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Refer to the schematic and datasheets. In this circuit, we have a photodiode that generates current when light is incident on it. This current

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Refer to the schematic and datasheets. In this circuit, we have a photodiode that generates current when light is incident on it. This current is converted into a voltage by the stage 1 trans-impedence amplifier and then is amplified and filtered further in stage 2. The output of the circuit is the voltage at OUT and the input of the circuit is the current generated by the photodiode. OV - OTV Photodiode Model (Custom) 1 kHz PHOTODIODE 100nA OV 13.3 kHz 1GQ 100pF 7 STAGE 1 TRANSIMPEDANCE AMPLIFIER 2. What is the output of stage 1 at DC? 10 V 100 nv 1.2p HH 10M 3. What is the "-3 dB" point for this circuit? 160 Hz 1.58k 100m HH + 83 kHz STAGE 2 ADDITIONAL GAIN AND FILTERING Vdd No experience No experience OUT $6.81K Aw 750 4. On longer timescales, thermal effects can cause the signal to drift. Assuming the photodiode is stable and 50 ppm/C stability for resistors, what's likely to be the variation in output voltage from 0-400? 20 uv 2.5V 4 mv 20 my No experience

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