WO2013128034A1 - Bedienungseinheit eines elektromotorischen möbelantriebs, elektromotorischer möbelantrieb, und ein entsprechendes möbel - Google Patents
Bedienungseinheit eines elektromotorischen möbelantriebs, elektromotorischer möbelantrieb, und ein entsprechendes möbel Download PDFInfo
- Publication number
- WO2013128034A1 WO2013128034A1 PCT/EP2013/054288 EP2013054288W WO2013128034A1 WO 2013128034 A1 WO2013128034 A1 WO 2013128034A1 EP 2013054288 W EP2013054288 W EP 2013054288W WO 2013128034 A1 WO2013128034 A1 WO 2013128034A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- operating
- unit
- operating unit
- switching
- furniture
- 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.)
- Ceased
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Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P7/00—Arrangements for regulating or controlling the speed or torque of electric DC motors
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P7/00—Arrangements for regulating or controlling the speed or torque of electric DC motors
- H02P7/06—Arrangements for regulating or controlling the speed or torque of electric DC motors for regulating or controlling an individual DC dynamo-electric motor by varying field or armature current
- H02P7/08—Arrangements for regulating or controlling the speed or torque of electric DC motors for regulating or controlling an individual DC dynamo-electric motor by varying field or armature current by manual control without auxiliary power
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C20/00—Head-, foot- or like rests for beds, sofas or the like
- A47C20/04—Head-, foot- or like rests for beds, sofas or the like with adjustable inclination
- A47C20/041—Head-, foot- or like rests for beds, sofas or the like with adjustable inclination by electric motors
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P7/00—Arrangements for regulating or controlling the speed or torque of electric DC motors
- H02P7/03—Arrangements for regulating or controlling the speed or torque of electric DC motors for controlling the direction of rotation of DC motors
Definitions
- the invention relates to an operating unit of an electromotive furniture drive according to the preamble of claim 1.
- the invention also relates to an electromotive furniture drive.
- the invention relates to a corresponding furniture.
- Such control units for the control and operation of electric motor Versteilantrieben a piece of furniture usually have a switch on the type of a main switch.
- the main switch When the main switch is triggered or actuated, the operating states of the operating unit or a control unit connected to the operating unit are switched over.
- a process of the respective electromotive adjustment drive is carried out by actuating a switch or a button of the operating unit. In the operating state off no process of the respective electromotive Versteilantriebs.
- An electromotive furniture drive comprises at least one electric motor, which is often designed as a brushed DC motor.
- the engine is followed by a transmission, usually a DC gear motor is used.
- the electromotive furniture drive comprises an operating unit and a supply device.
- the control unit may be designed wired or wireless and has a number of pushbuttons, when actuated via the signal transmission, a control signal for electrical control of the respective motor in the respective direction of rotation.
- Furniture with several support surfaces for supporting a person in the furniture are, for example, as beds, sofas, armchairs and the like. widely used and known. They have at least one movable support surface, which is mounted movably relative to at least one further support surface.
- the movable support surface is, for example, a back part or / and a leg part which is adjustable with at least one electromotive furniture drive.
- the movable support surface can be pivoted, displaceable or both by means of a suitable fitting.
- a basic element for example a bed frame, is height-adjustable with one or more furniture drives.
- the operating unit has a button for switching on the system, wherein the operating state is given operation.
- the operating state of operation here controls the control unit.
- the arrangements in the prior art have an increased assembly costs, since a control unit is provided, which also has to be mounted in the furniture.
- the object of the present invention is to provide an improved operating unit.
- Another object is to provide an improved electric motor drive. Yet another object is to provide improved furniture.
- the further object is achieved by an electric motor drive with the features of claim 14.
- the still further object is achieved by a furniture with the features of claim 15.
- An operating unit is provided which is provided with a release switching device for switching over operating states of the operating unit.
- An operating unit according to the invention of an electromotive furniture drive with a supply device and at least one adjusting drive has a housing, operating elements for operating the at least one adjusting drive of the electromotive furniture drive to be assigned, and a service line, the operating elements having changeover contacts which are used for directly switching a motor current of the motor to be assigned at least one Versteilantriebs are formed.
