5SGXMA7K2F40I2N
5SGXMA7K2F40I2N
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Intel Corporation

5SGXMA7K2F40I2N


5SGXMA7K2F40I2N
F18-5SGXMA7K2F40I2N
Active
IC FPGA 696 I/O 1517FBGA
1517-FBGA (40x40)

5SGXMA7K2F40I2N ECAD Model


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5SGXMA7K2F40I2N Attributes


Type Description Select
Mfr Intel
Series Stratix® V GX
Package Tray
Number of LABs/CLBs 234720
Number of Logic Elements/Cells 622000
Total RAM Bits 51200000
Number of I/O 696
Voltage - Supply 0.87V ~ 0.93V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 1517-BBGA, FCBGA
Supplier Device Package 1517-FBGA (40x40)
Base Product Number 5SGXMA7

5SGXMA7K2F40I2N Datasheet Download


5SGXMA7K2F40I2N Overview



The 5SGXMA7K2F40I2N is a high-performance, low-power, field-programmable gate array (FPGA) manufactured by Altera. It is based on the Stratix V architecture and features a total of 40,000 logic elements, 10,000 memory bits, and 1,232 18-bit embedded multipliers. The device also features an embedded transceiver block with up to 28 transceiver channels that support data rates up to 28 Gbps.


The FPGA is suitable for a variety of applications, including high-performance computing, digital signal processing, embedded systems, and advanced networking. It has a total power dissipation of 10.2W and a maximum operating temperature of 85°C. It also has a wide range of I/O options, including LVDS, SSTL, and LVCMOS.


The device is designed to be used in high-speed, high-performance systems. It can be used for applications such as data acquisition, image processing, video processing, and communications. It also has the ability to support multiple clock domains, allowing for simultaneous operation of multiple system components.


The 5SGXMA7K2F40I2N FPGA is a powerful, low-power device that is suitable for a variety of applications. It is designed to be used in high-performance systems and can be used for applications such as data acquisition, image processing, video processing, and communications. It has a wide range of I/O options, a low power dissipation, and is designed to operate in high-temperature environments.



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