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Visible Light Communication Market expected to grow by USD 316.02 billion from 2024 to 2028, driven by industrial process automation powered by AI

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NEW YORK, Oct. 7, 2024 /PRNewswire/ — Report on how AI is driving market transformation- The global visible light communication market  size is estimated to grow by USD 316.02 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of almost 89.62%  during the forecast period.  Growing penetration of process automation in industries is driving market growth, with a trend towards vlc-based 5g network. However, the dominance of competing technologies  poses a challenge. Key market players include Acuity Brands Inc., Firefly Networks Ltd., Fortive Corp., Fraunhofer Gesellschaft, fSONA Systems Corp., General Electric Co., Koninklijke Philips N.V., Latecoere, LightBee SL, Lucibel SA, nextLiFi, Oledcomm, Panasonic Holdings Corp., pureLiFi Ltd., Qualcomm Inc., Renesas Electronics Corp., Signify NV, To Be Srl, Viavi Solutions Inc., and VLNComm Inc..

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Forecast period

2024-2028

Base Year

2023

Historic Data

2018 – 2022

Segment Covered

Application (Indoor networking, LBS, ICE, and Underwater communication), End-user (Retail, Consumer electronics, Automotive and transportation, Healthcare, and Others), and Geography (North America, APAC, Europe, South America, and Middle East and Africa)

Region Covered

North America, APAC, Europe, South America, and Middle East and Africa

Key companies profiled

Acuity Brands Inc., Firefly Networks Ltd., Fortive Corp., Fraunhofer Gesellschaft, fSONA Systems Corp., General Electric Co., Koninklijke Philips N.V., Latecoere, LightBee SL, Lucibel SA, nextLiFi, Oledcomm, Panasonic Holdings Corp., pureLiFi Ltd., Qualcomm Inc., Renesas Electronics Corp., Signify NV, To Be Srl, Viavi Solutions Inc., and VLNComm Inc.

Key Market Trends Fueling Growth

Visible Light Communication (VLC) is a significant component of 5G technology, utilizing LED bulbs to transmit data at high speeds. This innovation offers dependable, super-fast connectivity, reaching up to 10 Gbps – 250 times faster than existing high-speed broadband. VLC’s major advantage lies in its ability to provide reliable connectivity in areas where Wi-Fi fails, such as airplanes, submarines, hospitals, and nuclear power stations. China is planning to operate a fully functional VLC-based 5G network for the Winter Olympics in 2022. The increasing adoption of LED bulbs and the growing potential for smart city applications will fuel the market’s growth. Opportunities include downloading traffic information from traffic lights or program guides from TVs. The affordability, reliability, and security of VLC make it an attractive alternative to Wi-Fi infrastructure. Consequently, the market for visible light communication-based 5G networks is expected to expand during the forecast period. 

The Visible Light Communication (VLC) industry is experiencing significant growth, driven by trends in various sectors. Small Local Area Networks (LAN) and smart lighting systems are integrating VLC technology for energy-efficient data transmission. In retail, smart stores use VLC for contactless payments and inventory management. Smartphones and VR headsets are adopting VLC for high-speed data transfer, eliminating the need for Wi-Fi, WiMAX, 3G systems, and 5G. VLC is also being used in underwater communication, traffic lights, streetlights, and trees for efficient data transfer. Unidirectional VLC is being used in industries like aerospace, automotive, and autonomous vehicles for bidirectional transmission. VLC sources like white LEDs and blue LEDs are powering this technology. The future holds promise with the adoption of Li-Fi, bidirectional VLC technology, battery-free duplex communication, voice-only traffic, and big data analytics. VLC receivers and sources are being used in various industries, including backhaul carrier technologies, making VLC a game-changer in wireless networks. 

