SUPPORT PANEL, BED ASSEMBLY AND MOUNTING METHOD
20190183251 ยท 2019-06-20
Inventors
Cpc classification
H01R33/88
ELECTRICITY
A61G7/015
HUMAN NECESSITIES
H01R33/97
ELECTRICITY
A61G2205/60
HUMAN NECESSITIES
A47C21/003
HUMAN NECESSITIES
International classification
A61G7/015
HUMAN NECESSITIES
H01R33/97
ELECTRICITY
H01R33/88
ELECTRICITY
A47C21/00
HUMAN NECESSITIES
Abstract
A support panel (16) is provided comprising a base member (11), the base member (11) being the mechanically stabilizing component of the support panel (11), at least one mechanical coupler (18) on the base member (11), an identifier which can electronically be read out through the at least one second electrical connector (28), at least one second electrical connector (28) located on the base member (11), and at least one functional module (34) selected from a sensor, an actuator, a control unit, an electrical link, and a power supply, wherein the at least one mechanical coupler (18) and the at least one second electrical connector (28) are designed for reversible mechanical and electrical connection to a bed frame assembly (30), and wherein a top surface (17) of the support panel (16), opposite to the bottom surface (15), is designed to be applied with a mattress (20).
Claims
1. A support panel (16) comprising a base member (11), the base member (11) being the mechanically stabilizing component of the support panel (16), at least one mechanical coupler (18) on the base member (11), at least one second electrical connector (28) located on the base member (11), an identifier which can electronically be read out through the at least one second electrical connector (28), and at least one functional module (34) selected from a sensor, an actuator, a control unit, an electrical link, and a power supply, mounted on or in the base member (11), wherein the at least one mechanical coupler (18) and the at least one second electrical connector (28) are designed for reversible mechanical and electrical connection of the support panel (16) to a bed frame assembly (30), and wherein a top surface (17) of the support panel (16), opposite to a bottom surface (15), is designed to be applied with a mattress (20).
2. The support panel (16) according to claim 1, wherein the at least one mechanical coupler (18) as well as the at least one second electrical connector (28) are located on the bottom surface (15) and are configured as a plug connection, a clamping connection, or an insulation-displacement connection, wherein the functional module (34) comprises at least one electrical link which is configured as a bus for bidirectional data transfer, and the at least one mechanical coupler (18) as well as the at least one second electrical connector (28) enable a mechanical and electrical mounting of the support panel (16) in a direction parallel or orthogonal to the bottom surface (15), with a tolerance of at most 10.
3. The support panel (16) according to claim 1, wherein at least one of the mechanical coupler (18) and the second electrical connector (28) is in a Poka-Yoke design in order to avoid user mistakes when mounting the support panel (16).
4. The support panel (16) according to claim 1, which is designed to be simultaneously electrically and mechanically connected.
5. The support panel (16) according to claim 1, wherein the functional module (34) includes at least one of a massage module, a heating module, a cooling module, a wireless communication module, a lighting element module, a pressure sensor module, a humidity sensor module, or a temperature sensor module, a USB port, a squeeze protection module, a head rest support, a lumbar support, a microphone, an acceleration sensor, a biometrical sensor.
6. The support panel (16) according to claim 1, wherein at least one of the mechanical coupler (18) and the second electrical connector (28) is accessible from the side of the top surface (17).
7. The support panel (16) according to claim 1, further comprising a third electrical connector (29) designed to electrically connect two adjacent support panels (16) with each other and/or to electronically read out the identifier.
8. The support panel (16) according to claim 7, wherein at least one of the second and the third electrical connectors (28, 29) is designed to be connected in a direction parallel with the bottom surface (15).
9. A bed assembly (10) comprising a bed frame assembly (30) and comprising at least one support panel (16) according to claim 1, the bed frame assembly (30) comprises a base frame (12) having a longitudinal axis (X), at least one longitudinal beam (21) extending along the longitudinal axis (X), a plurality of mechanical fasteners (19) located on the at least one longitudinal beam (21), and at least one first electrical connector (24) applied to the at least one longitudinal beam (21), wherein the at least one support panel (16) is reversibly mechanically connected to the at least one longitudinal beam (21) by means of at least one of the mechanical fasteners (19) and the at least one mechanical coupler (18), and wherein the at least one support panel (16) is reversibly electrically connected to the at least one longitudinal beam (21) by means of the at least one first and second electrical connectors (24, 28).
