Gripsters & Lifters
Mechanical, vacuum, magnetic and robotic gripsters plus end-of-arm tooling.
Also searched as: robot gripperparallel grippertwo jaw gripperthree jaw gripperangular gripperpneumatic gripperelectric grippervacuum grippersuction cupvacuum cupvacuum lifterventuri vacuum generator +45 more
-
Bellows Vacuum Pad
Adapter: w/o AdapterType: Bellows
-
Bellows Vacuum Pad
Adapter: w/o AdapterType: Bellows
-
Bellows Vacuum Pad
Adapter: w/o AdapterType: Bellows
-
Bionic Soft Gripper for Automation Industry
Application: Automation IndustryType: Bionic
from $50.00Made-in-China $50.00 -
Centric Gripper, 3-Jaw
Jaw Count: 3Stroke per Jaw: 10 mm
from $1,000.00eBay $1,000.00 -
Compact Air Gripper, Angular
Dimension B: 16.4 mmOpen Width: 18.9 mmOperating Temperature Range: 14 to 140 F
-
Compact Air Gripper, Angular
Internal Holding Force: 0.52 lbf @ 72 PSIMaximum Pressure: 87 psi
-
Compact Design Soft Gripper
Design: Compact
from $50.00Made-in-China $50.00 -
-
Cordless Rechargeable Vacuum Gripper, Electric Handheld Suction Cup
Power: 350WSuction Pad Diameter: 140-220mm
-
Customizable Soft Gripper with Anti-Slip Silicone Material
Anti-Slip: TrueFeature: Customizable
from $50.00Made-in-China $50.00 -
Delta Robot Gripper Junction Box
Drive Mode: ElectricOperation Mode: Automatic
from $7,000.00Made-in-China $7,000.00 -
Die / Jaw For Pneumatic Puncher Accessary
Type: Die for Pneumatic Puncher
-
Double Acting Pneumatic Gripper Parallel Style
Actuation: Pneumatic
-
-
-
-
ESD Safe High Temperature Rubber Vacuum Cup
Size: 3/32 inch
from $19.00eBay $19.00 -
Electric Bicuspid Soft Miniature Claws
Actuation: ElectricSize: MiniatureType: Bicuspid
from $50.00Made-in-China $50.00 -
-
Electric Robot Gripper
Accuracy: ±0.5 mmActuation: ElectricPayload: 500 gStroke: 100 mm
-
Electric gripster (vacuum gripster)
Battery Capacity: 4000 mAh
from $30.43eBay $30.43 -
-
-
Flat ESD Vacuum Pad Assembly
Connection: G1/8 inPad Diameter: 28.2 mmType: Flat
from $15.51Grainger $15.51 -
Flat Oval Vacuum Pad Assembly
Connection: 3/8 in NPTType: Flat Oval
-
Flat Vacuum Pad
Adapter: w/o AdapterType: Flat
-
Flat Vacuum Pad Assembly
Connection: G1/4 inType: Flat
-
Flat Vacuum Pad Assembly
Type: FlatVacuum Port: G1/8 in
-
Flexible Gripper Fixture Pneumatic Vacuum Suction Gripster
Actuation: Pneumatic VacuumFlexibility: FlexibleType: Suction Cup
-
from $190.00Amazon $190.00 -
Gripper 2 Jaws Parallel Pneumatique Ress
Inlet Size: M3Overall Height: 2 1/8 inOverall Length: 3 1/4 inStroke Length: 3/4 in
-
-
-
Gripper, High Holding Force
Holding Force: High
-
HVFF 2 Way Pneumatic Hand Valve
Port Size: 6mm, 8mm, 10mm, 12mmType: 2 Way
About gripsters & lifters
Gripsters are end-of-arm tooling (EOAT) components designed to grasp and manipulate objects in automated systems. They are broadly categorized by their actuation method and gripping mechanism. Mechanical gripsters, including parallel (two-jaw, three-jaw) and angular types, utilize pneumatic or electric power to actuate jaws that physically clamp onto a workpiece. Key selection parameters include jaw stroke, gripping force (N), repeatability (mm), and jaw opening (mm). Vacuum gripsters employ suction cups or pads, often coupled with venturi vacuum generators or vacuum pumps, to lift non-porous materials. Critical specifications include cup diameter (mm), lifting capacity (kg), and material (e.g., NBR, silicone, polyurethane). Magnetic gripsters use permanent magnets or electromagnets to handle ferromagnetic parts, with holding force (N) and demagnetization time being crucial. Soft gripsters and adaptive gripsters conform to irregular shapes, often using compliant materials or underactuated designs. Collaborative robot (cobot) gripsters are designed for safe human-robot interaction, often incorporating force sensing and compliant surfaces. Common gripster materials include anodized aluminum, hardened steel for jaws, and various elastomers for suction cups.
How to choose
When selecting a gripster, first determine the workpiece characteristics: material, weight, dimensions, and rigidity. This dictates the primary gripping principle (mechanical, vacuum, magnetic, soft). Next, consider the application's required gripping force or lifting capacity (N/kg) and the necessary jaw stroke or cup diameter. Evaluate the available utilities: pneumatic pressure, electrical power (DC voltage, current), or if a purely mechanical solution is needed. Assess environmental factors such as temperature, dust, or moisture, which influence material selection (e.g., IP rating, food-grade materials). Finally, consider integration requirements, including robot flange compatibility (ISO 9409-1) and communication protocols (e.g., Modbus TCP, EtherNet/IP).