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Market Challenges

The market for Visible Light Communication (VLC) technology is currently experiencing modest growth due to the dominance of Wi-Fi and WiMAX technologies in various sectors. These traditional technologies have provided reliable and efficient network connectivity for decades, enabling the implementation of smart systems in homes, transportation, manufacturing, and energy management. Smart systems, such as smart homes, connected cars, and smart grids, have gained significant traction with the advent of high-speed internet services from leading providers like AT&T, Comcast, Sprint, and Verizon. However, the widespread adoption of these systems relies heavily on wireless connectivity, including Wi-Fi. Advanced low-power communication technologies, like ZigBee and Z-Wave, have also emerged to support the efficient operation of smart systems. While VLC technology offers unique advantages, such as energy efficiency and privacy, its market growth is somewhat restrained due to the established presence of Wi-Fi and WiMAX technologies. Consequently, the global VLC market expansion is anticipated to be influenced by the ongoing dominance of these competing technologies during the forecast period.The Visible Light Communication (VLC) market is experiencing significant growth due to its potential as a cost-effective technique for high-speed data services in various major verticals like consumer electronics and IoT. However, challenges exist. One major challenge is the initial expenses for hardware installation, especially in comparison to RF communication. Another challenge is reliability issues caused by environmental interferences such as fog, scattering, and scintillation. Cyber security is also a concern due to the use of electromagnetic radiations. Energy consumption is a key consideration, making energy-efficient systems essential. The highest demand comes from sectors like hospitals and indoor navigation systems. VLC’s largest share is currently held by Li-Fi (Light Fidelity) using LED lights, but microlaser diodes and fiber-based Ethernet are also contenders. Frequency bandwidth is a limitation, with 4G outperforming VLC in terms of data rates. Mobile operators and network service providers are exploring VLC as an alternative to fiber-optic lines and Ethernet-based network solutions. Despite these challenges, the VLC market is expected to grow, driven by the demand for energy-efficient, high-speed data services.

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Segment Overview 

This visible light communication market report extensively covers market segmentation by

Application 1.1 Indoor networking1.2 LBS1.3 ICE1.4 Underwater communicationEnd-user 2.1 Retail2.2 Consumer electronics2.3 Automotive and transportation2.4 Healthcare2.5 OthersGeography 3.1 North America3.2 APAC3.3 Europe3.4 South America3.5 Middle East and Africa

1.1 Indoor networking-  The indoor networking segment of the Visible Light Communication (VLC) market is experiencing significant growth due to the adoption of VLC technology by retail and hospitality industries. VLC offers advantages over traditional wireless technologies like Wi-Fi, such as higher data transfer rates and immunity to electromagnetic interference, making it ideal for crowded and sensitive environments. With the increasing use of Internet of Things (IoT) devices and smart building systems, the need for efficient and reliable communication networks is growing. VLC’s ability to provide seamless connectivity between IoT devices, sensors, and control systems using existing LED lighting infrastructure is driving its adoption. In smart office environments, VLC enables data transmission between sensors for occupancy monitoring, environmental control systems, and lighting management, optimizing energy usage and enhancing workplace productivity. Indoor positioning systems can accurately track and locate assets, individuals, and devices within a building using VLC-enabled LED luminaires, improving operational efficiency and enhancing user experience. In retail environments, VLC-based indoor positioning systems can enable personalized shopping experiences, location-based promotions, and wayfinding assistance for customers. The convergence of these factors will fuel the growth of the indoor networking segment in the global VLC market during the forecast period. Major lighting manufacturers like GE and Philips have shown interest in this technology, further boosting its adoption.

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Research Analysis

The Visible Light Communication (VLC) market is an emerging technology that utilizes Li-Fi (Light Fidelity) to transmit data using visible light instead of radio waves like Wi-Fi. VLC is gaining popularity due to its ability to provide high-speed, energy-efficient, and secure communication. Indoor navigation systems and battery-free duplex communication are some of the key applications. VLC receivers can be integrated into consumer electronics like smartphones, making them an attractive alternative to RF technology. VLC sources include LEDs, which are widely used in smart lighting systems. The digitization of various industries and the increasing adoption of IoT and 5G are driving the growth of the VLC market. However, challenges such as cyber security concerns and the need for specialized VLC receivers remain. FSO (Free Space Optics) is another competing technology, but VLC offers the advantage of using existing light sources and is less susceptible to electromagnetic radiations.

Market Research Overview

The Visible Light Communication (VLC) market is experiencing significant growth due to the adoption of Li-Fi (Light Fidelity), a wireless communication technology that utilizes visible light instead of radio frequencies. VLC uses LED lights as sources and can provide high-speed data services, making it an attractive alternative to traditional RF-based networks. The technology is finding applications in major verticals such as aerospace, automotive, consumer electronics, hospitals, and IoT. VLC offers several advantages, including energy efficiency, cost-effectiveness, and reliability, making it a promising solution for various industries. However, initial expenses for installation and potential reliability issues due to environmental interferences such as fog, trees, and scattering are challenges that need to be addressed. The VLC market is expected to see the highest demand from consumer electronic devices, smartphones, smart lighting systems, and autonomous vehicles. VLC technology can also be used for underwater communication and in industries where RF communication is not feasible or desirable. The market is expected to grow significantly in the coming years due to the digitization of various industries and the need for high-bandwidth, energy-efficient systems. VLC technology can also be used in conjunction with other backhaul carrier technologies to provide bidirectional transmission and data rates that rival or surpass those of 3G and 5G systems. The use of bidirectional VLC technology and battery-free duplex communication can further enhance the capabilities of VLC systems. The VLC industry is also exploring the use of AI and Big Data analytics to optimize network performance and improve cyber security. The market is expected to see significant growth in the coming years due to its potential to provide high-speed, energy-efficient, and cost-effective communication solutions for various industries.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

