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Camarillo, United States
51-100 Employees
1987
Sándor Barta and Daniel Schoenewald founded ADVANCED Motion Controls in 1987 driven by their shared desire to design, manufacture and sell the best servo drives. With our original private ownership still active we have proudly built and shipped nearly 3 million servo axes worldwide. Our extensive experience enables us to quickly find solutions that are both cost-effective and high-performing in a wide variety of industries. Our manufacturing facility was specifically designed to integrate Engineering, Manufacturing, Testing and Support in a single location giving us unmatched scheduling flexibility and quality control. Prototypes are built on the same line using the same equipment as production units enabling rapid development, fast delivery and exceptional reliability for OEMs.
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Featured
Motion Control Overview
... Motion Control Overview What is a Servo? Servo control, which is also referred to as “motion control” or “robotics” is used in industrial processes to move a specific load in a controlled fashion. These systems can use either pneumatic, hydraulic, or electromechanical actuation ...
Israel
101-250 Employees
1985
ACSPL+ provided the real-time environment and the parallelism we needed, enabling us to make changes and test them easily.
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Find Solutions to Your High-Performance Motion Control Challenges with ACS at SPS 2022!
... Find Solutions to Your High-Performance Motion Control Challenges with ACS at SPS 2022! ...
Upper Merion Township, United States
1-10 Employees
2015
ISO Class 4 (Class 10*1) Cleanroom "Cleanroom Wash / Cleanroom Packing Service". New Products introduced : Hex Socket Head Cap Captive Screw/Captive Washer Sets. New Products introduced : Hex socket head cap screws with cleanroom washing/cleanroom packing provided. New Products introduced : Hex Socket Head Cap Screws with Special Low Profile (For Fixing Thin Plates). New Products introduced : Phosphor Bronze Pan Head Machine Screws for Precision Instruments (Miniature Screws).
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Actuator | NBK | The Motion Control Components
... Actuator | NBK | The Motion Control ...
Finland
1-10 Employees
2017
We are happy to work with your crane builder and automation system integrator. We are also willing to use any control equipment you require, if it is technically possible. We are here to help and we would like to co-operate with You. We are always willing to take extra steps to ensure that automation system integrators and programmers using our solutions get the best results and can minimize the risks and commissioning time in their projects. We are very pleased to do sales and marketing co-operation. Do you need smarter cranes to improve your productivity, or does your crane need replaced or upgraded load sway control or automation? We have over 25 years of experience in innovative crane control solutions. With experience of over 1000 advanced crane control projects we are able to define control system features which improve productivity, reduce risks and maximise return of your investment.
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CRANE Motion Control Solutions
... Welcome to ICRAS Motion Control ...
Shrewsbury, United Kingdom
1-10 Employees
It was the era of the famous Fiat Strada adverts, ‘Handbuilt by robots’.
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Tim Oxtoby – Motion Control Engineering Specialist
... Tim Oxtoby – Motion Control Engineering ...
Luohu District, China
51-100 Employees
2007
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JUST MOTION CONTROL–JUST MOTION CONTROL
... JUST MOTION CONTROL ...
Medford, United States
11-50 Employees
2005
We provide professional motion control equipment for bullet-time, TV, video, television broadcast and virtual set production. President/Chief Engineer Mechanical designer and systems engineer, Michael Sorensen leads the Ravensclaw engineering team and is hands-on in all aspects of product development, manufacturing and assembly. Sorensen has over thirty years of experience in the robotics, film and aerospace industries. Miller is the holder of five academy awards from the Academy of Motion Picture Arts and Sciences for technical, scientific and engineering achievements. Senior Software Designer Jeff brings thirty years of experience in special visual effects to Ravensclaw as the senior software designer.
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Ravensclaw motion control
... Ravensclaw develops top of the line motion control remote heads and controllers for movie production and ...
Westford, United States
11-50 Employees
1992
All of our products are already used in numerous top-tier FDA-approved devices. We are a world leader in motion control technology for life sciences, robotics, and industrial automation. With our world-leading motion control ICs at their core, all PMD solutions speak our powerful and easy-to-use language, C-Motion®, to simplify and streamline development. They provide high performance motion control functions, on-board amplification, and Brushless DC, DC Brush, and step motor control. Our Magellan MC58000 and MC55000 ICs provide advanced control for medical, industrial, and robotic applications. Spinning BLDC motors efficiently at high speed is the core requirement for many end applications. PMD delivers a broad range of advanced motion control products including integrated circuits, modules, and boards to a worldwide customer base. MC58113 single-axis motion control ICs provide trajectory profile generation, programmable breakpoints, advanced performance trace, and many other motion control functions.
