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EP3507813B1 - Bouton tournant pouvant etre commande - Google Patents

Bouton tournant pouvant etre commande Download PDF

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Publication number
EP3507813B1
EP3507813B1 EP17761244.7A EP17761244A EP3507813B1 EP 3507813 B1 EP3507813 B1 EP 3507813B1 EP 17761244 A EP17761244 A EP 17761244A EP 3507813 B1 EP3507813 B1 EP 3507813B1
Authority
EP
European Patent Office
Prior art keywords
rotary knob
controllable rotary
unit
display
information
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP17761244.7A
Other languages
German (de)
English (en)
Other versions
EP3507813A1 (fr
Inventor
Michael Sternad
Ernst Stöttinger
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zulu Og
Original Assignee
Zulu Og
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zulu Og filed Critical Zulu Og
Publication of EP3507813A1 publication Critical patent/EP3507813A1/fr
Application granted granted Critical
Publication of EP3507813B1 publication Critical patent/EP3507813B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01CRESISTORS
    • H01C10/00Adjustable resistors
    • H01C10/14Adjustable resistors adjustable by auxiliary driving means
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05GCONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
    • G05G1/00Controlling members, e.g. knobs or handles; Assemblies or arrangements thereof; Indicating position of controlling members
    • G05G1/08Controlling members for hand actuation by rotary movement, e.g. hand wheels
    • G05G1/10Details, e.g. of discs, knobs, wheels or handles
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05GCONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
    • G05G1/00Controlling members, e.g. knobs or handles; Assemblies or arrangements thereof; Indicating position of controlling members
    • G05G1/08Controlling members for hand actuation by rotary movement, e.g. hand wheels
    • G05G1/10Details, e.g. of discs, knobs, wheels or handles
    • G05G1/105Details, e.g. of discs, knobs, wheels or handles comprising arrangements for illumination
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05GCONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
    • G05G1/00Controlling members, e.g. knobs or handles; Assemblies or arrangements thereof; Indicating position of controlling members
    • G05G1/08Controlling members for hand actuation by rotary movement, e.g. hand wheels
    • G05G1/10Details, e.g. of discs, knobs, wheels or handles
    • G05G1/12Means for securing the members on rotatable spindles or the like
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H19/00Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand
    • H01H19/02Details
    • H01H19/10Movable parts; Contacts mounted thereon
    • H01H19/20Driving mechanisms allowing angular displacement of the operating part to be effective in either direction