10. The bed assembly (10) according to claim 9, wherein the mechanical fastener (19) and the mechanical connector (18) as well as the first and second electrical connectors (24, 28) are designed as plug-in devices to be handled without any help of tools.
11. The bed assembly (10) according to claim 9, further comprising a central controller module (26), wherein the controller module (26) is designed to provide electrical power and control signals to the at least one first electrical connector (24) and to the at least one support panel (16), and wherein the controller module (26) is firmly connected on the base frame (12).
12. The bed assembly (10) according to claim 9, comprising a plurality of the support panels (16), wherein at least two of the support panels (16) comprise the functional module (34) which includes the control unit and the electrical link, and wherein by the at least two control units and the corresponding electrical links a decentral control network is formed.
13. The bed assembly (10) according to claim 9, wherein the first and second electrical connectors (24, 28) are integrated with the mechanical fastener (19) and the mechanical connector (18), respectively.
14. The bed assembly (10) according to claim 9, comprising a plurality of the support panels (16), wherein adjacent support panels (16) are electrically interconnected via the at least one longitudinal beam (21), by means of an electrical plug or an electrical cable directly between the respective support panels (16), or by means of a cloth cover comprising electrical conductor tracks.
15. The bed assembly (10) according to claim 9, wherein a plurality of first electrical connectors (24) is applied to each one of the at least two longitudinal beams (21), wherein the longitudinal beams (21) each comprise a plurality of individual pieces (22), at least some of the individual pieces (22) being electrically movable by actuators relative to the base frame (12), wherein each one of the individual pieces (22) is provided with at least one of the mechanical fasteners (19), wherein each one of the individual pieces (22) of at least one of the longitudinal beams (21) is provided with at least one of the first electrical connectors (24), and wherein the at least one support panel (216) is mounted on at least one of the individual pieces (22) for each longitudinal beam (21) so that the at least one support panel (16) is movable via the respective individual pieces (22).
16. Mounting method comprising the following steps: providing a bed frame assembly (30) having one or a plurality of dummy support panels, removing the or at least one of the dummy support panels, providing at least one support panel (16) according to claim 1, and mounting the at least one support panel (16) reversibly onto the bed frame assembly (30) so that the bed assembly (10) according to one of claims 9 to 15 results and so that the dummy support panel is replaced by the at least one support panel (16), wherein the removing of the dummy support panel and mounting the at least one support panel (16) is done without the use of tools.
Description
[0062] In the figures:
[0063]
[0064]
[0065]
[0066]
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[0070]
[0071] While a set of various elements will be described, it will be understood that a set can include any number of the respective elements, including only one element. The term head or head section refers to a longitudinal end of a bed frame assembly typically used by a user to rest their head, torso, or upper body. Conversely, the foot or foot section of the bed assembly refers to the opposing longitudinal end of the bed frame assembly typically used by a user to rest their feet, legs, or lower body. All directional references (e.g., head, foot, upper, lower, upward, downward, left, right, lateral, front, back, top, bottom, above, below, vertical, horizontal, clockwise, counterclockwise) are only used for identification purposes to aid the reader's understanding of the disclosure, and do not create limitations, particularly as to the position, orientation, or use thereof. Connection references (e.g. attached, coupled, connected, and joined) are to be construed broadly and can include intermediate members between a collection of elements and relative movement between elements unless otherwise indicated. As such, connection references do not necessarily infer that two elements are directly connected and in fixed relation to each other. The exemplary drawings are for purposes of illustration only and the dimensions, positions, order and relative sizes reflected in the drawings attached hereto can vary.
[0072]
[0073] The support panels 16 can have varying lengths and cover a subset of the area defined by the base frame 12. For example, as illustrated, a first support panel can have a first length extending along the longitudinal axis X of W.sub.1, while a second support panel can have a second length extending along the longitudinal axis X of W.sub.2, which is less than W.sub.1. While the lengths of the support panels can vary, the cross-width of the set of support panels 16, that is, the width of the set of support panels 16 between the parallel spaced sections 12a, is selected to match the spacing between the parallel sections 12a.
