N895313512X-N95313012D-SUP-AL-N895313000R | Interface board module
Model: N895313512X-N95313012D-SUP-AL-N895313000R
Category: Interface board module
Warranty: One year
Stock: available
Brand: ALSTOM
Categories: ALSTOM
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phone:(86)17372046300
phone:(86)19389860630
Product content
Model: N895313512X-N95313012D-SUP-AL-N895313000R
Category: Interface board module
Warranty: One year
Stock: available
Brand: ALSTOM
Hot swap support:
Supports the hot swap function. You can insert and remove modules when the system is running without stopping or restarting the system.
Facilitate module replacement and maintenance.
Hardware protection:
It has a variety of hardware protection functions, including overcurrent protection, overheat protection, short circuit protection and so on.
These protection mechanisms can effectively prevent power overload, damage and other abnormal conditions to ensure the safe operation of the system.
Communication interface:
The N895313512X-N95313012D-SUP-AL-N895313000R provides multiple communication interfaces for data exchange and communication with other modules and devices.
Support common communication protocols and interface standards to achieve connection and integration with external systems.
N895313512X N95313012D SUP-AL N895313000R ALSTOM interface board module
Power supply circuit: The power supply circuit is a part of the circuit that provides energy to each unit circuit in the entire circuit board. It works in a high voltage and high current environment, and is the part of the circuit that is most prone to failure.
The function of the power supply circuit is to convert 220VAC or 380VAC AC into a variety of different grades required by the circuit board, and the output voltage is constant ±5V, 12V, 15V, 18V, 24V grade DC.
Input interface circuit: N895313512X-N95313012D-SUP-AL-N895313000R Input interface circuit is a part of the circuit board and the outside world for information exchange and communication, it can be people want to say to the circuit board or to do things into the circuit board microprocessor can recognize the electrical signal. For example: When we are monitoring the temperature, if you use our ordinary human communication language to say to the microprocessor, the temperature is high, please turn it down a little, the microprocessor is not able to understand what we say, at this time, we can first use the interface circuit to convert the temperature signal into an electrical signal, and then process the converted electrical signal. You get an electrical signal that the microprocessor can recognize. That way, once the microprocessor understands what we want it to do, it can do what we want it to do. The same is true of other signals such as illumination, pressure, wind, liquid level, position, and so on.
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