facilities e.g. GSM and UMTS base stations Accurate RF radiation safety measurements e.g. nearby broadcast stations or in buildings
The Power Fail Simulator PFS-CE-16 is a compact EMC test unit designed for testing electromagnetic immunity against interruption and variation of the power supply voltage acc. to IEC 61000-4-11. Demonstrating such immunity is generally a requirement of the European EMC directive, a necessary step leading to the final attachment of the CE mark.
Power supply to expand the CAR-SYS 14 for the tests according to ISO 7637 and ISO 16750-2.
Power supply to expand the CAR-SYS 14 for the tests according to ISO 7637 and ISO 16750-2.
Power supply to expand the CAR-SYS 14 for the tests according to ISO 7637 and ISO 16750-2.
An electromagnetic reverberation chamber is a multifunctional EMC (Electromagnetic Compatibility) test facility for commercial, military, automotive testing, and other electromagnetic investigations. Also known as reverb chamber (RVC) or mode-stirred chamber (MSC) or, Vibrating intrinsic reverberation chamber (VRC). Compared to other measuring methods like EMC test in anechoic chambers or OATS (Open Area Test Sites), GTEM-cells offer some significant advantages for the testing of small and medium-sized EUT´s (Equipment Under Test) up to a frequency range of 20 GHz. Quick turn arounds of the EUT, as well as numerous testing variations, are easy and fast to handle. Switching from emission to immunity testing requires only simple adjustments from receiver input to the amplifier output.
Any shielded room can be converted to a Reverberation chamber. This is an easy process where Aluminum panels and fixtures are fitters inside the chamber to raise the Q of the chamber. Special precautions are made to make sure all electrical bonding is done so connections do not Oxidize. Stirrers are installed based on customers' requirements. this can be 1, 2. or even more. The use of 2 stirrers perpendicular to each other is recommended but it is up to the user.
The Surge Calibration Kit has been designed to measure the pulse output voltage and the pulse output current of surge generators, e.g. a combination wave generator. It essentially consists of a pulse voltage divider, a pulse current measuring resistor, and a double-shielded coaxial cable. The unit is easy to connect and use for everyday pulse verification.
The Surge Calibration Kit has been designed to measure the pulse output voltage and the pulse output current of surge generators, e.g. a combination wave generator. It essentially consists of a pulse voltage divider, a pulse current measuring resistor, and a double-shielded coaxial cable.
GTEMCELL Ltda shielded chambers are built up as modular construction. Due to individual modules, any size of the chamber can be realized. Big chambers may require an outer supporting structure or alternatively, the shielding material can be attached directly to the building. Panels are manufactured of 2,0 mm thickness hot galvanized sheet steel double bordered.
Gtemcell develops a wide range of shielded box for commercial, industrial, and military applications. Customized solutions according to your needs!
Gtemcell offers an innovative shielding product made of a highly conductive double layer of aluminum with internal reinforcing mesh in polyester for the coating and creation of shielded environments within pre-existing structures. The application frequencies range from a few Mega Hertz to several GHz with an electric field attenuation of 45-80dB. The great advantage is ease of application even on curved and complex surfaces and lower costs which make this application particularly attractive. GTEMCELL supplies the shielded fabric or performs all the environmental shielding work. The aesthetic finishes are the responsibility of the customer.
The construction includes a preliminary inspection to evaluate all the "critical" aspects such as the openings present: doors. windows, air conditioning systems, electrical connections and consequently draw up an economic evaluation of the costs.
Linear polarized Stacked Logarithmic Periodic Broadband Antenna with N- or 7/16connector for Receive and Transmit Applications. Main Application: Generation of defined field strength levels for radiated immunity testing. Further the cross-polar rejection of the STLP 9128 F is excellent.
The STLP 9129 was specially designed for wideband immunity tests. This unrivaled bandwidth was achieved by combining both well-proven antenna designs STLP 9128 D and the STLP 9149. The STLP 9129 does provide the optimum out of gain and field uniformity at the same time as well as both basic antennas do. Main Application: Generation of defined high field strength levels for radiated immunity testing acc. IEC 61000-4-3.
Stacked Logarithmic-Periodic Broadband Antenna for Linear polarised RX- and TX- applications in the microwave frequency range. The antenna structure is made of laser-cut brass. For the protection of the fine antenna structure against damage, the antenna is equipped with a low loss plastic protection cover. The STLP 9149 is especially suitable for Immunity Testing acc. to IEC 61000-4-3 because of its good field uniformity.
Linear polarized Broadband TEM Horn Antenna (Aluminium) for receive and transmit applications, especially for generating radiated fields in close proximity immunity tests and UWB (ultra-wideband) measurements. A typical application is the IEC 61000-4-39 standard.
U-DC
These measuring systems are used for the optical, digital transmission of analog signals:
These measuring systems are used for the optical, digital transmission of analog signals:
These measuring systems are used for the optical, digital transmission of analog signals:
Motor-driven variable transformer, controlled by Multi-CE5 or Multi-CE7, used for power supply variation acc. to IEC 61000-4-11 and setting current for IEC 61000-4-8 Magnetic fields
VRC (Reverberation tent chamber)
This product is a chamber made of a flexible metal fabric tent assembled as a cavity that provides a periodic electromagnetic environment that is randomly polarized, spatially uniform, and isotropic.
The walls of the chamber are inducted in mechanical vibration between 5 and 20Hz, able to reflect the electromagnetic waves inside the tent with a reverberation effect. VRC finds applications to create an electromagnetic environment for immunity and emission testing. The reverberation tent chamber offers the advantage of higher field-to-input power ratios and faster test throughput times than other test methods.
The IEC 61000-4-21:2003 is a comprehensive standard for performing electromagnetic testing with a reverberation chamber.
The modular construction of the tent fabric allows customized dimensions assembly to meet space limitations e/o including the device under test. The VRC is supplied complete with a technical panel and optional filters.
The magnetic fixture „8158 Magbase“ can be used to fix a NTFM 8158, a CAT5 8158, or a CAT3 8158 to a steel wall vertically.
The original ABSOLUTE EMC Monopole is explicitly designed for the EMC market. A low-cost and easy-to-use monopole with no metallic parts, with the exception of the antenna connection screw. The EMC Monopole is easy to assemble. It is fully adjustable in height with the center mast section. Materials used are low permittivity allowing for use in most EMC applications to hold antennas, cameras, RF field probes, cables off the floor, and other support possibilities. The monopole design allows for a small footprint for easy maneuvering around and reduces tripping caused by tripods. If any plastic pieces break, they will be replaced free of charge for the product's life.
The original ABSOLUTE EMC MP-Probe Stand is explicitly designed for the EMC market. A low-cost and easy-to-use probe stand with no metallic parts. The EMC Monopole Probe Stand is easy to assemble. It is fully adjustable in height with the center mast section. Materials used are low permittivity allowing for use in most EMC applications to hold antennas, cameras, RF field probes, cables off the floor, and other support possibilities. No metal is used in any part of the stand. The field probe holders use PTEG plastic screws to hold the probe in place. The MP Probe Stand design allows for a small footprint for easy maneuvering around and reduces tripping caused by tripods. If any plastic pieces break, they will be replaced free of charge for the product's life.
The original ABSOLUTE EMC Tripod is explicitly designed for the EMC market. A low-cost and easy-to-use tripod with no metallic parts with the exception of the antenna connection screw. The EMC Tripod is easy to assemble, take apart, and store. It is fully adjustable in height with the center mast section. Materials used are low permittivity allowing for use in most EMC applications to hold antennas, cameras, RF field probes, cables off the floor, and other support possibilities. If any plastic pieces break, they will be replaced free of charge for the product's life.
In this section, you will find information to further devices which do not belong to any of the other categories but are also often used in EMC-labs. In addition, the optional accessories to all of our products are listed here. Some of these accessories can also be used with the devices of other manufacturers - contact us!
The double telescopic antenna mast/tripod is continuously height-adjustable. The mast rods are made of glass fiber to avoid unwanted reflexions. The modular design makes it possible to use different telescope parts and it can be mounted on a mast foot made of stainless steel or one made out of low-reflective fiberglass. Both of them provide a secure stand and easy adjustment on uneven ground. Antennas or adapters can be mounted on the 3/8" male thread.
The broadband horn antenna BBHA 9120 C is a linear polarized double ridged horn antenna.
This power supply can be used with mobile antennas and measuring adapters with several regulated voltages. By default, the BV10D has two output voltages with -10V and +10V, as well as a display for the codings of Rohde & Schwarz-devices. There are two control-LEDs for the monitoring of the voltages at the front side of the device.
This system is used for the power supply of mobile devices with unregulated voltages of -12V and +12V. The BV-12D has two integrated batteries that are directly connected to the outputs.
This system is used for the power supply of mobile devices with an unregulated voltage of 12V. It has integrated batteries wich are directly connected to the output.
This system is used for the power supply of mobile devices with a regulated voltage of +3 to 15V. It has two integrated lead batteries which make the device easy to handle.
This system is used for the power supply of mobile devices with an unregulated voltage of 24V. It has integrated batteries which are directly connected to the output.
0.5 Ohm 1% Shunt Resistor, 200W
1.0 Ohm 1% Shunt Resistor, 200W
The CAR arbitrary waveform generator 1200 is a compact EMC testing system for performing voltage variations on supply lines of vehicles. The system strictly complies with the international standards and manufacturer standards that describe phenomena on the power supply of vehicles. Thus, the CAR arbitrary waveform generator 1200 is the optimal voltage power source for battery simulation up to 70V. It can simulate pulse 2b, pulse 4, starting profile, superimposed alternating voltage and others, up to a battery current of 40A.
The CAR arbitrary waveform generator 3000 is a compact EMC testing system for performing voltage variations on supply lines of vehicles. The system strictly complies with the international standards and manufacturer standards that describe phenomena on the power supply of vehicles. Thus, the CAR arbitrary waveform generator 3000 is the optimal voltage power source for battery simulation up to 70V. It can simulate pulse 2b, pulse 4, starting profile, superimposed alternating voltage and others, up to a battery current of 100A.
The CAR arbitrary waveform generator 6000 is a compact EMC testing system for performing voltage variations on supply lines of vehicles. The system strictly complies with the international standards and manufacturer standards that describe phenomena on the power supply of vehicles. Thus, the CAR arbitrary waveform generator 6000 is the optimal voltage power source for battery simulation up to 70V. It can simulate pulse 2b, pulse 4, starting profile, superimposed alternating voltage, and others, up to a battery current of 100A.
The CAR coupling network 50-1 is used to couple, according to ISO 7637-4:2020, the required sinusoidal disturbances into the DUT. This transformer also facilitates d.c. isolation of the LF generator from the DUT. The transformer has a current rating of 50A (rms) for the DUT.
CAR LD-PS includes generation of pulses #5 / Test A and Test B. It is designed to be connected to the power supply interface of the CAR-SYS.
The Capacitor Calibration Kit CCK has been designed to measure the pulse output voltage of surge generators PG10-200, PG12-360 and PG20-100.
The capacitive Coupling-/Decoupling Networks CDN 54125 / 74125 / 104125 / 124125 are used in combination with the Multi-CE5 / Multi-CE7 or the Surge generators PG 7-250, PG 10-504, PG 12-804 and allow superimposition of surge and burst test pulses to the 3-phase mains voltage of the device under test.
The capacitive Coupling-/Decoupling Networks CDN 5416/7416/10416/12416 are used in combination with the Multi-CE5 or the Surge generators PG 7-250, PG 10-504, PG 12-804 and allow superimposition of surge and burst test pulses to the 3-phase mains voltage of the device under test.
The capacitive Coupling-/Decoupling Networks CDN 5432/7432/10432/12432 are used in combination with the Multi-CE5 / Multi-CE7 or the Surge generators PG 7-250, PG 10-504, PG 12-804 and allow superimposition of surge and burst test pulses to the 3-phase mains voltage of the device under test.
