Intel_EP1C3T100C6N

Intel
EP1C3T100C6N  
FPGAs

Intel
EP1C3T100C6N
696-EP1C3T100C6N
Ersa
Intel-EP1C3T100C6N-datasheets-8515705.pdf
IC FPGA 65 I/O 100TQFP
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EP1C3T100C6N Description

Intel's EP1C3T100C6N is a high-performance programmable logic device designed for a wide range of applications. This device is based on Intel's advanced low-power 40-nm process technology and offers a combination of features that make it an ideal choice for various applications.

Description:

The EP1C3T100C6N is a member of Intel's Cyclone III family of FPGAs. It is a mid-range device with a high-density architecture that provides a balance of performance, power, and cost. The device features a wide range of I/O resources, making it suitable for a variety of applications, including communications, industrial, and consumer electronics.

Features:

  1. Low-power 40-nm process technology: The EP1C3T100C6N is built using Intel's advanced low-power 40-nm process technology, which provides high performance with low power consumption.
  2. High-density architecture: The device offers a high-density architecture, making it suitable for applications that require a large number of gates and resources.
  3. Wide range of I/O resources: The EP1C3T100C6N features a wide range of I/O resources, including LVCMOS, LVDS, and DDR interfaces, making it suitable for a variety of applications.
  4. On-chip memory: The device includes a variety of on-chip memory resources, including block RAM, distributed RAM, and register files, which can be used to implement complex logic functions and data storage.
  5. High-performance DSP blocks: The EP1C3T100C6N includes high-performance DSP blocks that can be used for signal processing and other computational tasks.
  6. Integrated hard intellectual property (IP): The device includes a range of integrated hard IP, such as PCI Express, Gigabit Ethernet, and DDR memory controllers, which can be used to simplify system design and reduce development time.

Applications:

The EP1C3T100C6N is suitable for a wide range of applications, including:

  1. Communications: The device's high-performance DSP blocks and wide range of I/O resources make it ideal for applications such as wireless base stations, network infrastructure, and optical transport systems.
  2. Industrial: The EP1C3T100C6N's robustness and flexibility make it suitable for industrial applications, such as motor control, machine vision, and process control.
  3. Consumer electronics: The device's low power consumption and high performance make it an excellent choice for consumer electronics applications, such as set-top boxes, gaming consoles, and digital cameras.
  4. Automotive: The EP1C3T100C6N can be used in automotive applications, such as infotainment systems, advanced driver assistance systems (ADAS), and body control modules.
  5. Aerospace and defense: The device's high reliability and performance make it suitable for aerospace and defense applications, such as radar systems, satellite communications, and electronic warfare systems.

In summary, Intel's EP1C3T100C6N is a versatile and high-performance FPGA that offers a wide range of features and applications. Its low-power 40-nm process technology, high-density architecture, and extensive I/O resources make it an ideal choice for a variety of applications across different industries.

Tech Specifications

Operating Temperature
Total RAM Bits
Number of LABs/CLBs
ECCN
Number of I/O
Mounting Type
Product Status
Supplier Device Package
Series
Package / Case
Voltage - Supply
Mfr
HTSUS
Package
Number of Logic Elements/Cells
Base Product Number
Moisture Sensitivity Level (MSL)

EP1C3T100C6N Documents

Download datasheets and manufacturer documentation for EP1C3T100C6N

Ersa CYCLONE 10/Nov/2017      
Ersa 100-TQFP Pkg Info       Cyclone FPGA Family      
Ersa All Dev Pkg Chg 1/Aug/2018       Mult Dev Dessicant Chg 19/Jul/2019      
Ersa Virtual JTAG Megafuntion Guide      
Ersa EPC2/Cyclone/Stratix GX 13/Jun/2018      
Ersa Cyclone FPGA Family      
Ersa Mult Series Software Chgs 26/Mar/2020       Appearance Update 30/Mar/2015      

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