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STW8009 데이터 시트보기 (PDF) - STMicroelectronics

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STW8009
STMICROELECTRONICS
STMicroelectronics STMICROELECTRONICS
STW8009 Datasheet PDF : 66 Pages
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Functional description
4
Functional description
STw8009/STw8019
4.1
General
STw80x9 operates either in master mode where it supplies all sync signal or in slave mode.
The digital input is an 8-bit bus carrying Y, Cb and Cr at 13.5 MHz. Input samples are
latched in on the rising edge of the clock input signal.
STw80x9 is able to encode interlaced (in all standards) and non interlaced (in PAL and
NTSC) video.
STw80x9 outputs interlaced or non-interlaced video in PAL-B,D,G,H,I,PAL-N,PAL-M or
NTSC-M standards (“NTSC-4.43” is also possible).
The burst sequences are internally generated, subcarrier generation being performed
numerically with the 27 MHz as reference. 4-frame bursts are generated for PAL or 2-frame
bursts for NTSC. Rise and fall times of synchronization tips and burst envelope are internally
controlled according to the relevant ITU_R and SMPTE recommendations.
4.2
Master & slave modes
In master mode, STw80x9 supplies Hsync and Odd/Even sync signals (with independently
programmable polarities) to drive other blocks. STw80x9 starts encoding and counting clock
cycles as soon as the master mode has been loaded into the control register (Reg 0).
Configuration bits “Syncout_ad[1:0]” (Reg 4) allow to shift the relative position of the sync
signals by up to 3 clock cycles to cope with any YcbCr phasing.
In slave modes, several modes are available, Odd/Even+Hsync based, Vsync+Hsync
based, Odd/Even-only based, Vsync-only based or Sync-in-data based.
4.3
Auto test mode
An auto test mode is available, which causes STw80x9 to produce a color bar pattern, in the
appropriate standard, independently from the video input.
4.4
Input demultiplexor
The incoming YcbCr 4:2:2 data are demultiplexed into chroma information stream, a “blue-
difference” and a “red-difference”, and a luma information stream. Incoming data bits are
treated as blue, red or luma samples according to their relative position with respect to the
sync signals. Brightness, Saturation and Contrast are then performed on demultiplexed
data.
The ITU-R601 recommendation defines the black luma level as Y=16dec and the maximum
white luma level as Y=235dec. Similarly it defines 255 quantification levels for the color
difference components (Cr, Cb) centered around 128. Accordingly, incoming YcbCr samples
can be saturated. In this case STw80x9 provides a saturation limitation feature to avoid
having heavily saturated signal before digital to analog conversion and to avoid generating a
distorted signal at STw80x9 CVBS or Y/C outputs.
10/65

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