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Tektronix CT2 | Current clamp, AC, 1.2 kHz-200 MHz, 2.5 A, BNC

Manufacturer number: CT2

Tektronix CT2 | Current clamp, AC, 1.2 kHz - 200 MHz, 2.5 A, BNC.

  • Bandwidth: 1.2 kHz to 200 MHz
  • Maximum pulse current: 36 A
  • Ampere-per-second product: 50 x 10-6 A*sec (50 Aµs)
  • Characterize waveforms with rise times of 500 ps
  • Sensitivity/translation factor: 1 mV / mA when terminated with 50 Ω
  • Ultralow inductance
  • Miniature form factor: Enables measurements in densely packed circuits
  • For permanent or semi-permanent installation in the circuit
  • Very low load on the circuit under test

Technical Data

Description

CT2 | Current clamp, AC, 1.2 kHz-200 MHz, 2.5 A, BNC

The CT2 current probe in miniature format is intended for permanent or semi-permanent installation in a circuit. The probe consists of a current transformer and a connecting cable. The current transformer has a small hole through which a current-carrying conductor is fed during circuit assembly. The P6041 probe cable included in the scope of delivery establishes the connection between the CT2 current transformer and a BNC oscilloscope input. If the cable is connected to a high-impedance oscilloscope input (1 MΩ), a 50 Ω termination is required. One probe can monitor several current transformers connected in a circuit.

Single-shot measurements and pulse measurements with a low repetition rate:

The CT2 current probe is designed for a maximum pulse current of 36 A with an ampere-second product of 50 A × 10-6 seconds (50 ampere-microseconds). It can therefore safely handle a 36 A peak pulse with a maximum width of 1.39 microseconds or lower amplitude pulses for longer pulse widths.

Measurements of propagation delay:

Two CT2 current transformers with matching cables of equal signal transit times can be used to measure the signal transit time between the input current and output current of high-frequency components. The two outputs of the current samples are connected to the inputs of a two-channel real-time sampling oscilloscope. Any sample/cable/scope mismatch can be verified by passing the same signal current through both current samples and measuring the system delay time difference.

Application areas:

  • Read channel design for data storage
  • Silicon characterization
  • High frequency analog design
  • ESD-Testing
  • Signal injection
  • Differential current measurements
  • Low repetition rate single-shot pulse measurements
  • Propagation delay measurement

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About the Manufacturer

Tektronix

Tektronix is a global leader in test, measurement, and monitoring solutions for applications in aerospace, education, automotive, and telecommunications. The portfolio includes oscilloscopes, arbitrary/function generators, spectrum analyzers, and signal generators, as well as product segments from EA Elektro-Automatik and Keithley.

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