Definitions

  • the invention relates to a controllable rotary knob, which has at least one base, at least one drive unit rigidly connected to the base, at least one transmission, and an operating part, the operating part being designed as a housing surrounding the drive unit and the transmission.
  • Such a controllable rotary knob is used, for example, as an attachment for rotary potentiometers or rotary switches.
  • These elements are electrical engineering components that can be adjusted by mechanical rotary movement. They have a shaft which, for example in the case of a rotary potentiometer, is combined with a potentiometer.
  • the electrical resistance of the potentiometer can be varied by mechanically rotating the rotary shaft, which allows use as a control element for electronic devices.
  • the document AT 510249 B1 discloses to solve this problem a controllable rotary controller which is placed on the shaft of a rotary knob and connected to the housing of the electronic device on which the rotary controller is used. This has a drive unit and a transmission, which allows the rotary control to be set automatically and remotely operated by the user without manual operation.
  • the Indian AT 510249 B1 disclosed rotary control offers the possibility of being used in a system of a large number of similar rotary controls and thus also making complex settings on devices.
  • the present object is achieved by the controllable rotary knob specified in claim 1.
  • the axially symmetrical structure of the drive unit and the coaxial arrangement of the drive unit and the control unit achieve the advantage that the space within the control unit designed as a housing is optimally used. This advantageously makes it possible to reduce the dimensions of the controllable rotary knob according to the invention in comparison with conventional controllable rotary knobs.
  • the connection to the rotating shaft is possible concentrically. Due to the axially symmetrical design of the drive unit, it is possible to design either a rotor or stator on the inside, close to the shaft of the rotary knob.
  • controllable rotary knob according to the invention to the shaft of a conventional rotary knob
  • a connecting element in the controllable rotary knob which, through a variable configuration, offers the possibility of accommodating shafts with different external dimensions and shapes. This is also coaxial with the drive unit.
  • the design of the gearbox as a planetary gearbox makes it possible to implement a variable ratio between the drive unit, control panel and connecting element.
  • This has the advantage that the shaft of the rotary knob can be controlled very sensitively either manually by turning the control panel or automatically by the drive unit by selecting the ratio.
  • a further translation of the transmission by translation of the planet gear is possible, the number of teeth of the planet gear on which the ring gear engages is not the same as where the sun gear engages.
  • the control unit which is designed as a housing, of the controllable rotary knob according to the invention is detachably connected to the transmission.
  • This construction advantageously enables the control panel to be removed and the control panel to be replaced by a replacement with, for example, an alternative color or surface finish or from an alternative material.
  • the Figure 1a shows a section through the controllable rotary knob 1 according to the invention according to a preferred embodiment variant with a base 2 which is rigidly connected to a drive unit 3, a transmission 4, which is shown in the preferred embodiment variant shown at the end of the drive unit 3 opposite the base 2 , an operating part 5, which is designed as a housing surrounding the other elements of the controllable rotary knob 1, and a connecting element 6, which is arranged in the central axis of the controllable rotary knob 1. It should be mentioned that the transmission 4 can also be arranged in the vicinity of the base 2.
  • the connecting element 6 has a shape which allows a rotary knob shaft 12, for example a rotary potentiometer, to be received by the connecting element 6.
  • a rotary knob shaft 12 for example a rotary potentiometer
  • Different configurations of the connecting element 6 advantageously enable the reception of shafts 12 with different shapes and dimensions, such as, for example, PTO shafts, shafts with grooves, etc.
  • the base 2 serves to fix the controllable rotary knob 1 on the surface of the device to be controlled. This can be done, for example, by means of gluing, screwing, riveting, suction cups or magnetically. For the person skilled in the art, further fastening options result from this exemplary reference. As a result, the controllable rotary knob 1 can be attached to various surfaces, even without the need for, for example, mounting holes.
