A mounting nozzle positions electronic components using camera-captured pattern images and pre-stored positional relationship data.
Rotating the nozzle prevents large components from interfering with previously mounted parts on the board.
Optical detection replaces mechanical suction to identify empty tapes and position leading components, eliminating unnecessary lifting cycles.
A detachable cleaning unit supplies air to suction nozzles for automated maintenance cycles.
A component mounter stores unused backup pins beneath a plate using vertical nesting to optimize internal space.
A device management system tracks conveyance carriage positions and component identification to streamline setup operations.
An exchangeable bumper section absorbs collision forces between adjacent tape feeders, preventing wear on the feeder main body and reel holder.
Detecting rotation angle via a transmission gear side surface reduces tape feeder thickness while maintaining pitch feeding accuracy.
Dual lead cutting mechanisms trim center and outer leads of three-lead radial components, resolving mounting precision issues.
Detachable adapters on universal opening and closing members enable flexible clamping configurations, reducing device complexity and handling costs.
A component mounting apparatus sets a suction position offset based on cavity and component dimensions to stabilize pickup.
Asymmetric unilateral support reduces device complexity and volume while enabling closer working head approach to the tilted target.
A maintenance management device stores inspection results linked to exchangeable element identification data.
A component data handling device extracts comparative terminal data to enable accurate automated recognition of electronic components.
A tape feeder set-up system reverses carrier tape direction to release unscheduled reels.
A feeder case integrates a transport section and communication port to move electronic components from storage to discharge.
Wireless communicators read RFID tags on cassettes to verify component carrier tape identity before supply.
Contact detection sensors measure substrate height at single points, resolving the trade-off between measurement precision and production efficiency.
A component mounter cover shifts between closed and open states to manage the tape feeder path.
A rotating movable member blocks the gap above a moving carrier tape to prevent standby tape dragging and eliminate supply blockages.
Staged feeder storage container manages component supply units via dual moving robots, resolving small-volume production replenishment bottlenecks.
An opening in the light-shielding pattern enables reflected light inspection of sealing members on liquid crystal displays.
An automatic exchanging device fills empty feeder slots with dummy units to prevent operator hand intrusion during production.
Aligning loading, holding, and unloading units in one direction reduces the apparatus dimension in the conveyance direction while maintaining high productivity.
A component supplying apparatus uses a swingable stopper and movable locking part to align and feed carrier tapes.
Sensors detect trailing tape ends to trigger precise cutting, allowing the discharge section to remove segments and prevent jamming in the guide.
Repair tape adheres to opened cover tapes to close them, preventing component waste during reel replacement.
Management device visualizes suction and loading position offset distributions to identify nozzle deterioration factors without disrupting the mounting process.
Continuous optimization of feeder arrangements during production resolves the trade-off between early start times and line efficiency.
A lighting unit control section calculates turn-on time by multiplying pulse width by a constant to set required light amount.
Slanted microbore walls contribute color, reducing particle control complexity for stable multicolor electronic paper.
Wettability gradients on cavity surfaces direct meniscus initiation, lowering voltage thresholds and eliminating hysteresis in display pixels.
A component loading apparatus uses a rotary head and vacuum suction to transport micro-components onto trays for packaging.
A component mounting machine detects suction nozzle positional deviations and transmits correction values to feeders for accurate pickup.
An automatic exchange mechanism reduces labor by swapping tape feeders between a mounting stand and a collective storage housing.
A production management device links component mounting conditions with inspection results to identify error trends and reduce waste.
A component mounting device uses a measurement unit to verify bonding material state during assembly operations.
An insulation layer and bridge electrode with matched refractive indices decrease visibility of the bridge electrode on the display.
A component mounting machine adjusts relative position coordinates using camera imaging data to maintain alignment accuracy.
A management apparatus determines feeder quantities based on empty storage slots to enable collective feeding operations.
A component mounting device determines movement direction based on axis distances to optimize imaging and placement routing.
A chuck device minimizes clamping claw opening during release to prevent interference with adjacent components.
A control device sets distinct allowable values for component types and mounting coordinates to manage pickup deviation amounts.
Curved guide portions on tape feeder rear ends enable smooth insertion and alignment during replacement operations in narrow intervals.
A grounding detection device positions a target portion to shield light before component contact.
A control device manages an automatic exchanging device along a component mounting line to position feeders without obstructing operator access.
Integer linear programming assigns printed circuit boards to fitting lines, minimizing setup families and balancing assembly line utilization.
A nozzle management machine circulates pallets to store and treat suction nozzles for electrical component mounting.
Segmented holding and pressing units apply distinct loads to prevent bending deformation of thin shield covers during component attachment.