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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
Founded in 1946 as Tekrad, Tektronix designs and manufactures test and measurement solutions to break down the walls of complexity and accelerate global innovation. With well over 700 patents, Tektronix solutions support many of humanity's greatest advances over the past 70 years. Health. Communications. Mobility. Aerospace. With operations in 21 countries, Tektronix is committed to serving scientists, engineers and technicians around the world.

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