The field of the invention is towelette dispenser.
The background description includes information that may be useful in understanding the present invention. It is not an admission that any of the information provided herein is prior art or relevant to the presently claimed invention, or that any publication specifically or implicitly referenced is prior art.
In certain situations, it may be necessary to gently clean a person's bodily surfaces. In these situations, it is desirable to do so with warm, sterile, moist towelettes that can comfortably clean these bodily surfaces. Ideally, these towelettes are disposable such that the cleaning can be done as hygienically as possible.
Unfortunately, it is difficult to get disposable hot, moist towelettes on-demand. Heating cloth towelettes is one possibility, but it requires preparation. Plus, if the timing of the necessary cleaning is not known ahead of time, the towelettes could get cold and no one wants to be cleaned with a cold, wet towelette. Additionally, cloth towelettes require washing and leave an unsanitary used towelette in the vicinity of the person being cleaned until it can be removed for washing.
Thus, there is still a need for a towelette dispenser that is simple to operate that reliably dispenses hot, sterile wet towelettes on demand.
The following description includes information that may be useful in understanding the present invention. It is not an admission that any of the information provided herein is prior art or relevant to the presently claimed invention, or that any publication specifically or implicitly referenced is prior art.
The inventive subject matter provides apparatus, systems and methods in which a device dispenses heated moist towelettes. The device includes a platform and a hydration tray disposed on the platform. The hydration tray moves between a ready position, a hydrating position and a presenting position. The hydration tray is dimensioned to receive one or more towelettes for heating and hydration.
The hydration tray includes a tray seal element that, when the hydration tray is in a hydrating position, creates a seal with a ceiling seal element of on an upper or ceiling surface of a tunnel.
The device also includes a water reservoir and water heater, and a pump that pumps water into the hydration tray. The device further includes a motor that moves the hydration tray between the ready position, the hydrating position and the presenting position.
In embodiments, the device also includes a processor.
In embodiments, the device further includes at least one riser that lifts the hydration tray from the platform and makes it come into contact with the tunnel ceiling surface when the tray is moved to the hydrating position.
In embodiments, the device further includes a loading compartment that receives one or more towelette tablets, each towelette tablet containing at least one towelette. In embodiments, the device also includes a door that has a punch element aligned to punch the towelette tablet when the door is made to close.
Various objects, features, aspects and advantages of the inventive subject matter will become more apparent from the following detailed description of preferred embodiments, along with the accompanying drawing figures in which like numerals represent like components.
All publications identified herein are incorporated by reference to the same extent as if each individual publication or patent application were specifically and individually indicated to be incorporated by reference. Where a definition or use of a term in an incorporated reference is inconsistent or contrary to the definition of that term provided herein, the definition of that term provided herein applies and the definition of that term in the reference does not apply.
In some embodiments, the numbers expressing quantities of ingredients, properties such as concentration, reaction conditions, and so forth, used to describe and claim certain embodiments of the invention are to be understood as being modified in some instances by the term “about.” Accordingly, in some embodiments, the numerical parameters set forth in the written description and attached claims are approximations that can vary depending upon the desired properties sought to be obtained by a particular embodiment. In some embodiments, the numerical parameters should be construed in light of the number of reported significant digits and by applying ordinary rounding techniques. Notwithstanding that the numerical ranges and parameters setting forth the broad scope of some embodiments of the invention are approximations, the numerical values set forth in the specific examples are reported as precisely as practicable. The numerical values presented in some embodiments of the invention may contain certain errors necessarily resulting from the standard deviation found in their respective testing measurements.
Unless the context dictates the contrary, all ranges set forth herein should be interpreted as being inclusive of their endpoints and open-ended ranges should be interpreted to include only commercially practical values. Similarly, all lists of values should be considered as inclusive of intermediate values unless the context indicates the contrary.
As used in the description herein and throughout the claims that follow, the meaning of “a,” “an,” and “the” includes plural reference unless the context clearly dictates otherwise. Also, as used in the description herein, the meaning of “in” includes “in” and “on” unless the context clearly dictates otherwise.
The recitation of ranges of values herein is merely intended to serve as a shorthand method of referring individually to each separate value falling within the range. Unless otherwise indicated herein, each individual value is incorporated into the specification as if it were individually recited herein. All methods described herein can be performed in any suitable order unless otherwise indicated herein or otherwise clearly contradicted by context. The use of any and all examples, or exemplary language (e.g. “such as”) provided with respect to certain embodiments herein is intended merely to better illuminate the invention and does not pose a limitation on the scope of the invention otherwise claimed. No language in the specification should be construed as indicating any non-claimed element essential to the practice of the invention.
