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Section 9: Test Results
9A. Timing Operations and Analog I/O Signals
Hamamatsu Photonics Uk Ltd
This is the timing diagram of the G9201~8 and G9211~4 sensors. The integration time is set by the Reset input pulse width. Each pixel is being read out every 8 clocks.
In the software interface, the pixel format, readout mode, integration time, temperature, bias voltages, and the number of line data to be written can be defined.
Pixel Number Select: 256 or 512.
For a 512-pixel array, there are two video output ports on the sensor chip: even and odd. Three readout modes are designed to read out from the sensor depending on the different multiplexer timing:
Multiplexer Timing (1) – Even/Odd simultaneous (parallel)
Multiplexer Timing (1a) – Non-Return to Zero (stagger)
Multiplexer Timing (2) – Clock burst with return to zero between pixel reads (bursts) – the same as C8062, the standard InGaAs multichannel detector head offered by Hamamatsu
The three different timing modes are tested, and the timing diagrams and test results are shown in Figures 9-3 to 9-18.
9B. Dark Stability
To verify the dark output is stable over time, indicating the InGaAs sensor cold-side temperature is stable at 0 deg. C., 600 scans are collected at 1 second integration time in the dark and the standard deviation is calculated for each pixel. Note: The level grouping is caused by Even/Odd CMOS ROIC variation. This is normal Even/Odd output pattern.
9C. Noise
The readout noise was measured at 1 millisecond (msec) integration time.
Since the unity gain and the 5V reference voltage of ADC are used, one LSB represents 76.3µV. The readout noise is in the range of 300µV~600µV.
Hamamatsu Photonics Akira Hiruma
9D. Linearity
