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PCA82C251T/N3 参数 Datasheet PDF下载

PCA82C251T/N3图片预览
型号: PCA82C251T/N3
PDF下载: 下载PDF文件 查看货源
内容描述: [IC DATACOM, INTERFACE CIRCUIT, PDSO8, 3.90 MM, ROHS COMPLIANT, PLASTIC, MS-012, SOT96-1, SOP-8, Network Interface]
分类和应用: 电信信息通信管理光电二极管电信集成电路
文件页数/大小: 24 页 / 214 K
品牌: PHILIPS [ NXP SEMICONDUCTORS ]
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Philips Semiconductors
Product specification
CAN transceiver for 24 V systems
FUNCTIONAL DESCRIPTION
The PCA82C251 is the interface between the CAN
protocol controller and the physical bus. It is primarily
intended for applications up to 1 Mbaud in trucks and
buses. The device provides differential transmit capability
to the bus and differential receive capability to the CAN
controller. It is fully compatible with the
“ISO 11898-24 V”
standard.
A current limiting circuit protects the transmitter output
stage against short-circuit to positive and negative battery
voltage. Although the power dissipation is increased
during this fault condition, this feature will prevent
destruction of the transmitter output stage.
If the junction temperature exceeds a value of
approximately 160
°C,
the limiting current of both
transmitter outputs is decreased. Because the transmitter
is responsible for the major part of the power dissipation,
this will result in a reduced power dissipation and hence a
lower chip temperature. All other parts of the IC will remain
operating. The thermal protection is particularly needed
when a bus line is short-circuited.
The CANH and CANL lines are also protected against
electrical transients which may occur in an automotive
environment.
Table 1
Truth table of the CAN transceiver
V
CC
4.5 to 5.5 V
4.5 to 5.5 V
4.5 < V
CC
< 5.5 V
0 < V
CC
< 4.5 V
Notes
1. X = don’t care.
2. If another bus node is transmitting a dominant bit, then RXD is logic 0.
Table 2
Pin Rs summary
MODE
standby
slope control
high-speed
TXD
0
1 (or floating)
X
(1)
floating
CANH
HIGH
floating
floating if
V
Rs
> 0.75V
CC
floating
CANL
LOW
floating
floating if
V
Rs
> 0.75V
CC
floating
BUS STATE
dominant
recessive
floating
floating
PCA82C251
Pin 8 (Rs) allows three different modes of operation to be
selected: high-speed, slope control or standby.
For high-speed operation, the transmitter output
transistors are simply switched on and off as fast as
possible. In this mode, no measures are taken to limit the
rise and fall slope. Use of a shielded cable is
recommended to avoid RFI problems. The high-speed
mode is selected by connecting pin 8 to ground.
The slope control mode allows the use of an unshielded
twisted pair or a parallel pair of wires as bus lines.
To reduce RFI, the rise and fall slope should be limited.
The rise and fall slope can be programmed with a resistor
connected from pin 8 to ground. The slope is proportional
to the current output at pin 8.
If a HIGH level is applied to pin 8, the circuit enters a low
current standby mode. In this mode, the transmitter is
switched off and the receiver is switched to a low current.
If dominant bits are detected (differential bus voltage
>0.9 V), RXD will be switched to a LOW level.
The microcontroller should react to this condition by
switching the transceiver back to normal operation
(via pin 8). Because the receiver is slower in standby
mode, the first message will be lost at higher bit rates.
RXD
0
1
(2)
1
(2)
X
(1)
CONDITION FORCED AT PIN Rs
V
Rs
> 0.75V
CC
10
µA
<
−I
Rs
< 200
µA
V
Rs
< 0.3V
CC
RESULTING VOLTAGE OR CURRENT AT PIN Rs
−I
Rs
< 10
µA
0.4V
CC
< V
Rs
< 0.6V
CC
−I
Rs
< 500
µA
2000 Jan 13
4