ApplicationIndoor NetworkingLBSICEUnderwater CommunicationEnd-userRetailConsumer ElectronicsAutomotive And TransportationHealthcareOthersGeographyNorth AmericaAPACEuropeSouth AmericaMiddle East And Africa

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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SOURCE Technavio

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Technology

Monport MEGAS Brings Advanced LightBurn Features to Desktop CO2 Laser Engraving

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New 70W desktop CO2 laser engraver brings LightBurn’s advanced feature set — autofocus, wireless connectivity and live camera placement — directly into the software, closing a gap most “LightBurn compatible” machines leave open.

SEATTLE, July 27, 2026 /PRNewswire/ — As LightBurn continues to be the preferred software for makers, educators, and small manufacturing businesses, Monport is emphasizing the advanced workflow capabilities of its MEGAS 70W desktop CO2 laser engraver. The system enables users to perform autofocus, wireless connectivity, and live camera positioning directly inside LightBurn, creating a more streamlined production workflow than the basic compatibility offered by many desktop laser systems.

The integration allows users to complete nearly every production step directly inside LightBurn rather than switching between multiple software applications.

The announcement positions the MEGAS as a candidate for best CO2 laser engraver among software-focused buyers: makers, Etsy and Shopify sellers, and small production shops who run LightBurn daily and have grown frustrated switching between a manufacturer’s app and the software they actually use to build and send jobs. The feature announcement coincides with Monport’s Summer Sale, which drops the MEGAS to $2,799.99 for a limited time.

Why “LightBurn Compatible” Doesn’t Always Mean Full Support

LightBurn is the industry-standard control software for hobbyist and small-business laser systems, but compatibility varies widely between machines. Many desktop CO2 laser engravers can send basic cut and engrave jobs to LightBurn, yet require a separate manufacturer app for autofocus, camera alignment or wireless setup—breaking the workflow and adding extra steps every time a job changes materials or needs repositioning.

Industry buyers researching a 70W laser engraver often discover this gap only after purchase: a listing says “LightBurn compatible,” but autofocus still means picking up a manual gauge, and camera alignment means opening a second piece of software just to preview where a design will land.

Going Beyond Basic LightBurn Compatibility

Many competing desktop laser systems support basic LightBurn functions for cutting and engraving. Advanced features such as autofocus, wireless camera positioning and complete wireless workflow integration, however, are often limited, and may require proprietary software, or are unavailable inside LightBurn itself.

The Monport MEGAS was engineered to provide these advanced functions directly within LightBurn, helping users spend less time switching between applications and more time producing finished products— one of the reasons Monport designed the MEGAS specifically for LightBurn power users.

Autofocus Without Leaving LightBurn

On the MEGAS, autofocus is triggered and confirmed directly inside LightBurn, so operators can set material height and start a job without switching to a separate focusing tool or app. For a 70W laser engraver running frequent material changes—from thin acrylic sheet to thicker basswood board—that single-window workflow removes one of the more repetitive steps in a typical production day.

Wireless Connectivity Simplifies Shop Workflow

The wireless connection also enables operators to send jobs to the machine without repeatedly reconnecting USB cables, making the workflow especially useful in classrooms, shared makerspaces and production environments where multiple computers may access the laser.

The MEGAS connects to LightBurn over Wi-Fi, removing the tethered USB connection many desktop CO2 laser engravers still require. That means the machine can be positioned away from a workstation and run jobs sent wirelessly, a common request among small-shop and classroom users managing limited floor space or shared equipment.

Live Camera Placement Inside LightBurn

An onboard wireless camera streams a live view of the work surface into LightBurn, letting users position and align artwork on pre-printed or irregular material directly on screen instead of manually measuring and test-firing the laser.

