BTS410E2 E3062A Infineon Technologies, BTS410E2 E3062A Datasheet

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BTS410E2 E3062A

Manufacturer Part Number
BTS410E2 E3062A
Description
IC HIGH SIDE PWR SWITCH TO220-5
Manufacturer
Infineon Technologies
Series
PROFET®r
Type
High Sider
Datasheet

Specifications of BTS410E2 E3062A

Input Type
Non-Inverting
Number Of Outputs
1
On-state Resistance
190 mOhm
Current - Output / Channel
1.8A
Current - Peak Output
12A
Voltage - Supply
4.7 V ~ 42 V
Operating Temperature
-40°C ~ 150°C
Mounting Type
Surface Mount
Package / Case
TO-220-4 Full Pack (Bent and Staggered Leads)
Switch Type
High Side
Power Switch Family
BTS 410 E2
Input Voltage
-0.5 to 6V
Power Switch On Resistance
190mOhm
Output Current
1.6A
Mounting
Surface Mount
Supply Current
1mA
Package Type
TO-220AB SMD
Operating Temperature (min)
-40C
Operating Temperature (max)
150C
Operating Temperature Classification
Automotive
Pin Count
4 +Tab
Power Dissipation
50W
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
BTS410E2E3062ANT
BTS410E2E3062AT
SP000011235
Smart Highside Power Switch
Features
Application
General Description
N channel vertical power FET with charge pump, ground referenced CMOS compatible input and diagnostic
feedback, monolithically integrated in Smart SIPMOS technology. Providing embedded protective functions.
1
Semiconductor Group
)
Overload protection
Current limitation
Short circuit protection
Thermal shutdown
Overvoltage protection (including load dump)
Fast demagnetization of inductive loads
Reverse battery protection
Undervoltage and overvoltage shutdown with
auto-restart and hysteresis
Open drain diagnostic output
Open load detection in ON-state
CMOS compatible input
Loss of ground and loss of V
Electrostatic discharge (ESD) protection
All types of resistive, inductive and capacitve loads
Replaces electromechanical relays, fuses and discrete circuits
C compatible power switch with diagnostic feedback for 12 V and 24 V DC grounded loads
With external current limit (e.g. resistor R
connections, reverse load current limited by connected load.
4
2
ST
IN
ESD
Voltage
Voltage
sensor
source
Logic
V
1 )
Logic
bb
protection
Overvoltage
protection
Charge pump
Level shifter
Rectifier
1
GND
GND
Signal GND
=150 ) in GND connection, resistors in series with IN and ST
1 of 16
Current
Product Summary
Overvoltage protection
Operating voltage
On-state resistance
Load current (ISO)
Current limitation
limit
unclamped
Open load
Short circuit
detection
ind. loads
detection
Limit for
Standard
protection
Gate
5
Temperature
TO-220AB/5
sensor
PROFET
PROFET ® BTS 410 E2
Straight leads
+ V bb
OUT
V
V
R
I
I
L(ISO)
L(SCr)
bb(AZ)
bb(on)
Load GND
ON
1
3
5
5
4.7 ... 42 V
2003-Oct-01
Load
220 m
SMD
1.8
65
1
5
5
V
A
A

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BTS410E2 E3062A Summary of contents

Page 1

Smart Highside Power Switch Features Overload protection Current limitation Short circuit protection Thermal shutdown Overvoltage protection (including load dump) Fast demagnetization of inductive loads 1 ) Reverse battery protection Undervoltage and overvoltage shutdown with auto-restart and hysteresis Open drain diagnostic ...

Page 2

Pin Symbol 1 GND - OUT O (Load, L) Maximum Ratings °C unless otherwise specified j Parameter Supply voltage (overvoltage protection see page 3) ) ...

Page 3

Electrical Characteristics Parameter and Conditions ° unless otherwise specified j bb Load Switching Capabilities and Characteristics On-state resistance (pin 1 Nominal load current, ISO Norm ...

Page 4

Parameter and Conditions ° unless otherwise specified j bb Protection Functions 9) Initial peak short circuit current limit (pin max 450 > ON(SC) ...

Page 5

Parameter and Conditions ° unless otherwise specified j bb Input and Status Feedback Input turn-on threshold voltage Input turn-off threshold voltage Input threshold hysteresis Off state input current (pin 2 ...

Page 6

Truth Table Input- Output level level Normal L L operation H H Open load Short circuit GND H L Short circuit Overtem perature ...

Page 7

Status output R ST(ON) GND ESD-Zener diode typ., max 5 mA; R < 250 at 1.6 mA, ESD zener diodes are not ST(ON used as voltage clamp at DC conditions. Operation in this mode may result ...

Page 8

GND disconnect with GND pull PROFET ST 4 GND GND bb Any kind of load device stays off GND > IN IN(T+) ...

Page 9

Typ. transient thermal impedance chip case Z = f(t , D), D=t /T thJC [K/W] thJC 10 1 0.1 0.01 1E-5 1E-4 1E-3 1E-2 Semiconductor Group D= 0.5 0.2 0.1 0.05 0.02 0.01 0 1E-1 1E0 1E1 ...

Page 10

Options Overview all versions: High-side switch, Input protection, ESD protection, load dump and reverse battery protection with 150 ground Type Logic version Overtemperature protection with hysteresis T j >150 °C, latch function >150 °C, ...

Page 11

Timing diagrams Figure 1a: V turn on d(bb IN OUT A ST open drain A in case of too early V IN =high the device may not turn on (curve A) t approx. 150 ...

Page 12

Figure 3b: Turn on into overload L(SCp) I L(SCr) ST Heating up may require several seconds < 8.5 V typ. bb OUT Figure 3c: Short circuit while on OUT I ...

Page 13

Figure 5b: Open load: detection in ON-state, open load occurs in on-state IN t d(ST OL1 OUT normal open tbd s typ tbd s typ d(ST OL1) d(ST OL2) Figure 6a: Undervoltage: ...

Page 14

Figure 9a: Overvoltage at short circuit shutdown bb(o rst) Output short to GND V OUT short circuit shutdown Overvoltage due to power line inductance. No overvoltage auto- restart of PROFET after short circuit ...

Page 15

... All dimensions in mm Standard TO-220AB/5 BTS 410 E2 Q67060-S6102-A2 TO-220AB/5, Option E3043 BTS 410 E2 E3043 Q67060-S6102-A3 Semiconductor Group SMD TO-220AB/5, Opt. E3062 Ordering code BTS410E2 E3062A T&R: Changed since 04.96 Date Change Mar. E 1997 and Z ESD capability (except Input) Ordering code specified to 2kV, R ...

Page 16

... Due to technical requirements components may contain dangerous substances. For information on the types in question please contact your nearest Infineon Technologies Office. Infineon Technologies Components may only be used in life- support devices or systems with the express written approval of Infineon Technologies failure of such components can reasonably be expected to cause the failure of that life-support device or system affect the safety or effectiveness of that device or system ...

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