XC4013XL-3PQ160C The Xilinx XC4013XL-3PQ160C is a Field Programmable Gate Array (FPGA) with 13000 gates and 129 I/O pins. It operates at a supply voltage of 3V to 3.6V.
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XC4013XL-3PQ160C

Available from 3 distributors
Mfr Name: Xilinx
Xilinx
The Xilinx XC4013XL-3PQ160C is a Field Programmable Gate Array (FPGA) with 13000 gates and 129 I/O pins. It operates at a supply voltage of 3V to 3.6V.
Total Stock: 202 pcs
$ Price Range: $22.15

XC4013XL-3PQ160C Available from 3 distributors

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XC4013XL-3PQ160C Specifications Quick View

Most important parameters for selection – full specs in datasheet.
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XC4013XL-3PQ160C Description

Short technical summary and product information.

The XC4013XL-3PQ160C is a Field Programmable Gate Array (FPGA) from Xilinx, part of the XC4000E/X series. This device features 13000 system gates and 1368 logic elements, with 576 CLBs and 18432 RAM bits. It offers 129 I/O pins, making it suitable for a variety of digital logic applications.

 

The FPGA operates within a supply voltage range of 3V to 3.6V and has an operating temperature range of -40°C to 100°C (TJ). It is packaged in a 160-BQFP (also referred to as 160-PQFP) and is designed for surface mounting.

 

This FPGA is typically used in applications requiring high-speed digital logic, such as signal processing, communications, embedded systems, and industrial control systems. It can be employed for custom hardware acceleration, digital signal processing (DSP), and parallel processing tasks. Programming and configuration are typically performed using the Xilinx ISE development tool, with support for VHDL or Verilog hardware description languages and JTAG programming methods.

XC4013XL-3PQ160C Quick Information

Product Type: FPGA
Series: XC4000E/X
Canonical Name: XC4013XL-3PQ160C Field Programmable Gate Array
Subcategory: Field Programmable Gate Array

XC4013XL-3PQ160C Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected

XC4013XL-3PQ160C Estimated Pricing

Qty Low High
1+ $22.15 $22.15

Estimated market price range - modelled values for guidance only, not live distributor offers.

XC4013XL-3PQ160C Features

  • 13000 system gates available.
  • 129 input/output pins.
  • Operates at 3V to 3.6V supply voltage.
  • Surface mountable 160-PQFP package.
  • Wide operating temperature range.

XC4013XL-3PQ160C Applications

  • Suitable for signal processing tasks.
  • Used in communication systems.
  • Ideal for embedded systems.
  • Applicable to industrial control.

XC4013XL-3PQ160C FAQs

7 frequently asked questions generated from this part’s specifications.
What is the number of logic elements in the XC4013XL-3PQ160C FPGA?

The XC4013XL-3PQ160C FPGA has 1368 logic elements.

How many I/O pins does the XC4013XL-3PQ160C FPGA have?

The XC4013XL-3PQ160C FPGA has 129 I/O pins.

What is the operating voltage range for the XC4013XL-3PQ160C FPGA?

The XC4013XL-3PQ160C FPGA operates with a supply voltage between 3V and 3.6V.

What is the package type and mounting for the XC4013XL-3PQ160C?

The XC4013XL-3PQ160C is supplied in a 160-PQFP (28x28) package and is designed for surface mounting.

What is the operating temperature range of the XC4013XL-3PQ160C FPGA?

The XC4013XL-3PQ160C FPGA can operate between -40°C and 100°C (TJ).

What is the typical use case for the XC4013XL-3PQ160I FPGA?

The XC4013XL-3PQ160I is a field-programmable gate array (FPGA) that is typically used in a wide range of applications that require high-speed digital logic. It is particularly well-suited for applications involving signal processing, communications, embedded systems, and industrial control systems. The device can be used for custom hardware acceleration tasks, digital signal processing (DSP), and as a co-processor in systems that require parallel processing capabilities.

How do I configure and program the XC4013XL-3PQ160I FPGA?

Programming and configuration of the XC4013XL-3PQ160I FPGA can be done using the Xilinx ISE (Integrated Software Environment) development tool. Users will typically write the hardware description in VHDL or Verilog, compile it into a bitstream, and then download the configuration file onto the FPGA. Additionally, JTAG programming methods can be used to directly program the FPGA using a compatible programmer device.

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