參數(shù)資料
型號: ADV7311KST
廠商: Analog Devices Inc
文件頁數(shù): 40/84頁
文件大?。?/td> 0K
描述: IC VID ENC 6-12BIT DAC'S 64LQFP
產品變化通告: ADV7xxx Obsolescence 16/Jan/2012
標準包裝: 1
類型: 視頻編碼器
應用: DVD,SD/HD
電壓 - 電源,模擬: 2.5V
電壓 - 電源,數(shù)字: 2.5V
安裝類型: 表面貼裝
封裝/外殼: 64-LQFP
供應商設備封裝: 64-LQFP(14x14)
包裝: 托盤
REV. A
ADV7310/ADV7311
–45–
COLOR CONTROLS AND RGB MATRIX
HD Y Level, HD Cr Level, HD Cb Level
[Subaddress 16h–18h]
Three 8-bit registers at Address 16h, 17h, 18h are used to program
the output color of the internal HD test pattern generator, be it
the lines of the cross hatch pattern or the uniform field test
pattern. They are not functional as color controls on external
pixel data input. For this purpose the RGB matrix is used.
The standard used for the values for Y and the color difference
signals to obtain white, black, and the saturated primary and
complementary colors conforms to the ITU-R BT.601-4 standard.
Table VIII shows sample color values to be programmed into
the color registers when Output Standard Selection is set to EIA 770.2.
Table VIII. Sample Color Values for EIA 770.2 Output
Standard Selection
Sample
Y
Cr
Cb
Color
Value
White
235 (EB)
128 (80)
Black
16 (10)
128 (80)
Red
81 (51)
240 (F0)
90 (5A)
Green
145 (91)
34 (22)
54 (36)
Blue
41 (29)
110 (6E)
240 (F0)
Yellow
210 (D2)
146 (92)
16 (10)
Cyan
170 (AA)
16 (10)
166 (A6)
Magenta
106 (6A)
222 (DE)
202 (CA)
HD RGB Matrix
[Subaddress 03h–09h]
When the programmable RGB matrix is disabled [Address 02h,
Bit 3], the internal RGB matrix takes care of all YCrCb to YUV
or RGB scaling according to the input standard programmed
into the device.
When the programmable RGB matrix is enabled, the color compo-
nents are converted according to the 1080i standard [SMPTE 274M]:
Y'
R'
G'
B'
CB'
B' Y'
CR'
R' Y'
=+
+
=
=
0 2126
0 7152
0 0722
05
10 0722
05
10 2126
..
.
[. / (
.
)](
)
[. / (
.
)](
)
This is reflected in the preprogrammed values for GY = 138Bh,
GU = 93h, GV = 3B, BU = 248h, and RV = 1F0.
If another input standard is used, the scale values for GY, GU,
GV, BU, and RV have to be adjusted according to this input
standard. The user must consider the fact that the color compo-
nent conversion might use different scale values. For example,
SMPTE 293M uses the following conversion:
Y'
R'
G'
B'
CB'
B' Y'
CR'
R' Y'
=+
+
=
=
0 299
0 587
0 114
05
1 0 114
05
1 0 299
..
.
[. / (
.
)](
)
[. / (
.
)](
)
The programmable RGB matrix can be used to control the HD
output levels in cases where the video output does not conform
to standard due to altering the DAC output stages such as ter-
mination resistors. The programmable RGB matrix is used for
external HD data and is not functional when the HD test pattern
is enabled.
Programming the RGB Matrix
The RGB matrix should be enabled [Address 02h, Bit 3], the
output should be set to RGB [Address 02h, Bit 5], sync on PrPb
should be disabled [Address 15h, Bit 2], and sync on RGB is
optional [Address 02h, Bit 4].
GY at address 03h and 05h control the output levels on the green
signal, BU at 04h and 08h the blue signal output levels and RV
at 04h and 09h the red output levels. To control YPrPb output
levels, YUV output should be enabled [Address 02h, Bit 5]. In
this case GY [Address 05h; Address 03, Bit 0-1] is used for the
Y output, RV [Address 09; Address 04, Bit 0-1] is used for the
Pr output, and BU [Address 08h; Address 04h, Bit 2-3] is used
for the Pb output.
If RGB output is selected the RGB matrix scaler uses the
following equations:
GGY
Y
GU
Pb
GV
Pr
BGY
Y
BU
Pb
RGY
Y
RV
Pr
=× +×
=× +
×
=× +
×
If YPrPb output is selected the following equations are used:
YGY
Y
UBU
Pb
VRV
Pr
On power-up, the RGB matrix is programmed with the default
values below.
Table IX. RGB Matrix Default Values
Address
Default
03h
04h
F0h
05h
4Eh
06h
0Eh
07h
24h
08h
92h
09h
7Ch
When the programmable RGB matrix is not enabled, the
ADV7310/ADV7311 automatically scales YCrCb inputs to
all standards supported by this part.
SD Luma and Color Control
[Subaddress 5Ch, 5Dh, 5Eh, 5Fh]
SD Y Scale, SD Cr Scale, and SD Cb Scale are three 10-bit
wide control registers to scale the Y, U, and V output levels.
Each of these registers represents the value required to scale the
U or V level from 0.0 to 2.0 and the Y level from 0.0 to 1.5 of
its initial level. The value of these 10 bits is calculated using the
following equation:
Y, U, or V ScalarValue
Scale Factor
=× 512
For example:
Scale Factor = 1.18
Y, U, or V Scale Value
(rounded to the nearest integer)
Y, U, or V Scale Value
b
=
1.18
512
665.6
665
1010 0110 01
Address 5Ch, SD LSB Register = 15h
Address 5Dh, SD Y Scale Register = A6h
Address 5Eh, SD V Scale Register = A6h
Address 5Fh, SD U Scale Register = A6h
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