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Número de pieza VPX3225D
Descripción Video Pixel Decoders
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No Preview Available ! VPX3225D Hoja de datos, Descripción, Manual

MICRONAS
PRELIMINARY DATA SHEET
VPX 3225D,
VPX 3224D
Video Pixel Decoders
Edition Nov. 9, 1998
6251-432-2PD
MICRONAS

1 page




VPX3225D pdf
PRELIMINARY DATA SHEET
VPX 3225D, VPX 3224D
Contents, continued
Page
Section Title
83 7.
Application Notes
83 7.1. Differences between VPX 3220A and VPX 322xD
83 7.2. Impact to Signal to Noise Ratio
83 7.3. Control Interface
83
7.3.1.
Symbols
83
7.3.2.
Write Data into I2C Register
83
7.3.3.
Read Data from I2C Register
83
7.3.4.
Write Data into FP Register
83
7.3.5.
Read Data from FP Register
84
7.3.6.
Sample Control Code
84 7.4. Xtal Supplier
85 7.5. Typical Application
88 8.
Data Sheet History
Micronas
5

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VPX3225D arduino
PRELIMINARY DATA SHEET
VPX 3225D, VPX 3224D
2.2.3. Chrominance Filter
The demodulation is followed by a lowpass filter for the
color difference signals for PAL/NTSC. SECAM requires
a modified lowpass function with bell-filter characteristic.
At the output of the lowpass filter, all luma information is
eliminated.
The lowpass filters are calculated in time multiplex for
the two color signals. Four bandwidth settings (narrow,
normal, broad, wide) are available for each standard.
The filter passband can be shaped with an extra peaking
term at 1.25 MHz. For PAL/NTSC, a wide band chroma
filter can be selected. This filter is intended for high
bandwidth chroma signals; for example, a nonstandard
wide bandwidth S-VHS signal.
dB
0
–10
–20
–30
–40
–50
01 2 3 4 5
MHz
PAL/NTSC
dB
0
–10
–20
–30
–40
–50
01 2 3 4 5
SECAM
MHz
Fig. 2–5: Frequency response of chroma filters
2.2.4. Frequency Demodulator
The frequency demodulator for demodulating the SE-
CAM signal is implemented as a CORDIC-structure. It
calculates the phase and magnitude of the quadrature
components by coordinate rotation.
The phase output of the CORDIC processor is differen-
tiated to obtain the demodulated frequency. After a pro-
grammable deemphasis filter, the Dr and Db signals are
scaled to standard CrCb amplitudes and fed to the cross-
over-switch.
2.2.5. Burst Detection
In the PAL/NTSC-system, the burst is the reference for
the color signal. The phase and magnitude outputs of
the CORDIC are gated with the color key and used for
controlling the phase-lock-loop (APC) of the demodula-
tor and the automatic color control (ACC) in PAL/NTSC.
The ACC has a control range of +30 ... –6 dB.
For SECAM decoding, the frequency of the burst is mea-
sured. Thus, the current chroma carrier frequency can
be identified and is used to control the SECAM proces-
sing. The burst measurements also control the color kill-
er operation; they can be used for automatic standard
detection as well.
2.2.6. Color Killer Operation
The color killer uses the burst-phase / burst-frequency
measurement to identify a PAL/NTSC or SECAM color
signal. For PAL/NTSC, the color is switched off (killed)
as long as the color subcarrier PLL is not locked. For SE-
CAM, the killer is controlled by the toggle of the burst fre-
quency. The burst amplitude measurement is used to
switch off the color if the burst amplitude is below a pro-
grammable threshold. Thus, color will be killed for very
noisy signals. The color amplitude killer has a program-
mable hysteresis.
2.2.7. PAL Compensation / 1-H Comb Filter
The color decoder uses one fully integrated delay line.
Only active video is stored.
The delay line application depends on the color stan-
dard:
– NTSC: 1-H comb filter or color compensation
– PAL: color compensation
– SECAM: crossover-switch
Micronas
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