See how circular code placement on a capsule rim enables reliable identification during centrif
See how material-tight chambers with predetermined breaking points and an integrated thermal el
See how a universal clamping mechanism with fixed distance design accommodates beverage cartrid
See how a nested identification element inside a capsule wall enables reliable machine sensing
RF pocket-forming wirelessly powers a cup receiver and heating element to maintain beverage temperature without plugs or flames.
Encoded settings on symmetrical capsule segments let users rotate the capsule so the machine reads the chosen brew parameters without a complex control panel.
Embedding the identifier inside the capsule cavity protects it from handling damage while improving reliable detection by the brewing device.
A hinged closure and dual-diameter engagement let one can lid reseal drinks to prevent spills, contamination, and fit mismatch.
A friction-held insert separates printing from load bearing, letting bottle hangers carry heavier items while swapping multilingual sales information.
A grouped 2D code on the capsule base improves brewing-machine reading accuracy, resists residue contamination, and carries more capsule data.
A tapered two-end container seals a gelled blob for suction-driven release into the mouth, avoiding messy scooping and improving sanitation.
A level sensor and refill light let soap be replenished from the countertop, while venting helps prevent overflow and spills.
Hole patterns on a strip cartridge let the machine identify dose type and position, improving beverage control and remaining-portion tracking.
Multiple frequency feeds and adjustable cavity fields improve heating uniformity in irregular foods while reducing hotspots and preserving speed.
Standardized visual and construction cues help shoppers identify product variants faster while preserving brand consistency across regions.
A separate coded insert lets existing beverage cartridges override brew volume, temperature, and flow rate without adding new readers.
A lid-mounted aroma pod lets air carry scent into a beverage while a permeable barrier keeps the aromatic material dry and unchanged.
Hot water enters near the cartridge wall to create a vortex that speeds tea extraction and preserves temperature for better taste.
A 2D barcode on the capsule sealing membrane avoids convex-surface distortion, enabling static reading and richer user information.
A gelatin-gel scent insert inside the tissue box releases stronger fragrance on heating, avoiding microcapsule cost and production switching loss.
A built-in closure and attached security tag secure small jewelry items against theft while simplifying hanger manufacturing and assembly.
A separate fragrant film inside the tissue box sustains even scent release while keeping the slit film thin for smooth tissue removal.
Matrix piercing holes in a tea cartridge filter brewed tea while retaining leaf powder, reducing cleanup and keeping waste inside the cartridge.
Printed text is moved to a sloped lid surface opposite the drink opening, staying visible while the reclosable cap seals the cup.
Pre-measured ingredient cartridges are peeled and propelled into the pot to automate recipe steps, improve dosing precision, and reduce waste.
A circular 2D barcode on the capsule membrane improves camera reading on curved surfaces while carrying more beverage preparation data.
Bi-lateral fold lines let lids nest inside foil pans, keeping lid-pan sets together while reducing shelf space and lid damage.
A centrally placed 2D barcode on a beverage capsule enables reliable reading on curved surfaces and supports more user information.
Repeated dot barcodes around the capsule let a compact linear reader identify capsule type during insertion without precise orientation.
Integrated sidewall depth marks, a V-shaped spout, and grip recesses improve volume reading, pouring control, and handling in moulded pulp jugs.
A perforated protective wrap lets stacked paint strainers load and dispense cleanly while limiting dust and body-oil contact.
A captive motion element inside a transparent dip tube creates a visible dispensing display without adding complex external parts.
Embedding a contactless identifier within the beverage ingredient protects it from mechanical damage while keeping capsule detection reliable.
Ambient light triggers cargo sensing only when door access or load changes are likely, cutting power use, latency, and false events.
A basin-shaped lid channels vapor toward the nose while controlling hot beverage flow to reduce spills, lip burns, and aroma loss.
Rotating the beverage capsule lets an optical or inductive reader detect repeated arc codes reliably, even when residue partly obscures them.