  • the drive unit 3 shown is a hollow shaft DC motor, the axially symmetrical structure of which enables the drive unit 3 to be arranged coaxially around the connecting element 6.
  • a number of stepper motors, synchronous or asynchronous motors can be arranged at regular intervals around the central axis of the controllable rotary knob 1, the output shafts of which are connected to the transmission 4, which gives greater flexibility allowed in the selection of drive types.
  • the axially symmetrical structure of the drive unit 3 offers the advantage of making optimal use of the space available within the operating part 5, thereby reducing the size of the controllable rotary knob 1.
  • Figure 1b shows an exploded view of a controllable knob according to Figure 1a , a rotary switch 16 with the associated shaft 12 being shown by way of example, onto which the controllable rotary knob 1 according to the invention is placed.
  • the connecting element 6 (see Figure 1a ) is covered in this representation by the jacket of the control unit 5 and is therefore not shown.
  • the mechanical connection between the control unit 5 and the connecting element 6 (see Figure 1a and 1b ) is not shown for an easier overview.
  • Figure 2 shows a section of a controllable rotary knob 1 according to the invention in a schematic representation, a preferred embodiment of the controllable rotary knob 1 with a gear 4 in the form of a two-stage planetary gear and a hollow shaft stepper motor as the drive unit 3 is shown.
  • the use of a planetary gear allows a particularly space-saving accommodation of the gear 4 in the space available within the control unit 5.
  • the rotor of the drive unit 3 is connected to a first sun gear 7 in the embodiment variant shown. This is in engagement with a first planet gear 8.
  • the first planet gear 8 is in engagement with a ring gear 9, which is connected to the operating part 5, whereby the rotational movement of the drive element 3 is transmitted to the operating part 5.
  • the operating part 5 can be designed on its inside in the contact plane with the first planet gear 8 as a replacement for the ring gear 9.
  • These design options of the control unit 5 offer the advantage that it can be separated from the transmission 4 and can be replaced by alternative control units 5, for example with an alternative color or surface finish, or by control units 5 made of an alternative material.
  • a second planet gear 10 is in Figure 2 engages with the first planet gear 8 on the side of the first planet gear 8 opposite the ring gear 9 and transmits the rotational movement to a second sun gear 11, which is connected to the connecting element 6.
  • the function of the second sun gear 11 is ensured by a gear-shaped design of the connecting element 6 in the plane of the second planet gear 10.
  • a particularly fine control of the rotary movement of the rotary knob shaft 12 is made possible by the choice of the translation of the planetary gear, this being achieved when using a two-stage planetary gear as in Figure 2 shown, different ratios between the control unit 5, drive unit 3 and connecting element 6 or rotary knob shaft 12.
  • the function of the first sun gear 7 is taken over either by a direct connection of the output shafts to a first planet gear 8 assigned to each motor, or by means of a gear-shaped design of the output shafts of the DC or asynchronous motors.
  • a direct connection of the output shafts of the motors to the first planetary gear 8 is realized in an alternative embodiment variant, this flexibility of the connection options of the drive unit 3 with the transmission 4 making it possible to use the different drive types mentioned.
  • the output shafts can engage directly in the fixed planet gears or on a common sun gear.
  • the rigid connection of the transmission 4, the control unit 5, the drive unit 3 and the connecting element 6 advantageously creates the possibility of manually bridging an automated setting by means of the drive unit 3 at any time by the user.
  • the power supply to the controllable rotary knob 1 fails, this enables the functionality of a conventional rotary knob to be retained.
  • the planet gears of the transmission 4 have an axis of rotation 13 which is fixed with respect to the base 2, which simplifies the routing of cables for energy supply and data transmission within the controllable rotary knob 1.
  • Figure 3a shows an exploded view of a controllable rotary knob 1 according to the invention in an isometric view with base 2, drive unit 3, a gear 4 in the form of a planetary gear, removed control panel 5 and a display and input unit 14 with the associated display elements 15. Furthermore, a rotary switch 16 is also an example Rotary knob shaft 12 is shown, on which the controllable rotary knob 1 is placed.