The capacitive Coupling-/Decoupling Networks CDN 5463/7463/10463/12463 are used in combination with the Multi-CE5 / Multi-CE7 or the Surge generators PG 7-250, PG 10-504, PG 12-804 and allow superimposition of surge and burst test pulses to the 3-phase mains voltage of the device under test.
Quad view system to integrate and display 4 independent VGA, DVI (HDMI) and CVBS inputs in one screen, including audio.
The dAV receivers have an integrated loudspeaker with adjustable volume, an output for stereo transmission, and HDMI and BNC connectors for Video OUT. The receiver can be ordered in tabletop housing or for 19" rack mounting. An optional SDI output and an ethernet connector are available. Offering a few different configurations depending on the chamber and system size.
The Conformity Assessment Business Model DCS06 Clamp is designed and tuned for optimal operation in the 100 kHz frequency range and provides efficient coupling of the Defence Standard 59-411 DCS06 pulse to the EUT at voltages up to 1 kV (single turn output) and 4 kV (4 turn output). A single turn monitor loop is provided for pulse amplitude measurement during the test.
The original EMC EPS 5CM Sheets are white Expanded Polystyrene with 10cm x 10cm indentations for easy measurements. It can be cut down to size with the included razor knife. Keep your test setup looking professional with these lightweight and soft EUT supports. Ideal for the use in EMC testing for EUT and cable supports. The EMC EPS 5CM SHEETS are crush resistance able to withstand heavy weight loads without deforming. 1cm marking on the top side allows for easy positioning and test setups. Conveniently sold as sheets other sizes possible just ask.
The original EMC EPS 70cm Support is white Expanded Polystyrene. They come in dimensional metric sizes of 40 x 60 x 70 cm. Keep your test setup looking professional with these lightweight and soft EUT supports. Ideal for use in EMC testing for EUT and cable supports. Since the EMC EPS 70cm Support is made from a denser EPS rating, it is crush resistance and able to withstand heavy weight loads without deforming.
The original EMC EPS 70x150cm Support is white Expanded Polystyrene (EPS)
The original EMC EPS Bar is white Expanded Polystyrene can optional be painted coating to extend durability. They come in dimensional metric sizes of 100 x 8.5 x 5 cm. Keep your test setup looking professional with these lightweight and soft EUT supports. Ideal for use in EMC testing for EUT and cable supports. The EMC EPS Bar is crush resistance and able to withstand heavy weight loads without deforming. 1cm marking on 4 sides allows for easy positioning and test setups.
The original EMC EPS Block is white Expanded Polystyrene can optional be covered in a vinyl covering on top and sides or with a painted coating to extend durability. They come in dimensional metric sizes of 10 x 10 x 5 cm. Keep your test setup looking professional with these lightweight and soft EUT supports. Ideal for use in EMC testing for EUT and cable supports. The EMC EPS Block is crush resistance able to withstand heavy weight loads without deforming. 1cm marking on 6 sides allows for easy positioning and test setups. They are conveniently sold in kits in tote bins for secure storage.
The original EMC EPS Cube is white Expanded Polystyrene can optional a painted coating to extend durability. They come in dimensional metric sizes of 10 x 10 x 10 cm which matches EUT height requirements for IEC testing above the ground plane for IEC 61000-4-5 and IEC 61000-4-6. Keep your test setup looking professional with these lightweight and soft EUT supports. Ideal for use in EMC testing for EUT and cable supports. The EMC EPS Cube is crush resistance and able to withstand heavy weight loads without deforming. 1cm marking on all 6 sides allows for easy positioning and test setups. They are conveniently sold in kits in tote bins for secure storage.
The original EMC EPS Pad is white Expanded Polystyrene, which can optionally be a painted coating to extend durability. They come in dimensional metric sizes of 5 x 50 x 50 cm, which matches EUT height requirements for IEC testing above the ground plane for ISO, MIL, IEC 61000-4-5, and IEC 61000-4-6. Keep your test setup looking professional with these lightweight and soft EUT supports. It is ideal for use in EMC testing for EUT and cable supports. The EMC EPS Pad is crush-resistant and able to withstand heavy weight loads without deforming. 1cm marking on all 6 sides allows for easy positioning and test setups. They are conveniently sold in kits in tote bins for secure storage.
The original EMC PLA blocks are 3D printed with PLA plastic. They are extremely durable and versatile for the EMC environment. They come in dimensional metric sizes of 10 x 10 x 5 cm. Keep your test setup looking professional with this lightweight and EUT support. The surface is easily wiped clean for continued years of everyday use. Ideal for use in EMC testing for EUT and cable supports. The EMC PLA Blocks are crush resistance and able to withstand heavy weight loads without deforming. 1cm marking on 6 sides and allows for stacking and locking together. They are conveniently sold in kits in tote bins for secure storage. Each block has features for looping rubber bands, zip ties, or velcro straps. these features can be used to lock blocks together or to hold EUT/DUT wiring down to the blocks.
Nearfield Probe Set including:
The GTEMCELL GTEM-1000 Family is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”.
Model GTEMCELL GTEM250 F with Ferrite tiles on the bottom offers a wider operating bandwidth with peak smoothed and flat response starting from DC to microwave frequencies. It is an indispensable tool for researchers and developers engineers! Model GTEMCELL GTEM250 F SAE includes a special opening to test integrated circuits, dimensions: 80 mm x 80 mm on Approx. 45 mm septum height, closed from a removable panel where are placed the IC under testing.
The GTEMCELL GTEM 400 family consist of the: GTEM-400 made with 65cm pyramidal carbon-foam absorbers (RAM). GTEM-450 made with 51cm. EMC Truncated pyramidal absorbers (RAM) GTEM-450V is the vertical model (suffix V) made with 51cm. EMC Truncated pyramidal absorbers (RAM)
GTEM-500 F made with Ferrite tiles on the bottom and 45cm Hybrid pyramidal carbon-foam absorbers (RAM). GTEM-550 F made with Ferrite tiles on the bottom and 35cm Hybrid pyramidal carbon-foam absorbers (RAM). GTEM-550 VF is the vertical model (suffix V) made with Ferrite tiles on the bottom and 35cm Hybrid pyramidal carbon-foam absorbers (RAM).
The GTEMCELL GTEM-750/800 is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”.
The surge current testing device HCS 3-30 is used for surge current testing of capacitor windings. The capacitor to be tested is on an adjustable voltage, 0,005 - 3000 V, charged and then discharged via a triggerable switch.
The recorder serves the purpose of digital recording of a HD audio and video channel. The system can be operated completely via Windows 7 / 8 / 10.uts in one screen, including audio.
High-Voltage DC Test Sets HTS 20-10 are designed for testing dc dielectric strength of components, insulations, air- and surface flash-over gaps. Also for testing SPDs according to IEC 61643-1. The test voltage can be adjusted from 0.2 kV up to 20 kV. The test voltage rises like a ramp from zero to the selected test voltage. The rate of rise can be adjusted from 100 V/sec up to 10000 V/sec. Then the test voltage remains at the selected value for the test time, which can be adjusted from 1 – 1000 sec. Figure: incl. option PA503
The High-Voltage Pulse Generator IPG 1201 is designed for testing of impulse dielectric strength of components, insulation, air- and surface flashover gaps. It is specially used for testing surge withstand capability of insulation between accessible parts and hazardous live parts, e.g. terminals for connection of antenna and mains supply terminals, refer to EN 60065. Picture: incl. Option PA 503
High-Voltage Pulse Generators IPG 1218 / 1012 / 605 generate standard impulse voltages with waveform 1.2 / 50 µs acc. to IEC 60060. They are designed for testing impulse dielectric strength of components, insulations, air- and surface flash-over gaps acc. to IEC. The peak value of the test voltage is continuously adjustable from 0.2 - 6.25 / 10 / 12 kV. Positive or negative polarity of the output voltage can be selected. A built-in voltage divider 1000:1 allows monitoring of the impulse output waveform during testing.
The HV - Impulse generators IPG 2025 and IPG 2436 create standard impulse voltages with waveform 1.2 / 50 µs acc. to IEC 60060. They are designed for testing impulse dielectric strength of components, insulations, air- and surface flash-over gaps according to the standards. The peak value of the test voltage is continuously adjustable from 2 - 20 kV or 2 - 24 kV. Positive or negative polarity of output voltage can be selected. A built-in voltage divider 1000:1 allows monitoring of the impulse output waveform during testing.
The High-Voltage Pulse Generator IPG 255 is designed for testing of impulse dielectric strength of components, insulation, air-and surface flash-over gaps of watt-hour meters, static relays etc. according to IEC 60255, EN 61036, VDE 0435 part 303. Picture: incl. Option PA 503
HV - Impulse generators IPG 620, IPG 1050 and IPG 1272 create standard impulse voltages with waveform 1.2 / 50 µs acc. to IEC 60. The generators simulate surges caused by switching of inductive loads, power system switching, lightning strokes, etc. They are designed for testing of impulse dielectric strength of components, insulation, air-and surface flash-over gaps as well as for testing surge immunity of devices and systems acc. to CCITT - K22, ITU-T-K44. Picture: incl. option PA503
The Loop Antenna Stand is an advanced antenna support device designed to meet the demands of diverse signal requirements, featuring three primary functions: elevation adjustment, horizontal/vertical orientation, and a 180-degree rotation capability.
Multichannel chargers in 19" case For all our devices with integrated batteries, standard chargers are included. If you purchase several devices however, one of our multichannel chargers could save you some space. In addition, you can charge several of our devices at the same time.
The optoA2B can be used for the optical transmission of A2B signals. It consists of master and slave which are supplied by internal batteries and which are connected with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoRS232-HS system can be used for the optical transmission of RS232 signals (hardware handshake) with transmission rates of up to 116 kbit/s. It consists of two identical battery-supplied transceivers connected to each other with an optical fiber. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoRS422 system can be used for the optical transmission of RS422-signals up to a data rate of 1 Mbit/s. It can be used to transmit RS422-signals over long distances or to handle potential ground problems. With the optical transmission and the shielded case, the system is well-equipped for EMI and EME tests.
The optoRS485 system can be used for the optical transmission of RS485-signals up to a data rate of 1 Mbit/s. It can be used to transmit RS485-signals over long distances or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
The optoTTL 12-5-u is used for the optical transmission of 12-volt and 5-volt TTL (Transistor-Transistor Logic) digital signals. Up to 16 digital signals with a sampling rate of 40 MS/s (each channel) can be transmitted. The system consists of a transmitter supplied by batteries, a simplex-62,5/125µm-multimode optical cable, and a receiver – which has integrated batteries as well.
The optoTTL b-12 is used for the optical transmission of 12-volt TTL (Transistor-Transistor Logic) digital signals. Up to 16 bidirectional digital signals with a sampling rate of 40 MS/s (each channel) can be transmitted. The system consists of a transmitter supplied by batteries, a simplex-62,5/125µm-multimode optical cable, and a receiver – which has integrated batteries as well.
The optoUSB-3.0 system can be used for the optical transmission of USB signals up to a data rate of 5Gbit/s according to the USB3.0 standard. It can be used to transmit USB signals over long distances (up to 50m) or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.
Highly Accurate Reference Antenna for Site validation measurements according to CISPR 16-1-4 in fully anechoic rooms
The high-voltage impulse generator PG 12-1440 standard impulse voltages with waveforms 1.2/50 µs or 10/700 µs. The output voltage is adjustable between 0.5 kV and 12 kV. The polarity of the output voltage is selectable. Positive, negative or alternating polarity of the output voltage can be preselected.
High-Voltage Pulse Generator PG 12-400 generates standard impulse voltages with waveform 1.2 / 50 µs acc. to IEC 60060. It is designed for testing impulse dielectric strength of components, insulations, air- and surface flash-over gaps acc. to IEC.
The high-voltage impulse generator PG 14-1960 generates standard impulse voltages with waveforms 10/700 µs. The output waveform can be switched to 0.5/700µs wave. Output voltage is adjustable between 0.2 kV and 14 kV. The polarity of the output voltage is selectable. Positive, negative or alternating polarity of the output voltage can be preselected.
