Robotics - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2025 - 2030)
商品番号 : SMB-77150
| 出版社 | Mordor Intelligence |
| 出版年月 | 2025年9月 |
| ページ数 | 210 |
| 価格タイプ | シングルユーザライセンス |
| 価格 | USD 4,750 |
| 種別 | 英文調査報告書 |
ロボティクス市場レポートは、ロボットの種類(産業用ロボット、サービスロボットなど)、コンポーネント(ハードウェア、ソフトウェア、サービス)、用途(製造・組立、物流・倉庫、医療・外科など)、エンドユーザー産業(自動車、電子機器・半導体、食品・飲料など)、および地域別にセグメント化されています。市場予測は金額(米ドル)で提供されます。
世界のロボット市場は2025年に736.4億米ドルに達し、2030年までに1,853.7億米ドルに拡大し、20.28%の健全な年平均成長率(CAGR)につながると予測されています。この成長軌道は、先進国における構造的な労働力不足、自動化ハードウェアの体系的なコストデフレ、およびロボットをオプションの資本財ではなく戦略的インフラとして扱う政府支援の国内回帰プログラムを反映しています。大企業は賃金圧力の中で生産を安定させるために導入を加速する一方で、中小企業は現在、協働システムやRobotic-as-a-Service(サービスとしてのロボット)契約を通じてアクセスを獲得しています。地域的な勢いは変化しており、アジア太平洋地域は数量面で主導的な地位を維持していますが、ソブリンファンドがテクノロジー主導の多角化を追求する中、中東が最も速いペースで成長しています。供給側では、部品コストの低下とローコードプログラミングプラットフォームにより、バリューチェーンがソフトウェアインテリジェンスへと再編され、人工知能ベースの制御を習得したベンダーに継続的な収益源が確立されます。サイバーセキュリティの弱点、輸出管理の摩擦、小規模ユーザー間のスキル格差は依然としてブレーキ力となっていますが、安全な導入とライフサイクルサポートを中心に、専門的なサービスニッチも開拓しています。
Robotics Market Analysis by Mordor Intelligence
The global robotics market reached USD 73.64 billion in 2025 and is forecast to expand to USD 185.37 billion by 2030, translating into a healthy 20.28% CAGR. This growth trajectory reflects structural labor shortages in advanced economies, systematic cost deflation in automation hardware, and government-backed reshoring programs that treat robots as strategic infrastructure rather than optional capital goods. Large enterprises accelerate adoption to stabilise production amid wage pressure, while small and medium firms now gain access through collaborative systems and Robot-as-a-Service contracts. Regional momentum is shifting: Asia-Pacific retains volume leadership, but the Middle East shows the quickest pace as sovereign funds pursue technology-driven diversification. On the supply side, declining component costs and low-code programming platforms reshape the value chain toward software intelligence, setting up recurring revenue streams for vendors that master artificial-intelligence-based control. Cyber-security weaknesses, export-control friction, and skill gaps among smaller users remain braking forces, yet they also open specialist service niches, especially around secure deployment and lifecycle support.

Key Report Takeaways
- By robot type, industrial robots led with 71.4% revenue share in 2024; collaborative robots are projected to post a 26.71% CAGR to 2030.
- By component, hardware captured 63.8% of the global robotics market share in 2024, while software is expected to rise at a 23.62% CAGR through 2030.
- By application, logistics and warehousing accounted for 39.6% share of the global robotics market size in 2024; medical and surgical robots are advancing at a 21.93% CAGR to 2030.
- By end-user industry, automotive held 29.2% share in 2024, whereas healthcare providers are forecast to expand at a 22.05% CAGR up to 2030.
- By geography, Asia-Pacific commanded 38.1% of the global robotics market share in 2024, while the Middle East registers the fastest expansion at a 21.84% CAGR between 2025 and 2030.
Drivers Impact Analysis
| Driver | (~) % Impact on CAGR Forecast | Geographic Relevance | Impact Timeline |
|---|---|---|---|
| Rising labour-shortage led automation demand | +4.2% | Global, with acute impact in North America, Europe, Japan | Medium term (2-4 years) |
| Declining average robot price per functional hour | +3.8% | Global, particularly emerging markets in APAC and MEA | Short term (≤ 2 years) |
| Proliferation of low-code robot-programming platforms | +2.9% | Global, with early adoption in North America and Europe | Medium term (2-4 years) |
| Fiscal incentives for reshoring manufacturing in G-7 | +3.1% | North America, Europe, Japan | Long term (≥ 4 years) |
| Warehouse AMR roll-outs by e-commerce 3PLs | +3.7% | Global, concentrated in major e-commerce markets | Short term (≤ 2 years) |
| Nation-level humanoid R&D missions | +2.5% | China, Japan, South Korea, with spillover to global markets | Long term (≥ 4 years) |
Robotics Market Trends
Service Robots to Lead the Market During the Forecast Period
- Professional robots are primarily utilized outside manufacturing facilities in various professional settings. While industrial robots focus on automating manufacturing tasks, professional service robots—diverse in both form and function—take on menial, dangerous, time-consuming, or repetitive tasks. This automation allows human workers to engage in more cognitive functions.
