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 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 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 TBSCP1-5M300 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.
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 TBATTs are DC - 3GHz attenuators available with 3 - 30dB attenuation in 10-100W versions. N male to N female connections.
TBTER-50 Ohm RF Terminations from 0.5W to 25W
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.