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Mingjiada Supply/Recycle LIFCL-40-7MG289C Lattice CrossLink-NX™ FPGA - Field Programmable Gate Array
Latest company news about Mingjiada Supply/Recycle LIFCL-40-7MG289C Lattice CrossLink-NX™ FPGA - Field Programmable Gate Array

Mingjiada Supply/Recycle LIFCL-40-7MG289C Lattice CrossLink-NX™ FPGA - Field Programmable Gate Array

 

With the rapid proliferation of embedded vision and edge AI, low-power, highly reliable FPGA chips have become a core necessity in the development of smart hardware. Shenzhen Mingjiada Electronics Co., Ltd.—with many years of experience in the distribution and recycling of electronic components—has focused on Lattice’s high-end FPGA product line to establish a comprehensive one-stop supply and recycling service for the LIFCL-40-7MG289C.

 

LIFCL-40-7MG289C belongs to Lattice’s CrossLink-NX™ series. Built on the 28nm FD-SOI Nexus process platform, it is a low-power FPGA specifically designed for MIPI bridging, multi-sensor fusion and edge AI inference. With its exceptional power management, ultra-fast boot-up speed and stable performance, it has become a core component in the selection of smart devices for industrial vision, security surveillance, automotive electronics, smart consumer devices.

 

LIFCL-40-7MG289C Key Specifications:
Series: CrossLink-NX™
Logic Units: 39,000
Logic Array Blocks (LAB/CLB): 9,750
Total RAM Bits: 1,548,288
DSP Modules: 120
I/O Count: 180
Core Voltage: 0.95V ~ 1.05V
Package Size: 289-CSBGA, 9.5 x 9.5 mm
Temperature Range: 0°C ~ 85°C

 

LIFCL-40-7MG289C Key Advantages:
1. Ultra-low power consumption
Based on the 28 nm FD-SOI process, the LIFCL-40-7MG289C reduces power consumption by up to 75% compared to similar products, with a standby current of less than 70 μA, making it particularly suitable for battery-powered or fanless devices. FD-SOI technology supports programmable reverse bias, enabling a balance between power consumption and performance.
2. High Reliability and Rapid Start-up
The insulated gate design of FD-SOI technology improves the soft error rate (SER) caused by radiation particles by a factor of 100, providing greater system stability in industrial control and automotive applications. Additionally, the LIFCL-40-7MG289C supports ultra-fast I/O configuration (3 ms), with full device configuration taking only 8–14 ms, significantly reducing system start-up time.
3. High-Bandwidth Native Vision Interfaces
The LIFCL-40-7MG289C is equipped with a hardened MIPI D-PHY supporting 4 channels at 2.5 Gbps, enabling direct connection to CSI-2/DSI cameras and displays. It also supports PCIe Gen2 (5Gbps), USB 3.2 (5Gbps) and 1.5Gbps differential I/O, and is compatible with various interface protocols including LVDS, subLVDS, OpenLDI and GigE.
4. Edge AI Acceleration Capabilities
The LIFCL-40-7MG289C features a high memory-to-logic ratio (approximately 170 bits per logic unit) and 120 dedicated DSP modules, enabling efficient support for visual tasks such as image pre-processing, filtering, stitching, scaling and colour correction, whilst also supporting lightweight CNN inference. It is suitable for edge AI applications including defect detection, object recognition and classification.

 

Thanks to its exceptional compatibility and scalability, the LIFCL-40-7MG289C is widely applicable across various smart vision and edge computing scenarios:
Industrial Vision: Smart cameras, machine vision inspection, multi-sensor synchronous acquisition systems
Security Surveillance: AI smart cameras, face/object recognition, local edge analysis devices
Automotive Electronics: Surround-view imaging, driver monitoring, MIPI display bridge modules
Consumer Electronics: VR/AR devices, multi-camera terminals, smart display interaction products

 

Mingjiada Electronics is a long-term supplier and recycler of the [Lattice] CrossLink-NX™ FPGA – LIFCL-40-7MG289C. For further information regarding the LIFCL-40-7MG289C, to request samples or enquire about recycling prices, please visit the Mingjiada Electronics website (https://www.integrated-ic.com/) for more details on supply and demand.

Pub Time : 2026-03-20 12:05:09 >> News list
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