AUIPS72211R Data Sheet (880 KB, EN)

August 4th, 2011
Automotive grade
AUIPS72211R
LOW EMI PWM INTELLIGENT POWER HIGH SIDE SWITCH
Features
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Product Summary
Integrated bootstrap for 100kHz switching
Optimized EMI switching
Charge pump for DC operation
Over temperature shutdown
Over current shutdown
3.3V logic level
Ground loss protection
ESD protection
Applications
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•
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Rds(on)
35mΩ max.
Vbr
75V min.
I shutdown 20A min.
Package
24V loads
Injectors
Valves
DC motors
Description
The Device 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. An integrated
bootstrap diode allows fast switching.
D-Pak
Typical Connection
+Ba t
Vcc(3)
4 k7
In (1 )
Cont ro l
Cb (4 )
4 k7
In put Sig nal
V Diag
Bootstrap
cap acito r
Gnd (2 )
Out(5)
L oad
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AUIPS72211R
Qualification Information†
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.
Qualification Level
Moisture Sensitivity Level
DPAK-5L
MSL1, 260°C
(per IPC/JEDEC J-STD-020)
Class M2 (150V)
(per AEC-Q100-003)
Class H1A (500V)
ESD
Human Body Model
(per AEC-Q100-002)
Class C4 (1000V)
Charged Device Model
(per AEC-Q100-011)
Class II, Level A
IC Latch-Up Test
(per AEC-Q100-004)
RoHS Compliant
Yes
† Qualification standards can be found at International Rectifier’s web site http://www.irf.com/
†† Exceptions to AEC-Q100 requirements, if any, are noted in the qualification report.
Machine Model
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AUIPS72211R
Absolute Maximum Ratings
Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. (Tj= -40°C..150°C,
Vcc=6..60V unless otherwise specified).
Symbol
Parameter
Min.
Vout
Vin
Vcc max.
I in max.
Maximum output voltage
Maximum input voltage
Maximum Vcc voltage
Maximum input current
Maximum power dissipation (internally limited by thermal protection)
Rth=50°C/W 1”sqrt. footprint
Max. storage & operating temperature junction temperature
Gnd-3 Vcc+0.3
-0.3
5.5

65
-3
10
Pd
Tj max.
Max.
Units
V
mA
W
-40
2.5
150
°C
Typ.
Max.
Units
50
1.2


°C/W

Thermal Characteristics
Symbol
Parameter
Rth1
Rth2
Thermal resistance junction to ambient
Thermal resistance junction to case
Recommended Operating Conditions
These values are given for a quick design. For operation outside these conditions, please consult the application notes.
Symbol
Parameter
VIH
High level input voltage
VIL
Low level input voltage
Rin
Recommended resistor in series with IN pin
Rdg
Recommended resistor in series with dg pin
F max.
Max. switching frequency
Cboot
Bootstrap capacitor
(1) Limited by the maximum input current
(2) Limited by the input capacitor
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Min.
Max.
2.7
0
2(1)
2(1)
5.5
0.9
10(2)
10(2)
100
50

30
Units
V
kΩ
kHz
nF
3
AUIPS72211R
Static Electrical Characteristics
Tj=-40..150°C, Vcc=6..60V (unless otherwise specified)
Symbol
Rds(on)
Vcc op.
Icc Off
Parameter
ON state resistance Tj=25°C
ON state resistance Tj=150°C
Operating voltage range with short circuit
protection
Supply current when Sleep mode
Min.
Typ.
Max.
Units


30
50
35
70
mΩ
6

60
V

0.2
5
µA
Iout Off
Output leakage current

0.2
5
Icc On
Supply current when On

4
10
mA
Iout On
Output current when Off

10

mA
Vih
Vil
In hyst.
I in, on
Vin, off
Input high threshold voltage
Input low threshold voltage
Input hysteresis
Input current when the part is on
Input voltage when the part is in fault mode

2.2

V


1.9
1.6
0.3
15
0.1
0.5
30
0.4
µA
V
Min.
Typ.
Max.
Units




1
0.8
2.2
0.4




µs
Min.
Typ.
Max.
Units
20
150(3)
30
165
5
4
10
15
40
A
°C
1
0.1
Test Conditions
Vin=5V, Iout=5A
Vin=5V, Iout=5A
During sleep mode
Vin=0V, Vout=0V
Tj=25°C, Vcc=28V
Vin=5V
Tj=25°C, Vcc=28V
Vin=0V
Tj=25°C, Vcc=28V
Vin=5V
I in=5mA
Switching Electrical Characteristics
Vcc=28V, Resistive load=2Ω, Vin=5V, Tj=25°C
Symbol
Parameter
Tdon
Tr
Tdoff
Tf
Turn-on delay time to 20%
Rise time from 20% to 80% of Vcc
Turn-off delay time to 80%
Fall time from 80% to 20% of Vcc
Test Conditions
Protection Characteristics
Tj=-40..150°C, Vcc=6..60V (unless otherwise specified)
Symbol
Parameter
Isd on
Tsd
UV H
UV L
Tdiag
Tsleep
Over current shutdown
Over temperature threshold
Under voltage during turn on
Under voltage during turn off
Diagnostic time
Time to enter in sleep mode
Time to enter in sleep mode and reset the
Treset
fault
Twkp
Time to leave the sleep mode
Tpw on rst
Power on reset duration
(3) Guaranteed by design
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


