The present disclosure is directed generally to oral care appliances, more specifically to oral care appliances having a fiber-based light ring.
Oral care appliances, for example, power toothbrushes, contain components which can detect various conditions or states of the oral care appliance and provide feedback to the user. For example, feedback indicating that the user is applying excessive pressure between the user's teeth and the bristles of a power toothbrush is undesirable. In use, the bristles of a toothbrush should lightly skim the tooth surfaces to remove bacteria, food debris, and plaque. Increasing the pressure with which the user applies the bristles to the teeth does not aid the cleaning process and may damage the internal components of the power toothbrush and/or damage the user's teeth and gums. Additionally, increasing the pressure on the bristles may slow the speed of bristle vibration or stop the bristles from moving across the teeth lowering their effectiveness.
Some oral care appliances provide visual feedback to users in the form light emitted from the appliance. However, during use, the user may rotate or otherwise displace the oral care appliance such that the emitted light is diminished and/or obscured with respect to the user's eyes and the user may not appreciate the feedback provided.
The present disclosure relates to an oral care appliance that provides feedback to a user, for example, an oral care appliance that provides feedback to the user in the form of light emitted from a second end of the oral care appliance where the second end is the end of the oral care appliance that is farthest from the user's mouth when in use. Even more specifically to an oral care appliance which provides feedback to the user in the form of light emitted by a light-diffusing fiber to provide a more homogeneous angular and spatial distribution of light to the user while the oral care appliance is in use.
Generally in one aspect, an oral care appliance is provided. The oral care appliance includes a housing wherein the housing includes a first end, a second end, wherein the second end is at least partially transparent and a cavity. The cavity includes a light source and a light-diffusing fiber optically coupled to the light source and arranged within the second end of the housing wherein the light-diffusing fiber is arranged to produce a first light visible through the second end of the housing.
In an aspect, the at least one light source is selected from: a Light Emitting Diode (LED), an Organic Light Emitting Diode (OLED), or a Polymer Light-Emitting Diode (PLED).
In an aspect, the light source is optically coupled to the light-diffusing fiber via a first lens (or at least one lens).
In an aspect, the light-diffusing fiber has a light-diffusing fiber core having a fiber numerical aperture and the first lens generates a focused beam having a beam numerical aperture and the beam numerical aperture is less than or substantially equal to the fiber numerical aperture.
In an aspect, the light source is a laser, the laser having a fiber optic output fiber, the fiber optic output fiber having a fiber optic output fiber core and the fiber optic output fiber core having a first core diameter.
In an aspect, the light-diffusing fiber has a light-diffusing fiber core having a second core diameter where the first core diameter and the second core diameter are substantially equal.
In an aspect, the laser is optically coupled to the light-diffusing fiber by a fiber splice or a Gradient-Index (GRIN) lens.
In an aspect, there is provided and oral care appliance including a housing wherein the housing includes, a first end, a second end having an aperture, and a cavity. The cavity includes a light source and a light-diffusing fiber optically coupled to the light source and arranged within the second end of the housing. The housing further including an at least partially transparent plug operatively arranged to engage with the aperture of the second end of the housing wherein the light-diffusing fiber is arranged to produce a first light visible through the second end of the housing.
In an aspect, the light source is selected from: a Light Emitting Diode (LED), an Organic Light Emitting Diode (OLED), or a Polymer Light-Emitting Diode (PLED) or a laser.
In an aspect, the light source is optically coupled to the light-diffusing fiber via a first lens (or at least one lens).
In an aspect, the light-diffusing fiber has light-diffusing fiber core having a fiber numerical aperture and the first lens generates a focused beam having a beam numerical aperture and wherein the beam numerical aperture is less than or substantially equal to the fiber numerical aperture.
In an aspect, the light source is a laser, the laser having a fiber optic output fiber, the fiber optic output fiber having a fiber optic output fiber core and the fiber optic output fiber core having a first core diameter.
In an aspect, the light-diffusing fiber has a light-diffusing fiber core having a second core diameter where the first core diameter and the second core diameter are substantially equal.
In an aspect, the laser is optically coupled to the light-diffusing fiber by a fiber splice or a Gradient-Index (GRIN) lens.
In an aspect, the GRIN lens has a GRIN lens numerical aperture wherein the GRIN lens numerical aperture is less than or substantially equal to a fiber numerical aperture of a light-diffusing fiber core of the light-diffusing fiber.
These and other aspects of the various embodiments will be apparent from and elucidated with reference to the embodiment(s) described hereinafter.
In the drawings, like reference characters generally refer to the same parts throughout the different views. Also, the drawings are not necessarily to scale, emphasis instead generally being placed upon illustrating the principles of the various embodiments.
The present disclosure describes various embodiments of an oral care appliance that provides feedback to a user, specifically, an oral care appliance that provides feedback to the user in the form of light emitted from a second end of the oral care appliance where the second end is the end of the oral care appliance that is farthest from the user's mouth when in use. Even more specifically to an oral care appliance which provides feedback to the user in the form of light emitted by a light-diffusing fiber to provide a more homogeneous distribution of light to the user while the oral care appliance is in use.
