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Field Programmable Gate Arrays

XC4005E-1PQ208I

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XC4005E-1PQ208I

Field Programmable Gate Array, 196 CLBs, 3000 Gates, 166MHz, 196-Cell, CMOS, PQFP208

Manufacturer: Xilinx

Categories: Field Programmable Gate Arrays

Quality Control: Learn More

The Xilinx XC4005E-1PQ208I is a CMOS Field Programmable Gate Array (FPGA) from the XC4000E series. This component features 196 Configurable Logic Blocks (CLBs) and an equivalent gate count of 3000. It operates at a maximum clock frequency of 166MHz and supports a supply voltage range of 4.5V to 5.5V, with a nominal voltage of 5V. The device is housed in a 208-pin Plastic Quad Flat Pack (PQFP) package with a 0.5mm terminal pitch, suitable for surface mounting. Its architecture provides 112 input and 112 output terminals. This FPGA finds application in various sectors including telecommunications, industrial control, and consumer electronics, where flexible digital logic implementation is required.

Additional Information

Series: XC4005ERoHS Status: Manufacturer Lead Time: Product Status: DiscontinuedPackaging: Datasheet:
Technical Details:
Width28.0000
TechnologyCMOS
Length28.0000
Clock_Frequency_Max166.00000
JESD_30_CodeS-PQFP-G208
Number_of_CLBs196
Number_of_Equivalent_Gates3000
Number_of_Inputs112
Number_of_Logic_Cells196
Number_of_Outputs112
Number_of_Terminals208
Organization196 CLBS, 3000 GATES
Package_Body_MaterialPLASTIC/EPOXY
Package_CodeFQFP
Package_Equivalence_CodeQFP208,1.2SQ,20
Package_ShapeSquare
Package_StyleFLATPACK, FINE PITCH
Programmable_Logic_TypeFIELD PROGRAMMABLE GATE ARRAY
Seated_Height_Max4.1000
Supply_Voltage_Max5.50000
Supply_Voltage_Min4.50000
Supply_Voltage_Nom5
Surface_MountYes
Terminal_FormGull Wing
Terminal_Pitch0.500
Terminal_PositionQUAD

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AMD is a semiconductor company founded in 1969 that began with logic and memory chips before expanding into microprocessors in the 1980s, becoming a major competitor to Intel.

The company helped shape modern computing with key innovations like 64-bit x86 processors and early multi-core CPUs in the 2000s and strengthened its position in graphics by acquiring ATI Technologies in 2006.

After a period of decline, AMD returned to prominence with the launch of its Zen architecture and Ryzen processors in 2017, establishing itself as a leader in CPUs, GPUs, and high-performance computing today. In 2022, AMD further expanded into adaptive computing with its acquisition of Xilinx, adding FPGAs and adaptive SoCs to its portfolio.

Learn More: The History of AMD - A Complete Overview

AMD/Xilinx designs and develops high-performance computing and graphics semiconductor solutions, with a focus on CPUs, GPUs, and adaptive computing technologies.

AMD/Xilinx core components include:

  • CPUs (central processing units) for desktop, mobile, and server applications
  • GPUs (graphics processing units) for gaming, professional visualization, and data centers
  • Adaptive SoCs and FPGAs (Xilinx acquisition)
  • Data center accelerators for AI and high-performance computing (HPC)
  • Embedded processors for industrial and edge applications
  • Chipsets and supporting platform technologies

AMD specializes in high-performance, energy-efficient computing solutions for data-intensive and graphics-driven workloads.

AMD serves industries that require high-performance computing, graphics processing, and scalable data center solutions.

AMD’s key industries include:

  • Data centers and cloud computing
  • Artificial intelligence (AI) and machine learning
  • Gaming
  • Professional visualization and content creation
  • Embedded systems and industrial applications
  • Telecommunications and networking

These industries rely on AMD for compute performance, scalability, and advanced processing architectures.

AMD/Xilinx is known for high-performance CPUs, FPGAs, CPLDs, GPUs, and adaptive computing platforms.

Key AMD/Xilinx product lines include:

  • Ryzen - desktop and mobile processors for consumer and commercial systems
  • EPYC - server processors for data centers and enterprise workloads
  • Spartan - FPGAs for cost sensitive and low power applications
  • CoolRunner - CPLDs for low power and control applications
  • Artix - FPGAs for low power and cost optimized performance
  • Kintex - FPGAs for mid range performance and efficiency
  • Virtex - FPGAs for high performance and data intensive applications
  • Versal - adaptive SoCs for AI, edge, and embedded systems
  • Zynq - SoCs combining ARM processors with FPGA fabric for embedded applications
  • Threadripper - high-core-count processors for workstation and enthusiast markets
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