WO2022056871A1 - 灯具组件、灯具系统、灯具系统的组装方法及灯具系统的拆卸方法 - Google Patents

灯具组件、灯具系统、灯具系统的组装方法及灯具系统的拆卸方法 Download PDF

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Publication number
WO2022056871A1
WO2022056871A1 PCT/CN2020/116307 CN2020116307W WO2022056871A1 WO 2022056871 A1 WO2022056871 A1 WO 2022056871A1 CN 2020116307 W CN2020116307 W CN 2020116307W WO 2022056871 A1 WO2022056871 A1 WO 2022056871A1
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WO
WIPO (PCT)
Prior art keywords
assembly
connector
telecommunication
lamp
light
Prior art date
Application number
PCT/CN2020/116307
Other languages
English (en)
French (fr)
Inventor
朱志洪
黄国豪
孙君毅
Original Assignee
瑞仪光电(苏州)有限公司
瑞仪光电股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 瑞仪光电(苏州)有限公司, 瑞仪光电股份有限公司 filed Critical 瑞仪光电(苏州)有限公司
Priority to PCT/CN2020/116307 priority Critical patent/WO2022056871A1/zh
Priority to TW109137496A priority patent/TW202212735A/zh
Priority to PCT/CN2021/119154 priority patent/WO2022057908A1/zh
Priority to TW110134962A priority patent/TWI779841B/zh
Priority to CN202180003886.3A priority patent/CN114667411B/zh
Priority to EP21868730.9A priority patent/EP4215809A4/en
Priority to US17/655,995 priority patent/US11686462B2/en
Publication of WO2022056871A1 publication Critical patent/WO2022056871A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/06Arrangement of electric circuit elements in or on lighting devices the elements being coupling devices, e.g. connectors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S4/00Lighting devices or systems using a string or strip of light sources
    • F21S4/20Lighting devices or systems using a string or strip of light sources with light sources held by or within elongate supports
    • F21S4/28Lighting devices or systems using a string or strip of light sources with light sources held by or within elongate supports rigid, e.g. LED bars
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • F21S8/06Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
    • F21S8/061Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension with a non-rigid pendant, i.e. a cable, wire or chain
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/008Suspending from a cable or suspension line
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/005Supporting, suspending, or attaching arrangements for lighting devices; Hand grips for several lighting devices in an end-to-end arrangement, i.e. light tracks
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/0001Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
    • G02B6/0011Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
    • G02B6/0081Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
    • G02B6/0083Details of electrical connections of light sources to drivers, circuit boards, or the like
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/0001Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
    • G02B6/0011Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
    • G02B6/0081Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
    • G02B6/0086Positioning aspects
    • G02B6/0088Positioning aspects of the light guide or other optical sheets in the package

Definitions

  • the present disclosure relates to light-emitting devices, and more particularly, to a lighting assembly, a lighting system, a method for assembling the lighting system, and a method for disassembling the lighting system.
  • each independent pendant lamp must have its own cable to be able to energize and emit light, so the exposed cables are not only assembled It is more complicated and expensive, and it will lead to a messy visual effect in the space.
  • the purpose of the present disclosure is to provide a lamp assembly, which can provide quick assembly and disassembly between lamps, and can effectively save the cost of system construction.
  • the lamp assembly includes lamps and a series connection assembly.
  • the lamp includes a frame, a light source component and a telecommunication component.
  • the frame body has an accommodating space.
  • the light source assembly is fixed on the frame body.
  • the telecommunication component is arranged in the accommodating space and is telecommunicationly connected with the light source component, wherein the telecommunication component includes a first connector and a second connector, and the first connector and the second connector are connected to each other through a power line and a signal line.
  • the tandem assembly includes a telecommunication connector, wherein the tandem assembly is configured to be connected to the above-mentioned light fixture and another light fixture through the telecommunication connector.
  • the telecommunication connection element of the above-mentioned cascading assembly includes a third connector and a fourth connector, and the third connector and the fourth connector are connected to each other through a power line and a signal line.
  • the third connector of the series connection element is telecommunicationly connected to the second connector of the lamp, and the fourth connector of the series connection element is telecommunicationly connected to another lamp.
  • the above-mentioned serial connection assembly further includes an external terminal, the external terminal is connected between the third connector and the fourth connector, and the external terminal is telecommunicationly connected to the external device.
  • the above-mentioned external device is used to provide an environment sensing function.
  • the above-mentioned external device is used to provide a non-illumination function.
  • the above-mentioned cascading assembly further includes a casing and a bottom cover.