  • the operating part 5 has a transparent surface 21 at the end opposite the base 2 in the assembled state. Directly adjacent to this surface 21 is the display and input unit 14 within the operating part 5, which in the embodiment variant shown contains a number of display elements 15 which are visible through the transparent surface 21.
  • the display and input unit 14 serves to control the display elements 15 on the basis of display information transmitted to the display and input unit 14.
  • the display and input unit 14 contains, in addition to or instead of, display elements 15, at least one input element which reacts to touches by the user, input information being generated by the display and input unit 14 when the user interacts with the input element.
  • the display element 15 can be designed, for example, as an LED ring, e-reader display, OLED display or TFT display. Furthermore, the display element 15 can comprise a loudspeaker.
  • the input unit can be, for example, a touch control panel, proximity sensor, button, a fingerprint sensor, a camera, a microphone, or a switch.
  • the display and input unit 14 can also be arranged in the vicinity of the base 2, as in FIG Figure 4a shown.
  • an additional input option is also created, and in addition an optical representation of the state, relevant information such as images, text or the like. or the setting of the controllable rotary knob 1 is created.
  • graphic patterns are displayed, which can be used for augmented reality applications.
  • the current function of the rotary knob 1 can be read out and determined, for example, by a camera.
  • Colored lighting elements can be used to provide a second color for outputting information in addition to the graphic patterns, which are displayed in one color, for example.
  • the display and input unit 14 can furthermore comprise a camera and / or a microphone as input elements for generating input information.
  • a camera and / or a microphone as input elements for generating input information.
  • the camera can be used to detect the approach of an object, such as the hand of a user.
  • the camera can be used to provide eye recognition and the microphone can be used as an input device for input information that is generated by voice recognition, wherein feedback can be output via the display element 15. This creates the possibility to control the rotary knob 1 according to the invention by voice commands without contact.
  • a position transmitter unit 20 which either with the control panel 5, the gear 4, the rotor of the drive unit 3 or the connecting element 6, which in Figure 3a is not shown, is connected. This is used to generate position information which represents the current position of the individual elements of the controllable rotary knob 1.
  • the position transmitter unit 20 is thus also used to detect changes in the position of the operating part 5, caused by the user rotating it.
  • the position transmitter unit 20 can be arranged both in the vicinity of the base 2 and on the end of the drive unit 3 opposite the base. The use of absolute and relative position detections is possible.
  • control unit 22 which controls the drive unit 3 on the basis of control information in order to bring about a change in position of the drive unit 3 and of the components of the controllable rotary knob 1 connected to it via the transmission 4.
  • controllable rotary knob 1 has a communication unit 23 and a control unit 24.
  • the control unit 24 is connected to the position transmitter unit 20, the control unit 22 of the display and input unit 14 and the communication unit 23 and is set up to provide position information from the position transmitter unit 20, input information from the display and input unit 14 and control information, display information, position information, and To receive input information from the communication unit 23, to generate control information and display information and to transmit control information to the control unit 22, display information to the display and input unit 14 and display information, position information, control information and input information to the communication unit 23.
  • the control unit can have storage and computing units. It is possible to mount the control unit 22, the communication unit 23 and the control unit 24 outside the rotary knob 1 and e.g. to be connected by cable with rotary knob 1.
  • the communication unit 23 is used to exchange control information, position information, display information and input information with the control unit 24 and for wireless or wired transmission of this to a data network.
  • controllable rotary knob 1 By equipping the controllable rotary knob 1 according to the invention with these aforementioned components, it is achieved that the controllable rotary knob 1 as a single controllable rotary knob 1 on a rotary knob or as part of a group of similar controllable rotary knobs 1 on, for example, a mixer or another device with many Knobs can be used. When used as part of a group of controllable rotary knobs 1, complex control and setting tasks can be carried out by controllable rotary knobs 1 according to the invention by exchanging the aforementioned data.
