KEY FINDINGS The Japan machine vision market is set to record a CAGR of 8.49% during the forecast period, 2021-2026. The enhanced production capabilities have resulted in industries investing in robotic systems.
MARKET INSIGHTS Japan is an eminent player in the production of robots and factory automation systems.For instance, 5 out of the top 10 producers of robots & factory automation systems are Japanese.
Also, they constitute 30% of the market globally.In addition, the market prospects are attributed to the technological leadership in manufacturing.
Besides, automation companies are thriving, given the rising demand for their products.
Further, Japan is considered a leader in deploying robotics and automation in production processes with highly developed robotic sectors and automation technologies. Also, as per the latest IFR report of 2020, the country ranks second globally with 49.9 thousand annual installation industrial robots. Moreover, enhanced financial stability, the growing demand for consumer goods, and favorable government initiatives contribute to market growth. With consumers shifting to online purchases, the warehouses and parcel delivery companies face huge demands, particularly with a rising labor shortage. As a result, companies are investing in logistics robots and automation. Such factors facilitate growth opportunities.
COMPETITIVE INSIGHTS Japan Computer Vision Corporation, Visco Technologies Corporation, Keyence Corporation, Machine Vision Lighting Inc, Linx Corporation, etc., are among the leading market players.
Our report offerings include: • Explore key findings of the overall market
• Strategic breakdown of market dynamics (Drivers, Restraints, Opportunities, Challenges)
• Market forecasts for a minimum of 9 years, along with 3 years of historical data for all segments, sub-segments, and regions
• Market Segmentation cater to a thorough assessment of key segments with their market estimations
• Geographical Analysis: Assessments of the mentioned regions and country-level segments with their market share
• Key analytics: Porter’s Five Forces Analysis, Vendor Landscape, Opportunity Matrix, Key Buying Criteria, etc.
• Competitive landscape is the theoretical explanation of the key companies based on factors, market share, etc.
• Company profiling: A detailed company overview, product/services offered, SCOT analysis, and recent strategic developments
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KEY FINDINGS The Japan industrial robotics market growth is projected to progress at a CAGR of 9.92% during the forecast period, 2021-2026. Japan is the predominant robot manufacturing country in the world, and manufactures 47% of the total robots globally. The labor shortage is one of the key drivers of market growth in...
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The global warehouse robotics market was valued at USD 3,580.32 million in 2019 and it is expected to reach USD 6,858.05 million by 2025, registering a CAGR of 11.54%, during the period of 2020-2025. The emergence of the Industrial Internet of Things (IIoT) and the advent of a network of connected systems are helping industries perform a multitude...
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Japan Robots Market Size, Forecast by Category, Industrial Robots Number, Manufacturers & Shipments This research report covers following Markets, Regions and Segments: 1. Japan Service Robot Market Size and Forecast by Category in (100M yen) Year 2015, 2020, 2025 & 2035. Categories...
The global machine vision market is expected to reach USD 19.22 billion by 2025, according to a new report by Grand View Research, Inc. The ability of machine vision systems to process a large amount of information in a fraction of seconds is a major factor driving the market growth. The quick processing ability of machine vision systems is...
In 2016, the size of the Japan commercial robotics market (spending-based) totaled 914.7 billion yen. IDC predicts that the market will continue to grow at a CAGR of 18.3% from 2016 to 2021, and by 2021, the market size will reach 2.1236 trillion yen. In 2017, the commercial robotics market in general was driven by the industrial robot solution...
Industrial workers and warfighters can perform at a higher level when wearing anexoskeleton. Exoskeletons can enable aerospace workers to work more efficiently whenbuilding or repairing airplanes. Industrial robots are very effective for ship buildingwhere heavy lifting can injure workers. Exoskeleton devices have the potential to be...
Industrial Robot
Robotics
Aerospace
Shipbuilding
China
Europe
South Korea
Japan
United States
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