  • the housing has an interior space, and the bottom cover is configured to open or close the interior space.
  • the telecommunication connections are arranged in the interior space.
  • the above-mentioned light source assembly includes a light emitting unit and a light guide plate, the light emitting unit is disposed in the accommodating space, the light guide plate is connected to the frame, and the light incident surface of the light guide plate is disposed adjacent to the light source.
  • the above-mentioned lamp assembly further includes a support member, the top surfaces of the lamp and the serial connection assembly respectively have corresponding grooves, a part of the support member is embedded in the groove of the lamp, and the other part of the support member has a corresponding groove. A part is embedded in the groove of the series connection element.
  • each of the above-mentioned lamps and the tandem assembly is provided with a suspension wire.
  • the lighting system includes at least two lighting fixtures and at least one tandem component.
  • Each lamp includes a frame, a light source component and a telecommunication component.
  • the frame body has an accommodating space.
  • the light source assembly is fixed on the frame body.
  • the telecommunication component is arranged in the accommodating space and is telecommunicationly connected with the light source component.
  • the telecommunication component includes a first connector and a second connector, and the first connector and the second connector are connected to each other through a power line and a signal line.
  • the tandem assembly includes telecommunication connections. The tandem assembly is connected between adjacent lamps through telecommunication connectors.
  • the telecommunication connection element of the above-mentioned cascading assembly includes a third connector and a fourth connector, and the third connector and the fourth connector are connected to each other through a power line and a signal line.
  • the third connector of the cascading component is telecommunicationly connected to the second connector of the lamp adjacent to the first end of the cascading component
  • the fourth connector of the cascading component is telecommunicationly connected to the second end of the cascading component. the first connector of the adjacent luminaire.
  • the above-mentioned serial connection assembly further includes an external terminal, the external terminal is connected between the third connector and the fourth connector, and the external terminal is telecommunicationly connected to the external device.
  • the above-mentioned external device is used to provide an environment sensing function.
  • the above-mentioned external device is used to provide a non-illumination function.
  • the above-mentioned cascading assembly further includes a casing and a bottom cover, the casing has an inner space communicated with the accommodating space of the frame body of the adjacent lamp, and the bottom cover is configured to open or close the inner space. .
  • the telecommunication connections are arranged in the interior space.
  • the above-mentioned light source assembly includes a light emitting unit and a light guide plate, the light emitting unit is disposed in the accommodating space, the light guide plate is connected to the frame, and the light incident surface of the light guide plate is disposed adjacent to the light source.
  • the above-mentioned lamp system further includes a support member, the top surfaces of the lamp and the cascading assembly respectively have corresponding grooves, a part of the support member is embedded in the groove of the lamp, and the other part of the support member has a corresponding groove. A part is embedded in the groove of the series connection element.
  • each of the above-mentioned lamps and the tandem assembly is provided with a suspension wire.
  • the first connector of the endmost lamp among the above-mentioned lamps is connected to an external power source.
  • the remaining lamps and the cascading components in the above-mentioned lamps are connected to the telecommunication connectors of the adjacent cascading components through the telecommunication components, so that the remaining lamps, the cascading components and the most terminal lamps form a telecommunication series connection.
  • each lamp includes a frame body, a light source assembly and a telecommunication assembly
  • the frame body has a accommodating space
  • the light source assembly is fixed on the frame body
  • the telecommunication assembly is arranged in the accommodating space and is telecommunicationly connected with the light source assembly
  • the telecommunication assembly is The assembly includes a first connector and a second connector, and the first connector and the second connector are connected to each other through a power line and a signal line.
  • At least one tandem assembly is provided, the tandem assembly includes a telecommunication connection.
  • the opposite ends of the main lamps in the lamps are respectively suspended from the ceiling through suspension wires, and the first connectors of the telecommunication components of the main lamps are connected to the external power supply.
  • the first end of the series connection assembly is telecommunicationly connected to the second connector of the main lamp, and the second end of the series connection assembly is suspended on the ceiling through the suspension wire.
  • the first connector of the subordinate light fixture in the light fixture is telecommunicationly connected to the second end of the series connection assembly, and the end of the subordinate light fixture away from the series connection assembly is suspended on the ceiling through the suspension wire.
  • a lighting system includes at least two lamps and at least one serial connection assembly.
  • Each lamp includes a frame, a light source assembly and a telecommunication assembly.
  • the frame has an accommodating space, the light source assembly is fixed on the frame, and the telecommunication assembly is arranged on the It is accommodated in the accommodating space and is telecommunicationly connected with the light source assembly.
