WO2007070112A1 - Mesure de temperature de l'eau du robinet et systeme d'affichage et capot de buse de baignoire de securite l'utilisant - Google Patents

Mesure de temperature de l'eau du robinet et systeme d'affichage et capot de buse de baignoire de securite l'utilisant Download PDF

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Publication number
WO2007070112A1
WO2007070112A1 PCT/US2006/029883 US2006029883W WO2007070112A1 WO 2007070112 A1 WO2007070112 A1 WO 2007070112A1 US 2006029883 W US2006029883 W US 2006029883W WO 2007070112 A1 WO2007070112 A1 WO 2007070112A1
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WO
WIPO (PCT)
Prior art keywords
temperature
display
tap water
measured
water temperature
Prior art date
Application number
PCT/US2006/029883
Other languages
English (en)
Inventor
Henry F. Thorne
Robert D. Daley
Original Assignee
Thorley Industries, Llc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US11/460,991 external-priority patent/US20070047617A1/en
Application filed by Thorley Industries, Llc filed Critical Thorley Industries, Llc
Publication of WO2007070112A1 publication Critical patent/WO2007070112A1/fr

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K13/00Thermometers specially adapted for specific purposes
    • G01K13/02Thermometers specially adapted for specific purposes for measuring temperature of moving fluids or granular materials capable of flow
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/02Means for indicating or recording specially adapted for thermometers
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/14Supports; Fastening devices; Arrangements for mounting thermometers in particular locations
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K3/00Thermometers giving results other than momentary value of temperature
    • G01K3/005Circuits arrangements for indicating a predetermined temperature

