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Field Programmable Gate Arrays

XC2S150E-6PQ208Q

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XC2S150E-6PQ208Q

Field Programmable Gate Array, 357MHz, 3888-Cell, CMOS, PQFP208

Manufacturer: Xilinx

Categories: Field Programmable Gate Arrays

Quality Control: Learn More

The Xilinx XC2S150E-6PQ208Q is a Field Programmable Gate Array designed with 3888 logic cells, organized into 864 CLBs. This CMOS device operates at a maximum clock frequency of 357MHz and features a supply voltage range of 1.71V to 1.89V. The component offers 146 inputs and 142 outputs, providing robust I/O capabilities. Encased in a 208-pin PQFP (Plastic Quad Flat Pack) with a 0.50mm terminal pitch, this surface-mount device is suitable for demanding applications. Its operating temperature range is -40°C to 125°C, ensuring reliability in various environments. This FPGA is commonly utilized in telecommunications, industrial automation, and defense systems.

Additional Information

Series: XC2S150ERoHS Status: RoHS CompliantManufacturer Lead Time: Product Status: DiscontinuedPackaging: Datasheet:
Technical Details:
Length28.0000
Width28.0000
TechnologyCMOS
Clock_Frequency_Max357.00000
JESD_30_CodeS-PQFP-G208
Number_of_CLBs864
Number_of_Inputs146
Number_of_Logic_Cells3888
Number_of_Outputs142
Number_of_Terminals208
Operating_Temperature_Max125.0
Operating_Temperature_Min-40.0
Package_Body_MaterialPLASTIC/EPOXY
Package_CodeQFP
Package_Equivalence_CodeQFP208,1.2SQ,20
Package_ShapeSquare
Package_StyleFlatPack
Programmable_Logic_TypeFIELD PROGRAMMABLE GATE ARRAY
Supply_Voltage_Max1.89000
Supply_Voltage_Min1.71000
Supply_Voltage_Nom1.8
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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