[0074] For example, there can be at least one support panel, not shown, that protrudes beyond the longitudinal beams. Such support panels can be used as placement areas similar to a bedside table.
[0075] In non-limiting configurations of the disclosure, the lengths of the individual support panels 16 can be correlated to the parts of a user's body to which the individual support panel 16 is in alignment with or supports. For instance, non-limiting examples of support panels 16 can be tailored or selected to correspond with a head, a torso, a waist, legs, thighs, feet, and the like. Since a user's head is typically smaller than a user's torso, the length of the individual support panel 16 that supports a user's head can be smaller than the length of the individual support panel 16 that supports a user's torso.
[0076] The ability to select various lengths for individual support panels 16 allows for a user to easily customize a bed frame assembly 30 for comfort, ergonomics, or the like. While the set of support panels 16 can be selected to correspond with a user's body segments, aspects of the disclosure can be included wherein each of the set of support panels include a common length. The lengths illustrated in the figures are merely two non-limiting examples of lengths that are selectable for the customizing the set of support panels 16.
[0077] Aspects of the disclosure can be included wherein the base frame 12 can be made of metal, wood, or any other suitable material. The mattress 20 can be provided atop the base frame 12, and supported by the set of support panels 16.
[0078]
[0079] As used herein, the set of individual pieces 22 can be coupled such that movement of the set of pieces 22 or the movable frame 13 results in a movement of the pieces 22 or frame 13, respectively. In one non-limiting example, movement of the set of pieces 22 or the movable frame 13 can alter the configuration of the bed frame assembly 30 between an elevated position and a flat position. As used herein, an elevated position can include a raised head and feet section as seen in
[0080] Returning to
[0081] The set of mechanical fasteners 19 can be in the form of a pin, rod, shaft, bolt, screw, or any suitable mechanical fastener configured to engage with the mechanical couplers 18 to engage in a selectable coupling mechanism. Different kinds of mechanical fasteners 19 can be combined, for example circular holes and slotted holes as well as the respective counterparts on the side of the support panels 16, and vice versa.
[0082] Preferably, the mechanical fasteners 19 allow a self-adjustment, for example by means of a conical shape. Hence, the support panels 16 can at first be applied with a comparable large lateral tolerance and are then aligned to precisely meet a first set of electrical connectors 24. Lateral tolerances between adjacent support panels 16 lie particularly in a range from at least 1 mm or 2 mm to at most 10 mm or 5 mm.
[0083] The set of mechanical couplers 18 can correspond with the set of mechanical fasteners 19, and include a screw interface, a twisting connector, a nut, and the like, such that the interfacing between the couplers 18 and fasteners 19 can be coupled.
[0084]
[0085] Since the support panels 16 can have individual lengths, it is possible to create a wide variety of resulting shapes for the mattress 20 to conform to. For example, an individual support panel 16 that supports a user's head may be raised while an individual support panel 16 that supports a user's feet may be linear, that is parallel with the longitudinal beams 21 and directly on top of the longitudinal beams 21, compare
[0086] Aspects of the disclosure can be included wherein a motor or a set of motors (not shown) are configured to move, actuate, or translate a portion of the bed frame assembly 30, the set of pieces 22, or a subset of pieces 22, or movable frame 13 relative to the base frame 12 to operably adjust the bed frame assembly 230 between the elevated position, the flat position, or any other adjustable positions therebetween or otherwise contemplated herein.
[0087]
[0088] While the communicative or conductive connection is illustrated in dotted outline apart from the bed frame assembly 12 for understanding, aspects of the disclosure can be included wherein, for example, cables, wiring, conductors, or the like, can be routed internal to the set of pieces 22 or the movable frame 13. It is also within the scope of the disclosure for the connectors 24, and the controller module 26 to be connected wirelessly.
