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STV1601A 데이터 시트보기 (PDF) - STMicroelectronics

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STV1601A
ST-Microelectronics
STMicroelectronics ST-Microelectronics
STV1601A Datasheet PDF : 17 Pages
First Prev 11 12 13 14 15 16 17
STV1601A
Figure 9 : tr, tf Definition
serial data.
To ease clock extraction at the receiving end, serial
data is scrambled. To minimize polarity effect, serial
80%
data is then converted to NRZI and output in differ-
ential mode.
20%
A PLL lock detection circuit only enables the serial
output when locked.
tr
tf
Figure 10 : td, tW Definition
tc
tc /2
t c /2
1. Phase relation between input parallel clock
and data
The phase relation between the parallel clock and
the data is shown in Figure 11. Both clock and data
are differential inputs
Parallel clock and data are such that the rising edge
of PCX should be at the middle of the data. A clock
having the same phase as PCX is internally gener-
ated in order to latch the data.
2. TTL input operation
td
tw
50%
DESCRIPTION
STV1601A internally generates a 10 times clock
frequency locked to the parallel input clock thanks
to a built-in PLLand converts input parallel data into
Parallel clock and data can be either TTL or ECL
inputs. To use as TTL inputs VCC (Pin 29) shall be
connected to +5V. A fixed bias of +1.4V shall be
applied to PCY and DnY (n = 0 to 9). TTL signals
and their parallel clock will be provided through
1kW resistors to each ”X” input. These 1kW resis-
tors are effective to minimize the influence of the
TTL input signals to the jitter characteristics of the
serial output signal. For 8-bit data, unused LSB(s)
must be fixed Low. Fixed bias value can be higher,
for example, 2.5V in case of CMOS inputs.
Figure 11 : Phase Relation between Clock and Data
PCX (Input)
DATA (Input)
PCX (Output)
Figure 12 : TTL Input Operation
STV1601A
VCC PCX
29 30
PCY
31
D9X
5
D9Y
7
D0X
26
+ 5V
1k
1k
1k
Parallel
Clock
Parallel
Data
TTL Parallel Signal
D0Y
25
+ 1.4V for TTL
+ 2.5V for CMOS
11/17

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