Intel_EPF6016QC208-2

Intel
EPF6016QC208-2  
FPGAs

Intel
EPF6016QC208-2
696-EPF6016QC208-2
Ersa
Intel-EPF6016QC208-2-datasheets-7060033.pdf
IC FPGA 171 I/O 208QFP
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EPF6016QC208-2 Description

The Intel EPF6016QC208-2 is a high-performance programmable logic device (PLD) that offers a range of features and capabilities for various applications. Here is a description of the model, its features, and potential applications:

Model Description:

The Intel EPF6016QC208-2 is a member of the MAX II family of PLDs, designed for use in a wide range of applications that require high-speed, low-power, and flexible programmable logic solutions. This device is housed in a 208-pin Quad Flat Package (QFP) and operates over a wide range of supply voltages and temperatures, making it suitable for various environments.

Key Features:

  1. High-Speed Performance: The EPF6016QC208-2 offers high-speed performance with a maximum clock frequency of up to 500 MHz, allowing for rapid processing of data and efficient execution of complex algorithms.

  2. Large Programmable Logic: With a high-density architecture, this device provides a large amount of programmable logic resources, including programmable logic elements (PLEs), digital signal processing blocks (DSPs), and memory blocks.

  3. On-Chip Memory: The device includes a generous amount of on-chip memory, including block RAM (BRAM) and distributed RAM, which can be used for data storage, buffering, and other memory-intensive tasks.

  4. Digital Signal Processing (DSP) Blocks: The EPF6016QC208-2 features dedicated DSP blocks that can be used for high-speed mathematical operations, making it suitable for applications that require intensive signal processing.

  5. I/O Flexibility: The device offers a wide range of I/O options, including general-purpose I/Os (GPIOs), dedicated I/Os for specific functions, and configurable I/O voltage levels to support various interfaces.

  6. Low Power Consumption: The EPF6016QC208-2 is designed for low power consumption, making it an ideal choice for battery-powered or energy-sensitive applications.

  7. Security Features: The device includes security features such as secure design enablement, which helps protect intellectual property and ensures the integrity of the design.

  8. Ease of Use: The EPF6016QC208-2 is supported by a range of development tools and software, making it easy for engineers to program, simulate, and debug their designs.

Applications:

  1. Communication Systems: The high-speed performance and DSP capabilities of the EPF6016QC208-2 make it suitable for communication systems, such as base stations, routers, and switches.

  2. Industrial Automation: The device's flexibility and I/O options make it ideal for industrial automation applications, including motor control, sensor interfacing, and data acquisition systems.

  3. Consumer Electronics: The low power consumption and programmable logic capabilities of the EPF6016QC208-2 make it suitable for consumer electronics, such as set-top boxes, gaming consoles, and smart home devices.

  4. Automotive Systems: The device's robustness and wide operating temperature range make it suitable for automotive applications, including infotainment systems, advanced driver assistance systems (ADAS), and powertrain control.

  5. Medical Devices: The EPF6016QC208-2 can be used in medical devices that require high-speed processing, low power consumption, and flexible programmable logic, such as imaging systems, patient monitoring equipment, and diagnostic tools.

In summary, the Intel EPF6016QC208-2 is a versatile and powerful PLD that offers a range of features suitable for various high-speed, low-power, and flexible programmable logic applications across different industries.

Tech Specifications

Operating Temperature
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EPF6016QC208-2 Documents

Download datasheets and manufacturer documentation for EPF6016QC208-2

Ersa FLEX 6000 Device Family Data Sheet      
Ersa All Dev Pkg Chg 1/Aug/2018      
Ersa Software Disc 06/Nov/2020      
Ersa EOL 01/Dec/2016       EOL 21/Nov/2016      

Shopping Guide

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