- the operating unit has an enabling switching device with a release switching element which, for switching over an operating state of the operating unit from an operating state "off", in which previously determinable operating elements have no function when actuated, into an operating state "operating" in which the previously determinable operating elements when actuated, causing the at least one Versteilantriebs to be assigned to operate, is formed.
- the so-trained wired control unit can be designed to be pluggable, there are no separate accessories required.
- Another advantage is that previously operating elements can be specified, which can be acted upon with this operating state switching. So functions that always have to be present can be separated. This can be, for example, functions that are not electromotive adjustment functions and thus switch, for example, light or lighting. In rare cases and special variants of a piece of furniture, however, it can also be certain electromotive adjustment functions, which must always be operable.
- the release switching device has the release switching element with an actuating button and at least one switching contact, a power switching unit with at least one power switching contact in at least one supply line of the operating elements, and a control block for controlling the power switching unit.
- the power switching unit Upon actuation of the enabling switching element, the power switching unit is turned on and off by the control block.
- the performance Switching contact can be arranged in one or as a double contact in both supply lines.
- the release switching element is designed as a button.
- a common, simple contact element e.g. a closer, to be used.
- the control block has a turn-off delay with a pre-definable time period as a time delay.
- the control block switches off the power switching element with a delay. It is irrelevant how long the release switch element and / or a control element are actuated. This allows a security function.
- the pre-definable period of time may e.g. 30 s. It is also possible that, after a last actuation of a control element, the control block is released after a pre-definable period of time, e.g. 10 s, the power switching element turns off.
- the switch-off delay of the control block can be designed so that it is activated upon actuation of the release switch element. This makes a simple operation possible.
- the turn-off delay of the control block may be configured to be independent of an actuation of a control element. This means that the switch-off delay is activated by the enable switch element when switching to the operating state "Operation" and is automatically executed without any further influence.
- the switch-off delay of the control block is designed so that it can be reset in the operating state "off” by an operation of a control element independently and in the operating state "operation” upon actuation of a control element.
- the switch-off delay is reset to its original position and the delay time begins to run again in a first variant. This is advantageous if after switching on the release switching device several adjustment operations are to be made and the delay time is not sufficient. A reset takes place in this first variant but only at the beginning of pressing, with a longer press of the relevant operating element (eg, even at terminals of the operating element) is no reset, the delay time is then uninfluenced. This ensures automatic switching to the "off" operating state.
- the delay time begins again to run again when the operation of the relevant control element is completed.
- the power switching unit is a relay with the at least one power switching contact.
- Such a relay is inexpensive as an electromechanical switch and available in high quality.
- An alternative relay has a predetermined contact noise and is to be regarded as particularly advantageous because it audibly or alternatively haptically signals the user switching.
- the power switching unit may be a semiconductor switch, which offers special space advantage within the operating unit.
- the soupschaltein- unit comprises a relay with the at least one power switching contact and at least one semiconductor switch, which is connected in series with the power switching contact.
- the release switching element may be formed with the switching contact as a motion switching element, vibration switching element, touch-sensitive switching element, or the like. This means that activation of the control block of the release switching device can take place when the operating unit is detected by a user.
- the operating unit has at least one signaling element for displaying the operating state of the operating unit. This can e.g. visually indicate the respective operating status by means of different colors or / and blinking.
- a haptic message for example, have a vibration signal transmitter, which can be designed as a vibration motor.
- the signaling element for indicating the operating state of the operating unit can be arranged in an actuating button of the release switching element. This gives a clear function assignment.
- the controls may also include additional controls, eg for heating, massagers and the like.
- the release switch element is assigned a relay (an electromechanical control switch) with a load switch contact: When the enable switch is pressed, the relay energises to switch on the operating state "operation.”
- the control block With its switch-off delay, a timer, The relay shuts off or shuts off the timer after a predetermined time or after a predetermined time when a control element is not actuated, and shuts off the power supply the operating elements, whereby the operating state "Off" is reached again.