[0089] The optional controller module 26 can further comprise a processor and memory. The memory can store a set of operational control profiles or programs for operation of the movable frame 13 or support panels 16 relative to the base frame 12, or for operation of a set of functional modules. The memory can include random access memory (RAM), read-only memory (ROM), flash memory, or one or more different types of portable electronic memory, such as discs, DVDs, CD-ROMs, etc., or any suitable combination of these types of memory. The controller module 26 can be operably coupled with the memory such that one of the controller module 26 and the memory can include all or a portion of a computer program having an executable instruction set for controlling the operation of the aforementioned components, or a method of operating the same.
[0090] The program can include a computer program product that can include machine-readable media for carrying or having machine-executable instructions or data structures stored thereon. Such machine-readable media can be any available media, which can be accessed by a general purpose or special purpose computer or other machine with a processor. Generally, such a computer program can include routines, programs, objects, components, data structures, algorithms, etc., that have the technical effect of performing particular tasks or implement particular abstract data types.
[0091] Machine-executable instructions, associated data structures, and programs represent examples of program code for executing the exchange of information as disclosed herein. Machine-executable instructions can include, for example, instructions and data, which cause a general purpose computer, special purpose computer, controller module 26, or special purpose processing machine to perform a certain function or group of functions. In implementation, the functions can be converted to a computer program comprising a set of executable instructions, which can be executed by the processor.
[0092] In one non-limiting configuration, the optional controller module 26 can be configured to receive instruction, to send control signals to a communicatively coupled device. For instances, the controller module 26 can operate in response to instructions received from another separate control module, including, but not limited to a remote control, a smart phone, or any other suitable device operable to send signals to the controller module 26. Aspects can be included wherein the separate controller module can be communicatively coupled with the controller module 26 by way of wired or wireless communication. The controller module 26 can be configured to selectively operate, control, or send control signals to other aspects or functionality of the bed frame assembly 12 or set of support panels 16.
[0093] By way of a non-limiting example, the processor or the controller module 26 can be configured to controllably operate the motors or set of motors to actuate the movable frame 13 or set of pieces 22 relative to the base frame 12. In another aspect of the disclosure, the processor or the controller module 26 can also be configured to controllably operate a set of functional modules configured to provide a function, service, or the like to the bed frame assembly, as described below.
[0094]
[0095] The second set of connectors 28 and the respective counterparts can be standardized components. That is, all kinds of support panels 16 available for the respective bed frame assemblies 30 can have compatible mechanical and electrical connectors and unique identifiers so that a simple change of support panels 16 can be achieved by an end-consumer.
[0096] As used herein, a functional module 34 provides an additional function to the support panel 16 or bed frame assembly 30. Examples of functional modules can include, but are not limited to a massaging or vibratory module, a heating module configure to generate or provide heat, a cooling element, a lighting element module configured to provide illumination relative to a room, floor, or bed frame assembly 30, a power supply module configured to supply power for an external component or connection (e.g. wall plug or universal serial bus (USB) plug), or a sensor module.
[0097] Moreover, the functional module 34 can be or can comprise a control unit. Such a control unit can be present on just one, on some or on all of the support panels 16. If there is a plurality of control units, a network can be formed in which the control units are interconnected by a bus system. Said bus system can also be a component of the functional modules 34. The at least one control unit can substitute the controller module 26.
[0098] Non-limiting aspects of the sensor module can include, for instance, a pressure sensor module configured to sense or measure pressure, a humidity sensor module configured to sense or measure humidity, or a temperature sensor module configured to sense or measure temperature. In another non-limiting aspect, the sensor module can be configured to provide or send the sensed or measured value(s) of the sensor module to the controller module 26, which can perform operations in response to the received sensed or measured value(s). The support panels can also be formed to provide additional support such as lumbar or head support by designing the panel to exhibit a desired structure or shape.
[0099] In the non-limiting illustrated example, the set of connectors 24, 28 can be correspondingly configured to include three connection points 36, but it is within the scope of the disclosure for the set of connectors 24, 28 to include any number of connection leads 36. The connection between the first and second set of connectors 24, 28 can provide bi-directional (i.e. two-way) or uni-directional (one-way) communication between the controller module 26 and the respective functional module 34. The communication can include digital or analog signals between the controller module 26 and the functional module 34. The connection and communication can also provide power to the functional module to operate, if needed.
