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Painting Robot Market worth $5.8 billion by 2029 – Exclusive Report by MarketsandMarkets™

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CHICAGO, June 28, 2024 /PRNewswire/ — The Painting Robot market is projected to grow from USD 3.1 billion in 2024 and is estimated to reach USD 5.8 billion by 2029; it is expected to grow at a Compound Annual Growth Rate (CAGR) of 13.1% from 2024 to 2029 according to a new report by MarketsandMarkets™. The growth of the Painting Robot market is driven by increasing preference for automated painting solutions in aerospace, furniture, and construction industries, integration of advanced technologies such as machine learning, computer vision, and artificial intelligence.

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Browse in-depth TOC on “Painting Robot Market” 

215 – Tables
73 – Figures
287 – Pages

Painting Robot Market Report Scope:

Report Coverage

Details

Market Revenue in 2024

$ 3.1 billion

Estimated Value by 2029

$ 5.8 billion

Growth Rate

Poised to grow at a CAGR of 13.1%

Market Size Available for

2020–2029

Forecast Period

2024–2029

Forecast Units

Value (USD Million/Billion)

Report Coverage

Revenue Forecast, Competitive Landscape, Growth Factors, and Trends

Segments Covered

By Mounting Type, Robot Type, Function, Payload, Reach, Paint Applicator, End-user Industry and Region

Geographies Covered

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

Key Market Challenge

Cybersecurity risks and potential vulnerabilities in robotic systems

Key Market Opportunities

Rising labor costs and shortage of workers

Key Market Drivers

Widespread adoption of robotic painting systems by automotive manufacturers

By mounting type, Rail Mounted Painting Robot segment is projected to grow at a high CAGR of Painting Robot market during the forecast period.

In the aerospace industry, rail mounted painting robots are becoming increasingly prevalent in aircraft manufacturing facilities due to their ability to provide precise control over paint thickness and coverage. These robots play a crucial role in painting various components such as fuselages, wings, and other critical parts of aircraft, ensuring compliance with stringent quality standards. The global aerospace industry has been experiencing continuous growth over the past few years, driven by increasing air passenger traffic, growing demand for commercial aircraft, and innovations in aircraft technology. The Aerospace Technology Institute (ATI) projects that the global market for new aircraft deliveries will reach an estimated value of USD 6.3 trillion by 2050. As aircraft production ramps up to meet the growing global demand, the need for rail mounted painting robots will correspondingly increase. The aerospace industry includes sectors such as space exploration and satellite manufacturing, which also significantly contribute to the demand for rail mounted painting robots.

Collaborative Robots segment in Robot Type will account for highest CAGR during the forecast period.

Collaborative robots are gaining traction in the realm of painting applications, particularly in low-volume production scenarios. Their inherent flexibility allows easy adaptation to various painting tasks, making them well-suited for environments requiring frequent production changes. Cost-effectiveness is a notable advantage, as cobots offer an affordable alternative to traditional industrial robots, catering to smaller businesses with limited budgets. The user-friendly nature of cobots facilitates quick programming without extensive robotics expertise, reducing deployment time and training costs. Safety is paramount, with cobots designed for collaboration alongside human workers, negating the need for extensive safety measures common in traditional robotic setups. Their compact size and lighter build contribute to space efficiency, addressing constraints often encountered in low-volume production settings.

Up to 10 kg Painting Robot in Payload segment in Painting Robot market will account for the highest CAGR during the forecast period

Payload capacity of less than 10 kg indicates that the robot is capable of handling objects or components weighing less than 10 kg. Painting robots with a payload capacity of less than 10 kg are typically designed for applications that involve painting small to medium-sized components or objects. These robots are equipped with painting tools, such as spray guns or brushes, and are programmed to apply paint or coatings onto various surfaces with precision and consistency. Their lightweight payload capacity allows them to handle delicate or intricate components with ease, ensuring accurate paint application without compromising the integrity of the object.

