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XC4VFX20-10FFG672IS1

XC4VFX20-10FFG672IS1

XC4VFX20-10FFG672IS1

Xilinx

1.2V V FPGAs FCBGA 1mm mm 672

SOT-23

XC4VFX20-10FFG672IS1 Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Package / Case FCBGA
Surface MountYES
Published 2006
JESD-609 Code e1
Pbfree Code yes
Moisture Sensitivity Level (MSL) 4 (72 Hours)
Number of Terminations 672
ECCN Code 3A991.D
Terminal Finish Tin/Silver/Copper (Sn95.5Ag4.0Cu0.5)
Max Operating Temperature100°C
Min Operating Temperature -40°C
HTS Code8542.39.00.01
Subcategory Field Programmable Gate Arrays
Technology CMOS
Terminal Position BOTTOM
Terminal FormBALL
Peak Reflow Temperature (Cel) 245
Terminal Pitch1mm
Time@Peak Reflow Temperature-Max (s) 30
JESD-30 Code S-PBGA-B672
Number of Outputs 320
Operating Supply Voltage1.2V
Power Supplies1.21.2/3.32.5V
RAM Size 153kB
Number of Inputs 320
Programmable Logic TypeFIELD PROGRAMMABLE GATE ARRAY
Speed Grade 10
Number of Logic Cells19224
Radiation HardeningNo
RoHS StatusRoHS Compliant
In-Stock:4027 items

XC4VFX20-10FFG672IS1 Product Details

XC4VFX20-10FFG672IS1 Overview


Fpga chips is supplied in the FCBGA package. This kind of FPGA is composed of FIELD PROGRAMMABLE GATE ARRAY. This FPGA part belongs to the family of Field Programmable Gate Arrays. There are 320 outputs incorporated in this device. Fpga chips is designed wFpga chipsh 672 terminations. The RAM si153kBe of this FPGA module reaches 153kB to ensure normal operation of the program. When operating with the supply voltage of 1.2V, designers can fully make use of its flexibility. Fpga electronics operates from a 1.21.2/3.32.5V power supply. The maximal operating temperature of this module reaches 100°C. The operating temperature should be higher than -40°C. Fpga semiconductor incorporates 19224 logic cells used for the building block.

XC4VFX20-10FFG672IS1 Features


100°C gates


XC4VFX20-10FFG672IS1 Applications


There are a lot of Xilinx
XC4VFX20-10FFG672IS1 FPGAs applications.


  • Digital signal processing
  • Bioinformatics
  • Device controllers
  • Software-defined radio
  • Random logic
  • ASIC prototyping
  • Medical imaging
  • Computer hardware emulation
  • Integrating multiple SPLDs
  • Voice recognition

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