[0100] Also shown, the set of mechanical couplers 18 of the support panels 16 can include a mechanical fastener receiving element 32, which are configured to receive the mechanical fasteners 19 of the movable frame 13 or set of pieces 22. The mechanical fastener receiving elements 32 to the connectors 28 can be arranged, configured, keyed, or the like such that assembling of the set of support panels 16 to the bed frame assembly 30 can only be accomplished in a known or predetermined orientation. Stated another way, the mechanical fastener receiving elements 32 or the second set of connectors 28 can be arranged to correspond with the bed frame assembly 30 to prevent errant or incorrect assembling.
[0101] For example, the spacing between adjacent fastener elements can be sized such that only a thigh-width support panel 16 can be selectively mounted with a corresponding thigh-width section on the movable frame 13, etc. In another non-limiting aspect of the disclosure, the first set of connectors 24 can be disposed on only one side of the bed frame 12, so the second set of connectors 28 of the support panel 16 can only be received in an orientation that corresponds with the one side of the bed frame 12. It is also contemplated that different functional modules can have different numbers of connectors 24, 28.
[0102]
[0103] The mechanical fastener 18 can further operationally include indicia describing the clockwise or counterclockwise turning, and resulting locking/unlocking functionality, as shown. In one non-limiting configuration, a quarter turn or 90 degree rotation in the clockwise direction can operably lock or couple the support panel 16 to the movable frame 13, while a 90 degree rotation in the counter-clockwise direction can operably un-lock or decouple the support panel 16 from the movable frame 13. It is within the scope of the disclosure that the rotation require more or less than 90 degrees to lock or unlock the support panel 16 from the movable frame 13. Additionally, the clockwise or counter-clockwise turning direction can be selected to correspond with either the locking or unlocking operation, respectively.
[0104] The system architecture of the bed assembly 10 can thus be characterized as followed, in a preferred embodiment: The bed assembly comprises the base frame 12, the movable frame 13 and at least one of the support panels 16. For example, both longitudinal beams 21 of the bed have adjustable head and foot sections, realized by the support panels 16. The controller module 26 for all actuators, for example four actuators, in particular two in each one of the individual parts 22, is located in one of the individual parts 22 or in a first one of the longitudinal beams 21. The other, second longitudinal beam 21, without controller, is connected to the first longitudinal beam over a cable. A power supply is an external device which is connected to the first longitudinal beam 21 with the integrated controller module 26. Additional accessory modules like massage units, USB modules and the like can be connected to the controller module 26 with a special cable interface. The accessory modules can be mounted on the support panels 16 or on the base frame 12 itself or on the movable frame 13.
[0105] As an alternative, there is no central controller module but a decentral control architecture is applied: Each module like actuator modules, massage modules, USB ports, heating or cooling, remote control, sensors and so on comprise some logic components like integrated circuits so that no central controller module is necessary. In particular, each support panel comprises its own control unit. The support panels can communicate with each other, in particular by means of a bus system, in order to exchange system parameters like position, orientation, speed, temperature, pressure and so on. For this purpose, the support panels can directly be connected with each other by the bus system, or are indirectly connected by a bus system that runs via the bed frame assembly.
[0106]
[0107] According to
[0108] By means of such third electrical connectors 29, it is also possible to have a capacitive or inductive coupling between the support panels 16. Such a capacitive or inductive coupling could be contact-free so that the respective support panels 16 do not directly touch each other, neither at the base member 11 nor at the third electrical connectors 29. The same can be true for the electrical connection between the support panels 16 and the bed frame assembly 30. Otherwise, the support panels 16 could be in direct physical contact with each other, in particular just via the third electrical connectors 29. Further, the third electrical connectors 29 might be designed rotatory or gyratory in order to enable a rotational relative movement between the third electrical connectors 29 and/or the attached support panels 16. For example, in this case the connection between the third electrical connectors 29 includes a sliding contact.