Definitions

  • the present invention relates to fluid temperature display systems. More particularly the present invention is directed to a tap water temperature display systems with visual and audible components. Further, the present invention is directed to products incorporating the display including a bathtub water spout cover designed to prevent impact injuries among children and elderly associated with bumping against the hard metal spouts common in bathtubs.
  • Tap water temperature is an important component for the comfort and safety of the user's of the tap water. For example, bathing in a bathtub or shower, washing hands in a sink generally require water to be dispensed from a faucet within a desired temperature range for the user's comfort and safety. Serious burns can occur where the water temperature is too hot. The concern becomes far more significant for caregivers bathing others such as infants, small children, the elderly, the infirm, and the disabled. Significantly cold tap water temperature can also pose concern for caregivers. There is a need for a tap water temperature measurement display system that effectively and efficiently displays tap water temperature.
  • the bathroom represents an area of the home having a relatively higher risk of injury and, consequently many products have been designed to help minimize these risks.
  • existing bathtub water spout covers typically designed to prevent impact injuries among user's, such as children, disabled and elderly, associated with bumping against the hard metal faucets or spouts common in bathtubs.
  • the existing spout covers are simply soft plastic sleeves that slide over the existing spout and have an opening that generally aligns with the spout opening.
  • the existing spout covers are often in child friendly shapes, such as the form of a whale.
  • the existing commercially viable spout covers essentially offer little more than impact resistance, when they are left in place, and a child friendly shape (the child friendly configuration can inhibit the safety functions by enticing the child to pull off the spout cover to play with in the bathtub).
  • spout and “faucet” interchangeably refer to a water dispensing plumbing fixture generally extending from the wall, such as in a bathtub essentially at the top surface of the bathtub, or in a shower enclosure from an elevated wall position, or above a sink basin.
  • tap water within this application references the water dispensed from a plumbing fixture, namely a spout.
  • soft exterior within the meaning of this application refers to an impact resistant material that is softer, such as measured by a Rockwell Hardness test, than conventional metal (e.g. steel) or hard plastic, and will be understood by those in the child proofing art.
  • a wide variety of materials can be used to form the soft exterior, including rubber, soft plastics (low durometer plastics), foams and the like.
  • backlighting with regard to an LCD display references the lighting of a background portion of the display upon which the characters are displayed.
  • a tap water temperature display system includes a temperature sensor measuring the tap water temperature, a LCD display for displaying at least the tap water temperature as measured by the temperature sensor, and light sources for backlighting of the LCD display, wherein the light sources form at least two distinct backlighting colors and wherein the displayed backlighting color is responsive to at least the tap water temperature as measured by the temperature sensor.
  • the sensor and display have a thermal time constant of less than 5 seconds between a measured temperature and the display of the temperature.
  • the display may have a graphical temperature display and a distinct alpha-numeric display, and may further include power source for the display system wherein the power source is one of battery power and hydro-electric power.
  • a hydro-electric power source is one that will derive power from water flowing through the associated faucet.
  • the invention further includes an audible alarm, wherein the temperature sensor is coupled to the audible alarm, wherein the audible alarm is a progressive audible temperature alarm with varied levels of activation corresponding to the severity of the temperature condition sensed.
  • the invention may further include a manual override for disengaging the audible alarm, and wherein the actuation of the manual override is child-proof.
  • the light sources form at least three distinct backlighting colors, including blue, white and red.
  • the blue backlighting color is indicative of a tap water temperature as measured by the temperature sensor lower than a lower preset threshold
  • the red backlighting color is indicative of a tap water temperature as measured by the temperature sensor higher than a higher preset threshold
  • the white backlighting color is indicative of a tap water temperature as measured by the temperature sensor between the lower preset threshold and the higher preset threshold.
  • One embodiment of the invention provides a tap water temperature display system including a temperature sensor measuring the tap water temperature; and a digital display for displaying at least the tap water temperature as measured by the temperature sensor having at least a graphical temperature display, wherein the graphical display includes (i) temperature range indicia indicative of a range of possible water temperatures, (N) acceptable range indicia indicative of a sub-set of the displayed temperature range indicia that is an acceptable tap water temperature, and (iii) temperature indicating indicia indicative of the tap water temperature as measured by the temperature sensor.
  • the acceptable range indicia may include bounding indicia indicative of the upper and lower limits of the sub-set of displayed temperature range indicia and explanatory text indicative of the acceptable range.
