Maximum voltage: 12V Maximum current: 100A Holding current: 2A Trip current: 3.5A Power consumption: 800mW Initial resistance (minimum value): 15mΩ Resistance after tripping (maximum value): 80mΩ Maximum action time: 1.5s Operating temperature: -40℃~+85℃ Maximum voltage 12V Holding current 2A Maximum current 100A Trip current 3.5A
Maximum voltage: 12V Maximum current: 100A Holding current: 2A Trip current: 3.5A Power consumption: 800mW Initial resistance (minimum value): 15mΩ Resistance after tripping (maximum value): 80mΩ Maximum action time: 1.5s Operating temperature: -40℃~+85℃ Maximum voltage 12V Holding current 2A Maximum current 100A Trip current 3.5A
Maximum voltage: 12V Maximum current: 100A Holding current: 2A Trip current: 3.5A Power consumption: 800mW Initial resistance (minimum value): 15mΩ Resistance after tripping (maximum value): 80mΩ Maximum action time: 1.5s Operating temperature: -40℃~+85℃ Maximum voltage 12V Holding current 2A Maximum current 100A Trip current 3.5A
Maximum voltage: 16V Maximum current: 100A Holding current: 1A Trip current: 1.8A Power consumption: 600mW Initial resistance (minimum value): 50mΩ Resistance after tripping (maximum value): 270mΩ Maximum action time: 300ms Operating temperature: - 40℃~+85℃ Maximum voltage 16V Holding current 1A Maximum current 100A Trip current 1.8A
Maximum voltage: 60V Maximum current: 40A Holding current: 50mA Trip current: 150mA Power consumption: 400mW Initial resistance (minimum value): 3.6Ω Resistance after tripping (maximum value): 50Ω Maximum action time: 1.5s Operating temperature: -40℃~+85℃ Maximum voltage 60V Holding current 50mA Maximum current 40A Trip current 150mA
Maximum voltage: 6V Maximum current: 100A Holding current: 750mA Trip current: 1.5A Power consumption: 600mW Initial resistance (minimum value): 90mΩ Resistance after tripping (maximum value): 500mΩ Maximum action time: 200ms Operating temperature: - 40℃~+85℃ Maximum voltage 6V Holding current 750mA Maximum current 100A Trip current 1.5A
Maximum voltage: 16V Maximum current: 40A Holding current: 1.5A Trip current: 3A Power consumption: 800mW Initial resistance (minimum value): 25mΩ Resistance after tripping (maximum value): 130mΩ Maximum action time: 300ms Operating temperature: - 40℃~+85℃ Maximum voltage 16V Holding current 1.5A Maximum current 40A Trip current 3A
Maximum voltage: 6V Maximum current: 100A Holding current: 500mA Trip current: 1A Power consumption: 600mW Initial resistance (minimum value): 150mΩ Resistance after tripping (maximum value): 700mΩ Maximum action time: 100ms Operating temperature: -40 ℃~+85℃ Maximum voltage 6V Holding current 500mA Maximum current 100A Trip current 1A
Maximum voltage: 13.2V Maximum current: 100A Holding current: 1A Trip current: 1.8A Power consumption: 600mW Initial resistance (minimum value): 50mΩ Resistance after tripping (maximum value): 270mΩ Maximum action time: 300ms Operating temperature: -40℃~+85℃ Maximum voltage 13.2V Holding current 1A Maximum current 100A Trip current 1.8A
Maximum voltage: 6V Maximum current: 100A Holding current: 1A Trip current: 1.8A Power consumption: 600mW Initial resistance (minimum value): 50mΩ Resistance after tripping (maximum value): 270mΩ Maximum action time: 300ms Operating temperature: - 40℃~+85℃ Maximum voltage 6V Holding current 1A Maximum current 100A Trip current 1.8A
Maximum voltage: 13.2V Maximum current: 100A Holding current: 500mA Trip current: 1A Power consumption: 600mW Initial resistance (minimum value): 150mΩ Resistance after tripping (maximum value): 700mΩ Maximum action time: 100ms Operating temperature: - 40℃~+85℃ Maximum voltage 13.2V Holding current 500mA Maximum current 100A Trip current 1A
[b]1-3. Reversing series switching power supply 1-3-1. Working principle of reversing series switching power supply [/b] Figure 1-7 shows another type of series switching power supply, generally calle...
I want to make a design that relies on Bluetooth signal strength to measure distance. However, someone has done one before, collecting signal strength at different distances, and then deriving two con...
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Tools/Materials
Yitong Chuanglian MODBUS to PROFIBUS Gateway YT-PB-03
Siemens s7-300
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introduction
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introduction
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A new multi-layer diffractive optical processor can block images in one direction while allowing images in another direction to pass through.
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Fast charging is a method and means of quickly replenishing a vehicle's power. It is the core and most important part of electric vehicles. Speaking of fast charging, everyone is familiar with it. ...[Details]