Non-wiring type magnetic conductive track power supply device and lighting system thereof

文档序号:1274902 发布日期:2020-08-25 浏览:29次 中文

阅读说明:本技术 一种无接线式磁吸导电轨道供电装置及其照明系统 (Non-wiring type magnetic conductive track power supply device and lighting system thereof ) 是由 刘义军 康晓锋 于 2020-06-23 设计创作,主要内容包括:本发明提供一种无接线式磁吸导电轨道供电装置及照明系统,包括用以进行高低压转换的电源盒,电源盒可拆卸安装在86暗盒上,电源盒朝向86暗盒的一面设有用以分别与零线、火线及地线一一对应电性连接的零线接口和火线接口;电源盒的至少一侧设有突伸出中空内腔外部且用以安装磁吸导电轨道的引导部。本申请所提供的无接线式磁吸导电轨道供电装置,可以安装在墙体和/或天花板预留的86暗盒处并直接连接86暗盒内部的零火(地)线,简化了电源盒的接线步骤,降低了接线错误的风险,安装安全方便快捷。(The invention provides a wireless magnetic conductive track power supply device and a lighting system, which comprise a power supply box for high-voltage and low-voltage conversion, wherein the power supply box is detachably arranged on a 86 cassette, and one surface of the power supply box facing the 86 cassette is provided with a zero line interface and a live line interface which are respectively electrically connected with a zero line, a live line and a ground wire in a one-to-one correspondence manner; at least one side of the power supply box is provided with a guide part which protrudes out of the hollow inner cavity and is used for installing the magnetic conductive track. The utility model provides a conductor rail power supply unit is inhaled to no wiring formula magnetism can install 86 magazine department and the inside zero fire (ground) line of direct connection 86 magazine of reserving in wall body and/or ceiling, has simplified the wiring step of power pack, has reduced the risk of wiring mistake, installs safe convenient and fast.)

1. A wireless magnetic conductive track power supply device comprises a power supply box (1) for high-voltage and low-voltage conversion, and is characterized in that the power supply box (1) is detachably mounted on a 86 hidden box (2), and a zero line interface (15) and a live line interface (16) which are electrically connected with a zero line and a live line in a one-to-one correspondence mode are arranged on one surface, facing the 86 hidden box (2), of the power supply box (1); at least one side of the power supply box (1) is provided with a guide part (111) which protrudes out of the hollow inner cavity and is used for installing the magnetic conductive track (3).

2. The wireless magnetic conductive track power supply device according to claim 1, wherein the power supply box (1) comprises an insulating and hollow power supply face shell (11), a hollow power supply bottom shell (12) matched with the power supply face shell (11), a PCB (13) and a PCB bracket (14) for mounting the PCB (13), the zero line interface (15) and the fire line interface (16) are arranged on the back of the power supply bottom shell (12) facing one side of the 86 hidden box (2), the left side and the right side of the power supply bottom shell (12) are provided with connecting parts locked on the 86 hidden box (2) through screws, and the guiding parts (111) are specifically arranged on the power supply face shell (11).

3. The magnetic conductive rail power supply device without wire connection according to claim 2, wherein the power supply panel shell (11) is integrally formed with the guide portion (111).

4. The wireless magnetic conductive track power supply device according to claim 3, wherein at least one elastic plug bush (18) for being clamped with the copper sheet of the magnetic conductive track (3) is installed inside the power supply face shell (11).

5. The magnetic conductive rail power supply device without connection according to any claim 1 to 4, wherein the power supply box (1) is installed on a wall 86 cassette (2).

6. The utility model provides a lighting system, includes power supply unit, installs track lighting apparatus (5) on track (3) are inhaled to magnetism, and dispose in track lighting apparatus (5), be used for wireless control the drive power supply and the bluetooth module of track lighting apparatus (5), power supply unit is including power pack (1) that is used for carrying out the high-low voltage conversion, power pack (1) is equipped with zero line interface (15) and live wire interface (16) that are used for zero line and live wire in external 86 magazine (2), power pack (1) is including power panel (11) and PCB board (13), its characterized in that, install control panel (4) on power panel (11), PCB board (13) with control panel (4) and track lighting apparatus (5) electric connection.

7. The wireless magnetic conductive rail power supply device according to claim 6, wherein the control panel (4) can be a button type, a touch type or a voice control panel.

Technical Field

The invention relates to the technical field of magnetic suction tracks, in particular to a wireless magnetic suction conductive track power supply device. The invention also relates to a lighting system comprising the wireless magnetic conductive track power supply device.

