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DS96F172C Datasheet, PDF (4/12 Pages) National Semiconductor (TI) – Quad Differential Drivers
MIL-STD-883C
Absolute Maximum Ratings (Note 2)
For complete Military Specifications, refer to the appro-
priate SMD or MDS.
Storage Temperature Range (TSTG)
Lead Temperature (Soldering, 60 sec.)
−65˚C to +175˚C
300˚C
Maximum Package Power Dissipation (Note 9) at 25˚C
Ceramic LCC (E)
2000 mW
Ceramic DIP (J)
1800 mW
Ceramic Flatpak (W)
1000 mW
Supply Voltage
7.0V
Enable Input Voltage
5.5V
Recommended Operating
Conditions
Min Typ Max Units
Supply Voltage (VCC)
DS96F172M/DS96F174M 4.50 5.0 5.50
V
Common Mode
−7.0
+12.0 V
Output Voltage (VOC)
Output Current HIGH (IOH)
Output Current LOW (IOL)
Operating Temperature (TA)
DS96F172M/DS96F174M
−55
−60 mA
60
mA
+125
Note 9: Above TA = 25˚C, derate “E” package 13.4, “J” package 12.5, “W”
package 7.1 mW/˚C
Electrical Characteristics (Notes 3, 4)
Over recommended supply voltage and operating temperature range unless otherwise specified
Symbol
Parameter
Conditions
VIH
Input Voltage HIGH
VIL
Input Voltage LOW
VIC
|VOD1|
|VOD2|
Input Clamp Voltage
Differential Output Voltage
Differential Output Voltage
∆|VOD|
VOC
Change in Magnitude of Differential
Output Voltage (Note 5)
Common Mode Output Voltage
(Note 6)
TA = 25˚C
TA = −55˚C, or +125˚C
II = −18 mA
IO = 0 mA
RL = 54Ω, VCC = 4.5V TA = −55˚C
Figure 1
TA = 25˚C, or +125˚C
RL = 100Ω, VCC = 4.5V, Figure 1
RL = 54Ω or 100Ω,
TA = 25˚C, or +125˚C
VCC = 4.5V, Figure 1
−55˚C
RL = 54Ω or 100Ω, Figure 1
∆|VOC|
Change in Magnitude of Common
Mode Output Voltage (Note 5)
RL = 54Ω or 100Ω, VCC = 4.5V, Figure 1
IO
IOZ
IIH
IIL
IOS
ICC
ICCX
Output Current with Power Off
High Impedance State Output Current
Input Current HIGH
Input Current LOW
Short Circuit Output Current
(Note 7)
Supply Current (All Drivers)
VCC = 0V, VO = −7.0V to +12V
VO = −7.0V to +12V
VI = 2.4V
VI = 0.4V
VO = −7.0V
VO = 0V
VO = VCC
VO = +12V
No Load
Outputs Enabled
Outputs Disabled
Min Max
2.0
0.8
0.7
−1.5
6.0
1.2
1.5
2.0
±0.2
±0.4
3.0
±0.2
±50
±50
20
−50
−250
−150
150
250
50
30
Units
V
V
V
V
V
V
V
V
V
µA
µA
µA
µA
mA
mA
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