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power-circuit
- 在电源输入的前端利用旁路去耦电容滤波器,在+12V输入时,首先通过一个电解电容C1和电容C2保证电压的输入稳定,之后选择利用稳压器NCP1117ST50T3G将输出电压降到+5V,如图3.5所示,其输出电流为1A。在稳压器之后继续采用一个电解电容C3来保证输入到芯片的供电电压稳定。-Power input at the front end of the use of bypass decoupling capacitor filter when+12V input through a first
communication-circuit
- 由于RS232的电平与Arduino Mega 2560的接口电平不能兼容,所以就需要进行电平的转换,即进行串口转换模块的设计,本文选择利用ATMEGA16U2-MU模块来做电平转换,将上位机的指令通过此模块发给下位机-Since the RS232 level is not compatible with the Arduino Mega 2560 interface level, so we need to level conversion, that is designed to seri
pcb
- NYGNNQ的PCB和SCH文件,RF模块选择用低成本的NRF24L01,mcu选择用国产的单片机stc15w401as和stc15w408s,-NYGNNQ PCB and SCH files, RF module selection with low-cost NRF24L01, mcu choose to use the domestic single-chip stc15w401as and stc15w408s,
zy2
- 基于quartusII利用VHDL语言实现数据选择器的仿真并分析延时的影响-Based on quartusII using VHDL language to achieve data selector simulation and analysis of the impact of delay
滤波电容如何选择
- 在制作电源、高频等情况时需要用到电容滤波,结合一些个人经验总结的滤波电容的选取(The selection of capacitive filter in the production of power and high frequency, and the selection of filter capacitance combined with some personal experiences)