A connecting member retains an optical waveguide core to resolve alignment complexity during hair cutting device assembly.
An optical waveguide guides light to an exposed irradiator, preventing physical deterioration of the device while minimizing skin irritation during operation.
Cam-driven clamping assembly units replace springs to eliminate failure and boost efficiency.
A double-ended tweezer combines slanted and pointed tip pairs on opposite ends of a single handle for versatile precision tasks.
An optical communication interface transfers high-bandwidth data using light modulation, bypassing Bluetooth Low Energy bandwidth limits.
Offset gripping surfaces on elastic tweezers prevent misalignment and breakage when handling short, fragile objects like hairs or thorns.
A resilient leaf spring connects the drive shaft to the actuating mechanism, reducing friction and noise while maintaining torque transfer.
Individual cams actuate independent blades on a rotating cage, ensuring uniform clamping force and consistent efficiency across all hairs.
Guide means allow a hair removal working head to move laterally relative to the handpiece, resolving skin contour adaptation issues.
Dynamic drive unit speed regulation reduces epilator noise and current consumption during hair removal.
A visual tweezer integrates a camera assembly and mechanical driving mechanism for precise clamping control.
Rotating cylinder epilation head uses hair guiding devices on movable clamping units to resolve trade-offs between productivity and device complexity.
A mechanical hair puller uses a tension coil spring and plunger to extend openings for simultaneous hair extraction.
A handheld hair removal device integrates a driven abrasive polishing body alongside the primary shaving or epilation head.
Fluoropolymer-ceramic coatings lower surface resistivity below 1x10^5 ohms/square, reducing static flyaway and frizz in dry or heated hair.
Segmenting the epilation unit from a low-speed exfoliation accessory resolves speed contradictions, reducing skin irritation while maintaining dexterity.
Motor drive train generates vibrations for skin treatment, eliminating separate eccentric mass complexity.
Reinforced plastic tweezers enhance hair grip through controlled surface roughness.
Sensor-based motor control adjusts rotational speed based on skin movement to reduce power consumption and vibration.
A foam dispensing electric shaver integrates a pump mechanism within the handle body to draw and release shaving foam through a front spout.
A protective shield covers the vulva and labia minora during hair removal procedures.
Pulsed near-infrared radiation suppresses hair growth while preventing skin damage.
A detachable epilator attachment integrates a shaving blade behind the epilation cylinder to pluck and shave hairs in one continuous motion.
Optimized funnel geometry guides hairs into a narrowing gap, resolving the trade-off between aggressive guidance and effective capture efficiency.
A razor blade head bracket with a manual control element transfers user force to the cutting edge, resolving pressure regulation issues in disposable razors.