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AM7968-125DKC Fiches technique(PDF) 10 Page - Advanced Micro Devices

No de pièce AM7968-125DKC
Description  TAXIchip Integrated Circuits(Transparent Asynchronous Xmitter-Receiver Interface)
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Fabricant  AMD [Advanced Micro Devices]
Site Internet  http://www.amd.com
Logo AMD - Advanced Micro Devices

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AMD
6
Am7968/Am7969
PIN DESCRIPTION
Am7968 TAXIchip Transmitter
ACK
Input-Strobe Acknowledge (TTL Output)
ACK High signifies that the Am7968 is ready to accept
new Data and Command. The timing of ACK’s response
to STRB depends on the condition of the Input Latch (in
given CLK cycle).
If the Input Latch is empty, data is immediately stored
and ACK closely follows STRB. If the Input Latch con-
tains previously stored data when STRB is asserted,
ACK is delayed until the next falling edge of CLK. Note
that for ACK to rise STRB must maintain HIGH for both
of the above conditions.
CI0 – CI1
Parallel Command In (TTL Inputs)
These two inputs accept parallel command information
from the host system. If one or more command bits are
logic “1”, the command bit pattern is latched, encoded,
and transmitted in place of any pattern on the
Data inputs.
CLK
Clock (TTL I/O)
CLK is an I/O pin that supplies the byte-rate clock refer-
ence to drive all internal logic. When TLS is connected to
ground (Local mode), CLK is enabled as a free-running
(byte-rate) clock output which runs at the Crystal Oscil-
lator frequency; this output can be used to drive the X1
input of TAXIchip Receivers or other system logic. In
Test mode CLK becomes an input. In Test Mode 1 CLK
is a Byte rate input and in Test Mode 2 it is a Bit
rate input.
DI0 – DI7
Parallel Data In (TTL Inputs)
These eight inputs accept parallel data from the host
system, to be latched, encoded and transmitted.
DI8/CI3
Parallel Data (8) In or Command (3) In (TTL Input)
DI
8/CI3 input is either Data or Command, depending
upon the state of DMS
.
DI9/CI2
Parallel Data (9) In or Command (2) In (TTL Input)
DI
9/CI2 input is either Data or Command, depending
upon the state of DMS
.
DMS
Data Mode Select (Input)
Data Mode Select input determines the Data pattern
width. When it is wired to GND, the Am7968 Transmitter
will assume Data to be eight bits wide, with four bits of
Command. When it is wired to V
CC, the Am7968
Transmitter will assume Data to be nine bits wide, with
three bits of Command. If DMS is left floating (or termi-
nated to 1/2 V
CC), the Am7968 will assume Data to be
ten bits wide, with two bits of Command.
GND1, GND2
Ground Pins
GND1 is a TTL I/O Ground and GND2 is an internal
Logic and Analog Ground.
RESET
PLL RESET (Input)
This pin is normally left open, but can be momentarily
grounded to force the internal PLL to reactivate lock.
This allows for correction in the unlikely occurrence of
PLL lockup on application of power.
RESET has an internal pull-up resistor which causes it
to float high when left unconnected (50 K ohm nominal).
If this board is driven by a board Reset signal, an open
drain (or open collector) style output should be used to
insure the High level signal is at VCC.
SEROUT+, SEROUT–
Differential Serial Data Out (Differential Open Emit-
ter ECL Outputs)
These differential ECL outputs generate data at ECL
voltage levels referenced to +5.0 V. When connected to
appropriated pull down resistors, they are capable of
driving 50-
Ω terminated lines, either directly or through
isolating capacitors.
STRB
Input Strobe Signal (TTL Input)
A rising edge on the STRB input causes the Data
(DI0 –
DI9) or the Command (CI0 – CI3) inputs to be latched
into the Am7968 Transmitter. The STRB signal is nor-
mally taken LOW after ACK has risen.
TLS
Test/Local Select (Input)
TLS input determines the mode of operation. When TLS
is wired to GND, the Am7968 Transmitter assumes a
Local mode connection to the media. It will output NRZI
encoded data, and will enable its CLK output driver. The
TLS pin should always be grounded during normal
operation.
When TLS is wired to V
CC (Test Mode 1),the serial data
is NRZ, CLK becomes an input, and ACK timing is modi-
fied. This mode is only used for Automatic Test Equip-
ment (ATE) testing at full speed.
When this input is left unconnected, it floats to an inter-
mediate level which puts the Am7968 Transmitter into
its Test Mode 2. In Test Mode 2, the internal clock


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