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Azbil Corp
Tokyo, Japan
A
10001+ Employees
1906
Key takeaway
Azbil Telstar specializes in the manufacture and sale of pharmaceutical equipment that requires advanced containment technology and sterile environments. Their offerings include industrial automation control and monitoring systems, highlighting their expertise in factory and process automation solutions.
Reference
Product
Industrial Automation Control and Monitoring Systems and Software | Products | Azbil Corporation (former Yamatake Corporation)
WinRoad RTS
Tokyo, Japan
A
1-10 Employees
2019
Key takeaway
The company is a specialized robot technology provider for the Middle East and Africa, offering support for developing custom robotic systems and starting robotic businesses.
Reference
Core business
Robot Technology Provider | WinRoad RTS | Japan
A robotic company specializes in providing Japanese robot technology to the Middle East and Africa.
www.xecor.com
Tokyo, Japan
A
101-250 Employees
2014
Key takeaway
Xecor is a prominent electronic components distributor in Japan, specializing in high-quality products and innovative solutions that cater to the diverse needs of enterprise clients. Their commitment to excellence and efficient delivery positions them as a reliable partner for those seeking advanced electronic solutions.
Reference
Product
Electronic Solutions | Xecor
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YASDA PRECISION TOOLS K.K.
Satosho, Japan
A
251-500 Employees
-
Key takeaway
YASDA focuses on providing high-precision automation equipment, exemplified by their YASDA MICRO CENTER (YMC) machine, which meets the growing demand for ultra-precision milling. Their automation solutions combine high accuracy, long-term stability, and innovative software, ensuring that they exceed customer expectations in precision machining.
Reference
Product
YASDA - Automation
Highest accuracy machining x Stability for long term x Innovative software = YASDA’s automation solution.
KEYENCE CORPORATION
Japan
A
5001-10000 Employees
1974
Key takeaway
KEYENCE is a leading supplier of automation equipment, including sensors, measuring systems, and machine vision systems, which are essential for enhancing factory automation. With a focus on innovative and reliable products, KEYENCE supports various manufacturing industries and offers services to assist with technical applications.
Reference
Product
KEYENCE Systems Bring Automated Inspection to Motion Dynamics
PI Japan – PI-Japan Co. Ltd.
Tokyo, Japan
A
11-50 Employees
1991
Key takeaway
The company highlights its focus on precision positioning and industrial automation, emphasizing the importance of advanced technology in enhancing production and process monitoring. Their solutions are designed to address challenges like vibrations and thermal fluctuations, which are crucial for effective automation equipment.
Reference
Service
産業オートメーション
Rapyuta Robotics
Tokyo, Japan
A
101-250 Employees
2014
Key takeaway
The company specializes in providing robotics solutions, particularly the Rapyuta PA-AMR, which enhances work efficiency by automating picking operations, reducing workers’ workload, and addressing labor shortages. Key features of the system, such as simple integration and data utilization, contribute to improved productivity and operational effectiveness.
Reference
Product
Technology
We come from the school of thought that it is more pragmatic and scalable to build simple heterogeneous robots that focus on a smaller subset of tasks and coordinate these robots to achieve larger objectives, instead of building all-in-one complex robots. We focus on the following technologies to create value for our customers.
Mujin, Inc.
Tokyo, Japan
A
101-250 Employees
2011
Key takeaway
Mujin offers advanced automation solutions for storage and order fulfillment, utilizing the MujinController to enable robots to operate with perception and autonomous decision-making. Their technology enhances efficiency and reliability in production environments, making it a key player in the automation equipment sector.
Reference
Product
Machine Intelligence | Mujin Corp
Mujin Machine Intelligence enables fast implementation and reliable, high performance from any industrial robot.
DeepX
Tokyo, Japan
A
11-50 Employees
2016
Key takeaway
DeepX specializes in automating construction machinery to address real-world challenges. They have successfully developed systems for the simultaneous automation of multiple construction machines and have demonstrated autonomous operations for hydraulic excavators, highlighting their commitment to advancing autonomous driving technologies in the construction sector.
