Product Overview: 74F269N 8-Bit Binary Counter from NXP
The 74F269N is a high-performance Si-gate CMOS device that belongs to the 74F series of integrated circuits. Manufactured by NXP Semiconductors, this precision 8-bit binary counter is designed to offer both speed and reliability for a wide range of counting applications. It's an ideal choice for designers looking for a dependable counter to integrate into their digital systems.
Key Features:
- High Counting Speed: The 74F269N can operate at high frequencies, making it suitable for fast systems that require quick response times.
- 8-Bit Synchronous Counter: This device offers synchronous counting, which ensures accurate and reliable count operations synchronized with the clock signal.
- Multiple Counting Modes: It includes both binary and decade counting modes, providing versatility for different types of applications.
- Output Capability: The 74F269N can drive up to 10 LS-TTL loads, which allows it to interface with various logic families.
- Power Dissipation: The IC has a typical power dissipation of 200 mW, ensuring efficient operation without excessive heat generation.
- Wide Operating Temperature Range: It can operate over a temperature range of -40°C to +85°C, suitable for industrial environments.
Applications:
The 74F269N is versatile and can be used in a variety of applications, including:
- Digital counters and timers
- Frequency dividers
- Programmable dividers
- Sequence generators
- Industrial control systems
Technical Specifications:
With a supply voltage range of 4.5V to 5.5V, the 74F269N operates within the common TTL range, making it compatible with many other standard logic devices. It is available in a 16-pin DIP (Dual In-line Package), which is widely used and easy to integrate into existing and new PCB designs.
Quality and Reliability:
NXP Semiconductors is known for its commitment to quality, and the 74F269N is no exception. Each device is rigorously tested to meet the high standards expected from NXP products, ensuring long-term reliability and performance for your critical counting applications.