Product Overview: SN74LV86ANSR by Texas Instruments
The SN74LV86ANSR is a high-performance, low-voltage quadruple 2-input exclusive-OR gate integrated circuit from the reputable manufacturer Texas Instruments (TI). Designed to operate on a power supply range of 2V to 5.5V, this device is optimized for use in a variety of digital applications where low power consumption and high speed are crucial.
This exclusive-OR gate IC is part of TI's SN74LV family, which is known for its low-voltage operation and compatibility with TTL (Transistor-Transistor Logic) levels. The SN74LV86ANSR specifically features a typical tpd (propagation delay time) of just 6.5 ns when operating at 5V, making it a swift performer for processing digital signals.
Key Features
- Logic Type: Quadruple 2-Input Exclusive-OR Gate
- Supply Voltage Range: 2V to 5.5V, accommodating a variety of logic level requirements and ensuring compatibility with both CMOS and TTL logic levels.
- High Speed: Propagation delays as low as 6.5 ns at VCC = 5V, facilitating rapid signal processing in time-sensitive applications.
- Output Drive Capability: Capable of driving up to 8 LSTTL loads, allowing for direct interface with multiple TTL inputs without the need for additional buffering.
- Package: The device comes in an SOP (Small Outline Package) with a Reel pack for efficient assembly on printed circuit boards.
Applications
The SN74LV86ANSR is versatile and can be employed in various digital circuits, including:
- Binary addition systems
- Parity generators and checkers
- Signal gating
- Logical comparators
- Networking equipment
With its robust design, the SN74LV86ANSR is suitable for commercial and industrial environments, ensuring reliable performance across a wide temperature range of -40°C to 85°C. Its compact SOP package makes it an excellent choice for space-constrained applications.
For engineers and designers seeking a reliable and efficient solution for their digital logic needs, the SN74LV86ANSR from Texas Instruments stands out as a superb choice, delivering both performance and quality in a single, small-footprint component.