- Each operating element has changeover contacts, which are connected directly to the terminals of the respective electric motor during operation of the respective electric motor, which is also referred to as a direct circuit. Each operating element thus switches directly with the associated changeover contact the respective electric motor, so that according to this embodiment and advantageously a control unit can be dispensed with.
- An electromotive furniture drive for adjusting a movable part of a piece of furniture by means of an output member, comprising a) at least one adjusting drive, each having at least one electric motor, a speed reduction gear coupled therewith, with which the output member is drivingly coupled and linearly movable and / or rotatably movable , b) at least one supply device, and c) at least one operating unit, has the above-described operating unit.
- a furniture according to the invention comprising a) having at least one base element for coupling the furniture to a place of installation, and b) having at least one support element, which is arranged to be movable relative to the support element or relative to a further support element or relative to the base element C) wherein the at least one movably arranged part is designed to be displaceable and / or pivotable, d) the furniture has at least one electromechanical furniture drive, e) the at least one movably arranged part being coupled to the at least one electromechanical furniture drive. pelt is, has the electromotive furniture drive described above.
- Figure 1 is a schematic perspective view of an exemplary furniture according to the invention
- FIG. 2 shows a schematic perspective view of a control unit according to the invention
- Figure 2a is an enlarged perspective view of a release switching element
- FIG. 3 is a schematic block diagram of an embodiment of an electromotive furniture drive according to the invention.
- FIG. 4 shows a schematic circuit diagram of part of the exemplary embodiment according to FIG. 3.
- FIG. 1 shows an exemplary embodiment of a piece of furniture 1 according to the invention.
- FIG. 2 shows a schematic perspective view of an operating unit 10 according to the invention.
- FIG. 2 a shows an enlarged perspective view of a release switching element 16.
- 3 shows a schematic block diagram of an exemplary embodiment of an electromotive furniture drive 100 according to the invention.
- the furniture 1 is shown here as a bed and has at least one support element 3 for receiving objects, a padding, a mattress M and / or a person.
- the support element 3 is e.g. as a slatted frame, as a flat support surface or the like and formed on a base member 2, here a frame with feet, for coupling the furniture 1 at a place of installation, e.g. Floor, attached.
- the support element 3 here has a back part 4 and a leg part 5, which are arranged movably relative to the support element 3 and / or a further support element or relative to the base element 2.
- This movable arrangement is realized here by means of a so-called motion fitting 6.
- the movement is designed to be displaceable and / or pivotable.
- the furniture 1 also has an electromotive furniture drive 100, which here comprises two adjustment drives 7 and 8, a supply device 9 and a control unit 10.
- the movably mounted back part 4 and the leg part 5 are each coupled to a final drive 7, 8.
- the back part 4 is connected to the adjustment drive 7. pelt.
- For movement or adjustment of the leg part 5 of the adjustment drive 8 is provided.
- the Versteilantriebe 7, 8 are designed here as linear drives.
- the linear drives have one or a number of electric motors, wherein each motor is followed by a Drehbaumreduziergetriebe with at least one gear stage.
- the output element 19 of the respective adjustment drive 7, 8 communicates with the respective furniture component (back part 4, leg part 5) or alternatively with a component connected to the base frame 2, so that in an operation of the electric motor of the respective adjustment drive 7, 8, the movable furniture components 4, 5 relative to each other or relative to the base frame 2 are adjusted.
- the Versteilantriebe 7, 8 are each connected to a drive line 7a, 8a to a terminal unit 1 1, which is connected to the supply device 9 via a supply line 9e and with the operating unit 10 via a control line 18, as shown in Fig. 3 is.
- the drive lines 7a, 8a and the service line 18 are usually designed on the connection unit 11 as pluggable cable connections.
- the supply device 9 here has an electrical voltage source 9a which supplies the electrical energy, e.g. from the network, for the Versteilantriebe 7, 8 provides.
- the supply device 9 is connectable in this example via a power cable 9b with a power plug 9c with a network connection.
- the power plug 9c leads via the power cord 9b the input-side mains voltage to the electrical voltage source 9a of the supply device 9.
