Robot Gripper
Robot Gripper

Top Robot Gripper Companies

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90 companies for Robot Gripper

Grupo BG Media's Logo

Badalona, Spain

11-50 Employees

2002

Más de 17 años de experiencia en el sector nos avalan, ponemos a tu disposición un equipo de diseñadores gráficos, con experiencia en campos muy variados, asegurándote varios puntos de vista, estilos y conceptos.

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Featured

Product
Image for ROBOT-GRIPPER

ROBOT-GRIPPER

... BG Media Group » ROBOT-GRIPPER ...

AMBOTS Inc.'s Logo

Springdale, United States

1-10 Employees

2018

Signup and we'll send you updates as we add new features. You'll only get updates if you ask for them, and you can unsubscribe any time. We never share your information or use it to spam you. AMBOTS is an advanced manufacturing company with a focus on swarm 3D printing and assembly. We look forward to bringing you to the next manufacturing revolution.

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Featured

Product
Image for Mobile Gripper Robot

Mobile Gripper Robot

... Mobile Gripper Robot ...

momac Group's Logo

Moers, Germany

51-100 Employees

1919

Übersicht über unsere aktuellen Stellenangebote / Stellenausschreibungen, offenen Ausbildungsplätze sowie unsere Dualen Studienangebote in Moers Unsere aktuellen Stellenangebote in Moers: Vertriebsprofi für den Bereich Getriebetechnik. Liebe Kundinnen und Kunden, wir arbeiten ständig daran, unsere Dienstleistungen weiterzuentwickeln. Benjamin Pieper ist ein erfahrener und kompetenter Getriebe Fachmann, der.

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Featured

Service
Image for Robot grippers

Robot grippers

... Robot gripper - special gripper, design, manufacture and integration of gripper technology by momac-Robotics, 47441 Moers / ...

Hacoplast's Logo

Pannerden, Netherlands

11-50 Employees

2005

We are a supplier of injection moulding machines including the associated installation, service and maintenance. Hacoplast has a large warehouse with a floor area of ​​approximately 2.400m2. From here we deliver your orders all over the world. Hacoplast has commissioned a number of projects to support its customers. We are a supplier of injection moulding machines including installation, service and maintenance. With a maintenance contract from Hacoplast you are assured of periodic maintenance and inspections. In case of a malfunction, off course you want to resume your production process as quickly as possible. Thanks to the extensive knowledge and experience of our service technicians, we can solve most malfunctions for you on site.

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Featured

Product
Image for 3-axis robot (double gripper)

3-axis robot (double gripper)

... The Samfacc, 3- or 5 axis robots with double grippers are suitable for injection moulding machines with a clamping force from 80 tons up to approximately 3500 tons and could be used for the insertion of foils or inserts. The robots are equipped with Mitsubishi servo motors and double ...

Active8 Robots's Logo

Bath, United Kingdom

11-50 Employees

2013

We are based in Peasedown St John, five miles southwest of the city of Bath, Somerset in England close to the Mendip Hills. We are committed to nurturing a positive culture that infiltrates every aspect of our activities and have adopted a set of principles to guide us. We are a major independent industrial automation consultant and systems integrator. We have delivered small-scale and simple projects alongside the larger, more complex transformational projects for customers in the following fields:. Over the years we have built solid long-lasting relationships with automation consultants and intermediary project managers appointed by the end customer to manage the delivery of their automation vision. We specialise in advanced robotics technologies and smart automation to deliver intelligent and connected automated solutions. With a deep knowledge of machines, digitalisation and engineering, we provide bespoke robotic automation for turnkey projects alongside standardised ‘off-the-shelf’ automation for common processes. Additional modelling and simulation services can fast-track this process whilst digital twins can deliver even greater accuracy.

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Featured

Product
Image for Robotiq Robot Grippers - Active8 Robots

Robotiq Robot Grippers - Active8 Robots

... Robotiq Robot Grippers. A complete range of electric & pneumatic robotic grippers and software from high quality manufacturers in Canada, Robotiq. ...

