OV2610

Manufacturer Part NumberOV2610
DescriptionColor CMOS UXGA (2.0 MPixel) Camera Chip
ManufacturerOmniVision Technologies, Inc.
OV2610 datasheet
 


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O
mni
ision
Software power-down can be effected by setting the
COMC[4] register bit high (see
Standby current will be less then 1 mA when in
software power-down.
Video Output
RGB Raw Data Output
The OV2610 C
C
offers 10-bit RGB raw data
AMERA
HIP
output.
Digital Video Port
MSB/LSB Swap
OV2610 has a 10-bit digital video port. The MSB and LSB
can be swapped with the control registers.
some examples of connections with external devices.
Figure 6 Connection Examples
MSB D9
D9
LSB D9
D8
D8
D8
D7
D7
D7
D6
D6
D6
D5
D5
D5
D4
D4
D4
D3
D3
D3
D2
D2
D2
D1
D1
D1
LSB D0
D0
MSB D0
OV2610
External Device
OV2610
Default 10-bit Connection
Swap 10-bit Connection
MSB D9
D7
LSB D9
D8
D6
D8
D7
D5
D7
D6
D4
D6
D5
D3
D5
D4
D2
D4
D3
D1
D3
D2
D0
D2
D1
D1
LSB D0
MSB D0
OV2610
External Device
OV2610
Default 8-bit Connection
Swap 8-bit Connection
Version 1.4, September 15, 2003
Line/Pixel Timing
“COMC” on page
18).
The OV2610 digital video port can be programmed to
work in either master or slave mode.
Pixel Output Pattern
Table 2
The data output sequence following the first HREF and
after VSYNC is: B
After the second HREF, the output is G
G
1,1598
output SVGA resolution data, horizontal and vertical
sub-sampling will occur. The default output sequence for
the first line of output will be: B
G
0,1597
R
… G
1,5
Table 2
R/C
Figure 6
shows
0
B
1
G
2
B
3
G
D0
D1
.
.
D2
1198
B
D3
1198,0
D4
1199
G
1199,0
D5
Note that after writing to register
D6
the sensor mode, registers related to the sensor’s
D7
cropping window will be reset back to its default value.
D8
D9
External Device
D0
D1
D2
D3
D4
D5
D6
D7
External Device
Proprietary to OmniVision Technologies
Functional Description
shows the output data order from the OV2610.
G
B
G
… B
0,0
0,1
0,2
0,3
0,1598
R
1,0
1,1
R
…, etc. If the OV2610 is programmed to
1,1599
G
B
G
0,0
0,1
0,4
. The second line of output will be: G
R
.
1,1596
1,1597
Data Pattern
0
1
2
3
. . .
1598
G
B
G
. . .
B
0,0
0,1
0,2
0,3
0,1598
R
G
R
. . .
G
1,0
1,1
1,2
1,3
1,1598
G
B
G
. . .
B
2,0
2
2,2
2,3
2,1598
R
G
R
. . .
G
3,0
3,1
3,2
3,3
3,1598
.
.
G
B
G
B
1198,1
1198,2
1198,3
1198,1598
R
G
R
G
1199,1
1199,2
1199,3
1199,1598
COMH
(0x12) to change
G
.
0,1599
G
R
1,2
1,3
… B
0,5
0,1596
R
G
1,0
1,1
1,4
1599
G
0,1599
R
1,1599
G
2,1599
R
3,1599
G
1198,1599
R
1199,1599
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