Background

At present, the electricity taking modes of the track and the power supply box on the market are mainly two: the first type is that a power supply box is hidden in a suspended ceiling, a 220V zero-fire connecting wire is connected into the power supply box, the power supply box converts 220V high voltage into 42V low voltage, the power supply box extends out of the connecting wire, and the connecting wire is fixedly connected into an end junction box of a track through a screw; the second electricity taking mode is as follows: the 220V zero-fire connecting line is connected into the power box, the power box is fixed on the track in a magnetic attraction mode, and the high voltage 220V is converted into the low voltage 42V to supply power to the track.

However, the two electricity taking methods have the following defects: 1. the power supply box needs to be wired independently, and the external leakage of the electric wire influences the overall attractiveness; 2. because the power pack is usually installed in higher furred ceiling or ceiling department for wiring installation and maintenance are comparatively inconvenient.

Disclosure of Invention

The invention aims to provide a wireless magnetic conductive track power supply device, which at least solves the technical problem.

The invention also aims to provide a lighting system comprising the wireless magnetic conductive track power supply device, so that various lamps on the track can be conveniently controlled.

The invention provides a non-wiring type magnetic conductive track power supply device which comprises a power supply box for performing high-voltage and low-voltage conversion, wherein the power supply box is detachably mounted on a 86 cassette, and a zero line interface and a live line interface which are respectively electrically connected with a zero line and a live line in a one-to-one correspondence manner are arranged on one surface of the power supply box facing the 86 cassette; at least one side of the power supply box is provided with a guide part which protrudes out of the hollow inner cavity and is used for installing the magnetic conductive track.

Preferably, the power supply box comprises an insulating and hollow power supply face shell, a hollow power supply bottom shell matched with the power supply face shell, a PCB and a PCB support used for mounting the PCB, the zero line interface and the fire line interface are arranged on the back of the power supply bottom shell facing one side of the 86-type cassette, the left side and the right side of the power supply bottom shell are provided with connecting parts locked on the 86-type cassette through screws, and the guide parts are specifically arranged on the power supply face shell.

Preferably, the power supply panel case is integrally formed with the guide portion.

Preferably, at least one elastic plug bush used for being clamped with a copper sheet of the magnetic conductive track is installed inside the power supply face shell.

Preferably, the power supply box is mounted on a wall 86 and on a cassette.

Compared with the prior art, the non-wiring type magnetic conductive track power supply device provided by the application is characterized in that the power supply box is installed on a 86 hidden box reserved on a wall surface or a ceiling, the power supply box is provided with a zero line interface and a live line interface, a ground line interface can be further arranged according to requirements, the zero line in the 86 hidden box, the live line and the ground line are correspondingly connected into the corresponding zero line one to one, the live line and ground line interface is electrically connected with the inside of the power supply box, the power supply is directly supplied to the magnetic conductive track, the installation is convenient and fast, even if the installation of the power supply box and part of guide rails can be conveniently and quickly completed in the position of the 86 hidden box with the lower height, the wiring step of the power supply box is simplified.

The invention also provides a lighting system, which comprises a power supply device, track lighting equipment arranged on the magnetically attracted conductive track, a driving power supply and a Bluetooth module, wherein the driving power supply and the Bluetooth module are arranged on the track lighting equipment and used for wirelessly controlling the track lighting equipment, the power supply device comprises a power supply box used for carrying out high-low voltage conversion, the power supply box is provided with a zero line interface, a live line interface and a ground line interface which are used for externally connecting a zero line, a live line and a ground line in the 86-type cassette, the power supply box comprises a power supply face shell and a PCB, the power supply face shell is provided with a control panel, and the PCB is electrically connected with the control panel and the track lighting equipment.

Preferably, the control panel may be a key type, touch type or voice control panel.

The lighting system comprising the power supply device has the technical advantages of the power supply device.

Drawings

In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.

Fig. 1 is a schematic structural view of a wireless magnetic conductive track power supply device provided in the present invention;

FIG. 2 is an exploded view of FIG. 1;

FIG. 3 is a schematic view of the PCB board and the PCB bracket of FIG. 2 after being assembled;

FIG. 4 is a schematic view of the internal structure of FIG. 1;

fig. 5 is a schematic view of the wireless magnetically conductive rail power supply device and the magnetically conductive rail according to the present invention;

fig. 6 to 8 are schematic views illustrating the installation of the lighting system provided by the present invention.

The system comprises a power supply box 1, a power supply box 2-86, a magnetic conductive track 3, a control panel 4 and a track lighting device 5;

11-a power supply face shell, 12-a power supply bottom shell, 13-a PCB (printed Circuit Board), 14-a PCB support, 15-a zero line interface, 16-a live wire interface, 17-a live wire interface and 18-an elastic plug bush; 111-guide portion.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

In order that those skilled in the art will better understand the disclosure, the invention will be described in further detail with reference to the accompanying drawings and specific embodiments.

