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Energy Harvesting System Market worth $0.94 billion by 2030 – Exclusive Report by MarketsandMarkets™

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DELRAY BEACH, Fla., March 5, 2025 /PRNewswire/ — The energy harvesting system market is expected to reach USD 0.94 billion by 2030 from USD 0.61 billion in 2025, at a CAGR of 9.1% from 2025 to 2030 according to a new report by MarketsandMarkets™. The energy harvesting system is a technology that allows the collection, storage, and conversion of ambient energy sources like solar, thermal, vibration, and radio frequency into electrical power. These systems are extensively used in industries like building & home automation, consumer electronics, industrial automation, transportation, security, and agriculture & smart farming. The market for the energy harvesting system is witnessing noteworthy growth primarily owing to growing needs for self-sustaining and sustainable electronic products, the speedy proliferation of IoT and wireless sensor networks, and growth in ultra-low-power electronics and energy storage devices.

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Browse in-depth TOC on “Energy Harvesting System Market” 
150 – Tables
70 – Figures
300 – Pages

Energy Harvesting System Market Report Scope:

Report Coverage

Details

Market Revenue in 2025

$ 0.61 billion

Estimated Value by 2030

$ 0.94 billion

Growth Rate

Poised to grow at a CAGR of 9.1%

Market Size Available for

2020–2030

Forecast Period

2025–2030

Forecast Units

Value (USD Million/Billion)

Report Coverage

Revenue Forecast, Competitive Landscape, Growth Factors, and Trends

Segments Covered

By Technology, Component, Application, End-use System, Energy Source, Power Capacity and Region

Geographies Covered

North America, Europe, Asia Pacific, and Rest of World

Key Market Challenge

Lack of standardization and compatibility issues

Key Market Opportunities

Growing adoption of sensors in wearable electronics

Key Market Drivers

Rising demand for energy-efficient and sustainable solutions

The building & home automation segment is expected to hold the largest market size during the forecast period.

The building & home automation segment is expected to hold the largest market size in the energy harvesting system market throughout the forecast period due to the growing usage of smart building technologies, energy efficiency regulations, and the high demand for green power solutions. The increasing deployment of smart sensors, automated lighting, HVAC systems, and IoT-enabled devices in modern buildings necessitates reliable, self-sustaining power solutions, driving the demand for energy harvesting systems. Additionally, government policies and sustainability mandates promoting energy-efficient buildings encourage the adoption of energy-harvesting solutions to minimize dependence on traditional power sources and optimize energy consumption. Furthermore, the rising focus on reducing carbon footprints and enhancing sustainability in both residential and commercial buildings has significantly boosted the demand for green power solutions, further accelerating the adoption of energy harvesting technologies. By ensuring continuous and eco-friendly power generation, energy harvesting systems are playing a crucial role in shaping the future of smart and sustainable building infrastructure.

The vibration energy harvesting segment is expected to exhibit the second-highest CAGR during the forecast period.

The vibration energy harvesting segment is expected to exhibit the second-highest compound annual growth rate (CAGR) in the market for energy harvesting systems over the forecast period due to its growing acceptance in industrial, automotive, and infrastructure applications. Vibration energy harvesting technology transforms mechanical vibrations from machinery, vehicles, and structure movements into usable electrical power, and hence, it is appropriate for powering wireless sensors, IoT devices, and remote monitoring systems. The increasing deployment of predictive maintenance technologies across various manufacturing, aerospace, and transport industries is placing pressure on industries to adopt autonomous self-powered sensor networks that have no need to be replaced regularly with batteries. The growth of smart infrastructure applications, such as bridges, railway lines, and highways, further accelerates the adoption of vibration-based energy harvesting technology to improve structure health monitoring and provide real-time data collection capabilities. The automotive sector is also witnessing increased integration of vibration energy harvesters in electric and hybrid vehicles (EVs) to achieve maximum energy efficiency and vehicle performance. Furthermore, piezoelectric, electromagnetic, and electrostatic energy harvesting technologies are improving the efficiency of energy conversion, as well as their applicability in different environments. As industries continue to emphasize energy efficiency and sustainability, the adoption of vibration energy harvesting technology is expected to gain traction, driving market growth.

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North America is expected to hold the largest market size during the forecast period.

North America is expected to hold the largest market size in the energy harvesting system industry throughout the forecast period due to the technological advancements of the region, early adoption of new energy solutions, and high investments in smart infrastructure. Rising demand for sustainable and energy-efficient solutions in industry verticals, including industrial automation, consumer electronics, healthcare, and smart buildings, is driving market expansion. Moreover, the expansion of IoT-based devices and wireless sensor networks across industries, including transportation, defense, and smart cities, also drives market expansion for energy harvesting technologies to a greater extent. Additionally, government support in terms of incentives and regulation for energy efficiency, sustainability, and huge research and development budgetary allocations to renewable energy products are among the drivers of market growth. The presence of top industry players, sophisticated semiconductor fabrication technology, and partnerships between technology companies and research institutions remain to propel technological advancements in energy harvesting technologies. In addition, the growing use of wearable technology, electric vehicles, and industrial automation in North America is driving demand for self-sustaining and battery-free devices.

