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 Data Sheet No.PD 60157-H
IPS521G
FULLY PROTECTED HIGH SIDE POWER MOSFET SWITCH
Features
* * * * * * *
Over temperature protection (with auto-restart) Short-circuit protection (current limit) Active clamp E.S.D protection Status feedback Open load detection Logic ground isolated from power ground
Product Summary Rds(on) V clamp I Limit V open load 100m (max) 50V 10A 3V
Description
The IPS521G is a fully protected five terminal high side switch with built in short circuit, over-temperature, ESD protection, inductive load capability and diagnostic feedback. The output current is controlled when it reaches Ilim value. The current limitation is activated until the thermal protection acts. The over-temperature protection turns off the high side switch if the junction temperature exceeds Tshutdown. It will automatically restart after the junction has cooled 7oC below Tshutdown. A diagnostic pin is provided for status feedback of short-circuit, over-temperature and open load detection. The double level shifter circuitry allows large offsets between the logic ground and the load ground.
Truth Table
Op. Conditions Normal Normal Open load Open load Over current Over current Over-temperature Over-temperature In Out H H L L H H L H H L (limiting) L L H L (cycling) L L Dg H L H H L L L L
Typical Connection
+ VCC + 5v
15K Status feedback Rdg Rin Output pull-up resistor
Package
Vcc Dg Logic control Out In Gnd
Logic signal
Load
8 Lead SOIC
Logic Gnd Load Gnd
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IPS521G
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 = 25oC unless otherwise specified).
Symbol Parameter
Vout Voffset Vin Iin, max Vdg Idg, max Isd cont. Maximum output voltage Maximum Input voltage Maximum positive IN current Maximum diagnostic output voltage Maximum diagnostic output current Diode max. permanent current (1) (rth = 125 o C/W) Isd pulsed Diode max. pulsed current (1) ESD1 Electrostatic discharge voltage (Human Body) ESD2 Pd Tj max. Vcc max. Electrostatic discharge voltage (Machine Model) Maximum power dissipation (rth=125oC/W) Max. storage & operating junction temp. Maximum Vcc voltage
(1)
Min.
Vcc-50 -0.3 -5 -0.3 -1 -- -- -- -- -- -40 --
Max.
Vcc+0.3 Vcc+0.3 5.5 10 5.5 10 1.4 10 4 0.5 1 +150 50
Units
V
Test Conditions
Maximum logic ground to load ground offset Vcc-50
mA V mA
A C=100pF, R=1500, kV C=200pF, R=0, L=10H
W
o
C V
Thermal Characteristics
Symbol Parameter
Rth1 Rth2 Thermal resistance with standard footprint Thermal resistance with 1" square footprint
Min.
-- --
Typ.
&
Max. Units Test Conditions
a a
o
C/W 8 Lead SOIC
Recommended Operating Conditions
These values are given for a quick design. For operation outside these conditions, please consult the application notes.
Symbol Parameter
Vcc VIH VIL Iout Tc=85oC Rin Rdg Continuous Vcc voltage High level input voltage Low level input voltage Continuous output current (TAmbient = 85oC, Tj = 125oC, Rth = 100oC/W) Recommended resistor in series with IN pin Recommended resistor in series with DG pin
Min.
5.5 4 -0.3 -- 4 10
Max.
35 5.5 0.9 1.6 6 20
Units
V
A k
(1) Limited by junction temperature (pulsed current limited also by internal wiring)
2
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IPS521G
Static Electrical Characteristics
(Tj = 25oC, Vcc = 14V unless otherwise specified.)
Symbol Parameter
Rds(on)
@Tj=25o C
Min.
-- -- -- 5.5 50 -- -- -- -- -- -- -- 0 -- -- 1 -- 0.1
Typ.
80 80 125 -- 55 56 0.9 13 0.6 20 0.4 50 -- -- 2.2 1.9 70 0.25
Max. Units Test Conditions
100 100 160 35 -- 65 1.2 50 2 -- -- 120 25 10 3 -- 200 0.5 V A V Vin = 5V Vin = 5V, Iout = 5A m Vin = 5V, Iout = 2.5A Vin = 5V, Iout = 5A
ON state resistance Tj = 25oC ON state resistance @ Vcc = 6V ON state resistance Tj = 150oC Operating voltage range Vcc to OUT clamp voltage 1 Vcc to OUT clamp voltage 2 Body diode forward voltage Supply current when OFF Supply current when ON Ripple current when ON (AC RMS) Low level diagnostic output voltage Output leakage current Output leakage current Diagnostic output leakage current IN high threshold voltage IN low threshold voltage On state IN positive current Input hysteresis
Rds(on)
(V cc=6V)
Rds(on)
@Tj=150oC
Vcc oper. V clamp 1 V clamp 2 Vf Icc off Icc on Icc ac Vdgl Ioh Iol Idg
leakage
V A mA A V A
Id = 10mA (see Fig.1 & 2) Id = Isd (see Fig.1 & 2) Id = 2.5A, Vin = 0V Vin = 0V, Vout = 0V Vin = 5V Vin = 5V Idg = 1.6 mA Vout = 6V Vout = 0V Vdg = 5.5V
Vih Vil Iin, on In hyst.
