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at89s51temper
- 用AT89C52和moc3041实现温度控制系统-AT89C52 and moc3041 used to achieve temperature control system
ADC_Serial
- This source code improves an interface for the control of 5 outs from PIC16F877A to on/off 5 house devices (this outs must be optoisolated trough optocouplers like MOC3041). This code also do A/D conversion for the tempe
Driving_A_Triac_from_a_PC
- triac moc3041 driver lpt port &snnuber 220v
MOC3041
- 光耦MOC3041,MOC3042,MOC3043等一系列芯片-The MOC3041, MOC3042 and MOC3043 devices consist of gallium arsenide infrared emitting diodes optically coupled to a monolithic silicon detector performing the function of a Zero Volta
abc
- 设计以89c52单片机为核心,采用了温度传感器AD590,A/D采样芯片ADC0804,可控硅MOC3041及PID算法对温度进行控制。该水温控制系统是一个典型的检测、控制型应用系统,它要求系统完成从水温检测、信号处理、输入、运算到输出控制电炉加热功率以实现水温控制的全过程。-89c52 microcontroller as the core design, using a temperature sensor AD590, A/D s
shuiwen
- 本设计以89c52单片机为核心,采用了温度传感器AD590,A/D采样芯片ADC0804,可控硅MOC3041及PID算法对温度进行控制。对水温控制系统的整理,难得可贵的资料。-This design with 89 c52 as the core, adopting the temperature sensor AD590 and the A/D sampling chip ADC0804, SCR MOC3041 and PID a
FS_text_CODE
- 使用数字式温度传感器DS18B20采集周围的环境温度,单片机的定时器中断产生脉冲宽度调制控制双向可控硅,改变电机两端的电压,从而达到改变风速的目的。设定在一定温度范围内,对应的脉冲占空比比值,然后定时器中断当中形成相应占空比的PWM波,通过单片机的引脚去控制内部集成有过零电路的光电耦合MOC3041,光耦再去触发双向可控硅。-Use around the digital temperature sensor DS18B20 acquis
test_3
- 使用数字式温度传感器DS18B20采集周围的环境温度,单片机的定时器中断产生脉冲宽度调制控制双向可控硅,改变电机两端的电压,从而达到改变风速的目的。设定在一定温度范围内,对应的脉冲占空比比值,然后定时器中断当中形成相应占空比的PWM波,通过单片机的引脚去控制内部集成有过零电路的光电耦合MOC3041,光耦再去触发双向可控硅。-Use around the digital temperature sensor DS18B20 acquis