  • the telecommunication assembly includes a first connector and a second connector, and the first connector and the second connector are connected to each other through a power line and a signal line.
  • the series connection assembly is telecommunicationly connected to the second connector of the lamp adjacent to the first end of the series connection assembly through the telecommunication connector, and the series connection assembly is telecommunicationly connected to the second connector adjacent to the second end of the series connection assembly through the telecommunication connection member.
  • the telecommunication component of the lamp to be removed is separated from the telecommunication connecting piece of the adjacent series-connected component, and at this time, one end of the lamp to be removed is fixed by the suspension wire. Detach the pendant wire from the fixture to be removed to remove the fixture to be removed.
  • the lighting system of the present disclosure mainly utilizes the design of the serial connection components and the telecommunication connectors of the lighting to achieve the telecommunication transmission function required for the jumping and function expansion of the lighting, thereby effectively saving the system cost, and using simple
  • the installation method completes the telecommunication connection between lamps or between lamps and external devices.
  • FIG. 1 is a schematic device diagram illustrating a lighting system according to an embodiment of the present disclosure:
  • FIG. 2 is a block diagram illustrating a series connection state of a lighting system according to an embodiment of the present disclosure:
  • FIG. 3 is an enlarged schematic diagram illustrating part A of FIG. 1;
  • FIG. 4 is an enlarged schematic diagram of part B of FIG. 1 .
  • FIG. 1 is a schematic diagram illustrating a device of a lighting system according to an embodiment of the present disclosure
  • FIG. 2 is a block schematic diagram illustrating a series connection state of the lighting system according to an embodiment of the present disclosure.
  • the lighting system 100 of this embodiment mainly includes at least two lightings (eg, lighting 200 and lighting 300 ) and at least one serial connection component 400 .
  • the lamp 200 and the lamp 300 have substantially the same structure, the same symbols represent the same components, and the lamp 200 and the lamp 300 are connected in series with each other through the series connection assembly 400 .
  • the lamp 200 (or the lamp 300 ) of this embodiment includes a frame body 210 , a light source assembly 220 and a telecommunication assembly 230 .
  • the frame body 210 has an accommodating space 211 .
  • the light source assembly 220 is fixed on the frame body 210 .
  • the light source assembly 220 includes a light emitting unit (not shown) and a light guide plate 221 , wherein the light emitting unit may be an LED light bar disposed in the accommodating space 211 of the frame body 210 .
  • the portion of the light guide plate 221 close to the light incident surface is located in the accommodating space 211 of the frame body 210 , and the light emitting unit is adjacent to the light incident surface of the light guide plate 221 for providing light to the light guide plate 221 .
  • the telecommunication component 230 is disposed in the accommodating space 211 of the frame body 210 and is telecommunicationly connected with the light source component 220 .
  • the telecommunication component 230 includes a first connector 231 and a second connector 232, and the first connector 231 and the second connector 232 are connected to each other through power lines and signal lines.
  • the first connector 231 and the second connector 232 can be connected to each other through two power lines, two signal transmission lines, and one ground line.
  • the signal transmission here can mainly adopt Digital Addressable Lighting Interface (DALI) standard, Power Line Communication (PLC) standard, Controller Area Network (CAN) standard, RS- 485 standard, DMX, I2C, RS-232, Ethernet (Ethernet), proprietary protocol or other various protocols well known to those skilled in the art as the transmission method.
  • DALI Digital Addressable Lighting Interface
  • PLC Power Line Communication
  • CAN Controller Area Network
  • the first connector 231 is connected to the light source assembly 220 , and a driver 240 is disposed between the first connector 231 and the light source assembly 220 , wherein the driver 240 is configured to convert the alternating current from the first connector 231 into direct current , for the light source assembly 220 to use.
  • the first connector 231 and the second connector 232 are respectively disposed in the accommodating space 211 of the frame body 210 , and are respectively close to opposite ends of the frame body 210 .
  • the first connector 231 and the second connector 232 of the lamp 200 (or the lamp 300 ) are respectively configured to be telecommunicationly connected to the adjacent serial components 400 .
  • the series connection element 400 has opposite first ends 401 and second ends 402 , the lamp 200 is adjacent to the first end 401 of the series connection element 400 and is telecommunicationly connected to the series connection element 400 , and the lamp 300 is adjacent to the series connection element 400 .
  • the second end 402 of the connecting assembly 400 is connected to the serial connecting assembly 400 by telecommunication.
