The microprocessor can also be used to determine the features of self-calibration cctv power supplies, so that it provides a known output voltage, output voltage detected by the voltage feedback circuit, and storage. In this way, you can eliminate any error voltage feedback resistors, which can use low-cost resistance, but does not affect accuracy. Moreover, the 5 volt and 3.3 volt power supply of the hardware are the same, just different calibration process.
Microprocessor is only listed here are part of the application to determine sexual function examples. Cited these examples just to demonstrate the power of the microprocessor. From this, a large number of power supply parameters can be small and inexpensive microprocessor monitoring and control. But we have not discussed the storage and access information. This also demonstrated the importance of communication power supply.
There are many ways to communicate the power supply, from the simplest to set jumpers or switches until the complex agreements (such as Ethernet). Simple means of communication can be used to set parameters such as output voltage or operating mode. More complex protocol support for the power supply can be more complex and comprehensive control and monitoring.
The real value lies in the remote communications. For telecom and server at a remote power supply, it is extremely important. This remote monitoring capability allows the operator to improve system reliability.
In addition, remote communication also allows the operator to adjust based on the projected load voltage and current limit. In the meantime, if with a standby power can be further improved reliability and uptime. Once the power supply failure to receive a signal to the display, you can notify the operator closes the failed power supply and start the backup supply. This process can be automated, power supply failure conditions can be set up and automatically switch to standby power.