  • the temperature indicating indicia may be a highlighted temperature range indicia.
  • the display system may further include an alpha-numeric display for displaying the at least the tap water temperature as measured by the temperature sensor, and wherein the alphanumeric display is distinct from the graphical display.
  • the display of the invention may further comprising a water activation alarm indicating unauthorized use and a water activation alarm deactivation mechanism allowing for authorized use.
  • a safety bathtub spout cover includes a hollow body having a soft exterior and adapted to receive the spout or faucet for a tub therein.
  • a wide variety of materials can be used to form the soft exterior, including rubber, soft plastics (low durometer plastics), foams and the like.
  • a temperature sensor mechanism may be positioned within the water flow within the hollow body. The temperature sensor mechanism may be placed within the water flow through positioning the temperature sensor mechanism within the water guide of the hollow body in a position offset in plan view from the water inlet. Alternatively, the temperature sensor mechanism may be placed within the water flow through forming of the temperature sensor mechanism as an array of sensors that extend across the water guide.
  • the temperature sensor mechanism may be coupled to a temperature display according to the invention on the hollow body for displaying the temperature of the water sensed by temperature sensor mechanism.
  • the hollow body may include a water guide formed therein, the water guide having a water inlet adapted to receive water from an outlet of the faucet and terminating in a water outlet for the spout cover.
  • the water inlet may be a funnel shape to accommodate inaccuracy in placement by the user as well as variation in the spout outlets between distinct models of faucets.
  • the water guide may further include an offset in the flow path to provide an area in the water guide where water is certain to be present when water is flowing from the faucet either at high flow rates or reduced rates associated with the play of a child including a slow drizzle.
  • a temperature sensor mechanism may be positioned within the water flow within the hollow body.
  • the temperature sensor mechanism may be placed within the water flow through positioning the temperature sensor mechanism within the water guide of the hollow body in a position offset in plan view from the water inlet.
  • the temperature sensor mechanism may be placed within the water flow through forming of the temperature sensor mechanism as an array of sensors that extend across the water guide.
  • the temperature sensor mechanism in the spout cover may be coupled to a temperature alarm on the hollow body comprising at least one of an audible alarm and a visual alarm, wherein the temperature alarm is configured to signal unsafe temperature conditions sensed by the temperature sensor mechanism.
  • the spout cover includes a closing mechanism for attaching the spout cover to the faucet in a temporary, non-marring, non-residue attachment manner.
  • the closing member may be a releasable band buckle, such as found in ski boots and roller blades, an encircling strap and buckle, as common in backpacks, or overlaying hook and loop type fasteners.
  • the body may include a slit on an end receiving the faucet, and an interior faucet facing surface of a high friction material (e.g. a soft rubber band) to assist in forming the attachment mechanism.
  • One embodiment of the safety bathtub spout cover according to the present invention may include the audible alarm, wherein the audible alarm is a progressive audible temperature alarm with varied levels of activation corresponding to the severity of the scald condition sensed. Essentially as the sensed condition becomes more dangerous the audible alarm increases in volume, or pitch, or frequency or some other attribute.
  • the display may include a visual, non-numeric display of the sensed temperature.
  • the display may be a display with back lighting of distinct colors. For example a blue back lighting would indicate a cool or cold water temperature (relative to taking children taking baths), a white or normal back lighting would indicate a normal temperature range, and a red back lighting would indicate a dangerous condition.
  • the back lighting provides an independent non-numeric display for rapidly conveying the sensed condition.
  • the non-numeric display may certainly be coupled with a conventional numeric display (e.g. the back lighting of the display will back light a numeric display).
  • a conventional numeric display e.g. the back lighting of the display will back light a numeric display.
  • the safety bathtub spout cover according to another aspect of the present invention wherein the display is mounted in a direction facing the tub and at an angle of at least five degrees relative to vertical, whereby the display is visible from any viewing height above the faucet. This allows the parent to view the water condition while standing beside the tub or kneeling while bathing their child. This feature can be beneficial for elderly patients who can see the water temperature indication from a standing position prior to stepping into the tub.
  • Another aspect of the present invention includes a manual override for disengaging the audible alarm, and wherein the actuation of the manual override is child-proof.
  • the override mechanism should be child-proof so small children could not inadvertently disengage this safety feature. Without the manual override the users would need to take off the spout cover for disengagement of the safety features.
  • the temperature sensor mechanism and the associated components are actuated upon the flow of water through the spout cover.
