LFXP10C-4FN256I
LFXP10C-4FN256I
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Lattice Semiconductor Corporation

LFXP10C-4FN256I


LFXP10C-4FN256I
XP
F11-LFXP10C-4FN256I
Active
IC FPGA 188 I/O 256FBGA
256-FPBGA (17x17)

LFXP10C-4FN256I ECAD Model


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LFXP10C-4FN256I Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series XP
Package Tray
Number of Logic Elements/Cells 10000
Total RAM Bits 221184
Number of I/O 188
Voltage - Supply 1.71V ~ 3.465V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 256-BGA
Supplier Device Package 256-FPBGA (17x17)
Base Product Number LFXP10

LFXP10C-4FN256I Datasheet Download


LFXP10C-4FN256I Overview



The LFXP10C-4FN256I is a low-power, low-cost, field-programmable gate array (FPGA) chip designed by Lattice Semiconductor. It is part of the LatticeXP family of FPGAs and is suitable for a wide range of applications.


The LFXP10C-4FN256I features a 4-input lookup table (LUT) architecture and 256 logic elements. It has a maximum operating frequency of 250 MHz and is available in a range of package sizes, including a 4x4mm BGA package. It has a maximum power dissipation of 0.8 W and a maximum I/O voltage of 3.3 V. It also features an integrated JTAG programming interface and is compatible with the Lattice Diamond software suite.


The LFXP10C-4FN256I is suitable for a wide range of applications, including data acquisition, communications, embedded control, and industrial automation. It is also suitable for automotive and medical applications due to its low power consumption and high reliability. It is also suitable for applications that require high performance and low latency, such as video processing and image recognition.


Overall, the LFXP10C-4FN256I is a low-power, low-cost FPGA chip that is suitable for a wide range of applications. It features a 4-input LUT architecture, 256 logic elements, a maximum operating frequency of 250 MHz, and a maximum power dissipation of 0.8 W. It is suitable for automotive and medical applications, as well as applications that require high performance and low latency.



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