From Design File to Finished Product

For many laser users, efficiency is measured by how quickly a design becomes a finished product. With the MEGAS, users can import artwork into LightBurn, position the design using the live wireless camera, activate autofocus with a single click, and begin engraving without leaving the software.

By keeping every major production step inside one interface, the workflow reduces setup time, minimizes alignment errors, and simplifies repeat production for businesses engraving dozens—or even hundreds—of personalized products each day on their desktop CO2 laser engraver.

Real-World Material Performance

To demonstrate production versatility, during internal testing, Monport evaluated the MEGAS across several materials commonly used by Etsy sellers, gift businesses and production workshops:

Plywood — crisp engraved wooden signs with clean edgesAcrylic — polished awards and plaques with sharp detailLeather — high-contrast wallet engraving with minimal scorching

The testing demonstrates that a single desktop CO2 laser engraver can handle multiple product categories without requiring significant workflow changes.

Better ROI for Small Businesses

Monport also compared estimated material costs with typical retail pricing across four popular product categories:

Engraved plywood sign: Approximately $35 retail price with about $5 in material costs.Engraved acrylic award: Approximately $45 retail price with about $8 in material costs.Engraved leather wallet: Approximately $55 retail price with about $12 in material costs.

Based on estimated material costs alone, these products show potential material-cost margins of approximately 75% to 85%, before accounting for labor, packaging, shipping, platform fees and other operating expenses. Monport says the combination of higher-margin products, intelligent batch engraving, and a streamlined LightBurn workflow can help small businesses, Etsy sellers, and Shopify merchants recover their investment more quickly as production scales.

Built for Professional LightBurn Users

While M-Design Hub, Monport’s free Windows and macOS software, offers AI-powered image processing, one-click material settings and intelligent batch engraving, Monport says the MEGAS was equally designed for experienced LightBurn users who prefer complete control over every project.

Supporting both software environments gives creators the flexibility to choose an automated workflow for everyday production or LightBurn’s advanced tools for more complex engraving jobs—a combination Monport believes makes the case for the MEGAS as a best CO2 laser engraver choice regardless of skill level.

“LightBurn has become the workflow that thousands of makers and small businesses rely on every day,” said Monport CEO.

“Our goal with the MEGAS was to eliminate unnecessary software switching by bringing advanced features like autofocus, wireless connectivity and live camera positioning directly into LightBurn. That lets users focus on production instead of setup.”

Explore Advanced LightBurn Features on the MEGAS

Monport is positioning the MEGAS as an entry point for LightBurn users who want to explore the software’s advanced feature set without adding a second app to their workflow. Full setup guides and LightBurn configuration walkthroughs for the MEGAS are available on Monport’s website.

Summer Sale Pricing

As part of Monport’s Summer Sale this July, the MEGAS desktop CO2 laser engraver is available at a special offer price of $2,799.99—the limited-time promotional price on the machine to date. The discount is applied automatically at checkout; no promo code is required. The offer runs for a limited time or while supplies last and includes two complimentary laser marking spray bottles, used to prepare bare metal surfaces such as stainless steel for laser marking.

Availability

The Monport MEGAS 70W desktop CO2 laser engraver is available through Monport’s official website.

About Monport

Founded in 2020 and headquartered in Seattle, Monport designs desktop and industrial CO2 and fiber laser engraving and cutting machines for makers, small businesses and workshops, backed by U.S.-based technical support.

Media Contact:

Monport Laser
Email: official@monportlaser.com
Website: https://monportlaser.com

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Tredence Launches Domain Native Forward Deployed Engineering to Close the Last Mile of Enterprise AI

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The FDE practice builds an elite class of engineers at the intersection of domain expertise and data & AI, solving enterprises’ hardest business problems.

BENGALURU, India and SAN JOSE, Calif., July 27, 2026 /PRNewswire/ — Tredence, the world’s leading data & AI services company, today announced the launch of its Forward Deployed Engineering (FDE) practice, committing to build a dedicated pool of 200 FDEs over the next 12-18 months. Through this practice, the company intends to build the most domain-native engineering capability in the market, helping clients move faster from problem to impact.

Built to tackle high-impact challenges for Fortune 100 enterprises, Tredence’s FDEs are domain specialists first and engineers second. A Retail FDE understands markdown cycles and assortment planning. A supply chain FDE understands network constraints and demand volatility. A revenue growth management (RGM) FDE understands trade spend and price elasticity.