The major players in the energy harvesting system companies include STMicroelectronics (Switzerland), Microchip Technology Inc. (US), Texas Instruments Incorporated (US), Analog Devices, Inc. (US), Infineon Technologies AG (Germany), Renesas Electronics Corporation (Japan), EnOcean GmbH (Germany), ABB (Switzerland), Honeywell International Inc. (US), Qorvo, Inc. (US).

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Technology

Chef Robotics Physical AI Models Can Now Automate Baked Goods Packing

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SAN FRANCISCO, April 29, 2026 /PRNewswire/ — Chef Robotics, a leader in physical AI for the food industry, today announced that Chef robots can now automate tray assembly for baked goods packing. The application places baked products, such as burger buns, chocolate chip cookies, biscotti, butter cookies, biscuits, fortune cookies, granola bars, rusks, and shortbreads into trays and packaging containers before sealing.

Watch Chef robots in action.

Baked goods packing has historically been difficult to automate for high-mix production. Each item behaves differently on the production line—a granola bar compresses under the wrong grip, while a biscotti or rusk can crack if placed at the wrong angle. Surface textures range from glazed and smooth to crumbly and irregular, and strict presentation requirements leave little room for error. This variability has made it challenging for automation systems to reliably handle baked goods at production speeds, leaving food manufacturers dependent on manual labor and traditional bakery equipment.

To address this, Chef built its baked goods packing application on its existing piece-picking capability, which uses Chef’s AI-powered computer vision and physical AI models trained across diverse real-world production environments. This allows Chef robots to assess each item’s position, shape, and orientation in real time and determine how to pick the items from the pan and place them quickly and precisely without damaging them.

The baked goods packing application supports four distinct placement capabilities.

First, Chef’s vision system detects the angle at which each item sits in the pan and reorients it after picking, placing it on the tray at the exact angle required, regardless of its original position, enabling retail-ready presentation for SKUs that require precise angular placement.

Second, Chef robots can place multiple baked goods into the same packaging container in a single automated pass, completing full tray assembly without manual intervention.

Third, for packaging containers with multiple small compartments, Chef robots can precisely place items into each designated section, including multiple items in the same compartment, using Chef’s AI vision model to detect compartment positions and orientations in real time.

Fourth, Chef’s vision system identifies the exact center of each tray and places every item at a predefined offset from that center, ensuring a uniform, consistent arrangement across every pack regardless of how trays arrive on the conveyor.

For food manufacturers evaluating bakery systems and baked goods packaging automation, the application offers higher throughput, reduced labor dependency, and consistent presentation across shifts. The capability runs on Chef’s existing robotic hardware and software, allowing manufacturers to deploy it without requiring any changes to their production lines.

Chef’s baked goods packing application is available in the U.S., Canada, Germany, and the UK and is included as part of Chef’s robotics-as-a-service (RaaS) pricing model.

About Chef Robotics
Chef is the first company to have commercialized a scalable AI-driven food robotics solution. With over 104 million servings made in production, Chef leverages ChefOS, an AI platform for food manipulation, to offer a Robotics-as-a-Service solution that helps industry-leading food companies increase production volume and meet demand. Headquartered in San Francisco, CA, Chef aims to empower humans to do what humans do best by accelerating the advent of intelligent machines. Visit https://chefrobotics.ai to learn more.

View original content:https://www.prnewswire.com/news-releases/chef-robotics-physical-ai-models-can-now-automate-baked-goods-packing-302756923.html

SOURCE Chef Robotics

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Technology

Chef Robotics Physical AI Models Can Now Automate Baked Goods Packing

Published

on

By

SAN FRANCISCO, April 29, 2026 /PRNewswire/ — Chef Robotics, a leader in physical AI for the food industry, today announced that Chef robots can now automate tray assembly for baked goods packing. The application places baked products, such as burger buns, chocolate chip cookies, biscotti, butter cookies, biscuits, fortune cookies, granola bars, rusks, and shortbreads into trays and packaging containers before sealing.

Watch Chef robots in action.

Baked goods packing has historically been difficult to automate for high-mix production. Each item behaves differently on the production line—a granola bar compresses under the wrong grip, while a biscotti or rusk can crack if placed at the wrong angle. Surface textures range from glazed and smooth to crumbly and irregular, and strict presentation requirements leave little room for error. This variability has made it challenging for automation systems to reliably handle baked goods at production speeds, leaving food manufacturers dependent on manual labor and traditional bakery equipment.

To address this, Chef built its baked goods packing application on its existing piece-picking capability, which uses Chef’s AI-powered computer vision and physical AI models trained across diverse real-world production environments. This allows Chef robots to assess each item’s position, shape, and orientation in real time and determine how to pick the items from the pan and place them quickly and precisely without damaging them.

The baked goods packing application supports four distinct placement capabilities.

