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PDF SAA4995WP Data sheet ( Hoja de datos )

Número de pieza SAA4995WP
Descripción PANorama-IC PAN-IC
Fabricantes Philips 
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INTEGRATED CIRCUITS
DATA SHEET
SAA4995WP
PANorama-IC (PAN-IC)
Preliminary specification
File under Integrated Circuits, IC02
1997 Jun 10

1 page




SAA4995WP pdf
Philips Semiconductors
PANorama-IC (PAN-IC)
Preliminary specification
SAA4995WP
handbook, full pagewidth
WEI 7
TEST 8
SCANIN 9
VDD1 10
T0 11
GND1 12
T1 13
WEod 14
VDD2 15
GND2 16
WEO 17
SAA4995WP
39 YI5
38 YI6
37 YI7
36 VRST
35 SNCL
34 SDNA
33 VDD3
32 GND4
31 CLK
30 GND3
29 YO7
MGK175
Fig.2 Pin configuration.
FUNCTIONAL DESCRIPTION
The PAN-IC is an add-on IC to be used, for example,
between analog-to-digital conversion and a serial (field)
memory. The device performs the following tasks:
Linear horizontal sample rate conversion in both zoom
and compress direction, with a sample rate conversion
factor between 0.5 and 2
Dynamic sample rate conversion for panorama mode
display of e.g. 4 : 3 material on a 16 : 9 display
Dynamic sample rate conversion for amaronap mode
display of e.g. 16 : 9 material on a 4 : 3 display.
The PAN-IC has the ability to increase the data rate from
the ADC (maximum 16 MHz in a 16/32 MHz concept) to a
maximum of twice the data rate. For this, a 32 MHz clock
rate is needed to write to the memory. All actions to
generate a lower data rate produces disable cycles in write
enable.
In panorama and amaronap modes, the sample rate
conversion factor is modulated along the video line.
In the centre of the line a high quality compression (e.g.
with a factor 43) has to be made. Towards the sides of the
line, more and more expansion and compression
respectively is made. The sample rate conversion factor
over a line will have a bathtub shape, with parameters
illustrated in Fig.3:
X0l and X0r, where in-between a constant data rate is
maintained (area I) and starting points from where a
curve can be programmed for its 2nd derivative (in
areas II and V)
X1l and X1r, points from where a new curve can be
programmed for its 2nd derivative (for areas III and IV)
X2l corresponds to the first sample in the output data
stream, defined by start of WEI
X2r corresponds to the last sample in the output data
stream, defined by the programmed number of samples
C1, which controls the second derivatives of the data
rate in areas II and V
C2, which controls the second derivatives of the data
rate in areas III and IV.
1997 Jun 10
5

5 Page





SAA4995WP arduino
Philips Semiconductors
PANorama-IC (PAN-IC)
MICROCONTROLLER BUS TIMING (SNERT BUS)
SYMBOL
PARAMETER
Tcy(SNCL)
tsu(i)
th(i)
th(o)(D)
td
SNCL cycle time
input data set-up time
input data hold time
output data hold time
output data delay time
CONDITIONS
see Fig.7
see Fig.7
see Fig.7
see Fig.7
see Fig.7
Preliminary specification
SAA4995WP
MIN.
1
90
50
0
MAX. UNIT
− µs
ns
ns
ns
700 ns
handbook, full pagewidth
SNCL
SNDA
(receiver
mode)
SNDA
(transmitter
mode)
Tcy(SNCL)
LSB
data
valid
tsu(i)
th(i)
td
data
valid
data
valid
th(o)(D)
data
valid
data
valid
MGK181
Fig.7 SNERT bus interface timing.
MICROCONTROLLER BUS CONTROL (SNERT BUS)
The following control table applies (Table 5), for control via the microcontroller bus (SNERT bus, consisting of SNCL,
SNDA and VRST signals). Data communication is by writing to the PAN-IC (address 40H to 48H) and reading from it
(address 49H)
Table 5 SNERT-bus control
ADDRESS
(HEX)
FUNCTION
# OF BITS
BIT
POSITION
REMARKS
40 X1l 8 7 : 0 definition of X1l with a resolution of 4 samples; see Fig.3 and
note 1
41 X0l 8 7 : 0 definition of X0l with a resolution of 4 samples; see Fig.3 and
note 1
42 X0r
8 7 : 0 definition of X0r with a resolution of 4 samples; see Fig.3 and
note 1
43 X1r
8 7 : 0 definition of X1r with a resolution of 4 samples; see Fig.3 and
note 1
44 output samples
per line
8
7 : 0 resolution of 4 luminance samples; actual #
samples = (programmed # samples + 1) × 4; note 2
1997 Jun 10
11

11 Page







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