logo

ULN2003LVDR

Manufacturer

TEXAS INSTRUMENTS

data-sheet
Data sheet
Data sheet
ULN2003LVDR is used in power switching and driving applications, particularly in automation systems, relay drivers, and motor control circuits. It is suitable for interfacing with microcontrollers and logic devices, providing efficient control of high-current loads in various electronic systems.
Specification
Specification
TRANS 7NPN DARL 8V 0.5A 16SOIC
TRANS 7NPN DARL 8V 0.5A 16SOIC
Detailed specification
Detailed specification
Power Switch/Driver 1:1 Darlington 700mA 16-SOIC
Power Switch/Driver 1:1 Darlington 700mA 16-SOIC
Description
Description
The ULN2003LVDR from Texas Instruments is a 7-channel NPN Darlington transistor array designed for power switching and driving applications. It operates at a maximum collector current of 700mA and can handle a supply voltage of up to 8V. Packaged in a 16-SOIC format, this device is ideal for interfacing with microcontrollers and other logic devices, providing high current gain and low output saturation voltage. Its compact design and efficient performance make it suitable for various automation and control systems.
The ULN2003LVDR from Texas Instruments is a 7-channel NPN Darlington transistor array designed for power switching and driving applications. It operates at a maximum collector current of 700mA and can handle a supply voltage of up to 8V. Packaged in a 16-SOIC format, this device is ideal for interfacing with microcontrollers and other logic devices, providing high current gain and low output saturation voltage. Its compact design and efficient performance make it suitable for various automation and control systems.
Availability
Availability
Can be ordered from Westcomp
Can be ordered from Westcomp
Contact sales
Contact Martin or one of our other skilled sales representatives. They'll help you find the right service option.
Martin Elfstrand
Upload BOM
Would you like to upload a BOM with stock status and delivery times for all components? Then you can feel free to request a quote.