BTS307 Infineon Technologies, BTS307 Datasheet

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BTS307

Manufacturer Part Number
BTS307
Description
Manufacturer
Infineon Technologies
Datasheet

Specifications of BTS307

Packages
P-TO220-5
Channels
1.0
Ron @ Tj = 25°c
250.0 mOhm
Recommended Operating Voltage Min.
5.8 V
Recommended Operating Voltage Max.
58.0 V
Il(sc)
-

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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
1
Semiconductor Group
)
Overload protection
Current limitation
Short circuit protection
Thermal shutdown
Overvoltage protection
Fast demagnetization of inductive loads
Reverse battery protection
Open drain diagnostic output
Open load detection in OFF-state
CMOS compatible input
Loss of ground and loss of V
Electrostatic discharge (ESD) protection
Most suitable for inductive 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
connection, 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, resistor in series with ST
1 of 12
Product Summary
Overvoltage protection
Operating voltage
On-state resistance
Load current (ISO)
Current
limit
technology. Providing embedded protective functions.
unclamped
Open load
Short circuit
detection
ind. loads
detection
Limit for
Standard
protection
Gate
5
Temperature
TO-220AB/5
sensor
PROFET
Straight leads
+ V bb
PROFET ® BTS 307
OUT
V
V
R
I
L(ISO)
bb(AZ)
bb(on)
ON
1
Load GND
3
5
5
5.8 ... 58 V
250
1.7
65
Load
SMD
2003-Oct-01
1
m
5
V
A

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BTS307 Summary of contents

Page 1

Smart Highside Power Switch Features Overload protection Current limitation Short circuit protection Thermal shutdown Overvoltage protection Fast demagnetization of inductive loads 1 ) Reverse battery protection Open drain diagnostic output Open load detection in OFF-state CMOS compatible input Loss of ...

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) Supply ...

Page 3

Electrical Characteristics Parameter and Conditions ° unless otherwise specified j bb Load Switching Capabilities and Characteristics On-state resistance (pin ...

Page 4

Parameter and Conditions ° unless otherwise specified Protection Functions ) Initial peak short circuit current limit (pin Output clamp (inductive load switch off ...

Page 5

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

Page 6

Inductive and overvoltage output clamp V Z PROFET GND V clamped typ. ON Overvolt. and reverse batt. protection Logic GND V = 6.2 V typ., V ...

Page 7

V disconnect with charged external bb inductive load high OUT PROFET GND other external inductive loads L are connected to the PROFET, additional elements like D are ...

Page 8

Options Overview all versions: High-side switch, Input protection, ESD protectionand reverse battery protection with 150 in GND connection, protection against loss of ground Type Logic version Overtemperature protection with hysteresis >150 °C, latch function ) T ...

Page 9

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. ...

Page 10

Figure 5a: Open load, : detection in OFF-state, turn on/off to open load OUT depends on external circuitry because of high d(ST,OL3) impedance *) typ L Figure 5b: Open load, ...

Page 11

Figure 7a: Overvoltage, no shutdown ON(CL) V OUT V OUT(OL) ST Semiconductor Group t 11 BTS 307 2003-Oct-01 ...

Page 12

... 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. Life support devices ...

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