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XC17V00 Series Configuration PROM

Manufacturer : AMD Xilinx, Inc
Package/Case : PLCC-44
Product Categories : Memory - Configuration Proms for FPGA's
Datasheet: XC17V16PC44I Datasheet (PDF)
RoHs Status: Lead free/RoHS Compliant
In-stock: 75


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XC17V16PC44I Product Details

Xilinx introduces the high-density XC17V00 family of configuration PROMs which provide an easy-to-use, costeffective method for storing large Xilinx FPGA configuration bitstreams. Initial devices in the 3.3V family are available in 16 Mb, 8 Mb, 4 Mb, 2 Mb, and 1 Mb densities. See Figure 1 and Figure 2 for simplified block diagrams of the XC17V00 family.

The XC17V00 PROM can configure a Xilinx FPGA using the FPGA serial configuration mode interface. When the FPGA is in Master Serial mode, it generates a configuration clock that drives the PROM. A short access time after the rising clock edge, data appears on the PROM DATA output pin that is connected to the FPGA DIN pin. The FPGA generates the appropriate number of clock pulses to complete the configuration. Once configured, it disables the PROM. When the FPGA is in Slave Serial mode, the PROM and the FPGA must both be clocked by an incoming signal.

The XC17V08(1) and XC17V16PC44I PROM can optionally configure a Xilinx FPGA using the FPGA Parallel (SelectMAP) configuration mode interface. When the FPGA is in Master SelectMAP mode, the FPGA generates the configuration clock that drives the PROM.

When the FPGA is in Slave SelectMAP mode, an external, free-running oscillator generates the configuration clock that drives the PROM and the FPGA. After the rising configuration clock (CCLK) edge, data is available on the PROMs DATA (D0-D7) pins. The data is clocked into the FPGA on the following rising edge of the CCLK (Figure 3).

Multiple PROMs can be concatenated by using the CEO output to drive the CE input of the following device. The clock inputs and the DATA outputs of all PROMs in this chain are interconnected. All devices are compatible and can be cascaded with other members of the family.

For device programming, either the Xilinx ISE Foundation or ISE WebPACK software compiles the FPGA design file into a standard Hex format, which is then transferred to most commercial PROM programmers.



  • One-time programmable (OTP) read-only memory designed to store configuration bitstreams of Xilinx® FPGA devices
  • Simple interface to the FPGA
  • Cascadable for storing longer or multiple bitstreams
  • Programmable reset polarity (active High or active Low) for compatibility with different FPGA solutions
  • Low-power CMOS floating-gate process
  • 3.3V supply voltage
  • Guaranteed 20 year life data retention
  • Available in compact plastic packages: VQ44, PC44, PC20, VO8, and SO20(1)
  • Programming support by leading programmer manufacturers
  • Design support using the ISE® Foundation™ and ISE WebPACK™ software
  • Dual configuration modes for the XC17V16 and XC17V08(1) devices
    • Serial slow/fast configuration (up to 20 Mb/s)
    • Parallel (up to 160 Mb/s at 20 MHz)

Technical Parameters

  • Programmable Type
  • OTP
  • Memory Size
  • 16Mb
  • Voltage Supply
  • 3V ~ 3.6V
  • Operating Temperature
  • -40??C ~ 85??C
  • Package / Case
  • 44-LCC (J-Lead)
  • Supplier Device Package
  • 44-PLCC (16.59x16.59)

XC17V16PC44I Datasheet

  • XC17V16 Technical Support PDF Datasheet Overview

XC17V16PC44I Equivalent Parts

For the XC17V16PC44I component, you may consider these replacement and alternative parts.

Models Manufacturer Package/Case Description

XC17V16PC44I Related Products

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    микросхемы все новые. пока не паял.

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We have a professional business development department to strictly test and verify the qualifications of XILINX original manufacturers and agents. All XILINX suppliers must pass the qualification review before they can publish their XC17V16PC44I devices; we pay more attention to the channels and quality of XC17V16PC44I products than any other customer. We strictly implement supplier audits, so you can purchase with confidence.
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AMD Xilinx, Inc

Xilinx is the inventor of the FPGA, CPLDs, programmable SoCs, and now, the ACAP, their highly-flexible programmable silicon, enabled by a suite of advanced software and tools, drives rapid innovation across a wide span of industries and technologies - from consumer to cars to the cloud....

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