1,000 MM TO 2,000 MM Painting Robot in Reach segment in Painting Robot market will account for largest market share in the forecast timeline

The 1,000 mm to 2,000 mm reach segment offers a various advantage in terms of optimizing efficiency and safety in painting processes. The ability of such robots to reach obstacles eliminates the need for manual repositioning, streamlining production lines.  Their reach allows for painting tasks to be performed from a safe distance, minimizing worker exposure to harmful fumes or hazardous materials. In industries such as automotive manufacturing, painting robots with a reach of 1,000 mm to 2,000 mm are in high demand. These robots are capable of painting larger components such as car bodies, doors, and hoods with precision and efficiency.

Painting in Function segment is expected to account for the largest share during the forecast period.

In various industrial settings, painting robots play a pivotal role due to their multifaceted design and functionality. The mechanical body provides the framework for precise movement and positioning, ensuring accurate application of paint or coatings on diverse surfaces. Equipped with sensors, these robots detect environmental variables and adjust painting parameters, thus enhancing efficiency and quality control. The control unit orchestrates the robot’s actions, synchronizing movement and painting processes seamlessly. Subsystems such as the man-machine interaction interface facilitate intuitive operation and programming, empowering operators to optimize painting tasks with ease.

Atomizers in Paint Applicator segment in Painting Robot market will account for largest share during the forecast period

The demand for atomizer painting robots is driven by the industry’s need to optimize production processes, reduce costs, and enhance product quality. The integration of atomizer painting robots offers real-time sensing capabilities that allow for immediate detection and correction of paint-quality issues during application. This proactive approach minimizes the occurrence of improperly painted parts, thereby reducing the need for subsequent rework and scrap. Atomizer painting robots enable consistent and precise paint application, leading to higher quality finishes and improved customer satisfaction. The demand for advanced paint atomization technology in industrial painting processes has spurred companies like ABB (Switzerland), DURR AG (Germany), and LACTEC GMBH (Brazil) to develop cutting-edge solutions personalized to meet the evolving needs of manufacturers

Furniture in end-user industry segment in Painting Robot Market will account for the highest CAGR by 2029.

The integration of modern technology with traditional woodworking practices over the past century has significantly enhanced the efficiency and quality of furniture production. Factories producing chairs and other furniture items in large quantities have increasingly turned to automation to maintain market leadership. Robots, specializing in tasks such as spraying paint, sanding, and inspecting have transformed furniture production by increasing productivity and ensuring consistent quality. CMA Robotics is driving innovation in the wood industry by providing advanced painting robots tailored specifically for this sector.  By leveraging the advanced technologies, such as 3D vision systems, the company has created complete systems for painting panels, doors, and furniture accessories. As manufacturers seek to maintain market leadership and meet consumer demands for superior products, they are increasingly turning to industrial robots designed specifically for painting applications.

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Asia Pacific will account for the highest CAGR during the forecast period.

The aging population in countries such as Japan and China has resulted in rising labor costs, accelerating the demand for automation. The aging population is also attracting companies to invest in Asia Pacific. The presence of some of the most prominent players in the painting robot market space, such as FANUC Corporation (Japan), Yaskawa Electric Corporation (Japan), and DENSO Corporation (Japan), is another major factor driving the market in this region. China is at the forefront of the painting robot industry, driven by its expansive manufacturing sector, rapid industrialization, and significant investments in automation technology. As the largest manufacturing hub in the world, China is leveraging painting robots to enhance production efficiency, improve product quality, and address labor challenges. As the region continues to transform and embrace smart manufacturing practices, the demand for painting robots is expected to rise.

Key Players

Key companies operating in the Painting Robot companies are ABB (Switzerland), FANUC CORPORATION (Japan), KUKA AG (Germany), YASKAWA ELECTRIC CORPORATION (Japan), Kawasaki Heavy Industries, Ltd. (Japan), DURR AG (Germany), Epistolio (Italy), krautzberger (Germany), CMA robotics (Italy), Stäubli International AG. (Switzerland), among others.