  • the cascading assembly 400 mainly includes a casing 410 , a bottom cover 420 and a telecommunication connector 430 .
  • the housing 410 has an inner space 411 .
  • the bottom cover 420 is disposed at the bottom of the casing 410 and configured to open or close the inner space 411 .
  • the telecommunication connector 430 is disposed in the inner space 411 of the housing 410 .
  • the telecommunication connector 430 includes a third connector 431 and a fourth connector 432 , and the third connector 431 and the fourth connector 432 are connected to each other through power lines and signal lines.
  • the third connector 431 is located at the first end 401 of the series connection assembly 400
  • the fourth connector 432 is located at the second end 402 of the series connection assembly 400 .
  • the second connector 232 of the lamp 200 is telecommunicationly connected to the third connector 431 of the first end 401 of the serial assembly 400
  • the first connector 231 of the lamp 300 is telecommunicationly connected to the second end 402 of the series assembly 400 the fourth connector 432.
  • the serial assembly 400 further includes an external terminal 440 .
  • the external terminal 440 is connected between the third connector 431 and the fourth connector 432, and the external terminal 440 is configured for telecommunication connection of the external device A1.
  • the external terminal 440 may be disposed in the inner space 411 of the housing 410 of the serial connection assembly 400 , or may extend outside the housing 410 of the serial connection assembly 400 .
  • the external device A1 may be a device for providing non-lighting functions, for example, the external device A1 may be a horn device, an emergency escape indicating device, a hanging sign device, a surveillance camera, or a rechargeable battery.
  • the external device A1 may be a device for providing an environment sensing function.
  • the external device A1 may be an environment sensor, a motion sensor, or a color sensor.
  • the lamp 200 includes a support member M1
  • the lamp 300 includes a support member M2.
  • the tops of the frames 210 of the lamps 200 and 300 respectively have grooves 212
  • the tops of the casings 410 of the series connection assembly 400 also have grooves 412 .
  • a part of the support member M2 is embedded in the groove 211 of the groove 211 of the frame body 210 of the lamp 300 , and the other part of the support member M2 is It is embedded in the groove 412 of the serial element 400 and is close to the second end 402 .
  • the present disclosure further provides an assembly method of a lighting system.
  • This method mainly includes the following steps. First, at least two of the aforementioned lamps (eg, the lamps 200 and 300 ) and the tandem assembly 400 are provided, wherein the lamps 200 can be used as the main lamps and the lamps 300 can be used as the slave lamps. Then, the opposite ends of the main lamp 200 are respectively suspended from the ceiling through the suspension wires R1, and the first connector 231 of the telecommunication component 230 of the main lamp 200 is connected to the external power source P1 through the power wire P11.
  • the external power source P1 is an external AC power source.
  • the third connector 431 on the first end 401 of the series connection assembly 400 is telecommunicationly connected to the second connector 232 of the main light fixture 200, and the second end 402 of the series connection assembly is suspended from the ceiling through the suspension wire R2 superior.
  • the support member M1 can be inserted into the groove 212 of the frame body 210 of the main lamp 200 first.
  • the first connector 231 of the slave luminaire 300 is then telecommunicationly connected to the fourth connector 432 of the second end 402 of the tandem assembly 400, and the slave luminaire 300 is moved away from One end of the series connection assembly 400 is suspended from the ceiling through the suspension wire R3, so as to complete the installation of the whole set of the lighting system 100 .
  • the support member M2 may be inserted into the groove 412 of the housing 410 of the series connection assembly 400 first.
  • the lamps 200 are the first group of lamps (the last lamps) and are connected to the external power source P1. Therefore, the power provided by the external power source P1 can be transmitted to the series connection component 400 through the telecommunication component 230 of the lamp 200 , and then transmitted to the lamp 300 through the telecommunication connecting member 430 of the series connection component 400 , so that the lamp 200 and the series connection component 400 are transmitted to the lamp 300 . and form a telecommunication series connection with the lamp 300 . In other embodiments, if the lamp 300 continues to be connected to the next set of serial components and the lamp, the power transmitted to the lamp 300 can also be further transmitted to the next set of serial components or lamps through the telecommunication component 230 of the lamp 300 .
  • each group of lamps and series-connected components it is not necessary for each group of lamps and series-connected components to have their own independent external power supply, and only one set of external power supply is required to supply power for multiple groups of lamps and series-connected components, so the overall wiring is simple, easy to install, and saves money. Time.
  • only the external device A1 needs to be connected to the external terminal 440 of the serial assembly 400 , and no additional external power supply or wires are required.