- the voltage source 9a here is a transformer which outputs a secondary voltage on the secondary side, by means of a sieve block 9d with rectifier and filter capacitor (s) in the form a DC voltage via the supply line 9e to the terminal unit 1 1 is forwarded.
- the voltage source 9a can also be a rechargeable battery. In this case, the sieve chain can be omitted.
- a charging unit for charging the accumulator can be integrated in the supply device 9 and connected to the mains via the mains cable 9b with the mains plug 9c. Alternatively, the charging unit is preceded by a network-dependent power supply not shown in detail with mains input and secondary-side low-voltage output, which feeds the charging voltage in the form of a DC voltage of the voltage source 9a via a line.
- the supply device 9 and the connection unit 1 1 can be integrated together. It is also possible for the supply device 9 and the connection unit 1 1 to be located together on one of the adjustment drives 7, 8.
- the furniture 1 is further assigned to the operating unit 10, with its operating elements 12, 13 (see FIG. 2), the Versteilantriebe 7, 8 via respective changeover contacts S1, S2 (see FIG. 4) are controllable.
- the operating unit 10 in Fig. 1 is provided as shown in FIG. 2 with the control line for a wired transmission.
- the service line 18 is connectable to the terminal unit 1 1, e.g. pluggable.
- the free end of the service line 18 is provided with a plug, not shown, which is usually plugged into a socket of the connection unit 1 1. This is not explicitly shown, but easy to imagine.
- the operating unit 10 has a housing 10a and is provided with operating elements 12, 13, which are provided for the operation of a respective Versteilantriebs 7, 8.
- the operating elements 12, 13 are e.g. as a button, each with a changeover S1, S2 (see FIG. 4) executed.
- S1, S2 see FIG. 4
- the operating unit 10 is shown for six Versteilantriebe, but usual are one or two Verstell drives 7, 8 in this configuration.
- respective changeover contacts S1, S2 directly switch the respective motor M of the associated adjusting drive 7, 8, without any additional switching element, such as a motor relay or semiconductor switch, being actuated.
- a signaling element 14 for example a light-emitting diode.
- the reporting element 14 is used, for example, to display function or feedback, error display, etc.
- Additional control elements 15 and 17, which may consist of several control elements and / or a combination control element, are provided for example for additional functions, such as reading lamp and / or heating.
- the additional controls 15 and 17 may be designed as a button and / or switch.
- the operating unit 10 has a release switching element 16 of a release switching device 20 (see FIG. 4).
- the release switching element 16 By means of the release switching element 16, the release switching device 20 is controlled, which switches on and off a power supply to the operating unit 10. A detailed description will be given below in connection with FIG. 4.
- the release switching element 16 here has an actuating button 16a, which is shown enlarged in FIG. 2a in an exemplary embodiment.
- the operation knob 16a is circular, with two side bars 16b radially extending to the left and right from the periphery of the operation knob 16a integrally formed on the operation knob 16a.
- a symbol is molded or / and molded on the surface of the operating knob 16a.
- the particular shape of the actuating button 16a of the release switching element 16 is used to distinguish it from the other control elements 12, 13 and additional control elements 15, 17.
- alternative embodiments of an actuating button 16a come into question. It is important that the actuating button 16a with its geometry or with its inscription or with its description or generally speaking with its appearance differs from the other operating elements 12, 13 and lifts.
- the actuating button 16a of the release switching element 16 is arranged in the upper side of the housing 10a of the operating unit 10 in a recess corresponding to the outer contour of the actuating button 16a.
- the Versteilantriebe 7, 8 may be formed as a brushed DC motors or have them.
- Fig. 4 is a schematic diagram of a portion of the embodiment of FIG. 3 is shown.
- the Versteilantrieb 7, 8, the supply device 9, the control unit 10 and the terminal unit 1 1 are each marked with dash-dotted rectangles.
- the operating unit 10 has the release switching device 20, which is framed by dashed lines, on.
