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CD54HC4514F3A

Updated: 2026-07-15

Overview

The CD54HC4514F3A is a high-performance 4-to-16 line decoder/demultiplexer integrated circuit (IC) designed for digital electronics applications. It belongs to the HC (High-Speed CMOS) family, offering a balance of speed and power efficiency. This IC is commonly used in systems requiring precise signal routing or address decoding, such as memory addressing, data multiplexing, and industrial control systems. The CD54HC4514F3A features 4 binary-coded inputs, which can select one of 16 active-high outputs based on the input combination. An enable input (active low) allows for control over the output states, making it versatile for various digital designs. Its compatibility with TTL (Transistor-Transistor Logic) levels ensures seamless integration into mixed-logic systems.

Structure and Working Principle

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The CD54HC4514F3A consists of input buffers, a decoder matrix, and output drivers. The 4 input pins (A0 to A3) accept binary-coded data, which is decoded internally to activate one of the 16 output pins (Y0 to Y15). The enable pin (E) acts as a master control; when E is low, the decoder functions normally, and when E is high, all outputs are forced low. Internally, the IC uses CMOS technology, which provides high noise immunity and low static power consumption. The decoder logic ensures that only one output is active (high) at any time, corresponding to the binary input value. This makes the CD54HC4514F3A ideal for applications like memory chip selection, LED matrix driving, or multiplexed display systems.

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Key Features

The CD54HC4514F3A stands out for its high-speed operation, with typical propagation delays of 13 ns at 5V. Its wide operating voltage range (2V to 6V) allows flexibility in power supply design, while maintaining compatibility with both CMOS and TTL logic levels. The IC consumes minimal power, with a typical quiescent current of just 4 µA, making it suitable for battery-powered devices. Other notable features include high output drive capability (up to 5.2 mA at 6V), balanced propagation delays, and symmetrical output impedance. The IC is also designed to minimize glitches during output transitions, ensuring reliable performance in high-frequency applications. These attributes make it a preferred choice for industrial and automotive electronics where robustness is critical.

Application Areas

The CD54HC4514F3A is widely used in digital systems requiring precise signal routing or address decoding. Common applications include memory address decoding in microprocessors, where it selects specific memory chips or peripherals based on address lines. It is also used in data multiplexing systems, such as routing signals to multiple displays or sensors. Industrial automation systems leverage this IC for controlling actuators, relays, or LED matrices. In telecommunications, it aids in channel selection and signal distribution. Additionally, the CD54HC4514F4A finds use in automotive electronics, test equipment, and consumer electronics where reliable digital decoding is essential.

Maintenance and Precautions

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To ensure longevity and reliable performance, handle the CD54HC4514F3A with proper ESD (electrostatic discharge) precautions. Use grounded wrist straps and anti-static mats during installation. Avoid exceeding the absolute maximum ratings, such as supply voltage (7V) or input voltage (VCC + 0.5V), to prevent damage. For optimal performance, decouple the power supply with a 0.1 µF capacitor close to the VCC pin. Ensure proper heat dissipation in high-frequency applications, as excessive heat can degrade performance. Regularly inspect solder joints and connections in industrial environments to prevent intermittent failures due to vibration or thermal cycling.

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B2B Procurement Guide

When procuring the CD54HC4514F3A in bulk, verify the manufacturer's authenticity to avoid counterfeit components. Reliable suppliers include Texas Instruments, ON Semiconductor, and Rochester Electronics. Check for RoHS compliance if environmental regulations apply to your industry. Evaluate packaging options (e.g., DIP, SOIC) based on your assembly process. For cost-sensitive projects, consider alternative part numbers like CD74HC4514 or SN74HC4514, but ensure compatibility. Lead times can vary; plan orders in advance for large quantities. Request samples for testing before committing to large purchases, especially for critical applications.

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