SMART MONOCONTROL CARTRIDGE FOR TAPS AND SENSOR DEVICE FOR SAID CARTRIDGE
20200284008 ยท 2020-09-10
Inventors
- CESAR BUENO PALACIOS (TUDELA (NAVARRA), ES)
- CARLOS FORNIES GARCIA (TUDELA (NAVARRA), ES)
- BRAM VANNESTE (TUDELA (NAVARRA), ES)
Cpc classification
F16K19/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E03C1/055
FIXED CONSTRUCTIONS
E03C1/0412
FIXED CONSTRUCTIONS
International classification
E03C1/05
FIXED CONSTRUCTIONS
F16K11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A smart monocontrol cartridge for taps includes a casing that houses a channel for a fluid, a mobile body which includes a cavity in which a mobile cam is located, the mobile cam being coupled by a rotator to the mobile body by means of an axis, and a sensor to detect a position of the mobile cam. The smart monocontrol cartridge also includes a magnet. The magnet can be arranged in the casing or in the mobile body with the sensor arranged in the mobile cam, or the sensor can be arranged in the casing or in the mobile body with the magnet being arranged in the mobile cam. The sensor is arranged to sense the magnetic field generated by the magnet so that a modification of an inclination of the cam can be determined based on a variation of the magnetic field sensed by the sensor.
Claims
1. A smart monocontrol cartridge for taps comprising: a casing which houses therein: a channel for a fluid, a mobile body which comprises a cavity in which a mobile cam is located, the mobile cam being coupled by a rotator to the mobile body by means of an axis, a sensor to detect a position of the mobile cam; and a magnet; wherein the magnet is arranged in the casing or in the mobile body and the sensor is arranged in the mobile cam; or the sensor is arranged in the casing or in the mobile body and the magnet is arranged in the mobile cam, and the sensor is arranged to sense the magnetic field generated by the magnet so that a modification of an inclination of the cam can be determined based on a variation of the magnetic field sensed by the sensor.
2. The smart monocontrol cartridge for taps according to claim 1, wherein one of the sensor or the magnet is placed in a cavity in the interior of a detachable sensor module.
3. The smart monocontrol cartridge for taps according to claim 1, wherein the detachable sensor module is placed in a recess of the mobile cam.
4. The smart monocontrol cartridge for taps according to claim 1, wherein one of said sensor or said magnet is arranged in the mobile body.
5. The smart monocontrol cartridge for taps according to claim 4, wherein the magnet is placed in a recess of the mobile body.
6. The smart monocontrol cartridge for taps according to claim 1, wherein the sensor is a Hall Effect sensor.
7. The smart monocontrol cartridge for taps according to claim 2 further comprising an electronic module configured to house fluid temperature detection means configured to detect the temperature in a channel for a fluid.
8. The smart monocontrol cartridge for taps according to claim 7 further comprising a flexible cable connecting the electronic module and the detachable sensor module.
9. The smart monocontrol cartridge for taps according to claim 7, wherein the water temperature detection means is a temperature sensor located next to a wall of a channel for a fluid and not into direct contact with the fluid.
10. The smart monocontrol cartridge for taps according to claim 2, wherein the detachable sensor module includes an upper contact circuit prepared to have contact with a display.
11. The smart monocontrol cartridge for taps according to claim 1, wherein the mobile cam has a recess adapted to place a gasket therein for fixating an external handle of a monocontrol tap.
12. A sensor device for the smart monocontrol cartridge according to claim 1, comprising a sensor arranged to sense the magnetic field generated by a magnet and means for placing the sensor in the mobile cam or means for placing the sensor in the casing or body.
13. The sensor device according to claim 12, further comprising a detachable sensor module, an electronic module and a cable connecting said detachable sensor module and said electronic module.
14. The sensor device according to claim 12, further comprising fluid temperature detection means.
15. A method to control a tilt and/or rotation position of a smart monocontrol cartridge comprising providing the sensor device according to claim 12.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] For a better understanding, some drawings of two embodiments of a smart monocontrol cartridge according to the present invention are attached by way of explanatory but not restrictive example.
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0034] The following detailed description present a number of specific details by way of example to provide a detailed understanding of the relevant teachings of this invention. However, it is clear for a person skilled in the art that the present teachings can be carried out without these details.