  • control unit 22, the communication unit 23 and the control unit 24 are located in FIG Figure 3a Embodiment variant shown with the position transmitter unit 20 together on a board below the drive unit 3.
  • Figure 3b shows a section through the central plane of the in Figure 3a illustrated controllable rotary knob.
  • the connecting element 6 is also shown, which in Figure 3a is covered by the control panel 5.
  • Figure 4a shows an alternative embodiment of the controllable rotary knob 1, compared to Figure 3a a further display and input unit 14 with display elements 15 is arranged in the vicinity of the base 2 of the controllable rotary knob 1, which are visible from the outside through corresponding recesses in the operating part 5.
  • Figure 4b shows a section through the central plane of the in Figure 4a illustrated controllable rotary knob.
  • the connecting element 6 is also shown, which in Figure 4a is covered by the control panel 5.
  • the mechanical connection between the control unit 5 and the connecting element 6 is not shown for an easier overview.
  • FIG 5a shows a further alternative embodiment of the controllable rotary knob 1, compared to Figure 3a such as Figure 4a an alternative form of the control unit 5 is used to accommodate a display and input unit 14, which is designed, for example, as a touch-sensitive OLED display, e-reader display, TFT display, touch control panel and the like.
  • a display and input unit 14 which is designed, for example, as a touch-sensitive OLED display, e-reader display, TFT display, touch control panel and the like.
  • Figure 5b shows a section through the central plane of the in Figure 5a illustrated controllable rotary knob.
  • the connecting element 6 is also shown, which in Figure 5a is covered by the control panel 5.
  • the mechanical connection between the control unit 5 and the connecting element 6 is not shown for an easier overview.
  • Figure 6 shows a schematic view of the use of a plurality of controllable rotary knobs 1 according to the invention on one or more devices, each of the controllable rotary knobs 1 exchanging control information, position information, display information and input information with a common interface 17.
  • interfaces 17 are connected by means of a network connection to a network hub 18, which in turn forwards the data of the network from controllable rotary knobs 1 to a data network, such as the Internet, or is connected to a terminal 19 by means of, for example, Bluetooth or WLAN or a wired data connection.
  • a data network such as the Internet
  • a terminal 19 by means of, for example, Bluetooth or WLAN or a wired data connection.
  • This can either be a desktop computer, laptop, or a mobile device such as a cell phone, tablet, etc.
  • a mobile device such as a cell phone, tablet, etc.
  • each controllable rotary knob 1 can be connected directly by means of a wired or wireless connection to a network hub 18 and subsequently to a data network, such as the Internet.
  • a network hub 18 For a completely wireless connection, each controllable rotary knob 1 must contain an energy storage device, such as an accumulator.
  • the control unit 24, which functions as a control loop, is either implemented within each controllable rotary knob 1 of the group or, in alternative design variants, is outsourced to the network hub 18 or the interface 17.
  • controllable rotary knobs 1 it is possible to implement communication between the controllable rotary knobs 1 by means of a network connection in accordance with one of the aforementioned design variants. As a result, they can use the control units 24 to react dynamically to user inputs on individual controllable rotary knobs 1. Furthermore, a daisy chain cable connection for power supply or for communication under the individual rotary knobs 1 can also be implemented.
  • the communication units 23 of the controllable rotary regulators 1 according to the invention are set up to independently set up a network according to the applicable standard, such as LTEm, BLE, Bluetooth, 6LoWPAN, etc. to be set up, network hub 18 or interface 17 being omitted.
  • the applicable standard such as LTEm, BLE, Bluetooth, 6LoWPAN, etc.
  • the rotary knob 1 can contain both a cable connection for the power supply and an antenna for magnetic resonance charging or power supply.
  • the energy storage device can also be charged by means of recuperation, in that a rotary movement exerted by the user is used on the rotary knob 1 in order to generate electricity by means of the drive unit 3.
  • This recuperation function can, for example, only be activated when the rotary knob 1 is turned by the user.
  • Other methods of energy generation include energy harvesting methods using sound, temperature or directional electromagnetic waves.
