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Lattice Semiconductor provides smart connectivity solutions powered by their low power FPGA, video ASSP and IP products to the consumer, communications, industrial, computing, and automotive markets worldwide. Founded in 1983 they focus on low power, small form factor FPGA and CPLD and related programmable bridging products.

Low Power FPGAs

Low Power FPGAs

General Purpose



Low-power general purpose FPGA family with 10G SERDES, small packages, LPDDR4 support and high on-chip memory. Built on Lattice Nexus platform using low-power and highly reliable 28 nm FD-SOI technology.



Low-power general purpose FPGA family with up to 40K Logic Cells, industry-leading I/O count in small packages, with support for PCIe and GigE (SGMII). Built on Lattice Nexus platform using low-power and highly reliable 28 nm FD-SOI technology.

ECP5 / ECP5-5G

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With a focus on compact, high-volume applications, Lattice optimized ECP5 for low cost, small form factor and low power consumption.
These characteristics make ECP5 ideal for delivering programmable connectivity to complement ASICs and ASSPs.



LatticeECP3 was designed to offer an efficient FPGA with the benefits of SERDES. Need PCIe, HDMI, CPRI, JESD204, GbE or XAUI? No problem. When performance requirements are high, and size, weight or power is constrained, LatticeECP3 is perfect.



With up to 95K LUTS, up to 5.3 Mbit block and distributed RAM, the LatticeECP2/M families integrate capabilities previously only found on higher cost FPGAs.



LatticeXP2 devices combine up to 40K LUTs with non-volatile Flash cells to enable instant-on performance across a feature-set optimized for high-volume, low-cost applications.


Lattice Avant-E™ is a high performance, compact, low power mid-range FPGA, built using the 16nm FinFET Avant platform. It enables intelligence at the edge for automotive, compute, communications and industrial applications.


  • Up to 500k Logic Cells, 36 Mb of embedded memory and 1800 - 18x18 multipliers (7200 - 8x8 multipliers)

  • Lowest power: Up to 2.5x lower power than competitive FPGAs in similar density

  • Packages as small as 11x9 mm (200k LCs) or 15x13 mm (500k LCs)

  • AI optimized DSP block enables 18x18 multipliers that can be split into four 8x8 multipliers

  • Fast configuration: I/O configures in 10ms, and full configuration for 500k LC in 60 ms

  • Available in Commercial and Industrial Grades

Avant™ Platform

Lattice Avant™ 16nm FinFET platform is made for small form factor mid-range FPGA families and industry leading low-power. The platform features class leading 25 Gb/s SERDES, hardened PCI Express and external memory PHY interfaces, and high DSP counts for the latest AI/ML and computer vision algorithms. The Avant™ platform offers best in class reliability and security to suit a wide range of applications.

Video Connection

Video Connection
Bridging & Processing



Built on the Lattice Nexus platform, CrossLink-NX FPGA, featuring 10 Gbps MIPI D-PHY bandwidth, provides best-in-class power and performance for Embedded Vision and Edge AI applications.



CrossLinkPlus FPGA features integrated flash memory, a hardened MIPI D-PHY and high-speed I/O for instant-on and flexible on-device programming capabilities. It provides world-class MIPI bridging solution for low power Embedded Vision applications.



CrossLink combines hardened high-speed video interfaces, flexible high-speed IO, and IP for low power video bridging applications supporting LVDS, SLVS, SubLVDS, OpenLDI and RGB interfaces.

Ultra-Low Power
World's Smallest Form Factor FPGAs

Ultra-Low Power

iCE40 UltraPlus

ML/AI Low Power FPGA

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Programmable solution that combines flexible I/O, a configurable architecture, and low power operation in a small form factor. Offering high performance “best-in-class” co-processor capable of highly parallel computing while simultaneously adding high levels of connectivity and support for a wide range of I/O standards and protocols.

iCE40 Ultra / UltraLite - Smallest, Lowest Power FPGA

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The iCE40 Ultra / UltraLite, the world’s most integrated mobility focused FPGA, brings you unsurpassed integration at breakneck development speed. It allows customers to upgrade current products or create completely new capabilities, while reducing power, cost, BOM, and size.

iCE40 LP/HX/LM - Low-power, high-performance FPGA

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With iCE40 LP/HX/LM FPGAs you can create ingenious mobile products while staying within your cost, power, size and schedule targets. These devices allow you to rapidly customize solutions with off-the-shelf chips. This means maximum product differentiation with minimum cost and effort.

Solutions Stacks

Complete Solution for Key Applications

Solutions Stacks

Lattice sensAI

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Lattice sensAI stack for rapidly implementing FPGA based flexible inferencing solutions optimized for the Edge.

