IPS7091SPBF International Rectifier, IPS7091SPBF Datasheet - Page 7

IC SWITCH IPS 1CH HI SIDE D2PAK-

IPS7091SPBF

Manufacturer Part Number
IPS7091SPBF
Description
IC SWITCH IPS 1CH HI SIDE D2PAK-
Manufacturer
International Rectifier
Type
High Sider
Datasheets

Specifications of IPS7091SPBF

Input Type
Non-Inverting
Number Of Outputs
1
On-state Resistance
80 mOhm
Current - Output / Channel
1.5A
Current - Peak Output
5A
Voltage - Supply
6 V ~ 35 V
Operating Temperature
-40°C ~ 150°C
Mounting Type
Surface Mount
Package / Case
D²Pak, TO-263 (4 leads + tab)
Switch Type
High Side
Power Switch Family
IPS7091
Input Voltage
-0.3 to 5.5V
Power Switch On Resistance
90mOhm
Output Current
1.5A
Mounting
Surface Mount
Supply Current
2.5mA
Package Type
D2PAK
Operating Temperature (min)
-40C
Operating Temperature (max)
150C
Operating Temperature Classification
Automotive
Pin Count
4 +Tab
Power Dissipation
1.25W
Current, Drain
1.5 A
Current, Input
80 μA
Current, Leakage, Offset
10 μA
Current, Supply
3.5 A
Polarization
N-Channel
Resistance, Drain To Source On
120 Milliohms
Temperature, Operating, Maximum
+150 °C
Temperature, Operating, Minimum
–40 °C
Thermal Resistance, Junction To Ambient
100 °C/W
Time, Turn-off Delay
45 μs
Time, Turn-on Delay
35 μs
Voltage, Input
5.5 V
Voltage, Input, High Level
5.5 V
Voltage, Input, Low Level
0.9 V
Voltage, Supply
65 V
Power Load Switch Type
High Side
Current Limit
5A
On State Resistance
0.08ohm
Thermal Protection
ESD
Power Dissipation Pd
1.25W
No. Of Outputs
1
Internal Switch
No
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
www.irf.com
5
4
3
2
1
0
5V
0V
-5
0
Figure 5 – Active clamp test circuit
Figure 7 – Max. ouput current (A)
Vin
Dg
In
Vs Ambient temperature (°C)
Tamb, Ambient temperature (°C)
Gnd
0
During active
negative
Vload is
clamp,
Rem :
Vout
Vcc
Out
50
Vclamp
Iout
R
100
L
14V
150
+
-
Figure 8 – Transient thermal impedance (°C/W)
0.1
10
Figure 6 – Max. Output current (A) Vs Load
1 00.0
1
1
1 0.0
E+2
1 .0
0.1
0.0001 0.001
1E+3
IPS7091(G)(S)PbF
inductance (µH)
Load inductance (µH)
Vs time (s)
0.01
1E+4
Time (s)
0.1
1
1E+5
1 0
7
1E+6
1 00

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