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Home > FPGA Familis > QPRO XQR4000XL Radiation Hardened FPGAs > XQR4013XL-2CB228M
XQR4013XL-2CB228M

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XQR4013XL-2CB228M

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Manufacturer:
Xilinx
Package/Case:
PGA
RoHS:
-
Lifecycle:
-
Stock Resource:
Factory Excess Stock / Franchised Distributor
Product Categories:
QPRO XQR4000XL Radiation Hardened FPGAs
Description:

XQR4013XL-2CB228M FPGAs Overview

Power-On Power Supply Requirements

Xilinx XQR4013XL-2CB228M FPGAs require a minimum rated power supply current capacity to insure proper initialization, and the power supply ramp-up time does affect the current required. A fast ramp-up time requires more current than a slow ramp-up time. The slowest ramp-up time is 50 ms. Current capacity is not specified for a ramp-up time faster than 2 ms. The current capacity varies linealy with ramp-up time, e.g., an XQR4036XL with a ramp-up time of 25 ms would require a capacity predicted by the point on the straight line drawn from 1A at 120 µs to 500 mA at 50 ms at the 25 ms time mark. This point is approximately 750 mA .


XQR4013XL-2CB228M AC Switching Characteristic

Testing of the switching parameters is modeled after testing methods specified by MIL-M-38510/605. All devices are 100% functionally tested. Internal timing parameters are derived from measuring internal test patterns. Listed below are representative values where one global clock input drives one vertical clock line in each accessible column, and where all accessible IOB and CLB flip-flops are clocked by the global clock net.

When fewer vertical clock lines are connected, the clock distribution is faster; when multiple clock lines per column are driven from the same global clock, the delay is longer. For more specific, more precise, and worst-case guaranteed data, reflecting the actual routing structure, use the values provided by the static timing analyzer (TRCE in the Xilinx Development System) and back-annotated to the simulation netlist. These path delays, provided as a guideline, have been extracted from the static timing analyzer report. All timing parameters assume worst-case operating conditions (supply voltage and junction temperature)


XQR4013XL-2CB228M CLB Switching Characteristic Guidelines

Testing of switching parameters is modeled after testing methods specified by MIL-M-38510/605. All devices are 100% functionally tested. Internal timing parameters are derived from measuring internal test patterns. Listed below are representative values. For more specific, more precise, and worst-case guaranteed data, use the values reported by the static timing analyzer (TRCE in the Xilinx Development System) and back-annotated to the simulation netlist. All timing parameters assume worst-case operating conditions (supply voltage and junction temperature). Values apply to all XQR4000XL devices and expressed in nanoseconds unless otherwise noted.

Features

  • Radiation-hardened FPGAs for space and satellite applications

  • Guaranteed total ionizing dose

  • Latch-up immune

  • Low soft upset rate

  • Guaranteed to meet full electrical specifications over –55°C to +125°C

  • Available in -3 speed

  • System featured FPGAs

  • System performance beyond 60 MHz

  • Flexible array architecture

  • Low power segmented routing architecture

  • Systems-oriented features

  • Configured by loading binary file

    • Unlimited reprogrammability

  • Readback capability

    • Program verification

    • Internal node observability

  • Development system runs on most common computer platforms

    • Interfaces to popular design environments

    • Fully automatic mapping, placement and routing

    • Interactive design editor for design optimization

  • Highest capacity: over 130,000 usable gates

  • Buffered interconnect for maximum speed

  • New latch capability in configurable logic blocks

  • Improved VersaRing I/O interconnect for better fixed pinout flexibility

    • Virtually unlimited number of clock signals

  • Optional multiplexer or 2-input function generator on device outputs

  • 5V tolerant I/Os

  • Advanced 0.35µ process

  • Processed on Xilinx QML line

FAQ

  • Q: Does the price of XQR4013XL-2CB228M devices fluctuate frequently?
  • The FPGAkey search engine monitors the XQR4013XL-2CB228M inventory quantity and price of global electronic component suppliers in real time, and regularly records historical price data. You can view the historical price trends of electronic components to provide a basis for your purchasing decisions.
  • Q: Do I have to sign up on the website to make an inquiry for XQR4013XL-2CB228M?
  • No, only submit the quantity, email address and other contact information required for the inquiry of XQR4013XL-2CB228M, but you need to sign up for the post comments and resource downloads.
  • Q: How can I obtain software development tools related to the Xilinx FPGA platform?
  • In FPGA/CPLD design tools, Xilinx's Vivado Design Suite is easy to use, it is very user-friendly in synthesis and implementation, and it is easier to use than ISE design tools; The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.
  • Q: Where can I purchase Xilinx XQR4013XL Development Boards, Evaluation Boards, or QPRO XQR4000XL Radiation Hardened FPGAs Starter Kit? also provide technical information?
  • FPGAkey does not provide development board purchase services for the time being, but customers often consult about ZedBoard, Basys 3 board, TinyFPGA BX, Nexys4-DDR, Terasic DE10-Nano, Digilent Arty S7, etc. If you need relevant technical information, you can submit feedback information, our technicians will contact you soon.
  • Q: How to obtain XQR4013XL-2CB228M technical support documents?
  • Enter the "XQR4013XL-2CB228M" keyword in the search box of the website, or find these through the Download Channel or FPGA Forum .
  • Q: What should I do if I did not receive the technical support for XQR4013XL2CB228M in time?
  • Depending on the time difference between your location and our location, it may take several hours for us to reply, please be patient, our FPGA technical engineer will help you with the XQR4013XL-2CB228M pinout information, replacement, datasheet in pdf, programming tools, starter kit, etc.

Application Field

  • AI

    Artificial Intelligence

  • 5G Technology

    5G Technology

  • Cloud Computing

    Cloud Computing

  • Consumer Electronics

    Consumer Electronics

  • Wireless

    Wireless Technology

  • Industrial Control

    Industrial Control

  • Internet of Things

    Internet of Things

  • Medical Equipment

    Medical Equipment

Technical Documents

  • XQR4013XL Technical Support PDF Datasheet Overview Download>>

Circuit Diagram

XQR4013XL

XQR4013XL-2CB228M PDF Preview

XQR4013XL-2CB228M Tags

  • Xilinx XQR4013XL
  • XQR4013XL development board
  • QPRO XQR4000XL Radiation Hardened FPGAs evaluation kit
  • Xilinx QPRO XQR4000XL Radiation Hardened FPGAs development board
  • QPRO XQR4000XL Radiation Hardened FPGAs starter kit
  • QPRO XQR4000XL Radiation Hardened FPGAs XQR4013XL
  • XQR4013XL reference design
  • XQR4013XL evaluation board
  • XQR4013XL-2CB228M Datasheet PDF

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