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Motion Control Boards
... High-performance motion control boards that are ideal for lab automation, medical devices equipment, and other robotic applications. ...
New York, United States
1-10 Employees
2021
We offer the largest inventory and widest range of motion control equipment and high-speed robotics in New York City, not to mention our world-class operators and special effects rigging department. At The Garage, we’re ready to offer you customized solutions for even your wildest concepts. Our state-of-the-art stages in Industry City, Brooklyn give artists the space and tools they need to shoot their most innovative work.
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Motion Control and Studio Rentals in NYC
... Explore a large inventory of motion control equipment and high-speed robotics in New York City. Bring our expertise to your next project at The Garage Rentals. ...
Stockport, United Kingdom
11-50 Employees
1985
We are a family owned servo, motion control, flow control and automation specialist based in Stockport, Greater Manchester. Motec House is nestled on the bank of the river Goyt at the entrance to Chadkirk Country Estate, home to Chadkirk Chapel which dates back to around 1350ad. We are an independent company and not tied to any one manufacturer. We are a solution provider with over 35 years experience in the servo and motion control industry. Our products are presented over three separate, but interconnected, disciplines:. From our incorporation in 1985 our aim has been to provide high quality, reliable products to our customers backed by a personal, responsive and flexible service. With one of the widest ranges of servo and motion control products, Motor Technology is the UK agent for some of the most well known and trusted manufacturers from Europe and around the world. This also enables us to provide cost effective options to suit your exact needs.
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The Home of Motion Control - Motor Technology Limited
... Trusted motion control engineers providing motion control products. From single components, to full turn-key motion, flow or sensing systems. ...
Technologies which have been searched by others and may be interesting for you:
Some interesting numbers and facts about the results you have just received for Motion Control
Country with most fitting companies | United States |
Amount of fitting manufacturers | 1216 |
Amount of suitable service providers | 726 |
Average amount of employees | 11-50 |
Oldest suiting company | 1985 |
Youngest suiting company | 2021 |
Motion control is a sub-field of automation, encompassing the systems or sub-systems involved in moving parts of machines or equipment in a controlled manner. It is the process of controlling the movement and position of an object, typically employing mechanisms such as electric motors, hydraulic pumps, or pneumatic actuators in conjunction with various sensors and software. The primary components of motion control systems include an energy source, actuators, sensors for feedback, and a controller to interpret and direct movement. This technology is pivotal in industries where precision, repeatability, and efficiency in the movement of machinery or parts are critical. Its applications span from robotics, where it orchestrates the precise movements of robotic arms, to the manufacturing sector, where it ensures the accurate positioning of tools and materials. Motion control systems are crucial in enhancing productivity, reducing manual labor, and improving safety by automating tasks that are dangerous or involve precision beyond human capability. The impact of motion control technology is profound, enabling advancements in manufacturing processes, robotics, and even in entertainment through animatronics and special effects, thereby pushing the boundaries of what is achievable in automation and mechanized operations. This technology continues to evolve, integrating with artificial intelligence and machine learning to create even more sophisticated and autonomous systems, illustrating its pivotal role in the ongoing advancement of various high-tech industries.
1. Precision and Accuracy
: Motion control systems offer unparalleled precision and accuracy in the movement and positioning of tools or equipment. This is critical in applications where even the slightest deviation can lead to significant errors, such as in CNC machining or robotic surgery.
2. High Speed and Efficiency
: These systems can operate at high speeds without sacrificing control or quality, significantly increasing productivity. Whether in manufacturing processes or in the packaging industry, motion control enables faster production rates, contributing to higher overall efficiency.
3. Flexibility and Adaptability
: Motion control systems can be easily reprogrammed and adapted to handle different tasks, making them highly versatile across various applications. This adaptability ensures that a single system can be used for multiple processes, reducing the need for specialized machinery.
4. Improved Safety
: By automating tasks that require precise movement, motion control systems reduce the risk of accidents and injuries associated with manual operation. This is especially beneficial in hazardous environments or when handling dangerous materials, where human error can have serious consequences.
While evaluating the different suppliers make sure to check the following criteria:
1. Technical Expertise and Support
Assess the supplier’s ability to provide comprehensive technical support and guidance throughout the selection, installation, and operation phases.
