Electric Grippers are electric powered automated gripping devices primarily used in industrial automation scenarios for grasping, gripping, transporting, positioning, or assembling materials, workpieces, or objects. It provides power through electric transmission components such as motors, gears, and screws, combined with mechanical structures (such as gripper fingers and claw arms) to achieve opening, closing, clamping, or releasing actions, thereby completing stable grasping and manipulation of the target object. Electric Grippers are equivalent to the "electric fingers" in automation systems, which achieve hand like grasping actions through electric drive. They are one of the core components of material handling and fine operation in industrial automation.
Electric Grippers are driven by motors and used for precise grasping, handling, or placement of objects. They are mainly used in industrial automation scenarios for grasping, gripping, handling, positioning, or assembling materials, workpieces, or objects. Electric Grippers are widely used in industrial robots, automated production lines, and precision assembly fields. Compared with traditional pneumatic grippers, it adopts servo motor or stepper motor control, which has advantages such as high precision, programmability, energy saving and environmental protection.
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What are the core features of Electric Grippers?
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Power source |
Relying on electric drive (usually servo motors, stepper motors, or DC motors), without the need for pneumatic or hydraulic systems, it is easier to integrate into automation equipment and has higher control accuracy. |
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Function and Function |
By adjusting the gripping force, opening and closing speed, and stroke through a programmable control system, it can adapt to objects of different shapes, sizes, or materials (such as metal parts, plastic parts, electronic components, etc.), ensuring a stable and reliable gripping process. |
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Application scenarios |
Widely used in industrial robots, automated production lines, warehousing logistics, precision assembly and other fields, such as grabbing parts in automobile manufacturing, handling chips in electronic factories, and clamping packages in logistics sorting. |
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Advantages |
Compared to pneumatic grippers, electric grippers have higher control accuracy, adjustable gripping force, more flexible programming ability, and do not require complex air or hydraulic pipelines. They are easier to maintain and suitable for scenarios that require high precision and automation. |
Electric Grippers from Tallman Robot have following series:
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Model No. |
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Features |
Photos for reference |
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TM-EGB |
Electric Gripper replaces pheumatic grippers Powerfull in compact size Speedy gripping Clamp empty/Drop Detection |
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TM-MGBD |
Miniature size Small force level Flexible gripping High speed, drop detection |
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TM-GBM |
Thin body design Wide stroke Adaptive gripping Drop detection |
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TM-GB |
High loading,Large gripping force Rich stroke High regidity Power offer self-locking Drop detection |
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TM-MFGB |
Wide stroke Large gripping foce IP55 rating Drop detection |
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TM-RGM |
Highly integrated Large torque Large gripping force Infinite rotating |
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TM-GBTD |
IP67 Rating Speedy gripping Stable&reliable Water proof, dust proof Anti corrosion, anti debris |
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TM-CGBD |
Large stroke Adaptive gripping Drop detection Flexible opening/closing |
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Videos of Test for Electric Grippers:
Packing and Delivery for Electric Grippers:
















Electric Grippers, as the core gripping equipment in industrial automation, are widely used in various scenarios that require automated gripping, clamping, handling, or assembly due to their high precision, programmability, and flexible adaptability. The following are its common application areas and specific scenarios:
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Industrial robots and automated production lines |
This is the most core application scenario of electric grippers, mainly used in conjunction with industrial robots to complete high-precision operations |
Automotive manufacturing |
In the processes of automotive welding, painting, and final assembly, metal parts (such as bolts, panels, bearings), plastic components, or glass are grasped to achieve automated loading and unloading, transfer between workstations, or assembly. For example, robots equipped with electric grippers can accurately grasp door parts and position them onto the body frame for installation. |
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3C electronic manufacturing |
used for grasping precision small parts such as mobile phone casings, chips, circuit boards, displays, etc., and completing fine handling in processes such as SMT, soldering, and testing to avoid contamination or damage caused by manual contact. |
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Mechanical processing |
next to CNC machine tools, milling machines and other equipment, grasp raw materials, semi-finished products or finished products to achieve automatic loading and unloading, improve processing efficiency and reduce manual operation risks. |
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Precision assembly and micro operation |
The high-precision control capability of the electric gripper makes it suitable for assembly scenarios with strict requirements for force and position |
Electronic component assembly |
In the production of semiconductors, sensors, or medical devices, small parts (such as resistors, capacitors, and micro gears) are grasped, and pressure damage is avoided through programmable force control to achieve precise alignment and assembly. |
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Laboratory Automation |
In biological experiments and chemical analysis, grabbing test tubes, culture dishes, or sample containers, and cooperating with automated platforms to complete pipetting, testing, and other operations, reduces manual errors and contamination risks. |
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Warehouse Logistics and Sorting |
In logistics automation systems, electric grippers are used to quickly and stably process various packages or goods |
Express sorting |
Cooperate with sorting robots or robotic arms to grab packages of different sizes and weights, and transfer them to corresponding areas based on barcode or visual recognition results to improve sorting efficiency. |
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Storage and Handling |
In intelligent warehouses, picking up cardboard boxes, material boxes, or pallets enables operations such as loading, unloading, and inventory of goods, especially suitable for high-frequency turnover scenarios such as e-commerce and fresh food. |
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Food and pharmaceutical industry |
Due to the fact that electric grippers do not require pneumatic/hydraulic pipelines (reducing pollution risks) and are easy to clean, they are suitable for areas with high hygiene requirements |
Food processing |
Capture bread, fruits, meat and other foods, automate packaging, sorting or palletizing processes to avoid hygiene issues caused by manual contact. |
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Medical packaging |
Grasp medication bottles, paper boxes, aluminum foil packaging, etc., complete the sorting, boxing or palletizing of drugs, and ensure that the operation process complies with hygiene standards such as GMP. |
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Metal processing and forging |
In high-temperature and heavy-duty metal processing scenarios, electric grippers can cooperate with protective structures to achieve stable gripping |
Forging/Casting |
Grab high-temperature metal billets and transport them to forging presses or cooling areas to replace manual operations and ensure safety. |
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Metal parts inspection |
Grasp stamped parts, castings, etc., cooperate with visual inspection equipment to complete size and defect detection, and automatically classify qualified and unqualified parts. |
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Collaborative Robotics Field |
In the human-machine collaboration scenario, the "force feedback" function of the electric gripper (sensing the gripping force through sensors) enables it to work safely with humans |
Small component assembly |
In electronic factories or laboratories, collaborative robots are equipped with electric grippers to work with workers to grasp and transfer fine components. |
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Service oriented grabbing |
In scenarios such as home services and medical assistance, grabbing tools, tableware, or medical supplies provide automated assistance. |
The core advantage of electric grippers lies in their high-precision control, programmability, and environmental adaptability driven by electricity, which enables them to replace manual labor in completing repetitive, precise, or high-risk grasping tasks. They are widely used in various fields such as industrial manufacturing, logistics, medical care, and food, and have become one of the key equipment for automation upgrades.
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