Pivotal gripper arms linked by a parallelism-keeping mechanism maintain orientation along curved paths, resolving format change limitations.
Switched reluctance motors rotate ferrous rollers to enable precise article transfer, replacing mechanical drives that limit sorting flexibility.
A handling device couples outer packages on a conveyor line to enable continuous article transfer without stopping the transport stream.
A transport belt positioned between the drive surface and mover enables flexible product grouping without individual guides.
Independent gripping devices track articles on conveyors using real-time detection sensors to adjust transfer speed dynamically.
Segmented transport tracks minimize dead times at container treatment devices by enabling continuous sequential movement.
Adjustable wheel guides maintain constant contact for precise movement, reducing wear and contamination in aseptic environments.
Inlet pushers laterally displace products along movable runners to form groups without exposing stacks to harmful inertial forces that compromise integrity.
Relocating the conveyor sensor to the track underside prevents contamination from oil and dust while maintaining reliable pulse detection.
Magnetic fields move a cart along a guide track to place overlapping food slices, reducing manual assembly complexity.
An inclinable conveyor belt section and sliding stem actuator adjust product rows along the feed axis, eliminating dead times in food packaging lines.
A magnetic transport mover guide rail uses rolling elements to support vertical forces along a predefined path.
An active thrust tilts cookies alternately on a conveyor, removing positioning devices and simplifying the production process.
A movable coil arrangement serves multiple tracks to reduce device complexity while maintaining carrier productivity.
Coils produce electromagnetic flux waves to propel conductive articles, eliminating stranding and tipping during high-speed transitions.
Ferromagnetic helical worms attract carriage magnets to enable high linear speed without complex electric motor control systems.
A linear magnetic conveyor moves carriers at variable speeds to align with moving containers for product transfer.
Segmented magnetic drives propel container carriers across transport zones, enabling flexible routing and urgent sample prioritization.
A linear motor coil with an adjacent yoke enables three-axis control of a mover, reducing apparatus size and cost.
Electromagnetic actuation replaces springs and pneumatics, ensuring constant pressure across varying container heights without mechanical wear.
Evaluation unit linearizes inductive sensor output signals to determine sample carrier position and direction.
A container gripper uses an absorber to dampen contact forces during handling operations.
Programmable row pushers replace robotic manipulators in buffer devices, reducing system complexity while maintaining high operational efficiency.
A linear motor alignment device positions elements into gaps between moving products, resolving spacing inconsistencies in disordered transport streams.
A carriage drive transmission mechanism passes through a stator opening oriented to block foreign substance invasion.
Position-variable vacuum generation adapts to different product geometries while reducing energy consumption through periodic activation.
A transport apparatus coordinates main and branching mechanisms to direct articles into separate passages.
Capacitive touch-sensitive surfaces detect liquid spills on transport layers within automated laboratory systems.
A pneumatic carrying system transports hazelnuts through a closed flow pipe using an air blower and separator.
Dynamic rail segments rotate to vertical positions, allowing magnet-driven shuttles to switch paths without mechanical obstruction.
A laboratory sample distribution system uses route reservation and non-reserve flags to manage carrier movement on a transport plane.
Electromagnetic actuators drive container carriers across a transport plane, resolving mechanical coupling constraints that limit independent sample movement.