[0035] An objective of the invention detailed in the present application is to measure and control the position of the monocontrol cartridge. Further objectives of the invention are to determine if the monocontrol cartridge is in open position, in closed position, and its angular position. Another objective of the present invention is to present a solution to measure and control the position of a monocontrol cartridge applicable in known monocontrol cartridges. The solution presented in this application can be manufactured using the same moulds usually used for manufacturing known monocontrol cartridges with little economic charge.
[0036] In particular, the present description discloses two embodiments, which may be understood as a reference, as well as non-limiting examples.
[0037]
[0038] The casing -4- is an essentially hollow, cylindrical body which can be used for smart monocontrol cartridges -1- of any known type. The casing -4- comprises channels for fluid therein which are outputs for the fluid that flows through the cartridge -1-. In this embodiment, said channels for fluid are liquid channels, more particularly water channels. Usually, smart monocontrol cartridges include at least one water channel for hot water and one for cold water, which are then mixed inside of the cartridge. Additionally, cartridges can include an additional water channel for mixed water. The casing -4- may also include a pair of ceramic discs and a mobile cap. Channels for water, ceramic discs and mobile caps are widely known in the state of the art, and those used in the present invention may correspond to standard channels, discs and caps, being not relevant for the disclosure of this invention.
[0039] The casing -4- also houses therein a mobile body -5- which comprises a cavity in which a mobile cam -8- is located and configured to move with respect of the casing -4-. The mobile cam -8- is coupled by a rotator to the mobile body -5- by means of an axis -81- (shown in
[0040] The mobile cam -8- is rotatably fixed to the mobile bodyby means of an axis -81-. Therefore, the mobile cam -8- can rotate around the central axis of the mobile body -5- alongside said mobile body -5- and can also tilt around the axis -81-.
[0041]
[0042] As shown in
[0043] The cable -3- is a flexible cable -3- arranged in a recess -83- of the mobile cam -8- and can move according to the movement of the mobile cam -8-.
[0044] The flexible cable -3- is introduced into a cavity -22- in the interior of the detachable sensor module -2- from one of the sides of the upper part of the detachable sensor module -2-. The flexible cable -3- is also connected to an electronic module -33- (shown in
[0045] The casing -4- also includes a casing cover element -41- for housing a section of the flexible cable -3- so that the cable -3- is partially covered and protected by the casing cover element -41-.
[0046] Additionally, a gasket -7- is arranged in a recess -84- of the mobile cam -8-. The gasket helps to fixate a handle for the tap onto the mobile cam -8-. The handle of the tap is not shown in the figures. It may be understood as any known handle for taps and is not an object of protection of this application.
[0047] The solution provided in this invention enables the measurement of the angular tilting position of the mobile cam -8- using the detection of a magnetic field. To this end, the smart monocontrol cartridge -1- comprises a magnet -6- and a sensor -21- (both shown in
[0048] The sensor -21- is arranged to sense the magnetic field generated by the magnet -6-. When the mobile cam -8- is tilted, the sensor -21- is also tilted, while the magnet -6- remains in its position. A modification of the tilt of the cam -8- produces a variation in the distance between the magnet -6- and the sensor -21-, producing in turn a variation on the magnetic field sensed by the sensor -21-. The angular tilting position is determined based on the variation of the magnetic field sensed by the sensor -21-.
[0049] In this invention, the sensor -21- can be a Hall Effect sensor that measures the magnitude of the magnetic field of the magnet -6-, and is used to detect the position of the magnet -6-. The sensor directly returns a voltage, which is directly proportional to the sensed magnetic field strength. When the magnetic field generated by the magnet -6- is known, the distance from said magnet -6- to the Hall Effect sensor -21-, and thus the distance between the mobile cam -8- and the mobile body -5-, can be determined. Furthermore, when the distance between the mobile cam -8- and the mobile body -5- is known, the angular tilting position of the mobile cam -8- can be determined, and thus the angular tilting position of the tap, determining as well its position open/closed. The tilting of the mobile cam -8- with respect to the mobile body -5- can be determined in any point of its angular path.
