Electromotive furniture drive
US-9331610-B2 · May 3, 2016 · US
US11684163B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11684163-B2 |
| Application number | US-201515506569-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 27, 2015 |
| Priority date | Aug 27, 2014 |
| Publication date | Jun 27, 2023 |
| Grant date | Jun 27, 2023 |
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Official abstract text for this publication.
The invention relates to an electromotive furniture drive for adjusting movable furniture parts (5, 6) of an item of functional furniture (1), having a control device (9), at least one adjusting drive (7, 8) with an electric motor, and at least one evaluation circuit (10) with an input (11, 12), which evaluation circuit can be electrically conductively connected to a sensor, which is attached to the item of functional furniture (1), and forms a proximity and/or contact detector together with said sensor. The electromotive furniture drive is distinguished in that at least two proximity and/or contact detectors are formed by in each case one sensor or a group of sensors together with the at least one evaluation circuit (10), it being possible for said proximity and/or contact detectors to be assigned to different moving furniture parts (5, 6) of the item of functional furniture (1). The invention further relates to an item of functional furniture (1) having at least two groups of movable furniture parts (5, 6) and an electromotive furniture drive of this kind.
Opening claim text (preview).
The invention claimed is: 1. An electromotive furniture drive for adjusting movable furniture parts of an item of functional furniture, said electromotive furniture drive comprising two adjustment drives including at least one electric motor, a control unit operably connected to the adjustment drives, and an analysis circuit configured for connection in an electrically conductive manner to a plurality of sensors attached to the item of functional furniture to thereby form at least two proximity and touch detectors associated with different ones of the movable furniture parts of the item of functional furniture, wherein a first sensor is configured as a first sensor line that directly contacts, a first movable furniture part in a conductive connection, and a second sensor is configured as a second sensor line with a planar electrode bonded to a second movable furniture part thereby forming a capacitive coupling to the second movable furniture part, wherein a capacitance change of the first movable furniture part due to proximity or touch to the first movable furniture part by a body part is transmitted by the first sensor line to the analysis circuit which detects the proximity or touch of the first movable furniture part by the body part and a capacitance change of the second movable furniture part due to proximity or touch to the second movable furniture part b a body part is transmitted by the second sensor line to the analysis circuit which detects the proximity or touch of the second movable furniture part by the body part and the analysis circuit generates a signal to stop at least one of the two the adjustment drives, wherein after stopping, at least one of the two adjustment drives is operated for a predefined period of time in a reverse movement direction to release a body part which may have been pinched, wherein the analysis circuit includes a plurality of inputs coupled to the sensors in one-to-one correspondence and a multiplexer configured to sequentially connect the inputs to a single detector circuit of the analysis circuit. 2. An item of functional furniture, comprising: at least two groups of movable furniture parts; and an electromotive furniture drive for adjusting the movable furniture parts, said electromotive furniture drive comprising two adjustment drives including at least one electric motor, a control unit operably connected to the adjustment drives, and an analysis circuit configured for connection in an electrically conductive manner to a plurality of sensors attached to the item of functional furniture to thereby form at least two proximity and touch detectors associated with different ones of the movable furniture parts of the item of functional furniture, wherein a first sensor is configured as a first sensor line that directly contacts a first movable furniture part in a conductive connection, and a second sensor is configured as a second sensor line with a planar electrode bonded to a second movable furniture part thereby forming, a capacitive coupling to the second movable furniture part wherein a capacitance change of the first movable furniture part due to proximity or touch to the first movable furniture part by a body part is transmitted by the first sensor line to the analysis circuit which detects the proximity or touch of the first movable furniture part by the body part and a capacitance change of the second movable furniture part due to proximity or touch to the second movable furniture part by a body part is transmitted by the second sensor line to the analysis circuit which detects the proximity or touch of the second movable furniture part by the body part and the analysis circuit generates a signal to stop at least one of the two the adjustment drives, wherein after stopping, at least one of the two adjustment drives is operated for a predefined period of time in a reverse movement direction to release a body part which may have been pinched, wherein the analysis circuit includes a plurality of inputs coupled to the sensors in one-to-one correspondence and a multiplexer configured to sequentially connect the inputs to a single detector circuit of the analysis circuit. 3. The item of functional furniture of claim 2 , wherein each of the at least two groups of movable furniture parts is associated with the functional fitting of the item of functional furniture. 4. An electromotive furniture drive for adjusting movable furniture parts of an item of functional furniture; said electromotive furniture drive comprising: two adjustment drives including at least one electric motor for moving a furniture part of the item of functional furniture; a control unit operably connected to the adjustment drives; and an analysis circuit operably connected to the control unit and having inputs for connection in an electrically conductive manner to a plurality of sensors attached to the item of functional furniture to thereby form at least two proximity and touch detectors associated with different ones of the movable furniture parts of the item of functional furniture, wherein a first sensor is configured as a first sensor line that directly contacts a first movable furniture part in a, conductive connection, and a second sensor is configured as a second sensor line with a planar electrode bonded to a second movable furniture part thereby forming a capacitive coupling to the second movable, furniture part, wherein a capacitance change of the first movable furniture part due to proximity or touch to the first movable furniture part by a body part is transmitted by the first sensor line to the analysis circuit which detects the proximity or touch of the first movable furniture part by the body part and a capacitance change of the second movable furniture part due to proximity or touch to the second movable furniture part by a body part is transmitted by the second sensor line to the analysis circuit which detects the proximity or touch of the second movable furniture part by the body part and the analysis circuit generates a signal to stop at least one of the two the adjustment drives, wherein after stopping, at least one of the two adjustment drives is operated for a predefined period of time in a reverse movement direction to release a body part which may have been pinched, wherein the analysis circuit includes a plurality of inputs coupled to the sensors in one correspondence and a multiplexer configured to sequentially connect the inputs to a single detector circuit of the analysis circuit.
divided into different adjustable sections, e.g. for Gatch position · CPC title
by electric motors · CPC title
Remote controls · CPC title
Use of remote controls · CPC title
Control or drive mechanisms · CPC title
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