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Browse Adjacent Market: Semiconductor and Electronics Market Research Reports &Consulting

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Industrial Robotics Market Size, Share and Industry Growth Analysis Report & Statistics by Type (Traditional, Collaborative), Component, Payload (Upto 16.00 Kg, 16.01-60.00 Kg, 60.01-225.00 Kg, More than 225 Kg), Application (Handling, Dispensing, Processing), End Use Industry and Region – Global Forecast to 2028

Collaborative Robot Market Size, Share, Statistics and Industry Growth Analysis Report by Payload (Up to 5 kg, 5-10 kg, 10-25 kg, & More than 25 kg), Application (Handling, Assembling & Disassembling, Dispensing), Industry (Automotive, Electronics, Metals & Machining) & Region – Global Growth Driver and Industry Forecast to 2030

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Robot End Effector Market Size, Share, Statistics and Industry Growth Analysis Report by Type (Grippers, Welding Guns, Tool Changer, Clamps, Suction Cups, Deburring, Soldering, Milling, & Painting Tools), Robot Type (Traditional, Collaborative), Application, Industry & Region – Global Growth Driver and Industry Forecast to 2028

Top Robotics Market Size, Share and Industry Growth Analysis Report by Top Industrial Robotics (Articulated, SCARA, Cartesian, Parallel, Collaborative), Top Service Robotics (Logistics, Domestic, Medical, Defense, Rescue, and Security) End User and Region- Global Growth Driver and Industry Forecast to 2025

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Statement – Leaders’ call on the fight against cancer

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ÉVIAN, France , June 16, 2026 /CNW/ – “We, the Leaders of the G7, reaffirm our commitment to accelerate the fight against cancer. Partner countries of the G7, Brazil, Egypt, India, Kenya, and the Republic of Korea, also support this call on the fight against cancer.

Cancer kills nearly 10 million people each year worldwide and new cases are projected to increase by 80 per cent globally by 2050, given the aging of the population and its interactions with environmental and behavioural risk factors, placing an ever-greater burden on societies, health systems and economies. Improvements in access to cancer prevention – including through screening, diagnosis and care – can and should be made. While major scientific advances have been achieved in several critical areas, progress should be accelerated by alignment of research efforts and faster translation of innovation into care. In this regard, we welcome that such advances have brought the elimination of cervical cancer within reach and we will accelerate our efforts to that end.

We are determined to deepen international scientific cooperation, close persistent gaps in prevention and early detection, and ensure that progress in oncology reaches every patient. While acknowledging our existing financing efforts and the shared global responsibility, where we have taken a leadership role, we commit to strengthening our endeavours to advance cancer research and development.

We commend the scientific advances made through international, regional and national initiatives. We have made concrete progress on aligning our cancer research programmes, strengthening collaboration between leading cancer institutes and advancing interoperable data standards for paediatric and adolescent cancers.  

Accelerating international data access for paediatric, adolescent and young adult cancers

We recognise that no single country possesses sufficient data to generate robust evidence across the full range of paediatric, adolescent and young adult tumour types. Building on existing international, regional and national initiatives – in accordance with our legislation, priorities, capacities and resources, and in compliance with applicable rules on privacy, data protection and intellectual property rights – we intend to work towards:

Promoting collaboration between existing data resources and programmes, where appropriate, to bridge national registries, advance interoperability standards and enable responsible cross-border data collaboration, in accordance with applicable legal and regulatory frameworks while respecting national competences.Supporting large-scale, multi-dimensional data integration, including clinical, genomic and imaging data, which enables safe and secure data use without the necessity for direct data transfer, drawing on artificial intelligence, where appropriate and according to legal regulatory frameworks.Building on existing international, regional and national initiatives to avoid duplication, close gaps and strengthen international research collaboration for paediatric, adolescent and young adult cancers.