  • Another embodiment of the present invention further includes a water activation alarm indicating unauthorized use of the spout cover and a child-proof water activation alarm deactivation mechanism allowing for authorized use of the spout cover. In this manner parents can be warned of unauthorized or unsupervised bathtub use.
  • Another aspect of the present safety bathtub spout cover includes a recessed access in the body to allow for access to and operation of a push- pull type shower diverter in the faucet. This allows the shower to be utilized without removing the spout cover.
  • the body includes at least one anti-microbial agent.
  • the features of the safety spout cover may be incorporated directly into a safety spout, wherein the safety bathtub spout comprises a hollow body having a soft exterior having a water outlet for the spout, a temperature sensor mechanism positioned within the water flow within the hollow body, a temperature display coupled to the temperature sensor mechanism for displaying the temperature of the water sensed by temperature sensor, wherein the display is mounted into be visible from any viewing height above the faucet, an audible temperature alarm on the hollow body coupled to the temperature sensor mechanism, wherein the audible temperature alarm is configured to signal unsafe temperature conditions sensed by the temperature sensor mechanism, and a child-proof manual override for disengaging the audible alarm.
  • Figure 1 is a perspective top view of a safety bath spout cover incorporating a display according to one embodiment of the present invention
  • Figure 2 is a schematic side elevation view of the safety spout cover of figure 1 ;
  • Figure 3 is a schematic front elevation view of the safety spout cover of figure 1 ;
  • Figure 4 is a perspective top view of a safety bath spout cover with a display according to a second embodiment of the present invention.
  • Figure 5 is a schematic side elevation view of the safety spout cover of figure 4.
  • Figure 6 is a schematic front elevation view of the safety spout cover of figure 4.
  • Figure 7 is a schematic sectional view of a water guide for the spout cover according to one embodiment of the present invention.
  • Figure 8 is a plan view of a sensor array in accordance with one aspect of the present invention.
  • Figure 9 is a schematic view of a closing mechanism for the spout cover according to one embodiment of the present invention.
  • Figure 10 is a schematic elevation view of a spout with a display according to one embodiment of the present invention.
  • Figure 11 is a schematic flow chart of the microprocessor operation of the display associated with the spout cover and the spout in accordance with the present invention.
  • Figure 12 is a perspective view of a bath spout cover with a display in accordance with another embodiment of the present invention.
  • Figure 13 is a side perspective view of the spout cover and display of figure 12.
  • Figure 14 is a perspective view of a bath spout cover with a display in accordance with another embodiment of the present invention.
  • Figures 1-3 illustrates one embodiment of the safety bath spout cover 10 incorporating a display 40 according to the present invention
  • figures 4-6 illustrate a distinct second embodiment of the safety bath spout cover 10 with a display 40 according to the present invention
  • figures 12-13 illustrate a distinct further embodiment of the safety bath spout cover 10 with a modified display 40 according to the present invention
  • figure 14 illustrates a another distinct embodiment of the safety bath spout cover 10 with a display 40 according to the present invention.
  • the safety bathtub spout cover 10 includes a hollow body 12 having a soft exterior for impact resistance and user safety.
  • the term "soft exterior” within the meaning of this application refers to an impact resistant material that is softer than conventional metal or hard plastic, and will be understood by those in the child proofing art.
  • a wide variety of materials can be used to form the soft exterior, including rubber, soft plastics (low durometer plastics), foams and the like.
  • the exterior of the body 12 can have any desired shape, including child friendly animal shapes as shown in figures 4-6.
  • the body 12 is preferably a molded one or two piece assembly, for ease of manufacturing.
  • the term hollow merely means that it can receive a spout 14 therein, for example a three sided "L" shaped structure with a channel receiving the spout is a hollow body 12 within the meaning of this application.
  • the body 12 of the spout cover 10 is adapted to receive the spout or faucet 14 for a bathtub 16 therein as known in the art.
  • the terms "spout” and “faucet” 14 are used herein interchangeably to refer to a water dispensing plumbing fixture as shown in figures 1 and 4.
  • the term spout within this application does encompass sink faucets and shower heads, hover such spouts have little need for a spout cover 10 for impact resistance and therefore these spouts do not present similar safety concerns.
  • the hollow body 12 may include a water guide 20 formed therein.
  • FIG. 7 is a schematic sectional view of a water guide 20 for the spout cover 10 according to one embodiment of the present invention, wherein the hollow body 12 is removed for clarity.
  • the water guide 20 has a water inlet 22 adapted to receive water from an outlet of the faucet 14 and terminating in a water outlet 24 for the spout cover.
  • the water inlet 22 may be a funnel shape to accommodate inaccuracy in placement by the user as well as variation in the spout 14 outlets between distinct models of faucets 14.
  • the water guide 20 may further include an offset 26 in the flow path to provide an area 28 in the water guide 20 where water is certain to be present when water is flowing from the faucet 14.
  • a temperature sensor mechanism 30 is positioned within the water flow within the hollow body 12.
  • the sensor mechanism 30 is part of a rapid temperature response for the spout cover 10.
