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LFE3-17EA-6FN484C

LFE3-17EA-6FN484C

Product Overview

Category

The LFE3-17EA-6FN484C belongs to the category of Field Programmable Gate Arrays (FPGAs).

Use

This FPGA is commonly used in electronic circuits for various applications such as digital signal processing, data communication, and embedded systems.

Characteristics

  • High-performance programmable logic device
  • Offers flexibility and reconfigurability
  • Provides high-speed data processing capabilities
  • Supports complex algorithms and computations

Package

The LFE3-17EA-6FN484C comes in a compact and durable package that ensures protection during handling and installation.

Essence

The essence of this FPGA lies in its ability to provide a customizable hardware solution for a wide range of applications.

Packaging/Quantity

The LFE3-17EA-6FN484C is typically packaged individually and is available in various quantities depending on the customer's requirements.

Specifications

  • Device family: LatticeECP3
  • Logic elements: 17,000
  • Number of I/O pins: 484
  • Package type: FineLine BGA
  • Operating voltage: 1.2V
  • Maximum operating frequency: 500 MHz
  • Embedded memory: Up to 4.8 Mb
  • Configuration memory: 256 Kb

Detailed Pin Configuration

The LFE3-17EA-6FN484C has a total of 484 I/O pins, each serving a specific purpose in the circuit design. The pin configuration can be found in the product datasheet provided by the manufacturer.

Functional Features

  • High-speed serial transceivers for data communication
  • Flexible clock management resources
  • On-chip memory blocks for efficient data storage
  • Dedicated DSP slices for optimized digital signal processing
  • Built-in security features for protecting intellectual property

Advantages and Disadvantages

Advantages

  • Versatile and customizable for various applications
  • High-performance capabilities for complex computations
  • Efficient use of resources with on-chip memory blocks
  • Enhanced security features for protecting sensitive designs

Disadvantages

  • Relatively high power consumption compared to other programmable logic devices
  • Steeper learning curve for beginners due to its complexity

Working Principles

The LFE3-17EA-6FN484C operates based on the principles of reconfigurable hardware. It consists of a matrix of programmable logic elements that can be interconnected to perform desired functions. The device is programmed using Hardware Description Languages (HDL) such as VHDL or Verilog, which define the behavior and interconnections of the logic elements.

Detailed Application Field Plans

The LFE3-17EA-6FN484C finds applications in various fields, including:

  1. Telecommunications: Used in base stations, routers, and network switches for data processing and communication.
  2. Industrial Automation: Employed in control systems, robotics, and machine vision applications for real-time data processing and control.
  3. Aerospace and Defense: Utilized in radar systems, avionics, and military communication equipment for high-speed signal processing and encryption.
  4. Medical Devices: Integrated into medical imaging systems, patient monitoring devices, and diagnostic equipment for efficient data processing and analysis.

Detailed and Complete Alternative Models

  1. Xilinx Virtex-7 XC7VX485T FPGA
  2. Altera Stratix V 5SGXEBR5H FPGA
  3. Microsemi SmartFusion2 M2S150 FPGA
  4. Intel Cyclone V GT FPGA

These alternative models offer similar functionalities and performance characteristics to the LFE3-17EA-6FN484C and can be considered as alternatives depending on specific project requirements.

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Luettele 10 yleistä kysymystä ja vastausta, jotka liittyvät LFE3-17EA-6FN484C :n soveltamiseen teknisissä ratkaisuissa

Sure! Here are 10 common questions and answers related to the application of LFE3-17EA-6FN484C in technical solutions:

  1. Q: What is the LFE3-17EA-6FN484C? A: The LFE3-17EA-6FN484C is a specific model of FPGA (Field-Programmable Gate Array) manufactured by Lattice Semiconductor.

  2. Q: What are the key features of the LFE3-17EA-6FN484C? A: Some key features of the LFE3-17EA-6FN484C include 17,000 Look-Up Tables (LUTs), 6-input function capability, and a 484-pin FineLine BGA package.

  3. Q: What are the typical applications of the LFE3-17EA-6FN484C? A: The LFE3-17EA-6FN484C is commonly used in various technical solutions such as industrial automation, telecommunications, automotive electronics, and medical devices.

  4. Q: How can I program the LFE3-17EA-6FN484C? A: The LFE3-17EA-6FN484C can be programmed using Lattice Diamond design software or other compatible programming tools provided by Lattice Semiconductor.

  5. Q: What is the power supply requirement for the LFE3-17EA-6FN484C? A: The LFE3-17EA-6FN484C typically requires a power supply voltage of 1.2V, but it also supports other voltages depending on the specific application requirements.

  6. Q: Can I use the LFE3-17EA-6FN484C in high-speed applications? A: Yes, the LFE3-17EA-6FN484C is designed to support high-speed applications with its advanced architecture and optimized routing capabilities.

  7. Q: Does the LFE3-17EA-6FN484C have built-in security features? A: Yes, the LFE3-17EA-6FN484C provides various security features such as bitstream encryption, tamper detection, and secure boot capabilities.

  8. Q: Can I interface the LFE3-17EA-6FN484C with other components or devices? A: Absolutely! The LFE3-17EA-6FN484C offers a wide range of I/O options including LVCMOS, LVTTL, LVDS, and differential signaling, allowing easy integration with other components.

  9. Q: What kind of development tools are available for designing with the LFE3-17EA-6FN484C? A: Lattice Semiconductor provides a comprehensive suite of development tools, including the Lattice Diamond design software, IP cores, reference designs, and application notes.

  10. Q: Where can I find more information about the LFE3-17EA-6FN484C? A: You can find detailed technical documentation, datasheets, and application notes on the official website of Lattice Semiconductor or by contacting their customer support team.

Please note that the answers provided here are general and may vary depending on specific requirements and use cases. It's always recommended to refer to the official documentation and consult with experts for accurate information.