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Ultra Low Frequency Low Power CMOS Oscillators for MPPT and Switch Mode Power Supplies

机译:用于MPPT和开关模式电源的超低频低功耗CMOS振荡器

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This paper presents the design of two low power consumption analog oscillators implemented in a 0.35 μm CMOS technology. These oscillators were designed for a power conditioning circuit with an analogue Perturbation and Observation (P&O) Maximum Power Point Tracker (MPPT) to maximize the scavenged power generated by energy harvesting devices. The nominal frequency of the two oscillators is 15Hz and 200 kHz, respectively. The 15Hz oscillator is used to clock the MPPT, whereas the second oscillator generates a sawtooth wave required for the Pulse Width Modulation (PWM) of the switch mode converter. Both oscillators work with a supply voltage of 1V and use a reference current generated by a self-biasing zero temperature coefficient circuit. All the circuitry was designed to operate in the sub-threshold region in order to keep its power consumption to a minimum. The frequency of the 15Hz oscillator varies by 7.1% over a temperature variation from -40 °C to 125 °C. The total power consumption including the current reference circuit is 30 nW at 27°C and reaches a maximum of 90 nW at 80 °C. The frequency of the 200 kHz oscillator varies by 33% over a temperature variation from -40 °C to 125 °C. The sawtooth generator, together with the current reference circuit, consume 63 nW across this temperature range.
机译:本文介绍了采用0.35μmCMOS技术实现的两个低功耗模拟振荡器的设计。这些振荡器设计用于带有模拟摄动和观测(P&O)最大功率点跟踪器(MPPT)的功率调节电路,以最大程度地利用能量收集设备产生的扫频功率。两个振荡器的标称频率分别为15Hz和200 kHz。 15Hz振荡器用于为MPPT计时,而第二个振荡器产生开关模式转换器的脉宽调制(PWM)所需的锯齿波。两个振荡器均在1V的电源电压下工作,并使用由自偏置零温度系数电路产生的参考电流。所有电路均设计为在亚阈值区域内运行,以将其功耗降至最低。在-40°C至125°C的温度范围内,15Hz振荡器的频率变化7.1%。包括电流基准电路在内的总功耗在27°C时为30 nW,在80°C时最大为90 nW。在-40°C至125°C的温度范围内,200 kHz振荡器的频率变化33%。锯齿波发生器与电流基准电路一起在此温度范围内消耗63 nW的功率。

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