- the release switching device 20 comprises the release switch element 16 with at least one switch contact S3 (here designed as a make contact, of course a break contact is possible) with terminals 3 and 4, a power switch unit 21 with at least one power switch contact S4 (here designed as make contact, of course) an opener possible) with terminals 3 and 4, and a control block 22nd
- the electromotive drive 100 is shown in this example only with an adjusting drive 7, 8, wherein further Versteilantriebe 7, 8 are connected in the same way, which is easy to imagine.
- the Versteilantrieb 7, 8 has a motor M in the form of a DC motor.
- the supply device 9 is shown here only with the voltage source 9a with the poles + and - the voltage source 9a. These poles + and - are electrically connected to supply terminals A + and A- of the terminal unit 1 1.
- the motor M of the Versteilantriebs 7, 8 is connected to motor terminals A1 and A2 to the connection unit 1 1.
- the motor connections A1 and A2 as well as the supply connections A + and A- of the connection unit are here connected to corresponding connections of the operating unit 10 via a common, multi-pole plug connection.
- the motor terminal A1 is connected to a common terminal 1 of a change-over contact S1 of the operating element 12.
- the motor connection A2 is connected to the common connection 1 of the changeover contact S2 of the control element 13.
- An opener terminal 2 of the changeover contact S1 is connected to the normally closed terminal 2 of the changeover contact S2 and to the supply terminal A-.
- This line is also referred to as minus line.
- a make contact 3 of the changeover contact S1 is connected to the make contact 3 of the changeover contact S2 and to a make contact 3 of the power switch contact S4 of the power switching unit 21 of the enable switch 20.
- the power switch contact S4 serves to connect this line to the supply terminal A +.
- This line from the supply terminal A + to the normally open terminals 3 of the changeover S1, S2 is also referred to as positive line
- UmschaltMACe S1, S2 of the control elements 12, 13 the motor M via the closed breaker 1/2 of the changeover S1 , S2 and their common connection shorted. This is also called “regenerative braking" of the motor M.
- NO contact 3 is connected to the NO connection 4.
- the associated motor terminal A1 or A2 is then connected via this described connection to the supply terminal A + of the voltage source 9a of the supply device 9, and the motor M rotates in the desired direction of rotation for adjusting the associated furniture part.
- the motor current flows from the voltage source 9a directly through the switching contacts S1, S2 of the associated operating elements 12, 13 to the motor M and back.
- the power switching unit 21 is designed here as a relay with the power switching contact S4.
- One terminal of the power switching unit 21 (here: relay coil) is connected to the supply terminal A- of the voltage source.
- the other terminal of the power switching unit 21 is connected to a terminal d of a control block 22.
- the control block 22 in turn has supply voltage terminals a and b, where a is constantly connected to the supply terminal A and b with the supply terminal A + of the voltage source 9a.
- a control terminal c of the control block 22 is connected to a terminal 3 of the switching contact S3 of the release switching element 16, wherein its terminal 4 is connected to the supply terminal A + of the voltage source 9a.
- the switching contact S3 is a button.
- the control block 22 then connects its output terminal d to its terminal a (positive supply terminal A +), whereby the power switching unit 21 is activated and closes its power switching contact (3/4) S4.
- the closed power switching contact (3/4) S4 causes in this way a power supply of the operating unit 10 by the positive supply terminal A + of the voltage source 9a with the changeover contacts (terminals 3) is connected.
- This operating state of the operating unit 10 is referred to as "operation.”
- the operating state without power supply is referred to as "off.”
- the release switching device 20 is used in this way for switching the operating state of the operating unit 10 from the operating state "off” in the operating state "operation” and back.
- the energy supply can be switched on and off only for previously definable, specific operating elements 12, 13 or / and auxiliary operating elements 15, 17 by means of the release switching element 16, the other operating elements 12, 13 and / or additional operating elements 15, 17 are constantly supplied with an energy supply.
- the control terminal c of the control block 22 is then de-energized.
- the control block 22 is designed such that its output terminal d continues to carry voltage for a predefinable period of time. This causes the power switching unit 21 to remain activated, thereby keeping the power switching contact (3/4) S4 closed. As a result, the power supply of the operation unit 0 is maintained for the predetermined period of time.
- the pre-definable period of time may e.g. 30 s.
