Intel EP1C12F256I7N

EP1C12F256I7N


  • Manufacturer: Intel
  • CONEVO NO: EP1C12F256I7N
  • Package: 256-BGA
  • Datasheet: PDF
  • Stock: In stock
  • Description: EP1C12F256I7N(Kg)

Details

Tags

Parameters
Series Cyclone®
Moisture Sensitivity Level (MSL) 3 (168 Hours)
Package / Case 256-BGA
Mfr Intel
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Supplier Device Package 256-FBGA (17x17)
Number of I/O 185
Voltage - Supply 1.425V ~ 1.575V
Number of Logic Elements/Cells 12060
Number of LABs/CLBs 1206
Total RAM Bits 239616
Package Tray
Product Status Obsolete
Conevo-Key Programmable Not Verified
Base Product Number EP1C12
Standard Package 90
ECCN 3A991D
HTSUS 8542.39.0001

The Intel EP1C12F256I7N is a Cyclone series FPGA (Field Programmable Gate Array) produced by Intel, which is part of the semiconductor category focusing on programmable devices and specifically programmable logic devices.   This component complies with EU RoHS standards, with RoHS versions 2011/65/EU and 2015/863, and is classified under ECCN 3A991.

EP1C12F256I7N Field Programmable Gate Array Features

The EP1C12F256I7N FPGA is characterized by its 12060 logic units and 12060 logic blocks, providing a robust platform for complex digital designs.   It operates within a supply voltage range of 1.425V to 1.575V and is designed to work within a temperature range of -40°C to 100°C (TJ).   The device is surface mountable, with a 256-FBGA package type, which is suitable for PCB integration.   It contains 185 I/O pins, offering a high degree of flexibility for various applications.   The total RAM bits available in this FPGA is 239616, which allows for substantial data handling capabilities.

EP1C12F256I7N Applications

The Intel EP1C12F256I7N FPGA is widely used in various applications due to its programmable nature, which enables customization for specific tasks.   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 ability to be reprogrammed makes it an ideal choice for rapid prototyping and development in the electronics industry.   The device's I/O flexibility and logic capacity make it suitable for a broad range of embedded systems and complex control applications.


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