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SDA9401 Datasheet, PDF (23/69 Pages) List of Unclassifed Manufacturers – Scan Rate Converter using Embedded DRAM Technology Units
SDA 9401
Equation for temporal noise reduction (luminance signal)
YOUT
=
æ
è
1-----+-----K----y-ö
16
Θ
YSNR
–
YR
Ρ
+
YR
Equation for temporal noise reduction (chrominance signal)
UVOUT
=
æ
è
1-----+-----K--ö
16
ΘU
VSNR
–
U
V1Ρ
+
UV1
;K
=
Θ K y ;K u v Ρ
The next figure shows the motion detector in more detail. Temporal noise reduction can be switched
off by NRON (NRON=0). The parameter TNRFIY/C switches between a fixed noise reduction K-
factor TNRVAY/C (TNRFIY/C=0) or a motion adaptive noise reduction K-factor (TNRFIY/C=1).
Block diagram of motion detector
TNRCLY/C+1 TNRKOY/C+1 TNRFIY/C NRON
DY/UV
Motion
detection
Motion
LUT
1
MUX
00
15
1
MUX
0
TNRHOY/C TNRVAY/C
Ky/uv
In case of adaptive noise reduction the K-factor depends on the detected “Motion” (see figure
above). The “Motion”-Ky/Kuv characteristic curve (LUT) is fixed inside the SDA 9401, but the
characteristic curve can be changed by two parameters: TNRHOY/C and TNRKOY/C. TNRHOY/C
shifts the curve horizontally and TNRKOY/C shifts the curve vertically. For a fixed characteristic
curve, the sensitivity of the motion detector is adjustable by TNRCLY/C.
LUT for motion detection I
Ky/Kuv 15
10
TNRKOY/C
TNRKOY/C=7
TNRHOY/C=0
TNRKOY/C=-1
TNRHOY/C=0
TNRKOY/C=-8
TNRHOY/C=0
5
5 10 15 20 25 30
Motion
Micronas
23
Preliminary Data Sheet