A component mounting machine switches between collective and individual nozzle dipping modes based on holding status.
A fiducial mark reference defines a smaller processing region for image data, reducing transfer volume and detection time while maintaining positional accuracy.
A tape guide with an open surface allows cover tape movement during component supply.
Independent head movement resolves synchronization limits, allowing simultaneous precise placement across multiple substrates.
An automatic feeder arrangement support system calculates component shortage times to detect supply gaps in production lines.
A control device selects suction nozzle combinations based on tip deviation measurements to enable simultaneous component pickup.
A board work machine uses dual Z shaft driving mechanisms to lift nozzle holders at multiple positions on a rotary head.
A component mounting apparatus uses a base-mounted refraction member to alter optical paths, resolving collision risks and depth of field constraints.
A movable mounting head uses an imaging camera to recognize positional deviations between the component extraction position and the housing portion.
A dual tray supply mechanism switches between component trays to maintain continuous mounting operations.
A splicing tape feeding device positions carrier tapes at a precise junction using servo-driven protection tape transport.
A bending apparatus uses sliding movable sections to form N-shaped leads for component mounting.
A component mounting machine adjusts suction nozzle height dynamically to prevent interference with mounted components during conveyor crossing.
Forming a triangular fold piece at the tape tip end ensures accurate insertion member placement, resolving vibration-induced feeding failures.
Control device rearranges suction nozzle placement positions at the station to minimize mounting head travel distance during tool exchange.
A blowing section directs gas along a transport surface to move waste-tape members without adhesion.
A management device prioritizes buffer slots for feeder pre-serving to secure supply attachment positions.
A component mounting machine adjusts nozzle lowering strokes using stored feeder height data for stable pickup.
A tape feeder sprocket control system uses angle sensors to detect position and rotate the carrier tape to a target location.
A component mounter control device manages pickup errors by retaining defective components or executing retry operations based on production volume.
A component mounting device determines abnormal posture using image analysis to ensure reliable holding.
Alternating C-shaped guides tilt the component supply tape diagonally, reducing the guide mechanism width to match the tape width.
A lock mechanism holds the sprocket in place within a tape feeder to eliminate readjustment delays caused by position deviation after power loss.
A component mounting machine selects between imaging and sensor detection methods for feeder supply positions.
A tape feeding device calculates carrier tape movement from motor steps to position components accurately.
A work device guide aligns feeder carriage connectors for automated data transmission.
A feeder tape conveyance groove biasing member supports the carrier tape lower face during component storage section passage.
A bulk component supply device moves cases between a mounting head and a replenishment region for automatic filling.
A pallet replacing device moves multiple component trays simultaneously between storage and replacement slots using a dedicated moving tool.
Nested cassettes support large coreless roll bodies, preventing housing device deformation during continuous component supply.
Concrete cheek members on a metal frame absorb vibrations to improve placement accuracy while maintaining structural integrity.
A suction nozzle mounting head uses a shared raising and lowering driving device to control component placement.
An integrated lid mechanism lifts carrier tapes to peel splicing tape from protective tape, preventing adhesive peeling during automated removal.
A lower receiving pin arrangement method uses temporary placement areas to position pins at arbitrary locations on a base.
A mounting device applies position-specific correction values to a pickup head during component placement.
Extracting the control interface to an external base resolves the contradiction between reducing feeder volume and maintaining operability.
Electronic computing device selects optimized setup sets from iterative combinations to minimize machine downtime during high-variance electronics assembly.