Lattice mVision

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The Lattice mVision solutions stack includes everything users need to evaluate, develop, and deploy FPGA-based embedded vision applications, such as sensor connectivity, bridging, aggregation, and image signal processing.

Lattice Automate

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The Lattice Automate™ solution stack provides Industrial Automation system designers with tools needed to evaluate, develop, and deploy FPGA-based, RISC-V software programmable Industrial Automation applications, such as robotics, scalable multi-channel motor control with predictive maintenance, real-time Industrial Networking, and Local to Cloud Networking with OPC UA support.

Lattice Sentry


The Lattice Sentry solutions stack includes everything system designers need to evaluate, develop, test and deploy a NIST SP800-193-compliant, FPGA-based Platform Firmware Resiliency (PFR) Root of Trust.

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Macnica Vision develops technology for the machine vision industry. We strive to provide a superior package of solutions leveraging expertise in key areas such as FPGAs, processors, and interface devices, together with system-level technologies such as power and clock trees. We complete our offerings with expertise in signal integrity, intellectual property, and software support.

While electronic designs are becoming more complex, engineers are required to design products on ever shortening schedules and at lower costs, without compromising performance or quality. Macnica Vision delivers the necessary environment for those engineers to accelerate their electronics designs while maintaining higher quality and performance. We will help you stay one step ahead at the system level.


CMOS Sensor Interface IP Device Package



Today Sony CMOS image sensors and FPGAs are used in nearly all machine vision cameras, with Sony SLVS-EC, the interface of choice to handle high-speed, long-distance communication. It has become especially popular because it uses an embedded clock technology that’s tolerant of lane-to-lane skew.

Now, with our SLVS-EC Rx IP, Macnica Vision is offering an intellectual property package that makes board-level design for SLVS-EC very easy. It’s the toolkit you need for faster, better, easier and more profitable camera design.


  • Compliant with SLVS-EC Specification Version 1.2/2.0

  • Available both for Intel and Xilinx FPGAs

  • Supports various functions defined by the SLVS-EC Link layer

  • Supports Byte-to-Pixel conversion for various lane-configurations

  • Supports Header analysis and Payload error detection


  • Encrypted RTL (Verilog HDL)

  • Reference design

  • Simulation environment (For ModelSim)

User's manual, Reference manual, Simulation manual

Supported Devices

  • Intel Cyclone V GX

  • Intel Cyclone V SX (v1.2)

  • Intel Cyclone 10 GX

  • Intel Arria 10 GX

  • Intel Arria 10 SX (v1.2/2.0)

  • Xilinx Artix-7 (ECC not supported)

  • Xilinx Kintex-7

  • Xilinx Kintex Ultrascale

  • Xilinx Kintex Ultrascale+

  • Microchip PolarFire (Planning)

* Please contact us about other devices.


Camera Interface IP Device Packages

GIGE Vision IP

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Now you can develop GigE Vision-compliant products (both 1-gig and 10-gig) much more quickly and economically using this advanced intellectual property package from Macnica Vision. The GigE Vision Device Package includes everything you need to transfer image data from a camera or image sensor to other devices over Gigabit or 10-Gigabit Ethernet networks in real-time. It’s perfect for the design and manufacturing of highly reliable, high-resolution machine vision cameras, medical imaging systems, and other devices.


  • Highly reliable, high-precision image transmission using the GigE Vision and 10GigE Vision protocols

  • 995 Mbps or 9.5 Gbps maximum effective transfer rate

  • Comprehensive reference environment

  • GigE Vision Compliant, certified by the Automated Imaging Association (AIA)

  • Interoperability qualified with various GenICam application vendors

  • Supports IEEE1588 PTP (Precision Time Protocol) as Master and Slave


  • Compliant with GigE Vision Standard Version 1.2/Version 2.0

  • Supports IEEE1588-2008 PTP for 1GigE. (Under development for 10GigE)

  • Compliant with EMVA GenICam Standard Version 2.0

  • Supports Packet Re-transmission

  • Other functions

    • Chunk data transfer, GigE Vision action commands, Timestamp, Packet delay

    • Image data (RGB, YUV, etc.) and RAW data transfer

Supported Devices

  • 1GigE: Intel Cyclone V

  • 10GigE: Intel Cyclone 10 GX


  • Encrypted RTL (Verilog HDL)

  • GigE Vision Device FW Library for Nios II processors

  • Reference environment (sample hardware design, firmware application)

  • User’s manual


CoaxPress 1.1& 2.0 IP

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Macnica Vision makes it easy to develop cameras and other devices that will transfer image data from a camera to a PC with a frame grabber via a simple-to-install, 75Ω coaxial cable at up to 6.25 Gbps per lane. CoaXPress, defined by JIIA (the Japan Industrial Imaging Association) is one of the newest and fastest-growing interface standards for machine vision. The CoaXPress 1.1 & 2.0 Device Packages give you everything you need to develop products using the standard, from an encrypted RTL to a software library that will help you support GenICam, the software API for CoaXPress and other machine vision standards.


