Fairchild NC7NP34 Manuals

We have 3 manuals for the Fairchild NC7NP34: 3 Datasheets. Free to view online or download as PDF.

Fairchild NC7NP34 manuals

FAIRCHILD NC7NP34 handbook(1)

Datasheet

The NC7NP34 is a triple buffer from Fairchild’s Ultra Low Power (ULP) Series of TinyLogic . Ideal for applications where battery life is critical, this product is designed for ultra low power consumption within the VCC operating range of 0.9V to 3.6V VCC. The internal circuit is composed of a minimum of inverter stages, including the output buffer, to enable ultra low static and dynamic power. The NC7NP34 is designed for optimized power and speed, and is fabricated with an advanced CMOS technology to achieve high speed, low noise operation while maintaining extremely low CMOS power dissipation.

FAIRCHILD NC7NP34 handbook

Datasheet

The NC7NP34 is a triple buffer from Fairchild's Ultra Low Power (ULP) Series of TinyLogic. Ideal for applications where battery life is critical, this product is designed for ultra low power consumption within the VCC operating range of 0.9V to 3.6V VCC. The internal circuit is composed of a minimum of inverter stages, including the output buffer, to enable ultra low static and dynamic power. The NC7NP34 is designed for optimized power and speed, and is fabricated with an advanced CMOS technology to achieve high speed, low noise operation while maintaining extremely low CMOS power dissipation.

FAIRCHILD NC7NP34 TinyLogic ULP Triple Buffer handbook

Datasheet

The NC7NP34 is a triple buffer from Fairchild’s Ultra Low Power (ULP) Series of TinyLogic. Ideal for applications where battery life is critical, this product is designed for ultra low power consumption within the VCC operating range of 0.9V to 3.6V VCC. The internal circuit is composed of a minimum of inverter stages, including the output buffer, to enable ultra low static and dynamic power. The NC7NP34 is designed for optimized power and speed, and is fabricated with an advanced CMOS technology to achieve high speed, low noise operation while maintaining extremely low CMOS power dissipation.