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Implementation of a MSP430-based digital thermometer using the slope ADC of the timer port module

机译:使用定时器端口模块的斜率ADC实现基于MSP430的数字温度计

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摘要

This report describes the slope A/D measurement of a resistance and the ease with which it can be applied to MSP430 microcontrollers. It describes a digital thermometer design that uses the slope ADC capabilities of the Timer Port module on the MSP430x3xx microcontrollers. It is used more generally as a reference on how to connect resistive sensors and reference resistors to the Timer Port module. All MSP430x3xx devices include the Timer Port module. The module allows several resistive sensors and reference resistors to be connected in an application. Unused module pins can be used as independent outputs. Slope A/D conversion is an analog-to-digital conversion technique that can be implemented with a comparator rather than a standalone ADC module or device. The technique is based on the charging/discharging of a capacitor with a known value. The number of clock cycles necessary to discharge the capacitor is then counted. Longer discharge times indicate larger voltages. The voltage is derived from the discharge time using the standard equation for capacitor discharge. In addition to digitizing voltages, a variation of the technique can be used to measure resistance. This is valuable in measuring any component that can have varying resistance, such as potentiometers and various types of transducers. Unlike voltage measurement, where the key relationship is between voltage and time while the resistance is constant, the key relationship in resistance measurement is between resistance and time, while the initial voltage remains constant. The R-relationship is linear, which means the calculation is easier and less- costly to implement in a microcontroller than for the exponential V-t relationship. The thermometer has been simulated by using a variable resistance instead of a thyristor. In addition care has been taken to optimize the power consumption by forcing the microcontroller to several low-power modes during the operation. The combination of the Timer Port module, the 16-bit CPU, and the ultra low power design provide unmatched MIPS per watt performance. The set up can be extended to provide a low power thermostat.
机译:该报告描述了电阻的斜率A / D测量以及将其应用于MSP430微控制器的简便性。它描述了一种数字温度计设计,该设计使用MSP430x3xx微控制器上定时器端口模块的斜率ADC功能。在如何将电阻传感器和参考电阻连接到定时器端口模块上,它通常用作参考。所有MSP430x3xx器件都包含定时器端口模块。该模块允许在应用中连接多个电阻传感器和参考电阻。未使用的模块引脚可以用作独立输出。斜率A / D转换是一种模数转换技术,可以使用比较器而不是独立的ADC模块或器件来实现。该技术基于具有已知值的电容器的充电/放电。然后计算电容器放电所需的时钟周期数。放电时间越长表示电压越高。使用电容器放电的标准公式从放电时间得出电压。除了数字化电压,该技术的一种变体也可以用于测量电阻。这对于测量任何可能具有可变电阻的组件都很有价值,例如电位计和各种类型的传感器。与电压测量不同,电压测量的关键关系是电压与时间之间的关系,而电阻是恒定的;电阻测量中的关键关系是电阻与时间之间的关系,而初始电压则保持恒定。 R关系是线性的,这意味着与指数V-t关系相比,在微控制器中实现计算更容易且成本更低。通过使用可变电阻代替晶闸管来模拟温度计。此外,通过在操作过程中迫使微控制器进入几种低功耗模式,已经采取了优化功耗的措施。定时器端口模块,16位CPU和超低功耗设计的结合提供了无与伦比的MIPS每瓦性能。可以扩展设置以提供低功率恒温器。

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