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AR0130CSSC00SPBA0-DP1 Datasheet(PDF) 17 Page - ON Semiconductor

Part # AR0130CSSC00SPBA0-DP1
Description  1/3‐inch CMOS Digital Image Sensor
PDF  40 Pages
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

AR0130CSSC00SPBA0-DP1 Datasheet(HTML) 17 Page - ON Semiconductor

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AR0130CS
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17
When using horizontal mirror mode, the user must
retrigger column correction. Please refer to the column
correction section to see the procedure for column
correction retriggering. Bayer resampling must be enabled,
by setting bit 4 of register 0 x 306E[4] = 1.
Figure 15. Six Pixels In Normal and Column Mirror Readout Modes
G0[11:0] R0[11:0] G1[11:0] R1[11:0] G2[11:0] R2[11:0]
G2[11:0] R2[11:0] G1[11:0] R1[11:0] G0[11:0] R0[11:0]
DOUT[11:0]
LV
Normal readout
DOUT[11:0]
Reverse readout
Row Mirror Image
By setting R0x3040[15] = 1, the readout order of the rows
is reversed as shown in Figure 16. The starting Bayer color
pixel is maintained in this mode by a 1−pixel shift in the
imaging array. When using horizontal mirror mode, the user
must retrigger column correction. Please refer to the column
correction section to see the procedure for column
correction retriggering.
Figure 16. Six Rows In Normal and Row Mirror Readout Modes
Row0 [11:0] Row1 [11:0] Row2 [11:0] Row3 [11:0] Row4 [11:0] Row5 [11:0]
Row5 [11:0] Row4 [11:0] Row3 [11:0] Row2 [11:0] Row1 [11:0] Row0[11:0]
DOUT[11:0]
FV
Normal readout
DOUT[11:0]
Reverse readout
Maintaining a Constant Frame Rate
Maintaining a constant frame rate while continuing to
have the ability to adjust certain parameters is the desired
scenario. This is not always possible, however, because
register updates are synchronized to the read pointer, and the
shutter pointer for a frame is usually active during the
readout of the previous frame. Therefore, any register
changes that could affect the row time or the set of rows
sampled causes the shutter pointer to start over at the
beginning of the next frame.
By default, the following register fields cause a “bubble”
in the output rate (that is, the vertical blank increases for one
frame) if they are written in video mode, even if the new
value would not change the resulting frame rate. The
following list shows only a few examples of such registers;
a full listing can be seen in the AR0130 Register Reference.
• x_addr_start
• x_addr_end
• y_addr_start
• y_addr_end
• frame_length_lines
• line_length_pclk
• coarse_integration_time
• fine_integration_time
• read_mode
The size of this bubble is (Integration_Time
× tROW),
calculating the row time according to the new settings.
The Coarse_Integration_Time and
Fine_Integration_Time fields may be written to without
causing a bubble in the output rate under certain
circumstances. Because the shutter sequence for the next
frame often is active during the output of the current frame,
this would not be possible without special provisions in the
hardware. Writes to these registers take effect two frames
after the frame they are written, which allows the integration
time to increase without interrupting the output or producing
a corrupt frame (as long as the change in integration time
does not affect the frame time).
Synchronizing Register Writes to Frame Boundaries
Changes to most register fields that affect the size or
brightness of an image take effect on the frame after the one
during which they are written. These fields are noted as
“synchronized to frame boundaries” in the AR0130 Register
Reference. To ensure that a register update takes effect on
the next frame, the write operation must be completed after
the leading edge of FV and before the trailing edge of FV.



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