See how merging a breast pump with a wearable carrier enables hands-free pumping, storage, and
See how an adjustable forward-leaning chair eliminates compression bras, enables hands-free pum
See how a forward-leaning chair with tiered table and shelf uses gravity and ergonomic position
See how a forward-leaning chair with breast pump table uses gravity and ergonomic positioning t
See how a forward-leaning chair with angled table and adjustable bottle holders uses gravity an
See how a forward-leaning chair with integrated pump table and bottle shelf uses gravity and op
See how an integrated spout pouch merges bottle and nipple functions to minimize handling steps
See how a spout pouch with inner ridges and flexible film merges storage and feeding into one s
A laterally secured spout pouch and liquid-tight nipple seal reduce handling, contamination risk, and feeding preparation steps.
A milk-soluble agent in a breast shield matrix inactivates HIV during breastfeeding without disrupting feeding or requiring complex drug prep.
An annular seal around the breast pump terminal interface blocks moisture and milk ingress, reducing contact damage and short circuits.
An elastic sealing ring around the breast pump connector blocks moisture and milk ingress while maintaining stable electrical contact.
Vibration added to the suction cycle boosts milk flow, shortens pumping time, and improves comfort in a voice coil breast pump.
Real-time pumping data and group pattern comparison adjust breast pump sessions to improve MER awareness, personalization, and milk output.
Real-time pumping data and group-pattern comparison adjust breast pump settings to improve milk extraction and user guidance.
Wearable and contactless sleep data are combined to predict baby and adult sleep patterns, enabling coordinated schedules and personalized advice.
A multi-point optical indicator on the pump surface makes operating status visible from wider angles and longer distances.
Repositioning the outlet above the inlet keeps milk flowing in vertical use while limiting spillback and simplifying breast pump cleaning.
A retainer-sealed adapter fits different breast pump sizes while keeping the collection bag tightly attached and limiting air contamination.
Independent pressure control in inner and outer shield cavities improves alignment, sealing, comfort, and milk expression stability.
A liquid-filled breast shield replaces bulky pneumatic vacuum paths to keep milk expression compact, quieter, and comfortable.
A piezo-driven diaphragm pump enables compact in-bra milk extraction with easier cleaning, self-sealing assembly, and accurate level detection.
A bra-nested peristaltic pump uses battery power and real-time pressure sensing for discreet, comfortable milk expression.
A fluid connection balances underpressure around an infrasound source to stabilize motion and improve milk expression efficiency.
An elastic compressible chamber maintains baseline vacuum and helps prevent milk backflow, enabling simpler hands-free breast pump use.
RF heating is synchronized with breast pump suction phases to improve tissue warming while avoiding hot spots from poor electrode contact.
A detachable base and ventilation tube let the breast pump switch between integrated and separate use while maintaining reliable negative-pressure pumping.
A piezo air-pump drives a removable diaphragm in a closed loop to deliver discreet suction, easier cleaning, and accurate milk measurement.
Flexible compression and gentle suction improve comfort, reduce pump noise, and simplify sanitation in wearable milk expression.
An offset lever assembly and tabbed eversible flange improve fit across nipple sizes and simplify vacuum-based milk expression.
Selectable vacuum curves adjust suction strength and cycle timing to improve milk extraction while reducing discomfort for vacuum-sensitive mothers.
Optical sensing detects the first milk droplets in the collection vessel, enabling personalized automatic switching from stimulation to expression mode.
A removable breast shield and tank stay fluidly connected during detachment, preventing milk from contaminating the casing and easing cleaning.
A unitary suction-and-milk tube structure cuts hanging lines while preserving closed-system flow control, comfort, and discreet pumping.
Segmented vibrations during rising vacuum plateaus boost milk flow and shorten breast emptying time without relying on higher suction.
A split wearable breast pump moves controls to the neck or head, avoiding bulky air tubes while keeping suction and discreet operation.
A sealed diaphragm and non-return valve keep milk out of air-lines, while the curved breast shield improves fit, alignment, and discreet wear.
Back-to-back chambers reuse vacuum between expression kits, cutting valve complexity and energy use while maintaining stable negative pressure.
A diaphragm seal and recessed air-line path keep milk out of pump lines while improving alignment, suction stability, and discreet in-bra use.
A toggle link mechanism shifts handle force during pumping, maintaining negative pressure while reducing hand and forearm muscle load.
A duckbill-style one-way valve and drain holes let a breast shield mimic infant suckling, prevent milk back-flow, and support pumping while reclined.
Multiple capacitive elements, shielding, and tilt correction improve milk container level sensing despite touch interference and container tilt.
Cable-loop compression and suction in a wearable pump bra mimic massage to raise milk output, shorten expression time, and help clear ducts.
A flexible LED nipple shield delivers discreet 630-700 nm light therapy while preserving coverage, comfort, and easy wireless recharging.
A dual-vacuum closed-loop pump uses diaphragms and a solenoid valve to cut noise and leakage while improving milk expression efficiency.
Capacitive sensing in the reservoir wall automates breast milk volume tracking, reducing manual logging errors and improving record accuracy.
An integrated tee joint and milk bowl cut breast pump part count and space use, improving portability, assembly, and cleaning.
Movement sensing adjusts suction and clamping force to keep a wearable breast pump sealed, aligned, and comfortable during activity.
Overmolding embeds support brackets into the silicone breast shield to prevent separation during use, cleaning, and sterilization while lowering cost.
Vibrations applied during pump cycles increase milk flow, reduce duct shear stress, and support more complete extraction in less time.
A piezo-driven diaphragm pump enables discreet in-bra milk expression while improving cleaning, measurement accuracy, and reusable collection.
A three-circle oval shell layout creates room for pump parts and milk collection inside a bra while preserving hands-free, anatomical fit.
A pressure-driven chamber and valve layout maintains continuous suction to improve milk expression, reduce leaks, and keep the pump compact.
A one-way valve and deformable silicone bowl create unidirectional milk flow, preventing reflux, splashing, and contamination.
Non-contact pressure sensing and real-time vacuum control make bra-integrated milk expression more discreet, comfortable, and efficient.
Piezo-driven diaphragm suction and a self-sealing detachable container enable discreet pumping, easier cleaning, and accurate milk level measurement.
Underpressure reshapes a deformable breast pump cushion into the correct mounting position, simplifying hygienic installation and sealing.
Airtight silicone pouch and flow-controlled tube prevent formula leaks, simplify setup, and support reusable supplemental nursing.
A toggle link mechanism varies mechanical advantage in a manual breast pump to reduce peak hand and forearm force during milk extraction.