- When businesses deploy professional service robots, safety is paramount. Instead of replacing human workers, these robots manage hazardous tasks, enabling humans to concentrate on cognitive functions and stay safe. For instance, in the defense sector, professional service robots are designed to shield soldiers from harm during combat.
- Advancements in technology have largely enhanced the functionality of security robots. These robots can be deployed in challenging scenarios for surveillance, with actions determined by sophisticated analytics. By integrating various sensors, professional robots have become adept at environmental analysis, yielding more dependable data. This evolution has notably bolstered their roles in security and patrolling.
- In addition, field robots are gaining traction in agriculture and construction. These robots are engineered to undertake tasks that are often challenging, hazardous, and time-intensive for humans, including bricklaying, demolition, and crop planting.
- Field robots, equipped with sensors like cameras, lidar, and GPS, autonomously navigate and perceive their surroundings. These advantages have spurred numerous manufacturers to develop field robots.
- The demand for domestic robots, particularly assistance, companion, and entertainment robots, has surged. This uptick is largely attributed to an aging population and a growing number of individuals facing mobility challenges.
- The World Health Organization (WHO) highlights a global trend: people are living longer, with many expecting to reach their sixties and beyond. This trend is universal, with every nation witnessing an increase in the number and proportion of older individuals. Projections indicate that by 2030, one in six people worldwide will be aged 60 or even older, with this demographic swelling from 1 billion in 2020 to 1.4 billion. By 2050, this number is set to double to 2.1 billion, and those aged 80 and above are expected to triple, reaching 426 million.
- According to the IFR, robots for domestic tasks constituted the largest group of consumer robots. Vacuuming and other indoor domestic floor cleaning robots are currently the most used applications. In 2023, the shipments of robots for domestic tasks and entertainment robots were anticipated to reach 48.6 million and 6.7 million, respectively. Such developments are expected to drive the market’s growth in the future.
Asia Pacific Expected to Witness Significant Growth
- China is leading the global manufacturing industry and creating significant market demand. More Chinese manufacturers are adopting Industry 4.0 solutions to improve efficiency, driving further market growth.
- China’s manufacturing sector is quickly moving toward Industry 4.0, with the country being a key player in the digital revolution. China focuses on innovation and boosting competitiveness by leveraging its strong industrial base and technological knowledge. Under initiatives like “Made in China 2025,” the Chinese government aims to bolster the nation’s manufacturing prowess and foster high-tech industries. Such initiatives are likely to drive the growth of the market.
- In addition, South Korea, bolstered by a robust manufacturing sector and steadfast government support for tech innovation, stands at the forefront of adopting industrial automation. With its technological strides and industrial might, the country is poised to excel and significantly bolster its economic standing in this market.
- South Korea’s thriving automotive sector presents promising prospects for expanding the market studied. South Korean car manufacturers, including Kia and Hyundai, are ramping up production capacities and significantly investing in R&D, buoyed by rising global interest in electric vehicles and government support for bolstering domestic manufacturing.
- The automotive industry in Taiwan has experienced significant growth in recent years. With a focus on electric vehicles and smart mobility solutions, Taiwan positioned itself as a key player in the global automotive industry. In addition, Taiwan’s expertise in semiconductor manufacturing allowed it to supply critical components for advanced driver-assistance systems (ADAS) and autonomous vehicles.
- In addition, Japan’s automotive sector, which historically contributes to over 89% of the nation’s GDP, is undergoing a significant shift. Driven by Japan’s ambitious targets of achieving net-zero emissions by 2050 and a 46% reduction by 2030, electric vehicles (EVs) are gaining traction.
- Further emphasizing this shift, Japan’s Ministry of Economy, Trade, and Industry (METI) set an even more ambitious goal under the Green Growth Strategy: achieving a 100% sales share for EVs by 2035. Notably, hybrid electric vehicles (HEVs) are already a significant player, accounting for nearly 30% of total vehicle sales in Japan.
Robotics Industry Overview
In the robotics market, global and regional players vie for dominance in a fiercely competitive arena. Competition hinges on factors like pricing, product offerings, and market share, as well as the vigor with which firms engage in the market. Leading companies wield significant influence through their R&D and consolidation efforts. However, the market is marked by high penetration and growing fragmentation.
Innovation is key to securing a lasting competitive edge in this landscape. Established players strategically focus on product differentiation and expand their market reach to maintain their positions. Acquisitions, partnerships with industry participants, and new product/service rollouts have been key competitive strategies exhibited by vendors in the market.
Some of the major players in the market are ABB Ltd, Yaskawa Electric Corporation, Denso Corporation, Fanuc Corporation, and KUKA AG, among others. Competition hinges on factors like pricing, product offerings, and market share, as well as the vigor with which firms engage in the market. Leading companies wield significant influence through their R&D and consolidation efforts.
