The present invention relates to a releasable fastening arrangement that provides a mechanical connection and an electrical connection between two units. In particular, the invention relates to a unit including a member of such a releasable fastening arrangement as defined in the preamble of claim 1 or 2. The present invention also relates to a unit assembly comprising at least one such unit.
The following background information is a description of the background of the present invention, which thus not necessarily has to be a description of prior art.
A wide variety of fastening arrangements providing a mechanical connection between two units are available in the market, with different types of fastening arrangements used in different areas. In some areas it is desirable to, in addition to the mechanical connection, provide an electrical connection between the two units. One such example is where the two units are floor panels including heating which is electrically generated. To provide heating over a floor including such floor panels, each floor panel needs to be both mechanically and electrically connected to some of its neighboring floor panels. The electrical connection is typically provided with one or more electric connectors arranged between the floor panels, where the electric connectors are connected to the electric circuit in respective floor panel. Other such examples include essentially any type of devices/elements/equipment/arrangements that are to be mechanically and electrically connected together.
Conventional solutions providing an electrical connection between two units, when the two units are mechanically coupled to each other, typically uses separate electric connector(s). These solutions are usually complex and requires special working moments and/or special equipment to couple the electric connector to the electric circuits of each unit, respectively. Furthermore, conventional electric connectors are designed to give a good electric connection but does not provide any mechanical force other than holding the connector pins together. Conventional electric connectors are therefore not suitable to mechanically lock components together.
In addition, the use of separate mechanisms to provide the mechanical connection and the electrical connection between the two units makes both the manufacturing and the installation of the units complicated.
Consequently, there is a need to provide a releasable fastening arrangement which provides both a mechanical and electrical connection between two units without any separate electric connector.
It is therefore an object of the present invention to provide a first unit including a first member of a releasable fastening arrangement, a second unit including a second member of a releasable fastening arrangement, and a unit assembly that solve at least some of the above stated problems and/or disadvantages.
The object is achieved by the above mentioned first unit according to the characterizing portion of claim 1. The first unit includes a first member of a releasable fastening arrangement arranged for providing:
characterized by:
The object is further achieved by the above mentioned second unit according to the characterizing portion of claim 2. The second unit includes a second member of a releasable fastening arrangement arranged for providing:
characterized by:
An advantage with these aspects of the invention is that the one or more at least partially resilient latching arm members of the male profile and the one or more corresponding slots of the female profile allows the male profile to be snapped into and snapped out of the female profile. Thereby, providing a releasable connection/locking between the first unit and the second unit, and a solid/reliable contact pressure between the one or more first flexible conductors and the one or more second flexible conductors arranged between the male profile and the female profile.
A further advantage with these aspects of the invention is that by integrating the electrical connection with the mechanical connection, the manufacturing of the units, as well as the installation of the units, can be simplified.
Furthermore, by making the fastening arrangement releasable, the fastening arrangement can be used in a number of applications where the two units are to be temporarily connected to each other. Such a releasable fastening arrangement providing both a mechanical and electrical connection can e.g. be used in the previously mentioned floor application. In this way, the floor or individual floor panels may easily be exchanged. Other applications could e.g. be the fastening of lighting, sensors, and similar objects which require electricity to function to a mounting rack. With a releasable fastening arrangement providing both a mechanical and electrical connection the use of external cables or batteries can be avoided, and the lighting or sensors can easily be moved.
According to an embodiment of the present invention, the electrical connection provides electric power between the first unit and the second unit, the electric power provided through the electrical connection can drive a power consuming part in at least one of the first unit and the second unit.
An advantage with this embodiment of the invention is that the electrical connection provided by the releasable fastening arrangement can be used to supply electric power to a part/component/function in the first unit or second unit which requires electrical power to operate. Thereby, allowing the power consuming part to operate without the need for any external electrical cables/connections or an internal battery.
According to an embodiment of the present invention, the first unit includes a power consuming part being connected to the first electrical circuit and/or the second unit includes a power consuming part being connected to the second electrical circuit.
According to an embodiment of the present invention, the first member includes two male profiles and the second member includes two corresponding female profiles; and the first electrical circuit includes two first flexible conductors arranged on a respective male profile and the second electrical circuit includes two second flexible conductors arranged on a respective female profile.