First, Chef’s vision system detects the angle at which each item sits in the pan and reorients it after picking, placing it on the tray at the exact angle required, regardless of its original position, enabling retail-ready presentation for SKUs that require precise angular placement.

Second, Chef robots can place multiple baked goods into the same packaging container in a single automated pass, completing full tray assembly without manual intervention.

Third, for packaging containers with multiple small compartments, Chef robots can precisely place items into each designated section, including multiple items in the same compartment, using Chef’s AI vision model to detect compartment positions and orientations in real time.

Fourth, Chef’s vision system identifies the exact center of each tray and places every item at a predefined offset from that center, ensuring a uniform, consistent arrangement across every pack regardless of how trays arrive on the conveyor.

For food manufacturers evaluating bakery systems and baked goods packaging automation, the application offers higher throughput, reduced labor dependency, and consistent presentation across shifts. The capability runs on Chef’s existing robotic hardware and software, allowing manufacturers to deploy it without requiring any changes to their production lines.

Chef’s baked goods packing application is available in the U.S., Canada, Germany, and the UK and is included as part of Chef’s robotics-as-a-service (RaaS) pricing model.

About Chef Robotics
Chef is the first company to have commercialized a scalable AI-driven food robotics solution. With over 104 million servings made in production, Chef leverages ChefOS, an AI platform for food manipulation, to offer a Robotics-as-a-Service solution that helps industry-leading food companies increase production volume and meet demand. Headquartered in San Francisco, CA, Chef aims to empower humans to do what humans do best by accelerating the advent of intelligent machines. Visit https://chefrobotics.ai to learn more.

View original content:https://www.prnewswire.com/news-releases/chef-robotics-physical-ai-models-can-now-automate-baked-goods-packing-302756923.html

SOURCE Chef Robotics

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Air Products to Expand Industrial Gas Supply for Samsung Electronics’ Next-Generation Semiconductor Fab in South Korea

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New investment underscores the company’s long-term commitment to Korea and its leading role in the global semiconductor industry 

LEHIGH VALLEY, Pa., April 29, 2026 /PRNewswire/ — Air Products (NYSE:APD), a world-leading industrial gases company and serving Samsung globally, today announced it has been selected by Samsung to supply industrial gases for its new advanced semiconductor fab in Pyeongtaek, Gyeonggi Province, South Korea.

Under the agreement, Air Products will build, own and operate multiple state-of-the-art production facilities and a bulk specialty gas supply system to supply nitrogen, oxygen, argon, and hydrogen for Samsung’s new semiconductor fab. The new facilities are expected to come onstream in multiple phases from 2028 through 2030.

Air Products has a long track record of executing multiple phase expansions in Pyeongtaek to support Samsung’s growing manufacturing needs. This latest project represents Air Products’ largest investment to date in the semiconductor industry and will establish Pyeongtaek as the company’s single largest operations site globally supporting the electronics industry. 

“Air Products is honored to be selected once again by Samsung and to have their continued confidence as a trusted partner supporting their strategic growth plans,” said SR Kim, President, Air Products Korea. “This significant investment reinforces Air Products’ role as a leading global supplier to the semiconductor industry and underscores our long-standing commitment to supporting our strategic customers with safety, reliability, efficiency and excellent service.”

Air Products has served the global electronics industry for more than 40 years, supplying industrial gases safely and reliably to many of the world’s leading technology companies. The company has operated in Korea for more than 50 years and has established a strong position in electronics and manufacturing sectors.

About Air Products

Air Products (NYSE: APD) is a world-leading industrial gases company in operation for over 85 years focused on serving energy, environmental, and emerging markets and generating a cleaner future. The Company supplies essential industrial gases, related equipment and applications expertise to customers in dozens of industries, including refining, chemicals, metals, electronics, manufacturing, medical and food. As the leading global supplier of hydrogen, Air Products also develops, engineers, builds, owns and operates some of the world’s largest clean hydrogen projects, supporting the transition to low- and zero-carbon energy in the industrial and heavy-duty transportation sectors. Through its sale of equipment businesses, the Company also provides turbomachinery, membrane systems and cryogenic containers globally.

Air Products had fiscal 2025 sales of $12 billion from operations in approximately 50 countries. For more information, visit airproducts.com or follow us on LinkedInXFacebook or Instagram.

This release contains “forward-looking statements” within the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. These forward-looking statements are based on management’s expectations and assumptions as of the date of this release and are not guarantees of future performance. While forward-looking statements are made in good faith and based on assumptions, expectations and projections that management believes are reasonable based on currently available information, actual performance and financial results may differ materially from projections and estimates expressed in the forward-looking statements because of many factors, including the risk factors described in our Annual Report on Form 10-K for the fiscal year ended September 30, 2025 and other factors disclosed in our filings with the Securities and Exchange Commission. Except as required by law, we disclaim any obligation or undertaking to update or revise any forward-looking statements contained herein to reflect any change in the assumptions, beliefs or expectations or any change in events, conditions or circumstances upon which any such forward-looking statements are based.

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SOURCE Air Products

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