This application is a National Stage of International Application No. PCT/IB32017/052220 filed Apr. 19, 2017, claiming priority based on Italian Patent Application No. 102016000039976 filed Apr. 19, 2016.
The present invention relates to a sensor device for detecting the presence of a body or substance, in particular one that is electrically conductive, in a predetermined spatial region.
An object of the present invention is to provide an improved sensor device, which may appropriately be used in a plurality of possible technical applications.
A further object of the present invention is to make such sensor device simple and cost-effective to manufacture with a very reliable operation.
These and other objects are achieved according to the present invention with a sensor device comprising
Preferably, though not necessarily, said first and second foils are applied on two opposite sides of a circuit support hoard, preferably in a partially juxtaposed relationship.
Such sensor device may appropriately be used in a plurality of applications.
By way of a purely illustrative and non-limiting example, such sensor device may be used as a wetness sensor for induction or radiant-type cook surfaces, as a water flow and/or wash basin sensor in washing machines (clothes washing machines and dishwashers), as a fluid level sensor in a container, as a beverage level sensor in beverage preparation machines, etc.
Another suitable application is, for example, for making tactile-type control devices.
Further features, applications and advantages of the present invention will become apparent from the detailed description that follows, provided purely by way of non-limiting example with reference to the accompanying drawings, in which:
In the drawings, a sensor device according to the present invention for detecting the presence of an electrically conductive substance in a spatial region is indicated collectively at 1.
The sensor device 1 comprises an electrically insulating support board 2, such as a printed circuit board, which has, on a first main face 2a, a first foil A made of an electrically conductive material. The foil A is, for example, an electrolytic copper layer deposited on the support board 2, e.g. using the technique for making printed circuit boards or an otherwise known manner.
In the embodiment shown in a simplified way, on the opposite side or surface 2b of the board 2, there is provided a second foil B of electrically conductive material, e.g. copper.
In principle, the arrangement of the electrically conductive foils A and B on opposite sides of the support card 2 is not mandatory: in alternative embodiments, not shown in the drawings, such foils could be applied or otherwise deposited on the same side of the support board.
Preferably, although not necessarily, the foils A and B, if arranged on opposite sides of the same support board 2, as in the accompanying drawings, appropriately have at least one respective part in substantial juxtaposition with respect to a corresponding part of the other foil. This condition, however, is not mandatory.
With reference to
As shown in
The microcontroller MC is arranged to apply to the foil B an electric radiofrequency signal, having a frequency in particular between 500 kHz and 10 MHz, for example around 4 MHz.
As can be seen in
In use, the foil B applied to the side or face 2b of the support board 2 radiates radiofrequency waves as a result of the signal applied to it by the microcontroller MC. Such waves induce on the foil A, applied on the side or face 2a of the board 2, a signal, equal to radiofrequency, applied to the input 6 of the microcontroller MC, which converts the received signal into digital form.
The microcontroller MC is also arranged to process the digital signal thus obtained and to generate an indicative information signal indicating the strength of such signal, which may vary as a function of the presence of an electrically conductive substance on the foil A. The electrically conductive substance may be in the liquid state (e.g. water or other conductive liquids) or solid state (coins, metal disks, etc.), or it may be represented by a user's finger.
As best seen in
As already mentioned in the introductory part of the present description, the device according to the present invention may be used for countless appropriate applications.
Merely by way of illustrative and non-limiting example,
The dispensing device 40, illustrated in
In the embodiment illustrated in
The arrangement is such that after the dispensing of the detergent, or when the cover 50 has assumed the open condition illustrated in the drawing, a wash jet sprayed by a spraying impeller of the machine may periodically hit the dispensing device 40 and some of such jet may penetrate the slot 20 and splash the foil A of the sensor device 10 therein.
If the sprayer in question operates regularly, the sensor device 10 located in the slot 20 will periodically detect the arrival of a wash jet and will signal to the dishwasher control unit that said impeller is rotating regularly.
If for any reason said spraying impeller is blocked, the sensor device 10 will no longer detect the periodic arrival of washing splashes on its foil A and will provide a corresponding information signal to the machine control unit.
In the above described function with reference to
Naturally, without altering the principle of the invention, the embodiments and the details of implementation may vary widely with respect to those described and illustrated purely by way of non-limiting example, without thereby departing from the scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
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102016000039976 | Apr 2016 | IT | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2017/052220 | 4/19/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2017/182953 | 10/26/2017 | WO | A |
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Written Opinion of the International Searching Authority of PCT/IB2017/052220 dated Oct. 13, 2017. |
International Search Report of PCT/IB2017/052220 dated Oct. 13, 2017. |
Number | Date | Country | |
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20190356311 A1 | Nov 2019 | US |