Intel EP1C4F400I7N

EP1C4F400I7N


  • Manufacturer: Intel
  • CONEVO NO: EP1C4F400I7N
  • Package: 400-BGA
  • Datasheet: PDF
  • Stock: In stock
  • Description: EP1C4F400I7N(Kg)

Details

Tags

Parameters
Series Cyclone®
Moisture Sensitivity Level (MSL) 3 (168 Hours)
Package / Case 400-BGA
Mfr Intel
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Supplier Device Package 400-FBGA (21x21)
Number of I/O 301
Voltage - Supply 1.425V ~ 1.575V
Number of Logic Elements/Cells 4000
Number of LABs/CLBs 400
Total RAM Bits 78336
Package Tray
Product Status Obsolete
Conevo-Key Programmable Not Verified
Base Product Number EP1C4
Standard Package 60
ECCN 3A001A2C
HTSUS 8542.39.0001

The Intel EP1C4F400I7N is a Field Programmable Gate Array (FPGA) from Intel, specifically part of the Cyclone family.  It features 4000 logic elements and 400 logic array blocks (LABs) for flexible and efficient logic design.  This FPGA operates within a supply voltage range of 1.5 V to 3.3 V and can withstand temperatures from -40°C to 85°C, making it suitable for a wide range of applications.  The device is surface mountable, utilizing a 400-pin FBGA package, and is available in tray packaging for easy dispensing.

EP1C4F400I7N Features

The EP1C4F400I7N FPGA is equipped with 301 I/O pins, providing a high degree of connectivity for various applications.  It has a total memory of 78,336 bits, which allows for substantial data handling capabilities.  The device is designed to operate at a minimum frequency of 250 MHz, ensuring high-speed operation for demanding tasks.  It is also moisture sensitive, which is an important consideration for storage and handling in manufacturing processes.

EP1C4F400I7N Applications

The Intel EP1C4F400I7N FPGA is used in a variety of applications due to its reprogrammability and adaptability.  It is commonly employed in digital signal processing, communication systems, image processing, and other areas where high-speed data manipulation and parallel processing are required.  Its versatility makes it suitable for use in embedded systems, prototyping, and development within the electronics industry.  The device's I/O flexibility and logic capacity also make it appropriate for complex control applications and system-on-chip designs.

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