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VPC3200A View Datasheet(PDF) - Micronas

Part Name
Description
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VPC3200A
Micronas
Micronas Micronas
VPC3200A Datasheet PDF : 78 Pages
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VPC 323xD, VPC 324xD
ADVANCE INFORMATION
Table 2–1 gives the picture settings achieving exact
level matching between the YCrCb_cip and
YCrCb_main channel.
Table 2–1: Standard picture settings
input contrast brightness satCr satCb
format
RGB
27
68
29
23
YCrCb
27
68
40
40
Note: R, G, B, Cr, Cb, = 0.7 Vpp, Y(+ sync) 1 Vpp
2.4.4. Softmixer
After an automatic delay matching, the component sig-
nals and the upsampled main video signal are gath-
ered onto a unique YCrCb channel by means of a ver-
satile 4:4:4 softmixer (see also Fig. 2–10).
The softmixer circuit consists of a Fast Blank (FB) pro-
cessing block supplying a mixing factor k (0...64) to a
high quality signal mixer achieving the output function:
YCrCb_mix=( k*YCrCb_main+ (64-k)*YCrCb_cip )/64
The softmixer supports several basic modes that are
selected via I2C bus (see Table 2–2).
2.4.4.1. Static Switch Mode
In its simplest and most common application the soft-
mixer is used as a static switch between YCrCb_main
and YCrCb_cip. This is for instance the adequate way
to handle a DVD component signal.
The factor k is clamped to 0 or 64, hence selecting
YCrCb_main or the component input YCrCb_cip. (see
Table 2–2)
2.4.4.2. Static Mixer Mode
The signal YCrCb_main and the component signal
YCrCb_cip may also be
ronment, k is manually
statically mixed. In
controlled via I2C
this envi-
registers
FBGAIN and FBOFFS according to the following
expression:
k = FBGAIN*(31FBOFFS) + 32
All the necessary limitation and rounding operation are
built-in to fit the range: 0 k 64.
In the static mixer mode as well as in the previously
mentioned static switch mode (see Table 2–2), the
softmixer operates independently of the analogue Fast
Blank input.
2.4.4.3. Dynamic Mixer Mode
In the dynamic mixer mode, the mixer is controlled by
the Fast Blank signal. The VPC32xxD provides a linear
mixing coefficient
k=kl = FBGAIN*(FBFBOFFS) + 32
(FB is the digitized Fast Blank), and a non-linear mix-
ing coefficient knl=F(kl), which results from a further
non-linear processing of kl.
While the linear mixing coefficient is used to insert a
fullscreen video signal, the non-linear coefficient is
well-suited to insert Fast Blank related signals like text.
The non-linear mixing reduces disturbing effects like
over/undershoots at critical Fast Blank edges.
VIDEO
Y/C processing
YCrCb_main
mixer
YCrCb_mix
RGB/YCrCb
Component
Processing
YCrCb_cip
Fig. 2–10: Block diagram of the component mixer
14
Micronas

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