专利摘要:
The present invention relates to a control element intended to be arranged in a vehicle cabin, the control element being integrated in a flexible material and comprising a light-emitting layer (2) which is arranged between a first conductive layer (3) and a second conductive layer (4), the arrangement (1) consisting of the first conductive layer (3), the second conductive layer (4) and the electroluminescent layer (2) being configured to operate as a sensor capacitive. Another object of the present invention is a method for operating such a control element.
公开号:FR3070562A1
申请号:FR1856900
申请日:2018-07-25
公开日:2019-03-01
发明作者:Guido Horsch
申请人:Dr Ing HCF Porsche AG;
IPC主号:
专利说明:

DESCRIPTION
The present invention relates to a control element intended to be arranged in a vehicle interior, the control element being integrated in a flexible material.
Such control elements are known in the state of the art in very numerous embodiments. Document DE 10 2004 009 189 A1 describes for example the use of a deformable support of an electrical circuit with a textile surface. The document AT 5019 U1 relates to an interior covering in which the electrical or electronic components are embedded in a layer of foam. In document DE 10 2006 050 532 A1, a covering part for a vehicle interior is disclosed with a fabric keyboard, and document DE 10 2014 019 439 A1 describes a covering piece with a sensor film which is covered by a decorative surface and which capacitively detects user control manipulations.
The object of the present invention is to provide a variant of the control element which can be manufactured from an easily available initial material and which allows actuation by pressure or by contact.
This object is achieved by a control element intended to be arranged in a vehicle interior, the control element being integrated in a flexible material and comprising an electroluminescent layer which is disposed between a first conductive layer and a second conductive layer, l the arrangement consisting of the first conductive layer, the second conductive layer and the electroluminescent layer being configured so as to be able to function as a capacitive sensor.
The control element according to the invention is further characterized in that:
- The arrangement consisting of the first conductive layer, the second conductive layer and the electroluminescent layer is further configured so as to be able to function as a light source;
- The control element is introduced into one or more recesses of the flexible material.
The invention also relates to a method for operating a control element according to the invention in which the control element operates in a first mode as a capacitive sensor, a pressure exerted on the control element in the first mode being detected by a variation in capacitance and the control element operating in a second mode as a light source.
Furthermore, the method is characterized in that the intensity of the pressure exerted on the control element is indicated by the brightness and / or in that a duration of the pressure exerted on the control element is indicated by the luminosity.
Such layer systems are available in many forms in the form of electroluminescent films. A voltage is applied to the two conductive layers so that a capacitive element is formed together with the electroluminescent layer. If, by pressure or contact, there is a measurable change in capacity, the film can function as a sensor.
According to a preferred embodiment of the invention, an electroluminescent film (light film) is inserted into a recess in a flexible material. The material can be a plastic film, a textile fabric or a microfiber nonwoven. The flexible material can then be used as a covering in a vehicle interior and be used to control various functional components of the vehicle, for example the window regulator, the air conditioning system or an airbag stop switch. Therefore, it is advantageously possible to mount the control element together with the covering.
Since the flexible material, together with the control element, has an essentially flat extent, it can advantageously be applied to a surface in the vehicle interior without having to provide additional recesses in the surface, which are necessary for incorporation of usual modules. The contact elements which connect the control element to the corresponding functional components can in this case be advantageously mounted at any location on the flexible material where they can be connected to the associated contact elements of the vehicle. The connection which leads from the control element to the contacts can advantageously also be integrated in the flexible fabric in this case.
According to an additional preferred embodiment of the present invention, the layer system integrated in the flexible material is an electroluminescent film which is configured so that it can function both as a pressure or contact sensor. and as a light source. The conductive layers with the electroluminescent layer incorporated form a capacitor. The variation in measurable capacity, which takes place in the event of pressure or contact, enables this capacitor to function as a sensor. The electroluminescent layer may however also be excited so as to emit light by a continuous or alternating electric field applied between the conductive layers. This light emission can furthermore be regulated through the intensity of the applied field and can be used to transmit an optical signal visible to the user. Therefore, it is advantageously possible to collect the sensor and signal effect in one element without the need for two separate electrical components. In addition, the sensor and signal function of the element can be controlled using these same fittings. In addition, thanks to this combination, it is advantageously possible to combine the sensor effect and the signal effect in the same surface and thus allow an intuitive execution of the commands.
