GE SR745-W2-P1-G1-HI-A-L-R-E是一款先進(jìn)的變壓器管理繼電器,屬于GE Multilin 745系列,專(zhuān)門(mén)用于電力系統(tǒng)中變壓器的保護(hù)、監(jiān)控和控制。
GE SR745-W2-P1-G1-HI-A-L-R-E變壓器管理繼電器圖片

GE SR745-W2-P1-G1-HI-A-L-R-E變壓器管理繼電器視頻
GE SR745-W2-P1-G1-HI-A-L-R-E變壓器管理繼電器詳情
主要特點(diǎn):
Main features:
Protection function:
Provide various protection algorithms, such as differential protection, overcurrent protection, ground fault protection, etc., for detecting and quickly responding to various faults in transformers.
Equipped with zero sequence overcurrent protection and zero sequence differential protection, specifically designed for grounding faults.
By using ratio braking differential protection, the sensitivity and selectivity of the protection are improved.
Measurement and monitoring:
Real time monitoring of transformer operation status, including parameters such as current, voltage, power, frequency, temperature, etc.
Support historical data recording and event recording, facilitating fault analysis and preventive maintenance.
Communication and Integration:
Support multiple communication protocols, such as Modbus, Ethernet, etc., to facilitate integration with SCADA systems, DCS, or other automation systems.
Remote configuration and monitoring can be achieved through the Human Machine Interface (HMI).
User interface:
Provide clear LCD display, displaying real-time data and alarm information.
The operation interface is intuitive and easy for on-site engineers to configure and diagnose faults.
Flexible configuration:
Protection logic and set values can be customized according to different transformer types and system requirements.
Support multiple input and output interfaces to meet different on-site requirements.
Environmental adaptability:
Designed for industrial environments with good anti-interference capabilities.
Usually able to operate reliably under a wide range of temperature and humidity conditions.
Precautions for use:
Installation and wiring:
Follow the installation guidelines provided by the manufacturer to ensure proper physical installation and electrical connections.
Use the correct cables and wiring methods to ensure accurate signal transmission.
Power requirements:
Confirm the power supply specifications of the device, usually a DC power supply, to ensure that the power supply is stable and meets the device requirements.
Maintenance and calibration:
Regular maintenance, checking hardware status, and cleaning dust.
Perform regular calibration to ensure measurement accuracy.
Software updates:
Monitor firmware versions and update them in a timely manner to obtain the latest features and security improvements.
Environmental conditions:
Ensure that the equipment operates within the recommended range of ambient temperature and humidity, and avoid operating under extreme conditions.
Operation training:
Provide appropriate training to operators to ensure they are familiar with the functions and operating procedures of the equipment.
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