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EP2AGX260FF35I3NAA
+Lista de MateriaisFPGA - Field Programmable Gate Array
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FabricanteAltera
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Peça do Fabricante #EP2AGX260FF35I3NAA
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Ficha Técnica EP2AGX260FF35I3NAA DataSheet
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Especificações
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Visão Geral
Description
Key features include a rich set of high-speed transceivers, providing data rates up to 6.375 Gbps, and advanced I/O capabilities. It supports DDR3 memory interfaces and includes robust signal processing capabilities with integrated multipliers and DSP blocks. The Arria II GX family is known for its balanced design, combining cost efficiency with high performance, making it ideal for mid-range applications.
The FF35 package houses the FPGA and features compatibility with various development tools, including those from Intel's Quartus Prime software suite. This device is typically used in applications demanding high bandwidth and processing power, such as video processing, wireless communications, and network infrastructure.
Equivalent
Features
1. Logic Elements: It contains approximately 260,000 logic elements, enabling complex digital designs.
2. I/O Pins: The FPGA supports a variety of I/O standards, with numerous high-speed transceiver channels for rapid data transfer.
3. Transceivers: It includes up to 16 transceiver channels, supporting data rates up to 6.375 Gbps, suitable for high-speed serial communication.
4. Memory: The device features embedded memory blocks for efficient data storage and manipulation.
5. Power Efficiency: Built on a 40 nm process, it offers a balance between performance and power consumption.
6. DSP Blocks: Contains dedicated DSP blocks to support high-performance signal processing applications.
7. Package: The device is housed in an FFBGA 1152 package, ensuring a compact form factor for integration into various applications.
This FPGA is designed for applications requiring high data throughput and processing capability, such as communications, broadcast, and high-speed computing systems.
Pinout
In terms of functionality, the EP2AGX260FF35I3NAA provides high-speed serial transceivers, a rich set of I/O standards, and a range of logic and routing resources. These capabilities make it suitable for applications such as communications, broadcast, and other data-intensive applications requiring high-speed processing and connectivity.
The device includes features like embedded memory blocks, DSP blocks, and PLLs for clock management, which enhance its ability to handle complex processing tasks efficiently. Additionally, it supports a variety of I/O standards and protocols, enabling it to interface seamlessly with other components in a system.
Manufacturer
Intel Corporation is a multinational technology company headquartered in Santa Clara, California. It is one of the world's largest and most well-known semiconductor chip manufacturers. Intel designs and manufactures a wide range of products, including microprocessors, integrated graphics, chipsets, and other related devices. The company is a major player in the fields of computing, data centers, artificial intelligence, and the Internet of Things (IoT).
Intel is recognized for its innovation and contributions to the advancement of technology, particularly in the development of processors for personal computers and servers. By acquiring Altera, Intel expanded its portfolio to include FPGAs, which are versatile integrated circuits that can be configured by the customer or designer after manufacturing, allowing for customized hardware functionality.
Application
1. Telecommunications: Used for signal processing, network infrastructure, and protocol bridging.
2. Data Centers: Facilitates server acceleration and high-speed data processing.
3. Broadcasting: Supports video processing, encoding, and transmission.
4. Medical Imaging: Powers real-time image processing and data handling.
5. Industrial Automation: Used in control systems, robotics, and machinery.
6. Aerospace and Defense: Provides processing power for radar, sonar, and electronic warfare systems.
These FPGAs offer high-speed transceivers and are suitable for applications requiring efficient performance and integration.