  • the term "rapid" refers to the problem that many temperature measuring devices (e.g. mercury thermometers) have a large lag between the actual temperature changing and tne reporting of that change. In this case, where the person is adjusting the water temperature with the faucet handles and wanted to adjust according the temperature displayed (as discussed below), such long lags would be unacceptable.
  • a rapid response in accordance with the present invention is a response between change in temperature of the water and ultimate display to the user on the order of a second or less.
  • the temperature sensor mechanism 30 will be part of a digital system for rapid response and can be formed as one or more standard thermistors.
  • the thermistor(s) of the sensor mechanism 30 may be coupled to an A/D converter which would be coupled to a BCD converter that drives the digital LCD display (described later). This would allow for no microprocessor, however, the A/D converter cost is greater than the microcontroller with the A/D converter in it. Consequently the thermistor(s) of the sensor mechanism 30 may be coupled to a microprocessor which drives the digital display. Appropriate thermistors can be provided by Digikey.
  • the temperature sensor mechanism 30 may be placed within the water flow through positioning the temperature sensor mechanism 30 within the water guide 20 of the hollow body 12 in a position offset in plan view from the water inlet 22. Specifically the temperature sensor mechanism 30 would be placed at the end of the offset 26 adjacent area 28 as shown in figure 7. As the inlet 22 is shaped as a funnel, as shown in figure 7, offset in plan view will mean offset from the exit of the funnel forming the inlet 22. Other shapes for the water guide are, of course possible, as figure 7 is intended only as a representation. For example, the outlet 24 could coincide with area 28. Although space considerations suggest that the rearward offset (toward the tub wall beneath the faucet 14), the offset 26 could extend laterally or forward of the inlet 22 and the faucet 14.
  • the water guide 20 may be formed in a more compact structure, provided it does not restrict water flow through the spout cover 10.
  • the water guide 20 may be formed integral with the body 12 or as a separate component contained within the body 12.
  • the water guide 20 may simply be an downwardly extending extension arm with the sensor mechanism 30 at the end. With this configuration even if the arm of the water guide extends beyond the flow of water from the spout 14, water will impinge upon the arm and flow down the arm sufficiently to obtain a signal of the water temperature.
  • the arm may include a channel to collect and direct sufficient water for senor 30 to measure where the sensor 30 is not directly in the water flow.
  • the temperature sensor mechanism 30 may be placed within the water flow through forming of the temperature sensor mechanism 30 as shown in figure 8 as a holder 32 having an array of sensors 34, wherein the holder 32 is positioned in the outlet 24 of the water guide 20 such that the sensors 34 that extend across the outlet 24.
  • the outlet 24 of the water guide can coincide with the end of the funnel or inlet 22 and the offset 26 and area 28 eliminated.
  • the sensor array assures that one of the sensors 34 is in the water stream, and the controller will need to need to account for which signal is from the sensor in the water stream and therefore indicative of water temperature.
  • the temperature sensor mechanism 30 is coupled through a controller (not shown) to a digital temperature display 40, such as a backlit LCD numeric display, on the hollow body 12 for displaying the temperature of the water sensed by temperature sensor mechanism 30.
  • the display such as digital display 40, is preferably an electronic display for consumer confidence reasons. Analog gauges displaying temperature (E.g. a mercury thermometer, or a kitchen meat thermometer) do not imply the accuracy that people expect and want as compared to an electronic display. In safety products, public perception is important for acceptance and adoption, since when not used a safety product offers little safety. Consequently the display 40 for the spout cover 10 should be an electronic display, either alphanumeric or graphical, such as digital temperature display 40.
  • the digital display 40 is mounted in a direction facing the tub and at an angle of at least five degrees, more preferably at least 10, relative to vertical, whereby the display 40 is visible from any viewing height above the faucet 14. This allows the parent to view the water condition while standing beside the tub 16. This feature can be beneficial for elderly patients who can see the water temperature indication of the display 40 from a standing position prior to stepping into the tub 16.
  • the display 40 may also be a curved display 40 as shown in figures 4-5.
  • the upper portion of the display has an average angle of at least five degrees, more preferably at least ten degrees, relative to vertical, whereby the display 40 is again, visible from any viewing height above the faucet 14.
  • the display preferably includes an alpha-numeric display 42 of the sensed temperature.
  • the alpha-numeric display is preferably a numerical representation with temperature shown in 1/10 th of a degree increments. Of course the display can be in Fahrenheit or Celsius, as desired.
  • the system can include a toggle to switch the desired display.
  • the display 40 may be moveable to be positioned by the user to place it in the easiest viewable position, however such movement accommodating systems may add considerable to the cost of the spout cover 10.
  • the forward facing, slightly upward angled positioning of the display 40 is preferred from a cost perspective.
  • the display 40 may include a visual, non-numeric display of the sensed temperature.
