10AX022E4F27E3LG

10AX022E4F27E3LG

Manufacturer No:

10AX022E4F27E3LG

Manufacturer:

Intel

Description:

IC FPGA 240 I/O 672FBGA

Datasheet:

Datasheet

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10AX022E4F27E3LG Specifications

  • Type
    Parameter
  • Supplier Device Package
    672-FBGA, FC (27x27)
  • Package / Case
    672-BBGA, FCBGA
  • Operating Temperature
    0°C ~ 100°C (TJ)
  • Mounting Type
    Surface Mount
  • Voltage - Supply
    0.87V ~ 0.98V
  • Number of I/O
    240
  • Total RAM Bits
    13752320
  • Number of Logic Elements/Cells
    220000
  • Number of LABs/CLBs
    80330
  • DigiKey Programmable
    Not Verified
  • Packaging
    Tray
  • Product Status
    Active
  • Series
    Arria 10 GX
The 10AX022E4F27E3LG integrated circuit chips, also known as FPGAs (Field-Programmable Gate Arrays), have several advantages and application scenarios:Advantages: 1. Flexibility: FPGAs can be reprogrammed or reconfigured to perform different functions, making them highly flexible compared to fixed-function ASICs (Application-Specific Integrated Circuits). 2. High performance: FPGAs offer high-speed processing capabilities, making them suitable for applications that require real-time processing or high computational power. 3. Parallel processing: FPGAs can perform multiple tasks simultaneously, thanks to their ability to implement parallel processing architectures. 4. Low power consumption: Compared to traditional processors, FPGAs can achieve higher performance with lower power consumption, making them energy-efficient. 5. Customizability: FPGAs can be customized to meet specific application requirements, allowing designers to create unique solutions tailored to their needs.Application Scenarios: 1. Digital signal processing: FPGAs are commonly used in applications that require real-time processing of digital signals, such as audio and video processing, telecommunications, and radar systems. 2. Embedded systems: FPGAs can be used in embedded systems to implement complex control logic, interface with other components, and perform real-time data processing. 3. High-performance computing: FPGAs can be utilized in high-performance computing applications, such as data centers or scientific research, to accelerate specific algorithms or tasks. 4. Prototyping and emulation: FPGAs are often used for rapid prototyping and emulation of hardware designs, allowing designers to test and validate their concepts before manufacturing custom ASICs. 5. Internet of Things (IoT): FPGAs can be employed in IoT devices to handle sensor data processing, communication protocols, and edge computing tasks efficiently.It's important to note that the specific advantages and application scenarios of the 10AX022E4F27E3LG chips may vary depending on the requirements and design choices made by the user.