Keysight 1132B InfiniiMax Differential Probe: 5 GHz, Single-Ended, 10:1, 1130B Series
Keysight 1132B InfiniiMax Differential Probe: 5 GHz bandwidth, 10:1 attenuation, single-ended operation, compatible with 1130B Series oscilloscopes.
Description
Keysight 1132B InfiniiMax Differential Probe, 5 GHz, Single-Ended, 10:1, 1130B Series Product Overview The Keysight 1132B InfiniiMax differential probe is a high-performance probe designed for use with oscilloscopes. It offers a bandwidth of 5 GHz, a single-ended input impedance of 10:1, and a differential input impedance of 20:1. The probe is also equipped with a variety of features that make it easy to use, including a built-in LED light, a ground reference indicator, and a probe tip that can be adjusted to accommodate different test points. Features and Specifications Bandwidth: 5 GHz Input impedance: 10:1 single-ended, 20:1 differential Probe tip: Adjustable Built-in LED light Ground reference indicator Probe compensation: Automatic Probe attenuation: 10:1 Probe length: 1.5 m Weight: 0.5 kg What’s in the Box Keysight 1132B InfiniiMax differential probe Probe tip Ground reference lead Probe compensation tool User manual Benefits High bandwidth: The 5 GHz bandwidth of the Keysight 1132B InfiniiMax differential probe makes it ideal for use with high-speed oscilloscopes. High input impedance: The 10:1 single-ended and 20:1 differential input impedance of the probe minimizes loading on the circuit under test. Easy to use: The built-in LED light, ground reference indicator, and adjustable probe tip make the Keysight 1132B InfiniiMax differential probe easy to use. Value: The Keysight 1132B InfiniiMax differential probe is a high-quality probe that offers excellent performance at a reasonable price. Value to the Customer The Keysight 1132B InfiniiMax differential probe is a valuable tool for engineers and technicians who need to measure high-speed signals. The probe’s high bandwidth, high input impedance, and ease of use make it an ideal choice for a variety of applications, including: Debugging high-speed circuits Characterizing high-speed signals Measuring jitter and other timing parameters Testing high-speed components
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