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5SGXMA4H3F35C4G
+Lista de MateriaisIC FPGA 600 I/O 1152FBGA
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FabricanteIntel
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Peça do Fabricante #5SGXMA4H3F35C4G
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Pacote BBGA-1152
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Em Estoque1492
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Especificações
| Atributo | Valor |
| Package / Case | Tray |
| Series | Stratix® V GX |
| Part Status | Active |
| Number of LABs/CLBs | 158500 |
| Number of Logic Elements/Cells | 420000 |
| Total RAM Bits | 37888000 |
| Number of I/O | 600 |
| Voltage - Supply | 0.82V ~ 0.88V |
| Mounting Type | Surface Mount |
| Operating Temperature | 0°C ~ 85°C (TJ) |
Visão Geral
Description
1. High Density and Capacity: It offers a large number of logic elements, making it suitable for complex designs.
2. Transceiver Capability: Supports high-speed serial transceivers, essential for data-intensive tasks.
3. Power Efficiency: Incorporates advanced power management features to reduce energy consumption while maintaining performance.
4. Customizability: Users can configure the FPGA to fit specific application needs, ensuring versatility across various applications.
5. Integration and Connectivity: Offers robust integration capabilities with other system components and peripherals.
The 5SGXMA4H3F35C4G is ideal for developers seeking an FPGA with superior processing power, configurability, and robust connectivity options for advanced electronic design projects.
Equivalent
1. Xilinx Virtex-7 or Kintex-7 series
2. Microsemi (Microchip) PolarFire or RTG4 series
3. Lattice ECP5 series
These products offer similar functionalities in terms of logic elements, DSP blocks, and high-speed transceivers, depending on the specific application requirements. Always verify compatibility with your specific design needs.
Features
1. Architecture: It features the Stratix V GX architecture designed for high-speed data processing, with advanced logic elements and adaptive logic modules.
2. Transceivers: Includes high-speed transceivers capable of supporting data rates up to 12.5 Gbps, suitable for high-bandwidth applications.
3. Logic Elements: Contains a large number of logic elements (LEs) for complex computations and parallel processing.
4. Memory: Offers embedded memory blocks for efficient data storage and retrieval, supporting various memory configurations.
5. DSP Blocks: Equipped with dedicated DSP blocks for enhanced digital signal processing capabilities.
6. Power: Designed for low power consumption while maintaining high performance, incorporating advanced power management features.
7. I/O Flexibility: Provides a range of I/O standards and flexible I/O interfaces to support various application needs.
8. Applications: Ideal for applications in telecommunications, data center, broadcasting, military, and aerospace due to its high-speed and flexible functionalities.
These features make it suitable for demanding and high-speed applications requiring significant processing power and flexibility.
Pinout
The device is designed for high-performance applications, offering features like high-speed transceivers, abundant logic elements, and rich digital signal processing capabilities. It supports a wide range of protocols and standards, making it suitable for applications in networking, communications, and high-performance computing.
The 5SGXMA4H3F35C4G is equipped with multiple I/O banks to facilitate diverse interfacing options. It also offers advanced clock management and memory interface support, providing flexibility and efficiency for complex designs.
For precise and specific details on pin functions, users should refer to the device's datasheet or pinout documents provided by Intel. These resources provide comprehensive information on each pin's role, including power, ground, signal, and special-purpose pins.
Manufacturer
Application
1. Telecommunications: Used in signal processing, networking equipment, and wireless infrastructure.
2. Data Centers: Supports high-speed data processing and network functions.
3. Aerospace and Defense: Suitable for secure communications, radar, and avionics systems due to its high throughput and reliability.
4. Broadcast and Pro AV: Facilitates video processing and high-definition video transmission.
5. High-Performance Computing (HPC): Used in scientific simulations and complex computations.
6. Financial Systems: Supports high-frequency trading and real-time data analysis.
These applications leverage the FPGA's ability to handle complex algorithms and large data bandwidths.