Möllers Group's Logo

Beckum, Germany

251-500 Employees

1952

Wir kennen die Anforderungen der chemischen Industrie und ihrer Produkte – mit veränderlichen Temperaturen, Volumina und Gewichten, mangelnder Formstabilität und unterschiedlichen Fließeigenschaften. Beim Abfüllen, Palettieren und Verpacken berücksichtigen wir neben den Produkteigenschaften auch die klimatischen Bedingungen der Herkunftsländer – damit Lebensmittel in optimalem Zustand transportiert werden. Rund 15.000 m² werden neu gebaut und ein großer Teil steht bereits.

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Featured

Product
Image for Articulated robot with gripper systems

Articulated robot with gripper systems

... Articulated robot with gripper ...

Scott's Logo

Dunedin, New Zealand

251-500 Employees

1913

Our vision is to be the first choice for businesses wanting smart automation and robotics that make their businesses safer, more productive and more efficient. We provide ongoing support with a dedicated team that service, upgrade, conduct preventive maintenance and provide breakdown assistance. Our goal is to maximise the benefits of automation, delivering results, safer systems and improving industries. With a focus on five key industries; meat processing, mining laboratory automation, appliance manufacturing, materials handling and industrial automation, our diverse expertise make us the first choice for hundreds of the world's leading brands. Our solutions are redefining end-to-end automation and cover all stages from design through to commissioning and service and everything in between. Whether developing new technologies, creating smart products or providing ongoing support, we always deliver for our customers. Listed on the New Zealand Stock Exchange, we operate to strict governance guidelines and under close market scrutiny. Established in 1913 as an engineering company in New Zealand, Scott Technology initially focused on specialising in motor repair and appliance manufacturing.

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Featured

Product
Image for Robot Grippers, Tools & Accessories

Robot Grippers, Tools & Accessories

... Scott | Robot Grippers, Tools & ...

Active8 Robots's Logo

Bath, United Kingdom

11-50 Employees

2013

With a deep knowledge of machines, digitalisation and engineering spanning decades, we design, build, install and service intelligent and connected automated solutions. Our broad-spectrum engineering skill and expert practical knowledge combined with outstanding project management ability and extensive multi-industry experience is what sets us apart from other systems integrators. We are based in Peasedown St John, five miles southwest of the city of Bath, Somerset in England close to the Mendip Hills. We help our customers achieve specific industrial automation goals that they cannot attain alone by:. · closing the gap between strategy and implementation;.

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Featured

Product
Image for Active8 Robots - Robotiq Robot Grippers - The world's best selling robotic Grippers

Active8 Robots - Robotiq Robot Grippers - The world's best selling robotic Grippers

... Robotiq Robot Grippers. A complete range of electric & pneumatic robotic grippers and software from high quality manufacturers in Canada, Robotiq. ...

SMC Corporation of America's Logo

Noblesville, United States

10001+ Employees

1977

SMC Corporation of America is a part of a global organization that supports our customers in every industrialized country and is the U.S. Since its establishment, SMC has been a leader in pneumatic technology, providing industry with technology and products to support automation based on the guiding principle of “contributing to automation labor savings in industry.” Over the past 50+ years, SMC's products have become established as a recognized international brand through sales, technical, supply and after sale services in world markets. SMC offers technology accumulated through the years, engineers that bring it to life in new products, production capacity which can deliver a variety of products in a short time, and an extensive sales network in the U.S. Our comprehensive approach focuses on consuming less raw materials in our manufacturing process by making our products smaller, lighter and extending the operating life. JSY series is a 5-port directional control solenoid valve targeted for the robotic arms and end of arm tools. The JSY is a compact and lightweight design while maintaining high flow characteristics. The EX600 serial interface offers a full suite of diagnostics and programmable parameters to meet the most stringent requirements. The EX600 offers excellent flexibility including digital input, digital output and analog input unit options.

