74ACTQ16240MTD - ON Semiconductor
The 74ACTQ16240MTD is a high-performance integrated circuit produced by ON Semiconductor, designed for use in a wide range of digital applications. This particular device belongs to the 74ACTQ family, which is well-known for its advanced high-speed CMOS technology combined with quiet series technology to ensure reduced noise levels in digital systems.
As a 16-bit buffer and line driver, the 74ACTQ16240MTD is equipped with non-inverting outputs and is designed to be employed for driving bus lines or buffer memory address registers. The device features two separate control inputs for each set of four buffers, providing flexibility and control over the output states.
The 74ACTQ16240MTD comes in a 48-pin TSSOP (Thin Shrink Small Outline Package) that is surface-mountable, making it suitable for compact and densely populated PCBs (Printed Circuit Boards). This package is designed for improved thermal dissipation and reliability, which is crucial for maintaining performance in a variety of operating conditions.
Key specifications of the 74ACTQ16240MTD include:
- 16-bit non-inverting buffer/line driver.
- 3-state outputs for bus-oriented applications.
- Output source/sink capability of 24 mA at 5V.
- Operating voltage range of 4.5V to 5.5V.
- Guaranteed simultaneous switching noise level and dynamic threshold performance.
- Improved latch-up immunity.
- Designed with Quiet Series™ technology to minimize noise.
This ON Semiconductor product is designed to interface with TTL levels while offering the speed of CMOS devices, making it ideal for mixed 5V and 3.3V applications where low noise is required. The 74ACTQ16240MTD is characterized for operation from -40°C to +85°C, ensuring reliable performance across a wide temperature range.
Whether used in personal computers, servers, networking equipment, or other digital systems, the 74ACTQ16240MTD offers a robust solution for high-speed signal buffering and driving needs. Its combination of speed, low power consumption, and noise reduction makes it a valuable component in any high-performance digital circuit.