5SGXMA5N1F40I2WN
5SGXMA5N1F40I2WN
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Intel Corporation

5SGXMA5N1F40I2WN


5SGXMA5N1F40I2WN
F18-5SGXMA5N1F40I2WN
Active
IC FPGA 600 I/O 1517FBGA
1517-FBGA (40x40)

5SGXMA5N1F40I2WN ECAD Model


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5SGXMA5N1F40I2WN Attributes


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5SGXMA5N1F40I2WN Overview



The chip model 5SGXMA5N1F40I2WN is a high-performance, low-power field-programmable gate array (FPGA) designed for digital signal processing, embedded processing, and image processing applications. It is designed with a high degree of flexibility and upgradability, allowing it to be used in a variety of applications. The chip model 5SGXMA5N1F40I2WN supports a wide range of HDL languages, making it an ideal choice for advanced communication systems.


The chip model 5SGXMA5N1F40I2WN is capable of being used in a wide range of networks, including data centers, cloud computing, and the Internet of Things (IoT). It is also suitable for applications in intelligent scenarios such as machine learning, natural language processing, and computer vision. With its high performance and low power consumption, the chip model 5SGXMA5N1F40I2WN is ideal for use in the era of fully intelligent systems.


The chip model 5SGXMA5N1F40I2WN is designed to be highly reliable and upgradable, allowing for future upgrades and enhancements. The chip model 5SGXMA5N1F40I2WN can be used for a variety of applications, including high-performance digital signal processing, embedded processing, image processing, and advanced communication systems. Its flexibility and upgradability make it a great choice for any application that requires a high degree of reliability and upgradability.


The chip model 5SGXMA5N1F40I2WN is a great choice for applications in the era of fully intelligent systems. Its high performance, low power consumption, and flexibility make it ideal for use in a variety of networks and intelligent scenarios. With its support for a wide range of HDL languages, the chip model 5SGXMA5N1F40I2WN is a great choice for any application that requires a high degree of flexibility and upgradability.



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