Referring to fig. 1 to 5, fig. 1 is a schematic structural diagram of a wireless magnetic conductive track power supply device provided in the present invention; FIG. 2 is an exploded view of FIG. 1; FIG. 3 is a schematic view of the PCB board and the PCB bracket of FIG. 2 after being assembled; FIG. 4 is a schematic view of the internal structure of FIG. 1; fig. 5 is a schematic view of the wireless magnetically conductive rail power supply device and the magnetically conductive rail according to the present invention.

The invention provides a wireless magnetic conductive track power supply device, which comprises a power supply box 1 for realizing high-voltage and low-voltage conversion, for example, 220V high voltage can be converted into 42V low voltage, the power supply box 1 can be detachably arranged on a 86 cassette 2 reserved on a wall surface or a top plate, for example, the power supply box 1 is locked on the 86 cassette 2 through screws or is connected with the 86 cassette 2 in a clamping way, one surface of the power supply box 1 facing the 86 cassette 2 is provided with a null line interface 15 and a live line interface 16, or the power supply box 1 is provided with the null line interface 15 and the live line interface 16 according to the actual wiring condition of the 86 cassette 2, a ground wire interface 17, a 220V null line interface, a live line interface and a ground wire interface 17 which are respectively connected with the null line interface 15, the live line interface 16 and the ground wire interface 17 at the rear part of the power supply box 1 can be additionally arranged, after the power supply box 1 is protruded out of the wall surface and/or the top plate, therefore, high voltage electricity is converted into 42V low voltage electricity to supply power to the magnetically-attracted conductive track 3, the power supply box 1 is not limited to be arranged on a top plate and can be arranged on any position of a reserved 86 cassette 2 such as a wall, and the power supply box 1 can adopt a common track power supply box in the market.

The core of this application lies in, combines together independent power pack 1 and 86 magazine 2 of the power supply of conductor track 3 with traditional individual wiring to magnetism, has solved the technical problem that the mounted position is restricted and the installation is inconvenient.

The power supply box 1 comprises a power supply face shell 11, a power supply bottom shell 12, a PCB 13 and a PCB support 14, wherein the power supply face shell 11 and the power supply bottom shell 12 are both hollow and insulated shells, the PCB 13 is arranged on the PCB support 14 and is combined and arranged inside the power supply face shell 11 and the power supply bottom shell 12, the PCB 13 plays a role of the power supply box and can convert alternating current high voltage (such as 220V) of commercial power into direct current low voltage (such as 42V) for supplying power to the magnetic attraction conductive track 3, a zero line interface 15, a fire line interface 16 and a ground line interface 17 are arranged on the back of one side of the power supply bottom shell 12 facing to the cassette 86, a zero line, a fire line and a ground line penetrate through each interface to be electrically connected with the PCB 13, the left side and the right side of the power supply face shell 11 are respectively provided with a buckle, the power supply bottom shell 12 is provided with two clamping grooves which are clamped and arranged, in addition, the left side and the right side of, thereby mounting the power supply box 1 as a whole on the cassette 2 at 86.

In order to realize the firm installation with the conductive track 3 is inhaled to magnetism, can install at least one fixed slot on power pack 1, the conductive track 3 is inhaled to magnetism is corresponding to be equipped with at least one buckle, fixed slot and buckle one-to-one joint prevent that the conductive track 3 is inhaled to magnetism from shifting.

Further, at least one side of the power supply box 1 is provided with a guide portion 111 protruding out of the hollow inner cavity of the power supply box, the guide portion 111 is provided with a U-shaped groove, and the groove width is equal to or slightly larger than the size of the magnetically attracted conductive rail 3, so as to guide and fix the magnetically attracted conductive rail 3 and ensure the stability of the installation of the guide rail. The guiding portions 111 are specifically disposed on the power panel 11, and the power panel 11 and the guiding portions 111 are integrally formed to ensure the overall strength of the power panel 11, and of course, the power panel 11 and the guiding portions 111 may also be fastened and connected by bolts.

In a specific embodiment, the power supply box 1 is installed at the 86 dark box 2 and the magnetically conductive track 3 is installed on the power supply box 1, when installing, firstly, the power supply box 1 is installed at the 86 dark box 2; then, the magnetically conductive track 3 is inserted into the power supply box 1 through the guiding part 111 to realize electrical connection; thirdly, fixing the magnetic conductive track 3 on the wall body through a screw; and finally, magnetically mounting the track lighting equipment 5 on the magnetically-attracted conductive track 3.

The power supply box 1 which takes electricity from the zero fire (ground) wire in the 86 cassette 2 directly supplies power to the magnetic conductive track 3, thereby avoiding the complicated operation of wiring and reducing the installation cost.

In this embodiment, the inside elasticity plug bush 18 (current structure) that is equipped with of power face shell 11, elasticity plug bush 18 can be one, also can locate many places, can also locate power face shell 11 around, elasticity plug bush 18 passes through screw fixed mounting in power face shell 11, the magnetism is inhaled being equipped with the copper sheet extension of conductive track 3 one end, magnetism is inhaled conductive track 3 one end and is inserted the horn mouth department to the inside elasticity plug bush 18 of power pack 1 through the copper sheet extension, simple to operate, the electricity is connected stably.

