首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A discrete component low-noise preamplifier readout for a linear (1 × 16) SiC photodiode array
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A discrete component low-noise preamplifier readout for a linear (1 × 16) SiC photodiode array

机译:线性(1×16)SiC光电二极管阵列的离散分量低噪声前置放大器读数

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摘要

A compact, low-noise and inexpensive preamplifier circuit has been designed and fabricated to optimally readout a common cathode (1 × 16) channel 4H-SiC Schottky photodiode array for use in ultraviolet experiments. The readout uses an operational amplifier with 10 pF capacitor in the feedback loop in parallel with a low leakage switch for each of the channels. This circuit configuration allows for reiterative sample, integrate and reset. A sampling technique is given to remove Johnson noise, enabling a femtoampere level readout noise performance. Commercial-off-the-shelf acquisition electronics are used to digitize the preamplifier analog signals. The data logging acquisition electronics has a different integration circuit, which allows the bandwidth and gain to be independently adjusted. Using this readout photoresponse measurements across the array between spectral wavelengths 200 nm and 370 nm are made to establish the array pixels external quantum efficiency, current responsivity and noise equivalent power.
机译:设计并制造了一种紧凑,低噪声,廉价的前置放大器电路,以最佳地读出用于紫外线实验的共阴极(1×16)通道4H-SiC肖特基光电二极管阵列。读数在反馈环路中使用带有10 pF电容器的运算放大器,并为每个通道并联一个低泄漏开关。该电路配置允许重复采样,积分和复位。提供了一种采样技术来消除约翰逊噪声,从而实现了飞安级读出噪声性能。现成的商用采集电子设备用于数字化前置放大器的模拟信号。数据记录采集电子设备具有不同的积分电路,该积分电路允许独立调节带宽和增益。使用该读出的光响应,在光谱波长为200 nm和370 nm之间的整个阵列上进行测量,以建立阵列像素的外部量子效率,电流响应性和噪声等效功率。

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