基于MC68F333的单片机不间断电源

C. Melear
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引用次数: 0

摘要

逆变电源和高压/电流开关构成了许多不间断电源(UPS)设计的基础。在一个非常基本的意义上,一个60赫兹的方波与最小的滤波可以满足许多应用。不仅电能质量是一个因素,UPS并网的速度也是一个因素。随着对高质量电源需求的增加和UPS切换响应时间的减少,必须使用更复杂的UPS控制器。微控制器,如MC68F333,为实现智能UPS系统提供了一个很好的载体。单片机可以提供智能和外围模块来测量和监控外部电压电平和频率。根据这些信息,可以做出智能决策,决定是启用电源调节电路,还是完全切换到UPS,直到主电源恢复。微控制器,由于固有的能力,产生复杂的,高速的定时信号,可以锁定在一起的相位和频率,使这些设备的自然选择时,设计现代ups。这些基于mcu的设计允许更高的PWM开关速度,更好地监控外线电压,并增强了当故障发生时确定发生故障类型的能力。根据这些信息,基于MCU的ups可以在外部条件需要时经济地提供备用电源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An MCU based uninterruptible power supply using an MC68F333
Inverting power supplies and high voltage/current switches form the basis for many uninterruptible power supply (UPS) designs. In a very basic sense, a 60 Hz square wave with minimal filtering may suffice in many applications. Not only is power quality a factor but so is the speed at which a UPS can be brought online. As the need for quality power increases and response times to switch in the UPS decrease, more sophisticated controllers for UPSs must be used. Microcontrollers, such as the MC68F333, provide an excellent vehicle to implement intelligent UPS systems. The MCU can provide the intelligence and the peripheral modules to measure and monitor external voltage levels and frequency. From this information intelligent decisions can be made on whether to enable a power conditioning circuit or to completely switch over to a UPS until the main source of power has been restored. Microcontrollers, because of the inherent ability to generate complex, high speed timing signals that can be phase and frequency locked together, makes these devices a natural choice when designing modern UPSs. These MCU-based designs allow for higher PWM switching speeds, better monitoring of the external line voltage and enhanced ability to determine what type of malfunction is occurring when trouble happens. From this information MCU based UPSs can be built to economically provide back-up power when warranted by external conditions.
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