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HDMI 1.4/2.0 TX Subsystem
41
PG235 October 4, 2017
Chapter
3:
Designing with the Subsystem
Similarly, for YUV 4:2:0 deep color (10, 12, or 16 bits), the data representation is the same as
shown in
and
. The only difference is that each component carries
more bits (10, 12, and 16). To make the YUV 4:2:0 compatible with
AXI4-Stream Video IP and
System Design Guide
, enable it from the HDMI Transmitter Subsystem GUI.
Using an 8-bit video as an example,
illustrates the YUV 4:2:0 AXI4-Stream video
data representation in
AXI4-Stream Video IP and System Design Guide
However, in the native HDMI video interface, the video data representation must be as
shown in
.
X-Ref Target - Figure 3-7
Figure
3
‐
7:
YUV420 Color Space Dual Pixels Data Format
Y00
Cb00
Y01
Y02
Cb02
Y03
0
12
24
36
48
60
84
96
108
72
120
144
132
YUV420
8-bits
Line 0
Y10
Cr00
Y11
Y12
Cr02
Y13
YUV420
8-bits
Line 1
;
X-Ref Target - Figure 3-8
Figure
3
‐
8:
YUV 4:2:0 AXI4-Stream Video Data (Dual Pixel per Clock)
CLK
TVALID
TDATA;=
TDATA;=
TDATA;=
#R
#R
#R
#R
#R
TDATA;=
9
9
9
9
9
9
9
9
9
9
TDATA;=
#B
#B
#B
#R
#B
TDATA;=
9
9
9
9
9
9
9
9
9
9
TLAST