The high-voltage impulse generator PG 20-4000 generates standard impulse voltages with waveform 10/700 µs. The output voltage is adjustable between 1 kV and 20 kV. The polarity of the output voltage is selectable, positive or negative.
The high-voltage pulse generator PG 5-200/ 10-1000 creates standard impulse voltages with waveforms 1.2/50 µs and 10/700 µs. It is designed for dielectric testing of components and systems as well as testing of the electromagnetic compatibility of electronic systems and devices acc. to CCITT-K17/K20/K22, ITU-T/K44, IEC 61000-4-5 etc. They are designed for testing of impulse dielectric strength of components, insulation, air-and surface flash-over gaps as well as for testing surge immunity of devices and systems acc. to CCITT - K22, ITU-T-K44. Picture: incl. option PA503
Highly accurate reference for antenna calibrations, site validations, and EMC conformance tests according to ANSI C63.4, ANSI C63.5, CISPR 16-1, CISPR/A/244/FDIS Uncertainty in the antenna factors: less than 0.15 dB (95.5%) at the resonance frequency
With the help of the most modern technologies and tools we develop a diversity of different systems with the greatest efficiency for the best price.
High-voltage pulse generator producing Ring Wave 0.5 µs / 100 kHz acc. to IEEE 587. The output peak voltage can be preset continuously from 0.2 - 7 kV. Rise time 0.5µs to the first peak, ringing frequency 100 kHz. A built-in voltage divider allows the monitoring of the output voltage waveform. The generator comprises an electronically regulated high-voltage power supply, an energy storage capacitor, a high-voltage/high-current switch, a pulse forming network and control- and monitoring unit. Moreover, the generator includes a Coupling-/Decoupling Network (CDN) for single-phase power supply lines.
STLP 9128 E - Stacked Log Periodic Antenna
The STLP 9128 E special is nearly identical like the STLP 9120 E but with folded longest elements and smaller structure angle.
The SteppIR SY3-EMC Auto-tuned Yagi system is the solution to MIL-STD-461G and RS-103 for radiated susceptibility testing over the 30-200 MHz frequency range – making it the only system in the world that can legitimately claim to reach or exceed the required 200 V/m @1 Meter, at the fundamental frequency.
TEM-6000 STRIPLINE Mod.2020 is a 6 GHz IC Stripline TEM Cell to generate EM fields for testing sample IC devices. It meets the requirements of IEC 61967-2/8, IEC 62132-8 and SAE 1752-3
These measuring systems are used for the optical, digital transmission of analog signals:
These measuring systems are used for the optical, digital transmission of analog signals:
Absolute EMC with strategic partners is offing Antenna Arrays for meeting the high demanding levels required by DO-160 CAT K and MIL-STD-464. Testing for HiRF High Intens Radio Fields up to and exceeding 5000 V/m with commercially available TWT Pulsed or Solid-state amplifiers. Antennas can also be used for HERO testing of MIL-STD-464 System-level requirements.
Absolute EMC with strategic partners is offing Antenna Arrays for meeting the high demanding levels required by DO-160 CAT L and MIL-STD-464. Testing for HiRF High Intens Radio Fields up to and exceeding 7200 V/m with commercially available TWT Pulsed or Solid-state amplifiers. Antennas can also be used for HERO testing of MIL-STD-464 System-level requirements.
Absolute EMC with strategic partners is offing Lens Antenna for meeting the high demanding levels required by DO-160 CAT K and MIL-STD-464. Testing for HiRF High Intens Radio Fields up to and exceeding 5000 V/m with commercially available TWT Pulsed or Solid-state amplifiers. Antennas can also be used for HERO testing of MIL-STD-464 System-level requirements. Lens Antennas focus the field to reach higher levels in the near-field.
Absolute EMC with strategic partners is offing high gain HiRF Antennas for meeting the high demanding levels required by DO-160 CAT K and MIL-STD-464. Testing for HiRF High Intens Radio Fields up to and exceeding 5000 V/m with commercially available TWT Pulsed or Solid-state amplifiers. Antennas can also be used for HERO testing of MIL-STD-464 System-level requirements.
Mast Adapter for Antenna Mast System AM 9144 with 22 mm hole for most Antenna models.
The ABSOLUTE EMC can design and produce Custom Antenna Adaptors. each adaptor is mad for your antennas and tripods or to be used on our Absolute EMC Tripod/monopod stands. Adaptors can be designed to rotate the antenna in the center from horizontal to vertical and position it at the center of gravity of the antenna so it sits easily on the antenna stand. Cost is set based on the size and complexity of the adaptor.
The ABSOLUTE EMC MP-Rotator is attached to a 1" Wood Dowel or tube. It holds a second Dowel/tube that can be rotated 360deg to reach out over an obstacle such as a table. This gives the ability to position a camera or other measurement device over top of a test table or in positions where the base/feet of the EMC Monopole/tripod prohibit easy positioning. Constructed of PLA plastic and includes a 36" Hard Wood Dowel. This rugged adaptor is a good match with the ABSOLUTE EMC Tripod or monopole.
The ABSOLUTE EMC TP-Ball Head is designed to mount a camera or other lightweight item with complete position control. Constructed of PLA plastic, only the 1/4"-20 screw is metal. This rugged adaptor is a good match with the ABSOLUTE EMC Tripod or monopole.
The ABSOLUTE EMC TP-Cable Support is designed to hold wires, Coax, or waveguide parallel to the ground. This is useful in some cases for test setups where the antenna cable needs to be held back and away from the test area. Or in cases where EUT wires can not bend and need to be held up off the floor. Constructed of PLA plastic, slots for feeding velcro straps or zip-ties, and includes velcro straps to tie down cables or a 1m EPS bar. This rugged cable tray is a good match with the ABSOLUTE EMC Tripod or monopole.
The ABSOLUTE EMC TP-Item Tray is designed for holding items up. There is often a need to elevate an item at a specific height. Or, in cases where an antenna or transducer does not have ideal mounting, the tray can hold the item with velcro straps or zip ties. Constructed of PLA plastic, slots for feeding velcro straps or zip-ties, and includes velcro straps. This rugged Item tray is a good match with the ABSOLUTE EMC Tripod or monopole.
The alternating voltage testing set ACT ESTER 6 is suitable for the execution of the high- voltage test from isolations to VDE 0113, VDE 0700 part of 500, VDE of 0551 etc. IEC 60335, IEC 60204, IEC 60598, IEC 60745 The device essentially consists of a regulating transformer with a motor drive, a high voltage transformer, and a control unit. The output voltage can be adjusted by 0 - 10 kV.
The Antenna Mast AM 4.0
The Antenna Mast AM 4.0-0
The Antenna Mast AM 6.0
APL-100kg - 3 Axis DUT Positioner
APTL & EAP Antenna Positioning System
APTL-50kg - 4 Axis DUT Positioner
ASP 1.0/1.8-10 kg Pneumatic Antenna Stand
The Boresight Antenna Mast BAM 4.0-P
The Boresight Antenna Mast BAM 4.5-P
The broadband horn antenna BBHA 9120 A is a linear polarized double ridged horn antenna.
The broadband horn antenna BBHA 9120 B is a linear polarized double ridged horn antenna
The Bavarian Engine System Tester is especially designed as freestanding test stand for installation in electromagnetic absorption chambers in combination with a CISPR test table for component testing according to DIN EN 55025:2018-03 (CISPR 25:2016 + COR1:2017)
The Bavarian Engine System Tester is especially designed as freestanding test stand for installation in electromagnetic absorption chambers in combination with a CISPR test table for component testing according to DIN EN 55025:2018-03 (CISPR 25:2016 + COR1:2017)
The Conformity Assessment Business Model CAB1001 Surge Inrush Compensator enables users to meet the 500A inrush requirement of EN 61000-4-11 irrespective of supply impedance.
The Compact Antenna Mast CAM 4.0-P 12kg
The Compact Antenna Mast CAM 4.0-P
The Compact Antenna Mast CAM 6.0-P 12kg
Designed for applying the impulse output voltage of the Combination Wave Generator to interconnection lines of the equipment under test, acc. to IEC 61000-4-5, Fig10.
Designed for applying the impulse output voltage of the Combination wave/ Ring wave generator to interconnection lines of the equipment under test, acc. to IEC 61000-4-5, Fig9/ IEC 61000-4-12, Fig. 8.
The coupling/decoupling network CDN 504/ 508 U essentially consists of a current compensated decoupling inductor, L1 – L4/L8, and a set of coupling impedances to be inserted in the coupling path.
The capacitive Coupling-/Decoupling Network CDN 5404 is used in combination with the IPG2554 and allows superimposition of damped oscillatory wave up to four I/O signal lines. For eight data lines, two devices can be used.
The capacitive Coupling-/Decoupling Networks CDN 54200/ 74200/ 104200/ 12420 are used in combination with the Multi-CE5 / Multi-CE7 or the Surge generators PG 7-250, PG 10-504, PG 12-804 and allow superimposition of surge and burst test pulses to the 3-phase mains voltage of the device under test.
The Coupling- / Decoupling Networks are used to inject common-mode disturbances to Equipment under Test (EuT). Further, the CDNs provide sufficient decoupling between Auxiliary Equipment (AE) and disturbance signal. The requirements for CDN and their application are described in the standard IEC 61000-4-6 (Immunity to conducted disturbances, induced by radio-frequency fields). CDNs have a common mode impedance of 150 Ohm and are available for a multitude of cable types and connectors.
The Coupling- / Decoupling Networks are used to inject common-mode disturbances to Equipment under Test (EuT). Further, the CDNs provide sufficient decoupling between Auxiliary Equipment (AE) and disturbance signal. The requirements for CDN and their application are described in the standard IEC 61000-4-6 (Immunity to conducted disturbances, induced by radio-frequency fields). CDNs have a common mode impedance of 150 Ohm and are available for a multitude of cable types and connectors.
The Coupling- / Decoupling Networks are used to inject common-mode disturbances to Equipment under Test (EuT). Further, the CDNs provide sufficient decoupling between Auxiliary Equipment (AE) and disturbance signal. The requirements for CDN and their application are described in the standard IEC 61000-4-6 (Immunity to conducted disturbances, induced by radio-frequency fields). CDNs have a common mode impedance of 150 Ohm and are available for a multitude of cable types and connectors.
The Coupling / Decoupling Networks are used to inject common-mode disturbances to Equipment under Test (EuT). Further, the CDNs provide sufficient decoupling between Auxiliary Equipment (AE) and disturbance signal. The requirements for CDN and their application are described in the standard IEC 61000-4-6 (Immunity to conducted disturbances, induced by radio-frequency fields). CDNs have a common mode impedance of 150 Ohm and are available for a multitude of cable types and connectors.
Band 1: 20Hz - 10kHz
CGR 5.4 Cable Guide Rail
The measurement mode switch CMDM 8700 B expands the measurement possibilities of two V-LISN to T- and Delta-LISNs for the profound analysis of interference emissions.
The CNA280 meets the specifications of the standard CISPR 16-1-2 A1, figure C1 (unit type A) and CISPR 16-1-3, app. B,Fig. 9. It is also required to calibrate EMI absorbing clamps like the MDS 21.
Current-viewing-resistors Series ISM allows precise measurement of peak value and waveform of fast rise time current pulses. They excel by high bandwidth, low rise time and high accuracy of resistance value. Below their upper-frequency limit (-3 dB), the current-viewing-resistors ISM behave like pure dc resistors with frequency-independent resistance value. Because of their double coaxial design current-viewing-resistors, ISM are not susceptible to noise and electromagnetic interference.
WSM-type AC/DC current-Viewing resistors are designed for precise measurement of pulsed ac- and dc currents, for instance in industrial drives, pulsed welders and plasma physics apparatuses. Moreover, they are employed in short-circuit test facilities, measurement of start currents of fuel engines etc.