7

6.2
5

5


0.05
8
0.5
12
4
V

30
Test Conditions
Vout=0V
ms
see figure 1
see figure 2
see figure 1
µs
Rin=4k7
see figure 2 & 3
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AUIPS72211R
Lead Assignments
3- Vcc
1- In
2- Gnd
3- Vcc
4- Cb
5- Out
12345
D Pak
Functional Block Diagram
All values are typical
Vcc
Cboot
Under
Voltage
Bootstrap
regulator
2V
1.5V
75V
S
Q
Level
Shifter
75V
Driver
R
Sleep
diag
6V
Charge
Pump
Iout>30A
Tj > 165°C
6V
Gnd
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350k
IN
OUT
5
AUIPS72211R
Sleep_mode / Diagnostic
Sleep_mode block manages the diagnostic and the sleep_mode. The device enters in sleep mode if input is inactive
during a delay higher than Tsleep.
IN
out
diag
internal
Tdiag
Tdiag
diag
Treset
Normal mode
Fault mode
sleep mode
Figure 1
Bootstrap
The AUIPS7221 integrates a bootstrap regulator to maintain a fixed voltage on the bootstrap capacitor for any battery
voltage. The regulator is off during the sleep mode to reduce the current consumption.
Vcc
8mA
Cboot
6V
Out
Load
The 8mA current source flows permanently on the output when the output is off and the part is not in sleep mode. In case
of an open load condition, the output voltage will be at Vcc-6V.
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AUIPS72211R
Wake up sequence
To wake up the part from the sleep mode, the input must be activated at least during Twkp, then the boostrap regulator is
switched on and the boostrap capacitor is charged. The output will be not activated during Tpw on rst.
Tsleep
IN
Tpw on rst
out
Twkp
sleep mode
Normal mode
sleep mode
Figure 2
IN
Tpw on rst
out
Twkp
sleep mode
Normal mode
Figure 3
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AUIPS72211R
40
Isd, Over-current shutdown (A)
Rds(on), Drain-to-Source On Resistance
(Normalized)
200%
150%
100%
50%
-50
0
50
100
30
20
10
0
-50
150
Tj, junction temperature (°C)
Figure 5 - Normalized Rds(on) (%) Vs Tj (°C)
50
100
150
Figure 6 – Isd (A) Vs Tj (°C)
1.0
2.5
0.8
2.0
On and Off delay time (µs)
Rising and falling time (µs)
0
Tj, junction temperature (°C)
0.6
0.4
tr
0.2
tf
0.0
1.5
1.0
tdon
0.5
tdoff
0.0
-50
0
50
100
Tj, junction temperature (°C)
Figure 7 – tr / tf (µs) Vs Tj (°C)
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150
-50
0
50
100
150
Tj, junction temperature (°C)
Figure 8 – tdon / tdoff (µs) Vs Tj (°C)
8
5
100
Icc off, supply leakage current (µA)
Zth, transient thermal impedance (°C/W)
AUIPS72211R
10
1
0.1
0.01
1e-5
1e-4
1e-3
1e-2
1e-1 1e+0 1e+1 1e+2 1e+3
Time (s)
4
3
2
1
0
-50
0
50
100
150
Tj, junction temperature (°C)
Figure 9 – Transient thermal impedance (°C/W)
Vs time (s)
Figure 10 – Icc off (µA) Vs Tj (°C)
Icc off, supply current (µA)
0.20
0.15
0.10
0.05
0.00
0
10
20
30
40
50
Vcc, supply voltage (V)
Figure 11 – Icc off(A) Vs Vcc (V)
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AUIPS72211R
Case Outline 5 Lead – DPAK
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AUIPS72211R
Tape & Reel
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5 Lead – DPAK
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AUIPS72211R
Part Marking Information
Ordering Information
Base Part Number
Standard Pack
Package Type
Complete Part Number
Form
Tube
AUIPS72211R
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D-Pak-5-Lead
Tape and reel
Quantity
75
AUIPS72211R
2000
AUIPS72211RTR
Tape and reel left
3000
AUIPS72211RTRL
Tape and reel right
3000
AUIPS72211RTRR
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AUIPS72211R
IMPORTANT NOTICE
Unless specifically designated for the automotive market, International Rectifier Corporation and its subsidiaries (IR)
reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and
services at any time and to discontinue any product or services without notice. Part numbers designated with the “AU”
prefix follow automotive industry and / or customer specific requirements with regards to product discontinuance and
process change notification. All products are sold subject to IR’s terms and conditions of sale supplied at the time of order
acknowledgment.
IR warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with
IR’s standard warranty. Testing and other quality control techniques are used to the extent IR deems necessary to
support this warranty. Except where mandated by government requirements, testing of all parameters of each product is
not necessarily performed.
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