参数资料
型号: NOIL1SM0300A-WWC
厂商: ON Semiconductor
文件页数: 11/30页
文件大小: 0K
描述: IC IMAGE SENSOR LUPA300 48LLC
标准包装: 1
系列: LUPA300
象素大小: 9.9µm x 9.9µm
有源象素阵列: 640H x 480V
每秒帧数: 250
电源电压: 2.5 V,3.3 V
类型: CMOS 成像
封装/外壳: 48-LCC
供应商设备封装: 48-LCC(14.22x14.22)
包装: 托盘
NOIL1SM0300A
Global Shutter
In a global shutter light integration takes place on all
pixels in parallel, although subsequent readout is sequential.
Figure 10 shows the integration and read out sequence for
the synchronous shutter. All pixels are light sensitive at the
same period of time. The whole pixel core is reset
simultaneously and after the integration time all pixel values
are sampled together on the storage node inside each pixel.
The pixel core is read out line by line after integration. Note
that the integration and read out cycle can occur in parallel
or in sequential mode.
Line number
Time axis
Integration time
Burst Readout time
Figure 10. Synchronous Shutter Operation
Non Destructive Readout (NDR)
time
Figure 11. Principle of Non Destructive Readout [1]
The sensor can also be read out in a non destructive way.
After a pixel is initially reset, it can be read multiple times,
without resetting. The initial reset level and all intermediate
signals can be recorded. High light levels saturate the pixels
quickly, but a useful signal is obtained from the early
samples. Essentially an active pixel array is read multiple
times, and reset only once. The external system intelligence
takes care of the interpretation of the data. Table 11
summarizes the advantages and disadvantages of non
destructive readout.
samples. For low light levels, one has to use the later or latest
NOTE 1:This mode can be activated by setting the NDR SPI register. The NDR SPI register must only be changed during FOT. The NDR
bit should be set high during the first Frame Overhead Time after the pixel array is reset; the NDR bit must be set low during the last
Frame Overhead Time before the pixel array is being reset.
http://onsemi.com
11
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