A component mounting apparatus adjusts target position to ensure proper contact.
A component mounting system extracts specific image data from memory based on inspector abnormality information to facilitate defect investigation.
A splicing tape management system stores identification codes linked with usable time limits to track adhesive performance.
Dynamic inspection areas adapt to component geometry, eliminating pseudo-defects from manufacturing tolerances.
A head-side feeder moves to any position on the mounter plane, allowing component holding tools to contact components at pickup and mounting positions.
A feeder rear section features a guiding groove that directs carrier tape into the insertion path for stable feeding.
A component mounter applies offset corrections only when calculated values exceed a threshold.
A component feeding device uses a sliding stage to position parts for pickup.
A feeder control system manages sprocket rotation direction to prevent tape removal during rewinding operations.
A component mounting system exchanges supply units in groups via a unit exchange device.
A job switching method coordinates setup changes across mounting machine groups to maintain production flow.
Segmented mounting slots on the attachment accommodate different tape feeder widths, resolving facility complexity while maintaining versatility.
A tape feeder uses a displacer to lift a following tape holder, detaching the uninserted tape portion from lower supporters.
A splicing device pauses pressing members to bond carrier tapes securely.
A component mounter uses cavity addressing to organize image processing results from bulk feeder supply regions.
A large anti-static assembly mat distributes grounding points across its surface to protect electronic components from electrostatic discharge.
A tape feeder uses a detachable end portion guide to maintain precise carrier tape positioning during component mounting operations.
An inner wall marking on a holding device allows a camera to automatically identify pipette types, eliminating manual verification errors.
A controller calculates predicted task time by analyzing feeder disposition in slots to optimize SMT scheduling.
A component holding section adjusts its position based on measured radial lead component dimensions.
A management device determines slot overlap between target and preceding feeders to schedule pre-serving actions.
A component feeder switches supply tape routes automatically after loading completion.
A component determination device calculates a reference plane from contact section positions to assess electrode suitability.
A biasing member with a recessed abutment surface engages carrier tapes on a sprocket.
A tape feeder holding section maintains cover tape tension during power-off states to prevent slackening.
A movable pressing member adjusts force on the used tape to prevent vibration jams while accommodating different tape types without causing obstruction.
One-directional clutch prevents reverse rotation of the cover tape pulling gear, eliminating component pickup errors caused by insufficient peeling force.
A shared driving section operates holding and release mechanisms for tape feeders, reducing device complexity and cost.
Combines optical inspection with component placement on a shared carrier to eliminate separate AOI machines.
A component mounting machine executes parallel supply operations via a bulk feeder to maintain continuous production flow.
A component mounter head automatically selects a different mounting tool type when an abnormality is detected during electronic component placement.
A scanning unit detects a virtual reference mark generated by imaging optics to position a machine head.
Motor-driven sliding mechanism aligns tape feeder to prevent connector damage during manual handling.
An expandable cover tape collection section adapts volume during operation, resolving the conflict between compact feeder size and sufficient waste capacity.
A tape auto-loading device links cover and temporary tapes using a heated pinching mechanism that bends the joint along a curved path.
A diffusion member inside a nozzle group scatters incident light to create a uniform background for image pickup units.
Segmented bonding regions on electronic component array tapes prevent upper layer damage during reel replacement.
Adjustable slider attachment sections prevent interference between wide work heads by dynamically changing spacing distance.
Automated feeding claws replace manual insertion to eliminate component bending and damage while maintaining compact device dimensions.
A folding shopping cart uses a telescopic vertical frame member and button-activated locking device to convert between use and storage orientations.
A component mounting apparatus switches feeder power supply to reduce heating.
A feeder exchange device moves along component mounting lines to transfer feeders between mounters and storage units.
Segmented trench formation increases withstand voltage while keeping aspect ratios within producible limits.
Adjustable gripping positions eliminate dedicated hardware, resolving the trade-off between device complexity and component adaptability.
A dual tray feeder system enables operator access to idle component supply units while the mounting head continues picking parts from active trays.
Controlled heating softens adhesive bonds while mechanical vibration disturbs the device to separate components for reuse.
Front light barcode reading on component sides resolves accessibility constraints while maintaining mounting speed.
A feeder management device guides reel removal based on production plans.
An interlocking mechanism lifts an engaging member from indexing holes to release carrier tape for conveyance while preventing dislodgement in standby states.