The Dual Antenna Mast DAM 4.0-E
The Dual Antenna Mast DAM 4.0-P
The Antenna Mast AM 6.0
Double Transverse ElectroMagnetic (DTEM) cell or Double Crawford cell (named after its inventor) is used to generate accurate electromagnetic waves over a wide frequency range: DC (0 Hz) to 4 GHz and measure attenuation through materials in a very predictable and accurate way. EM waves generated in the cell propagate in transverse mode and have the same characteristics as a plane wave. It can be used to calibrate E-field broadband probes for testing radiated E-field immunity as well as for measuring radiated emission from a product with a spectrum analyzer/EMI receiver.
Double Transverse ElectroMagnetic (DTEM) cell or Double Crawford cell (named after its inventor) is used to generate accurate electromagnetic waves over a wide frequency range: DC (0 Hz) to 6 GHz and measure attenuation through materials in a very predictable and accurate way. EM waves generated in the cell propagate in transverse mode and have the same characteristics as a plane wave. It can be used to calibrate E-field broadband probes for testing radiated E-field immunity as well as for measuring radiated emission from a product with a spectrum analyzer/EMI receiver.
DYN 4WD - I Dynamometer Integrated into TT 7.5-5t-DYN Turntable
DYN 8WD I-30t Dynamometer - Integrated into TT 16.0-30t-DYN Turntable
Dynamometer for E-Bike
EAP - 15kg Electrical Antenna Positioner
EAS 1.0/2.0 Electric Antenna Stand
EAS 1.5 10kg Electric Antenna Stand
EAS 1.5 Electric Antenna Stand
EAS 365-15kg Electric Antenna Stand
ECAT Lightning Test System (L TS) I s a modular test platform which tests the lightning simulator requirements of RTCA DO-160. Sections 22, and 17 The system is expandable to meet MILSTD-461G-CS117, Boeing. Airbus, EUROCAE and other avionic standards.
Replacement is EMC184045
F-DYN 4WD – 3t Dynamometer
FPP2.3 Manual Field Probe Positioner
FPP2.3/1.5 Field Probe Positioner
F-DYN 4WD – 3t Dynamometer
The GTEMCELL GTEM-1250 Family is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”.
The GTEMCELL GTEM-1500 Family is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”.
The GTEMCELL GTEM-2000 is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”. Compared to other measuring methods like EMC test in anechoic chambers or OATS (Open Area Test Sites), GTEM-cells offer some significant advantages for the testing of small and medium-sized EUT´s (Equipment Under Test) up to a frequency range of 20 GHz. Quick turn arounds of the EUT, as well as, numerous testing variations are easy and fast to handle. Switching from emission to immunity testing requires only simple adjustments from receiver input to the amplifier output.
The GTEMCELL GTEM-2500 is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”. Compared to other measuring methods like EMC test in anechoic chambers or OATS (Open Area Test Sites), GTEM-cells offer some significant advantages for the testing of small and medium-sized EUT´s (Equipment Under Test) up to a frequency range of 20 GHz. Quick turn arounds of the EUT, as well as, numerous testing variations are easy and fast to handle. Switching from emission to immunity testing requires only simple adjustments from receiver input to the amplifier output.
The GTEMCELL GTEM-1750 is a TEM waveguide with the upper-frequency limit extended to the GHz range. It is under consideration as an alternative measurement facility for both radiated emission and immunity measurements. It is included in the standard IEC 61000-4-20 “Emission and Immunity Testing in Transverse Electromagnetic (TEM) Waveguides”. Compared to other measuring methods like EMC test in anechoic chambers or OATS (Open Area Test Sites), GTEM-cells offer some significant advantages for the testing of small and medium-sized EUT´s (Equipment Under Test) up to a frequency range of 20 GHz. Quick turn arounds of the EUT, as well as numerous testing variations, are easy and fast to handle. Switching from emission to immunity testing requires only simple adjustments from receiver input to the amplifier output.
Pyramidal standard gain horn Antenna optimized for far-field gain
Pyramidal standard gain horn Antenna, optimized for far-field gain
Pyramidal standard gain horn Antenna optimized for far-field gain
Pyramidal standard gain horn Antenna optimized for 1-meter testing.
Pyramidal standard gain horn Antenna optimized for 1 meter gain and testing.
Pyramidal standard gain horn Antenna optimized for gain at 1 meter
Power frequency magnetic fields acc. to IEC 61000-4-8 Test levels continuous 3 / 10 / 30 / 100 / 300 A/m. Test level 1000 A/m short, with a special transformer. Pulsed magnetic fields acc. to IEC 61000-4-9 Test levels 100 / 300 / 1000 A/m
The high-voltage measurement instruments HVM 2015 consist of a measuring amplifier for universal use with a digital touch display, a built-in high-voltage divider for direct measurement up to 10 kV / optional 20 kV and an external input for an external high-voltage divider, HVT***RCR, measurement, and display of voltages up to 300 kV. The HVM 2015 is designed for measuring ac- and dc- voltages and allows in addition measurement of the peak value of lightning and switching pulse voltages.
The Broadband high-voltage dividers series HVT...RCR are state-of-the-art measuring equipment with excellent high-frequency transmission characteristics. The high-voltage impedance consists of a precise metal film resistor and a high-voltage capacitor with a series damping resistor in parallel. The measuring cable with the termination network is an essential part of the divider. The termination network can be adjusted for an oscilloscope input impedance of 1 M? // 10 - 30 pF.
The broadband horn antenna HWRD 750 is a linear polarized double ridged horn antenna for receive and transmit applications made of aluminum with waveguide flange.
The broadband horn antenna HWRD 750 is a linear polarized double ridged horn antenna for receive and transmit applications made of aluminum with waveguide flange.
Linear polarized half-wave dipole with 1:1 balun and fixed element length for field strength measurements at instrument landing systems (ILS).
The front-chopped-wave generator IPG 506 is used for measuring dc spark-over voltage and impulse spark-over voltage of over-voltage protectors according to CCITT / ITU-T, K12. DC spark-over voltage: A linearly rising voltage, rate of rise 100 V/s up to 640 V, simultaneous plus and minus, is connected to the device under test. The spark-over voltage of these two simultaneous impulses is measured and shown in the display. Impulse spark-over voltage: A linearly rising impulse voltage, simultaneous plus, and minus, rate of rise 100 V/µs up to 5000 V/µs, open loop amplitude 5000 V, is connected to the device under test. The spark-over voltage is measured by use of a peak detector. The results of these two simultaneous impulses are shown on the display. The picture is shown with PA 503 Option.
The front-chopped-wave generator IPG 506 is used for measuring dc spark-over voltage and impulse spark-over voltage of over-voltage protectors according to CCITT / ITU-T, K12. Dc spark-over voltage: A linearly rising voltage, rate of rise 100 V/s up to 640 V, is connected to the device under test. The spark-over voltage measured is shown in the display. Impulse spark-over voltage: A linearly rising impulse voltage, rate of rise 100 V/µs up to 5000 V/µs, open loop amplitude 5000 V, is connected to the device under test. The spark-over voltage is measured by use of a peak detector. The result is shown in the display. A built-in impulse voltage divider allows measurement of the spark-over voltage by use of an externally connected scope. Picture: incl. Option PA 503
The High-Voltage Pulse Generator Type IPG 809 is designed for dielectric testing of X- and Y-capacitors with standard impulse voltages 1.7/46 µs –0/+50% up to 8 kV acc. to IEC 60384-14, EN 132400, VDE 0565 etc. Picture: incl. Option PA 503
KE 2.5-R Tilt Device
MAP 2.5-T Manual Antenna Positioner
MAS 2.0 Manual Antenna Stand
MAS 2.0-10kg Manual Antenna Stand
MAS 2.0-15kg Manual Antenna Stand
MAS 3162-01 Manual Antenna Stand
MAS 4.0-C Manual Antenna Stand
There are many options for products, adding more capability and ease of use. It is best to talk with an engineer to see how we can meet your video and audio needs.
These Open TEM-cells are well suited for immunity testing of small objects according to European (CE) and automotive standards (SAE J1113-25) or for biological experiments. The advantage of these OTEM cells is that they are open and it is very easy to control the functions of the EUT (Equipment Under Test). The applications are for instance the immunity testing of watches, pagers, telephones or PCB’s.
OTAP-10kg Over The Air Positioner
PAS 2.0 Pneumatic Antenna Stand
PAS 2.0-10kg Pneumatic Antenna Stand
The polarisation swivel fixture PDG 9211 allows changing the polarisation of larger horn antennas by a single person easily. With the four locking points, the antenna can snap in increments of 90° angles to horizontal or vertical polarisation.
The PG 10-150 consists essentially of a variable transformer with motor drive, isolating transformer, filter circuit, DUT with parallel capacitor and a high-voltage pulse generator. All settings in the power section are made on the control unit. The pulse-forming networks according to IEC 60384-14 are adjustable.
The HV-Pulse generator PG10-200 / PG12-360 is used for impulse voltage tests of solar modules (photovoltaic panels) with the standard surge voltage waveform 1.2/50 µs according to IEC 60060-1/2 up to 10 kV acc. to. IEC 61730-1/2 / EN 61730-1. For the surge voltage tests of solar modules, these are enveloped with a copper foil as described in the relative above standard. After that the connections of the solar modules are tested with surge voltage against the copper foils. The tight copper foil envelope required by the standard results in comparatively high capacitances of approx. 0 - 183 nF, which is switched in parallel to the output of the impulse generator.
The Combination Wave Generator PG 10-504 is a combined impulse-current-/impulse-voltage generator which, for high-impedance loads, RL > 100?, delivers a standard impulse voltage with waveform 1.2/50µs and, for short-circuited output, a standard impulse current with waveform 8/20µs. The generator allows surge testing of components and devices, the galvanic coupling of surges to cable shields, shielded enclosures and cabinets as well as testing electromagnetic compatibility, EMC, of electronic devices and systems against pulsed and conducted interference.
The Combination Wave Generator PG 12-804 is a combined impulse-current-/impulse-voltage generator which, for high-impedance loads, RL > 100?, delivers a standard impulse voltage with waveform 1.2/50µs and, for short-circuited output, a standard impulse current with waveform 8/20µs. The generator allows surge testing of components and devices, galvanic coupling of surges to cable shields, shielded enclosures and cabinets as well as testing electromagnetic compatibility, EMC, of electronic devices and systems against pulsed and conducted interference.
The HV-Pulse generator PG20-100 is used for impulse voltage tests of solar modules (photovoltaic panels) with the standard surge voltage waveform 1.2/50 µs according to IEC 60060-1/2 up to 20 kV acc. to. IEC 61730-1/2 / EN 61730-1.
The Surge Test Generator PG 24-2500 is a combined impulse current-/impulse-voltage generator which, for high-impedance loads, RL > 100?, delivers a standard impulse voltage with waveform 1.2/50µs and, for short-circuited output, a standard impulse current with waveform 8/20µs, as defined by IEC 60. The peak value of the pulse output voltage can be adjusted from 0.5 kV to 24 kV. The peak short circuit current amplitude is 12 kA.
The VARISTOR-TESTER PG 6-250 is a compact test generator for testing the surge current capability of varistors. The unit contains a combination wave generator and a surge voltage generator acc. to CCITT, ITU-T.
The high-voltage impulse generator PG 6-364 generates standard impulse voltages with waveforms 1.2/50 µs and 10/700 µs. The Output voltage is adjustable between 0.2 kV and 6 kV. The polarity of the output voltage is selectable. Positive, negative or alternating polarity of the output voltage can be preselected. The generator is designed for dielectric testing of components and systems as well as testing of the electromagnetic compatibility of electronic systems and devices acc. to CCITT K17/K20/K22, ITU-T/K44, IEC 61000-4-5, VDE 0847.
The Pulse Voltage Divider PVD 10-2 & PVD 10-3 have been designed to measure the pulse output of surge generators, e.g. a combination wave generators. It consists of the divider and a double-shielded coaxial cable. The measuring cable with the termination network is an essential part of the divider. The termination network can be adjusted for an oscilloscope input impedance of 1 M? // 10 - 30 pF.
