A board carrier apparatus uses selective claw stopping to convey circuit boards of varying sizes.
Continuous conveying with synchronized manipulators maintains positioning precision while reducing cycle times and mechanical stress.
Alignment module measures eccentricity to estimate warpage, correcting positional displacement during transfer.
A multi-lane transport unit uses a movable switching device to route articles between entry and exit lanes.
A workpiece handling apparatus automates case transfer between storage and a conveyor using a dedicated conveyance device.
Pedal-actuated stop walls adjust between extended and retracted positions, resolving the trade-off between package accumulation and manual lifting strain.
A suspended push bar mechanism enables controlled vertical and sliding movements to displace objects between conveyor belts.
Segmented linear motors reduce moving mass and energy waste, enabling high acceleration for parallel lane sorting.
Buffer system accumulates containers and releases them synchronously to prevent stream gaps.
Segmented conveyor belts adjust speed to prevent jerky acceleration and container tipping during transfer.
A sub conveyor unit lifts to change its conveying attitude above a main passage.
A rotary conveyor apparatus uses a radial gripper mechanism to transport containers along a rotating platform.
Dual moving belts route objects via alternating cycles, eliminating output flow gaps that require additional gap-filling devices.
A tiltable linear conveyor adjusts the circuit board angle relative to a solder wave for precise component adaptation.
Inverting the pivot bearing location allows the diverter arm to sort articles with closer spacing, eliminating interference gaps and increasing throughput.
Elastically deformable carousel appendages absorb stress during transfer, preventing damage to fragile articles with dimensional tolerances.
Automated routing via RFID scanners directs baggage to specific pickup stations, reducing theft and passenger waiting time compared to manual handling.
A rotating operation transport device adjusts article orientation at the upstream-downstream connection point to prevent deviation and abrasion.
A modular overturning device uses adjustable guide segments to rotate containers along a spiral path.
A liquid roller mechanism controls transport velocity of flat objects on a streaming liquid surface.
T-shaped slots constrain button members to prevent incorrect cleat orientation while enabling easy removal.
Orienting device uses escape-preventing walls to stabilize objects during high-speed transport along a handling path.
Angular conveyor units generate separation force to detach stems from produce pods, preventing mechanical damage during processing.
A combination weigher collecting chute merges inner and outer funnel sections to eliminate joint gaps.
Segmented conveyor belts and manipulator rotation resolve positioning precision versus cycle time contradictions in high-speed palletizing.
Segmented conveyor sections adjust speeds independently to position piece goods precisely, reducing mechanical stress and system complexity.
Radial segment movement enables quick replacement without axial displacement, resolving stability and complexity trade-offs.
A component depositing device uses rotating magnets to convey bulk parts above a path where they fall by gravity.
Segmented containers and dynamic scattering resolve complexity and precision trade-offs.
A manipulator grips and separates piece goods from a closed formation, positioning them with defined gaps to reduce mechanical stress during layer formation.
A single actuator drives a conveyance belt and rotary table through a mechanical linkage unit to synchronize product transfer.
An inter-floor conveyance device incorporates an intermediate section to deliver containers between a vertical transfer mechanism and delivery conveyors.
A single conveyor system transports items and separators through integrated primary and auxiliary paths to automate handling.
Direct piston drive eliminates intermediate linkages, resolving complexity-reliability trade-offs while enabling dynamic pivoting for varied object shapes.
Direct suction openings in the rotor wall eliminate complex conduits and separate cups, reducing installation costs while maintaining holding reliability.
A magnetic track secures small electronic devices on carrier tapes, eliminating vacuum suction holes that cause smaller components to jump or flip.
A carrier unit isolates robot vibration using a segmented frame body that compensates for base deformation.
Segmenting the storage mechanism into a non-contact spiral and rotating base resolves orientation stability conflicts while maintaining continuous throughput.
A conveyor belt exerts torque on products to rotate them, replacing complex grippers and vacuum systems that hinder hygiene and throughput.
Driven surfaces with high- and low-friction lanes align flexible bags, preventing jams and enabling closer conveyor spacing.
A conveyor flight employs a cam mechanism to rotate a projection, resolving the trade-off between maintaining object spacing and preserving conveyor efficiency.
A turning unit with guiding slots and a turning member guides carriers between parallel rails.
Tapered feed rolls accelerate lumber through curved paths to minimize collisions and reduce system footprint.
Articulated chain links transition between stretched and compact configurations using rotatable supports driven by actuators.
An adjustable guide rail compensates for wear in the transport chain, maintaining precise container alignment during transfer.
A rotating disk feeding system aligns beverage containers on a conveyor using centrifugal force and peripheral barriers.
A taping device uses a reorienting mechanism to align small parts before insertion into carrier tape grooves.
A segmented conveyor belt with adjustable transversal seatings delivers elongate articles in precise orientation.