To achieve the above-mentioned objective, there is further provided a method for operating a control element, the control element being integrated in a flexible material and comprising an electroluminescent layer which is disposed between a first conductive layer and a second layer conductive, the arrangement consisting of the first conductive layer, the second conductive layer and the light-emitting layer being configured so as to be able to serve as a capacitive sensor, the control element operating in a first mode as a capacitive sensor, a pressure exerted on the control element in the first mode being detected by a variation in capacity and the control element operating in a second mode as a light source.
According to a preferred embodiment of the method according to the invention, an electroluminescent film is controlled in a first mode so that a pressure or a contact of the film can be detected by means of a capacity measurement. In a second mode, the
-4film is controlled so that a light emission is excited in the light-emitting layer. As the layer system consisting of the two conductive layers and the incorporated light-emitting layer can be used both as a pressure sensor or a contact sensor and also as a means of illumination and both functions can be controlled by the same fittings, such a process can advantageously be carried out in a simple manner by applying voltages selected in a suitable manner to the fittings.
According to a preferred embodiment of the invention, the optical signal effect is coupled to the detected contact. In a particularly preferred manner, it is therefore possible, according to the invention, to determine the clarity of the optical signal by the intensity of the pressure exerted during contact. If the control of the functional element which can be controlled via the contact is influenced by the intensity of the pressure exerted, intuitive control by the user is therefore possible.
According to a further preferred embodiment of the invention, the optical signal effect is coupled to the duration of the detected contact. If the functional element connected to the control element is adjusted via the duration of the contact, it is thus advantageously possible to vary the clarity with the duration of the contact and therefore to provide the user with a response on the setting state.
Other features, characteristics and advantages of the invention result from the drawings and from the following description of preferred embodiments using the drawings. The drawings in this case only illustrate examples of embodiments of the invention which do not limit the scope of the invention.
Figure 1 schematically illustrates the arrangement according to the invention consisting of an electroluminescent layer and two conductive layers.
FIG. 2 schematically illustrates several possibilities for mounting the control element according to the invention in the passenger compartment of the vehicle.
Figure 3 schematically illustrates two possibilities of mounting the control element according to the invention on the steering wheel.
Figure 1 schematically illustrates the arrangement 1 consisting of the first conductive layer 3, the second conductive layer 4
-5 and the electroluminescent layer 2. The electroluminescent layer 2 is surrounded by the two conductive layers 3, 4, so that the arrangement of the three layers can function as a capacitor when an electric voltage is applied between the two layers conductive 3, 4. Contact or pressure exerted on the arrangement of the layers 1 leads to a measurable capacity variation, by means of which the contact or the pressure can be detected. If the light-emitting layer is excited by the application of a direct or alternating voltage between the conductive layers 3, 4 to generate light, the arrangement 1 of the three layers can also function as a light source and communicate signals optics to the user.
In FIG. 2 are illustrated several possibilities of placing the control element according to the invention in the vehicle cabin. The control element here consists of a light film 1 which is introduced into recesses, for example in the form of perforations, of a flexible material. The flexible material can then be used in a variety of ways as a covering by being mounted on a surface of the passenger compartment that is easy to reach for the user. The shape of this surface is hardly subject in this case to limitations, since the flexible material adapts to the contours of the surface and can therefore be stretched or glued to a plurality of surfaces. The actuation is carried out by means of a contact of the film 1, or by exerting a pressure on the film 1. In the variants illustrated here, several control elements are each time placed directly next to each other, so that one can activate for example several functions used or several degrees of a functional component, for example of an air conditioning installation. For a positioning of the control elements which is user-friendly, it is important on the one hand that they can be easily accessible by the user seated at and that on the other hand the position of the control elements is associated with easily determinable by intuition to the functional components to be controlled. For control by the driver, it is also important that the control elements can be easily accessible by the driver from an upright sitting position and that they allow him, as far as possible, to keep his attention to traffic during the order operation.
