LFXP2-30E-5F484I
LFXP2-30E-5F484I
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Lattice Semiconductor Corporation

LFXP2-30E-5F484I


LFXP2-30E-5F484I
XP2
F11-LFXP2-30E-5F484I
Active
IC FPGA 363 I/O 484FBGA
484-FPBGA (23x23)

LFXP2-30E-5F484I ECAD Model


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LFXP2-30E-5F484I Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series XP2
Package Tray
Number of LABs/CLBs 3625
Number of Logic Elements/Cells 29000
Total RAM Bits 396288
Number of I/O 363
Voltage - Supply 1.14V ~ 1.26V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 484-BBGA
Supplier Device Package 484-FPBGA (23x23)
Base Product Number LFXP2-30

LFXP2-30E-5F484I Datasheet Download


LFXP2-30E-5F484I Overview



The LFXP2-30E-5F484I is an advanced, low-power, low-voltage, high-performance, low-cost, field-programmable gate array (FPGA) chip. It is designed for use in a variety of applications, including embedded systems, automotive, industrial, medical, and consumer electronics. The chip features a low-power, low-voltage, high-performance, low-cost architecture that is ideal for cost-sensitive applications.


The LFXP2-30E-5F484I chip is based on the Lattice XP2-30E FPGA architecture, which is optimized for low-power, low-voltage, and high-performance applications. It features an integrated 5V tolerant I/O, up to 5.5V tolerant I/O, and a wide range of I/O features such as programmable slew rate, programmable drive strength, and programmable pull-up/pull-down. The chip also features an integrated clock multiplier and phase-locked loop (PLL) for high-speed clock generation and synchronization.


The LFXP2-30E-5F484I chip has a maximum operating frequency of up to 200 MHz, with a maximum power consumption of only 1.2 W. It also features a wide range of on-chip memory, including 4Kbits of RAM, 8Kbits of ROM, and 16Kbits of Flash memory. The chip also supports a variety of interfaces, including SPI, I2C, UART, and CAN.


The LFXP2-30E-5F484I chip is ideal for a variety of applications, including embedded systems, automotive, industrial, medical, and consumer electronics. It is designed for use in applications that require low-power, low-voltage, and high-performance solutions. The chip is also highly reliable and cost-effective, making it an ideal choice for cost-sensitive applications.



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