Tekbox TBCP2-250 RF Current Monitoring Probe
Snap-on RF current monitoring probe for EMC pre-compliance, characterized from 1 kHz to 400 MHz with 13 dBΩ transfer impedance and 32 mm aperture.
Models:
- Tekbox TBCP2-250 RF Current Monitoring Probe
- 1 kHz–400 MHz / 13 dBΩ / 32 mm
- Tekbox TBCP2-500 RF Current Monitoring Probe
- 1 kHz–600 MHz / 16 dBΩ / 32 mm
- Tekbox TBCP2-750 RF Current Monitoring Probe
- 1 kHz–1 GHz / 20 dBΩ / 32 mm
- Tekbox TBCP2-30K400 RF Current Monitoring Probe
- 10 Hz–500 MHz / 3 dBΩ / 32 mm
- Tekbox TBCP2-1M100 RF Current Monitoring Probe
- 10 kHz–200 MHz / 3 dBΩ / 32 mm
- Tekbox TBCP2-1M800 RF Current Monitoring Probe
- 10 kHz–1 GHz / 0 dBΩ / 32 mm
- Tekbox TBCP2-6M300 RF Current Monitoring Probe
- 10 kHz–500 MHz / 10 dBΩ / 32 mm
- Tekbox TBCP2-3M900 RF Current Monitoring Probe
- 10 kHz–1 GHz / 10 dBΩ / 32 mm
- Tekbox TBCP2-20M700 RF Current Monitoring Probe
- 10 kHz–800 MHz / 20 dBΩ / 32 mm
- Tekbox TBCP2-30M1000 RF Current Monitoring Probe
- 10 kHz–1 GHz / 22 dBΩ / 32 mm
Applications
- EMC pre-compliance testing
- RF current monitoring
- Common-mode current measurements
- Conducted emission troubleshooting
- EMC filter verification
- Laboratory and development measurements
The Tekbox TBCP2 series consists of RF snap-on current monitoring probes designed for EMC pre-compliance testing and RF current measurements. The probes enable non-intrusive measurement of common-mode and RF currents on cables without interrupting the circuit, making them ideal for EMC troubleshooting, verification and product development.
All models feature a 32 mm aperture, N-type female connector and a lightweight aluminium housing. The series includes variants optimized for different frequency ranges, transfer impedances and current levels, covering applications from low-frequency EMC measurements to broadband RF analysis up to 1 GHz.
TBCP2 probes are intended for use with spectrum analyzers, EMI receivers or oscilloscopes and provide an effective tool for locating conducted emissions and evaluating EMC filters and suppression techniques.