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TSB41AB1PHP Datasheet(PDF) 13 Page - Texas Instruments

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No. de pieza TSB41AB1PHP
Descripción Electrónicos  IEEE 1394a-200 ONE-PORT CCABLE TRANNS CEIVER ARBITER
PDF  70 Pages
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Fabricante Electrónico  TI [Texas Instruments]
Página de inicio  http://www.ti.com
Logo TI - Texas Instruments

TSB41AB1PHP Datasheet(HTML) 13 Page - Texas Instruments

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TSB41AB1
IEEE 1394a2000 ONEPORT CABLE
TRANSCEIVER/ARBITER
SLLS423I − JUNE 2000 − REVISED MARCH 2005
13
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
POST OFFICE BOX 1443
HOUSTON, TEXAS 77251−1443
Terminal Functions (Continued)
TERMINAL
NAME
NUMBER
TYPE
I/O
DESCRIPTION
NAME
PAP
PHP
GQE
ZQE
TYPE
I/O
DESCRIPTION
NC
C4, C6,
C7, D7,
F3, F8,
G3, G4,
G8, H8
F8,
G8,
H8
Each of these terminals is not connected to the silicon device.
NC:
Group 1
B4, C5,
D3, D4,
D5, E3,
E4
B4,
D5,
E4
Supply
Each of these terminals is not connected to the silicon device, but they
are connected to each other. It is recommended this group of terminals
be used for a via connection to the GND plane in application board.
NC:
Group 2
D6, E5,
E6, E7,
E8, F6,
F7
D6,
E5,
E6,
E8,
F6
Supply
Each of these terminals is not connected to the silicon device, but they
are connected to each other. It is recommended this group of terminals
be used for a via connection to the VDD−supply plane in application
board.
NC:
Group 3
F4, F5,
H3
F4,
F5,
H3
Supply
Each of these terminals is not connected to the silicon device, but they
are connected to each other. It is recommended this group of terminals
be used for a via connection to the GND plane in application board.
NC:
Group 4
G5, G6,
G7
Supply
Each of these terminals are not connected to the silicon device, but they
are connected to each other. It is recommended this group of terminals
be used for a via connection to the VDD−supply plane in application
board.
PC0
PC1
PC2
20
21
22
16
17
18
J2
J3
J4
J2
J3
J4
CMOS
I
Power class programming inputs. On hardware reset, these inputs set
the default value of the power class indicated during self-ID.
Programming is done by tying these terminals high or low. See Table 9
for encoding.
PD
14
12
G2
G2
CMOS
I
Power-down input. A high on this terminal turns off all internal circuitry
except the cable-active monitor circuits, which control the CNA output
(64-terminal PAP package only). Asserting the PD input high also
activates an internal pulldown on the RESET terminal to force a reset of
the internal control logic. (PD is provided for legacy compatibility and is
not recommended for power management in place of IEEE 1394a-2000
suspend/resume LPS and C/LKON features.)
PLLGND
57, 58
41
A6, B5
A6,
B5
Supply
PLL circuit ground terminals. These terminals should be tied together to
the low-impedance circuit board ground plane.
PLLVDD
56
40
B6
B6
Supply
PLL circuit power terminals. A combination of high-frequency decoupling
capacitors near each terminal is suggested, such as paralleled 0.1
µF
and 0.001
µF. Lower frequency 10-µF filtering capacitors are also
recommended. This supply terminal is separated from DVDD and AVDD
inside the device to provide noise isolation. It should be tied at a
low-impedance point on the circuit board.
R0
R1
40
41
33
34
D8
C9
D8
C9
Bias
Current setting resistor terminals. These terminals are connected
through an external resistor to set the internal operating currents and
cable driver output currents. A resistance of 6.34 k
Ω ±1.0% is required
to meet the IEEE Std 1394-1995 output voltage limits.
NOTE: It is strongly recommended that signals tied to VDD use a 1-kΩ resistor (minimum). Tying signals directly to VCC may result in ESD failures.
Signals tied to ground may be tied directly.



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