OPENTECHNICAL PUBLICATION OT-2026-000015495 Two bellows cup vacuum gripper, two zone face, two outlet manifold, three stage ejector, pulsed blow-off before set-down Published: 2026-09-17T08:13:55.421510Z Permanent URL: https://opentechnical.org/p/OT-2026-000015495 Categories: Robotics & Automation > End Effectors > Vacuum Grippers ------------------------------------------------------------------------ ABSTRACT A zoned vacuum gripping tool comprising one mounting flange, two bellows cups, one ejector, one manifold, two zone branches and one blow-off valve. When the bellows cups reach the workpiece, the bellows cups are evacuated by the ejector. Before the workpiece reaches the set-down position, the workpiece is blown off by the blow-off valve while the workpiece is above the receiving surface. The arrangement is a proposed configuration composed from a typed library of mechanism blocks derived from published patents; it has not been constructed. 1. Purpose and arrangement [0001] This disclosure describes a zoned vacuum gripping tool: two bellows cups carried on a mounting flange, fed by an ejector. It is arranged for handling workpieces that do not cover the whole gripping face, clearing the face at release and taking up height differences at the face. One concrete embodiment is described; every connection is stated with the medium it carries, and the operating sequence is given as conditions on named operations. 2. Components, construction and connections [0002] One mounting flange. The mounting flange carries the whole assembly and presents the bolt pattern that meets the robot. [0003] Two bellows cups. Each bellows cup is folded so that it shortens under vacuum and takes up a height difference between the face and the workpiece. The count of two follows from the arrangement: one gripping element per zone branch. Each bellows cup has one fold. [0004] One ejector. The ejector draws the circuit down by passing compressed air through a nozzle; it has no moving part at the tool and consumes air for as long as it runs. The ejector has three stages. [0005] One manifold. The manifold receives the vacuum at one inlet and distributes it to its outlets. The manifold has two outlets. [0006] Two zone branches. Each zone branch carries the vacuum of one zone of the face and no other. The count of two follows from the arrangement: one branch per zone. The distribution is divided into two zones, each fed by its own branch. [0007] One blow-off valve. The blow-off valve drives compressed air back through the circuit to the face, which clears the face instead of waiting for the circuit to refill. The blow-off is a short pulse. The blow-off pulse is given before set-down. [0008] The bellows cups are carried on the tool side of the mounting flange. [0009] The manifold is fixed to the tool side of the mounting flange. [0010] The ejector is fixed to the tool side of the mounting flange. [0011] The manifold inlet is connected to the ejector outlet, which supplies every outlet of the manifold. [0012] Each of the two zone branches is taken from its own manifold outlet, so that the branch carries the vacuum of its own zone only. [0013] Each bellows cup is connected to its own zone line, one bellows cup per zone, and is evacuated through that line. [0014] The blow-off valve is connected to the circuit at the ejector outlet, so that compressed air can be driven back through the circuit to the face. [0015] The robot side of the mounting flange is bolted to the robot flange. [0016] The ejector is fed from the compressed air supply of the cell. [0017] The blow-off valve is fed from the compressed air supply of the cell. [0018] The blow-off valve is switched by the cell controller. 3. Operating sequence and conditions [0019] - When the bellows cups reach the workpiece, the bellows cups are evacuated by the ejector. [0020] - Before the workpiece reaches the set-down position, the workpiece is blown off by the blow-off valve while the workpiece is above the receiving surface. [0021] - The workpiece is held until the blow-off valve has opened the circuit. [0022] The cell controller commands the blow-off valve; no sensor drives an actuator directly. 4. Parameters and operating assumptions [0023] Parameter values of this embodiment: folds of the bellows cups: one (sets the travel taken up between the face and the workpiece, and the lateral stiffness of the cup under load); material of the bellows cups: plastic (sets the friction at the lip and the resistance of the folds to fatigue); stages of the ejector: three (sets the flow drawn at low vacuum and the compressed air consumed while a sealed face is held); outlets of the manifold: two (sets how many lines can be fed from one inlet); material of the zone branches: plastic; zones of the zone branches: two (sets how much of the face can be treated separately); duration of the blow-off valve: a short pulse (sets how quickly the face clears and how much air each release costs); timing of the blow-off valve: before set-down (sets whether the pulse assists a drop release or clears the face after set-down). [0024] The workpiece is released while it is still above the receiving surface and falls the remaining distance onto it. This sequence is for a workpiece and a receiving surface that tolerate that drop, for example a part released into a container or onto a conveyor; the drop height is set by the application and is not fixed here. [0025] The blow-off is a short pulse: the valve opens for a fraction of a second, long enough to break the seal and clear the face, and closes again. 5. Provenance and status [0026] This document is an original combination composed from a typed library of mechanism blocks. Each block was derived from a published patent and carries typed connection points, the parameters its source states, and its own construction and operating description. The combination described here is proposed and has not been constructed. The published documents behind the blocks used in this arrangement are EP-4489564-B1, US-10549431-B2, US-8006968-B2, US-8132312-B2, WO-2008134339-A4, WO-2026020244-A1; their text is not reproduced, and the description above is generated from the structure of the combination. ------------------------------------------------------------------------ OpenTechnical publication OT-2026-000015495 Published 2026-09-17T08:13:55.421510Z https://opentechnical.org/p/OT-2026-000015495