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SR750-P5-G5-S5-LO-A20-R-T 继电器 用于控制和管理馈线配电系统

型号:SR750-P5-G5-S5-LO-A20-R-T

模拟输入阻抗375 Ω±10%

控制功率25va标称,最大35va

工作环境无冷凝,湿度不超过90%

在80倍额定电流下可承受1秒,在3倍额定电流下可连续工作

污染程度ii

继电器尺寸18cm宽,16.5cm长,21.5cm高


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SR750-P5-G5-S5-LO-A20-R-T 继电器 用于控制和管理馈线配电系统

SR750-P5-G5-S5-LO-A20-R-T.jpg

型号:SR750-P5-G5-S5-LO-A20-R-T

模拟输入阻抗375 Ω±10%

控制功率25va标称,最大35va

工作环境无冷凝,湿度不超过90%

在80倍额定电流下可承受1秒,在3倍额定电流下可连续工作

污染程度ii

继电器尺寸18cm宽,16.5cm长,21.5cm高


GE Multilin的SR750-P5-G5-S5-LO-A20-R-T用于控制和管理馈线配电系统。该单元是该系列中的低控制功率型号,工作范围为20至60 VDC, 20至48 VAC, 48至62 Hz。这与该系列的高控制功率模型形成对比,该模型的工作范围为88至300 VDC, 70至265 VAC, 48至62 Hz。潜在买家应确保他们购买的单位品种适合他们的控制功率要求。


用户可以使用SR750-P5-G5-S5-LO-A20-R-T的仿真功能来测试设定值的修改。在运行模拟时,系统停止读取实际的交流输入,而是产生模拟编程相量的样本,然后这些样本由单元处理。该继电器可以模拟故障和正常情况。仿真结果可以帮助用户更好地了解他们的系统以及设定值修改如何影响效率和系统健康。

SR750-P5-G5-S5-LO-A20-R-T 继电器 用于控制和管理馈线配电系统

SR750-P5-G5-S5-LO-A20-R-T.jpg


Model: SR750-P5-G5-S5-LO-A20-R-T

The analog input impedance is 375Ω ±10%

Control power 25va nominal, maximum 35va

The working environment is non-condensing, and the humidity does not exceed 90%

At 80 times rated current can withstand 1 second, at 3 times rated current can work continuously

Pollution Level ii

Relay size 18cm wide, 16.5cm long, 21.5cm high


GE Multilin's SR750-P5-G5-S5-LO-A20-R-T is used to control and manage feeder distribution systems. This unit is the low control power model in the family, with an operating range of 20 to 60 VDC, 20 to 48 VAC, and 48 to 62 Hz. This is in contrast to the series' high-control power models, which operate in the range of 88 to 300 VDC, 70 to 265 VAC, and 48 to 62 Hz. Potential buyers should ensure that the type of unit they purchase is suitable for their control power requirements.


The user can use the simulation function of the SR750-P5-G5-S5-LO-A20-R-T to test the modification of the set point. When running the simulation, the system stops reading the actual AC input and instead produces samples of the simulated programming phasors, which are then processed by the unit. The relay can simulate both fault and normal conditions. Simulation results can help users better understand their systems and how setpoint modifications affect efficiency and system health.

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