- the control block 22 switches its output d dead and the power switching unit 21 is turned off, ie the power switching contact (3/4) S4 is opened and the power supply of the operating unit 10 is interrupted again.
- This interruption of the power supply of the operating unit 10 is independent of whether an operating element 12, 13 or additional operating element 15, 17 is actuated or not. This increases security for a user. If this permanently activates an operating element 12, 13 or additional operating element 15, 17, the power supply is nevertheless interrupted by the control block 22 and the power switching unit 21 after the previously definable period of time.
- the control block 22 has a turn-off delay circuit.
- the turn-off delay circuit in a simplest structure may be composed of a capacitor connected in parallel to the coil of the relay.
- the switch-off delay can also be an integrated electronic module with a fixed or / and variable setting of the previously determinable time interval, ie the switch-off delay. Many embodiments are possible here.
- the control block 22 may, in another embodiment, be designed so that when the control unit 10 is not in use, e.g. no control element 12, 13 or auxiliary control element 15, 17 is actuated more, i. after actuation, the control block 22, the power switching unit 21 switches off after another pre-definable period of time. This other pre-definable period of time may e.g. 10 s.
- control block 22 may be formed as a T-flip-flop, wherein the power switching unit 21 is turned on in a first operation of the release switching element 16 and the power switching unit 21 is turned off again in a second operation of the release switching element 16. It may also be possible that after the second actuation of the release switching element 16, the control block 22, the power switching unit 21 switches off again after expiration of a previously definable period of time.
- the power switching contact (3/4) S4 of the power switching unit 21 can be arranged either in the positive line (supply terminal A +) as shown in Fig. 4 or in the negative line (supply terminal A-) or as a double contact in both supply lines.
- the release switch 20 is disposed in the housing 10 a of the operation unit 10. Also conceivable is an arrangement, for example, the power switching unit 21 and the control block 22 in the supply device 9 as well as in the connection unit 1 1, in which case corresponding control lines are provided in the control line 18.
- the release switching element 16 can also be designed as a latching push-button.
- the power switching unit 21 having the power switching contact (3/4) S4 may also be used as a semiconductor switching element, e.g. MOS-FET, can be trained. It is also possible to use a combination of relays and semiconductor switching element, in which case the power switching contact (3/4) S4 consists of a series connection of relay contact and semiconductor switching element.
- the power switching unit 21 is a relay with the power switch contact S4 and an additional auxiliary contact, which is used as latching of the relay and in whose current path is controlled by the control block 22 off switch is arranged.
- the power switching unit 21 and the control block 22 may also be integrated with one another and form a common unit, for example a so-called time relay.
- the release switching element 16 may also be additionally or only designed as a movement switching element, vibration switching element or the like.
- release switching element 16 is coupled to the power switching contact S4 with an electromechanical control switch, wherein the release switching element 16 controls the power switching contact S4.
- the power switching contact S4 may also be an opener.
- the signaling element 14 can also serve to indicate the operating state. It may also be provided as an additional reporting element 14 for the operating state. Such an operating status indicator can also be found in the operating button 16a of the Release switching element 16 may be arranged, wherein the actuating button 16a is formed accordingly (eg translucent for light of a signal light).