  • one non-numeric display is that the display 40 includes back lighting of distinct colors, namely a tri-color system.
  • a blue back lighting would indicate a cool or cold water temperature (relative to taking children taking baths) wherein the temperature is below a preset threshold
  • a white or normal back lighting would indicate a normal temperature range for children's bath water wherein the sensed water temperature is between a lower and higher preset threshold
  • a red back lighting would indicate a dangerous condition for children's bath water wherein the sensed temperature of the tap water is above an upper preset threshold.
  • the back lighting provides an independent non-numeric display for rapidly conveying the sensed condition to the user, effectively acting as a visual alarm.
  • Another modification of the backlighting is to use tri-colored numeric displays for the measured temperature number 42 rather than an associated back lighting.
  • the described backlighting is believed to better convey the information effectively to the user.
  • the display 40 in the embodiments of the cover 10 shown in figures 12-14, illustrates a further non-alphanumeric display of the temperature.
  • This display is a graphical display that is separate and distinct from the alphanumeric display 42.
  • the graphical display includes an array or graph of temperature range indicia 44 that are indicative of a range of possible water temperatures; acceptable range indicia indicative of a sub-set of the displayed temperature range indicia 44 that is an acceptable tap water temperature, and temperature indicating indicia 46 indicative of the tap water temperature as measured by the temperature sensor 30.
  • the acceptable range indicia includes bounding indicia 47 indicative of the upper and lower limits of the sub-set of displayed temperature range indicia 44 (namely a box around the desired sub-set) and explanatory text 48, such as "safety zone” or “comfort zone” or the like, that is indicative of the acceptable range to assist in conveying the meaning of the graphical display.
  • the temperature indicating indicia 48 is, effectively a highlighted or differentiated temperature range indicia 44. In many applications the graphical representation can better convey the meaning of the indicated temperature.
  • the breadth of the acceptable range indicia e.g. the upper and lower sensed tap water temperature limits of the defined and illustrated "safety zone" will be preset and can change depending upon what the display 40 is incorporated into.
  • the upper limit is likely defined by an upper or "scalding" water temperature that is unsafe for bathing infants and or small children, while the lower limit is likely defined by a low water temperature that is uncomfortable and/or unsafe for bathing infants and or small children
  • the non-numeric aspects of the digital display 40 are intended to work in conjunction with the more conventional numeric display features of the display 40, e.g. the back lighting of the display will back light a numeric display.
  • the temperature sensor mechanism 30 is coupled through the controller to an audible temperature alarm 50 on the hollow body 12, wherein the audible temperature alarm is configured to audibly signal unsafe temperature conditions sensed by the temperature sensor mechanism 30.
  • the temperature sensor mechanism 30 the audible alarm 50 and the temperature display 40 forms a rapid response system having a lag time of less than 1 second between a measured temperature and the display and or alarm, if appropriate.
  • the audible alarm 50 is a progressive audible temperature alarm with varied levels of activation corresponding to the severity or tne scald or high temperature condition sensed by mechanism 30. Essentially as the sensed condition becomes more dangerous the audible alarm increases in volume, pitch, frequency or the like.
  • audible alarm 50 need only alert the user to the general presence of dangerous conditions while the display will specify the details (e.g. the water temperature is 107 degrees Fahrenheit).
  • a manual override 52 for disengaging the audible alarm 50, and wherein the actuation of the manual override is child-proof.
  • the manual override is a pair of buttons 52 on opposed sides of the body 50 that are too far for children to grasp with a single hand. The buttons 52 are pressed simultaneously to actuate the override.
  • the override mechanism 52 must be child-proof so small children could not inadvertently disengage this safety feature. Without the manual override 52 the users would need to take off the spout cover 10 for disengagement of the safety features.
  • Other child safety arrangements for the override could also be used, such as a "depress and twist" motion, which is difficult for children.
  • the temperature sensor mechanism 30 and the associated components are actuated upon the flow of water through the spout cover 10.
  • the water activation may be through a circuit that is closed in the presence of water, such as through a switch 70 positioned on the offset 26 shown in figure 7. Any water activation technique could be utilized, subject to cost considerations.
  • the cover 10 may utilize the flowing water in the spout 14 to generate the power, thereby using a hydro-electric power system.
  • Another embodiment of the present invention further includes a water activation alarm (which can be the same as audible alarm 50 above) indicating unauthorized use of the spout cover 10 and a child-proof water activation alarm deactivation mechanism allowing for authorized use of the spout cover 10.
  • a water activation alarm (which can be the same as audible alarm 50 above) indicating unauthorized use of the spout cover 10 and a child-proof water activation alarm deactivation mechanism allowing for authorized use of the spout cover 10.