  • Compliant with CoaXPress Version 1.1.1 and Version 2.0

  • Data transfer rate up to 6.25Gbps/lane (version 1.1.1) / 12.5Gbps/lane (version 2.0)

  • Supports up to 4 Connections

  • Supports up to 4 Streams

  • Supports GenICam

  • Certified and registered under the JIIA Interoperability Test

Supported Devices

  • Cyclone 10 GX

  • Arria 10 GX

* Please contact us about other devices.



  • Encrypted RTL (Verilog HDL)

  • Reference design

  • Firmware for CoaXPress/GenICam including XML generator

  • Documents

CoaxPress 1.1 IP

Display Interface IP


HDMI 2.0 Tx IP / HDMI 2.0 Rx IP

Enables high speed interface compliant with HDMI 2.0 standard

Bring your HDMI 2.0-compliant products to market quickly and easily using this advanced intellectual property package from Macnica Vision. Our HDMI 2.0 Tx IP / Rx IP package gives you everything you need to provide your products with the transmit/receive functions of the HDMI 2.0 standard using various Intel FPGAs. Depending on the FPGA you use, you’ll be able to transmit and receive 4K and 2K video with up to 24-bit RGB color at up to 60 frames per second, at a maximum transfer rate of 18 Gbps.


  • Enables HDMI 2.0 transmission and reception with the latest Intel FPGAs

  • 18 Gbps maximum transfer rate

  • Supports RGB 24 bit 4k2k@60p transmit and receive

  • Meets all HDMI licensing requirements; compliance confirmed by third-party testing


  • Supports DVI Mode

  • Supports Deep Color (30 bit/36 bit/48 bit) Mode

  • Supports Display Data Channel (DDC), Status and Control Data Channel (SCDC) control

  • Supports Hot Plug Detect, +5V Power Drive control

  • Supports Audio 

Supported Devices

  • Cyclone V GX (Transfer Rate Limited)

  • Cyclone 10 GX

  • Arria V GX (Transfer Rate Limited)

  • Arria 10 GX

Please contact us about other devices.



  • Encrypted RTL (Verilog HDL)

  • Reference design

  • Simulation environment (For ModelSim)

  • User’s manual, Reference manual, Simulation manual

Display Interface IP


Versatile Machine Vision Camera Development Kit

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EasyMVC, our Easy Machine Vision Camera Kit, helps hardware engineers and software developers evaluate machine vision technology and build prototype cameras. At its most powerful, the kit can be used for pre-purchase evaluation of our intellectual property cores for SLVS-EC, GigE Vision, USB3 Vision, and CoaXPress.

The kit consists of an image sensor board, an FPGA board, and an interface board, plus a choice of cutting-edge CMOS image sensors, FPGAs and interface cards. Choose from the models listed below. The EasyMVC Sony IMX420MS/CS C10 HDMI U3V Kit, for example, gives you a Sony IMX420 CMOS sensor card, an Intel Cyclone 10GX FPGA Card, and an interface card ready for the USB3 Vision and HDMI 2.0 standards.


Other kits include the components, software and intellectual property you need to evaluate and develop for CoaXPress 1.1.1 or 2.0, 10GigE Vision, or GigE Vision, and you can mix or match the boards that you want.

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  • Evaluate key technologies making up machine vision cameras:

    • Cutting-edge CMOS image sensors

    • Various machine vision interfaces

    • IP cores that Macnica offers

  • Make it easy to develop prototypes of machine vision cameras

    • FPGA design

    • Firmware development

    • Development of Host PC software

    • More!



The IMX421 offers 2.86 Mpixels, capturing HD images at frame rates up to 371fps, and a staggering 780fps max at lower resolutions.

The IMX420, with its 7.10 Mpixels is a significant step up, with many applications now requiring more resolution, either to see finer details, or to be able to image a much larger area, and maintain good resolution over the whole area, this sensor is a perfect fit.


The IMX530 for the Easy MVC kit is releasing later this year. The IMX530 offers an impressive 24.55Mpixels. It is a next generation Pregius S part, with the signal processing stacked on the backside illuminated sensor it creates a very compact sensor for the resolution.

Basic Configuration

Mix and match the boards to produce the

best combination for your project!

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Target Lineups and Schedules

Product line up with a combination of a sensor, FPGA, and Machine Vision interface.

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