Sealing and Suction Pads
Sealing and Suction Pads within Vacuum Lifting.
Category CAT-000000175
Publications
- OT-2026-000006575
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a zone branch (16), a contact detector (18), and a vent valve (20). The arrangement addresses holding a porous or uneven workpiece that a rigid cup cannot seal, where
- OT-2026-000006573
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a manifold (16), a pressure sensor (18), and a vent valve (20). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the w
- OT-2026-000006572
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a plant vacuum connection (14), a manifold (16), a vent valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a ded
- OT-2026-000006570
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a pressure sensor (16). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece
- OT-2026-000006569
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a contact detector (16). The arrangement addresses starting the vacuum at the right moment in the approach, where evacuating before the face touches the
- OT-2026-000006566
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a mounting flange (10), a suction cup (12), a vacuum pump (14), a zone branch (16), a vent valve (18). The arrangement addresses choosing where the vacuum comes from, where an ejector spends compressed air conti
- OT-2026-000006564
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a plant vacuum connection (14), a zone branch (16), a vent valve (18). The arrangement addresses holding a porous or uneven workpiece that a rigid cup cannot seal, where a rigid lip
- OT-2026-000006563
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a isolation valve (16), a manifold (18), and a vent valve (20). The arrangement addresses handling workpieces that do not cover the whole gri
- OT-2026-000006561
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a vacuum pump (14), a manifold (16), a contact detector (18), and a pressure sensor (20), a blow-off valve (22). The arrangement addresses knowing that the workpiece is actually held
- OT-2026-000006559Bellows cup vacuum gripper, four zone face, per zone isolation, two stage ejector, contact triggered
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a isolation valve (16), a zone branch (18), and a contact detector (20). The arrangement addresses gripping workpieces that are not at the same height, w
- OT-2026-000006557
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a zone branch (16), a contact detector (18), and a blow-off valve (20). The arrangement addresses starting the vacuum at the right moment in the approach
- OT-2026-000006556
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a manifold (16), a zone branch (18), and a vent valve (20). The arrangement addresses choosing where the vacuum comes from, where an ejector
- OT-2026-000006554
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a plant vacuum connection (14), a zone branch (16), a blow-off valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, wher
- OT-2026-000006553
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a vacuum pump (14), a manifold (16), a vent valve (18). The arrangement addresses gripping workpieces that are not at the same height, where a rigid cup that reaches the
- OT-2026-000006550
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a isolation valve (16), a pressure sensor (18), and a vent valve (20). The arrangement addresses knowing that the workpiece is actually held before the arm moves, whe
- OT-2026-000006549
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a plant vacuum connection (14), a zone branch (16), a pressure sensor (18). The arrangement addresses knowing that the workpiece is actually held before the arm
- OT-2026-000006547
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a isolation valve (16), a zone branch (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece f
- OT-2026-000006546
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a ejector (14), a isolation valve (16), a vent valve (18). The arrangement addresses gripping workpieces that are not at the same height, where a rigid cup that re
- OT-2026-000006545
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a ejector (14), a isolation valve (16), a manifold (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool
- OT-2026-000006543
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a vent valve (16). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the workpiece is supporte
- OT-2026-000006542
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a manifold (16), a zone branch (18), and a vent valve (20). The arrangement addresses choosing where the vacuum comes from, where an ejector
- OT-2026-000006540
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a manifold (16), a vent valve (18). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the work
- OT-2026-000006538
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a ejector (14), a manifold (16), a vent valve (18). The arrangement addresses gripping workpieces that are not at the same height, where a rigid cup that reaches t
- OT-2026-000006537
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a manifold (16), a blow-off valve (18). The arrangement addresses putting the workpiece down quickly without it sticking to the face, where a vented cup releases at t
- OT-2026-000006535
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a isolation valve (16), a zone branch (18), and a vent valve (20). The arrangement addresses changing the tool between jobs without rewiring
- OT-2026-000006533
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a zone branch (16), a contact detector (18). The arrangement addresses starting the vacuum at the right moment in the approach, where evacuat