Indexing adapter RA 9215 for fast and precise polarisation change (90° steps)
RefRad X Comb Generator The newly developed battery-operated comb generator RefRad X is specially designed for checking the quality of radiated and conducted EMC and EMF tests. Initially introduced at the beginning of 2008, several modifications in the print design have enhanced the RefRad X considerably.
The Vertical Coupling Plate (VCP) is used in conjunction with ESD generators to simulate indirect discharges on metallic objects that are near a test object. The bleeder resistors contained in the ground wire of the VCP serve to prevent the applied charge from vanishing immediately after the discharge of the ESD generator to the VCP, thereby increasing the effect of the ESD test.
2m Grounding cable for ESD immunity tests
Avalible ESD Test Tips for replacment or different aplications.
ESD - Generators verified according to the standard International Electro technical Commission 61000-4-2, ISO 10605 and other. The measurements of the single pulses take place with a special 2 ohm shunt. For the correct verification of the ESD impulses an oscilloscope is necessary with a minimum bandwidth of - 2 GHz acc. IEC 61000-4-2, 2008 and - 1 GHz acc. ISO 10605, 2008. The ESD verification set SESD 8800-4 works up to 4 GHz and fulfilled the request of the double bandwidth regarding to the measurement bandwidth.
SG 4.5 – 10 kg – 0.01 Spherical Gantry with TT 6.0 – 5 t – 0.01 Turntable
The testing and performance evaluation of EMC test sites requires precision field-strength measurements. Seibersdorf is the European market leader in this business. We offer these measurements as an accredited laboratory. Since 1997 we are also present in the Asian market. Due to intensive investigation in this field during recent years many results have been adopted in international standards (e.g. CISPR 16 series).
STLP 9128 C stacked Logarithmic Periodic Dipole Antenna
The stacked Log Periodic Dipole Antenna (Stacked LPDA) consists of two ordinary Log.-Per. structures. The excellent characteristics (flat gain over a large bandwidth, low SWR) of the ordinary LPDA designs could be maintained using the stacked LPDA design. The stacked design helps to focus the directional pattern of the H-plane somewhat, resulting in a typical gain improvement of 2.5 dB compared to an ordinary LP antenna.
The stacked Log Periodic Dipole Antenna (Stacked LPDA) consists of two ordinary Log.-Per. structures. The excellent characteristics (flat gain over a large bandwidth, low SWR) of the ordinary LPDA designs could be maintained using the stacked LPDA design. The stacked design helps to focus the directional pattern of the H-plane somewhat, resulting in a typical gain improvement of 2.5 dB compared to an ordinary LP antenna.
Stacked Logarithmic-Periodic Broadband Antenna for Linear polarised RX- and TX applications in the microwave frequency range.
The Boresight Antenna Mast TAM 4.0-E
The Boresight Antenna Mast TAM 4.0-P
TD 1.5-10kg Turn Device
TD 1.5-2kg Turn Device
Transverse ElectroMagnetic (TEM) cell or Crawford cell (named after its inventor) is used to generate accurate electromagnetic waves over a wide frequency range: DC (0 Hz) to GHz. EM waves generated in the cell propagate in transverse mode and have the same characteristics as a plane wave. It can be used to calibrate E-field broadband probes for testing radiated E-field immunity as well as for measuring radiated emission from a product with a spectrum analyzer/EMI receiver.
Linear polarized half-wave dipole with 1:1 balun and fixed element length for measurements at TETRA (terrestrical trunked radio) networks.
Free-standing turntable for anechoic Chambers.
Other diameters and load capabilities are available on request.
Free-standing turntable for anechoic Chambers.
Other diameters and load capabilities are available on request.
The turntable TT 1.2 SI is specially designed for flush-mounted installation in semi-anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions when operated with the FCU3.0 or NCD Controller
Other diameters and load capabilities are available on request.
Free-standing turntable for anechoic Chambers.
Other diameters and load capabilities are available on request.
The turntable TT 1.2 WI is especially for installation in fully anechoic electromagnetic absorption chambers. The carrier plate is made of waterproof, laminated and lacquered wood. There is a division plate between the wooden plates, which can be covered with ferrite tiles in order that there are no metal parts above the ground plane.
Other diameters and load capabilities are available on request.
The turntable TT 1.5 SI is specially designed for flush-mounted installation in semi-anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions when operated with the FCU3.0 or NCD Controller
Other diameters and load capabilities are available on request.
Free-standing turntable for anechoic Chambers.
Other diameters and load capabilities are available on request.
The turntable TT 1.5 WI is especially for installation in fully anechoic electromagnetic absorption chambers. The carrier plate is made of waterproof, laminated and lacquered wood. There is a division plate between the wooden plates, which can be covered with ferrite tiles in order that there are no metal parts above the ground plane.
Other diameters and load capabilities are available on request.
The turntable TT 2.0 SI is specially designed for flush-mounted installation in semi-anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel.
A 285 mm diameter opening in the turntable's center allows inserting power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU3.0 or NCD Controller
Other diameters and load capabilities are available on request.
Free-standing turntable for anechoic Chambers.
Other diameters and load capabilities are available on request.
The turntable TT 2.0 WI is especially for installation in fully anechoic electromagnetic absorption chambers. The carrier plate is made of waterproof, laminated and lacquered wood. There is a division plate between the wooden plates, which can be covered with ferrite tiles in order that there are no metal parts above the ground plane.
Other diameters and load capabilities are available on request.
The turntable TT 3.0-3t is especially designed for flush mounted installation in semi anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel. It is 3.0m in diameter and has a 3000kg load capacity.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU 3.0 or NCD Controller.
Other diameters and load capabilities are available on request.
The turntable TT 4.0-4t is especially designed for flush mounted installation in semi anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel. It is 4.0m in diameter and has a 4000kg load capacity.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU 3.0 or NCD Controller.
Other diameters and load capabilities are available on request.
The turntable TT 5.0-5t is especially designed for flush mounted installation in semi anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel. It is 5.0m in diameter and has a 5000kg load capacity.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU 3.0 or NCD Controller.
Other diameters and load capabilities are available on request.
The turntable TT 6.0-10t is especially designed for flush mounted installation in semi anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel. It is 6.0m in diameter and has a 10000kg load capacity.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU 3.0 or NCD Controller.
Other diameters and load capabilities are available on request.
The turntable TT 8.0-10t is especially designed for flush mounted installation in semi anechoic electromagnetic absorption chambers. The carrier plate is made of stainless steel. It is 8.0m in diameter and has a 10000kg load capacity.
A 285 mm diameter opening in the turntable's center allows the insertion of a power supply for testing.
The LAN (TCP/IP) - interface provides an additional control option for all functions, when operated with the FCU 3.0 or NCD Controller.
Other diameters and load capabilities are available on request.
These measuring systems are used for the optical, digital transmission of analog signals:
Linear polarized Logarithmic Periodic Broadband Antenna (Aluminium tubing) for Receive and Transmit Applications
Linear polarized Logarithmic Periodic Broadband Antenna combined with a 4:1 Broadband Dipole (Aluminium tubing) for Receive and Transmit Applications.
Linear polarized Logarithmic Periodic Broadband Antenna combined with a 4:1 Broadband Dipole (Aluminium tubing) for Receive and Transmit Applications.
Linear polarized Logarithmic Periodic Broadband Antenna with Broadband Dipole (Aluminium tubing) for Receive and Transmit Applications.
A non-metallic mast adapter for most lightweight Antenna models with 22 mm tube minimizes reflections
Mast Adapter for AM 9144 with 22 mm hole for most Antenna models
AA 9205 Mast Adapter for Antenna Mast System AM 9144
Antenna adapter to fix STLP 9128 E, STLP 9128 E special, STLP 9128 D, STLP 9128 D special on AM 9144.
Adapter to convert a 3/8" female thread to 22 mm tube e.g. to fix BBHA 9170 on AM 9104.
Detachable Antenna Mast System (glass-fiber tubing) for VHF-UHF Antennas manual height scanning 0.4 m to 4 m insulated mast and antenna box with 0°/90° detents zinc-plated / stainless steel 3-leg mast foot
The broadband horn antenna BBHA 9120 E is a linear polarized double ridged horn antenna
The broadband horn antenna BBHA 9120 E is a linear polarized double ridged horn antenna
The broadband horn antenna BBHA 9120 G is a linear polarized double ridged horn antenna
The BBHA 9120 K is a linear polarized high gain horn antenna for immunity testing at short distances, specially optimized for Automotive 600 V/m Pulse Radar Test
The broadband horn antenna BBHA 9120 LF is a linear polarized double ridged horn antenna.
Discontinued - See BBV 9721
In order to be compliant to the standards ECE R10.06, CISPR 12 and PSA (which require a capacitance of in total 1 uF parallel to a resistance of 1 MΩ at the input side of the LISN) a 0.9 μF capacitor like the CAP 0.9-400 has to be connected to the mains terminals of the NNHV 8123-400 or NNHV 8123-800 LISN.
To be compliant to the standards DEF STAN 59 and DO 160 a 10 μF capacitor like the CAP 10 has to be connected to the mains connectors of the LISN.
To be compliant to the standards DEF STAN 59 and DO 160 a 10 μF capacitor like the CAP 10 has to be connected to the mains connectors of the LISN.
The capacitive Coupling-/Decoupling Network CDN 10216 & 12216 is used in combination with the Surge generators PG 7-250, PG 10-504 or PG 12-804 and allows superimposition of surge test pulses to the single-phase power supply voltage of the device under test. The test set-up is suitable for immunity testing of electronic systems and devices according to IEC 61000-4-4, IEC 61000-4-5 and IEEE 587.
The capacitive Coupling-/Decoupling Networks CDN 2402/2410 are used in combination with the Multi-CE5 and allows superimposition of surge and burst test pulses to up to four I/O signal lines. The test set-up is suitable for surge immunity testing of electronic systems and devices according to IEC 61000-4-4, IEC 61000-4-5 and IEEE 587.
The capacitive Coupling-/Decoupling Network CDN 2802 is used in combination with the Multi-CE5 & Multi-CE7 and allows superimposition of surge and burst test pulses to up to eight I/O signal lines.
CISPR 32 Annex C section C.2.2.1 contains a requirement to identify emissions that are intermittent in nature and apply timing criteria to determine if the emission complies with the standard, irrespective of level.
Adapter for Schwarzbeck antennas with 22 mm tube on EMCO mast.
The impulse generator system EMC 2015 has been designed for dielectric testing of electric components, over-voltage protectors and electronic circuits acc. IEC, VDE etc. The basic version generates impulse currents with waveform 8/20 µs and a peak value of up to 25 kA. In addition, various other plug-ins are also available.
EMCL- NW 10 / MN-1 Matching Network • For use with the EMCL-20 in the frequency range 10 kHz – 150 kHz • For use with the CDN BCI-P1 in the frequency range 10 kHz – 150 kHz
The ESD-Sense has been developed with EMC test laboratories in mind to enable a “go / no-go” verification of the ESD generator output prior to test.
The ESLP 9145 is a log-periodic antenna
The controller FCU3.0 is suited for the operation of up to four devices with multiple axis of motion. Those devices can be any combinations of antenna masts, turntables, cable guide rails or any other positioning equipment. Furthermore, the FCU3.0 permits the operation in manual, semi-automatic and remote control of multiple devices simultaneously via Ethernet.
Other diameters and load capabilities are available on request.
The controller FCU3.0 S is suited for the operation of one(1) devices with multiple axis of motion. Those devices can be any combinations of antenna masts, turntables, cable guide rails or any other positioning equipment. Furthermore, the FCU3.0 S permits the operation in manual, semi-automatic and remote control of one devicey via Ethernet.
Other diameters and load capabilities are available on request.
