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Investigating the effects of package capacitance on the Frequency Response of Shallow Junction Avalanche Photodiodes

机译:调查封装电容对浅结雪崩光电二极管频率响应的影响

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Shallow junction silicon avalanche photodiodes developed for photon-counting applications exhibit a multiplication gain of several hundred when operated near breakdown. The small size and relatively large gain of these devices identifies them as potential candidates for short-haul optical networking at 650nm. Of importance is the frequency response of these devices and in particular the limitations on achievable bandwidth placed by the packaging of the diodes. This work investigates the effect package capacitance has on the frequency response of Geiger Mode Avalanche Photodiodes (GMAP) when compared to micro-stripline mounted devices. Impulse response measurements are made of the diode using a pulsed laser diode at a wavelength of 650 nm which provides pulses with full-width at half maximum (FWHM) of 70 ps typical and 200 ps maximum. A Fast Fourier Transform (FFT) is applied to the measured pulse to convert it to the frequency domain and de-embed the response of the test fixture and cable assembly. The electrical parameters of the packaged and micro-stripline mounted devices are compared in the frequency domain to see the effect of the package capacitance on the frequency response. Different device geometries are explored to identify suitable candidates for short-haul plastic optical fibre communications.
机译:开发用于光子计数应用的浅结硅雪崩光电二极管在近析操作时表现出几百几百的倍增增益。这些器件的小尺寸和相对大的增益将它们识别为650nm的短途光学网络的潜在候选。重要性是这些器件的频率响应,特别是由二极管的包装放置的可实现带宽的限制。与微型线素安装的装置相比,该工作调查了效果包装电容对地革命模式雪崩光电二极管(GMAP)的频率响应。使用波长为650nm的脉冲激光二极管由二极管进行脉冲响应测量,该脉冲激光二极管在典型的70ps和200ps最大值为70ps的半个最大(fwhm)下提供脉冲。快速傅里叶变换(FFT)应用于测量的脉冲以将其转换为频域并将其脱离测试夹具和电缆组件的响应。在频域中比较包装和微型带式安装装置的电参数,以便在频率响应上看到封装电容的效果。探索了不同的设备几何形状以确定短途塑料光纤通信的合适候选者。

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