0CANH-002-XTP ON Semiconductor, 0CANH-002-XTP Datasheet - Page 5

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0CANH-002-XTP

Manufacturer Part Number
0CANH-002-XTP
Description
Manufacturer
ON Semiconductor
Datasheet

Specifications of 0CANH-002-XTP

Data Rate
1000Kbps
Number Of Transceivers
1
Standard Supported
ISO 11898-2
Operating Supply Voltage (max)
5.25V
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (min)
4.75V
Package Type
SOIC N
Supply Current
65mA
Operating Temperature (max)
125C
Operating Temperature (min)
-40C
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
8
Lead Free Status / RoHS Status
Compliant
Definitions
currents flow into the IC. Sinking current means the current
Table 6. DC AND TIMING CHARACTERISTICS
otherwise.
SUPPLY (Pin V
TRANSMITTER DATA INPUT (Pin TxD)
MODE SELECT (Pin S)
RECEIVER DATA OUTPUT (Pin RxD)
REFERENCE VOLTAGE OUTPUT (Pin V
BUS LINES (Pins CANH and CANL)
All voltages are referenced to GND (Pin 2). Positive
V
V
I
V
I
V
o(reces) (CANH)
o(reces) (CANL)
o(reces)(CANH)
o(reces)(CANL)
I
o(dom) (CANH)
o(dom) (CANL)
o(sc) (CANH)
V
V
Symbol
o(dif) (bus)
REF_CM
V
V
V
V
V
I
V
V
I
I
CC
I
C
I
REF
IH
IH
OH
IL
IL
OL
IH
IH
IL
IL
i
CC
)
Supply Current
High−level input voltage
Low−level input voltage
High−level input current
Low−level input current
Input capacitance
High−level input voltage
Low−level input voltage
High−level input current
Low−level input current
High−level output voltage
Low−level output voltage
Reference output voltage
Reference output voltage for full
common mode range
Recessive bus voltage at pin CANH
Recessive bus voltage at pin CANL
Recessive output current at pin
CANH
Recessive output current at pin
CANL
Dominant output voltage at pin
CANH
Dominant output voltage at pin
CANL
Differential bus output voltage
(V
Short circuit output current at pin
CANH
CANH
− V
CANL
Parameter
)
ref
)
ELECTRICAL CHARACTERISTICS
V
CC
http://onsemi.com
= 4.75 V to 5.25 V; T
Dominant; V
Recessive; V
Output recessive
Output dominant
V
V
Not tested
Silent mode
High−speed mode
V
V
I
I
−50 mA < I
+50 mA
−35 V <V
−35 V <V
V
V
−35 V < V
+35 V; 0 V <V
5.25 V
−35 V < V
0V <V
V
V
V
42.5 W < R
V
No load
V
0 V
RXD
RXD
TxD
TxD
S
S
TxD
TxD
TxD
TxD
TxD
TxD
CANH
= 2 V
= 0.8 V
= − 10 mA
= 6 mA
= V
= 0 V
= V
= V
= 0 V
= 0 V
= 0 V; dominant;
= V
Conditions
CC
5
= 0 V; V
CC
CC
CC
CC
CANH
CANL
< 5.25 V
CANH
CANL
is flowing into the pin; sourcing current means the current
is flowing out of the pin.
VREF
LT
; no load
; no load
; recessive;
TXD
TXD
< 60 W
CC
< +35V
< +35V;
TxD
< +35 V;
<
<
= 0 V
<
= V
=
junc
CC
= −40°C to +150°C; R
0.45 x
0.40 x
0.6 x
−120
−0.3
−0.3
−2.5
−2.5
V
V
V
Min
−75
0. 5
−45
2.0
2.0
2.0
2.0
3.0
1.5
25
−1
20
15
2
CC
CC
CC
0.75 x
0.50 x
0.50 x
−200
0.25
2.25
V
V
V
Typ
−70
2.5
2.5
3.6
1.4
45
30
30
4
0
5
CC
CC
CC
0
LT
= 60 W unless specified
V
V
0.55 x
0.60 x
CC
CC
−350
+0.8
+0.8
+2.5
+2.5
Max
0.45
V
V
4.25
1.75
+50
−95
3.0
3.0
3.0
65
+1
10
50
45
8
CC
CC
+0.3
+0.3
Unit
mA
mA
mA
mV
mA
mA
mA
mA
mA
pF
V
V
V
V
V
V
V
V
V
V
V
V
V

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