The controller FCU3.0 S Lite is suited for the operation of one(1) device with one axis of motion. Furthermore, the FCU3.0 S permits the operation in manual, semi-automatic and remote control of one devicey via Ethernet.
Other diameters and load capabilities are available on request.
The HCC consists essentially of a control unit, a capacitor charger and other auxiliary equipment for the operation of generators.
HFS 1546 Handheld magnetic field meter
The High-Voltage Test-Set HVTS 30-20/ 30-40 is designed for high-voltage testing of the electrical insulation of electrical equipment and electrical systems. Test voltage adjustable up to 30 kV, 1-20 mA/ 1-40mA. The High-Voltage Test-Set HVTS mainly consists of a high-voltage transformer and a control and display unit. The primary voltage of the high-voltage transformer is generated by a motor-driven variac. The output voltage can be selected from 0.2 to 30 kV with a voltage rise adjustable from 0,4 kV/sec to 30 kV/sec.
The High-Voltage Test-Set HVTS 5010 is designed for high-voltage testing of the electrical insulation of electrical equipment and electrical systems. The test voltage is adjustable up to 50 kV, 1 - 10 mA. The High-Voltage Test-Set HVTS 5010 mainly consists of a high-voltage transformer and a control unit. A motor-driven variac generates the primary voltage of the high-voltage transformer. The output voltage can be selected from 2.0 to 50 kV with a voltage rise adjustable from 3 kV/sec to 50 kV/sec. The maximum output current is 10 mA. The output voltage is measured by a built-in capacitive voltage divider.
The Antenna Hinge Joint is a device made of high-grade insulating material to change the polarisation of large preferably double-boom antennas such as LOG-PER models.
The Multiple Control Device NCD is suited for the operation of optionally up to 8 devices with multiple axis of motion. Those devices can be any combinations of antenna masts, turntables, cable guide rails or any other positioning equipment.
This controller NCD permits the operation in manual, semi-automatic and remote-control mode via IEEE 488.2 (GPIB bus), or optionally other interfaces, of multiple devices simultaneously.
The safety test cabinets PA 50* are designed for high-voltage testing of components and PCB's etc.
The SURGE TEST GENERATOR PG 10-10000 delivers surge current pulses with the waveform 8/20µs, acc. to IEC 60. It was designed for testing surge protection devices. Moreover, the generator can be used for testing two-gap over-voltage protectors. It delivers surge current pulses synchronous at two impulse current outputs, peak value adjustable 0.5 - 50 kA for each output. Positive or negative polarity of output current can be selected.
The surge current generators PG 10-12500 generate impulse currents with waveform 10/350 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG 10-2500 generate impulse currents with waveform 10/700 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG 10-25000 generate impulse currents with waveform 10/350 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG 10-8000 generate impulse currents with waveform 10/1000 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG 10-6000 generate impulse currents with waveform 10/50 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG 10-7000 generate impulse currents with waveform 10/350 µs acc. to IEC, VDE etc.. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generator is designed for testing electrical components, over-voltage protectors and electronic circuits. It possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators generate standard impulse currents with waveform 8/20 µs according to IEC, EN, VDE. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to the maximum value of the special type of generator. The generators are designed for testing electrical components, overvoltage protectors and electronic circuits. They possess an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG20-10k generates standard impulse currents with waveform 8/20 µs according to IEC, EN, VDE. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to 70 kA. The generator is designed for testing electrical components, over-voltage protectors and surge protection devices. The generator possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
The surge current generators PG20-14000 generate standard impulse currents with waveform 8/20 µs according to IEC, EN, VDE. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to 100 kA. The generator is designed for testing electrical components, over-voltage protectors and surge protection devices. The generator possess an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude
The surge current generators PG20-7000 generates standard impulse currents with waveform 8/20 µs according to IEC, EN, VDE. Pulse current output amplitude is controlled by preset charging voltage and can be adjusted up to 50 kA. The generator is designed for testing electrical components, over-voltage protectors and surge protection devices. The generator possesses an electronically regulated high-voltage power supply, which allows an excellent reproducibility of the pulse output amplitude.
HV - Impulse generator PG 4-641 creates standard voltage and current pulses with a waveform 10 / 160 µs. The output voltage is adjustable up to 3600 V, the maximum short circuit current amplitude is 480 A peak. Positive or negative polarity of output voltage can be selected. A built-in voltage divider 1000:1 allows monitoring of the impulse output waveform during testing. The short circuit current wave can be monitored by the use of the built-in shunt.
The high current pulse generator PG 5-4500 has been designed for pulse-current testing of electric components, overvoltage protectors and electronic circuits acc. IEC, VDE etc.
The high current pulse generators PG 6-400 / PG 6-200 are designed for surge testing of electrical components, over-voltage protectors and electronic circuits acc. to IEC, VDE etc. They generate standard impulse currents with waveform 8/20 µs. Short circuit output current amplitude is selectable from 0.2 up to 10 kA by adjustment of the charging voltage of the internal energy storage capacitor.
The high-current pulse generator PG 6-2402 is designed for surge current testing of electrical components, over-voltage protectors and electronic circuits acc. to IEC, VDE etc. It generates standard impulse currents with waveform 8/20?s. Pulse current output amplitude can be set to 2 - 50 kA.
Positioner for lightweight antennas like SBA 9113 with 420 NJ. The positioner consists of 1 piece of glass fiber tube 22 mm thick, 1000 mm long, an adapter AA 9203 is mounted to the tube. The other end of the tube carries a 3/8 inch male camera thread.
Pneumatic polarisation shifter with a 2-way pneumatic cylinder for all Schwarzbeck antennas with a 22 mm tube on AM 9144. Compressed air required.
For high-voltage testing of components, DUTs are available for various pulse generators. The use of these DUTs significantly reduces placement times and significantly increases throughput.
Linear polarized stacked Logarithmic Periodic Broadband Antenna with aluminium tubing for immunity testing with extremely high power.
The Surge Sense has been developed with EMC test laboratories in mind to enable a “go / no-go” verification of the surge generator output prior to test.
Swivel handle for light antennas
TA 9204 Thread Adapter with 3/8" female and 1/4" male threads. Mainly for American antenna brands.
TA 9205 Thread Adapter with 1/4" female and 3/8" male threads. (For camera tripods, not for AM 9144)
TA 9206 Thread Adapter with 3/8" female and 5/8" male threads. (Geodesy)
The TBCAS1 coaxial adapter set contains 44 pieces of the most common 50 Ohm coaxial adapters in a beechwood box
The H20, H10, H5, and E5 are magnetic field (H) and electric field (E) probes for radiated emissions EMC pre-compliance measurements. The probes are used in the near field of sources of electromagnetic radiation. They serve to locate and identify potential sources of interference within the building blocks of electronic assemblies. The probes act similar to wide bandwidth antennas, picking up radiated emissions from components, PCB traces, housing openings or gaps, and from any other parts that could be emitting RF. The probes are usually connected to a spectrum analyzer. Scanning the probe over the surface of a PCB assembly or housing quickly identifies locations that emit electromagnetic radiation. By changing to a probe with a smaller size, the origination of the emissions can be further narrowed down.
The H20, H10, H5, and E5 are magnetic field (H) and electric field (E) probes for radiated emissions EMC pre-compliance measurements. The probes are used in the near field of sources of electromagnetic radiation. They serve to locate and identify potential sources of interference within the building blocks of electronic assemblies. The probes act similar to wide bandwidth antennas, picking up radiated emissions from components, PCB traces, housing openings or gaps and from any other parts that could be emitting RF. The probes are usually connected to a spectrum analyzer. Scanning the probe over the surface of a PCB assembly or housing quickly identifies locations which emit electromagnetic radiation. By changing to a probe with a smaller size, the origination of the emissions can be further narrowed down. With TBWA2 WIDEBAND AMPLIFIER/20DB
The H20, H10, H5, and E5 are magnetic field (H) and electric field (E) probes for radiated emissions EMC pre-compliance measurements. The probes are used in the near field of sources of electromagnetic radiation. They serve to locate and identify potential sources of interference within the building blocks of electronic assemblies. The probes act similar to wide bandwidth antennas, picking up radiated emissions from components, PCB traces, housing openings or gaps and from any other parts that could be emitting RF. The probes are usually connected to a spectrum analyzer. Scanning the probe over the surface of a PCB assembly or housing quickly identifies locations which emit electromagnetic radiation. By changing to a probe with a smaller size, the origination of the emissions can be further narrowed down. With TBWA2 WIDEBAND AMPLIFIER/40DB
The Trans Sense has been developed with EMC test laboratories in mind to enable a “go/no-go” verification of the transient generator output prior to the test.
The UHALP 9108 A is a polarized log-periodic antenna
The USLP 9142 is a log-periodic antenna
The USLP 9143 is a log-periodic antenna
The USLP 9143 B is a log-periodic antenna
These measuring systems are used for the optical, digital transmission of analog signals:
These measuring systems are used for the optical, digital transmission of analog signals:
The VDips-Sense has been developed with EMC test laboratories in mind to enable a “go / no-go” verification of the Voltage Dip generator output prior to test.
Diode Pulse Limiter with built-in 20 dB high power attenuator and fuse lamp to protect sensitive measuring equipment when measuring spectra with high energy. Thanks to the built-in fuse lamp, serious overload situations of sensitive equipment can be recognized fast and reliably. A replacement bulb is placed inside the unit. The pulse limiter prevents expensive equipment defects. The very flat frequency response allows high measurement accuracy, even if only a few sample values are used for correction.
Diode Pulse Limiter with built-in 10 dB high power attenuator and fuse lamp to protect sensitive measuring equipment when measuring spectra with high energy. Thanks to the built-in fuse lamp, serious overload situations of sensitive equipment can be recognized fast and reliably. A replacement bulb is placed inside the unit. The pulse limiter prevents expensive equipment defects. The very flat frequency response allows high measurement accuracy, even if only a few sample values are used for correction.
The VULP 9118 A is a polarized log-periodic antenna
The VULP 9118 B is a polarized log-periodic antenna
The VULP 9118 C is a polarized log-periodic antenna
The VULP 9118 D is a polarized log-periodic antenna
The VULP 9118 E is a polarized log-periodic antenna
The VULP 9118 F is a polarized log-periodic antenna
The VULP 9118 G is a polarized log-periodic antenna
The VULP 9118 H is a polarized log-periodic antenna
The VUSLP 9111 is a polarized log-periodic antenna
The VUSLP 9111 B is a polarized log-periodic antenna
The VUSLP 9111 E is a polarized log-periodic antenna
The VUSLP 9111 F is a demountable log-periodic antenna
The VUSLP 9111-1000 is a polarized log-periodic antenna
The VUSLP 9111-400 is a polarized log-periodic antenna
XSLP 9142 Dual Polarized UHF-SHF Log.-Per. Antenna
XSLP 9143 Dual Polarized UHF-SHF Log.-Per. Antenna
This is for JLR-EMC-CS V1.0 Amendment 4 test CI 250. This provides the millisecond / sub-millisecond timing pulses over a 60 s period for each of the four required test sequences for the CI 250 immunity to ground offset test. It feeds directly into the "Trigger In" on the arbitrary waveform generator to produce the required transient trigger sequence.
This is one-off design and development of the transient generator specified in JLR Specification JLR -EMC-CS v1.0 Amendment 4.
It gives a good reproduction of the required CI 220 and RI 130 transients.
CDN ABCL-20 Decoupling Clamp for immunity according to IEC / EN 61000-4-6 Ed. 4.0 100 kHz – 1000 MHz Features: For additional decoupling at immunity testing according to IEC / EN 61000-4-6 Suitable for cables up to 20mm diameter
EM Clamp for immunity tests IEC / EN 61000-4-6 Ed. 4.0 • EM Clamp for immunity testing of cables with up to 20 (35) mm diameter • High coupling factor: less than 15 watts amplifier output power is required to obtain a test level of 10 V • Calibration unit and calibration data are supplied with each unit.
Transformers
fixtures and adapters to measure filters
ferrites and other passive components.
