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Capacitive Characteristics of High-Speed Photovoltaic Converters at Combined Lighting

机译:综合照明中高速光伏转换器的电容特性

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摘要

p-i-n GaAs photovoltaic converters of modulated laser radiation (810-830 nm) transferring both energy (laser power) and information signal were developed. The capacitance and frequency characteristics of the photovoltaic converters at a constant 0.2-1 W and variable 16 mW laser power were studied. The dependences of the heterostructures capacitance on the voltage at the p-i-n junction were obtained; it has been found out that the charge accumulated in the i-layer plays the dominant role. As a result, the decrease in the thickness of the undoped region improves the frequency characteristics. This paper shows that at the voltage in the DC circuit of 0.8 V and the laser power of 0.6 W, the efficiency of 39% can be achieved with the 450 MHz transmission band in case of the 20 mV AC signal amplitude at the load of 2.5 Omega. For the voltage in the DC circuit of 1 V in similar modes of continuous laser radiation, the efficiency was 48.6%, and the transmission band was 135 MHz. Increasing the laser power to 1 W reduced the efficiency by about 1% and the bandwidth by 30 MHz. The achieved characteristics of the studied photovoltaic converters would make it possible to use them for providing autonomous power supply for devices with low power consumption at the data rate of 100 Mbit/s and above.
机译:开发了调制激光辐射(810-830nm)的P-I-N GaAs光伏转换器,其传递电能(激光功率)和信息信号。研究了光伏转换器的电容和频率特性,在恒定0.2-1W和可变16兆瓦激光功率下进行了研究。异质结构电容对P-I-N结处的电压的依赖性获得;已经发现,I层中累积的电荷起到了主导作用。结果,未掺杂区域的厚度的降低改善了频率特性。本文表明,在0.8V的DC电路中的电压和0.6W的激光功率,在2.5的负载下的20mV AC信号幅度的情况下,可以通过450 MHz传输带实现39%的效率欧米茄。对于直流电路中的电压为1V,在连续激光辐射的类似模式中,效率为48.6%,传输带为135 MHz。将激光功率增加到1W将效率降低约1%和带宽30 MHz。所研究的光伏转换器的实现特性将使它们可以使用它们来为具有100 Mbit / s及更高的数据速率的具有低功耗的设备提供自主电源。

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