Additional Benefits:
- The market estimate (ME) sheet in Excel format
- 3 months of analyst support
Table of Contents
1 INTRODUCTION
1.1 Study Assumptions and Market Definition
1.2 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET INSIGHTS
4.1 Market Overview
4.2 Industry Attractiveness – Porter’s Five Forces Analysis
4.2.1 Bargaining Power of Suppliers
4.2.2 Bargaining Power of Buyers
4.2.3 Threat of New Entrants
4.2.4 Threat of Substitute Products
4.2.5 Intensity of Competitive Rivalry
4.3 Industry Value Chain Analysis
4.4 Impact of COVID-19 and Other Macroeconomic Trends
4.5 Evolution of Collaborative Robots in the Industrial Ecosystem
5 MARKET DYNAMICS
5.1 Market Drivers
5.1.1 Advent of Industry 4.0 Driving Automation
5.1.2 Increasing Emphasis on Safety
5.1.3 Digital Transformation Initiatives Undertaken by SMES
5.2 Market Restraints
5.2.1 High Initial Investment and the Requirement of Skilled Workforce
6 MARKET SEGMENTATION
6.1 By Technology Type
6.1.1 Industrial
6.1.2 Service
6.2 By End User
6.2.1 End Users of Industrial Robots
6.2.1.1 Automotive
6.2.1.2 Food & Beverage
6.2.1.3 Electronics
6.2.1.4 Other End Users of Industrial Robots
6.2.2 End Users of Service Robots
6.2.2.1 Logistics
6.2.2.2 Military and Defense
6.2.2.3 Medical and Healthcare
6.2.2.4 Other End Users of Service Robots
6.3 By Geography***
6.3.1 North America
6.3.2 Europe
6.3.3 Asia
6.3.4 Australia and New Zealand
6.3.5 Latin America
6.3.6 Middle East and Africa
7 COMPETITIVE LANDSCAPE
7.1 Company Profiles
7.1.1 ABB Ltd
7.1.2 Yaskawa Electric Corporation
7.1.3 Denso Corporation
7.1.4 Fanuc Corporation
7.1.5 KUKA Aktiengesellschaft
7.1.6 Kawasaki Heavy Industries Ltd
7.1.7 Toshiba Corporation
7.1.8 Panasonic Corporation
7.1.9 StAubli International AG
7.1.10 NACHI-FUJIKOSHI Corp.
7.1.11 Yamaha Motor Co. Ltd
7.1.12 Seiko Epson Corporation
7.1.13 Comau SpA (Stellantis NV)
7.1.14 Omron Adept Technologies Inc.
7.1.15 Intuitive Surgical Inc.
7.1.16 Stryker Corporation
7.1.17 Irobot Corporation
7.1.18 Softbank Robotics
8 INVESTMENT ANALYSIS
9 FUTURE OF THE MARKET
Mordor Intelligenceについて
Mordor Intelligence(モードーインテリジェンス)は2014年に設立されたインドの調査会社です。20の産業を対象に継続的に調査・出版が行っており、これまで世界の企業4000社以上に利用されています。日本からのレポートのご注文・ご購入相談はお気軽にお問い合わせください。
ライセンス別価格表
調査会社の事情により予告なしに変更されることがございます。最新の状況およびその他のパターンについてはお問い合わせください。
ライセンスタイプ1
| シングルユーザ | マルチユーザ | サイト | コーポレート |
| USD4,750 | USD5,250 | USD6,500 | USD8,750 |
ご購入に関するご案内
価格・納期について
- 価格
- ウェブサイトに記載の外貨(定価)を見積日のTTSレートで換算後消費税を加えた金額が弊社からの請求金額になります。見積金額はレート変動に関係なく見積書発行日より2週間有効です。手数料(ハンドリングチャージ)無料。
- ライセンス
- シングルユーザライセンス
- 1名のみご利用が可能です。
- 納品物:PDF(印刷不可・コピー&ペースト不可)・Excel(印刷不可)
- チームユーザライセンス
- 同一企業内7名までご共有可能です。
- 納品物:PDF(印刷可・コピー&ペースト可)+Excel (印刷可)
- サイトライセンス
- 同一企業・同一住所内人数無制限ご共有可能です。
- 納品物:PDF(印刷可・コピー&ペースト可)+Excel (印刷可)
- コーポレートライセンス
- 一企業および関連企業内人数無制限でご共有可能です。
- 納品物:PDF(印刷可・コピー&ペースト可)+Excel (印刷可)
- シングルユーザライセンス
- 納品形態
- Eメール
- 納期
- ご注文後3-4営業日
ご注文方法
- レポートページ内のお問い合わせフォームより見積もりをご請求ください。確認次第見積書と発注書をお送りいたします。既に弊社の見積書をお持ちの場合にはEメールまたはFAXでご注文ください。
その他
- 商品の性質上、ご注文後のキャンセル/返品/交換はできません。ご了承ください。
最新出版レポート