ALXD800EEXJCVD C3 AMD (ADVANCED MICRO DEVICES), ALXD800EEXJCVD C3 Datasheet - Page 393
ALXD800EEXJCVD C3
Manufacturer Part Number
ALXD800EEXJCVD C3
Description
Manufacturer
AMD (ADVANCED MICRO DEVICES)
Datasheet
1.ALXD800EEXJCVD_C3.pdf
(680 pages)
Specifications of ALXD800EEXJCVD C3
Operating Temperature (min)
0C
Operating Temperature (max)
85C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Lead Free Status / RoHS Status
Compliant
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Video Processor
6.7.3
After the video data has been buffered, the upscaling algo-
rithm is applied. The Video Processor module employs a
Digital Differential Analyzer-style (DDA) algorithm for both
horizontal and vertical upscaling. The scaling parameters
are programmed via the Video Scale register (VP Memory
Offset 020h). The scalers support up to 8x scale factors
both horizontally and vertically. The scaled video pixel
stream is then passed through bi-linear interpolating filters
(2-tap, 8-phase) to smooth the output video, significantly
enhancing the quality of the displayed image.
The X and Y Upscaler uses the DDA and linear interpolat-
ing filter to calculate (via interpolation) the values of the pix-
els to be generated. The interpolation formula uses A
A
intermediate points. The actual location of calculated
points is determined by the DDA algorithm.
The location of each intermediate point is one of eight
phases between the original pixels (see Figure 6-26).
6.7.4
After scaling and filtering have been performed, YUV video
data is passed through the color space converter to obtain
24-bit RGB video data.
AMD Geode™ LX Processors Data Book
i,j+1
, A
i+1,j
y
X and Y Upscaler
Color Space Converter
, and A
A
i,j
b
A
1
i+1,j
i+1,j+1
x
values to calculate the value of
z
Figure 6-26. Linear Interpolation Calculation
A
b
A
2
i,j+1
i+1,j+1
Notes:
x and y are 0 - 7
b 1
b
z
2
=
=
i,j
=
,
(
(
b
(
A i j ,
A
1
i j ,
)
8 x
----------- -
Color space conversion equations are based on the
BT.601-1 recommendation:
Standard definition color space conversion equations are
based on Microsoft’s recommendations as follows:
For high definition video, the color space conversion equa-
tions are based on Rec. ITU-R BT.709 as follows:
The color space converter clamps inputs to prevent them
from exceeding acceptable limits.
The color space converter can be bypassed for overlaying
16-bpp graphics data.
)
8
–
+
8 y
----------- -
8
1
–
R = 1.164383(Y-16) + 1.596027(V-128)
G = 1.164383(Y-16) - 0.812968(V-128) - 0.391762
B = 1.164383(Y-16) + 2.017232(U-128)
R = 1.164383(Y-16) + 1.792742(V-128)
G = 1.164383(Y-16) - 0.532909(V-128) - 0.213249
B = 1.164383(Y-16) + 2.112402(U-128)
)
+
8 y
----------- -
(
+
8
–
b
(
2
(U-128)
(U-128)
A i
)
+
x
-- -
8
+
(
A
1 j ,
i
+
)
y
-- -
8
1 j
,
+
1
)
y
-- -
8
33234H
393
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