ATF16V8B (4)

ATF16V8B is available from Microchip Technology Technology at Xecor. Designed for programmable logic applications, the ATF16V8B offers high performance with a maximum operating frequency of 62 MHz, low power consumption with a 5V operating supply, and flexibility with 8 macrocells and 20 I/O pins. Available in SOIC-20 packaging, it is ideal for industrial, automotive, and telecommunications applications. Whether used in control systems, signal processing, or embedded solutions, this series ensures reliable performance, scalability, and efficiency for demanding applications. Xecor is an authorized distributor for Microchip Technology Technology. Please view our extensive selection of the ATF16V8B series below.

Part Number Description Package Inventory Add To Bom
ATF16V8BQL-15PC ATF16V8BQL-15PC is an EEPLD with 20 Pins, 12 ns (Min) speed, and dimensions of 1.060 L x 0.280 W x 0.150 T PDIP-20 7,308
ATF16V8B-15PI The SPLD ATF16V8B-15PI is a member of the ATF16V8B family 20-DIP 7,301
ATF16V8B-15PC ATF16V8B-15PC - SPLD ATF16V8B Family 250 Gates 8 Macro Cells 62MHz CMOS Technology 5V 20-Pin PDIP 20-DIP 6,906
ATF16V8B-10PC The 20-pin PDIP packaging of ATF16V8B-10PC ensures easy installation and use in various electronic applications 20-DIP 8,169

Key Featrues

High-Speed Performance: With a maximum propagation delay of 15 ns, this EEPLD ensures rapid signal processing, making it ideal for applications requiring fast response times, such as real-time control systems and high-speed data acquisition.
Versatile I/O Configuration: Featuring 20 I/O pins, this device offers flexible interfacing options, enabling seamless integration with a wide range of peripherals and systems, enhancing its adaptability in complex designs.
Low Power Consumption: Operating at a supply current of 55 mA and a voltage range of 4.5V to 5.5V, this EEPLD is energy-efficient, making it suitable for power-sensitive applications like portable devices and battery-operated systems.
Wide Temperature Range: With an operating temperature range of -40°C to +85°C, this device is robust and reliable in harsh environments, ensuring consistent performance in industrial and automotive applications.
Compact and Durable Packaging: The 20-pin SOIC package provides a compact footprint and SMD/SMT mounting capability, making it easy to integrate into space-constrained designs while ensuring durability and ease of assembly.

Applications

Programmable Logic Controller (PLC) Interface: The ATF16V8B is ideal for interfacing with PLCs in industrial automation systems. Its 8 macro cells and 20 I/O pins allow for flexible logic implementation, enabling seamless communication between sensors, actuators, and control units. Its 15 ns propagation delay ensures real-time responsiveness, making it suitable for high-speed industrial applications.
Custom Logic for Embedded Systems: The ATF16V8B is perfect for implementing custom logic in embedded systems, such as IoT devices or consumer electronics. With 8 macro cells and 20 I/O pins, it can handle complex logic functions while operating at 62 MHz. Its 5V supply voltage and compact SOIC-20 package make it a reliable choice for space-constrained designs.
Signal Conditioning and Routing: The ATF16V8B is well-suited for signal conditioning and routing in communication systems. Its 20 I/O pins and 8 macro cells allow for efficient signal processing and routing between multiple channels. The 15 ns propagation delay ensures minimal latency, making it ideal for high-speed data transmission applications.
Prototyping and Educational Tools: The ATF16V8B is an excellent choice for prototyping and educational purposes in digital logic design. Its electrically erasable PLD architecture allows for easy reprogramming, enabling students and engineers to experiment with various logic configurations. The 20-pin SOIC package and 5V operation make it accessible for hands-on learning and development.
These applications highlight the versatility and performance of the ATF16V8B in various fields, from industrial automation to education and embedded systems.