Groupings of alternative elements or embodiments of the invention disclosed herein are not to be construed as limitations. Each group member can be referred to and claimed individually or in any combination with other members of the group or other elements found herein. One or more members of a group can be included in, or deleted from, a group for reasons of convenience and/or patentability. When any such inclusion or deletion occurs, the specification is herein deemed to contain the group as modified thus fulfilling the written description of all Markush groups used in the appended claims.
The following discussion provides many example embodiments of the inventive subject matter. Although each embodiment represents a single combination of inventive elements, the inventive subject matter is considered to include all possible combinations of the disclosed elements. Thus if one embodiment comprises elements A, B, and C, and a second embodiment comprises elements B and D, then the inventive subject matter is also considered to include other remaining combinations of A, B, C, or D, even if not explicitly disclosed.
The system of the inventive subject matter is a personal hygiene system. Fundamentally, the device sprays hot water onto a compressed towelette. The device dispenses two towelettes at a time that are hydrated and steaming hot. Once saturated, the sterile, disposable wipes are unfurled and used for clean up. Potential uses for the device are limitless.
The overall dispensing of towelettes as discussed herein requires two components 1) the device that dispenses the hydrated product and 2) the towelette pucks/tablets from which the towelettes are obtained. The device of the inventive subject matter is device requiring manual interaction to start the process, whereby the user is required to load the towelette tablets (which can come in the form of a two-tablet blister pack) and manually punch the towelettes into the hydration tray/chamber.
The lid/door has two punch spikes embedded and once closed, punches out the two tablets into the hydrating tray. Once the tablets are punched down into the hydration tray, the tray retracts to a sealed hydration chamber (formed by a seal created between the hydration tray and the tunnel ceiling) and hydrates the tablets with hot water (e.g., 180 degree F. water). This process takes approximately 20 seconds in the embodiments shown herein and delivers the appropriate amount of water on the towelettes. Once the towelettes have been hydrated, the tray ejects out of the device to deliver two hot towelettes to the end-user(s). The delivery tray can rest in the open position for a preset amount of time (e.g., 45 seconds), allowing the user to remove both tablets before automatically retracting back to the ready position for starting the next cycle.
As seen in
The device 100 includes a punch door 110 that includes a towelette punch 111 for each of the cavities. When the punch door 110 is closed with towelette tablets installed, the towelette punch 111 punctures the towelette tablets, freeing the towelettes to fall into the hydration tray 120.
Also visible in
In addition to the manual start button it has also been contemplated that an audio/verbal command can be used to start the hydration cycle. In these embodiments, the device 100 includes a microphone or other audio sensor capable of detecting a spoken voice. The device's processor is programmed to use audio recognition techniques to recognize a command in the spoken voice, and cause the corresponding components of the device 100 to execute the processes discussed herein.
The device 100 can, in embodiments, include a processor programmed to execute the various functions discussed herein, and a hardware memory that stores the program code.
Prior to the start of the process, the device 100 can be powered on. At this stage, the hydration tray 120 is in a ready position, directly below the loading compartment 112 as seen in
At step 310, the user opens the door 110 and inserts towelette tablets into the cavities.
In embodiments, the device 100 can optionally be programmed to recognize a proprietary towelette tablet. This can be done by reading a machine-readable code printed on the towelette tablet via an optical sensor, a reflective sensor programmed to recognize a shiny surface on the towelette tablet, or other form of verification. In these embodiments, the processor of device 100 can be programmed to provide a notification if a towelette tablet is not recognized (e.g., if it lacks the code or other recognizable element or if the code or element is not recognized). The notification can be provided via one or more of an LED light on the housing, a digital display, a noise, or other form of notification.
At the conclusion of step 310, the user closers the door 110 manually which causes the punch 111 to punch out the towelette from each towelette tablet, causing the towelettes to drop into the hydration tray 120 below. At this point, a start button can blink, indicating the user that the device 100 is ready.
In embodiments of the inventive subject matter, the towelettes in the towelette tablet are dry towelettes that will be moistened and heated as discussed herein. In other embodiments, the towelettes in the towelette tablet are moistened, such that the operations discussed herein can add moisture and heat to the towelettes.
