AUIPS7091(G)(S)PbF
Absolute Maximum Ratings
Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters
are referenced to Ground lead. Tj= -40°C..150°C, Vcc=6..35V (unless otherwise specified).
Symbol
Vout
Parameter
Maximum output voltage
Min. Max. Units
Vcc-63 Vcc+0.3
Voffset
Vin
Maximum logic ground to load ground offset
Maximum input voltage
Maximum Vcc voltage
Maximum continuous Vcc voltage
Maximum Vcc voltage with short circuit protection with Tj < -10°C
Maximum IN current
Vcc-63 Vcc+0.3
-0.3
5.5
60
35
28
10
10
5.5
V
Vcc max.
Vcc cont.
Vcc sc.
Iin max.
Idg max.
Vdg
-1
-1
mA
V
Maximum diagnostic output current
Maximum diagnostic output voltage
-0.3
Maximum power dissipation (internally limited by thermal protection)
Rth=100°C/W
Pd
1.25
W
A
Isd cont.
ESD1
ESD2
Tj op max.
Tj Sto max.
Maximum continuous diode current (Rth=100°C/W)
Electrostatic discharge voltage (Human body) 100pF, 1500
Electrostatic discharge voltage (Machine Model) C=200pF,R=0,L=10µH
Max. operating temperature junction temperature
Max. storage temperature junction temperature
-40
-55
1.8
4
0.5
+150
+150
kV
°C
°C
Thermal Characteristics
Symbol
Rth1
Parameter
Typ. Max. Units
Thermal resistance junction to ambient SO8 std. footprint
Thermal resistance junction to ambient TO220 free air
Thermal resistance junction to ambient D2Pak std. footprint
Thermal resistance junction to ambient D2Pak 1” sqrt. footprint
Thermal resistance junction to case D2pak/TO220
100
60
60
40
4
Rth1
Rth1
Rth2
Rth3
°C/W
Recommended Operating Conditions
These values are given for a quick design. For operation outside these conditions, please consult the application notes.
Symbol
VIH
VIL
Iout
Rin
Parameter
High level input voltage
Low level input voltage
Continuous drain current, Tamb=85°C, Tj=125°C, Vin=5V, Rth=100°C/W
Recommended resistor in series with IN pin
Recommended resistor in series with DG pin
Recommended pull-up resistor for open load detection
Min. Max. Units
4
-0.3
10
10
5
5.5
0.9
1.5
20
V
A
Rdgs
Rol
20
k
100
3
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