  • the opposite ends of the light fixture 200 are respectively provided with a suspension line R1 , which can be installed on the ceiling.
  • a suspension line R1 which can be installed on the ceiling.
  • the series connection assembly 400 when assembling the series-connected assembly 400 , only one end of the series-connected assembly 400 away from the lamp 200 (eg, the second end 402 ) needs to be installed with a suspension wire R2 , while the end of the series-connected assembly 400 close to the lamp 200 (eg, the first end 402 )
  • the end 402) of the series connection assembly 400 is mainly shared by the combined force when the third connector 431 of the series connection assembly 400 and the second connector 232 of the lamp 200 are interconnected.
  • the series connection assembly 400 in order to improve the combination stability, can be connected to the lamp 200 through the support member M1 as shown in FIG. 3 .
  • the lamp 300 and the series connection assembly 400 may be connected through the support member M2 as shown in FIG. 4 .
  • the present disclosure further provides a disassembly method of a lighting system.
  • This method mainly includes the following steps. First, a light fixture system 100 as shown in FIG. 1 is provided. Next, the telecommunication component 230 of the lamp 300 to be removed is separated from the telecommunication connecting member 430 of the adjacent series-connected assembly 400. At this time, one end of the lamp 300 to be removed is fixed by the suspension wire R3. Then, the suspension wire R3 is separated from the lamp 300 to be removed to remove the lamp 300 to be removed.
  • the disassembly procedure of the lamp system of the present disclosure is relatively safe, and there is no need to worry about the occurrence of the lamp or the series connection component to be disassembled falling to the ground or smashing the staff.
  • the design of the lighting system of the present disclosure when a user removes one set of lamps or series-connected components of the lighting system, there is no need to additionally install or remove the entire set of suspension components, thereby simplifying the structure of the overall lighting system. And simplifies the method of connecting and removing lamps and lanterns.
  • the lighting system of the present disclosure mainly utilizes the design of the telecommunication connecting member of the series connection element and the lighting fixture to achieve the telecommunication transmission function required for the jumping connection and function expansion of the lighting fixture, thereby effectively saving the system cost. , and complete the telecommunication connection between lamps or between lamps and external devices in a simple installation method.