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Featured

Product
Image for Collaborative Robot Grippers

Collaborative Robot Grippers

... Collaborative Robot Grippers for FANUC Corporation CRX ...

RobotShop's Logo

Boisbriand, Canada

11-50 Employees

2003

Founded in 2003, we specialize in robotics technology and offer a wide range of products and services in this sector. We operate globally and our head office is located in Mirabel, Quebec, Canada.

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Featured

Product
Image for Large Robot Gripper

Large Robot Gripper

... 2 DOF robot gripper Bigger clamping range with slotted jaw Able to grip objects tighter Servo slot to fit most servo The Large Robot Gripper is a 2 DOF robot gripper. This gripper has bigger clamping range with slotted jaw faces which is able to grip objects tighter. ...


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Facts about those Robot Gripper Results

Some interesting numbers and facts about the results you have just received for Robot Gripper

Country with most fitting companiesGermany
Amount of fitting manufacturers73
Amount of suitable service providers43
Average amount of employees11-50
Oldest suiting company1913
Youngest suiting company2018

Things to know about Robot Gripper

What is Robot Gripper?

A robot gripper is an end-effector device attached to a robotic arm, designed to interact with various objects, enabling the robot to pick up, hold, and manipulate items with precision. Functioning as a mechanical hand, robot grippers come in numerous configurations, including but not limited to claw, vacuum, and magnetic types, each suited to specific tasks and materials. The choice of gripper is critical, as it directly influences the robot's ability to perform tasks ranging from delicate assembly operations to the robust handling of heavy materials. In manufacturing and assembly lines, robot grippers enhance efficiency by performing repetitive tasks with high precision and speed, reducing human error, and improving safety by taking over dangerous or monotonous jobs. Moreover, in sectors like food processing and pharmaceuticals, they ensure hygiene and minimize contamination risks. The integration of advanced sensors and artificial intelligence into robot grippers has further expanded their capabilities, allowing for adaptive gripping strength, tactile sensing, and real-time adjustments based on the object's size, shape, and weight. This technological advancement underscores the significant impact robot grippers have in automating and streamlining processes across industries, contributing to increased productivity, operational flexibility, and the advent of smarter, more adaptable robotic systems.


Advantages of Robot Gripper

1. Enhanced Precision and Flexibility
Robot grippers offer a level of precision that is often unmatched by human hands or other mechanical alternatives. They can manipulate objects of various sizes, shapes, and weights with exceptional accuracy. This flexibility makes them indispensable in industries where handling delicate or complex items is routine.

2. Improved Safety
By employing robot grippers in manufacturing or assembly processes, businesses can significantly reduce the risk of injuries. These devices can take over tasks that are hazardous or involve handling heavy or dangerous materials, thus ensuring a safer working environment for human employees.

3. Increased Efficiency
Robot grippers operate at a speed and consistency that manual labor cannot match. They can work continuously without fatigue, leading to significant improvements in production timelines. This efficiency not only accelerates the manufacturing process but also contributes to a higher throughput.

4. Cost-effectiveness
Over time, the adoption of robot grippers can lead to substantial cost savings. They reduce the need for manual labor and minimize the risk of errors and product damage. Additionally, their durability and low maintenance requirements make them a financially sound investment for the long term.


How to select right Robot Gripper supplier?

While evaluating the different suppliers make sure to check the following criteria:

1. Compatibility
Ensure the robot gripper is compatible with your existing robotic system, including the interface, power requirements, and control protocols.

2. Grip Strength and Payload Capacity
Assess the maximum payload the gripper can handle and its grip strength, ensuring it meets your application requirements.

3. Material and Durability
Consider the construction material of the gripper for durability, especially if it will be used in harsh or abrasive environments.

4. Precision and Sensitivity
Look for grippers that offer precision in movement and sensitivity in handling, crucial for tasks requiring delicate or precise manipulation.

