See how a debris blower uses fan-driven airflow through cooling channels to prevent battery ove
See how a contact bridge on tool attachments electrically bridges motor interruptions only in s
See how a vacuum device uses conductive pathways from fan blades to ground to prevent control b
See how a segmented housing design with detachable first and second housings enables compact st
See how an adjustable interface enables the operating unit of a long-rod electric tool to pivot
See how a robotic platform with interchangeable mowing, sweeping, and polishing units consolida
See how repositioning the motor to the air outlet end enables upright debris removal, reducing
See how a tubular blower integrates a rechargeable battery, heater, and mode switch to handle b
See how a backpack tool apparatus uses detachable guide-rail connections and shared battery pow
See how a robotic platform with interchangeable mowing, sweeping, and polishing units reduces m
See how a backpack assembly with detachable tools and shared battery pack enables multi-functio
See how a contact bridge interlock prevents electrical bridging in hazard positions and enables
See how a flexible member with central aperture, linear slit, and elastic border captures falli
See how a rotatable volute enables one tube to switch between blowing and suction modes without
See how opposite-side battery and handle placement with a tube indentation reduces recoil force
See how inclined blower-fan positioning and asymmetric handle design maintain grip space and ba
See how a curved turn portion and radially positioned ejection port increase suction velocity w
See how inclined blower fan and opposing battery placement optimize grip space and weight balan
See how repositioning the ejection port radially outward of the narrowest pipe portion increase
See how segmenting a position-dependent switch into two position-independent switches reduces s
See how a motion sensor detects blowpipe angle to automatically activate or deactivate the moto
See how a rotatable volute enables a single tube to switch between blowing and suction modes wi
See how a detachable battery pack supporting member enables hand-held blowers to switch between
See how a backpack tool system uses guide rail connections and locking mechanisms to enable int
See how rear-mounted air intake and battery positioning near the user's back improve airflow ef
See how a rotating thrasher bar breaks up sticks and large debris at the inlet chute opening to
See how dual voltage thresholds prevent uncomfortable battery switching during motor startup wh
See how a flexible elbow with rigid insert, breakaway coupling, and tensioning system resolve n
See how a broom mounted on a leaf blower air tube uses friction and pneumatic force to dislodge
See how segmented base and interchangeable attachments enable quick function switching without
See how a mechanically integrated cruise control actuator enables stable motor speeds and tempo
See how a pivotable handle adjusts grip inclination relative to discharge direction, optimizing
See how angling the impeller working plane 55-85 degrees to the back plate eliminates elbows, r
See how rear battery positioning along the motor-fan axis distributes weight evenly, improving
See how a controller switches between default and low-noise modes using predetermined settings
See how a dual-stage shredder with blades and cutting assembly handles rigid debris without dam
See how a segmented air outlet with deflected and straight airflow paths disperses reaction for
See how a dual-fan assembly with segmented blower and vacuum attachments eliminates inactive co
See how a pressurized air handling system with dual flow paths and user-operable air control en
See how a vacuum adapter uses a screen and shield to evacuate air from yard-waste bags without
See how a vacuum adapter uses a screen and shield to suction air from yard-waste bags, compress
See how a downward-facing suction nozzle with an axial fan and elbow design directs noise away
See how a pivotable dual-axial-fan assembly switches between blowing and suctioning modes by re
See how a movable ejector enables a handheld blower to switch between high velocity and high fl
See how repositioning the motor to the shaft's distal end resolves the contradiction between ea
A universal blower mount switches between backpack and wheeled operation to cut equipment count, storage needs, and transport burden.
Forced airflow through a hollow chute creates suction that gathers leaves and bags them in one pass, cutting manual labor and collection time.
A flexible back-worn vacuum with swivel hose and battery power reduces user effort while extending reach and tool access in cleaning.
Cyclonic separation replaces porous bags in a convertible blowervac to prevent clogging, maintain suction, and keep dust and moisture off users.
Inclined rectifier fins create helical flow to widen blower air output and adjust wind breadth without a larger nozzle.
A moveable cam and blocking plate keep the motor switch inactive until the attachment is secured, preventing accidental fan starts.
A rotatable handle keeps the grip above the center of gravity, balancing blower and vacuum modes for comfortable one-handed use.
An onboard cord wrap uses the blower housing and an interference-fit retainer to keep the power cord organized and ready for quick reuse.
A motor layout angled toward the back removes airflow bends, cuts resistance, and reduces user strain in a backpack leaf blower.
Foam-filled lateral intake gaps cut backpack blower noise radiation while preserving airflow through open upper and lower intake paths.
An angled vacuum nozzle shortens blower-vacuum length for easier one-handed use while maintaining safe attachment and operation.
