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这是一个ARM的实验。主要是使用PWM6输出一个固定占空比的单边沿控制PWM信号,通过滤波电路实现DAC转换。使用ADS1.2开发环境-ARM experiment. PWM6 mainly use a fixed duty cycle output of single-edge PWM control signal, filter circuit DAC conversion. ADS1.2 use development environment
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三相无刷电机的PWM控制,通过改变下桥臂的占空比来改变电机的转速。-PWM three-phase brushless motor control, by changing the duty cycle under the bridge arm to change the motor speed.
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使用嵌入式ARM编程的PWM的占空比的测量,虽然有点大材小用,但是很实用,对ARM熟悉有好处-ARM programming using the embedded PWM duty cycle measurements, though a bit overkill, but it is practical, familiar benefits of ARM
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实现ARM板子输出PWM波,双通道的,占空比可控制-Achieve ARM board PWM output, dual channel, the duty cycle can be controlled
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ARM处理器的ADS开发环境下,按键改变PWM占空比,使用邮箱。-ARM processor of the ADS development environment, keys to change the PWM duty cycle, use the mailbox.
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stm32 ARM单片机的PWM输出,然后通过通过ADC采样,并且在2.8寸液晶触摸屏幕上显示PWM动态的电压点位和ADC值,pwm频率和占空比可以通过改变定时器值而调整-STM32 ARM microcontroller PWM output, and then passed through the ADC sampling, and dynamic voltage point of the PWM and ADC values 椠渀 the 2.8-inch LCD touch screen
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使用ARM芯片STM32F103FRB,利用高级定时器TIM1 PWM模式输出PWM波,控制无刷直流电机,占空比可调。(The use of ARM chip STM32F103FRB, the use of advanced TIM1 timer PWM mode PWM wave output control, brushless DC motor, adjustable duty cycle.)
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