AUIPS6041S Datasheet PDF - International Rectifier


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AUIPS6041S
International Rectifier

Part Number AUIPS6041S
Description INTELLIGENT POWER HIGH SIDE SWITCH
Page 20 Pages

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March, 12th 2012
Automotive grade
AUIPS6041(G)(R)(S)
INTELLIGENT POWER HIGH SIDE SWITCH
Features
Over temperature shutdown (with auto-restart)
Short circuit protection (current limit)
Reverse battery protection (turns On the MOSFET)
Full diagnostic capability (short circuit to battery)
Active clamp
Open load detection in On and Off state
Ground loss protection
Logic ground isolated from power ground
ESD protection
Lead Free and RoHS compliant
Description
The AUIPS6041(G)(R)(S) is a five terminal Intelligent Power
Switch (IPS) for use in a high side configuration. It features
short circuit, over-temperature, ESD protection, inductive load
capability and diagnostic feedback. The output current is
limited to the Ilim value. The current limitation is activated until
the thermal protection acts. The over-temperature protection
turns off the device if the junction temperature exceeds the
Tshutdown value. It will automatically restart after the junction
has cooled 7°C below the Tshutdown value. The reverse
battery protection turns On the MOSFET. A diagnostic pin
provides different voltage levels for each fault condition. The
double level shifter circuitry will allow large offsets between
the logic and load ground.
Product Summary
Rds(on)
Vclamp
I Limit
Open load
130mmax.
39V
7A
3V / 0.22A
Packages
SO8
AUIPS6041G
D-Pak
AUIPS6041R
TO220
AUIPS6041
D2Pak
AUIPS6041S
Typical Connection
+5V +Bat
Rdgp
Dg(3)
Rdgs
Vcc(5-6-7-8)
Control
V Diag
Input Signal
In(2) Gnd(1)
Rin
Out(4)
Load
Pull-up resistors required for
open load off and short
circuit to Vbat detection
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AUIPS6041(G)(R)(S)
Qualification Information
Qualification Level
Moisture Sensitivity Level
Machine Model
ESD
Human Body Model
Charged Device Model
(SOIC, DPAK,D2PAK)
Charged Device Model
(TO220)
IC Latch-Up Test
RoHS Compliant
Automotive
(per AEC-Q100††)
Comments: This family of ICs has passed an Automotive qualification. IR’s
Industrial and Consumer qualification level is granted by extension of the higher
Automotive level.
D2PAK-5L
MSL1, 260°C
(per IPC/JEDEC J-STD-020)
TO-220
Not applicable
(non-surface mount package style)
DPAK-5L
MSL1, 260°C
(per IPC/JEDEC J-STD-020)
SOIC-8L
MSL2, 260°C
(per IPC/JEDEC J-STD-020)
Class M2 (+/-150V) †††
(per AEC-Q100-003)
Class H1C (+/-1500V) †††
(per AEC-Q100-002)
Class C4 (+/-900V) †††
(per AEC-Q100-011)
Class C3B (+/-750V) †††
(per AEC-Q100-011)
Class II, Level A
(per AEC-Q100-004)
Yes
† Qualification standards can be found at International Rectifier’s web site http://www.irf.com/
†† Exceptions to AEC-Q100 requirements are noted in the qualification report.
††† Passing voltage level
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AUIPS6041(G)(R)(S)
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
Parameter
Min. Max. Units
Vout
Maximum output voltage
Vcc-35 Vcc+0.3
Voffset
Maximum logic ground to load ground offset
Vcc-35 Vcc+0.3
Vin Maximum input voltage
-0.3 5.5
V
Vcc max.
Maximum Vcc voltage
36
Vcc cont.
Maximum continuous Vcc voltage
