xrd9836 Exar Corporation, xrd9836 Datasheet - Page 16

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xrd9836

Manufacturer Part Number
xrd9836
Description
16-bit Pixel Gain Afe
Manufacturer
Exar Corporation
Datasheet

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F
SET
XRD9836
16-BIT PIXEL GAIN AFE
REV. 1.0.0
ALTERNATE PIXEL OFFSET ADJUST
MODE (APOAM):
In some applications, alternate pixels along a scan
line come from two different rows of CCD’s, causing a
systematic offset between alternate pixels. When the
XRD9836 is operated in the Fixed Gain Offset Mode
(FGOM), it does not have the ability to compensate
for this alternating offset phenomenon.
To compensate for these offsets, this chip has an Al-
ternate Pixel Offset Adjust mode (APOAM), which
can be enabled by writing a 1 to the APOAM bit (D1of
the MODE register) through the serial port. In
APOAM mode each channel has four 10-bit offset
registers to control offset. Odd pixel offsets are com-
pensated for by the Dynamic Offset Register value
and the Fine Offset Register value. The even pixel off-
sets are compensated for by the APOAM Dynamic
Offset Register value and the APOAM Fine Offset
Register value. The individual channel pixel gains do
not change and are determined by the red, green and
blue PGA gain register settings.
The offset alternates every other pixel. The first pixel
and all odd pixels in the line use the dynamic offset
and fine offset register values. The even pixels use
the APOAM dynamic offset and the APOAM fine off-
set register values. Odd pixels are defined from the
first ADCLK after the fall of LCLMP.
IGURE
CDS Signal
R
EGISTERS
APOAM Dyn. Reg.
13. APOAM M
Dyn. Reg.
NC
CDS
+
ODE
- C
10 Bit
PGA
ONFIGURATION OF
+
MUX
APOAM Fine Reg.
3:1
Fine Reg.
O
ADC
FF
-
16
Figure 14. APOAM
A
In the PPGOM mode, the APOAM can be selected
only when Input Enable (IE) is disabled. The last dy-
namic gain and offset programmed using the OGI
port are used for the odd pixels.
The APOAM dynamic offset and the APOAM fine reg-
ister values, programmed through the USIO port are
used for the even pixels. The gain value is fixed as the
last received value through the serial port. This is
shown in Figure 14.
Note: LCLMP also defines which pixel is even or odd.
The first pixel after LCLMP goes inactive is odd. Posi-
tion LCLMP so that there are an even number of pix-
els before start of active pixels.
LTERNATION
FIXED GAIN/OFFSET
FIXED GAIN/OFFSET
PIXEL GAIN/OFFSET
PIXEL GAIN/OFFSET
DYNAMIC
OFFSET
OFFSET
SUMMARY OF APOAM USABILITY:
FINE
LCLMP
VSAMP
T
ABLE
MODE
1: S
ODD
ODD
UMMARY OF
SYNCHRONIZATION AND
EVEN
EVEN
OFF
OFF
APOAM
ON
ON
IE
ODD
ODD
xr
xr
USABILITY
NOT USABLE
APOAM
USABLE
USABLE
USABLE
R
EGISTER
EVEN
EVEN

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