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BTS726L1 Datasheet(PDF) 5 Page - Siemens Semiconductor Group

Part No. BTS726L1
Description  Smart Two Channel Highside Power Switch (Overload protection Current limitation Short-circuit protection Thermal shutdown)
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Maker  SIEMENS [Siemens Semiconductor Group]
Homepage  http://www.siemens.com/
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BTS726L1 Datasheet(HTML) 5 Page - Siemens Semiconductor Group

 
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BTS 726 L1
Parameter and Conditions, each of the two channels
Symbol
Values
Unit
at Tj = 25 °C,
Vbb = 12 V unless otherwise specified
min
typ
max
Semiconductor Group
5
Leakage output current (included in
Ibb(off))
VIN = 0
IL(off)
--
--
12
µA
Operating current 9),
VIN = 5V, Tj =-40...+150°C
IGND = IGND1 + IGND2,
one channel on:
two channels on:
IGND
--
--
1.8
3.6
3.5
7
mA
Protection Functions
Initial peak short circuit current limit, (see timing
diagrams, page 12)
each channel, Tj =-40°C:
Tj =25°C:
Tj =+150°C:
IL(SCp)
21
15
11
32
25
17
43
35
24
A
two parallel channels
twice the current of one channel
Repetitive short circuit current limit,
Tj = Tjt
each channel
two parallel channels
(see timing diagrams, page 12)
IL(SCr)
--
--
16
16
--
--
A
Initial short circuit shutdown time
Tj,start =-40°C:
Tj,start = 25°C:
(see page 11 and timing diagrams on page 12)
toff(SC)
--
--
5
4
--
--
ms
Output clamp (inductive load switch off)10)
at VON(CL) = Vbb - VOUT
VON(CL)
--
47
--
V
Thermal overload trip temperature
Tjt
150
--
--
°C
Thermal hysteresis
∆T
jt
--
10
--
K
Reverse Battery
Reverse battery voltage 11)
-
Vbb
--
--
32
V
Drain-source diode voltage (Vout > Vbb)
IL = - 4.0 A, Tj = +150°C
-
VON
--
610
--
mV
9
)
Add
IST, if IST > 0
10
) If channels are connected in parallel, output clamp is usually accomplished by the channel with the lowest
VON(CL)
11
) Requires a 150 Ω resistor in GND connection. The reverse load current through the intrinsic drain-source
diode has to be limited by the connected load. Note that the power dissipation is higher compared to normal
operating conditions due to the voltage drop across the intrinsic drain-source diode. The temperature
protection is not active during reverse current operation! Input and Status currents have to be limited (see
max. ratings page 3 and circuit page 8).


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