Datasheet

SN65HVD11-HT
SLLS934E NOVEMBER 2008REVISED JUNE 2012
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RECEIVER ELECTRICAL CHARACTERISTICS
over recommended operating conditions (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
Positive-going
V
IT+
input threshold I
O
= –8 mA –0.01 –0.01 –0.01 V
voltage
Negative-going
V
IT–
input threshold I
O
= 8 mA –0.2 –0.2 –0.2 V
voltage
Hysteresis
V
hys
voltage 35 41 41 mV
(V
IT+
–V
IT–
)
Enable-input
V
IK
I
I
= –18 mA 1.5 –1.5 –1.5 V
clamp voltage
High-level V
ID
= 200 mV, I
OH
= –8 mA,
V
OH
2.4 2.4 2.4 V
output voltage See Figure 8
Low-level V
ID
= –200 mV, I
OL
= 8 mA,
V
OL
0.4 0.4 0.4 V
output voltage See Figure 8
High-
impedance
I
OZ
V
O
= 0 or V
CC,
RE = V
CC
–1 1 –1 1 –1 1 μA
state output
current
V
A
or V
B
= 12 V 0.075 0.11 0.1 0.15 0.1 0.15
Other
V
A
or V
B
= 12 V, V
CC
= 0 V 0.085 0.13 0.12 0.16 0.12 0.16
Bus input
I
I
input mA
current
V
A
or V
B
= –7 V –0.1 –0.05 –0.3 –0.15 –0.3 –0.15
at 0 V
V
A
or V
B
= –7 V, V
CC
= 0 V –0.1 –0.05 –0.3 –0.15 0.3 –0.15
High-level input
I
IH
V
IH
= 2 V –30 0 –30 3 –30 3 μA
current, RE
Low-level input
I
IL
V
IL
= 0.8 V 30 0 –30 0 –30 0 μA
current, RE
Differential
V
ID
= 0.4 sin (4E6πt) + 0.5 V,
C
ID
input 15 18 18 pF
DE at 0 V
capacitance
RE = 0 V, Receiver enabled
D and DE = 0 V, and driver 5 8 7.5 8.5 7.5 10 mA
No load disabled
RE = V
CC
,
Receiver disabled
D = V
CC
,
I
CC
Supply current and driver 2.5 20 12.5 200 175 450 μA
DE = 0 V,
disabled (standby)
No load
RE = 0 V,
Receiver enabled
D and DE = V
CC
, 11 15.5 11.5 17.5 14 18 mA
and driver enabled
No load
(1) Minimum and maximum parameters are characterized for operation at T
A
= 175°C but may not be production tested at that temperature.
Production test limits with statistical guardbands are used to ensure high temperature performance.
(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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