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CS7622 датащи(PDF) 23 Page - Cirrus Logic

номер детали CS7622
подробное описание детали  CCD Imager Analog Processor
PDF  36 Pages
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производитель  CIRRUS [Cirrus Logic]
домашняя страница  http://www.cirrus.com
Logo CIRRUS - Cirrus Logic

CS7622 датащи(HTML) 23 Page - Cirrus Logic

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CS7622
DS322PP1
23
Gain Calibration Offset 1
Default = 00h; Read only (address 0Eh)
Gain Calibration Offset 2
Default = 00h; Read only (address 0Fh)
Gain Calibration Offset 3
Default = 00h; Read only (address 10h)
Bit Number
765432
10
Bit Name
gain_offset
17
gain_offset
16
gain_offset
15
gain_offset
14
gain_offset
13
gain_offset
12
gain_offset
11
gain_offset
10
Default
000000
00
Bit
Mnemonic
Function
7:0
gain_offset17-10
offset added to 4x gain segment, values are in 2’s complement. See details in
register 10h.
Bit Number
765432
10
Bit Name
gain_offset
27
gain_offset
26
gain_offset
25
gain_offset
24
gain_offset
23
gain_offset
22
gain_offset
21
gain_offset
20
Default
000000
00
Bit
Mnemonic
Function
7:0
gain_offset27-20
offset added to 2x gain segment, values are in 2’s complement. See details in
register 10h.
Bit Number
765432
10
Bit Name
gain_offset
37
gain_offset
36
gain_offset
35
gain_offset
34
gain_offset
33
gain_offset
32
gain_offset
31
gain_offset
30
Default
000000
00
Bit
Mnemonic
Function
7:0
gain_offset37-30
Offset added to 1x gain segment. Values are in 2’s complement.
These registers are used to report some of the calibration settings. After cali-
bration is performed the gain offset registers are automatically updated with val-
ues needed for the DRX circuitry to operate correctly. These registers should
not be written to since this will remove the proper settings found during calibra-
tion. The gain offset values are used to add an offset to the output of the ADC
when using different analog gain settings (See equations below). The purpose
of this is to produce a continuous transition between the different gain settings
so that the final 13 bit output is monotonic and has no undesired artifacts. (See
Figure 17)
{ADC_out
if in the 8x gain segment}
dout[12:0] =
{ADC_out*2+Offset1
if in the 4x gain segment}
{ADC_out*4+Offset2*2
if in the 2x gain segment}
{ADC_out*8+Offset3*4
if in the 1x gain segment}



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