According to an embodiment of the present invention, one of the first flexible conductors and one of the second flexible conductors have a first electrical potential P1 and the other one of the first flexible conductors and the other one of the second flexible conductors have a second electrical potential P2 different from the first electrical potential P1.
An advantage with these aspects of the invention is that the two male profiles and the two corresponding female profiles can be arranged such that an improved stability and/or strength of the mechanical connection is achieved.
Furthermore, the two first flexible conductors and the two second flexible conductors provides flexibility in providing electric power through the electrical connection.
According to an embodiment of the present invention, a strength of the mechanical connection provided by the releasable fastening arrangement is adapted based on at least one of:
An advantage with this embodiment of the invention is that the strength of the mechanical connection/coupling, i.e. the solidity/stability of the arrangement and/or the power/force needed for fastening and/or releasing the arrangement, can be adjusted based on characteristics of the units to be connected, as well as the environment in which the releasable fastening arrangement is used.
According to an embodiment of the present invention, the mechanical connection provided by the releasable fastening arrangement is capable of carrying/holding/being loaded with (i.e. is not released by), a force corresponding one to five times the weight of the first unit or the second unit.
According to an embodiment of the present invention, the mechanical connection provided by the releasable fastening arrangement is released by a force corresponding to two to five times the weight of the first unit or the second unit.
An advantage with these embodiments of the invention is that the strength of the mechanical connection/coupling can be adjusted to match the specific implementation/use of the unit assembly, or to match the physical strength of an intended user, such that the intended user is capable to fasten and release the arrangement.
According to an embodiment of the present invention, the at least one male profile includes one in the group:
According to an embodiment of the present invention, the at least one female profile includes one in the group:
According to an embodiment of the present invention, the electrical connection is achieved by a contact pressure between the one or more first flexible conductors and the one or more second flexible conductors being pressed against each other when the at least one male profile has been inserted into the at least one female profile.
According to an embodiment of the present invention, the one or more first and second flexible conductors are arranged on at least one side of the first and second flexible and electrically insulating layers, respectively, as printed electronics.
According to an embodiment of the present invention, the first and second flexible and electrically insulating layers include at least one material in the group of:
According to an embodiment of the present invention, the first or second unit are at least one building panel in the group of:
According to an embodiment of the present invention, the releasable fastening arrangement is arranged at least partly at panel coupling means of the building panel, the panel coupling means being arranged for coupling adjacent building panels together.
According to an embodiment of the present invention, the releasable fastening arrangement is arranged at one or more of at least one longitudinal side and at least one end side of the building panel for coupling adjacent building panels together and for creating a joint gap width between the adjacent panels.
According to an embodiment of the present invention, the first or second unit is at least one in the group of:
The above mentioned object is also achieved by the above mentioned unit assembly. The unit assembly includes at least one of:
Embodiments of the invention are described in more detail with reference to attached drawings illustrating examples of embodiments of the invention in which:
According to embodiments of the invention a unit including a member of a releasable fastening arrangement is provided. The releasable fastening arrangement is arranged to provide both a mechanical connection and an electrical connection between the unit and another unit with a corresponding member of the releasable fastening arrangement. Furthermore, a unit assembly is provided. The unit assembly includes at least one of a first unit and a second unit according to any of the below described embodiments. The electrical connection provided by the releasable fastening arrangement can provide electrical power from the first unit to the second unit, or vice versa, to drive a power consuming part in the first unit and/or the second unit.