[0109] Further, the bus system not necessarily needs to run via the bed frame assembly 30 or needs to directly contact adjacent support panels 16 with each other. For example, electrical signals are transmitted through a cloth cover like a duvet cover into which electrical conductor tracks are weaved. In this case, all support panels 16 can be cladded by the cover and are electrically connected with the cover. Said cover is then preferably in at least one location electrically connected to the bed frame assembly. Such weaved or printed or adhered conductor tracks can be accessibly at different locations in the cover. For example, the conductor tracks are accessible at pre-defined locations on the surface to enable the measurement of temperature, pressure and so on in or near said locations. The electrical connections between the cloth cover, the support panels 16 and the bed frame assembly 30 can be realized by physical contact or contact-free through capacitive or inductive coupling, too.
[0110] In short, the present invention is based inter alia on the following ideas:
[0111] Nowadays different functionalities of an adjustable bed frame are realized by dividing the portfolio in various product categories. The product is preassembled by the producer and cannot be extended, changed or modified to adjust different levels of features by the end user. Thus it is not possible to change the functionality without buying a new bed.
[0112] There are two different ways how adjustable frames are currently assembled. In one example, bed frame producers assemble the complete frame and send it in one piece or a single non-modifiable unit to the end consumer. Because of the heavy package (>70 kg) a home delivery service can be offered. In another example, end consumers can assemble the frame by themselves, which is a less-often occurrence compared with first example. That is, bed frame producers are splitting up the frame in two or more subassemblies and send them separately to the customer, who further assembles the subassemblies into the bed frame. A major drawback of this solution is the accessibility of some bed frame interfaces, such as the board (wooden panels) connection to the frame, are located on the bottom side of the bed frame. Thus, to access the bed frame interfaces, a flipping, lifting, or movement of the frame is required. In some examples, the panels are quite heavy and bulky, which when combined with the flipping, lifting, or movement of the frame, can require the assistance of a second person for the assembling.
[0113] Aspects of the disclosure include or consist of a combined mechanical-electrical interface between the solid frame and the boards of an adjustable frame. The interface is designed for end customer usage. This means that an unskilled person is able to connect and disconnect the boards to the frame. Electromechanical modules such as a control unit or massage actuators, which are preassembled on the bottom side of the boards, can be connected in the same assembling step to the cables within the frame. Thus, all relevant user interfaces are located on the top side of the boards it is not necessary to flip heavy components during the assembling.
[0114] Hence, the invention provides an end user friendly design in a modular system with regard to functional upgrades. Tool-less assembling and/or flip-less assembling is enabled so that in particular no flipping, lifting, or movement of the frame is required.
[0115] The support panels, also referred to as boards, are solid elements which can be divided into different sections, for example for a head, seat, thigh, foot. The board sections can further be adjusted by actuators located inside the frame. Additionally different modules like a control box, massage actuators, cable routing, and the like are preferably mounted on the bottom side of some boards. The frame is a solid structure for example of steel to carry or support the weight or loads coming from the boards. The boards are mounted to the frame via an electrical and mechanical interface.
[0116] Embodiments of the frame interface can include, but is not limited to, aspects such as compensation of mechanical tolerances, Poka-Yoke design in order to avoid user mistakes, protection against environmental influences like dust or humidity decoupling of electrical plug from mechanical force path, packaging and cable routing, or a combination thereof.
[0117] The support panel interface integrates the corresponding counterparts to the frame interfaces described above. It is worth to mention, that both the mechanical and the electrical interfaces are preferably designed in such a way that is possible to mount the boards from the top. The connection is then completed after a simple locking mechanism is fixed by the user. This procedure saves assembling time and gives the possibility to exchange boards, if an additional functionality like massage is desired, the user can unlock the board and substitute it by another board with the respective feature. In another example, a malfunctioning board can be exchanged for a new or functional board.
[0118] That is, the support panel can be an intelligent module and cable routing can be handled. The control unit can be mounted on the bottom side of the board. Cables can be guided to the electrical connector on the outer edge of the board. In one example, each electrical plug of the bed frame can be communicatively coupled with a bed control unit, a power supply, or the like. The bed control unit can further include a controller for a user having a user interface. In this sense, the bed frame can include a communicative pathway or network for the set of boards coupled by way of the set of electrical plugs, and wherein the set of boards can be controllably operated by at least one of the bed control unit, the user, or by the user interface.
