Abstract:
The design is the features of shape, configuration, pattern and ornament of the REFILL HEAD FOR ELECTRIC TOOTHBRUSH as shown in solid lines in the drawings. The portions shown in stippled lines do not form part of the design.Drawings of the design are included wherein:FIGURE 1 is a front perspective view of the REFILL HEAD FOR ELECTRIC TOOTHBRUSH;FIGURE 2 is a rear perspective view thereof;FIGURE 3 is a front view thereof;FIGURE 4 is a rear view thereof;FIGURE 5 is a right side view thereof;FIGURE 6 is a left side view thereof;FIGURE 7 is a top view thereof; andFIGURE 8 is a bottom view thereof.
Abstract:
A powered toothbrush head that, in one embodiment, includes a head portion including a first movable tuft block configured for holding tooth cleaning elements. The first movable tuft block is operably connected to a motor-driven drift shaft for movement. An eccentric cam formed on the shaft drives the first movable tuft block via engagement with a slot formed in the body of the first movable tuft block. The first movable tuft block is movable in a combination oscillating motion comprising vertical motion and lateral pivoting or tilting motion upon rotation of the drive shaft. A related method for oscillating the first movable tuft block is disclosed.
Abstract:
A powered toothbrush apparatus with capacitive touch control is disclosed. The tooth brush includes a head portion having an oscillating tuft block driven by a motor, a handle portion, and an elastically deformable capacitive touch control panel mounted in the handle portion. In one embodiment, the control panel includes a plurality of capacitance sensor buttons each having movable sensor targets paired with a corresponding capacitance sensor electrically connected to a programmable microprocessor. Applying finger pressure on the control panel adjacent a sensor target changes capacitance of the sensor button. The microprocessor detects the change in capacitance, which controls the operating mode of the toothbrush including on/off, motor speed, brushing mode such as pulse, or other. A related operating method is disclosed.
Abstract:
In some embodiments, a method of controlling an oral care implement having an audio output device and a movable oral cleaning element driven by a motor includes receiving a user instruction to commence a cleaning sequence; playing, via the audio output device, an audio instruction relating to oral cleaning; after completion of playing the audio instruction relating to oral cleaning, controlling the motor to drive the oral cleaning element; a predetermined time after operating the motor to drive the oral cleaning element, controlling the motor to stop driving the oral cleaning element; and at least in part in response to controlling the motor to stop driving the oral cleaning element, playing, via the audio output device, a recording containing praise.
Abstract:
A toothbrush having a pressure sensor. In one embodiment, the invention can comprise a body comprising a handle portion and a head portion having a basin; a cleaning assembly comprising: a head plate; a plurality of tooth cleaning elements, each of the plurality of tooth cleaning elements comprising a cleaning portion extending from a front surface of the head plate and a base portion extending from a rear surface of the head plate; the base portions of the plurality of tooth cleaning elements melted together to form a melt matte adjacent the rear surface of the head plate; the head plate of the cleaning element assembly positioned in the basin and connected to the head portion; a pressure sensor adjacent a rear surface of the melt matte; and an indicator operably coupled to the pressure sensor for generating a user perceptive signal upon the pressure sensor sensing a pressure that exceeds a predetermined threshold.
Abstract:
A toothbrush having a pressure sensor. In one embodiment, the invention can be a toothbrush comprising: a handle; a head; a plurality of tooth cleaning elements mounted to and extending from a front surface of the head; a printed circuit board located within the head, the printed circuit board having a front surface and a rear surface; a pressure sensor operably coupled to a front surface of the printed circuit board, wherein pressure applied to the plurality of tooth cleaning elements is transmitted to the pressure sensor; and a light source attached to a rear surface of the printed circuit board, wherein the light source is illuminated upon the pressure sensor being subjected to a pressure that exceeds a predetermined threshold.
Abstract:
A toothbrush having a pressure sensor. In one embodiment, the invention can comprise a body comprising a handle portion and a head portion having a basin; a cleaning assembly comprising: a head plate; a plurality of tooth cleaning elements, each of the plurality of tooth cleaning elements comprising a cleaning portion extending from a front surface of the head plate and a base portion extending from a rear surface of the head plate; the base portions of the plurality of tooth cleaning elements melted together to form a melt matte adjacent the rear surface of the head plate; the head plate of the cleaning element assembly positioned in the basin and connected to the head portion; a pressure sensor adjacent a rear surface of the melt matte; and an indicator operably coupled to the pressure sensor for generating a user perceptive signal upon the pressure sensor sensing a pressure that exceeds a predetermined threshold.