In another embodiment, the power supply box 1 is installed on the wall 86 and the cassette 2 to fix the magnetically conductive track 3 on the wall, and can also be connected into a junction box at the end of the track through a wire to supply power to the track.

When the installation is carried out, the following steps are specifically carried out:

firstly, fixedly connecting a zero line, a live line and a ground wire to the zero line and ground interface positions corresponding to the bottom shell of the power box 1 respectively;

and step two, fixedly mounting the power supply bottom shell 12 through a standard screw hole interval of 60mm of the 86 cassette 2, mounting the power supply face shell 11 on a base of the power supply box 1 through buckles on two sides, and inserting one end of a male head of the magnetic conductive track 3 into the elastic plug bush 18 corresponding to the power supply box 1 through the guide part 111 of the power supply box 1, so that the mounting of the track and the power supply box 1 can be completed.

In addition, the present invention further provides an illumination system, which includes the power supply device, the track illumination device 5 assembled on the magnetically conductive track 3 in an absorption manner, and the driving power supply and the bluetooth module (not shown) disposed on each track illumination device 5, where the driving power supply and the bluetooth module are assembled on the magnetically conductive track 3 at the same time to implement wireless control of the track illumination device 5, and it should be noted that, with reference to the prior art, specific structures and working principles of the track illumination device 5, the driving power supply, and the bluetooth module are not expanded herein.

The power supply device comprises a power supply box 1, the power supply box 1 is used for high-low voltage conversion, a track lighting device 5 is arranged on a magnetic conductive track 3, in the embodiment of the application, the track lighting device 5 is a traditional lighting device such as a ceiling track lamp, a wall track lamp or a grille lamp, the power box 1 is provided with a zero line interface and a live line interface (ground wire), used for connecting 86 zero line and live wire (ground wire) in the cassette 2, the power supply box 1 comprises a power supply panel shell 11 and a PCB 13, the power supply box 1 is specifically the power supply box 1 described in the above embodiments, in the embodiment of the present application, the power supply panel 11 is provided with the control panel 4, or the control panel 4 replaces the power supply panel shell 11 to be used as an outer cover panel shell, the PCB 13 and the control panel 4 are electrically connected with the track lighting device 5, the control panel 4 is controlled to realize functional operation control such as starting and stopping of the track lighting equipment 5.

Please refer to fig. 6 to 8. In the embodiment shown in fig. 6, the power supply box 1 is installed on the ceiling 86 and the cassette 2, the power supply box 1 and the track lighting device 5 are installed on the magnetically conductive track 3, the power supply box 1 supplies power to the magnetically conductive track 3 after high-low voltage conversion, the control panel 4 is arranged on the wall surface and electrically connected with the track lighting device 5 through an electric wire, so that the operation of the track lighting device 5 is controlled, external open wires are not needed for installation and exposure, the structure is simple, and the safety is higher.

In the embodiment shown in fig. 7, the power supply box 1 is installed on the wall 86 hidden box 2, the track lighting device 5 is installed on the magnetically conductive track 3, the power supply box 1 is integrated with the control panel 4, the power supply box 1 supplies power to the magnetically conductive track 3, the control panel 4 is electrically connected with the track lighting device 5 through a wire, so that the track lighting device 5 is controlled to work, and further, the power supply box 1 can be installed on the conductive track to realize wireless power supply.

In the embodiment shown in fig. 8, the power supply box 1 is installed on the wall 86 and the cassette 2, the power supply box 1 and the wall track lamp are installed on the wall track, the ceiling track lamp is installed on the ceiling track, the power supply box 1 is provided with the control panel 4, and the control panel 4 controls the on/off of the ceiling track lamp and the wall track lamp.

The control panel 4 can be a key type or a touch or voice control type switch panel, the key type panel is provided with a switch lamp key (including a master control switch), and can also be further provided with a brightness adjusting key, a contextual model and other keys, the control panel 4 can also be a touch panel or a voice control panel, the function of the control panel is the same as that of the key type panel, personnel can control each function of the track lighting equipment 5 through the touch panel or voice control, and the function refers to the prior art, and the text does not expand any more.

It is noted that, in this specification, relational terms such as first and second, and the like are used solely to distinguish one entity from another entity without necessarily requiring or implying any actual such relationship or order between such entities.

The wireless magnetic conductive track power supply device and the lighting system thereof provided by the invention are described in detail above. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts. It should be noted that, for those skilled in the art, it is possible to make various improvements and modifications to the present invention without departing from the principle of the present invention, and those improvements and modifications also fall within the scope of the claims of the present invention.

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