The ATF16V8BQL-15XI is a high-performance CMOS (Electrically Erasable Programmable Logic Device) EEPLD designed by Microchip Technology to deliver a versatile and efficient solution for a wide array of digital logic applications. This product is part of the well-established PLD family, offering designers the flexibility to address both complex and simple logic functions.
With its 15 nanoseconds propagation delay, the ATF16V8BQL-15XI ensures swift operation, making it suitable for high-speed environments where timing is critical. This device operates within an industrial temperature range of -40°C to +85°C, allowing it to perform reliably in extreme conditions, which is essential for mission-critical applications in industrial and automotive industries.
The ATF16V8BQL-15XI is packaged in a robust 20-pin Pdip package, ensuring ease of integration into various circuit boards. The device is also characterized by its low power consumption, with a typical Icc of only 10 mA at 5V, 25°C, which makes it an excellent choice for power-sensitive applications.
One of the standout features of this EEPLD is its user-configurable functionality. It can be programmed to perform a wide range of logic operations, from simple logic gates to complex state machines. This flexibility is achieved through the use of industry-standard software tools, making the design process accessible and efficient for engineers.
The ATF16V8BQL-15XI also supports reprogrammability, allowing designers to update the logic configuration as requirements evolve, without the need to replace the hardware. This feature is particularly beneficial in prototyping phases or when product updates are necessary, providing both cost savings and a reduction in time-to-market.
Overall, the Microchip Technology ATF16V8BQL-15XI is a reliable and adaptable solution for implementing custom logic in a compact and power-efficient form factor. Its combination of high-speed performance, industrial temperature range, and reprogrammable nature makes it a valuable component for a multitude of electronic designs.