  • the water activation alarm deactivation mechanism can be through buttons 52, if desired. In this arrangement, one use of the buttons would deactivate the water activation alarm, and a second, presumably more complex actuation would deactivate the temperature alarm.
  • separate child-proof controls may also be provided.
  • the spout cover 10 includes a closing mechanism 80 for attaching the spout cover 10 to the faucet 14 in a temporary, non-marring, non-residue attachment manner.
  • the closing mechanism 80 may be a releasable band 82 and associated closing buckle 84 as shown in figures 1 and 3, such as found in ski boots and roller blades.
  • the closing mechanism 80 may be overlaying hook and loop type fasteners 86 as shown in figure 9.
  • the body 12, in either embodiment of the closing mechanism, may include a slit 88 on an end receiving the faucet 14.
  • a strip of hook elements would be attached to the body 12 adjacent the slit 88 in an inward, or outward facing direction, and a strip of the loop elements would be adjacent the slit 88 on the other side and facing the opposite direction.
  • an interior faucet facing band 90 of a high friction material e.g. a soft rubber material
  • the high friction material 90 will be clamped against the faucet 14, making the installed spout cover difficult to slide off (without disengaging the closing mechanism 80.
  • the closing mechanism is not limited to the two disclosed embodiments and could be a variety of devices, such as a simple encircling strap and buckle, as common in backpacks.
  • Another aspect of the present safety bathtub spout cover includes a recessed access 96 in the body 12 to allow for access to and operation of a push-pull type shower diverter 98 in the faucet 14. This allows the shower to be utilized without removing the spout cover 10, while not jeopardizing the impact resistance of the cover 10.
  • the body 12 includes at least one anti-microbial agent.
  • the features of the safety spout cover 10 with display 40 discussed above may be incorporated directly into a safety spout 100, wherein the safety bathtub spout comprises a hollow body 12 having a soft exterior having a water outlet 24 for the spout 100, a temperature sensor mechanism 30 positioned within the water flow within the hollow body 12, a temperature display 40 coupled to the temperature sensor mechanism 30 for displaying the temperature of the water sensed by temperature sensor mechanism 30, wherein the display 40 is mounted into be visible from any viewing height above the faucet 100, an audible temperature alarm 50 on the hollow body 12 coupled to the temperature sensor mechanism 30, wherein the audible temperature alarm 40 is configured to signal unsafe temperature conditions sensed by the temperature sensor mechanism 30, and a childproof manual override 52 for disengaging the audible alarm 50.
  • the safety spout 100 does not require a separate water guide, or attachment mechanism to couple the device to a faucet, of course.
  • the safety spout 100 will include a plumbing coupling 114 to attache the spout 100 to the plumbing from the wall, as is known in the art.
  • FIG 11 is a schematic flow chart of the microprocessor operation of the spout cover 10 and the spout 100 with display 40 in accordance with the present invention incorporating all of the above features.
  • the first step is to determine if the water is on, such as from the circuit with switch 70. If the water is not on, the control process is done, the components remain dormant until water is sensed. If the water is found to be on the controller checks if the water alarm for the cover 10 is actuated or not. If the water alarm is on, then the controller will activate the audible water alarm (i.e. the same alarm 50 used for temperature warnings).
  • the red backlighting for the display 40 can be flashed as a visual warning to the user.
  • the temperature is not displayed numerically to provide the user with a distinction in the operation (e.g. a flashing red light, no temperature reading and audible alarm is the water alarm). A distinct audible alarm can be used as well, to distinguish the sound from the temperature alarm. If the water alarm is not on (e.g. been deactivated by an authorized user) then the water temperature is read and the system checks for a temperature alarm deactivation (e.g. the parent is or could desire to take a very hot bath).
  • a temperature alarm deactivation e.g. the parent is or could desire to take a very hot bath.
  • the temperature alarm is deactivated the temperature is displayed on display 40 with no backlighting (hot water will show the hot temperature on the display 40 without the audible alarm or the visual red backlighting).
  • the temperature alarm override will reset to not being overridden every time the water is turned on (e.g. default for the temperature alarm is on).
  • display and backlighting will be actuated in accordance with the temperature.
  • Cold bath water temperatures will be displayed with blue backlighting, normal with no backlighting, and hot with red backlighting and the progressive audible alarm. The process is repeated as the temperature changes.
  • the spout 10 is only one illustrative representation of the use of the display 40 according to the present invention.
  • the display 40 (with alarm 50) can be similarly incorporated into other spout applications.
  • impact resistance is generally not a significant concern such that a device with sensor 30 and display 40 can be attached directly to the end of the faucet (e.g. threaded onto a diverter assembly).
  • Another tap water application is to incorporate the sensor 30 and display 40 (and alarm 50) into a baby bathing tub, wherein the sensor is placed in a location within the stream or flow of tap water.
  • a "foot bath" product in which users fill a basin with generally hot tap water and the basin is configured to receive the user's feet is another anticipated use of the display 40, sensor 30 and alarm 50.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Domestic Plumbing Installations (AREA)