A removable air inlet cover maintains blower back pressure, limiting motor speed and current draw when the blower tube is absent.
A perpendicular ring grip balances a portable vacuum blower while avoiding antivibration preload, reducing fatigue and improving guidance.
Separate intake and discharge switches let a manual blower run only with secured attachments, improving safety and attachment exchange.
A pivoting door, biasing member, and latch secure the vacuum tube while simplifying switching between blower and vacuum modes.
A segmented two-thread tube connection widens alignment tolerance and adds tactile feedback for faster, more secure handheld blower assembly.
A pivoting motor housing and slide-valve duct layout reduce debris buildup, simplify cleaning, and preserve vacuum and blow operation.
A pivoting housing exposes the impeller and duct for cleaning, reducing debris buildup while preserving vac and blow operation.
Ground-driven roller motion powers the vibrating screen, simplifying turf cleaning while reducing drive complexity and maintenance.
A preset activation sequence lets a hand-guided sensor self-calibrate across positions, reducing manual setup and accidental triggering.
Positioning the battery pack between two handles counterbalances blower recoil, cutting user fatigue while supporting higher airflow and longer runtime.
Predetermined touch sequences let a handheld control sensor self-calibrate across detection positions, improving accuracy under changing conditions.
A partition wall supports the motor across two compartments, improving cooling airflow and reducing vibration transfer to the housing.
Sensors and GPS guide an autonomous vehicle to detect divots and dispense infill or seed, cutting manual turf repair time.
Swappable rechargeable battery modules let a robotic lawn mower extend runtime without disassembly while keeping a stable chassis interface.
A shorter blower tube, filter, and safety tip improve vehicle drying control while reducing paint contact and micro-scratch risk.
Swappable battery modules let a robotic lawn mower extend runtime, match lawn size, and share power with other outdoor equipment.
A wearable battery bank switches between two pack receptacles to keep power tools running while limiting added weight and adapter bulk.
Handle shells and cover mount the electric connecting socket while thermoplastic elastomer damping improves reliability and lowers assembly complexity.
Sensors locate damaged turf and guide a vehicle to dispense seed, infill, or liquids, cutting manual inspection and repair time.
A wearable adaptor switches power between multiple battery receptacles to extend tool runtime while limiting added size and control complexity.
A movable wall and conveyor layout lets one machine collect and apply turf materials in one pass, cutting fuel use, time, and turf damage.
Pickup teeth and opposing conveyors automate sod scrap collection and fill the dump bed efficiently from front to back.
Thermoplastic elastomer handle parts support the power tool socket, damping vibration while allowing relative movement for reliable connection.
A modular blower tube adds filtration, reach, and airflow control so existing leaf blowers can dry vehicles without debris scratches.
Positioning the battery pack between two handles counterbalances recoil, reducing fatigue while supporting higher airflow and longer use.
Zone sensor data and predictive models tailor turf actions to local conditions, reducing uneven treatment and resource waste.
Nighttime UVC treatment lets an autonomous robot suppress C4 turfgrass growth and disease while reducing mowing demand and chemical use.
Separate axial and circumferential grooves simplify blower pipe joining, maintain secure attachment, and support easier injection molding.
Zone-specific sensor and historical data drive predictive turf models and tailored actions to improve turf health while reducing resource waste.
A telescoping curved blower attachment adjusts nozzle height and angle to reduce back strain and improve debris clearing across blower types.
Sensor feedback measures transported sod slab length and automatically adjusts later cut-off lengths to offset strain-induced size errors.
Camera-based object recognition guides a motorized lawn tool to remove weeds and collect debris without chemicals, blower noise, or heavy robots.
Nighttime UVC exposure from an autonomous robot slows C4 turf growth, reduces mowing demand, and suppresses pathogens without chemical residues.
Camera-based object recognition guides a robotic lawn mower to mechanically remove weeds and collect cones, needles, and leaves without chemicals or noise.
Brushing paths guided by stored turf grain data help a self-driving robot lift fibers more effectively and maintain artificial turf appearance.
Nighttime UVC treatment regulates fast-growing C4 turfgrass, cutting seed heads and clipping weight while avoiding chemical residues.
A one-way pinion lets the trimmer disengage the cutting spool while driving a fan, so users can trim grass and clear debris with one tool.
Defined lawn zones and distributed control let a robotic vehicle monitor conditions and service only areas that need maintenance.
Sensor-driven zone models predict turf condition and recommend localized maintenance to cut material waste and handle micro-climate variation.
Sensor-mapped GPS navigation lets a lawn mower robot build virtual cutting boundaries and avoid obstacles without perimeter wires.