Detailed product list and data sheets on request.
E-field, 9 kHz - 300 MHz, probe for handheld spectrum analyzer of all main manufacturers.
Usable with the following devices:
H-field, 9 kHz - 300 MHz, probe for handheld spectrum analyzer of all main manufacturers.
Usable with the following devices:
The pulse generator IPG 250 is designed for measuring the step response of high-impedance networks, for instance voltage dividers, oscilloscope probes etc. The generator excels by calibrated adjustment of output amplitude, short rise time and flat pulse top. The output pulse amplitude can be adjusted by use of a 10-turn potentiometer from 0 to 250 V. Positive and negative polarity can be selected.
The High-Voltage Pulse Generator Type PG 6-401 is designed for dielectric testing of X- and Y-capacitors with standard impulse voltages 1.6/47 µs up to 6 kV acc. to IEC 384-14, etc. The generator has the same principle of operation as the IPG 809 but allows testing capacitance values of 33 nF - 470 nF. Picture: incl. Option PA 503
Our custom-designed probe stand is ideal for mounting radiated immunity probes, sound probes, and small cameras.
The RRAH 9286 is an antenna holder for antennas with a 22 mm tube for vertical mounting on a car roof rack. The antenna holder is suitable for all standard roof rack carriers with a max. the cross-tube dimension of 44x30 mm. The mounting distance is adjustable from 82-92 cm at 2.5 cm intervals (center-center).
The RSH 113 is a crossed dipole antenna, consisting of two shortened half-wave-dipoles. The size reduction is achieved by the use of top-loading discs. The design frequency range is from 108 to 118 MHz, typical applications are measurements at instrument landing systems (ILS-Localizer). The RSH 113 has a nearly omnidirectional pattern and comes with horizontal polarisation. The antenna can be used for both, Receive and Transmit Applications and comes with a nominal impedance of 50 ?.
IEC / EN 61000-4-2 The test generator SESD 216 simulates electrostatic discharge as defined in the standard IEC / EN 61000-4-2. Depend on the Equipment Under Test (EUT) and the test set-up for laboratory tests the IEC standard shows two test methods; Air discharge (AIR) and Contact discharge (CON); Test voltage max. 16,5 kV AIR, max. 10,0 kV CON; Discharge impedance 150pF/330 Ohm (IEC); Battery or mains operation; Predefined tests - standard and other
IEC / EN 61000-4-2 The test generator SESD 230 simulates electrostatic discharge as defined in the standard IEC / EN 61000-4-2. Depend on the Equipment Under Test (EUT) and the test set-up for laboratory tests the IEC standard shows two test methods; Test voltage max. 30,0 kV AIR und CON; Discharge impedance 150pF/330 Ohm (IEC); Battery or mains operation; Predefined tests, standard and other
PLC bypass according to CISPR 25, Annex E.4.3, Figure E.7. Can be used in AC and DC systems.
The TBAS1 RF 2W attenuator set
The TBAS2 RF SMA attenuator/termination set consists of a 3dB, 6dB, 10dB, 15dB, 20dB and 30dB SMA attenuators in a beechwood box. Furthermore, it contains two pieces SMA 50 Ohm terminations.
The TBAS3 RF 10W attenuator set consists of a 3dB, 6dB, 10dB and 20dB attenuator in a beech wood box.
The TBATTs are DC - 3GHz attenuators available with 3 - 30dB attenuation in 10-100W versions. N male to N female connections.
The TBBCI1-200K280 is a snap-on Bulk Current Injection probe with a frequency range 10 kHz – 300 MHz, for testing according according to the IEC / EN 61000-4-6 standard.
The TBBCI1-800K420 is a snap-on Bulk Current Injection probe that has been designed primarily for conducted immunity testing of automotive products in the frequency range 1 MHz to 400 MHz, according to standard ISO11452-4.
The TBCCP1-2K70 is a coaxial RF current monitoring probe with a very flat response from 2 kHz to 70 MHz and is characterized over the frequency range from 10 Hz to 100 MHz.
The TBCCP1-3K100 is a coaxial RF current monitoring probe with a 3 dB bandwidth from 3 kHz to 100 MHz and a very flat response from 9 kHz to 30 MHz.
The TBCCP1-400K600 is a coaxial RF current monitoring probe with a 3 dB bandwidth from 400 kHz to 600 MHz and a very flat response from 1 MHz to 200 MHz.
The TBCDN-M1 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6. The TBCDN-M1 is compliant with IEC 61000-4-6 Annex D2.
The TBCDN-M2 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6. The TBCDN-M2 is compliant with IEC 61000-4-6 Annex D2.
The TBCDN-M3 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
The TBCDN-M4 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
The TBCDN-M5 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
The TBCG1 is a radiating comb generator with an internal antenna and a base frequency of 100MHz. It radiates a comb spectrum characterized up to 6GHz. The comb generator is built and characterized to serve as a rough reference for testing radiated noise measurement set ups in anechoic chambers, TEM/GTEM cells, shielded chambers, etc.
The TBCG2 is a passive, step recovery diode based comb generator/frequency multiplier. It is optimized for moderate drive power and spectrum flatness in the frequency range 1 MHz to 2.5GHz. The recommended drive power is +10 dBm to +20 dBm The frequency range for the drive signal is 1 MHz to 350MHz
The TBCG3-CN comb generator is primarily designed to verify conducted emission test setups. It is a useful tool to validate the correct operation of the LISN, correct set-up, and correct configuration of the spectrum analyzer.
The TBCG3-RN2 comb generator is primarily intended for testing radiated emission setups. It is a useful tool for validating the proper operation of the antenna and pre-amplifier, as well as the accurate set-up and configuration of the spectrum analyzer.
The TBCG3-RN6 comb generator is primarily intended for testing radiated emission setups. It is a useful tool for validating the proper operation of the antenna and pre-amplifier, as well as the accurate set-up and configuration of the spectrum analyzer.
The TBCP1-200, TBCP1-250, and TBCP1-500 is fixed aperture RF current monitoring probe, expanding the Tekbox product range of affordable EMC pre-compliance test equipment. The probe has a 3dB bandwidth of approximately 200 MHz and is characterized and usable over the frequency range from 10kHz to 500 MHz. The aperture of the RF current monitoring probe is 25 mm. Its transfer impedance is > 14 dB Ohm in the range from 40 kHz to 200 (500) MHz.
The TBCP2-250, -500, -750 -30K400 are snap-on RF current monitoring probes with very flat response of a 3dB bandwidth.
The TBCP3-1000 is a fixed aperture RF current monitoring probe. It has a very flat response with a 3dB bandwidth of 1 GHz and is characterized and usable over the frequency range from 30kHz to 1 GHz.
The aperture of the RF current monitoring probe is 17 mm. Its transfer impedance is close to 20 dB Ohm in the range from 3 MHz to 1 GHz.
The TBCP4-250, -500, and -750 is a fixed aperture RF current monitoring probe, it has a very flat response with a 3dB bandwidth of 750 MHz and is characterized and usable over the frequency range from 10kHz to 800 MHz. The aperture of the RF current monitoring probe is 32 mm. Its transfer impedance is close to 14 dB Ohm in the range from 400 kHz to 750 MHz.
The TBL0550-1 5µH LISN is a device required to setup conducted noise measurements of DC-powered electronic equipment. It is designed to be used for measurements in the frequency range of 150kHz to 110 MHz according to CISPR 16-1-2, CISPR-25, EN55025, MIL-STD-461F, ISO11452-4 and with limitations DO-160/ED-14G and ISO 7637-2.
The TBL5016-2 is a Line Impedance Stabilization Network for the measurement of line-conducted interference within the range of 9kHz to 30MHz, according to the CISPR 16-1-2 standard.
The device is designed for testing single phase, AC-powered equipment with supply voltages up to a maximum 240V and 16A.
The TBLC08 is a Line Impedance Stabilization Network for the measurement of line-conducted interference within the range of 9kHz to 30MHz, according to the CISPR16 standard. The device is designed for testing single phase, AC-powered equipment with supply voltages up to maximum 240V.
The TBLM1 LISN Mate is a companion device for LISNs, which splits the conducted noise signal into its common mode and differential mode components. The LISN Mate is connected to the output of a LISN inserted into the positive supply line and to a second LISN inserted into the negative supply line.
The TBOH01 5µH LISN is a device required to setup conducted noise measurements of DC-powered devices. It is designed to be used for EMC pre-testing in the frequency range of 150kHz to 110 MHz.
The TBPCP1-20100 is a RF pulse current monitoring probe with a very flat response from 20 Hz to 100 MHz and is characterized over the frequency range from 1 Hz to 200 MHz.
The TBPCP2-3070 is a RF pulse current monitoring probe with a very flat response from 30 Hz to 70 MHz and is characterized over the frequency range from 1 Hz to 200 MHz.
The TBSCP1-10M500 is a RF surface current monitoring probe that has a very flat response from 10MHz to 500 MHz and is characterized over the frequency range from 30 kHz to 600 MHz.
The TBSCP1-5M300 is a RF surface current monitoring probe with a very flat response from 5 MHz to 300 MHz and is characterized over the frequency range from 30 kHz to 400 MHz.
TBTER-50 Ohm RF Terminations from 0.5W to 25W
CalStan 11 is a software tool for automation of radio frequency (RF) calibrations and measurements of EMC test sites and test equipment. The software controls the instruments via GPIB bus and LAN, reads the measurement values and computes the results. A modular concept with measurement plug-ins allows customization according to the test lab requirements.
In accordance with the pulse verification requirements given in Annex C of ISO 7637-2:2011 and Annex A of ISO 16750-2:2012, test pulses generated by automotive transient generators need to be verified both under no-load (open circuit verification) and loaded conditions with specified loads.
The Capacitor Calibration Kit CCK has been designed to measure the pulse output voltage of surge generators PG10-200, PG12-360 and PG20-100. IEC 61730-1/2, IEC 60060-2
CDG CMP-45 Current monitoring probe • Cable diameters up to 45 mm • Frequency range 10 kHz to 400 MHz • Foldable, easy positioning on the conductor / cable • For BCI testing acc. to ISO 11452-4 and others • Insertion impedance < 2,5 ?
CDG CMP-46 Current monitoring probe • Cable diameters up to 45 mm • Frequency range 10 kHz to 400 MHz • For BCI testing acc. to ISO 11452-4 and others • Insertion impedance < 2,5 ?
BCI-P1 Bulk Current Injection Probe 10 kHz – 400 MHz - Meets specifications of ISO 11452-4:2005 and IEC 61000-4-6 - Frequency range from 1 MHz up to 400 MHz - Designed for automotive BCI testing - Low insertion loss (1MHz - 400MHz) to test bellow 1MHz (IEC/DO/MIL) see CDN BCI-P1_MT-1
CDN BCI-P1_MT-1 Bulk Current Injection Probe 4 kHz – 400 MHz - Meets specifications of ISO 11452-4:2005, MIL-STD-461, DO-160 and IEC 61000-4-6 - Frequency range from 4 kHz up to 400 MHz - Designed for BCI testing
list of current equipment available from inventory.
The Tekbox EMC compliance software EMCview for PCs is a user friendly EMC pre-compliance testing of radiated and conducted emissions. It is a perfect complement for automated testing using our LISNs and TEM Cells. A built in amplitude correction enables correction and conversion coefficients for cables, amplifiers, attenuators, LISNs, TEM cells, antennas, RF current probes, striplines and capacitive coupling clamps.
The Microsoft-Windows based software controls the ESD generator via a serial interface
Hilo Remote Control is software for personal computers. It is used to control HILO-Test generators from your computer. The software allows users to create tests and reports, which can be changed with your default text editor. In addition, it allows an oscilloscope to monitor all test pulse and to store the captured image of the waveforms on the computer. The communication with the generator is implemented with a LAN connection. The generator is connected via an optical interface. Thus, the PC is completely disconnected from the generator.