- OT-2026-000006529
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a manifold (16), a pressure sensor (18). The arrangement addresses knowing that the workpiece is actually held before the arm moves, where a cup that has
- OT-2026-000006526
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a isolation valve (16), a zone branch (18). The arrangement addresses choosing where the vacuum comes from, where an ejector spends compressed ai
- OT-2026-000006523
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a zone branch (16), a vent valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece family
- OT-2026-000006522
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a zone branch (16), a vent valve (18). The arrangement addresses choosing where the vacuum comes from, where an ejector spends compressed air continuousl
- OT-2026-000006521
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a vacuum pump (14), a zone branch (16), a contact detector (18), and a pressure sensor (20). The arrangement addresses holding a porous or uneven workpiece that a rigid cup cannot se
- OT-2026-000006519
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a ejector (14), a pressure sensor (16), a vent valve (18). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the wor
- OT-2026-000006518
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a zone branch (16), a blow-off valve (18). The arrangement addresses choosing where the vacuum comes from, where an ejector spends compressed
- OT-2026-000006517
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a isolation valve (16), a manifold (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated to
- OT-2026-000006516
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a vacuum pump (14), a zone branch (16), a vent valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece fa
- OT-2026-000006513
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a ejector (14), a isolation valve (16), a pressure sensor (18). The arrangement addresses gripping workpieces that are not at the same height, where a rigid cup that rea
- OT-2026-000006512
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a isolation valve (16), a pressure sensor (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpie
- OT-2026-000006511
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a tool-change interface (10), a bellows cup (12), a ejector (14), a isolation valve (16), a contact detector (18), and a vent valve (20). The arrangement addresses gripping workpieces that are not at the same heig
- OT-2026-000006510
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a vacuum pump (14), a vent valve (16). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the workpiece is supporte
- OT-2026-000006509
An end effector for vacuum end-of-arm tooling with compliant bellows cups is described. The tool comprises a mounting flange (10), a bellows cup (12), a plant vacuum connection (14), a manifold (16), a vent valve (18). The arrangement addresses controlling the moment the workpiece is let go, where releasing before the
- OT-2026-000006508
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a manifold (16), a zone branch (18), and a vent valve (20). The arrangement addresses choosing where the vacuum comes from, where an ejector spen
- OT-2026-000006507
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a mounting flange (10), a suction cup (12), a plant vacuum connection (14), a vent valve (16). The arrangement addresses choosing where the vacuum comes from, where an ejector spends compressed air continuously
- OT-2026-000006506Vacuum cup gripper, common isolation valve, six outlet manifold, ejector fed, rubber cups, oval form
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a isolation valve (16), a manifold (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated to
- OT-2026-000006505
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a mounting flange (10), a foam pad (12), a ejector (14), a isolation valve (16). The arrangement addresses holding a porous or uneven workpiece that a rigid cup cannot seal, where a rigid lip needs a smooth continuous surface, an
- OT-2026-000006501
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a plant vacuum connection (14), a pressure sensor (16). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece famil
- OT-2026-000006500
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a vacuum pump (14), a pressure sensor (16), a vent valve (18). The arrangement addresses knowing that the workpiece is actually held before the arm moves, where a cup that has not se
- OT-2026-000006499
An end effector for porous-face vacuum end-of-arm tooling is described. The tool comprises a tool-change interface (10), a foam pad (12), a ejector (14), a zone branch (16), a blow-off valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool per workpiece fa
- OT-2026-000006497
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a isolation valve (16), a zone branch (18). The arrangement addresses handling workpieces that do not cover the whole gripping face, where an unc
- OT-2026-000006496
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a zone branch (16), a contact detector (18), and a vent valve (20). The arrangement addresses changing the tool between jobs without rewiring the
- OT-2026-000006494
An end effector for vacuum end-of-arm tooling for robotic material handling is described. The tool comprises a tool-change interface (10), a suction cup (12), a ejector (14), a zone branch (16), a vent valve (18). The arrangement addresses changing the tool between jobs without rewiring the cell, where a dedicated tool