Each Tredence FDE brings that depth to the work of building and scaling agentic systems, applying deep engineering expertise to the business decisions that matter most, from pricing and promotions to the data and semantic foundations that power enterprise operations. They are platform agnostic by design, working across clients’ existing technology stack, including Databricks, Google Cloud, Microsoft, Snowflake, AWS, and leading frontier model providers.

Enterprise AI often struggles at the last mile, where data, systems, and business decisions must come together to create measurable value. Tredence’s Forward Deployed Engineers combine speed, powered by deep AI, data, and engineering expertise, with depth, built through years of domain experience, to turn AI into business outcomes faster.

“Enterprise AI is at an inflection point, and success now depends on combining AI-native engineering with industry depth to turn technology into real business outcomes. Our FDEs are designed to solve the hardest business problems, lead end-to-end AI transformations, and take ownership all the way from business problems to enterprise-scale deployment. That’s the level of accountability enterprise AI needs today,” said Shub Bhowmick, Co-founder and CEO, Tredence.

Why Tredence’s FDE Model Is Different-

More than a decade of deep domain expertise across industries
FDEs bring years of experience in supply chain, customer analytics, built through work with 100+ Fortune 500 clients.AI native engineering as the default way of working
FDEs build with AI from the start, reinforced by Tredence’s AI Forge program, which is centered on AI-first problem solving.Frontline ownership, powered by specialized teams
Tredence FDEs lead from the front, anchoring small, elite teams and owning everything from business problems to enterprise-scale deployment.Hands on depth across hyperscaler, frontier AI, and data platforms
Tredence FDEs help shape the very platforms they build on, with seats on the product advisory teams of leading hyperscalers and ISVs.

About Tredence

Tredence is a global AI and data science solutions provider focused on solving the last-mile problem in AI, the gap between insight creation and value realization. Tredence leverages deep domain expertise, advanced data platforms and accelerators, and strategic partnerships to provide tailored, cutting-edge solutions to its clients. The company has 4,200+ employees across the San Francisco Bay Area, Chicago, Riyadh, Dubai, London, Toronto, and Bengaluru, serving top brands in Retail, CPG, Hi-tech, Telecom, Healthcare, Travel, and Industrials. For more information, please visit www.tredence.com and follow us on LinkedIn.

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Fractus and Geotab settle U.S. patent litigation

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Additional agreements reinforce Fractus’ role in the IoT technologies ecosystem

BARCELONA, Spain, July 27, 2026 /PRNewswire/ — Fractus, a pioneer in antenna technology and patent licensing, today announced that it has reached a settlement with Geotab, resolving the patent infringement litigation filed in the United States District Court for the Eastern District of Texas. The terms of the agreement are confidential.

The settlement is an important milestone for Fractus in the connected fleet and transportation market. It brings an end to the dispute with Geotab and confirms the relevance of Fractus’ patented antenna technology in IoT applications where reliable wireless performance is essential.

Fractus also welcomes the growing list of its IoT licensees, which further strengthens Fractus’ position in the IoT ecosystem and demonstrates the growing value of its technology in fleet management, cargo visibility, and mobile asset monitoring.

Fleet telematics and cargo tracking are expanding quickly as transportation and logistics companies look for better visibility, safety, compliance and efficiency. According to Berg Insight, fleet management systems in active use in North America are forecast to grow from 19.2 million units at the end of 2024 to 33.2 million units by 2029. Berg Insight also expects the global installed base of tracking devices for trailers, containers and other cargo-carrying units to grow from 13.8 million units in 2024 to 26.9 million units by 2029.

In these markets, antenna performance is more than a technical specification. Connected devices must communicate across networks, frequency bands, countries and difficult operating conditions, often within space-constrained designs installed on vehicles or other mobile assets. Fractus’ patented antenna innovations help enable the compact, high-performance, multiband connectivity that these IoT devices require.

“We are very pleased to have reached this resolution with Geotab and to see Fractus’ technology gaining further recognition in the IoT market,” said Jordi Ilario, CEO of Fractus. “Fleet management, trailer monitoring and asset tracking are clear examples of how wireless connectivity is transforming transportation. These recent agreements are an important validation of our innovation, and they encourage us to keep building constructive licensing relationships with companies that value strong technology and intellectual property.”

About Fractus

Fractus is an early pioneer in the application of advanced geometry and mathematics to antenna design. The company’s patented innovations enable compact, high-performance, multiband antennas used across smartphones, IoT devices, network infrastructure, connected health and transportation applications. Fractus holds a portfolio covering more than 40 inventions and licenses its technology to leading companies across the wireless ecosystem.

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