Switching Electrical Characteristics
Vcc = 14V, Resistive Load = 2.8, Tj = 25oC, (unless otherwise specified).
Symbol Parameter
Tdon Turn-on delay time Tr1 Rise time to Vout = Vcc - 5V Tr2 Rise time Vcc - 5V to Vout = 90% of Vcc dV/dt (on) Turn ON d V/dt Eon Turn ON energy Tdoff Turn-off delay time Tf Fall time to Vout = 10% of Vcc dV/dt (off) Turn OFF d V/dt Eoff Turn OFF energy Tdiag Vout to Vdiag propagation delay
Min.
a a -- a -- -- -- a -- --
Typ. Max. Units Test Conditions
10 25 130 0.7 1500 35 16 0.9 250 5 40 60 200 2 -- 70 50 3 -- 15 s See figure 3 V/s J s V/s J s See figure 4
See figure 6
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IPS521G
Protection Characteristics
Symbol Parameter
Ilim Internal current limit T sd+ Over-temp. positive going threshold TsdOver-temp. negative going threshold V sc Short-circuit detection voltage (3) Vopen load Open load detection threshold (3) Referenced to Vcc
Min.
7 -- -- 2 2
Typ.
10 165 158 3 3
Max. Units Test Conditions
14 -- -- 4 4 A
oC oC
V V
Vout = 0V See fig. 2 See fig. 2 See fig. 2
Functional Block Diagram
All values are typical
VCC
50V
Over temperature
165C 158C
Tj
62 V
Charge pum p
2.7 V
IN
7V
200 K
Level
2.2 V
shift
driver
-
DG
7V 40 + Open load 3V
Current limit
+
10 A
+
Short-circuit
-
3V
GN D
VOUT
Lead Assignments
Vcc Vcc Vcc Vcc
1
GND IN
DG OUT
8 Lead SOIC
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IPS521G
T clamp
Vin
Vin
5V 0V
Iout
limiting Ilim.
T shutdown
cycling
Ids Iout
( + Vcc )
Out
0V
T
V clamp Tsd+ Tsd- ) (160
( see Appl . Notes to evaluate power dissipation )
Figure 1 - Active clamp waveforms
Figure 2 - Protection timing diagram
Vin
Vcc 90% Vcc - 5V
Vin
dV/dt on
Vout
10% Td on
90%
Tr 1
Tr 2 E1(t)
dV/dt off
Vout
10%
Iout2 E2 (t) Inductive load
Iout1 Eon1 Resistive load
Td off Tf
Eon2
Figure 3 - Switching times definition (turn-on) Turn on energy with a resistive or an inductive load
Figure 4 - Switching times definition (turn-off)
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IPS521G
V in
Dg Vcc IN Out Gnd
+
Vcc Vcc -Vsc
Vin
Vout
L
14 V -
V o ut
Vol
R
V d ia g
Iout
Diag on blanking Diag off blanking T diag
5v 0v Rem : V load is negative during demagnetization
Figure 5 - Active clamp test circuit
Figure 6 - Diagnostic delay definitions
100
200%
150%
50
100%
0 0 5 10 15 20 25 30 35
50%
-50 0 50 100 150
Figure 7 - Rds(on) (m) Vs Vcc (V)
Figure 8 - Normalized Rds(on) (m) Vs Tj (oC)
6
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IPS521G
100
10
1
50
0.1
0
0
2
4
6
8
10
Figure 9 - Rds(on) (m) Vs Iout (A)
Figure 10 - Max. Iout (A) Vs Load Inductance (uH)
5
10 0
rth SO8 std footprint
4
10 1inch footprint Rthja= 60C/W
3
1
2
Std. footprint Rthja= 100C/W 0 ,1
1
0 25 50 75 100 125 150
0 ,0 1
Figure 11 - Max load current (A) Vs Tamb (oC)
Figure 12 - Transient Thermal Impedance (oC/W) Vs Time (s)
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IPS521G
15
3500 3000
Resistive load
10
2500 2000
Eon Eoff
5
1500 1000 500
0 -50 0 50 100 150
0 0 1 2 3 4 5 6 7
Figure 13 - Ilim (A) Vs Tj (oC)
Figure 14 - Eon, Eoff (J) Vs Iout (A)
10000
150 125
I=Imax vs Induct.(see fig.10)
1000
Diag on blanking 100
100
I=1.5A
75
10
50
1
25 Diag off blanking
1E+01 1E+02 1E+03 1E+04 1E+05 1E+06
0.1
0 0 1 2 3
Figure 15 - Eon (J) Vs Load Inductance (H) (see Fig. 3)
Figure 16 - Diag Blanking time (S) Vs Iout (A) (resistive load - see Fig. 6)
8
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IPS521G
1.00E-03
1.00E-04
1.00E-05
1.00E-06 0 5 10 15 20 25 30 35
Figure 17 - Icc (mA) Vs Vcc (V)
Case Outline - 8 Lead SOIC
(MS-012AA) 01-0021 09 4/11/2000
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