5SGSMD8N3F45C4N
5SGSMD8N3F45C4N
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Intel Corporation

5SGSMD8N3F45C4N


5SGSMD8N3F45C4N
F18-5SGSMD8N3F45C4N
Active
IC FPGA 840 I/O 1932FBGA
1932-FBGA, FC (45x45)

5SGSMD8N3F45C4N ECAD Model


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5SGSMD8N3F45C4N Attributes


Type Description Select
Mfr Intel
Series Stratix® V GS
Package Tray
Number of LABs/CLBs 262400
Number of Logic Elements/Cells 695000
Total RAM Bits 51200000
Number of I/O 840
Voltage - Supply 0.82V ~ 0.88V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 1932-BBGA, FCBGA
Supplier Device Package 1932-FBGA, FC (45x45)
Base Product Number 5SGSMD8

5SGSMD8N3F45C4N Datasheet Download


5SGSMD8N3F45C4N Overview



The 5SGSMD8N3F45C4N is a Stratix V FPGA chip from Altera. It is a high-performance, low-power device that has been designed for use in a variety of applications. It has a capacity of 8 million logic elements and 45.4 million adaptive logic modules. It also features a hardened transceiver block, which provides up to 28.5 Gbps of transceiver bandwidth.


The chip is capable of supporting multiple configurations, including single-precision floating-point, double-precision floating-point, and fixed-point operations. It also supports a variety of I/O standards, including LVDS, LVCMOS, and SSTL. It is also capable of supporting multiple memory types, such as DDR3, QDRII+, and RLDRAM.


The 5SGSMD8N3F45C4N is suitable for use in a variety of applications, such as high-performance computing, embedded systems, and military and aerospace systems. It can be used to implement high-speed designs, such as those used in high-speed networking, high-performance computing, and machine learning applications. It is also suitable for use in industrial automation, medical imaging, and automotive applications.


In summary, the 5SGSMD8N3F45C4N is a high-performance, low-power FPGA chip from Altera. It has a capacity of 8 million logic elements and 45.4 million adaptive logic modules. It also features a hardened transceiver block, which provides up to 28.5 Gbps of transceiver bandwidth. It is capable of supporting multiple configurations, including single-precision floating-point, double-precision floating-point, and fixed-point operations. It is suitable for use in a variety of applications, such as high-performance computing, embedded systems, and military and aerospace systems.



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