Reference
Core business
株式会社DeepX | 人工知能であらゆる機械を自動化する
DeepXは、先端人工知能技術を駆使して「あらゆる機械の自動化」を実現し、世界中の生産現場で生じるさまざまな課題の解決を目指します。
LexxPluss
Kawasaki, Japan
A
11-50 Employees
2020
Key takeaway
LexxPluss is a technology company that specializes in robotics automation, including the development of autonomous mobile robots for the manufacturing and automotive industries. Their flexible and customizable solutions aim to transform factories, enhancing efficiency and sustainability.
Reference
Core business
株式会社LexxPluss | Sustainable Industry Sustainable Life
株式会社LexxPlussは、自動搬送ロボットをはじめとするロボティクスオートメーション技術で物流センターや製造工場へ持続可能性を提供するテクノロジーカンパニーです。法人向け設計図公開プログラムを実施しています。
Technologies which have been searched by others and may be interesting for you:
A selection of suitable products and services provided by verified companies according to your search.
Service
Custom Electronics
Go to product
Service
https://www.adgenera.com/en/automation.html
Go to product
Product
Versacon 7
Go to product
A selection of suitable use cases for products or services provided by verified companies according to your search.
Use case
Custom Electronic Design
automotive, E-mobility, automation, industrial automation, machinery, industrial machinery, smart industry, industry 4.0
Electronic design frameworks Electronic design starts from the component layout specification. Also, it consists in the definition of interconnections and PCB technology. Finally, component selection is formalized (BOM, Bill of Material), such as the circuit schematics and the layout of PCB traces (gerber file). If the Electronc Systems is composed of multiple circuit boards, electronic design includes the description of the interconnection schemes, and the instructions for the wiring manufacturing. Adgenera develops electronic circuits tailored and suitable for any application. It selects the most valuable technology for the peculiar field of application, in order to ensure the maximum reliability. Electronic design frameworks Custom-designed electronic solutions can be found in many sectors, covering various fields of application and meeting Client needs. The most frequent requests are: design “from the scratch” miniaturization of an existing circuit board cost Reduction electronic board update, when components are no longer available engineering a prototypal board, either partially or completely working functional improvement (for example, adding a wireless interface) performance improvement (for example, power consumption reduction) Other elements increase the complexity of the electronic design: legacy firmware for the previous version of board need for a custom / legacy interface to other electronic existing systems availability of the components on the market within a certain amount of time project constraints due to standards or certifications The steps of the Electronic Design Electronic design aims to respond to the request of designing and producing electronic circuit boards. First, the customer is interviewed on the characteristics of the electronic system to be designed.. The customer is actively involved to identify the best design choices. This preliminary phase leads to the correct identification of development times and costs, allowing the customer to verify the compliance with his needs and to create a preliminary project planning. Now the electronic scheme can be designed. Specific skills of our designers are applied to correctly select and size the components. Once the scheme has been designed, the electronic components available on the market are selected. Then, they will be soldered to the electronic board during its production phase. We select the most suitable package of components depending on the layout, the space available and the type of application. This design phase leads a draft of the BOM (Bills of Materials) necessary to supply and solder the right components. The electronic components chosen are placed on the board surface. Their positions strictly match design constraints principles to guarantee the correct functioning of the electronic system. Usually several alternative arrangements are evaluated. Finally, the chosen one is the one that leads to the best result once the electronic card is produced. Once the components are finally placed in the board, it is necessary to draw the connections (tracks) that appropriately connect the pins of the components themselves. The tracks design needs to follow many rules and best practices: although there are infinite ways to connect the chosen components, only a few solutions guarantee a good quality card. The preliminary electronic design project is ready: the first board samples are created to check the functionality and performance of the designed electronic system in the laboratory. During the tests, the laboratory instrumentation verifies that each quantity measurable on the card corresponds to the value theoretically calculated during the electronic scheme design.
