UDN2987
Allegro
8-CHANNEL SOURCE DRIVER WITH OVER-CURRENT PROTECTION2987 8-CHANNEL SOURCE DRIVER
2987
8-CHANNEL SOURCE DRIVER WITH OVER-CURRENT PROTECTION
Providing over-current protection for each of its eight sourcing outputs, the UDN2987A and UDN2987LW drivers are used as an interface between standard low-level logic and r
UDN2987A
Sprague Electric
8-Channel Source Driver
DataShee
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DataShee
partnumber.co.krom
partnumber.co.krom
partnumber.co.krom DataSheet 4 U .com
et4U.com
DataShee
DataShe
UDN2987A-6
Allegro Microsystems
(UDN2987x-6) 8-Channel Source Driver
UDN2987x-6
DABIC-5 8-Channel Source Driver with Overcurrent Protection
Package A, 20-pin DIP
Package LW, 20-pin SOIC-W
Approximate Scale 1:1
Providing overcurrent protection for each of its eight sourcing outputs, the UDN2987A-6 and UDN
UDN2987ALWTR-6
Allegro Microsystems
(UDN2987x-6) 8-Channel Source Driver
UDN2987x-6
DABIC-5 8-Channel Source Driver with Overcurrent Protection
Package A, 20-pin DIP
Package LW, 20-pin SOIC-W
Approximate Scale 1:1
Providing overcurrent protection for each of its eight sourcing outputs, the UDN2987A-6 and UDN
UDN2987LW-6
Allegro Microsystems
DABIC-5 8-Channel Source DriverUDN2987x-6
DABIC-5 8-Channel Source Driver with Overcurrent Protection
Features and Benefits
▪ 4.75 to 35 V driver supply voltage ▪ Output enable-disable (OE/R) ▪ 350 mA output source current ▪ Overcurrent protected ▪ Internal ground clamp diodes �
UDN2987LWTR-6-T
Allegro Microsystems
DABIC-5 8-Channel Source DriverUDN2987x-6
DABIC-5 8-Channel Source Driver with Overcurrent Protection
Features and Benefits
▪ 4.75 to 35 V driver supply voltage ▪ Output enable-disable (OE/R) ▪ 350 mA output source current ▪ Overcurrent protected ▪ Internal ground clamp diodes �
UDN2987X-6
Allegro MicroSystems
DABIC-5 8-Channel Source DriverUDN2987x-6
DABIC-5 8-Channel Source Driver with Overcurrent Protection
Package A, 20-pin DIP
Package LW, 20-pin SOIC-W
Approximate Scale 1:1
Features
4.75 to 35 V driver supply voltage Output enable-disable (OE/R) 350 mA output source current Overcurrent p