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Mingjiada Supply And Recycle Lattice LIFCL-40-9MG121I CrossLink-NX™ Field Programmable Gate Array
Latest company news about Mingjiada Supply And Recycle Lattice LIFCL-40-9MG121I CrossLink-NX™ Field Programmable Gate Array

Mingjiada Electronics: Lattice (LIFCL-40-9MG121I) CrossLink-NX™ FPGA Chip – One-Stop Service for Supply and High-Value Recycling

 

Shenzhen Mingjiada Electronics Co., Ltd. – as a professional supplier of electronic components and recycling service provider – has long been supplying and offering high-value recycling services for Lattice’s LIFCL-40-9MG121I chip. The LIFCL-40-9MG121I belongs to Lattice’s CrossLink-NX™ series of FPGAs. Based on the advanced Nexus platform and 28nm FD-SOI technology, it is specifically designed for embedded vision and edge AI processing, delivering outstanding performance in terms of low power consumption, compact size and high reliability.

 

Key Features of the LIFCL-40-9MG121I
The main technical specifications of the LIFCL-40-9MG121I are as follows:
Logic Units: 39,000, with 9,750 LABs/CLBs, providing ample logic resources
Memory: Total RAM of 1,548,288 bits, with over 2.5 Mb of on-chip RAM, supporting efficient data processing
I/O Interfaces: 72 programmable I/Os, supporting various high-speed interfaces including MIPI D-PHY (up to 2.5 Gbps per channel), LVDS, sub-LVDS, DDR3 and PCIe Gen2
Package: 121-CSFBGA (6x6mm) compact package, suitable for space-constrained applications
Operating Voltage: 0.95V ~ 1.05V
Operating temperature: -40°C to 100°C (industrial grade), suitable for harsh environments
Hard IP: Integrated PCIe Gen2 x1 lane hard IP and two hardened 4-lane MIPI D-PHY transceivers, with each PHY operating at up to 10 Gbps

 

LIFCL-40-9MG121I Product Features:
Instantaneous configuration – I/O configuration completed within 3 ms, device configuration in as little as 8 ms
FD-SOI programmable feedback bias optimised for each device’s performance and power consumption
Two hard-core 4-channel MIPI D-PHY transceivers, operating at 10 Gbps per PHY
Up to 37 programmable source-synchronous I/O pairs for connecting cameras and displays
Lowest soft error rate in its class, offering 100 times greater reliability than competitors

 

LIFCL-40-9MG121I Technical Advantages and Application Scenarios
The CrossLink-NX series is based on 28nm FD-SOI technology and features an extremely low soft error rate (SER), offering 100 times greater reliability than comparable products. Its typical static power consumption is less than 10mW, and it supports instant configuration—I/O can be configured within 3ms, with the entire device configuration taking as little as 8ms. These characteristics make the LIFCL-40-9MG121I an ideal choice for the following applications:
Embedded Vision: Sensor aggregation and image signal processing, bridging MIPI CSI-2 image sensors to processor interfaces
Edge AI Processing: Accelerates AI inference through a high memory-to-logic-cell ratio (up to 170 bits per logic cell), suitable for tasks such as object detection and counting
Interface Bridging and Signal Duplication: Supports protocol conversion for MIPI, LVDS, etc., or signal splitting/duplication, providing redundancy

 

LIFCL-40-9MG121I is built on the Lattice Nexus platform—combining 28 nm FD-SOI technology with an optimised FPGA architecture to reduce soft error rates by a factor of 100 and lower power consumption by up to 75% compared to competitors, whilst utilising a compact package as small as 4 mm x 4 mm. The LIFCL-40-9MG121I delivers industry-leading performance for vision processing applications – featuring a high memory-to-logic-cell ratio of up to 170 bits per logic cell, accelerating AI inference.

 

Mingjiada Electronics has specialised in the distribution and recycling of electronic components for many years, with a particular focus on Lattice’s CrossLink-NX™ series of chips. For further information on the LIFCL-40-9MG121I, to request samples or enquire about recycling prices, please visit the Mingjiada Electronics website (https://www.integrated-ic.com/) for more supply details.

Pub Time : 2026-03-18 11:34:28 >> News list
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