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L6227Q

L6227Q

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L6227QTR

DMOS dual full bridge driver with PWM current controller

Operating Temp Min Celsius-40.0
Operating Temp Max Celsius150.0
ECCN USEAR99
ECCN EUNEC
Packing TypeTape And Reel
RoHs compliantEcopack2
GradeIndustrial
Package NameVFQFPN 32 5x5x1.0 mm

The L6227Q is a DMOS dual full bridge designed for motor control applications, realized in BCDmultipower technology, which combines isolated DMOS power transistors with CMOS and bipolar circuits on the same chip. The device also includes two independent constant off time PWM current controllers...
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Key features
  • Under voltage lockout
  • Thermal shutdown
  • Integrated fast free wheeling diodes
  • Slow decay synchronous rectification
  • Dual independent constant tOFF PWM current controllers
  • Operating supply voltage from 8 to 52 V
  • RDS(on) 0.73 typ. value @ TJ = 25 °C
  • 2.8 A output peak current (1.4 A DC)
  • Non dissipative overcurrent protection
  • Cross conduction protection
  • Operating frequency up to 100 kHz
In stock
Quantity $ per unit Savings
1-9$5.080%
10-24$4.5610%
25-99$4.3115%
100-240$3.7426%
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$5.08
$5.08
or
Operating Temp Min Celsius-40.0
Operating Temp Max Celsius150.0
ECCN USEAR99
ECCN EUNEC
Packing TypeTape And Reel
RoHs compliantEcopack2
GradeIndustrial
Package NameVFQFPN 32 5x5x1.0 mm

The L6227Q is a DMOS dual full bridge designed for motor control applications, realized in BCDmultipower technology, which combines isolated DMOS power transistors with CMOS and bipolar circuits on the same chip. The device also includes two independent constant off time PWM current controllers...
Read More

Key features
  • Under voltage lockout
  • Thermal shutdown
  • Integrated fast free wheeling diodes
  • Slow decay synchronous rectification
  • Dual independent constant tOFF PWM current controllers
  • Operating supply voltage from 8 to 52 V
  • RDS(on) 0.73 typ. value @ TJ = 25 °C
  • 2.8 A output peak current (1.4 A DC)
  • Non dissipative overcurrent protection
  • Cross conduction protection
  • Operating frequency up to 100 kHz