A profiled disc and preloaded spring drive rapid latch movement for reliable loading and unloading in overhead conveyor bags.
Robotic retrieval and overhead conveyors assemble mixed pallets while reducing manual hazards and floor-space demands.
A linear movable roller shifts between retaining and releasing positions, simplifying curved conveyor belt assembly and maintenance.
This case combines TPU grip yarns with PET support yarns to prevent fiber separation while preserving durability and air permeability.
An integrated handling device arranges and removes format parts, speeding bundle changes without manual transport-module adjustment.
This case uses orientation feedback and target characteristics to vary parallel conveyor speeds for accurate alignment.
This case simplifies container transport grippers by replacing control cams and springs with a compact pivot shaft for easier cleaning.
An adjusting device repositions and changes conveyor length, simplifying material transport when slipform paver layouts change.
Differential-speed conveyor parts with varying inclinations maintain contact area while orienting targets with planar or bent bottoms.
Rotating suction cleans rail contaminants continuously, supporting clean-room cleanliness without interrupting transfer.
Embedded conductive fiber loops provide multi-state belt monitoring, reducing alignment failures and enabling timely maintenance.
This helical conveyor varies inclination along the track and uses a driven surface to move diverse products without sticking or excessive speed.
A robotic end effector uses a compliant diaphragm, slidable rods, and actuation to capture varied articles safely.
This case relocates drive and connecting belts inside conveyor frames to prevent pinching while maintaining uninterrupted conveyance.
A robotic pick-up head uses unidirectional chains as cantilever supports for sliding tissue products and higher cycle rates.
Air blowing, claw separation, and suction are selectively coordinated to prevent multiple sheet workpieces being picked up together.
Dynamic speed control matches ASRS transport devices to demand, reducing wear and noise.
A controlled intermediate gap and pusher placement help prevent product displacement while preserving sorting capacity on conveyors.
An infeed sensor and controller regulate conveyor speed independently, improving accumulation and third-party machine integration.
TOF/TDOA positioning and feedback control keep storage vehicles in tandem at set separation, improving rail-space use.
This case shows how a lift cage and sideways loader serve two shelf rows while a back cover stabilizes trays and protects users.
Automated propane dispensing combines RFID identification, mechanical filling, visual inspection, and leak testing for safer self-service.
Sensors guide robotic loading for precise placement across varied storage spaces.
A robot material handler adjusts tilt angle, speed, and acceleration to deliver varied products without physical reconfiguration.
Stress-concentrating members and reverse slope blades automate corner tearing, unfolding boxes into cross-shaped flat sheets.
Docking arms, tray lifts, and conveyors automate tray transfer from cell-based carts, reducing manual errors and delays.
A vertical elevator and scissors actuator automate consumable delivery from holding shelves, reducing manual reloads and interruptions.
Adjustable arcuate members and toggle clamping lift containers while minimizing surface wear.
A frame and power transmission mechanism pre-position corner members to tear empty boxes into flat sheets without manual intervention.
A dual-stage breader combines linear coating with rotating-wheel compression to improve texture, flow, and maintenance access.
Operator access openings let robots present containers at the grid wall, removing separate putwalls and conveyor belts for batch picking.
A valve chamber and recessed belt openings activate suction locally, improving material holding while reducing energy use and noise.
This case uses a vertical lift cage, horizontal loader, and back cover to move and stabilize trays across parcel shelves.
A robotic platform uses sensors, elevation, and transfer mechanisms to load varied objects accurately into designated storage locations.
This case shows how a movable chassis and telescoping fetching assembly transfer individual cases without moving entire storage containers.
A low-conductivity, low-hardness contact support buffers thermal shock, improving glass edge chamfering precision and strength.
A movable chute selects roller or belt conveying paths, transferring mixed articles to one discharge point without manual handling.
Movable supports place storage bin lids beside grid columns, separating them from open bins to help prevent cross-contamination.
This case routes storage cases between robot and human stations, avoiding operator calls when mixed articles exceed robot capability.
A stackable container uses racks and side-access doors to store varied items at different heights and simplify retrieval.
This automated storage port uses a movable cover to protect operators and place adjacent access points closer together.
Air-permeable zones and vacuum channels fix solar cells and solder ribbons during continuous laying without mechanical compression.
A unitary transfer guard uses tightly spaced protrusions to support objects across gaps while reducing friction and label adherence.
Multiple conveyor stages coordinate timed disinfectant spraying and air drying to improve coverage while limiting water retention.
Automated platform transfer reduces manual errors in container handling.
A relay module uses dual conveyors and lateral transfer to buffer containers below the port column and ease congestion.
An adjustable bale, pivoting lift, and agitator loosen contents and automate unloading across varied container sizes.
This case uses a recirculating cover linked to the lifting means to close floor gaps and maintain continuous pallet circulation.
Directly bonded sensors and segmented ROIC blocks expand CT detector coverage while reducing gaps and power dissipation.
The jig limits bag expansion during lifting, guiding polycrystalline silicon bags into boxes without partition contact or misalignment.