28
Iin max.
Idg max.
Maximum IN current
Maximum diagnostic output current
-3
-3
10
10
mA
Vdg Maximum diagnostic output voltage
-0.3 5.5
V
Pulse 2a max Maximum voltage ISO pulse 2a x 500cy (ISO7637)
55
V
Pd
Maximum power dissipation (internally limited by thermal protection)
Rth=100°C/W AUIPS6041G
1.25 W
Rth=50°C/W AUIPS6041R 1”sqrt. footprint 2.5
Tj max.
Max. storage & operating temperature junction temperature
-40 150
°C
Thermal Characteristics
Symbol
Parameter
Rth1
Thermal resistance junction to ambient AUIPS6041G
Rth1
Rth2
Thermal resistance junction to ambient AUIPS6041R D-Pak std. footprint
Thermal resistance junction to ambient AUIPS6041R D-Pak 1” sqrt.
footprint
Rth3
Thermal resistance junction to case AUIPS6041(R)(S)
D-Pak/D2pak/TO220
Rth1
Rth2
Thermal resistance junction to ambient AUIPS6041(S) D2Pak/TO220 std.
footprint
Thermal resistance junction to ambient AUIPS6041S D2Pak 1” sqrt.
footprint
Typ.
100
70
50
6
60
40
Max.
Units
°C/W
Recommended Operating Conditions
These values are given for a quick design. For operation outside these conditions, please consult the application notes.
Symbol
Parameter
Min. Max. Units
VIH High level input voltage
4 5.5
VIL Low level input voltage
0 0.9
Iout
Continuous drain current, Tambient=85°C, Tj=125°C, Vin=5V
Rth=100°C/W AUIPS6041G
Rth=50°C/W AUIPS6041R 1” sqrt. footprint
1.6
2.3
A
Rin Recommended resistor in series with IN pin
4 10
Rdgs
Rdgp
Recommended resistor in series with DG pin for reverse battery protection
Recommended pull-up resistor for DG
4
4
20
20
k
Rol Recommended pull-up resistor for open load detection
5 100
F max.
Max. switching frequency
3.5 kHz
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AUIPS6041(G)(R)(S)
Static Electrical Characteristics
Tj=-40°C..150°C, Vcc=6..28V (unless otherwise specified), typical values are given for Vcc=14V and Tj=25°C
Symbol Parameter
Min. Typ. Max. Units Test Conditions
ON state resistance Tj=25°C
110 130
Vin=5V, Iout=2.5A
ON state resistance Tj=150°C
190 230
Vin=5V, Iout=2.5A
Rds(on)
ON state resistance Tj=25°C, Vcc=6V
125 155 mVin=5V, Iout=1.5A
ON state resistance during reverse battery
140 180
Vcc-Gnd=-14V
Tj=25°C
Vcc op.
Operating voltage range
6 28
V clamp 1 Vcc to Out clamp voltage 1
37 39 43
V Iout=20mA
V clamp 2 Vcc to Out clamp voltage 2
40
Iout=2.5A (see Fig. 1)
Icc Off
Supply current when Off and with Vout
connected to ground Rconnection <4
4
9
µA
Vin=0V, Vout=0V,
Tj=25°C, Vcc=14V
Icc On
Supply current when On
2.2 5
mA Vin=5V, Vcc=14V
Vih Input high threshold voltage
2.5 3
Vil Input low threshold voltage
1.5 2
V
In hyst.
Input hysteresis
0.2 0.5
1
Iin On
Idg
Input current when device is On
Dg leakage current
40 100
0.1 10
µA
Vin=5V
Vdg=5V
Vdg Low level DG voltage
0.25 0.4
V Idg=1.6mA
Switching Electrical Characteristics
Vcc=14V, Resistive load=6, Vin=5V, Tj=-40°C..150°C, typical values are given for Tj=25°C
Symbol Parameter
Min. Typ. Max. Units
Tdon
Turn-on delay time
5 15
Tr1 Rise time to Vout=Vcc-5V
3 10 µs
Tr2 Rise time to Vout=0.9 x Vcc
4 30
dV/dt (On) Turn On dV/dt
2.5 V/µs
EOn
Turn On energy
100
µJ
Tdoff
Tf
Turn-off delay time
Fall time to Vout=0.1 x Vcc
10 20
3 10
µs
dV/dt (Off) Turn Off dV/dt
6.5 V/µs
EOff
Turn Off energy
50
µJ
Test Conditions
see Fig. 3
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