Datasheet

SN65HVD233-HT
SLLS933F NOVEMBER 2008REVISED AUGUST 2012
www.ti.com
DRIVER ELECTRICAL CHARACTERISTICS
over operating free-air temperature range (unless otherwise noted)
T
A
= –55°C to 125°C T
A
= 175°C
(1)
T
A
= 210°C
(2)
PARAMETER TEST CONDITIONS UNIT
MIN TYP MAX MIN TYP MAX MIN TYP MAX
Bus output CANH 2.45 V
CC
2.45 V
CC
2.45 V
CC
D = 0 V, R
S
= 0 V,
V
O(D)
voltage V
See Figure 2 and Figure 3
CANL 0.5 1.25 0.5 1.25 0.5 1.25
(dominant)
Bus output CANH 2.3 2.3 2.3
D = 3 V, R
S
= 0 V,
V
O
voltage V
See Figure 2 and Figure 3
CANL 2.3 2.3 2.3
(recessive)
D = 0 V, R
S
= 0 V,
1.5 2 3 1.4 1.75 3 1.4 1.75 3
See Figure 2 and Figure 3
Differential output
V
OD(D)
V
voltage (Dominant)
D = 0 V, R
S
= 0 V,
1.1 2 3 1.1 1.47 3 1.1 1.47 3
See Figure 3 and Figure 4
D = 3 V, R
S
= 0 V,
–120 12 –120 12 –120 12 mV
See Figure 2 and Figure 3
Differential output
V
OD
voltage (Recessive)
D = 3 V, R
S
= 0 V, No
–0.5 0.05 –0.5 0.8 –0.5 1.2 V
load
Peak-to-peak
V
OC(pp)
common-mode output See Figure 10 1 1 1 V
voltage
High-level
I
IH
D, LBK D = 2 V –30 30 –30 30 –30 30 μA
input current
Low-level
I
IL
D, LBK D = 0.8 V –30 30 –30 30 –30 30 μA
input current
V
CANH
= –7 V,
CANL open, –250 –250 –250
See Figure 13
V
CANH
= 12 V,
CANL open, 1 1 1
See Figure 13
Short-circuit output
I
OS
mA
current
V
CANL
= –7 V,
CANH open, –1 –1 –1
See Figure 13
V
CANL
= 12 V,
CANH open, 250 250 250
See Figure 13
See receiver input
C
O
Output capacitance
capacitance
R
S
input current for
I
IRs(s)
R
S
= 0.75 V
CC
–10 –10 –10 μA
standby
R
S
= V
CC
, D = V
CC
,
Standby 200 600 400 600 400 600 μA
LBK = 0 V
Supply D = 0 V, No load,
I
CC
Dominant 6 6 6
current LBK = 0 V, R
S
= 0 V
mA
D =t V
CC
, No load,
Recessive 6 6 6
LBK = 0 V, R
S
= 0 V
(1) Minimum and maximum parameters are characterized for operation at T
A
= 175°C and production tested at T
A
= 125°C.
(2) Minimum and maximum parameters are characterized for operation at T
A
= 210°C but may not be production tested at that temperature.
Production test limits with statistical guardbands are used to ensure high temperature performance.
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