DM74AS30N

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Mfr.Part #
DM74AS30N
Manufacturer
Fairchild Semiconductor
Package / Case
14-DIP (0.300, 7.62mm)
Datasheet
Download
Description
IC GATE NAND 1CH 8-INP 14DIP
Stock
490
In Stock :
490

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Manufacturer :
Fairchild Semiconductor
Product Category :
Gates and Inverters
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Max Propagation Delay @ V, Max CL :
5ns @ 5V, 50pF
Current - Output High, Low :
2mA 20mA
Logic Type :
NAND Gate
Number of Elements :
1
Operating Temperature :
0°C~70°C
Operating Supply Voltage :
5V
Number of Outputs :
1
Voltage - Supply :
4.5V~5.5V
Logic Level - Low :
0.8V
Number of Pins :
14
Number of Output Lines :
1
RoHS Status :
RoHS Compliant
Max Supply Voltage :
5.5V
Min Operating Temperature :
0°C
High Level Output Current :
-2mA
Lead Free :
Lead Free
Series :
74AS
Low Level Output Current :
20mA
Max Operating Temperature :
70°C
Number of Input Lines :
8
Mounting Type :
Through Hole
Turn On Delay Time :
5 ns
Supplier Device Package :
14-PDIP
Mount :
Through Hole
Base Part Number :
74AS30
Number of Circuits :
1
Quiescent Current :
3.4mA
Number of Inputs :
8
Logic Function :
NAND
Logic Level - High :
2V
Propagation Delay :
5 ns
Number of Gates :
1
Min Supply Voltage :
4.5V
Packaging :
Tube
Package / Case :
14-DIP (0.300, 7.62mm)
Datasheets
DM74AS30N
Introducing Gates and Inverters Fairchild Semiconductor DM74AS30N from Chip IC,where excellence meets affordability. This product stands out with its Operating Temperature:0°C~70°C, Number of Pins:14, Mounting Type:Through Hole, Base Part Number:74AS30, Package / Case:14-DIP (0.300, 7.62mm), DM74AS30N pinout, DM74AS30N datasheet PDF, DM74AS30N amp .Beyond Gates and Inverters Fairchild Semiconductor DM74AS30N ,we also offer 74AHC08BQ,115, HEF4093BT,653, HEF4093BT,652, Our vast inventory has you covered. Contact us now for immediate solutions.

Fairchild Semiconductor DM74AS30N


Gates and Inverters Fairchild Semiconductor DM74AS30N Overview

Introducing the cutting-edge DM74AS30N integrated circuit gate NAND, meticulously crafted by Fairchild Semiconductor to meet the exacting standards of modern electronic applications. This sophisticated IC boasts a powerful combination of functionality and reliability, making it the ideal choice for a wide range of electronic systems.

Designed with precision and engineered for excellence, the DM74AS30N offers unparalleled performance in gate NAND operations. Its innovative design ensures seamless integration and optimal efficiency, empowering your electronic devices to operate with precision and speed.

Whether you're building complex computing systems, designing advanced control circuits, or enhancing digital communication networks, the DM74AS30N delivers unmatched versatility and performance, setting a new standard for integrated circuit technology.

DM74AS30N Features

  • High-performance gate NAND functionality
  • 8-input configuration for versatile applications
  • Precision-engineered design for optimal reliability
  • Robust construction ensures long-term durability
  • 14-pin DIP package for easy integration
  • Ideal for a wide range of electronic systems

DM74AS30N Applications

  • Computing Systems: The DM74AS30N excels in computing systems, providing essential gate NAND functionality for processors, memory units, and input/output interfaces. Its high-performance design ensures efficient data processing and seamless operation in demanding computing environments.
  • Control Circuits: Incorporate the DM74AS30N into control circuits to achieve precise and reliable control in industrial automation, robotics, and automotive applications. Its versatile 8-input configuration allows for flexible control logic implementation, enhancing the performance and efficiency of control systems.
  • Digital Communication Networks: Enhance digital communication networks with the DM74AS30N's advanced gate NAND capabilities. From telecommunications infrastructure to data transmission systems, this IC provides essential functionality for signal processing, routing, and protocol handling, ensuring seamless communication in modern networks.
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