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EP20K160EFC484-2X

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EP20K160EFC484-2X

IC FPGA 316 I/O 484FBGA

Manufacturer: Altera

Categories: FPGAs (Field Programmable Gate Array)

Quality Control: Learn More

The Altera APEX-20KE® series FPGA, part number EP20K160EFC484-2X, offers a robust solution for complex digital logic applications. This device features 640 logic array blocks (LABs) and 316 input/output (I/O) pins, housed in a 484-FBGA (23x23) package suitable for surface mount applications. Operating within a temperature range of 0°C to 85°C (TJ) and requiring a supply voltage of 1.71V to 1.89V, the EP20K160EFC484-2X is engineered for high-performance designs. Its capabilities lend themselves to demanding sectors such as telecommunications, data processing, and industrial automation. This component is supplied in bulk packaging.

Additional Information

Series: APEX-20KE®RoHS Status: RoHS non-compliantManufacturer Lead Time: No lead time information availableProduct Status: ActivePackaging: BulkDatasheet:
Technical Details:
PackagingBulk
Package / Case484-BBGA
Mounting TypeSurface Mount
Operating Temperature0°C ~ 85°C (TJ)
Voltage - Supply1.71V ~ 1.89V
Supplier Device Package484-FBGA (23x23)
Number of LABs/CLBs640
Number of I/O316
ProgrammableNot Verified

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FPGA FAQs

A Field-Programmable Gate Array (FPGA) is a programmable semiconductor device that engineers can configure after manufacturing to perform custom hardware functions. Unlike CPUs or GPUs, FPGAs process data in parallel, making them ideal for high-speed computing, AI acceleration, telecommunications, aerospace, industrial automation, and embedded systems.

An FPGA works by using programmable logic blocks and configurable interconnects that engineers customize using hardware description languages (HDLs) such as VHDL or Verilog. This architecture allows the FPGA to process multiple operations simultaneously for real-time performance and low latency.

FPGAs are used in:

  • AI and machine learning acceleration
  • Telecommunications infrastructure
  • Industrial automation
  • Aerospace and defense systems
  • Automotive electronics
  • Video and image processing
  • Embedded computing applications

The difference between an FPGA and a CPU is architecture. CPUs execute instructions sequentially, while FPGAs process data in parallel using customizable hardware logic. This makes FPGAs faster for specialized workloads like AI inference, signal processing, and real-time computing.

CPLDs are optimized for simpler control logic and predictable timing, while FPGAs provide higher logic density and advanced parallel processing for complex applications.

ASICs are custom-built for a specific application, delivering maximum performance, power efficiency, and unit cost optimization at high volumes, while FPGAs offer reprogrammability, faster development cycles, and greater design flexibility for evolving or lower-volume applications.

Frequently Asked Questions

As a full line supplier, we specialize in sourcing obsolete and hard to find electronic components for your projects.

After we receive your request submission, one of our account executives will reach out to your team to gather more information about your project requirements and ensure we tailor the order to your needs.

Once requirements such as date codes, quantities, target prices, testing requirements, and more are discussed, our purchasing team will secure stock through Microchip USA’s direct access to manufacturing partners’ excess inventory lists.

Our operations teams will handle logistics and fulfillment to ensure supply chain continuity, and our support team will provide clear communication throughout the process.

Our net terms for electronic component sourcing are flexible and vary by order. Our account executives will work with you to ensure our terms meet your company’s needs. We also offer scheduled shipments and inventory management solutions to ensure a steady supply of electronic components, maintain cash flow, and maximize warranty periods. We always offer a warranty on all tested parts. See our sales terms and conditions for more information.

We partner with industry-leading AS6171 & AS6081-certified third party testing labs to mitigate risk and support a wide array of end uses for your company’s requirements. Testing includes but isn’t limited to: Decapsulation & Internal Dye Verification. X-Ray Inspection & Analysis, External Visual Inspection, Surface Texture Analysis (SEM), and Electrical Pin Correlation.