Technical Document
Specifications
Brand
STMicroelectronicsProduct Type
Motor Driver IC
Motor Type
Brushless DC Motor
Configuration
3 Phase
Maximum IGBT Collector Current
2.8A
Maximum Collector Emitter Voltage Vceo
52V
Mount Type
Surface
Package Type
SOIC
Pin Count
24
Output Current
5.6A
Minimum Supply Voltage
12V
Maximum Supply Voltage
52V
Minimum Operating Temperature
-40°C
Typical Switching Frequency
100kHz
Maximum Operating Temperature
150°C
Height
2.35mm
Length
15.6mm
Width
7.6 mm
Series
L6235
Standards/Approvals
No
Supply Current
2.8A
Automotive Standard
No
Product details
Three Phase BLDC Motor Drivers, STMicroelectronics
The Brushless DC Motor Drivers include power drivers in a 3 phase bridge configuration. The ICs integrate decoding logic for Hall-effect sensors and a PWM current controller to drive autonomously a BLDC motor with microcontroller commands.
A robust and reliable electronic design can depend on the build-in circuit protection and diagnostic features from over-temperature, overcurrent and under-voltage conditions.
Motor Controllers & Drivers, STMicroelectronics
Stock information temporarily unavailable.
€ 6.90
€ 6.90 Each (Exc. Vat)
€ 8.56
€ 8.56 Each (inc. VAT)
1
€ 6.90
€ 6.90 Each (Exc. Vat)
€ 8.56
€ 8.56 Each (inc. VAT)
Stock information temporarily unavailable.
1
Technical Document
Specifications
Brand
STMicroelectronicsProduct Type
Motor Driver IC
Motor Type
Brushless DC Motor
Configuration
3 Phase
Maximum IGBT Collector Current
2.8A
Maximum Collector Emitter Voltage Vceo
52V
Mount Type
Surface
Package Type
SOIC
Pin Count
24
Output Current
5.6A
Minimum Supply Voltage
12V
Maximum Supply Voltage
52V
Minimum Operating Temperature
-40°C
Typical Switching Frequency
100kHz
Maximum Operating Temperature
150°C
Height
2.35mm
Length
15.6mm
Width
7.6 mm
Series
L6235
Standards/Approvals
No
Supply Current
2.8A
Automotive Standard
No
Product details
Three Phase BLDC Motor Drivers, STMicroelectronics
The Brushless DC Motor Drivers include power drivers in a 3 phase bridge configuration. The ICs integrate decoding logic for Hall-effect sensors and a PWM current controller to drive autonomously a BLDC motor with microcontroller commands.
A robust and reliable electronic design can depend on the build-in circuit protection and diagnostic features from over-temperature, overcurrent and under-voltage conditions.