As described above, the male profile 115 in
The first unit 100 further includes a first electrical circuit 120. The first electrical circuit 120 includes at least one first portion 122 including one or more first flexible conductors 124 arranged on at least one side of a first flexible and electrically insulating layer 126. In embodiments, the one or more first flexible conductors 124 are arranged on at least one side of the first flexible and electrically insulating layer 126 as printed electronics. The first flexible and electrically insulating layer 126 may e.g. include at least one material in the group of plastic, rubber, paper, and textile. The first portion 122 is arranged to cover at least a part of the male profile 115, e.g. be arranged around or to follow at least a part of the contour/circumference of the male profile 115. In the embodiment shown in
As described above, the female profile 215 in
The second unit 200 further includes a second electrical circuit 220. The second electrical circuit 220 includes at least one second portion 222 including one or more second flexible conductors 224 arranged on at least one side of a second flexible and electrically insulating layer 226. The second portion 222 is arranged to cover at least a part of the female profile 215, e.g. be arranged around or to follow at least a part of the contour/circumference of the female profile 215. In the embodiment shown in
In the same way as described above for the first electrical circuit 120, the one or more second flexible conductors 224 may be arranged on at least one side of the second flexible and electrically insulating layer 226 as printed electronics, and the second flexible and electrically insulating layer 226 may e.g. include at least one material in the group of plastic, rubber, paper, and textile.
The first member 110 of the releasable fastening arrangement 300 is arranged to provide both a mechanical connection and an electrical connection between the first unit 100 and the second unit 200 including the corresponding second member 210 of the releasable fastening arrangement 300. The mechanical connection and the electrical connection are provided based on the engagement between the at least partially resilient latching arm members 117 of the first member 110 and the slots 217 of the female profile 215. When the male profile 115 is inserted into the female profile 215, the at least partially resilient latching arm members 117 of the first member 110 snaps into the slots 217 of the female profile 215. Thereby, engaging/locking the male profile 115 to the female profile 215. The snap lock function is provided by the at least partially resilient/elastic nature of the latching arm members 117, allowing the latching arm members 117 to be compressed/deformed during the insertion and further relax into the slots 217 of the female profile 215 when inserted. The resilience of the latching arm members 117 may be provided by the latching arm members 117 including, at least partly, one or more elastic material such as e.g. plastic, rubber, composite, wood, or metal.
The electrical connection is provided by contact between the first electrical circuit 120 and the second electrical circuit 220 when the male profile 115 is inserted into the female profile 215. As shown in
In embodiments, the first unit 100 and/or the second unit 200 may include at least one power consuming part, i.e. at least one part, component, unit, arrangement, assembly and/or function which requires power/energy/electricity to operate. The electrical connection provided by the releasable fastening arrangement 300 may in this case be used to provide electrical power, i.e. distribute electricity, to the first 100 or second 200 unit and thereby supply electric power to the power consuming part in the first unit 100 or the second unit 200. The provided electrical power may be either alternating current (AC) or direct current (DC). For example, if the first unit 100 includes a power consuming part, the second unit 200 may be connected to an AC or DC electric power supply and may provide electric power to the power consuming part in the first unit 100 through the electrical connection provided by the releasable fastening arrangement 300. The electrical power provided by the second unit 200 through the electrical connection may then be used in the first unit 100 to drive/operate/run the power consuming part. The second unit 200 may be connected directly to the AC or DC electric power supply or be connected to the AC or DC electric power supply via one or more other units, e.g. one or more first 100 and second 200 units.
When the first unit 100 includes a power consuming part, the power consuming part may be connected to the first electrical circuit 120 of the first unit 100 and the second electrical circuit 220 of the second unit 200 may be connected to an electric power supply. Thus, the electrical connection provided by contact between the first electrical circuit 120 and the second electrical circuit 220, when the male profile 115 is inserted into the female profile 215, allows electrical power to be transferred from the electrical power supply through the second unit 200 to the power consuming part in the first unit 100.
When the second unit 200 includes a power consuming part, the power consuming part may be connected to the second electrical circuit 220 of the second unit 200 and the first electrical circuit 120 of the first unit 100 may be connected to an electric power supply. In this case, the electrical connection provided by contact between the first electrical circuit 120 and the second electrical circuit 220 allows electrical power to be transferred from the electrical power supply through the first unit 100 to the power consuming part in the second unit 200.
