TBSCP1-10M500 RF SURFACE CURRENT MONITORING PROBE

TBSCP1-10M500 RF SURFACE CURRENT MONITORING PROBE

TBATT 10-100W, 3-30dB Attenuators

TBATT 10-100W, 3-30dB Attenuators

TBTER-50 Ohm RF Terminations

TBTER-50 Ohm RF Terminations

TBCG3-CN Comb Generator, 5 kHz-2 GHz, for CE

TBCG3-CN Comb Generator, 5 kHz-2 GHz, for CE

TBCCP1-400K600 COAXIAL RF CURRENT MONITORING PROBE

TBCCP1-400K600 COAXIAL RF CURRENT MONITORING PROBE

TBCG3-RN6 Comb Generator, 5 kHz-6 GHz, for RE

TBCG3-RN6 Comb Generator, 5 kHz-6 GHz, for RE

TBCG3-RN2 Comb Generator, 5 kHz-2 GHz, for RE

TBCG3-RN2 Comb Generator, 5 kHz-2 GHz, for RE

TBAS2 SMA Attenuator & Terminatation Set

TBAS2 SMA Attenuator & Terminatation Set

TBAS1 RF Attenuator Set

TBAS1 RF Attenuator Set

TBAS3 10W Type N Attenuator Set

TBAS3 10W Type N Attenuator Set

TBCG2 Comb Generator/Frequency Multiplier

TBCG2 Comb Generator/Frequency Multiplier

TBOH02 - Self Powered Active Load

TBOH02 - Self Powered Active Load

Products

TBSCP1-10M500 RF SURFACE CURRENT MONITORING PROBE

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. 

TBATT 10-100W, 3-30dB Attenuators

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

TBTER-50 Ohm RF Terminations from 0.5W to 25W

TBCG3-CN Comb Generator, 5 kHz-2 GHz, for CE

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.

  • 5 kHz-2 GHz,
  • switchable 0.1, 0.5, 1, 5, 10 MHz,
  • external: 5 kHz-300 MHz,
  • 4xNiMH, AA, Charger,
  • Country-specific adapter cables DUT socket of the LISN

TBCCP1-400K600 COAXIAL RF CURRENT MONITORING PROBE

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. 

TBCG3-RN6 Comb Generator, 5 kHz-6 GHz, for RE

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.

  • 5 kHz-6 GHz,
  • switchable 5, 10, 25, 50, 100 MHz,
  • external: 5 kHz-200 MHz,
  • 6xNiMH, AA, Charger,
  • 2 monopole antennas

TBCG3-RN2 Comb Generator, 5 kHz-2 GHz, for RE

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.

  • 5 kHz-2 GHz,
  • switchable 5, 10, 25, 50, 100 MHz,
  • external: 5 kHz-200 MHz,
  • 6xNiMH, AA, Charger,
  • 2 monopole antennas

TBAS2 SMA Attenuator & Terminatation 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.

TBAS1 RF Attenuator Set

The TBAS1 RF 2W attenuator set

TBAS3 10W Type N Attenuator Set

The TBAS3 RF 10W attenuator set consists of a 3dB, 6dB, 10dB and 20dB attenuator in a beech wood box.

TBCG2 Comb Generator/Frequency Multiplier

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

TBOH02 - Self Powered Active Load

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.


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