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TJA1054 데이터시트 PDF




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부품번호 TJA1054 기능
기능 Fault-tolerant CAN transceiver
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TJA1054 데이터시트, 핀배열, 회로
INTEGRATED CIRCUITS
DATA SHEET
TJA1054
Fault-tolerant CAN transceiver
Preliminary specification
File under Integrated Circuits, IC18
1999 Feb 11




TJA1054 pdf, 반도체, 판매, 대치품
Philips Semiconductors
Fault-tolerant CAN transceiver
BLOCK DIAGRAM
Preliminary specification
TJA1054
handbook, full pagewidth
BAT
14
INH
WAKE
STB
EN
TXD
1
7
5
6
VCC
WAKE-UP
STANDBY
CONTROL
2
TIMER
TEMPERATURE
PROTECTION
DRIVER
VCC
4
ERR
FAILURE DETECTOR
PLUS WAKE-UP
PLUS TIME-OUT
TJA1054
VCC
3
RXD
13
GND
RECEIVER
VCC
10
9
RTL
11
CANH
12
CANL
8
RTH
FILTER
FILTER
MGL421
1999 Feb 11
Fig.1 Block diagram.
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TJA1054 전자부품, 판매, 대치품
Philips Semiconductors
Fault-tolerant CAN transceiver
Preliminary specification
TJA1054
Low power modes
The transceiver provides 3 low power modes which can be
entered and exited via pins STB and EN (see Table 2 and
Fig.3).
The Sleep mode is the mode with the lowest power
consumption. Pin INH is switched to high-impedance for
deactivation of the external voltage regulator. Pin CANL is
biased to the battery voltage via pin RTL. If the supply
voltage is provided pins RXD and ERR will signal the
wake-up interrupt signal.
The standby mode will react the same as the Sleep mode
but with a HIGH-level on pin INH.
The power-on standby mode is the same as the standby
mode with the battery power-on flag instead of the
wake-up interrupt signal on pin ERR. The output on
pin RXD will show the wake-up interrupt. This mode is only
for reading out the power-on flag.
Wake-up requests are recognized by the transceiver when
a dominant signal is detected on either bus line or if
pin WAKE detects an edge (rising or falling) which stays
longer HIGH or LOW respectively during a certain period
of time. On a wake-up request the transceiver will set the
output on pin INH which can be used to activate the
external supply voltage regulator.
If VCC is provided the wake-up request can be read on the
ERR or RXD outputs, so the external microcontroller can
wake-up the transceiver (switch to normal operating
mode) via pins STB and EN.
To prevent false wake-up due to transients or RF fields,
the wake-up voltage levels have to be maintained for a
certain period of time. In the low power modes the failure
detection circuit remains partly active to prevent an
increased power consumption in the event of
failures 3, 3a, 4 and 7.
Pin INH is set to floating only during the goto-sleep
command and stays floating during the Sleep mode. If
pin INH is set to floating, pin INH will not be set to
HIGH-level again just by a mode change to normal
operating mode. Pin INH will be set to HIGH-level by the
following events only:
power-on (VBAT switching-on at cold start)
rising or falling edge on pin WAKE
a message with 5 consecutive dominant bits during
pin EN or pin STB is at LOW-level.
The signals on pins STB and EN will internally be set to
LOW-level when VCC is below a certain threshold voltage
so providing fail safe functionality.
Table 2 Normal operating and low power modes
MODE
Goto-sleep
command
Sleep
Standby
Power-on
standby
Normal
operating
STB
0
0
0
1
1
ERR
EN
LOW
1
wake-up interrupt
0(1)
signal;
notes 2 and 3
0
0 VBAT power-on flag;
notes 2 and 4
HIGH
1 error flag
no error
flag
RXD
LOW
HIGH
RTL
SWITCHED
TO
wake-up interrupt
signal;
notes 2 and 3
wake-up interrupt
signal;
notes 2 and 3
dominant
received data
recessive
received data
VBAT
VBAT
VBAT
VBAT
VCC
Notes
1. In case the goto-sleep command was used before. When VCC drops pin EN will become LOW, but this does not effect
the internal functions due to the fail safe functionality.
2. If the supply voltage VCC is present.
3. Wake-up interrupts are released when entering the normal operating mode.
4. VBAT power-on flag will be reset when entering the normal operating mode.
1999 Feb 11
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