Intensifying our fight against cancers with poor prognosis

We recognise that mortality from cancers with poor prognosis is one of the foremost global scientific challenges. Building on existing international, regional and national initiatives, we intend to work towards:

Supporting research on cancers with poor prognosis and the work towards establishing a shared international definition and research agenda for cancers with poor prognosis, recognising them as a major global challenge.Setting ambitious targets for the roll out of screening programmes and for the diagnosis of more cancers at stage 1, as appropriate within national health systems and country contexts, to improve survival rates for cancers with poor prognosis, and in particular to significantly reduce lung cancer mortality in the next ten years.Fostering innovative international research programmes, improving cooperation on clinical trials and accelerating the translation of scientific advances – including through digital technologies, artificial intelligence and quantum research – into clinical practice for patients.

Strengthening access to quality cancer care for all

We recognize that access to quality cancer care for all remains a pressing challenge. We intend to work towards:

Supporting country-led efforts to strengthen resilient and self-reliant health systems capable of delivering high-quality cancer care for all.Encouraging the development of comprehensive cancer centres, as anchors of research excellence, care quality and education internationally.Promoting the secure, responsible and trustworthy use of evidence-based digital technologies, artificial intelligence and quantum research to improve early detection, support clinical decision-making, strengthen palliative care and expand the reach of evidence-based care for all, while preserving patients’ privacy.

We will remain engaged and review progress on these commitments.

This call for action reflects the outcome of the discussion between G7 members, benefiting from productive exchanges of views with partner countries.”

This document is also available at https://pm.gc.ca

SOURCE Prime Minister’s Office

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Insight Global Expands Global Operations with New Team in Bogotá, Colombia

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Expansion strengthens operational capabilities and supports the company’s continued global growth

ATLANTA, June 16, 2026 /PRNewswire/ — Insight Global today announced the expansion of its global operations with the addition of a capability center in Bogotá, Colombia, the latest in a series of global expansion efforts to support clients and consultants.

The Bogotá center, which officially launched on June 1, supports a wide range of functions for the global enterprise, including corporate, client, and consultant delivery functions. With over 1,500 active workers on projects in Latin America, the Bogotá teams will serve as an integral function to ensure the same excellence in employee, client, and consultant experience that Insight Global is known for around the world.

“This location is such a strategic play for us at Insight Global. It will serve as an extension of our middle and back-office functions as well as being our hub for Latin American Operations,” said Chris Abbeduto, Vice President – Global Operations. “The rapid growth that we continue to see for nearshore capabilities really drives the need for a regional center of excellence in LATAM, and we couldn’t be more excited with the amazing talent pool and cultural fit that we see in Colombia.”

The initiative has been more than a year in the making and represents a strategic investment in Insight Global’s future. The Bogotá team is comprised of fully bilingual Insight Global employees fluent in both Spanish and English who are fully integrated into the company’s culture, systems, and training programs from day one. Bogotá was selected in part for its strong talent market and alignment with U.S. business hours, enabling seamless collaboration across teams.

Insight Global’s Staffing, Consulting, and AI services are fulfilled by nearly 40,000 employees in over 40 countries for over 3,200 companies around the world.

To learn more about Insight Global’s international capabilities, visit here.

About Insight Global

Insight Global is an international talent and consulting company that delivers business outcomes in an ever-changing world. We obsess over solving problems and building solutions that move our customers further, faster.

With access to top talent in more than 50 countries, our tech-enabled recruiters can build teams quickly. Our technical experts across Cloud, AI, Data, Enterprise Operations, and Applied Engineering deliver solutions tailored to each customer’s needs. As those needs evolve, so do we.

As we evolve, though, we stay true to our purpose: to develop our people personally, professionally, and financially so they can be the light to the world around them. It shows up in everything we do, from investing in our people to delivering results for our customers to making a meaningful impact in our communities.

