特性和好处
高带宽
超低电感
非常小的形状因子
表征电流波形
被测电路负载极低
适用于密集、紧密间隔的电路设计
应用程序
数据存储读取通道设计
硅特性
高频模拟电路设计
防静电测试
信号注入
差动电流测量
单枪低重复率脉冲测量
传播延迟测量
CT6电流探针
CT6是Tektronix高频电流探头产品组合中的产品。它的设计是为了满足高速电路设计和测试应用的需要,这需要超高带宽,低电感,极小的形状因子。2 GHz CT6提供高带宽示波器的带宽使用时如美国泰克TDS694C, TDS794D, TDS7000系列示波器或与其他兼容50Ω输入测量仪器。低电感(
CT1 / CT2电流探针
CT1和CT2电流探头用于性或半性的在线安装。每个探头由电流互感器和互连电缆组成。电流互感器有一个小孔,在电路装配过程中,电流通过该小孔。
P6041探头电缆提供了CT1和CT2电流互感器与BNC示波器输入之间的连接。需要50Ω终止终止时,电缆连接到一个高阻抗(1 MΩ)示波器的输入。一根探头电缆可用于监测几个已连接到电路中的电流互感器。
Features & Benefits
High Bandwidth
Ultra-low Inductance
Very Small Form Factor
Characterize Current Waveforms up to
Very Low Loading of Circuit Under Test
Fits Into Dense, Closely-spaced Circuit Designs
Applications
Data Storage Read Channel Design
Silicon Characterization
High-frequency Analog Design
ESD Testing
Signal Injection
Differential Current Measurements
Single-shot Low Rep-rate Pulse Measurements
Propagation Delay Measurement
CT6 Current Probe
The CT6 is the newest addition to the Tektronix portfolio of high-frequency current probes. It is designed to meet the needs of high-speed circuit design and test applications which require ultra-high bandwidth, low inductance, and extremely small form factor. The CT6 provides up to 2 GHz bandwidth when used with high-bandwidth oscilloscopes such as the Tektronix TDS694C, TDS794D, and TDS7000 Series oscilloscopes or with other compatible 50 Ω input measuring instruments. Low inductance (
CT1/CT2 Current Probes
The CT1 and CT2 Current Probes are designed for permanent or semi-permanent in-circuit installation. Each probe consists of a current transformer and an interconnecting cable. The current transformers have a small hole through which a current carrying conductor is passed during circuit assembly.
The P6041 Probe Cable provides the connection between the CT1 and CT2 Current Transformers and a BNC oscilloscope input. A 50 Ω termination is required to terminate the cable when connected to a high-impedance (1 MΩ) oscilloscope input. One probe cable can be used to monitor several current transformers that have been wired into a circuit.
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