2. Product Range and Compatibility
Ensure the supplier offers a wide range of motion control products that are compatible with existing systems and can meet your specific application requirements.
3. Quality and Reliability
Verify the quality and reliability of the products through certifications, testing reports, and customer reviews.
4. Customization Capabilities
Determine if the supplier can provide customized solutions that tailor to your specific needs, allowing for greater flexibility in system design.
5. Lead Times and Delivery
Consider the supplier’s ability to meet your project timelines with reasonable lead times and reliable delivery schedules.
6. Cost-effectiveness
Evaluate the overall cost-effectiveness of their offerings, including the initial purchase price, maintenance costs, and potential savings on energy and operation.
7. Post-Sale Support and Warranty
Look into the supplier’s warranty terms and the availability of post-sale support services, including maintenance and repair services.
Motion control systems are pivotal in various industries, enabling precise movements and operations essential for manufacturing and production processes. In the automotive industry, these systems play a crucial role in assembly lines where precision and repeatability are paramount. Robotics equipped with motion control technologies ensure vehicles are assembled efficiently and with high quality, handling tasks from welding to component installation. In the aerospace sector, motion control is indispensable for the manufacturing and testing of aircraft components. High precision is required to meet the stringent safety standards of the industry. Motion control systems are used to simulate flight conditions, test the durability of components under stress, and automate the assembly of intricate parts, ensuring the reliability and safety of aerospace products. The semiconductor industry also heavily relies on motion control for the production of microchips and electronic components. These systems provide the high precision and control necessary for wafer handling, positioning, and the intricate assembly processes involved in chip fabrication. The ability to execute precise movements at micro and nano levels is key to maintaining the integrity and performance of semiconductor products. Furthermore, in the packaging industry, motion control technology ensures speed, efficiency, and precision in packaging lines. It allows for the rapid and accurate filling, sealing, and labeling of products, accommodating a wide range of packaging designs and materials. This adaptability and precision improve throughput and reduce waste, making motion control systems invaluable for businesses aiming to enhance their packaging operations. Each of these use cases demonstrates the versatility and necessity of motion control technologies across sectors, underscoring their role in advancing industrial efficiency, product quality, and innovation.
Motion control technology, encompassing a wide array of applications from robotics to vehicle systems, is predominantly at Technology Readiness Level (TRL) 9. This pinnacle TRL signifies that motion control systems are not only well-developed but are also fully deployed in operational environments. The technical rationale behind this classification stems from the extensive research, development, and refinement these systems have undergone. Over the years, advancements in sensors, actuators, and control algorithms have significantly enhanced precision, efficiency, and reliability. For instance, the integration of sophisticated feedback loops and real-time computing capabilities allows for unprecedented control over movement, even in highly dynamic environments. Moreover, the advent of machine learning and artificial intelligence has further propelled motion control systems to adapt and optimize their performance autonomously, addressing complex tasks with minimal human intervention. These technological milestones underscore the systems' maturity and readiness, embodying their widespread adoption across various sectors, including manufacturing, healthcare, and transportation. The achievement of TRL 9 is a testament to the rigorous testing, validation, and refinement processes that have iteratively improved motion control technologies, ensuring they meet stringent operational standards and safety requirements.
In the short-term, advancements in motion control technology are set to leverage the integration of artificial intelligence (AI) and Internet of Things (IoT) capabilities. These enhancements will enable smarter, more adaptive systems capable of predictive maintenance and real-time optimization. Expect to see significant improvements in energy efficiency and precision across various applications, from industrial robotics to consumer electronics. Mid-term developments will likely focus on the seamless integration of motion control systems with augmented reality (AR) and virtual reality (VR) environments. This phase will witness the emergence of highly intuitive control mechanisms that rely on gestures and natural movements, offering unparalleled levels of interaction and immersion in both industrial and entertainment applications. Additionally, the proliferation of 5G will enable faster, more reliable remote motion control operations, broadening the scope of teleoperation and telepresence applications. Long-term, the horizon of motion control technology is poised to be redefined by quantum computing and advanced materials science. Quantum computing promises to revolutionize the computational capabilities underlying motion control systems, allowing for more complex simulations and control algorithms. Meanwhile, novel materials and nanotechnology will facilitate the creation of lighter, stronger, and more energy-efficient components. These advancements will unlock new possibilities in space exploration, deep-sea exploration, and ultra-precise manufacturing processes, setting the stage for a new era in motion control technology.