LFE3-95E-7FN672C
LFE3-95E-7FN672C
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Lattice Semiconductor Corporation

LFE3-95E-7FN672C


LFE3-95E-7FN672C
F11-LFE3-95E-7FN672C
Active
IC FPGA 380 I/O 672FPBGA
672-FPBGA (27x27)

LFE3-95E-7FN672C ECAD Model


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LFE3-95E-7FN672C Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series ECP3
Package Tray
Number of LABs/CLBs 11500
Number of Logic Elements/Cells 92000
Total RAM Bits 4526080
Number of I/O 380
Voltage - Supply 1.14V ~ 1.26V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 672-BBGA
Supplier Device Package 672-FPBGA (27x27)
Base Product Number LFE3-95

LFE3-95E-7FN672C Datasheet Download


LFE3-95E-7FN672C Overview



The LFE3-95E-7FN672C is a low-power field-programmable gate array (FPGA) chip manufactured by Altera Corporation. It is a member of the Cyclone III family of FPGAs and is designed for low-cost, low-power applications. The device offers a rich set of features, including high-performance signal processing, embedded memory, and a wide range of I/O options.


The LFE3-95E-7FN672C has a total of 95K logic elements, 4.7 Mbits of embedded RAM, and 672 user I/O pins. The device is manufactured using a 0.18-micron process and is packaged in a 7x7mm BGA package. The device has a power consumption of 3.2W and an operating temperature range of 0°C to 85°C.


The LFE3-95E-7FN672C is ideal for applications such as automotive, medical, and industrial control. It can be used to implement complex control functions, such as motor control, data acquisition, and digital signal processing. The device is also suitable for high-speed data transmission, video processing, and image processing.


In summary, the LFE3-95E-7FN672C is a low-power FPGA chip manufactured by Altera Corporation. It offers a rich set of features, including high-performance signal processing, embedded memory, and a wide range of I/O options. It is suitable for applications such as automotive, medical, and industrial control. It is also suitable for high-speed data transmission, video processing, and image processing.



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