NOIL2SC1300A-GDC ON Semiconductor, NOIL2SC1300A-GDC Datasheet - Page 19

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NOIL2SC1300A-GDC

Manufacturer Part Number
NOIL2SC1300A-GDC
Description
LUPA1300-2 COLOR PGA168
Manufacturer
ON Semiconductor
Datasheet

Specifications of NOIL2SC1300A-GDC

Lead Free Status / Rohs Status
Supplier Unconfirmed
Operation and Signaling
Digital Signals
signals. The function of each signal is listed in this table.
Global Shutter
parallel, although subsequent readout is sequential.
Figure 12 shows the integration and readout sequence for
the global shutter. All pixels are light sensitive at the same
period of time. The whole pixel core is reset simultaneously,
Table 12. OVERVIEW OF DIGITAL SIGNALS
MONITOR_1
MONITOR_2
MONITOR_3
INT_TIME_3
INT_TIME_2
INT_TIME_1
RESET_N
CLK
SPI_CS
SPI_CLK
SPI_IN
SPI_OUT
Depending on the operation mode (Master or Slave), the pixel array of the image sensor requires different digital control
In a global shutter, light integration occurs on all pixels in
Signal Name
Line number
Output
Output
Output
Input
Input
Input
Input
Input
Input
Input
Input
Output
I/O
Integration Time
Figure 12. Global Shutter Operation
Output pin for integration timing, high during integration
Output pin for dual slope integration timing, high during integration
Output pin for triple slope integration timing, high during integration
Integration pin triple slope
Integration pin dual slope
Integration pin first slope
Sequencer reset, active LOW
System clock (315 MHz)
SPI chip select
Clock of the SPI (< Sensor clock/30)
Data line of the SPI, serial input
Data line of the SPI, serial output
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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 readout cycle can occur in parallel (refer to
Pipelined Shutter on page 20) or in sequential (refer to
Triggered Shutter on page 22) mode.
B urs t Re ad out
Comments
Time axis

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