[0119] Some options or configurations to be enabled by the replaceable support panels can include, but are not limited to: [0120] Bed sizes: queen size, king size, twin long, and so on, [0121] Adjustability: head up, head up+foot up, head up+foot up+wall hugging, lumbar support, and so on, [0122] Comfort functions: massage, heating, headrest support, and so on, [0123] Sensing: Processing can also be done in a smart device such as a smartphone, tablet or similar. For example, pressure, pinching events, temperature and so on can be sensed. [0124] Optical appearance: colors, material, and so on.
[0125] By using the proposed interface, producers are able to split the product in common parts like the frame) and in customization parts like the support panels. This can help to simplify the supply chain and storage management and reduce the product variants by more than 50%.
[0126] In the exemplary embodiments, the support panel 16 is shown to have the massive base member 11. Instead, the support panel 16 can also be part of a lath floor, for example. The base member 11 does not necessarily need to be of continuous fashion but could also comprise cut-outs or through-holes, for example to enable sensors or the like.
[0127] The support panels 16 can also be delivered in a package. For example, the support panels 16 are covered by a cloth to cover openings or holes to improve a support of the mattress, to enhance the optical appearance and/or the design, to avoid accessibility of hinges, or to provide a bus system via the cloth.
[0128] To the extent not already described, the different features and structures of the various embodiments of the disclosure may be used in combination with each other as desired. For example, one or more of the features illustrated and/or described with respect to one of the embodiments can be used with or combined with one or more features illustrated and/or described with respect to the other of the embodiments.
[0129] That one feature may not be illustrated in all of the embodiments is not meant to be construed that it cannot be, but is done for brevity of description. Thus, the various features of the different embodiments may be mixed and matched as desired to form new embodiments, whether or not the new embodiments are expressly described. Aspects of the disclosure can be applied to any size of bed or bed frame, including but not limited to, queen, king, twin sizes, or the like.
[0130] The embodiments disclosed herein provide a bed frame assembly having interchangeable or module support panels that can include functional modules. The technical effect is that the above described disclosure enables the interchanging an operation of the functional modules by a common bed frame controller module or a decentral control concept, as well as enabling modular installation of support panels by a user, as opposed to a technical specialist. One advantage that can be realized in the above embodiments is that the above described embodiments have superior operable capabilities as regardless of the functional modules selected or installed with the bed frame assembly, the entire bed (as well as the functional modules) can all be controllably operated by a common controller module or control schema.
[0131] Another advantage of the above described disclosure is that the selective coupling and removing of the set of support panels enables a user to operably replace support panels as need to improve, update, increase, or modify the existing functionality of the bed with support panels having functional modules. In this sense, a user can customize their own bed frame assembly with support panels of their own choosing, assemble the bed frame assembly, and operate the bed frame assembly and functional modules by way of the common controller module. By enabling the modularity of the support panels, a user can effectively customize their own bed while limiting the handling, lifting, moving, or otherwise physical exertion of moving a large bed frame. In this sense, a single user can effectively customize their own bed without additional help.
[0132] The invention is not restricted to the exemplary embodiments by the description on the basis of said exemplary embodiments. Rather, the invention encompasses any new feature and also any combination of features, which in particular comprises any combination of features in the patent claims and any combination of features in the exemplary embodiments, even if this feature or this combination itself is not explicitly specified in the patent claims or exemplary embodiments.
LIST OF REFERENCE SIGNS
[0133] 10 bed assembly [0134] 11 base member [0135] 12 base frame [0136] 12a frame section [0137] 12b crossing portion [0138] 13 movable frame [0139] 14 leg [0140] 15 bottom surface of the support panel [0141] 16 support panel [0142] 17 top surface of the support panel [0143] 18 mechanical coupler [0144] 19 mechanical fastener [0145] 20 mattress [0146] 21 longitudinal beam [0147] 22 individual pieces of the frame section [0148] 24 first set of connectors [0149] 26 controller module [0150] 28 second set of connectors [0151] 29 third set of connectors [0152] 30 bed frame assembly [0153] 31 motor [0154] 32 engage part [0155] 34 functional module [0156] 36 connection point [0157] 40 middle portion [0158] W length [0159] X longitudinal axis