Device for manual application of a liquid
11760122 · 2023-09-19
Assignee
Inventors
Cpc classification
A45D2200/052
HUMAN NECESSITIES
G01F23/243
PHYSICS
B43K5/12
PERFORMING OPERATIONS; TRANSPORTING
B43K29/08
PERFORMING OPERATIONS; TRANSPORTING
A45D34/04
HUMAN NECESSITIES
B43K8/146
PERFORMING OPERATIONS; TRANSPORTING
G01F23/804
PHYSICS
B43K11/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
B43K5/12
PERFORMING OPERATIONS; TRANSPORTING
A45D34/04
HUMAN NECESSITIES
B43K29/08
PERFORMING OPERATIONS; TRANSPORTING
G01F23/24
PHYSICS
Abstract
A device for manual application of a liquid. The device may be used for painting, marking, drawing, writing and/or applying make-up to keratinous surfaces. The device includes a capillary store for the liquid, the capillary store having a filing level, and a measuring device for measuring the filing level of the capillary store.
Claims
1. A device for manual application of a liquid, comprising: a capillary store for the liquid, the capillary store having a filling level, a measuring device for measuring the filling level of the capillary store, the measuring device including an electronic circuit. and an antenna connected to the electronic circuit and configured to contactlessly provide a result of the filling level measurement.
2. The device according to claim 1, wherein the measuring device further comprises a moisture sensor.
3. The device according to claim 2, wherein the moisture sensor comprises conducting paths configured and arranged to measure the filling level of the capillary store resistively or capacitively.
4. The device according to claim 3, wherein the conducting paths comprise a comb-like structure.
5. The device according to claim 4, wherein the comb-like structure comprises two intertwined comb-like components.
6. The device according to claim 5, wherein the electrical resistance between the combs of the conducting paths decreases with increasing filing level in the capillary store.
7. The device according to claim 1, wherein the antenna is configured to supply the electronic circuit with power.
8. The device according to claim 1, wherein the device comprises a flat outer surface extending in a longitudinal direction of the device and the antenna is disposed parallel to the outer surface.
9. The device according claim 1, wherein the antenna comprises at least two antenna disposed in planes that are perpendicular to each other.
10. The device according claim 9, wherein the two antennas both lie parallel to the electronic circuit.
11. The device according to claim 1, further comprising a capacitor and a rectifier for supplying the electronic circuit with power.
12. The device according to claim 1, wherein the rneasurin,g device the antenna, or the measuring device and the antenna are disposed on a carrier.
13. The device according to claim 12, wherein the carrier is constructed of a flexible plastic.
14. The device according to claim 1, wherein the measuring device, the antenna, or the measuring device and the antenna are arranged in the capillary store.
15. The device according to claim 14, wherein the capillary store comprises a longitudinal center line and in the cross-sectional view, the measuring device the antenna or the measuring device and the antenna have a distance of at least 5% of a maximum transverse extension of the capillary store from a longitudinal axis, an outer limit of the capillary store, or the longitudinal axis and the outer limit of the capillary store.
16. The device according to claim 15, wherein the measuring device, the antenna, or the measuring device and the antenna are positioned off-center from the longitudinal center line of the capillary store.
17. The device according to claim 1, wherein the capillarystore contains fibers.
18. The device according to claim 17, wherein the fibers comprise polyester strands.
19. The device according to claim 1, wherein the antenna sends the filling level measurement to a software application.
20. The device according to claim 19, wherein the software application is installed on a mobile phone.
Description
(1) The invention is explained in more detail in the following using a preferred example embodiment with reference to the enclosed drawing with further details. They show
(2)
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(8) In preferred embodiments, such as those exemplified in the figures, the filing level measurement device comprises an electronic circuit 3. In such embodiments, the electronic circuit 3 represents the heart of the system. This is an MD chip with an integrated A/I) converter, which is applied to the carrier strip 1, which is made flexibly in this example embodiment. The electronic circuit 3 is connected to the antenna 2 on the one hand, through which it is supplied with power by means of an electromagnetic alternating field. It is also connected to the conducting paths 4, The conducting paths 4 have two comb-like parts, by means of which the amount of liquid in the fibre store 8 may be measured resistively. This unit is indicated as a circuit in the following. Depending on the degree of wetting of the intermediate area between the conducting paths 4 with the liquid contained in the fibre store 8, the electrical resistance between both combs of the conducting paths 4 and therefore the resistance in the circuit goes down with increasing filling level in the fibre store 8.
(9) In order to make an enquiry regarding the filling level, an evaluation device must be used, in which in the example embodiment illustrated this may be a mobile phone, on which a suitable App is installed. The mobile phone must be capable of nearfield communication (NFC) for this purpose. NFC supplies the antenna of the mobile phone with an electrical alternating current, which induces a current in surrounding conductive objects via a magnetic field. If the fibre store 8 with the elements described above arranged in it is brought near the telephone, an alternating current is induced in the antenna 2. Through a rectifier 5 provided in the electronic circuit 3 a capacitor 6 also provided in the electronic-circuit 3 is charged, which supplies the RFID chip with the necessary power. The chip now measures the ohmic resistance in the circuit indicated above and sends the measurement result to the mobile phone via the antenna 2. The result may be displayed there. The electronic circuit 3 together with the conducting paths 4 represents a moisture sensor. The antenna 2 serves as an interface for providing the result of the filling level measurement in a contact-free way.
(10) A rectifier 5, a capacitor 6 and a switch 7 belong to the electronic circuit 3. In the position shown in
(11) The production of an example embodiment of the device according to the invention is explained in the following. The electronic circuit 3, the conducting paths 4 and the antenna 2 are applied to a continuous strip made of a flexible plastic. The production steps necessary for this are generally known. Advantageously in this the division between two units corresponds precisely to the length of a fibre store of the devices to be produced. Precise insertion of the elements indicated into the fibre store 8 is possible through this.
(12) The fibre store 8 has a strand of threads (made of polyester for example) as filling 9, which is pulled through the centre of a ring nozzle. This ring nozzle extrudes a tube made of covering material (polypropylene for example) around the fibre strand. This continuous strand provided with the covering is shortened to the desired length by a rotating knife after the covering material has cooled.
(13) Before the ring nozzle the continuous strip with the circuit elements on it is added to the strand, so that it is embedded in the strand. The continuous strand provided with the covering is always cut between two circuit units. This may be done by optical or inductive measurement of the position of the circuits on the continuous strip when they are supplied for example, which synchronises cutting, Such a store fitted with circuit elements may be used like a normal fibre store in a shaft or suchlike.
(14) The circuit elements are not added at the edge of the strand as far as possible in this. If they are completely surrounded by fibres, they also become less heated in the extrusion process, which makes the use of cheaper, less heat-resistant plastics such as polyester possible for the carrier strip 1. However, the carrier strip 1 also should not lie precisely in the middle of the fibre store 8. Because the actual applicator element (therefore the tip of a pen for example) is inserted there when the device is assembled.
(15) In
(16) Therefore, compared with conventional devices of the type indicated at the beginning, in principle the production process does not have to be changed. Only the carrier with the circuit elements on it has to be inserted into the fibre bundle before extrusion.
(17) If the fibre store 8 with the filling level measurement device provided with only one antenna 2 is used in the flat marker according to
(18) This expense is not necessary in the example embodiment according to
(19) The characteristics of the invention disclosed in the above description, the claims and the drawing may be essential for carrying out the invention in its various embodiments both individually and also in any combination.