5SGSMD6N2F45I3N
5SGSMD6N2F45I3N
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Intel

5SGSMD6N2F45I3N


5SGSMD6N2F45I3N
F18-5SGSMD6N2F45I3N
Active
IC FPGA 840 I/O 1932FBGA
1932-FBGA, FC (45x45)

5SGSMD6N2F45I3N ECAD Model


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5SGSMD6N2F45I3N Attributes


Type Description Select
Mfr Intel
Series Stratix® V GS
Package Tray
Number of LABs/CLBs 220000
Number of Logic Elements/Cells 583000
Total RAM Bits 46080000
Number of I/O 840
Voltage - Supply 0.82V ~ 0.88V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 1932-BBGA, FCBGA
Supplier Device Package 1932-FBGA, FC (45x45)
Base Product Number 5SGSMD6

5SGSMD6N2F45I3N Datasheet Download


5SGSMD6N2F45I3N Overview



The 5SGSMD6N2F45I3N is an advanced FPGA chip developed by Intel's Altera Corporation. It is based on the Stratix V architecture and is designed for use in a wide range of applications. It has a total of 6,144 logic elements, and a total of 6,144 embedded memory blocks. It also features an array of high-speed transceivers and an integrated analog-to-digital converter.


The 5SGSMD6N2F45I3N is an ideal solution for high-performance applications requiring high-speed data transfer. It features a maximum operating frequency of 1.2 GHz and a total power dissipation of up to 11.4 W. It also includes an integrated LVDS transceiver, which enables data transmission at up to 10.3 Gbps. Additionally, it supports up to 8 channels of LVDS I/O and up to 8 channels of differential I/O.


The 5SGSMD6N2F45I3N is suitable for a wide range of applications, including communications, industrial automation, medical imaging, and aerospace. It can be used for applications such as high-speed data acquisition, signal processing, and image processing. Additionally, it is capable of supporting a variety of digital signal processing algorithms, including FFTs, FIR filters, and IIR filters.


Overall, the 5SGSMD6N2F45I3N is an advanced FPGA chip from Intel's Altera Corporation. It features 6,144 logic elements, 6,144 embedded memory blocks, and an array of high-speed transceivers. It is ideal for high-performance applications requiring high-speed data transfer and supports a variety of digital signal processing algorithms. It is suitable for applications such as communications, industrial automation, medical imaging, and aerospace.



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