GE IS200EAUXH1A
Application Scenarios:
- Electrical Systems: The IS200EAUXH1A is applicable to the measurement and control of large AC currents in various electrical systems.
- Electroplating and Electrolysis Industries: Its capabilities make it suitable for use in these industries, where accurate current measurements and control are crucial.
- Power Systems: Due to its fast response time and wide frequency response, it can be used for fault recording and other critical functions in power systems.
- Automation and Control: In automated systems requiring precise current monitoring and control, the IS200EAUXH1A provides a reliable solution.
Detailed content
Technical Specifications:
- Model Name: IS200EAUXH1A Communication Module
- Manufacturer: General Electric (GE)
- Rated Input: 0~20 kAAC
- Rated Output:
- 0~20 mA DC
- 0~5 V DC
- 4~20 mA DC
- Accuracy: 1.0%
- Linear Range: 0~120%
- Isolation Withstand Voltage: 5000V DC/1 minute
- Auxiliary Power Supply: +12V DC, ±12V DC, +24V DC
- Working Temperature: -20℃ to +60℃
- Temperature Drift: <300ppm/℃
- Dimensions (Integrator): 86mm x 70mm x 73mm (L x W x H)
Functional Characteristics:
- No Input Saturation: The IS200EAUXH1A utilizes the Rogowski principle, eliminating the need for magnetic cores commonly used in traditional transformer or Hall effect principles. This allows for a wide input range without compromising performance.
- Fast Response Time: With a response time of microseconds (us), it is suitable for applications requiring fast fault recording or similar functions in power systems.
- Wide Frequency Response: The module offers a frequency response range exceeding 20 kHz, making it suitable for signal detection of complex input waveforms.
- Excellent Linearity: The output linearity of the module is 0.2%, accurately reflecting the input signal size.
- High Accuracy: The overall accuracy of the IS200EAUXH1A is within 1%, ensuring reliable measurements.
- Compact and Lightweight: Compared to traditional transformer-based or Hall effect devices, the IS200EAUXH1A offers a smaller form factor and lighter weight.