Use case
Custom Electronic Design
automotive, E-mobility, automation, industrial automation, machinery, industrial machinery, smart industry, industry 4.0
Electronic design frameworks Electronic design starts from the component layout specification. Also, it consists in the definition of interconnections and PCB technology. Finally, component selection is formalized (BOM, Bill of Material), such as the circuit schematics and the layout of PCB traces (gerber file). If the Electronc Systems is composed of multiple circuit boards, electronic design includes the description of the interconnection schemes, and the instructions for the wiring manufacturing. Adgenera develops electronic circuits tailored and suitable for any application. It selects the most valuable technology for the peculiar field of application, in order to ensure the maximum reliability. Electronic design frameworks Custom-designed electronic solutions can be found in many sectors, covering various fields of application and meeting Client needs. The most frequent requests are: design “from the scratch” miniaturization of an existing circuit board cost Reduction electronic board update, when components are no longer available engineering a prototypal board, either partially or completely working functional improvement (for example, adding a wireless interface) performance improvement (for example, power consumption reduction) Other elements increase the complexity of the electronic design: legacy firmware for the previous version of board need for a custom / legacy interface to other electronic existing systems availability of the components on the market within a certain amount of time project constraints due to standards or certifications The steps of the Electronic Design Electronic design aims to respond to the request of designing and producing electronic circuit boards. First, the customer is interviewed on the characteristics of the electronic system to be designed.. The customer is actively involved to identify the best design choices. This preliminary phase leads to the correct identification of development times and costs, allowing the customer to verify the compliance with his needs and to create a preliminary project planning. Now the electronic scheme can be designed. Specific skills of our designers are applied to correctly select and size the components. Once the scheme has been designed, the electronic components available on the market are selected. Then, they will be soldered to the electronic board during its production phase. We select the most suitable package of components depending on the layout, the space available and the type of application. This design phase leads a draft of the BOM (Bills of Materials) necessary to supply and solder the right components. The electronic components chosen are placed on the board surface. Their positions strictly match design constraints principles to guarantee the correct functioning of the electronic system. Usually several alternative arrangements are evaluated. Finally, the chosen one is the one that leads to the best result once the electronic card is produced. Once the components are finally placed in the board, it is necessary to draw the connections (tracks) that appropriately connect the pins of the components themselves. The tracks design needs to follow many rules and best practices: although there are infinite ways to connect the chosen components, only a few solutions guarantee a good quality card. The preliminary electronic design project is ready: the first board samples are created to check the functionality and performance of the designed electronic system in the laboratory. During the tests, the laboratory instrumentation verifies that each quantity measurable on the card corresponds to the value theoretically calculated during the electronic scheme design.
The Automation Equipment industry in Japan presents numerous key considerations for potential entrants and researchers. One significant aspect is the rigorous regulatory environment, where compliance with both local and international standards is crucial. Understanding Japan's unique safety and environmental regulations will be vital, especially as the nation emphasizes sustainability and eco-friendly practices. Challenges in this market include high competition among established players, which can make it difficult for new companies to gain a foothold. However, opportunities abound due to Japan's strong focus on innovation and technology, particularly in sectors such as robotics and AI-driven automation solutions. Additionally, the aging population in Japan is driving demand for automation in various industries, including manufacturing and healthcare. Companies should also consider the competitive landscape, where collaboration between traditional firms and startups is increasingly common. Global market relevance is significant, as Japan remains a leader in automation technology, influencing trends and developments worldwide. Understanding these dynamics, along with cultural nuances and customer preferences, will be essential for successfully navigating the automation equipment sector in Japan.
Some interesting numbers and facts about your company results for Automation Equipment
Country with most fitting companies | Japan |
Amount of fitting manufacturers | 9 |
Amount of suitable service providers | 4 |
Average amount of employees | 101-250 |
Oldest suiting company | 1906 |
Youngest suiting company | 2020 |
Some interesting questions that has been asked about the results you have just received for Automation Equipment
What are related technologies to Automation Equipment?
Based on our calculations related technologies to Automation Equipment are Education, Engineering Services, IT & Technology Services, Healthcare Services, Consulting
Which industries are mostly working on Automation Equipment?
The most represented industries which are working in Automation Equipment are Automation, Other, IT, Software and Services, Electronics and Electrical engineering, Machinery Manufacturing
How does ensun find these Automation Equipment Manufacturers?
ensun uses an advanced search and ranking system capable of sifting through millions of companies and hundreds of millions of products and services to identify suitable matches. This is achieved by leveraging cutting-edge technologies, including Artificial Intelligence.