5SGXMA7H2F35C1NCV
5SGXMA7H2F35C1NCV
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Intel Corporation

5SGXMA7H2F35C1NCV


5SGXMA7H2F35C1NCV
F18-5SGXMA7H2F35C1NCV
Active
IC FPGA 552 I/O 1152FBGA
1152-FBGA (35x35)

5SGXMA7H2F35C1NCV ECAD Model


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5SGXMA7H2F35C1NCV Attributes


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5SGXMA7H2F35C1NCV Overview



The chip model 5SGXMA7H2F35C1NCV is a cutting-edge technology developed by Altera Corporation. This model is a field-programmable gate array (FPGA) that is optimized for system-on-a-chip (SoC) designs. It is designed to provide the highest levels of performance, flexibility, and scalability. The 5SGXMA7H2F35C1NCV is a highly advanced chip model that provides an ideal platform for a variety of applications.


The 5SGXMA7H2F35C1NCV is designed to offer superior performance, scalability, and flexibility. It is capable of delivering up to 1.5 million logic elements, up to 4.5 million embedded memory bits, and up to 1.5 million flip-flops. It also offers high-speed transceiver technology, which enables high-speed communication between multiple devices. The chip model also provides a wide range of I/O options, including high-speed LVDS, PCIe, and Ethernet.


The 5SGXMA7H2F35C1NCV is designed to meet the needs of a variety of applications. It is ideal for applications such as high-performance computing, embedded vision, and high-speed communication. It also provides support for advanced communication systems, including 5G and Wi-Fi 6. The chip model is also capable of supporting a wide range of technologies, including FPGA-based accelerators, embedded processors, and custom logic.


The 5SGXMA7H2F35C1NCV is designed to be highly upgradable. It is capable of supporting new and emerging technologies, such as AI and machine learning. It also offers the flexibility to easily adapt to changing needs and requirements. The chip model is also designed to be future-proof, with the ability to support future technologies and applications.


Overall, the chip model 5SGXMA7H2F35C1NCV is an advanced and highly flexible technology that is designed to meet the needs of a variety of applications. It is capable of delivering high levels of performance, scalability, and flexibility. It also provides support for advanced communication systems and a wide range of technologies. Furthermore, it is designed to be highly upgradable and future-proof. As such, it is expected to be in high demand in the future, as more and more applications require the support of advanced technologies.



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