1SX250HH1F55I2VG

1SX250HH1F55I2VG
Manufacturer

Intel

Description

Intel

Package

Tray

Stock

6000

Price

Active

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1SX250HH1F55I2VG.pdf

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Product Attributes

1SX250HH1F55I2VG Product Details

Product Overview

The 1SX250HH1F55I2VG is a high-performance FPGA from Intel’s Stratix® 10 SX family, designed to deliver unparalleled processing power for advanced computing tasks. Based on Intel’s HyperFlex™ FPGA architecture, this component offers high-speed data processing, optimized power consumption, and scalability for a variety of applications. It integrates ARM-based hard processor systems (HPS), providing a seamless balance of flexibility and performance. With its state-of-the-art transceiver technology and a wide range of high-speed interfaces, the 1SX250HH1F55I2VG is ideal for compute-intensive environments in industries such as telecommunications, data centers, and high-performance computing (HPC).

Key Features and Advantages

  • HyperFlex™ Architecture: Enables superior clock frequency and power efficiency, maximizing the overall performance.

  • ARM Hard Processor System (HPS): Combines FPGA flexibility with processor capabilities for high-performance applications.

  • High-Speed Transceivers: Offers support for multiple high-speed interfaces, such as PCIe Gen3 and 100G Ethernet, making it ideal for data-heavy operations.

  • Advanced Security Features: Provides built-in encryption and security features, safeguarding data in critical applications.

  • Scalability: Supports extensive design scalability, ensuring it meets the needs of large and complex designs in data centers and telecommunications.

  • Efficient Power Management: Optimized for low power consumption without compromising processing power, making it ideal for energy-conscious applications.

Product Specifications

CategoryEmbedded - FPGAs (Field Programmable Gate Array)
ManufacturerIntel
SeriesStratix® 10 SX
Part Number1SX250HH1F55I2VG
Logic Elements2,750,000
Memory233 Mbit
Number of Transceivers96
Transceiver SpeedUp to 28.3 Gbps
DSP Blocks6,840
Operating Temperature Range-40°C to 100°C
Package / CaseFCBGA-2397
Supply Voltage - Core0.85 V
RAM Blocks125.1 Mb
Number of GPIOs1,584
Data Rate28.3 Gbps
ProcessorDual-core ARM Cortex-A53 HPS

Application Areas

The 1SX250HH1F55I2VG FPGA is suitable for demanding applications where data throughput, real-time processing, and high efficiency are critical. Key application areas include:

  • Telecommunications Infrastructure: Supports high-speed data transfer for next-generation networking equipment, such as 5G base stations and data transport systems.

  • Data Centers: Efficiently handles large volumes of data in high-performance computing (HPC) and storage solutions, ensuring optimal throughput and reduced latency.

  • Aerospace and Defense: Provides reliability and performance for mission-critical systems such as radar and satellite communications, with built-in security features.

  • Machine Learning and AI: Accelerates data processing and AI model training for real-time analytics and machine learning applications.

  • Automotive Systems: Powers advanced driver-assistance systems (ADAS), automotive safety mechanisms, and in-vehicle networking with robust processing capabilities.

  • Broadcast and Video Processing: Optimized for high-resolution video encoding, decoding, and signal processing in real-time environments such as live broadcasting.


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Usage Scenarios

  • Data Centers: In high-performance computing systems, the 1SX250HH1F55I2VG enables seamless processing of massive datasets, particularly in artificial intelligence (AI) and machine learning workloads.

  • Telecommunication Networks: In 5G base stations, this FPGA enhances data throughput, allowing for efficient real-time data transmission and minimizing latency in mobile communications.

  • Aerospace: Supports satellite and defense systems with robust, secure processing, ensuring reliability in critical mission applications.

  • Advanced Manufacturing: Powers automated and AI-driven manufacturing systems, providing real-time processing and data analysis capabilities.

  • Media and Broadcasting: Used in video encoding and broadcasting systems, enabling real-time high-definition video streaming for digital broadcasting and content delivery networks (CDN).

Shipping Methods

Several international shipping methods are available for delivering the 1SX250HH1F55I2VG:

  • DHL Express: Offers quick delivery times, typically between 1-3 business days for most global locations. Known for reliability and real-time tracking capabilities.

  • FedEx International Priority: Provides fast, reliable shipping with detailed tracking options. Suitable for customers needing prompt delivery.

  • UPS Worldwide Express: Similar in service to DHL and FedEx, offering global coverage and reliable delivery times, though often chosen for heavier or bulkier shipments.

  • TNT Express: Primarily used within Europe, TNT offers competitive pricing and service for European destinations, with moderate global reach.

  • EMS (Express Mail Service): A cost-effective alternative, particularly for smaller packages, with slightly longer delivery times than private couriers.


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Frequently Asked Questions (FAQ)

Q1: What is the maximum transceiver speed of the 1SX250HH1F55I2VG?
A1: The maximum transceiver speed is 28.3 Gbps.

Q2: What applications can benefit from using this FPGA?
A2: Applications in telecommunications, data centers, AI, machine learning, aerospace, and advanced automotive systems can benefit from this FPGA’s performance and flexibility.

Q3: What is the operating temperature range?
A3: The operating temperature range is from -40°C to 100°C.

Q4: How does the HyperFlex™ architecture improve performance?
A4: HyperFlex™ architecture enables higher clock frequencies and power efficiency, optimizing the overall processing power and speed.

Q5: What is the primary advantage of using ARM Hard Processor System (HPS) in this FPGA?
A5: The ARM HPS combines FPGA flexibility with processor capabilities, allowing for efficient and integrated high-performance computing in embedded systems.


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