A cutaway view of the device 100 with the hydration tray 120 at the ready position is shown in
Also visible in
Also visible in
Returning to
In embodiments of the inventive subject matter, the device 100 can be automatic where a start button is not used. In these embodiments, the process proceeds automatically from step 310 to step 320 upon sensing that the towelettes have been dropped into the tray 120.
Upon reaching the hydrating position, the process moves to step 330. At step 330, peristaltic pump 702 pumps water into water heater 703, where it is heated and then dispensed into the towelettes carried by the tray 120. The seal created by silicone seal 122 of tray 120 and silicon seal 525 of the tunnel ceiling 524 seals steam from the hot water into the hydrating chamber of tray 120. Excess steam condensate can be vented back into the water reservoir 200. Containing the steam within the hydrating chamber of tray 120 also serves to protect other components from repeated exposure to high-temperature steam, protecting those components and preventing malfunctions while ensuring a longer device life.
The processor of device 100 can be programmed to wait a predetermined amount of time (e.g., 5 seconds, 10 seconds, 15 seconds or other time) after the water has been dispensed to allow for thorough absorption by the towelettes.
At step 340, the tray 120 is moved by the motor 430 and belt drive 440 from the hydration position to the presenting position. The presenting position is shown in a cutaway view in
At the presenting position, the tray 120 is moved outside of the device housing 103 such that a user can access and remove the wet, hot towelettes from the tray 120.
In embodiments of the inventive subject matter, the processor is programmed to keep the hydration tray 120 at the presenting position for a predetermined amount of time (e.g., 30 seconds, 45 seconds, 60 seconds, etc.). Upon the expiration of the predetermined amount of time, the processor causes the motor 430 and belt drive 440 to pull the hydration tray 120 back to the ready position within the housing 103 at step 350. The automated retraction of the hydration tray 120 back to the ready position from the presenting position helps to minimize contact with the device 100, enhancing hygiene.
In embodiments of the inventive subject matter, the hydration tray 120 can be manually pushed back into the housing 103, where it comes to rest at the ready position. In these embodiments, then, step 350 is performed manually.
At the conclusion of step 350, the device 100 is ready for a new use, and thus the process can return to step 310 if additional towelettes are desired.
Tunnel 810 includes a channel 811 that aligns with the underside of the loading compartment 112 of
In embodiments of the inventive subject matter, the device 100 includes temperature sensors and water level sensors such that the processor is programmed to shut off the device 100 automatically if the temperature rises above a predetermined threshold or if the water level is below a predetermined threshold.
In embodiments of the inventive subject matter, the device 100 can include an eject button that can manually interrupt the process and cause the hydration tray 120 to go to the presenting position.
In embodiments of the inventive subject matter, the device 100 can include a “low water level” indicator, such as a light or a display. If the water level is not sufficient to complete a full cycle the water level sensor will stop the cycle until the water level is filled.
In embodiments of the inventive subject matter, the device 100 can include a USB or USB-A or C charging port for electronic charging devices.
In embodiments of the inventive subject matter, the device 100 can include a demisable (e.g., partitioned) water/additive tank to allow for chemical additives such as bleach, soft soaps, flavors, or scents. This version will require a second peristaltic pump to add any additive contemplated.
As used herein, and unless the context dictates otherwise, the term “coupled to” is intended to include both direct coupling (in which two elements that are coupled to each other contact each other) and indirect coupling (in which at least one additional element is located between the two elements). Therefore, the terms “coupled to” and “coupled with” are used synonymously.
It should be apparent to those skilled in the art that many more modifications besides those already described are possible without departing from the inventive concepts herein. The inventive subject matter, therefore, is not to be restricted except in the spirit of the appended claims. Moreover, in interpreting both the specification and the claims, all terms should be interpreted in the broadest possible manner consistent with the context. In particular, the terms “comprises” and “comprising” should be interpreted as referring to elements, components, or steps in a non-exclusive manner, indicating that the referenced elements, components, or steps may be present, or utilized, or combined with other elements, components, or steps that are not expressly referenced. Where the specification claims refers to at least one of something selected from the group consisting of A, B, C . . . and N, the text should be interpreted as requiring only one element from the group, not A plus N, or B plus N, etc.
This application claims priority to U.S. provisional application 63/624,077, filed Jan. 23, 2024. U.S. provisional application 63/624,077 and all other extrinsic references contained herein are incorporated by reference in their entirety.
| Number | Date | Country | |
|---|---|---|---|
| 63624077 | Jan 2024 | US |