Data Sheet
74
Rev. 1.00
2017-07-31
TLE9262BQXV33
High Speed CAN Transceiver
CANH/CANL Recessive
Output Voltage
(CAN Wake Capable Mode)
V
CANL/H_LP
-0.1
–
0.1
V
CAN Wake Capable
Mode;
V
TXD
= V
CC1
;
no load
P_10.3.43
CANH, CANL Recessive
Output Voltage Difference
V
diff
= V
CANH
- V
CANL
(CAN Normal Mode)
V
diff_r_N
-500
–
50
mV CAN Normal Mode
V
TXD
= V
CC1
;
no load
P_10.3.12
CANH, CANL Recessive
Output Voltage Difference
V
diff
= V
CANH
- V
CANL
(CAN Wake Capable Mode)
V
diff_r_W
-200
–
200
mV CAN Wake Capable
Mode;
V
TXD
= V
CC1
;
no load
P_10.3.41
CANL Dominant Output
Voltage
V
CANL
0.5
–
2.25
V
CAN Normal Mode;
V
TXD
= 0 V;
V
CAN
= 5 V;
50
Ω
≤
R
L
≤
65
Ω
P_10.3.13
CANH Dominant Output
Voltage
V
CANH
2.75
–
4.5
V
CAN Normal Mode;
V
TXD
= 0 V;
V
CAN
= 5 V;
50
Ω
≤
R
L
≤
65
Ω
P_10.3.14
CANH, CANL Dominant
Output Voltage Difference
V
diff
=
V
CANH
- V
CANL
V
diff_d_N
1.5
–
3.0
V
CAN Normal Mode;
V
TXD
= 0 V;
V
CAN
= 5 V;
50
Ω
≤
R
L
≤
65
Ω
P_10.3.16
CANH, CANL Dominant
Output Voltage Difference
V
diff
=
V
CANH
- V
CANL
V
diff_d_N
1.5
–
5.0
V
1)
CAN Normal Mode;
V
TXD
= 0 V;
V
CAN
= 5 V;
R
L
= 2240
Ω
P_10.3.55
CANH, CANL Dominant
Output Voltage Difference
V
diff
=
V
CANH
- V
CANL
V
diff_d_N
1.4
–
3.3
V
1)
CAN Normal Mode;
VTXD = 0 V;
VCAN = 5 V;
45
Ω
≤
RL
≤
70
Ω
P_10.3.56
Driver Symmetry
V
SYM
=
V
CANH
+ V
CANL
V
SYM
4.5
–
5.5
V
2)
CAN Normal Mode;
V
TXD
= 0 V / 5 V;
V
CAN
= 5 V;
C
SPLIT
= 4.7nF;
R
L
= 60
Ω
;
P_10.3.42
CANH Short Circuit Current
I
CANHsc
-115
-80
-50
mA CAN Normal Mode;
V
CANHshort
= -3 V
P_10.3.17
Table 17 Electrical Characteristics
(cont’d)
V
S
= 5.5 V to 28 V;
T
j
= -40 °C to +150 °C; 4.75 V <
V
CAN
< 5.25 V;
R
L
= 60
Ω
; CAN Normal Mode; all voltages with
respect to ground, positive current flowing into pin
(unless otherwise specified)
Parameter
Symbol
Values
Uni
t
Note or
Test Condition
Number
Min.
Typ.
Max.