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Home > products > ICs Integrated Circuit > EP2C5Q208C7N Intel / Altera

EP2C5Q208C7N Intel / Altera

manufacturer:
Intel
Description:
EP2C5Q208C7N Intel / Altera QFP-208
Category:
ICs Integrated Circuit
Specifications
Introduction
Product Attribute Attribute Value
Intel
Product Category: FPGA - Field Programmable Gate Array
RoHS: Details
Cyclone II EP2C5
4608 LE
288 ALM
117 kbit
142 I/O
1.15 V
1.25 V
0 C
+ 70 C
-
-
SMD/SMT
QFP-208
Tray
Brand: Intel / Altera
Maximum Operating Frequency: 260 MHz
Moisture Sensitive: Yes
Number of Logic Array Blocks - LABs: 288 LAB
Operating Supply Voltage: 1.15 V to 1.25 V
Product Type: FPGA - Field Programmable Gate Array
24
Subcategory: Programmable Logic ICs
Total Memory: 119808 bit
Tradename: Cyclone II
Part # Aliases: 966843
Unit Weight: 1.390500 oz

Here is a potential introduction for the Altera EP2C5Q208C7N FPGA:

EP2C5Q208C7N

The EP2C5Q208C7N is a low-cost FPGA from Altera suitable for compact prototyping and low volume production. Featuring 50,080 logic elements, 66,560 bits of RAM and 208 user I/Os, it provides robust processing power for numerous embedded applications within a small 100-pin TQFP package.

Key Features:

  • 50,080 adaptive logic cells for complex logic functions and DSP algorithms
  • 66,560 distributed RAM bits for data buffering and storage
  • 208 user I/Os for interfacing with peripherals and external devices
  • Industrial temperature grade from -40°C to 100°C
  • Small 10x10mm TQFP package saves space on circuit boards
  • Low 1W typical power usage enables portable/mobile designs

Well-suited for embedded control, communications, industrial Computing and general purpose prototyping.

Large logic and memory resources allow consolidation of multiple discrete components into one chip.

Wide operating temperature range and small footprint facilitate use in rugged environments.

Programmable logic enables design changes or upgrades via simple firmware updates after deployment.

Cost-effective first-run productions or test/evaluation with reduced lead times versus full custom ASICs.

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