Referring to the figures,
Housing 104 is substantially hollow creating a vertical cavity, i.e., cavity 128 (illustrated in
Cavity 128 may further include a processor P and a memory M. Memory M is arranged to store, and processor P is arranged to execute, a first set of non-transitory computer readable instructions to associate a plurality of input conditions with a plurality of feedback signals. For example, processor P and memory M are arranged to receive at least one input from a sensor or other device associated with oral care appliance 100. The at least one input may indicate that the pressure applied to brush head 120 exceeds a predefined threshold, that the user has been using the appliance for too long of a duration, or the angle that the user is brushing their teeth is non-ideal for cleaning purposes. In one example, i.e., when the pressure on brush head 120 exceeds a predefined threshold, feedback to the user may indicate that the pressure provided is too high. Processor P and memory M may subsequently provide power from power source PS, e.g., a battery, to light source 140 such that light source 140 produces first light 152 which can indicate to the user that the pressure applied to brush head 120 exceeds the predetermined threshold. It should be appreciated that the feedback to the user can vary based on the particular input condition, e.g., the color or intensity of light produced by light source 140 may be associated with a particular input condition, or the total time the feedback signal is produced may be associated with a particular input condition, or a predefined cadence, i.e., a pulse of light over a predefined time, may be associate with a particular input condition.
Light-diffusing fiber 148 further includes a light-diffusing fiber core 150 having a fiber numerical aperture 160. Although not illustrated to scale in
Within cavity 128 of housing 104, light-diffusing fiber 148 is coiled or wound, about axis A, is arranged at second end 112 of housing 104, and arranged proximate to plug 136 such that any light emitted from light-diffusing fiber 148 through transparent portion 124 (shown in
All definitions, as defined and used herein, should be understood to control over dictionary definitions, definitions in documents incorporated by reference, and/or ordinary meanings of the defined terms.
The indefinite articles “a” and “an,” as used herein in the specification and in the claims, unless clearly indicated to the contrary, should be understood to mean “at least one.”
The phrase “and/or,” as used herein in the specification and in the claims, should be understood to mean “either or both” of the elements so conjoined, i.e., elements that are conjunctively present in some cases and disjunctively present in other cases. Multiple elements listed with “and/or” should be construed in the same fashion, i.e., “one or more” of the elements so conjoined. Other elements may optionally be present other than the elements specifically identified by the “and/or” clause, whether related or unrelated to those elements specifically identified.
As used herein in the specification and in the claims, “or” should be understood to have the same meaning as “and/or” as defined above. For example, when separating items in a list, “or” or “and/or” shall be interpreted as being inclusive, i.e., the inclusion of at least one, but also including more than one, of a number or list of elements, and, optionally, additional unlisted items. Only terms clearly indicated to the contrary, such as “only one of” or “exactly one of,” or, when used in the claims, “consisting of,” will refer to the inclusion of exactly one element of a number or list of elements. In general, the term “or” as used herein shall only be interpreted as indicating exclusive alternatives (i.e. “one or the other but not both”) when preceded by terms of exclusivity, such as “either,” “one of,” “only one of,” or “exactly one of.”
As used herein in the specification and in the claims, the phrase “at least one,” in reference to a list of one or more elements, should be understood to mean at least one element selected from any one or more of the elements in the list of elements, but not necessarily including at least one of each and every element specifically listed within the list of elements and not excluding any combinations of elements in the list of elements. This definition also allows that elements may optionally be present other than the elements specifically identified within the list of elements to which the phrase “at least one” refers, whether related or unrelated to those elements specifically identified.
It should also be understood that, unless clearly indicated to the contrary, in any methods claimed herein that include more than one step or act, the order of the steps or acts of the method is not necessarily limited to the order in which the steps or acts of the method are recited.
In the claims, as well as in the specification above, all transitional phrases such as “comprising,” “including,” “carrying,” “having,” “containing,” “involving,” “holding,” “composed of,” and the like are to be understood to be open-ended, i.e., to mean including but not limited to. Only the transitional phrases “consisting of” and “consisting essentially of” shall be closed or semi-closed transitional phrases, respectively.
While several inventive embodiments have been described and illustrated herein, those of ordinary skill in the art will readily envision a variety of other means and/or structures for performing the function and/or obtaining the results and/or one or more of the advantages described herein, and each of such variations and/or modifications is deemed to be within the scope of the inventive embodiments described herein. More generally, those skilled in the art will readily appreciate that all parameters, dimensions, materials, and configurations described herein are meant to be exemplary and that the actual parameters, dimensions, materials, and/or configurations will depend upon the specific application or applications for which the inventive teachings is/are used. Those skilled in the art will recognize, or be able to ascertain using no more than routine experimentation, many equivalents to the specific inventive embodiments described herein. It is, therefore, to be understood that the foregoing embodiments are presented by way of example only and that, within the scope of the appended claims and equivalents thereto, inventive embodiments may be practiced otherwise than as specifically described and claimed. Inventive embodiments of the present disclosure are directed to each individual feature, system, article, material, kit, and/or method described herein. In addition, any combination of two or more such features, systems, articles, materials, kits, and/or methods, if such features, systems, articles, materials, kits, and/or methods are not mutually inconsistent, is included within the inventive scope of the present disclosure.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2020/055858 | 3/5/2020 | WO | 00 |
Number | Date | Country | |
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62815429 | Mar 2019 | US |