Abstract

La présente invention concerne un système d'affichage de la température de l'eau du robinet qui comprend un capteur de température mesurant la température de l'eau du robinet qui peut se trouver dans un capot de buse de baignoire. Un écran LCD affiche la température de l'eau du robinet, telle qu'elle est mesurée par le capteur de température. Les sources lumineuses pour le rétro-éclairage de l'écran LCD forment au moins deux couleurs distinctes et la couleur de rétro-éclairage affichée réagit à la température de l'eau du robinet, telle que mesurée par le capteur de température. L'écran possède un affichage de température graphique, l'écran graphique comprenant un indice de la plage de températures indicative d'une gamme de températures d'eau possibles, un indice de plage acceptable indicative d'un sous-ensemble de l'indice de gamme de températures affichée qui soit une température d'eau du robinet acceptable et un indice indicateur de température indicatif de la température de l'eau du robinet mesurée. Une alarme audible réagit à la température de l'eau du robinet mesurée et propose diverses alertes audibles indicatives de différentes températures d'eau du robinet mesurée.
PCT/US2006/029883 2005-12-14 2006-07-31 Mesure de temperature de l'eau du robinet et systeme d'affichage et capot de buse de baignoire de securite l'utilisant WO2007070112A1 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
US75027905P 2005-12-14 2005-12-14
US60/750,279 2005-12-14
US70370806P 2006-07-29 2006-07-29
US60/703,708 2006-07-29
US11/460,991 2006-07-30
US11/460,991 US20070047617A1 (en) 2005-07-29 2006-07-30 Tap water temperature measurement and display system

Publications (1)

Publication Number Publication Date
WO2007070112A1 true WO2007070112A1 (fr) 2007-06-21

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PCT/US2006/029883 WO2007070112A1 (fr) 2005-12-14 2006-07-31 Mesure de temperature de l'eau du robinet et systeme d'affichage et capot de buse de baignoire de securite l'utilisant

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010086649A1 (fr) * 2009-02-02 2010-08-05 Peter Tinkler Dispositif de rinçage pour une sortie de fluide
CN102434688A (zh) * 2011-11-28 2012-05-02 大连民族学院 一种水龙头

Citations (9)

* Cited by examiner, † Cited by third party
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US4281543A (en) * 1975-10-27 1981-08-04 Zeev Raz Hand shower and temperature indicating unit
US4353139A (en) * 1980-01-10 1982-10-12 Wainwright Richard M Protective cover for individual water fixtures
US5172860A (en) * 1991-04-19 1992-12-22 Yuch Fan C Shower head with a temperature measuring function
US6519790B2 (en) * 2001-07-11 2003-02-18 Chung Cheng Faucet Co., Ltd. Optoelectronic device assembly mounted to bathroom equipment
US20030125842A1 (en) * 2001-12-28 2003-07-03 Chang Chee Ann Multi-functional water control module
US20030156620A1 (en) * 2002-02-15 2003-08-21 King-I Electromechanical Industry Co., Ltd., Tap water temperature measuring device
US20030202558A1 (en) * 2002-04-30 2003-10-30 Chung Charles Wong Tak Wireless electronic cooking thermometer
US20060045167A1 (en) * 2004-08-27 2006-03-02 Ivan Pawlenko Self-contained temperature monitor
US20060118645A1 (en) * 2003-01-16 2006-06-08 Nuri International Co., Ltd. Light emitting apparatus in tap water responding to water temperature

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4281543A (en) * 1975-10-27 1981-08-04 Zeev Raz Hand shower and temperature indicating unit
US4353139A (en) * 1980-01-10 1982-10-12 Wainwright Richard M Protective cover for individual water fixtures
US5172860A (en) * 1991-04-19 1992-12-22 Yuch Fan C Shower head with a temperature measuring function
US6519790B2 (en) * 2001-07-11 2003-02-18 Chung Cheng Faucet Co., Ltd. Optoelectronic device assembly mounted to bathroom equipment
US20030125842A1 (en) * 2001-12-28 2003-07-03 Chang Chee Ann Multi-functional water control module
US20030156620A1 (en) * 2002-02-15 2003-08-21 King-I Electromechanical Industry Co., Ltd., Tap water temperature measuring device
US20030202558A1 (en) * 2002-04-30 2003-10-30 Chung Charles Wong Tak Wireless electronic cooking thermometer
US20060118645A1 (en) * 2003-01-16 2006-06-08 Nuri International Co., Ltd. Light emitting apparatus in tap water responding to water temperature
US20060045167A1 (en) * 2004-08-27 2006-03-02 Ivan Pawlenko Self-contained temperature monitor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010086649A1 (fr) * 2009-02-02 2010-08-05 Peter Tinkler Dispositif de rinçage pour une sortie de fluide
CN102434688A (zh) * 2011-11-28 2012-05-02 大连民族学院 一种水龙头

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