MCP2003T-E/P MICROCHIP [Microchip Technology], MCP2003T-E/P Datasheet - Page 13

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MCP2003T-E/P

Manufacturer Part Number
MCP2003T-E/P
Description
LIN J2602 Transceiver
Manufacturer
MICROCHIP [Microchip Technology]
Datasheet
2.2
 2010 Microchip Technology Inc.
Bus Interface
High Level Input Voltage
Low Level Input Voltage
Input Hysteresis
Low Level Output Current
Pull-up Current on Input
Short Circuit Current Limit
High Level Output Voltage
Driver Dominant Voltage
Driver Dominant Voltage
Driver Dominant Voltage
Driver Dominant Voltage
Input Leakage Current
(at the receiver during
dominant bus level)
Input Leakage Current
(at the receiver during
recessive bus level)
Leakage Current
(disconnected from ground)
Leakage Current
(disconnected from V
Receiver Center Voltage
Slave Termination
Note 1:
DC Specifications
2:
DC Specifications (Continued)
Parameter
Internal current limited. 2.0 ms maximum recovery time (R
Node has to sustain the current that can flow under this condition; bus must be operational under this
condition.
BB
)
Electrical Characteristics:
Unless otherwise indicated, all limits are specified for:
V
T
I
I
BUS
I
A
BUS
BB
V_
BUS
V_
V
V
V
= -40°C to +125°C
V
I
I
V_
OL
PU
V_
OH
R
BUS
IH
= 6.0V to 27.0V
IL
LOSUP
HISUP
_
_
V
_
Sym
I
SLAVE
(L
(L
(L
LOSUP
PAS
(L
I
PAS
BUS
HISUP
(L
NO
HYS
SC
_
BUS
BUS
BUS
BUS
BUS
CNT
_
_
_
-1
GND
-1
DOM
REC
)
)
)
)
)
K
K
0.475 V
0.6 V
0.9 V
Min.
-10
0.6
0.8
40
50
20
-8
-1
5
BB
BB
BB
Typ.
-0.4
V
1.0
0.5
12
30
BB
0.175 V
0.525 V
LBUS
0.4 V
Max.
V
200
180
200
+10
1.2
2.0
18
20
10
47
BB
= 0, TX = 0.4 V
BB
BB
BB
Units
mA
mA
mA
µA
k
µA
µA
µA
V
V
V
V
V
V
V
V
V
MCP2003/4
Recessive state
Dominant state
V
Output voltage = 0.1 V
V
~30 k internal pull-up
@ V
(Note 1)
V
V
V
V
Driver off,
V
V
Driver off,
8V < V
8V < V
V
GND
0V < V
V
V
0 < V
T
(Note 2)
V
V
REG
A
IH
BB
BB
BB
BB
BB
BUS
BB
BUS
BB
BB
BUS
IH
= -40
(L
(L
IH
= 12V
= 7V, R
= 18V, R
= 7V, R
= 18V, R
= 12V
= 12V
= GND,
, V
DEVICE
_
BUS
BUS
= 0V,
 V
BUS
CNT
(L
BB
BU
BUS
Conditions
LBUS
°
BUS
) – V
DS22230A-page 13
C to +85
BB
s < 18V
))/2
< 18V,
< 18V
= (V
< 18V,
LOAD
LOAD
= V
) = 0.7 V
= V
LOAD
LOAD
IL
IL
(L
BB
BB
(L
BUS
= 500
= 1 k
°
,
= 500
= 1 k
).
C
BUS
)
BB
BB
) +
,

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