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Power Management With a Low-Ripple High-Conversion-Ratio 80-V Output Voltage Boost Converter for Avalanche Photodiode System

机译:具有低纹波高转换比80V输出电压升压转换器的电源管理,用于雪崩光电二极管系统

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摘要

Avalanche photodiodes (APDs) accompanied with the transimpedance amplifiers (TIAs) are often utilized as receivers in the communication system. A drawback of APDs is that the avalanche gain depends on temperature and varies with the bias voltage, leading to a decrease in the quality of communication. Moreover, the bias voltage for a high avalanche gain is up to 80 V, implying that a power module is inevitably required and raises the difficulty of integration. Therefore, a power management is proposed to provide an 80-V voltage and compensates the temperature dependence for a constant avalanche gain. The low-ripple high-conversion-ratio boost converter eliminates the $LC$ resonance resulted from the nonideal effect of diodes to supress the output voltage ripple, implying that a high quality of bias voltage is guaranteed. Experimental results show that the output voltage ripple is 2.12 mV under the condition of 1-mA load current. A 97% accuracy of avalanche gain is proved to guarantee the high quality of APDs.
机译:雪崩光电二极管(APD)与跨阻放大器(TIA)一起经常被用作通信系统中的接收器。 APD的一个缺点是雪崩增益取决于温度并随偏置电压而变化,从而导致通信质量下降。此外,高雪崩增益的偏置电压高达80 V,这意味着不可避免地需要电源模块,从而增加了集成难度。因此,提出了一种电源管理以提供80V电压并补偿温度依赖性以获得恒定的雪崩增益。低纹波高转换比升压转换器消除了由于二极管对抑制的非理想效应而导致的 $ LC $ 谐振输出电压纹波,这意味着可以保证高质量的偏置电压。实验结果表明,在1mA负载电流条件下,输出电压纹波为2.12mV。事实证明,雪崩增益的准确性为97%,可确保APD的高质量。

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