SN74HC08N
Manufacturer Part Number: SN74HC08N | Manufacturer / Brand: XBLW |
Part of Description: The SN74HC08N is a high-performance CMOS quad 2-input AND gate IC manufactured | Lead Free Status / RoHS Status: Digital Signal Processors & Controllers - DSP, DSC 16 BIT HYBRID CNTRLR |
Ship From: HK/Shen Zhen | Shipment Way: DHL/Fedex/TNT/UPS |
Datasheets:
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Product parameters
Manufacturer | XBLW |
Details | RoHS |
Mounting Style | SMD/SMT |
Package / Case | DIP-14 |
Supply Voltage – Min | 2 V |
Supply Voltage – Max | 6 V |
Packaging | Tube |
Moisture Sensitive | Yes |
Factory Pack Quantity | – |
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The SN74HC08N is a high-performance CMOS quad 2-input AND gate IC manufactured by Texas Instruments (TI). This versatile component features four independent 2-input AND gates in a PDIP-14 package, making it suitable for a wide range of digital logic design applications.
The IC operates over a wide supply voltage range of 2V to 6V, providing flexibility for integration into various electronic systems. With its low power consumption and high noise immunity, the SN74HC08N ensures reliable performance in noisy environments. The balanced CMOS push-pull outputs offer high signal integrity, ensuring that the logic states are accurately transmitted through the circuit.
The propagation delays of the SN74HC08N are relatively fast, allowing it to handle high-speed digital signals effectively. This makes it an ideal choice for applications requiring fast logic operations, such as communication systems, data processing units, and other digital electronic systems.
In addition to its high performance and versatility, the SN74HC08N is also easy to install and use. The PDIP-14 package allows for straightforward integration into circuits, and the device’s low power consumption makes it energy-efficient.
Overall, the SN74HC08N is a reliable and efficient CMOS quad 2-input AND gate IC that offers versatility, performance, and ease of use in a single package. Its fast propagation delays, low power consumption, and high noise immunity make it an ideal choice for digital logic design in a variety of applications.