  • Controllable rotary knobs 1 can also be used as an input device independently of an existing rotary knob according to one embodiment variant.
  • the connection between the controllable rotary knob 1 and a rotary knob shaft 12 is omitted here.
  • Changes in position of the controllable rotary knob 1 are registered in this embodiment variant analogously to the aforementioned embodiment variants via a position transmitter unit 20, and entries by the display and input unit 14 are registered.
  • An application of this embodiment variant within a group of controllable rotary knobs 1 can be analogous to Figure 6 or similar to the last-mentioned variant of the network connection.
  • a central drive unit 3 (see Figure 2 ) are used, which can be arranged axially, the connecting element 6 (see Figure 2 ) is omitted since no rotary shaft is inserted.
  • the rotary knob 1 according to the invention can also have an energy storage device for which, due to the lack of a connecting element 6, more space is available within the rotary knob 1.
  • the energy storage device can be provided in the form of a battery or rechargeable, for example in the form of an accumulator.
  • the cable connections can, for example, be designed as pogo pin connections.
  • the rotary knob 1 according to the invention in the embodiment variants with or without a connecting element 6 can have an RFID antenna, which for example in FIG or is arranged behind the transparent surface 21, or in the base 2.
  • the energy storage unit can be charged wirelessly.
  • Such a design of the rotary knob 1 is particularly advantageous for applications in the area of clean rooms or applications in food processing, medicine or pharmacy.
  • a rotary knob on a device is replaced by a controllable rotary knob 1 according to the invention, its position on the device can be assigned in a software application, which is called up on the terminal 19, and a previously stored setting of the controllable rotary knob 1 can be restored if desired. It is also possible to carry out ongoing manipulation in real time and monitor the rotary knobs, even from a remote location. By combining several controllable rotary knobs 1 according to the invention in a network, complex settings can thus also be stored and called up.
  • Controllable rotary knobs 1 offer the possibility of being used on rotary knobs both with and without a mechanical stop, since a zero position can be determined by means of the position transmitter unit 20.
  • a further position transmitter unit 20 can also be provided in order to increase the accuracy and safety of the position determination.
  • This variant is particularly advantageous for applications with high safety requirements (personal safety, machine safety).
  • This further position transmitter unit 20 could optionally also be a galvanically separate unit (potentiometer, rotary switch ...) which can be made available to the outside via the control lines and is designed in such a way that it does not enlarge the rotary controller 1 and the assembly on smooth, flat surfaces are not hindered.
  • short (torque) pulses from the drive unit 3 can generate tactile feedback for a user, for example to indicate the zero position or the stop.
  • the software-controlled regulation of individual controllable rotary knobs 1 of a network offers the possibility of controlling several controllable rotary knobs 1 with one another to set a linear or nonlinear dependency.
  • the movement of a controllable rotary knob 1 by a user results in any predefined movement of one or more further controllable rotary knobs 1 of the network.
  • controllable rotary knobs 1 can be provided with a smoothing or the definition of (pending) limit values, so that, for example, distortions due to level changes are minimized.
  • the inventive design of the rotary knob 1 also enables two rotary knobs 1 or more, for example by means of suction cups on the base 2, to be arranged one above the other along a common axis of rotation. As a result, coaxial rotary knobs 1 can be implemented, and more rotary knobs 1 can be attached to a limited base area.
  • the rotary knob 1 comprises the rotary switch 16 with the rotary knob shaft 12, the connecting element 6 being connected to the rotary knob shaft 12.
  • the connecting element 6 can be connected to the control element 5 directly or via the planetary gear.
  • the rotary switch 16 with the rotary knob shaft 12 is preferably arranged above the base 2. This has the advantage that the rotary knob 1 can completely replace a conventional rotary switch 16. By arranging the rotary switch 16 with the rotary knob shaft 12 above the base 2, a small overall height of the rotary knob 1 can also be realized.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Rotary Switch, Piano Key Switch, And Lever Switch (AREA)
  • Mechanical Control Devices (AREA)

