Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Lead Temperature Range
(Soldering, 4 sec.)
ESD Ratings
+260˚C
(HBM, 1.5k, 100 pF)
Driver Outputs
≥ 7 kV
Supply Voltage (VCC
)
−0.5V to +7V
−0.5V to VCC + 0.5V
−0.5V to VCC + 0.5V
Other Pins
≥ 2.5 kV
Enable Input Voltage (EN)
Driver Input Voltage (DI)
Clamp Diode Current
Recommended Operating
Conditions
±
20 mA
±
DC Output Current, per pin
Driver Output Voltage
(Power Off: DO+, DO−)
Maximum Package Power Dissipation +25˚C
M Package
150 mA
Min
Typ
Max
Units
−0.5V to +7V
Supply Voltage (VCC
)
3.0
3.3
3.6
V
Operating Free Air
1226 mW
1736 mW
Temperature Range (TA)
DS34LV87T
N Package
−40
25
+85
500
˚C
ns
Derate M Package
9.8 mW/˚C above +25˚C
13.89 mW/˚C above +25˚C
−65˚C to +150˚C
Input Rise and Fall Time
Derate N Package
Storage Temperature Range
Electrical Characteristics (Notes 2, 3)
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified
Symbol
VOD1
Parameter
Conditions
Pin
DO+,
DO−
Min
Typ
Max
Units
V
∞
Output Differential Voltage
Output Differential Voltage
Change in Magnitude of
Output Differential Voltage
Output Differential Voltage
RL= , (No Load)
3.3
2.6
7
4.0
VOD2
RL = 100Ω Figure 1
2
V
∆VOD2
−400
400
3.5
mV
VOD3
RL = 3900Ω (V.11),
3.2
V
Figure 1 (Note 7)
VOC
Common Mode Voltage
Change in Magnitude of
Common Mode Voltage
TRI-STATE Leakage
Current
RL = 100Ω Figure 1
1.5
6
2
V
∆VOC
−400
−40
400
mV
±
±
20
IOZ
VOUT = VCC or GND
Drivers Disabled
0.5
µA
ISC
Output Short Circuit Current
VOUT = 0V
−70
−150
mA
VIN = VCC or GND (Note 4)
IOFF
Output Leakage Current
VCC= 0V, VOUT = 3V
0.03
100
−100
VCC
0.8
µA
µA
V
VCC = 0V, VOUT = −0.25V
−0.08
VIH
VIL
IIH
High Level Input Voltage
Low Level Input Voltage
High Level Input Current
Low Level Input Current
Input Clamp Voltage
DI,
EN
2.0
GND
V
VIN= VCC
10
µA
µA
V
IIL
VIN = GND
−10
VCL
ICC
IIN = −18 mA
−1.5
100
Power Supply Current
No Load, VIN (all) = VCC or GND
VCC
µA
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