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- Power Engineering (AREA)
- Health & Medical Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Nursing (AREA)
- Invalid Beds And Related Equipment (AREA)
- Power-Operated Mechanisms For Wings (AREA)
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE112013001255.3T DE112013001255B4 (de) | 2012-03-02 | 2013-03-04 | Bedieneinheit eines elektromotorischen Möbelantriebs |
| GB1415214.4A GB2514065B (en) | 2012-03-02 | 2013-03-04 | Operating unit of an electromotive furniture drive, electromotive furniture drive, and a corresponding piece of furniture |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102012101796 | 2012-03-02 | ||
| DE102012101796.4 | 2012-03-02 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2013128034A1 true WO2013128034A1 (de) | 2013-09-06 |
Family
ID=47843264
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2013/054288 Ceased WO2013128034A1 (de) | 2012-03-02 | 2013-03-04 | Bedienungseinheit eines elektromotorischen möbelantriebs, elektromotorischer möbelantrieb, und ein entsprechendes möbel |
Country Status (3)
| Country | Link |
|---|---|
| DE (1) | DE112013001255B4 (de) |
| GB (1) | GB2514065B (de) |
| WO (1) | WO2013128034A1 (de) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113631063A (zh) * | 2019-04-01 | 2021-11-09 | La-Z-男孩有限公司 | 机动化家具控制系统以及方法 |
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| WO2005025024A2 (de) * | 2003-09-10 | 2005-03-17 | OKIN Gesellschaft für Antriebstechnik mbH | Anordnung zum betrieb eines elektrisch verstellbaren sitz - und/oder liegemöbels |
| DE102005063321A1 (de) * | 2004-07-06 | 2006-12-28 | Dewert Antriebs- Und Systemtechnik Gmbh | Handbedienung für Verstellantriebe |
| DE202010005410U1 (de) * | 2010-05-08 | 2011-08-09 | Dewert Antriebs- Und Systemtechnik Gmbh | Elektromotorischer Möbelantrieb mit einer Energieversorgungseinrichtung und einer Netzfreischaltungseinrichtung |
| EP2374368A1 (de) * | 2010-04-12 | 2011-10-12 | VIBRADORM GmbH | Verstellbares Möbelstück mit einer Schaltungsanordnung zum Einschalten einer elektrisch betätigbaren Verstelleinrichtung |
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| DE102006033712A1 (de) * | 2006-07-20 | 2008-01-31 | Logicdata Electronic & Software Entwicklungs Gmbh | Steuerung für elektrisch verstellbare Möbel |
| DE102007054422A1 (de) * | 2007-11-13 | 2009-05-14 | Dewert Antriebs- Und Systemtechnik Gmbh | Verfahren zum Erzeugen von erstfehlersicheren und fehlerfesten Steuersignalen einer Bedienungseinheit und eine entsprechende Sicherheitsvorrichtung eines elektromotorischen Möbelantriebs |
-
2013
- 2013-03-04 WO PCT/EP2013/054288 patent/WO2013128034A1/de not_active Ceased
- 2013-03-04 GB GB1415214.4A patent/GB2514065B/en not_active Expired - Fee Related
- 2013-03-04 DE DE112013001255.3T patent/DE112013001255B4/de not_active Expired - Fee Related
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| EP0872226A2 (de) * | 1997-04-15 | 1998-10-21 | Hill-Rom GmbH | Aktives Medizinprodukt |
| WO2005025024A2 (de) * | 2003-09-10 | 2005-03-17 | OKIN Gesellschaft für Antriebstechnik mbH | Anordnung zum betrieb eines elektrisch verstellbaren sitz - und/oder liegemöbels |
| DE102005063321A1 (de) * | 2004-07-06 | 2006-12-28 | Dewert Antriebs- Und Systemtechnik Gmbh | Handbedienung für Verstellantriebe |
| EP2374368A1 (de) * | 2010-04-12 | 2011-10-12 | VIBRADORM GmbH | Verstellbares Möbelstück mit einer Schaltungsanordnung zum Einschalten einer elektrisch betätigbaren Verstelleinrichtung |
| DE202010005410U1 (de) * | 2010-05-08 | 2011-08-09 | Dewert Antriebs- Und Systemtechnik Gmbh | Elektromotorischer Möbelantrieb mit einer Energieversorgungseinrichtung und einer Netzfreischaltungseinrichtung |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113631063A (zh) * | 2019-04-01 | 2021-11-09 | La-Z-男孩有限公司 | 机动化家具控制系统以及方法 |
| CN113631063B (zh) * | 2019-04-01 | 2023-12-05 | La-Z-男孩有限公司 | 机动化家具控制系统以及方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| DE112013001255A5 (de) | 2014-11-27 |
| DE112013001255B4 (de) | 2017-11-16 |
| GB2514065A9 (en) | 2014-11-26 |
| GB201415214D0 (en) | 2014-10-15 |
| GB2514065A (en) | 2014-11-12 |
| GB2514065B (en) | 2018-08-29 |
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