Claims (16)

  1. Bouton tournant pouvant être commandé (1), qui présente au moins un socle (2), au moins une unité d'entraînement (3) rigidement reliée au socle (2), au moins une transmission (4) ainsi qu'une partie de commande (5), dans lequel la partie de commande (5) est réalisée sous la forme d'un boîtier entourant l'unité d'entraînement (3) et la transmission (4),
    caractérisé en ce que la transmission (4) établit une liaison entre l'unité d'entraînement (3) et la partie de commande (5), dans lequel l'unité d'entraînement (3) présente une structure à symétrie axiale et peut être disposée de façon concentrique autour d'un arbre de bouton tournant (12), dans lequel l'unité d'entraînement (3) et la partie de commande (5) sont disposées de façon coaxiale l'une à l'autre.
  2. Bouton tournant pouvant être commandé (1) selon la revendication 1, caractérisé en ce que l'unité d'entraînement (3) en est une choisie dans le groupe suivant: moteur CC à arbre creux, un nombre de moteurs pas à pas, un nombre de moteurs synchrones ou asynchrones.
  3. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la partie de commande (5) est réalisée de façon séparable du bouton tournant pouvant être commandé (1).
  4. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la transmission (4) est un engrenage planétaire, qui présente au moins un satellite (8, 10).
  5. Bouton tournant pouvant être commandé (1) selon la revendication 4, caractérisé en ce que ledit au moins un satellite (8, 10) présente un axe de rotation fixe (13) par rapport au socle (2).
  6. Bouton tournant pouvant être commandé (1) selon une revendication 4 ou 5, caractérisé en ce que l'unité d'entraînement (3) présente au moins un rotor, qui est relié audit au moins un satellite (8) au moyen d'un arbre de sortie, qui peut être réalisé au moins localement sous forme de roue dentée, ou au moyen d'une roue solaire (7).
  7. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications 4 à 6, caractérisé en ce que l'engrenage planétaire présente une couronne dentée (9) reliée à la partie de commande (5), avec laquelle ledit au moins un satellite (8) est en prise.
  8. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications 4 à 7, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente un élément de liaison (6), et l'engrenage planétaire (4) présente un ou deux ou plusieurs satellite(s) (8, 10), qui sont en prise l'un avec l'autre, et au moins un satellite (10) est en prise avec l'élément de liaison (6) au moyen d'une roue solaire (11) reliée à l'élément de liaison (6) ou au moyen d'une configuration en forme de roue dentée de l'élément de liaison (6).
  9. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications 4 à 7, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente un élément de liaison (6), qui est relié directement à la partie de commande (5).
  10. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente une unité d'indication de position (20), qui est reliée à un élément parmi la partie de commande (5), ledit au moins un rotor de l'unité d'entraînement (3) et la transmission (4), et qui est conçue pour produire une information de position.
  11. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente une unité de commande (22), qui est conçue pour recevoir une information de commande, la traiter et pour commander l'unité d'entraînement (3) sur la base de l'information de commande.
  12. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que le bouton tournant pouvant être commandé présente au moins une unité d'affichage et/ou d'entrée (14), qui comporte au moins un élément d'affichage (15) et/ou un élément d'entrée, et qui est conçue pour traiter l'information d'affichage et pour commander ledit au moins un élément d'affichage (15) sur la base de l'information d'affichage, ainsi que pour produire une information d'entrée.
  13. Bouton tournant pouvant être commandé (1) selon les revendications 10 à 12, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente une unité de communication (23) ainsi qu'une unité de contrôle (24), dans lequel l'unité de contrôle (24) est reliée à l'unité d'indication de position (20), à l'unité de commande (22), à l'unité d'affichage et d'entrée (14) ainsi qu'à l'unité de communication (23), et est conçue pour recevoir une information de position de l'unité d'indication de position (20), une information d'entrée de l'unité d'affichage et d'entrée (14), et une information de commande, une information d'affichage, une information de position, ainsi qu'une information d'entrée de l'unité de communication (23),
    pour produire une information de commande et une information d'affichage,
    et pour transmettre une information de commande à l'unité de commande, une information d'affichage à l'unité d'affichage et d'entrée (14) ainsi qu'une information d'affichage, une information de position, une information de commande et une information d'entrée à l'unité de communication (23),
    dans lequel l'unité de communication (23) est conçue pour l'échange d'informations de commande, d'informations de position, d'informations d'affichage et d'informations d'entrée avec l'unité de contrôle (24), ainsi que pour la communication sans fil ou par fil d'informations de commande, d'informations de position, d'informations d'affichage et d'informations d'entrée avec un réseau de données.
  14. Bouton tournant pouvant être commandé (1) selon une revendication 8 ou 9, caractérisé en ce que le bouton tournant pouvant être commandé (1) présente une unité d'indication de position (20), qui est reliée à l'élément de liaison (6).
  15. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications 12 à 14, caractérisé en ce que l'élément d'affichage (15) est un élément parmi un anneau de LED, un écran à OLED, un écran eReader ou un écran TFT.
  16. Bouton tournant pouvant être commandé (1) selon l'une quelconque des revendications 12 à 15, caractérisé en ce que l'élément d'entrée est un élément parmi un écran de commande tactile, un détecteur de proximité, un clavier ou un interrupteur.
EP17761244.7A 2016-09-02 2017-09-01 Bouton tournant pouvant etre commande Active EP3507813B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP16187009.2A EP3291248A1 (fr) 2016-09-02 2016-09-02 Bouton tournant pouvant etre commande
PCT/EP2017/071946 WO2018041991A1 (fr) 2016-09-02 2017-09-01 Bouton rotatif de commande

