This patent application claims priority on and the benefit of German Patent Application No. 10 2018 115 461.5 having a filing date of 27 Jun. 2018.
The invention relates to a motor vehicle passenger compartment assembly.
In motor vehicles, electrical loads of all kinds are used, which loads are adjusted, turned on or off, or changed with respect to the operating state thereof in another manner by a vehicle occupant, using operating elements or operating devices. In order to trigger such changes of the operating state of electrical loads in a motor vehicle passenger compartment assembly of this kind, a range of different operating devices are known, for example different switches or also touchpads comprising touch-sensitive, usually capacitively controlled, surfaces. These are generally operating devices which are formed of a relatively stiff material, such that they can also be mounted only on a relatively rigid substrate.
Since, in a motor vehicle passenger compartment assembly, attention is also paid to the ergonomics of operating devices, and since, in addition, a large number of rather soft surfaces comprising covers made of various materials and padding are present therein, rigid operating elements can generally be used only to a very limited extent, owing to the lack of fixing options.
The object of the invention is therefore that of specifying a motor vehicle passenger compartment assembly which offers advantages compared with the prior art in this respect.
This object is achieved by a motor vehicle passenger compartment assembly comprising at least one electrical load and an operating device that interacts electrically or electronically with the electrical load, which operating device is designed to change the electrical operating state of the electrical load when actuated, wherein the operating device comprises an operating element that is to be actuated by hand, by an operator, and that is connected to or integrated in an electrically conductive textile element, in particular an electrically conductive woven fabric. Advantageous embodiments can be found in the dependent claims.
The motor vehicle passenger compartment assembly comprises at least one electrical load and an operating device that interacts electrically or electronically with the electrical load. Said operating device is designed to change the electrical operating state of the electrical load when actuated. The operating device comprises an operating element that is to be actuated by hand, by an operator, and that is connected to or integrated in an electrically conductive textile element, in particular an electrically conductive woven fabric.
Owing to the use of a textile element, the operating element according to the invention can also be applied to flexible and soft surfaces. In this case, use is made of the effect whereby the electrically conductive textile element both has the required flexibility, and also the electrical resistance of the flexible textile element changes upon deformation, i.e. upon actuation of the operating element, as a result of which said textile element is suitable, owing to the deformation or elongation, for converting the movements, transmitted by the operator to the textile element via the operating element, into electrical switching signals.
For this purpose, the textile element can preferably undergo resilient elongation. For this purpose, a textile element can be selected that comprises integrated electrical conductors which lengthen or shorten, and thus change with respect to the electrical resistance thereof, upon elongation of the textile element.
According to a preferred embodiment of the present invention, in particular a signal terminal or a plurality of first terminals are arranged so as to be remote from the region of the operating element and are electrically connected to the textile element. In this manner, a change in resistance between the region of the operating element and the at least one terminal, upon operation of the operating element, can be recorded, which change can then be used and/or evaluated as a switching signal for an electrical load. It is furthermore preferable, for this purpose, for a second terminal to be arranged in the region of the operating element. A change in resistance can be detected for example by means of voltage tapping between the second terminal and one of the first terminals.
According to a particularly advantageous embodiment according to the invention, an electrical voltage, in particular a DC voltage, is applied between the at least one first terminal and the second terminal. As a result, for example the first terminals function as anodes and the second terminal functions as a cathode. The textile element according to the invention is then conductively connected between the anodes and the cathode.
The first terminal/terminals and/or the second terminal communicates/communicate with, or is/are coupled to, a controller, in particular by means of an amplifier. In this way, the signals can be generated by the actuation of the operating element, and the associated elongation or compression of the textile element, and used to control or actuate an electrical load. There are cases, however, in which it is not possible to use the direct signal, resulting therefrom, as a control signal, because the signal change may be too small. For this purpose, an amplifier can preferably be connected between the operating element and the controller. Amplifying the signals or signal changes caused thereby makes it possible to increase the dynamic range and to thus also improve the resolution of the operating device. In particular, thresholds can also be set, or can be set better, below which thresholds operation of the operating element does not result in control of the electrical load. This may be expedient for example in the event of short, accidental, and thus unintentional, contacting of the operating device according to the invention.
In the case of a configuration of this kind, it may in particular be possible for the controller to be designed to record the electrical resistance, the electrical voltage and/or the electrical current, and/or the change in said variables, in particular in the textile element between the region of the operating element, in particular the second terminal, and at least one first terminal.
According to a preferred embodiment of the present invention, the controller communicates with the electrical load and is designed to output, on the basis of the recorded value for the electrical resistance, the electrical voltage and/or the electrical current, and/or a change in said variables, a control signal for changing the operating state of the load communicating with the controller. In order to generate a control signal, it is thus possible to record both (differential) changes or also absolute measured values upon actuation of the operating element. What variables are recorded, and in what manner—relative or absolute—depends on the intended manner of actuation of the electrical load that is to be actuated.
In order to make the operating element according to the invention even less susceptible to operating errors, in particular those in which the finger of the vehicle occupant does not contact the operating element, it may be possible for the operating element to comprise a capacitive sensor. A capacitive sensor of this kind can then discern whether the contact with the operating element is made by the human hand or by another object. As a result, accidental contact by objects that enter the reach of the operating element cannot result in unintentional actuation of an electrical load.
The operating element according to the invention can be used in various manners within the motor vehicle passenger compartment assembly. For example, the motor vehicle passenger compartment assembly according to the invention may comprise a motor vehicle door and/or a motor vehicle seat and/or a console and/or a dashboard, on which the operating element is arranged.
The number and type of the electrical loads that can be addressed by the operating device according to the invention are at the discretion of a person skilled in the art. For example, it may be possible for the at least one electrical load to be selected from the following group: motor vehicle seat adjuster, window lifter, on-board computer, heater, air-conditioning system, entertainment system, light.
The invention will be explained in greater detail in the following, with reference to
Of the embodiment, shown by way of example in
It is also possible, however, to record the current flow between the terminals A1 and K, which current flow also changes as a result of the change in the resistance.
If, as is shown in
The processed measuring signal is forwarded from the amplifier 5 to a controller 6, via the control wires 560-564. The controller 6 then issues execution commands to the selected electrical loads, according to the input signals. Said selected electrical loads may for example be controllers, actuators, dimmers or other devices. An amplifier 5 is not essential, in the case of the operating device, if the measuring signal from the operating device 1 is sufficiently large or has a sufficient dynamic range for directly supplying the control unit 6. However, since the measuring signals are generally relatively weak, it is recommended to use an amplifier 5 for processing the measuring signals.
The signal acquisition and forwarding by the amplifier 5 and/to the controller 6 may be configured such that execution commands or control signals are output only when the control signal exceeds a specified threshold. As a result, short-term and/or inadvertent contact of the operating element 4 is not used for control purposes. It is also possible to equip the operating device 1, in particular the operating element 4 with a capacitive sensor, for example. Said sensor can ascertain whether the operating element 4 is displaced by an operator or by another object, and thus constitutes an additional safeguard for the operating device 1.
Instead of a door, it is also possible for an inside wall of a motor vehicle to be equipped with the operating device 1 according to the invention.
In a motor vehicle passenger compartment assembly 7 comprising a corresponding operating device 1, the positions shown in
Number | Date | Country | Kind |
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102018115461.5 | Jun 2018 | DE | national |