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BTS149INFINEONN/a2800avaiSmart Low Side Switches


BTS149 ,Smart Low Side SwitchesGeneral DescriptionN channel vertical power FET in Smart SIPMOS chip on chip tech-nology. Fully pr ..
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BTS149
Smart Low Side Switches
HITFET=BTS 149
Smart Lowside Power Switch
Features

• Logic Level Input
• Input Protection (ESD)
•=Thermal shutdown with latch
• Overload protection
• Short circuit protection
• Overvoltage protection
• Current limitation
• Status feedback with external input resistor
• Analog driving possible
Product Summary
Application

• All kinds of resistive, inductive and capacitive loads in switching or
linear applications
• µC compatible power switch for 12 V and 24 V DC applications
• Replaces electromechanical relays and discrete circuits
General Description

N channel vertical power FET in Smart SIPMOS chip on chip tech-
nology. Fully protected by embedded protected functions.
BTS 149
Maximum Ratings at Tj = 25 °C unless otherwise specified
Thermal resistance

1In case of thermal shutdown a minimum sensor holding current of 500 µA has to be guaranteed (see also page 3).Loaddump is setup without the DUT connected to the generator per ISO 7637-1 and DIN 40839
BTS 149
Electrical Characteristics
Characteristics

1If the input current is limited by external components, low drain currents can flow and heat the device.
BTS 149
Electrical Characteristics
Characteristics
Dynamic Characteristics
Protection Functions
Inverse Diode

1Device switched on into existing short circuit (see diagram Determination of ID(lim)). If the device is in on condition
BTS 149
Block Diagramm
TermsInductive and overvoltage output clamp
HITFET
D
VINDVDS1INbbLHITFET
Short circuit behaviour
INDD(SCp)
t 0tmt 2
ID(Lim)
t 1
Input circuit (ESD protection)

ESD zener diodes are not designed
for DC current > 2 mA @ VIN>10V.t0: Turn on into a short circuitm: Measurementpoint for ID(lim)1: Activation of the fast temperature sensor and
regulation of the drain current to a level where
the junction temperature remains constant.2: Thermal shutdown caused by the second
temperature sensor, achieved by an
integrating measurement.
BTS 149
On-state resistanceON = f(Tj); I
D=19A; VIN=10V
10
15
20
25
30
40
DS(on)
Maximum allowable power dissipationtot = f(Tc)

20
40
60
80
100
120
140
160
190
tot
On-state resistanceON = f(Tj); I
D= 19A; VIN=5V
10
15
20
25
30
35
45
DS(on)
Typ. input threshold voltageIN(th) = f(Tj); I
D=3,9mA; VDS=12V
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
2.0
IN(th)
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