Publications (2)

Publication Number Publication Date
EP3507813A1 EP3507813A1 (fr) 2019-07-10
EP3507813B1 true EP3507813B1 (fr) 2020-04-08

Family

ID=56925999

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Application Number Title Priority Date Filing Date
EP16187009.2A Withdrawn EP3291248A1 (fr) 2016-09-02 2016-09-02 Bouton tournant pouvant etre commande
EP17761244.7A Active EP3507813B1 (fr) 2016-09-02 2017-09-01 Bouton tournant pouvant etre commande

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Application Number Title Priority Date Filing Date
EP16187009.2A Withdrawn EP3291248A1 (fr) 2016-09-02 2016-09-02 Bouton tournant pouvant etre commande

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US (1) US10460860B2 (fr)
EP (2) EP3291248A1 (fr)
WO (1) WO2018041991A1 (fr)

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SE543016C2 (en) * 2017-09-14 2020-09-29 Zound Industries Int Ab A detachable knob for controlling a function of a loudspeaker
CN108549458A (zh) * 2018-04-28 2018-09-18 系新电子技术(苏州)有限公司 一种旋钮
WO2020032863A1 (fr) * 2018-08-06 2020-02-13 Inter Ikea Systems B.V. Dispositif de commande pour système d'ambiance intérieure
EP3671401A1 (fr) * 2018-10-11 2020-06-24 Defond Electech Co., Ltd Un système de contrôle à utiliser pour contrôler le fonctionnement d'un appareil électrique
CN209215975U (zh) * 2019-02-02 2019-08-06 迪尔阿扣基金两合公司 包括旋钮装置的电器设备
CN115705077A (zh) * 2021-08-17 2023-02-17 台达电子工业股份有限公司 电子装置
CN113849034A (zh) * 2021-09-26 2021-12-28 九牧厨卫股份有限公司 给水器具出水控制系统及给水器具

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US3754106A (en) * 1972-04-03 1973-08-21 Donald W Mac Panel display switch
JP4636546B2 (ja) * 2005-08-02 2011-02-23 株式会社東海理化電機製作所 車両用の空調スイッチ装置
JP4636545B2 (ja) * 2005-08-02 2011-02-23 株式会社東海理化電機製作所 車両用の空調スイッチ装置
JP4687443B2 (ja) * 2005-12-21 2011-05-25 株式会社デンソー ダイアル式操作装置
US8350731B2 (en) * 2009-06-22 2013-01-08 Alps Electric Co., Ltd. Complex-operation input device
AT510249B1 (de) * 2010-07-27 2015-05-15 M Ad Technics Michael Sternad Steuerbarer drehregler
PL2544068T3 (pl) * 2011-07-07 2019-01-31 Danfoss A/S Kontrolowane elementy zaworowe do wymiennika ciepła
CN204046795U (zh) * 2014-04-17 2014-12-24 许敏杰 无线遥控音量调节器
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Also Published As

Publication number Publication date
US10460860B2 (en) 2019-10-29
US20190198202A1 (en) 2019-06-27
EP3507813A1 (fr) 2019-07-10
WO2018041991A1 (fr) 2018-03-08
EP3291248A1 (fr) 2018-03-07

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