[0050] Additionally, and due to the sensor, the tap can be programmed to be activated or deactivated at a certain angular tilting position. When combined with water temperature detection means, it can be reliably determined if the water had thermal characteristics which would allow the proliferation of health diseases like legionellosis, closing the tap accordingly. Furthermore, a timer can be added.
[0051] Alternatively, other kind of sensors, like a reed switch sensor, and other kind of magnets, like sinusoidal magnets or electromagnets, can be used.
[0052] When the mobile cam -8- comprising the sensor -21- rotates, the mobile body -5- which comprises the magnet -6- rotates at the same rate, thus maintaining the magnet -6- and the sensor -21- the same relative position during the entire rotation. Thus the device is able to fully calculate the tilt around the axis -81- of the mobile cam -8- with respect of the mobile body -5- irrespective of the degree of rotation. Alternatively, the sensor -21- can be placed in the recess of the mobile body -5- and the magnet -6- can be located in the mobile cam -8-.
[0053] In a different configuration, the magnet -6- or the sensor -21- can be located in the casing -4- instead of being in the mobile body -5-, while the other of the magnet -6- or sensor -21- is located in the mobile cam -8-. In that configuration, when the mobile cam rotates -8-, the element in the casing would not rotate at the same rate. This way, the device can sense changes both in tilt and rotation.
[0054]
[0055]
[0056] Said water temperature detection means can be located at a minimum distance from the wall of the resultant water channel and not into direct contact with the water, thus eliminating the possibility of leaks or breaks in the electronic module -33-. In this way, an indirect measure of the temperature of the resultant water in the channel is produced outside of said channel.
[0057] The water temperature detection means are electrically connected and in data communication with electronic control means. Said electronic control means may comprise analogue-digital conversion means and processing means configured to calculate a water temperature based on the measurement of the water temperature detection means and compare said calculated temperature to a pre-set reference temperature, and communication means to transmit said calculated temperature. Thus, when the smart monocontrol cartridge -1- forms part of a smart tap, it is possible to send data through the communication means to interface elements or periphericals for the user to retrieve the information. Preferably, those water detection means and the electronic means are encapsulated in a thermosetting resin that in a cured state generates an adhering surface, which guarantees the durability of said electronic components, and also preventing water or humidity to enter said electronic means.
[0058]
[0059] As shown in
[0060] The contact circuit -31- shown in the figures comprises four contact points -32- to make contact with a display. The four contact points -32- comprise communication and supply signals. The contact circuit -31- makes contact by its lower part with the flexible cable -3-. Alternatively, the contact circuit -31- can be power-supplied by a battery connected between said contact circuit -31- and the display.
[0061]
[0062] The smart monocontrol cartridge -1- may comprise a handle to facilitate its manoeuvrability. Usually, tap handles comprise coupling elements configured to couple them to the upper end of a cam to transmit the movement of the tap handle towards said cam. The movement of the tap handle corresponds to the normal actions to open, close and regulate the temperature of mixed water. Said handle may comprise an interface element or can be connected to a display (which can be LEDs, LED displays, LCDs or similar, depending on the data selected to be shown), which can be connected to the contact circuit -31- located in the upper part of the detachable sensor module -2-, which is also connected to the flexible cable -3-. As such, an electrical and data connection is established through the flexible cable -3- between the electronic module -34- and said contact circuit -31-, connected to said interface element or display.
[0063]
[0064]
[0065]
[0066] The casing -4- also includes a casing cover element -41- to house a partial section of a flexible cable -103- so that the partial section of the cable -103- is covered and protected by the casing cover element -41-.
[0067]
[0068]
[0069] The solution provided in this invention enables the measurement of the angular tilting position of the mobile cam -8- using a magnetic field. If the angular tilting position of the mobile cam -8- is known, the exact temperature of the resultant water that flows through the cartridge -100- and exits the tap can also be determined. The determination of the inclination is analogue to the first embodiment. Electrical parts are kept to a minimum and can be ridded off all together.
[0070] Although the invention has been presented and described with reference to embodiments thereof, it should be understood that these are not restrictive of the invention, and therefore multiple structural or other details may vary, as may be obvious to experts in the sector after interpreting the subject matter disclosed in the present description, claims and drawings. Therefore, all variants and equivalents will be included within the scope of the present invention if they can be considered to fall within the broadest scope of the following claims.