In the embodiment shown in
As shown in
According to embodiments of the invention at least one of the first unit 100 and the second unit 200 are a building panel including a heat providing layer, the heat providing layer comprising the first electronic circuit 120 and the second electronic circuit 220, respectively. The building panel may e.g. be a floor panel, a wall panel or a ceiling panel. In such embodiments, the releasable fastening arrangement 300 may provide a mechanical connection and an electrical connection between two adjacent building panels such that the two building panels are mechanically fastened to each other, and electricity is provided between the heat providing layers of the two building panels. The releasable fastening arrangement 300 may be arranged at least partly at panel coupling means of the building panels. The panel coupling means may be arranged for coupling adjacent building panels together and may e.g. be a tongue/groove type of coupling means. Furthermore, the releasable fastening arrangement 300 may be arranged at one or more of at least one longitudinal side and at least one end side of the building panels for coupling adjacent building panels together and for creating a joint gap width between the adjacent panels.
With reference to
In the embodiment shown in
In embodiments, the second unit 200 may be a rack, shelf, base or similar to which one or more first units 100 can be mounted/connected/fastened using the releasable fastening arrangement 300 according to the invention. The first unit 100 may in such embodiments be any of a store element, a loudspeaker, a display, a lighting device, a sensor, a camera, and a wireless device. In embodiments, the second unit 200 may be a rack e.g. mounted in a ceiling or under a cabinet. The second member 210 of the second unit 200 may include one or more female profiles 215 to which one or more first units 100 including one or more corresponding male profiles 115 can be connected. For example, the second member 210 of the second unit 200 may include a large number of female profiles 215 such that several first units 100 with one or two corresponding male profiles 115 can be mounted to the second unit 200 at different locations along the second unit 200. The first unit 100 may in this case e.g. be a spotlight or a loudspeaker. The second electrical circuit 220 of the second unit 200 may be connected to an electric power supply and hence provide electric power to the first electrical circuit 120 of the first unit 100 through the electric connection provided by the releasable fastening arrangement 300. The provide electric power may be used to operate the first unit 100, e.g. drive a power consuming part in the first unit 100 as previously described. The first unit 100 may e.g. be a lighting device comprising a lamp and the electric power provided from the second unit 200 through the releasable fastening arrangement 300 to the first unit 100 may be used to light the lamp.
The strength of the mechanical connection provided by the releasable fastening arrangement 300 may be adapted based on at least one of a weight of the first unit 100 or the second unit 200, an orientation of the first unit 100 or the second unit 200, and an environment in which the releasable fastening arrangement 300 is used. The orientation of the first unit 100 or the second unit 200 may be an orientation in which the first unit 100 or the second unit 200 mainly extends and may e.g. be a mainly horizontal or vertical direction. Factors in the environment which may affect a desired strength of the mechanical connection may e.g. be vibrations, temperature, and/or humidity.
The strength of the mechanical connection may e.g. be adapted to be higher/stronger when the first unit 100 is arranged to hang from the second unit 200, then when both first unit 100 and the second unit 200 are arranged to be supported by e.g. a floor.
In various embodiments, the strength of the mechanical connection may be adapted by e.g. changing the material and dimensions of the at least one male profile 115 and the at least one female profile 215, as well as by changing the number of male 115 and female 215 profiles.
In embodiments, the mechanical connection provided by the releasable fastening arrangement 300 is capable of carrying, i.e. can hold/withstand and thus not be released by, a force corresponding to one to five times the gravity force related to the weight of the first unit 100 or the second unit 200. The mechanical connection may hence keep the first unit 100 and the second unit 200 connected as long as the first unit 100 and the second unit 200 are not pulled away from each other with a force exceeding a force corresponding to one to five times the weight of the first unit 100 or the second unit 200.
In various embodiments, the mechanical connection provided by the releasable fastening arrangement 300 is released by a force corresponding to two to five times the gravity force related to the weight of said first unit 100 or said second unit 200. In other words, the mechanical connection between the first unit 100 and the second unit 200 can be released by pulling the first unit 100 and the second unit 200 away from each other with a force exceeding a force corresponding to two to five times the weight of the first unit 100 or the second unit 200.
The above given forces are non-limiting examples and, as described above, the strength of the mechanical connection may be adapted based on the weight and/or orientation of the first unit 100 and/or the second unit 200, as well as based on the environment in which the releasable fastening arrangement 300 is used.
Number | Date | Country | Kind |
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1950456-2 | Apr 2019 | SE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/SE2020/050379 | 4/10/2020 | WO | 00 |