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SOURCE Insight Global

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Opsera Launches BrickForge by Opsera, a Purpose-Built AI Operational Command Center for Enterprise Data Teams, on Databricks Marketplace

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Built on the Databricks platform, BrickForge delivers a unified operational command center for Databricks environments

SAN FRANCISCO, June 16, 2026 /PRNewswire/ — Databricks Data + AI Summit – Opsera, the leader in AI-powered software delivery, today announced the availability of BrickForge on Databricks Marketplace, an open marketplace for data, analytics, and AI, powered by OpenSharing. A purpose-built AI Application, BrickForge gives enterprise data teams what they have been missing: a native command center to observe, diagnose, fix, and govern their entire Databricks estate — without adding infrastructure or touching business data.

Opsera will showcase BrickForge at the Databricks Data + AI Summit, Booth #223. To learn more, visit opsera.ai/brickforge.

The trigger is real. A recent Databricks State of AI Agents report stated that 80% of databases on its platform are now created by agents, not humans. As organizations produce more data products and pipelines alongside this agentic growth, operational complexity grows with it — compliance posture drifts, SQL workloads accumulate security exposure, recovery plans go untested, and deployments introduce configuration risk.

BrickForge addresses that through the BrickForge Operational Loop — a four-stage continuous process for governing Databricks estates at the pace of AI:

Observe: Live Databricks health monitoring across every cluster, job, Delta Live Tables (DLT) pipeline, warehouse, and AI endpoints. When something drifts or degrades, teams see it before it becomes an incident. No log-diving. No waiting for users to report errors.

Diagnose: AI-assisted root-cause analysis that surfaces the exact issue — configuration drift, a YAML delta, a SQL vulnerability, a compliance control slipping — with prioritized remediation options before engineers are paged.

Fix: Human-authorized remediation in minutes, not hours. Declarative Automation Bundles (DABs) generation, 3-stage YAML validation, multi-environment promotion and migration — every action is version-controlled, auditable, and executed with explicit confirmation.

Govern: Continuous posture monitoring against SOC 2, HIPAA, PCI-DSS, and ISO 27001. Per-control verdicts, evidence citations, audit-ready reporting, AI-generated Disaster Recovery plans, workspace replication, and executable RTO/RPO drills — so compliance and resilience are always current, not a fire drill.

“The way enterprises operate their data estate hasn’t kept pace with how fast AI agents are generating pipelines and products,” said Kumar Chivukula, co-founder and CEO of Opsera. “Bringing BrickForge to the Databricks Marketplace gives data teams an operational command center to observe, diagnose, remediate, and govern — with compliance, policy, operational health and disaster recovery built in.”

BrickForge runs natively inside a customer’s existing Databricks tenant under a Zero Business Data Contact principle — evaluating metadata and infrastructure patterns, not row-level data. No new infrastructure. No data egress Data Processing Agreement (DPA). No new vendor trust boundary. What typically takes weeks of security reviews and months of architecture approvals is compressed to days.

“Customers consistently ask us for easier, more secure ways to discover, access, and share data and AI assets across their organizations and ecosystems,” said Stephen Orban, SVP, Product Ecosystem & Partnerships at Databricks. “By bringing BrickForge to the Databricks Marketplace, Opsera and Databricks are helping our joint customers accelerate innovation and unlock more value from their data on an open, governed platform.”

BrickForge extends the company’s AI-SDLC platform — which includes the Forge AI software factory — to enterprise data teams, adding operational governance and intelligence to the full software and data delivery lifecycles.

About Opsera 
Opsera helps enterprises operationalize AI-driven software delivery through its AI-SDLC platform, combining intelligent orchestration, operational intelligence, and an open ecosystem of AI tools and partners. By understanding the intent and context of development workflows, Opsera empowers teams to embrace spec-driven development and leverage agentic workflows to automate complex pipelines safely. By helping customers navigate their AI journey at their own pace, Opsera enables organizations to govern, measure, and scale AI-generated software with confidence.

Media Contact:
Terri Douglas
Catapult PR-IR
tdouglas@catapultpr-ir.com

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SOURCE Opsera

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