ICE40LM1K-SWG25TR1K
ICE40LM1K-SWG25TR1K
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Lattice Semiconductor Corporation

ICE40LM1K-SWG25TR1K


ICE40LM1K-SWG25TR1K
F11-ICE40LM1K-SWG25TR1K
Active
IC FPGA 18 I/O 25WLCSP
25-WLCSP (1.7x1.7)

ICE40LM1K-SWG25TR1K ECAD Model


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ICE40LM1K-SWG25TR1K Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series iCE40™ LM
Package Tape & Reel (TR)
Number of LABs/CLBs 125
Number of Logic Elements/Cells 1000
Total RAM Bits 65536
Number of I/O 18
Voltage - Supply 1.14V ~ 1.26V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 25-XFBGA, WLCSP
Supplier Device Package 25-WLCSP (1.7x1.7)
Base Product Number ICE40LM1K

ICE40LM1K-SWG25TR1K Datasheet Download


ICE40LM1K-SWG25TR1K Overview



The ICE40LM1K-SWG25TR1K is a low power, low cost, and ultra-small FPGA chip, designed and manufactured by Lattice Semiconductor. This chip is based on the LatticeMico8 architecture, and is optimized for low power, low cost and small form factor applications. It is suitable for a wide range of applications, including embedded control, communications, and consumer electronics.


The ICE40LM1K-SWG25TR1K has a capacity of 1K logic elements, and is capable of implementing up to 25K bits of distributed RAM. It has an I/O count of up to 80, with a maximum core frequency of up to 50 MHz. It also features a wide range of I/O options, including LVTTL, LVCMOS, and LVCMOS18, as well as USB, SPI, and I2C.


The chip also features a range of advanced features, including an integrated clock generator, power-on reset and power-down control, and a low-power sleep mode. It also has a low-power standby mode, which allows the chip to remain in a low power state while still being able to respond to external events.


The ICE40LM1K-SWG25TR1K is suitable for a wide range of applications, including embedded control, communications, consumer electronics, and industrial automation. It is also well-suited for applications such as motor control, security, and medical devices. This chip is highly reliable and cost-effective, and is ideal for applications that require a small form factor, low power consumption, and low cost.



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