A3PN020-QNG68I by Microchip Technology Inc

Overview of A3PN020-QNG68I by Microchip Technology Inc.

The A3PN020-QNG68I by Microchip Technology Inc. is a Field Programmable Gate Array (FPGA) that offers a substantial utility in various digital circuit designs. This component features 520 configurable logic blocks (CLBs) and provides up to 20,000 logic gates. The utilization of CMOS 130nm technology ensures a reduction in power consumption, making it an efficient choice for energy-conscious applications. The part operates with a nominal supply voltage of 1.5V, housed in a compact 68-pin QFN package.

With dimensions of 8mm x 8mm and a pitch of 0.40 mm, the A3PN020-QNG68I combines a small form factor with high functionality. The packaging is RoHS compliant and features a moisture sensitivity level of 3, indicating its durability under variable environmental conditions. Additionally, this FPGA operates within an industrial temperature range of -40°C to 100°C, accommodating diverse operating environments.

Industry Applications for A3PN020-QNG68I

The inherent versatility of the A3PN020-QNG68I makes it suitable for multiple industries where programmable logic devices are pivotal. Here are several potential applications:

  • Telecommunications: The component could potentially be used in communication equipment like routers and switches, where multiple I/O interfaces and high-speed logic processing are necessary. The low power consumption and small package size of A3PN020-QNG68I make it an attractive option for dense, power-efficient telecom racks.
  • Consumer Electronics: Devices such as smart watches, tablets, and other portable electronics could utilize this FPGA to perform various logical operations while managing power efficiency, thanks to its low voltage requirements and small footprint.
  • Industrial Automation: In automating manufacturing processes, this FPGA could potentially handle control logic for machinery, contributing to precise operations under industrial conditions, benefiting from its wide operating temperature range.
  • Robotics and Drones: The A3PN020-QNG68I might be used in the control systems of robots and drones, offering both the necessary computing power and interfaces for various sensors and actuators in a compact and efficient layout.

Note that these potential industry applications are conceptual and require thorough analysis and validation by engineering teams to ensure compliance with relevant standards and specific requirements.

About Microchip Technology Inc.

Microchip Technology Inc. is a prominent provider in the semiconductor industry, specializing in microcontroller, mixed-signal, analog, and Field Programmable Gate Arrays (FPGAs). They are known for their broad range of products that serve various sectors including automotive, industrial, aerospace, telecom, and consumer electronics. Their FPGA solutions, like the A3PN020-QNG68I, are highly regarded for their performance, reliability, and adaptability to a wide range of applications.

Microchip’s commitment to innovation is evident in their continuous improvement of their programmable logic technologies, making them suitable for a variety of demanding environments and applications.

Where to Find A3PN020-QNG68I by Microchip Technology Inc

If you are looking to procure the A3PN020-QNG68I, a practical starting point would be the dedicated search on findchips.com. This site aggregates supply data from various distributors, enabling a comprehensive comparison of availability and pricing. Historically, distributors such as Master Electronics, EBV Elektronik, NAC, and Onlinecomponents.com have stocked this product, but availability can fluctuate.

For alternative FPGA solutions from Microchip or other manufacturers, you may consider exploring Field Programmable Gate Arrays on findchips.com. This resource will facilitate a more extensive review of similar parts and help inform your procurement decision based on up-to-date inventory and pricing information.

Compare pricing for A3PN020-QNG68I and other Field Programmable Gate Arrays / Programmable Logic at findchips.com