5. Flexibility and Adaptability
Choose a supplier offering grippers that are adaptable to various tasks, including those with interchangeable fingers or adjustable grip strength.

6. Supplier Support and Warranty
Evaluate the level of technical support and warranty terms offered by the supplier to ensure reliable operation and maintenance assistance.


What are common B2B Use-Cases for Robot Gripper?

Robot grippers have revolutionized efficiency and precision across multiple industries, offering a range of applications. In the automotive sector, they are instrumental in assembly lines, where their ability to handle various components with precision and speed enhances production rates and reduces human error. This application significantly boosts productivity and safety, allowing for the automated assembly of complex parts such as engines and transmissions. In the electronics industry, the delicate nature of components requires precise handling that human workers can't always guarantee. Robot grippers come into play here, offering the dexterity needed to assemble small, fragile parts like circuit boards and smartphone components. This not only accelerates the assembly process but also minimizes the risk of damage, ensuring higher product quality and lower waste. Moreover, in the realm of e-commerce and logistics, robot grippers are transforming warehouse operations. They are employed for picking and packing orders, a task that demands speed, accuracy, and the ability to handle a diverse range of product shapes and sizes. This flexibility and efficiency significantly optimize order fulfillment processes, contributing to faster delivery times and improved customer satisfaction. Lastly, the pharmaceutical industry benefits from the high precision and cleanliness standards of robot grippers. They are used in drug production and packaging, where maintaining sterility is crucial. The ability of robot grippers to operate in controlled environments without contamination risk is invaluable, ensuring the integrity of sensitive products. These use cases across various industries underscore the versatility and value of robot grippers in today's automated and efficiency-driven business environments.


Current Technology Readiness Level (TLR) of Robot Gripper

Robot grippers, integral components in automation and robotics, have reached a high Technology Readiness Level (TRL) of 8 to 9 across various models and applications. This classification signifies that these devices are fully functional and have been proven through successful mission operations or real-world usage. The advancement to such a high TRL is attributed to significant technological developments in materials science, precision engineering, and sensor technology. Advances in materials science have led to the creation of more durable and adaptable gripping surfaces, capable of handling a wide range of materials with greater efficiency. Precision engineering has enhanced the accuracy and reliability of robot grippers, allowing for their integration into complex manufacturing processes with minimal error. Additionally, the integration of advanced sensor technology has enabled robot grippers to detect and adjust to the size, weight, and texture of different objects, facilitating their use in more nuanced and delicate operations. These technical achievements have collectively pushed robot grippers to a stage where they are consistently reliable and adaptable across numerous industries, including manufacturing, logistics, and healthcare, demonstrating their readiness for widespread commercial and industrial application.


What is the Technology Forecast of Robot Gripper?

In the short-term, advancements in robot gripper technology are expected to focus on enhancing tactile sensitivity and dexterity. This entails the integration of sophisticated sensors and machine learning algorithms that enable grippers to adjust their grip in real-time, mimicking the nuanced control of the human hand. Such improvements will allow for safer and more efficient handling of delicate objects, expanding the use cases in industries such as electronics assembly and food processing. Looking into the mid-term, developments are likely to pivot towards the adoption of modular and adaptive gripper systems. These systems will be designed to autonomously switch between different types of gripping mechanisms depending on the task at hand, thereby increasing versatility and reducing downtime for changeovers. Additionally, these grippers will incorporate more advanced materials that offer greater durability and flexibility, further broadening the range of objects they can manipulate effectively. Over the long-term, the horizon of robot gripper technology will expand to include fully autonomous, intelligent systems capable of learning and evolving their gripping strategies over time. Leveraging breakthroughs in artificial intelligence and robotics, these grippers will be able to understand and interpret their environment in complex ways, enabling them to perform tasks with a level of precision and autonomy previously unattainable. This could revolutionize not just manufacturing and logistics, but also fields like surgery and disaster recovery, where the ability to handle objects with extreme care and intelligence is paramount.


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