For the driver, such a first position 5 which can be easily reached is produced for example on the sides of the front part
-6from the dashboard. In this case, a control element can for example be mounted to deactivate the airbag. Other positions 6 on surfaces which are also easy to reach by the driver and the passenger are available on the central console. In this case, for example, control elements can be installed here for air conditioning and ventilation systems. The window regulator is usually controlled by switches in the side paneling of the door. Such switches can be replaced simply by a control element according to the invention which is mounted at a position 7 of the interior surface of the door. Also easily accessible positions 8 are located on the so-called "B" column in the center of the passenger compartment. For the controls which are carried out when the vehicle is stationary, positions 9 are possible at the level of different surfaces in the luggage compartment.
Figure 3 illustrates two different possibilities of mounting the control element according to the invention on the steering wheel. In this case, as in FIG. 1, it is a luminous film 1 which is introduced into recesses, for example perforations of a flexible material. It is possible to mount one or more control elements on the upper side 10 of the steering wheel. Other possible positions 11 are located at the lower sides of the steering wheel. The two positions 10, 11 are easily accessible by the driver and can be actuated without requiring excessive driver attention for their control.
The following parts, elements, components, parts and means of the invention are referenced as follows on the accompanying drawings:
Layering
Electroluminescent layer
First conductive layer
Second conductive layer
First positioning of the control element
Second positioning of the control element
Third positioning of the control element
Fourth positioning of the control element
Fifth positioning of the control element
Sixth positioning of the control element
Seventh positioning of the control element
Of course, the invention is not limited to the embodiments described and shown in the accompanying drawings. Modifications remain possible, in particular from the point of view of the constitution of the various elements or by substitution of technical equivalents, without thereby departing from the scope of protection of the invention.
权利要求:
Claims (6)
[1" id="c-fr-0001]
1. Control element intended to be arranged in a vehicle interior, the control element being integrated in a flexible material and comprising an electroluminescent layer (2) which is arranged between a first conductive layer (3) and a second conductive layer (4), the arrangement (1) consisting of the first conductive layer (3), the second conductive layer (4) and the electroluminescent layer (2) being configured so as to be able to function as a capacitive sensor.
[2" id="c-fr-0002]
2. Control element according to claim 1, wherein the arrangement (1) consisting of the first conductive layer (3), the second conductive layer (4) and the light-emitting layer (2) is further configured so to be able to function as a light source.
[3" id="c-fr-0003]
3. Control element according to any one of the preceding claims, in which the control element is introduced into one or more recesses of the flexible material.
[4" id="c-fr-0004]
4. Method for operating a control element according to claim 2, in which the control element operates in a first mode as a capacitive sensor, a pressure exerted on the control element in the first mode being detected by a variation in capacity and the control element operating in a second mode as a light source.
[5" id="c-fr-0005]
5. The method of claim 3, wherein the intensity of the pressure exerted on the control element is indicated by the brightness.
[6" id="c-fr-0006]
6. The method of claim 3 or 4, wherein a duration of the pressure exerted on the control element is indicated by the brightness.
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同族专利:
公开号 | 公开日
US10747379B2|2020-08-18|
US20190064963A1|2019-02-28|
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KR102129810B1|2020-07-03|
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DE102017119226B3|2018-10-18|
引用文献:
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法律状态:
2020-07-22| PLFP| Fee payment|Year of fee payment: 3 |
2021-02-12| PLSC| Publication of the preliminary search report|Effective date: 20210212 |
2021-07-28| PLFP| Fee payment|Year of fee payment: 4 |
优先权:
申请号 | 申请日 | 专利标题
DE102017119226.3A|DE102017119226B3|2017-08-23|2017-08-23|Switch integration in panels|
DE102017119226.3|2017-08-23|
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