Hilo Remote Control is software for personal computers. It is used to control HILO-Test generators from your computer. The software allows users to create tests and reports, which can be changed with your default text editor. In addition, it allows an oscilloscope to monitor all test pulse and to store the captured image of the waveforms on the computer. The communication with the generator is implemented with a LAN connection. The generator is connected via an optical interface. Thus, the PC is completely disconnected from the generator.
The TBFL1 is a combined transient limiter/attenuator/ high pass filter, designed to provide optimum protection of spectrum analyzer or measurement receiver inputs when carrying out conducted noise measurements or other measurements where the input levels cannot be predicted with certainty or where accidental overloads may occur.
The TBL50100-1 50µH is a single channel 50 ohm // 50 µH LISN for the frequency range 150 kHz – 30 MHz according to CISPR 16-1-2. In addition to conducted noise measurements on AC or DC supplied equipment, the LISN can be used to establish a defined impedance for a variety of other standardized tests.
The TBL5016-1 50µH LISN is a device required to setup conducted noise measurements of DC or AC-powered electronic equipment. It is designed according to CISPR 16-1-2 and MIL-STD-461F standard and characterized in the frequency range of 9kHz to 100 MHz.
The TBL5016-3 is a Line Impedance Stabilization Network for the measurement of line-conducted interference within the range of 9 kHz to 30MHz, according to the CISPR 16-1-2 standard. The device is designed for testing 3-phase and single-phase, AC-powered equipment with supply voltages up to a maximum 450V/260V and 16A.
The TBL5032-3 is a Line Impedance Stabilization Network for the measurement of line-conducted interference within the range of 9 kHz to 30MHz, according to the CISPR 16-1-2 standard. The device is designed for testing 3-phase and single phase, AC-powered equipment with supply voltages up to maximum 450V/260V and 32A.
The TBMA1 is a small, lightweight, wideband biconical measurement antenna. With its moderate price, it is ideal for radiated noise EMC pre-compliance testing and for generating defined field strength.
It is characterized from 30 MHz to 1 GHz and has a directional pattern similar to a dipole.
The TBMA2 is a biconical measurement antenna for EMC radiated emission testing and generating defined field strength. With its affordable price, it is an excellent choice for any lab carrying out in-house pre-compliance testing.
It is characterized from 30 MHz to 300 MHz and has a directional pattern similar to a dipole antenna.
The TBMA3 is an affordable logarithmic periodic measurement antenna, targeting radiated noise EMC pre-compliance testing.
The TBMA3 is characterized from 250 MHz to 1.3 GHz and has VSWR and antenna factor values typical for log-periodic measurement antennas.
The TBMA4 is characterized from 1 GHz to 8 GHz and has a directional pattern typical for double ridged horn antennas.
The TBMA4 is a small double ridged horn antenna, with its radiating element made from edge-plated PCB substrate.
The TBMA6-P is a passive Loop Antenna for affordable EMC pre-compliance testing. It has a frequency range of 9 kHz – 30 MHz, according to CISPR 16.
The TBTP1 tripod is a lightweight, compact tripod made out of carbon fiber and is suitable for all EMC antennas up to 6kg.
The TBTP3 tripod, made out of beech wood, is suitable for most of our antennas up to 8kg.
The CAR- Transient Emission 14 is used to check the transient transition behaviour when switching loads on the vehicle electrical system. It consists of two triggerable circuit breakers (electronically or mechanically), an artificial network, a control unit for operating the device, and optionally an external power supply. The CAR-Transient Emission 14 can perform the "Transient Emission Test" for "slow pulses" and "fast pulses" according to ISO 7637-2.
Meets Section 15 DO160 Magnetic Effect
For automotive ESD testing. The jig uses precision laser cut copper and CNC cut foam to meet the exact dimensional requirements of ISO 10605 Annex F.
Active, shielded Loop Antenna with nearly constant antenna factor over the entire frequency range (9 kHz - 30 MHz), battery-driven to minimize disturbance influence from the power line.
Replacement is FMZB 1513C
The LSAOL 1.0/1.1 Laser-Powered Analog Optical Links with integrated pre-amplifiers are low-noise RF signal transmission systems for 9 kHz to 6 GHz.
The LSAOL 1.0/1.1 Laser-Powered Analog Optical Links with integrated pre-amplifiers are low-noise RF signal transmission systems for 9 kHz to 6 GHz.
The Multi-CE5 is a compact EMC test unit designed for testing electromagnetic immunity against pulsed and conducted interference. Demonstrating such immunity is generally a requirement for compliance with the European EMC directive, a necessary step leading to the CE mark. In its basic configuration, the Multi-CE5 includes an Electrical Fast Transient Generator (EFTG), a Combination Wave Generator (CWG) and a Coupling-/Decoupling Network (CDN) for single-phase power supply lines.
The Multi-CE7 is a compact EMC test unit designed for testing electromagnetic immunity against pulsed and conducted interference. Demonstrating such immunity is generally a requirement for compliance with the European EMC directive, a necessary step leading to the CE mark. In its basic configuration, the Multi-CE5 includes an Electrical Fast Transient Generator (EFTG), a Combination Wave Generator (CWG), Option: RingWave Generator (RWG), Option: 10/70 Telecom Generator (TWG), Option: Dip/Drops/Interruptions, and a Coupling-/Decoupling Network (CDN) for single-phase power supply lines.
The ESD simulator SESD 30000 is suitable for EMC testing of systems and equipment in accordance with standard IEC / EN 61000-4-2, ISO 10605 (Automotive), MIL-STD and other. The modular structure of the simulator allows further testing according to different standards and customer definitions. Test voltage max. 30,0 kV AIR and CON; Discharge impedance IEC, ISO, MIL etc.; Modular structure, self-test; Automatic charge absorber integrated;
Compleat your pre-compliance setup with premade coax cables.
The TBBT01 Bias-Tee is a device for measuring the saturation effects of power inductors and bias voltage effects on capacitors. The majority of available Bias-Tees for power inductor testing operate at low frequencies, rendering them unsuitable for evaluating decoupling/bias inductors of RF power amplifiers or EMC filters.
The TBCH1 and TBCH2 wall mount cable holders are efficient and neat solutions to store laboratory cables. The TBCH1 cable holder is designed with a focus on storing RF cables and oscilloscope probes. The TBCH2 is ideal for banana cables.
TBDA1 wideband driver amplifiers are versatile building blocks that can easily be integrated into laboratory setups. With a frequency range of 40MHz to 3GHz and an output power of + 22 dBm at 1dB compression, they are ideal to boost the amplitude of low power RF sources or to drive power amplifier stages.
The TBESDT1 ESD-Target is a current sensing transducer to verify ESD-Simulators. It is used to take measurements compliant with IEC 61000-4-2 up to 4 GHz.
Many EMC pre-compliance test setups require a ground plane. Not every lab has the necessary space for the permanent installation of a sheet metal ground plane.
The TBGTC1 open GTEM-cell is a low-cost cell for EMC pre-compliance immunity and emissions testing. Unlike TEM cells, which have limits at higher frequencies, the TBGTC1 GTEM cell may operate up to 6GHz.
The TBHDR1 is a high dynamic range amplifier with a frequency range from 30kHz to 1.5GHz. Its gain is characterized up to 6GHz.
The TBHDR1 has a high IP3 and a low noise figure which makes it an ideal alternative pre-amplifier for spectrum analyzers and receivers in EMC test applications. Due to its low noise figure, high IP3 and gain down to the kHz range it also performs very well as an amplifier for active loop antenna
The TBJT01 is a wideband injection transformer for control loop stability measurements. It provides galvanic isolation between the swept signal source and the control loop. The injection transformer is internally terminated with a 5 Ohm resistor and protected with a 100 mA fuse. The usable frequency range is 10 Hz to 45 MHz.
The TBJT02 is a wideband injection transformer for control loop stability measurements. It provides galvanic isolation between the swept signal source and the control loop. The injection transformer is internally terminated with a 5 Ohm resistor and protected with a 100 mA fuse. The usable frequency range is 1 Hz to 7 MHz.
The TBLPA1 linear wideband power amplifier is a general-purpose RF amplifier for test and measurement applications. It has an output power capability of up to 1W and can be used in the frequency range from 10 MHz to 1 GHz and with reduced output power capability even beyond.
The TBMDA-BCI25 modulated amplifier provides the necessary bandwidth and modulation for conducted immunity testing using BCI probes per ISO 11452-4 in the frequency range from 1 MHz to 400 MHz.
The TBMDA-CDN25 modulated amplifier provides the necessary power, bandwidth and modulation for conducted immunity testing using CDNs and BCI probes in the frequency range from 100 kHz to 250 MHz.
The TBMDA1 modulated wideband driver amplifier is designed in order to create an inexpensive signal source for immunity testing of electronic building blocks and products. It is designed to be driven by the tracking generator output of spectrum analyzers. With its gain of 22 dB and 1dB compression point of +22dBm, it can boost the output power of a tracking generator up to 150mW.
The TBMDA2 modulated wideband driver amplifier is designed in order to create an inexpensive signal source for immunity testing of electronic building blocks and products. It is designed to be driven by the tracking generator output of spectrum analyzers. With its 1dB compression point of +27dBm, it can boost the output power of a tracking generator up to 500mW.
The TBMDA3B modulated wideband power amplifier is designed in order to create an inexpensive signal source for immunity testing of electronic building blocks and products. It is designed to be driven by the tracking generator output of spectrum analyzers.
The TBMDA4B modulated wideband power amplifier is designed in order to create an inexpensive signal source for immunity testing of electronic building blocks and products. It is designed to be driven by the tracking generator output of spectrum analyzers.
The TBMDA5 modulated amplifier provides the necessary power, bandwidth and modulation for conducted immunity testing using CDNs in the frequency range from 150 kHz to 400 MHz. It is designed to be driven by the tracking generator output of spectrum analyzers.
The TBOH02 is a self-powered, precision active load. It does not need a separate supply voltage and operates as low as 2V. Its features include constant resistance and constant current mode. A 10 turn potentiometer with dial, a range switch and a precision reference enable the accurate setting of current or resistance. Furthermore, it can be controlled by an external voltage.
The TBSB line of shielded bags is designed to suppress interference from ambient noise when carrying out EMC pre-compliance measurements. The shielded bags are a low cost alternative to shielded tents for test equipment such as LISNs or TEM-cells.
The TBSB line of shielded bags is designed to suppress interference from ambient noise when carrying out EMC pre-compliance measurements. The shielded bags are a low cost alternative to shielded tents for test equipment such as LISNs or TEM-cells. The shielded bags are composed of two layers of conductive fabrics. The access opening is sealed with conductive Velcro tape. Suggestions on how to feed cables into the bags are given in the application section of this manual.
The TBST line of shielded tents is designed to suppress interference from ambient noise when carrying out EMC pre-compliance measurements with sizes of 200 cm x 100 cm x 100 cm, 124 cm x 64 cm x 60 cm or 86 cm x 48 cm x 48 cm. The 200 cm and 124 cm tent can accommodate any Tekbox pre-compliance test equipment such as LISNs or TEM-cells. The 86 cm tent will fit the TBTC0/1/2 and all our LISN.
Radiated emission tests are typically carried out in anechoic chambers, using antennas to pick up the radiated signals. Due to bandwidth limitations, several antennas are required to cover the complete frequency range. Furthermore, it requires much space and the cost of the equipment for a standard conformant setup is immense.
TBWA2 wideband RF amplifiers are versatile building blocks that can easily be integrated into laboratory setups. With a bandwidth of 2MHz to 6GHz, they are ideal to boost the signals picked up by our EMC near-field probes.
Linear polarized Logarithmic Periodic Broadband Antenna (Aluminium tubing) for Receive and Transmit Applications
This antenna has been Discontinued as it is no longer compliant Please see VULB 9164
Linear polarized Logarithmic Periodic Broadband Antenna (Aluminium tubing) for Receive and Transmit Applications
This antenna has been Discontinued as it is no longer compliant Please see VULB 9164