Abstract

一种灯具组件、灯具系统(100)、灯具系统(100)的组装方法及灯具系统(100)的拆卸方法。灯具组件包含灯具(200,300)以及串接组件(400)。灯具(200,300)包含框体(210)、光源组件(220)以及电讯组件(230),框体(210)具有容置空间(211),光源组件(220)固定在框体(210)上,电讯组件(230)设置在容置空间(211)中,且与光源组件(220)电讯连接。电讯组件(230)包含第一连接器(231)及第二连接器(232),且第一连接器(231)与第二连接器(232)之间通过电源线路与讯号线路互相连接,串接组件(400)包含电讯连接件(430),串接组件(400)配置以通过电讯连接件(430)连接至该灯具(200)以及另一灯具(300),由此可有效节省系统成本。

Description

灯具组件、灯具系统、灯具系统的组装方法及灯具系统的拆卸方法 技术领域
本揭露涉及发光装置,且特别是涉及灯具组件、灯具系统、灯具系统的组装方法及灯具系统的拆卸方法。
背景技术
应市场的需求,灯具的变化越来越多元。有一种吊挂式的透明灯具,可同时产生照明及美观的效果。
然而,一般的吊挂式灯具大多使用电缆作为电源连接,如果同时使用多个独立式吊挂灯具时,各个独立式吊挂灯具都要有自己的电缆才能通电发光,因此导致外露的电缆不但组装较复杂,而且成本较高,更会导致空间产生凌乱的视觉效果。
当需要多个灯具互相串接时,虽然只需要单一条电缆,但却会因为无法合理的采用适当的灯具数量以及灯具间隔而产生较高的系统成本。如果利用轨道系统来串接多个灯具,则会存在轨道系统的轨道建置成本昂贵的缺点。除此之外,当灯具本身需要扩充其他非主要照明功能而需要连接外部装置时,这会因为灯具本身外框的因素而产生整合困难的问题。
发明内容
因此,本揭露的目的在于提供一种灯具组件,其可提供灯具之间的快速组装、拆卸,并可有效节省系统建置成本。
根据本揭露的上述目的,提出一种灯具组件。此灯具组件包含灯具以及串接组件。灯具包含框体、光源组件以及电讯组件。框体具有容置空间。光源组件固定在框体上。电讯组件设置在容置空间中且与光源组件电讯连接,其中电讯组件包含第一连接器及第二连接器,且第一连接器与第二连接器之间通过电源线路与讯号线路互相连接。串接组件包含电讯连接 件,其中串接组件配置以通过电讯连接件连接至上述的灯具及另一灯具。
依据本揭露的一实施例,上述的串接组件的电讯连接件包含第三连接器与第四连接器,且第三连接器与第四连接器之间通过电源线路与讯号线路互相连接。串接组件的第三连接器电讯连接于灯具的第二连接器,且串接组件的第四连接器电讯连接于另一灯具。
依据本揭露的一实施例,上述的串接组件还包含外接端子,外接端子连接在第三连接器与第四连接器之间,外接端子与外加装置电讯连接。
依据本揭露的一实施例,上述的外加装置用以提供环境感应机能。
依据本揭露的一实施例,上述的外加装置用以提供非照明机能。
依据本揭露的一实施例,上述的串接组件还包含壳体及底盖。壳体具有内部空间,底盖配置以开启或封闭内部空间。电讯连接件设置在内部空间中。
依据本揭露的一实施例,上述的光源组件包含发光单元及导光板,发光单元设置在容置空间中,导光板连接于框体,且导光板的入光面邻设于光源。
依据本揭露的一实施例,上述的灯具组件还包含支撑件,灯具与串接组件的顶面分别具有对应的沟槽,支撑件的一部分嵌设于灯具的沟槽中,且支撑件的另一部分嵌设于串接组件的沟槽中。
依据本揭露的一实施例,上述的每一个灯具与串接组件的上方设有悬吊线。
根据本揭露的上述目的,另提出一种灯具系统。此灯具系统包含至少两个灯具以及至少一个串接组件。每一个灯具包含框体、光源组件以及电讯组件。框体具有容置空间。光源组件固定在框体上。电讯组件设置在容置空间中且与光源组件电讯连接,电讯组件包含第一连接器及第二连接器,且第一连接器与第二连接器之间通过电源线路与讯号线路互相连接。串接组件包含电讯连接件。串接组件通过电讯连接件连接在相邻的灯具之间。
依据本揭露的一实施例,上述的串接组件的电讯连接件包含第三连接器与第四连接器,且第三连接器与第四连接器之间通过电源线路与讯号线 路互相连接。串接组件的第三连接器电讯连接于与串接组件的第一端相邻的灯具的第二连接器,且串接组件的第四连接器电讯连接于与串接组件的第二端相邻的灯具的第一连接器。
依据本揭露的一实施例,上述的串接组件还包含外接端子,外接端子连接在第三连接器与第四连接器之间,外接端子与外加装置电讯连接。
依据本揭露的一实施例,上述的外加装置用以提供环境感应机能。
依据本揭露的一实施例,上述的外加装置用以提供非照明机能。
依据本揭露的一实施例,上述的串接组件还包含壳体及底盖,壳体具有与相邻的灯具的框体的容置空间连通的内部空间,底盖配置以开启或封闭内部空间。电讯连接件设置在内部空间中。
依据本揭露的一实施例,上述的光源组件包含发光单元及导光板,发光单元设置在容置空间中,导光板连接于框体,且导光板的入光面邻设于光源。
依据本揭露的一实施例,上述的灯具系统还包含支撑件,灯具与串接组件的顶面分别具有对应的沟槽,支撑件的一部分嵌设于灯具的沟槽中,且支撑件的另一部分嵌设于串接组件的沟槽中。
依据本揭露的一实施例,上述的每一个灯具与串接组件的上方设有悬吊线。
依据本揭露的一实施例,上述的灯具中的最末端灯具的第一连接器连接外部电源。上述的灯具中的其余灯具与串接组件通过电讯组件接合到相邻串接组件的电讯连接件,以使其余灯具、串接组件与最末端灯具形成电讯串接。
根据本揭露的上述目的,另提出一种灯具系统的组装方法,包含以下步骤。提供至少两个灯具,每一灯具包含框体、光源组件以及电讯组件,框体具有容置空间,光源组件固定在框体上,电讯组件设置在容置空间中且与光源组件电讯连接,电讯组件包含第一连接器及第二连接器,且第一连接器与第二连接器之间通过电源线路与讯号线路互相连接。提供至少一个串接组件,串接组件包含电讯连接件。将灯具中的主要灯具的相对两端分别通过悬吊线吊设于天花板上,且将主要灯具的电讯组件的第一连接器 连接至外部电源。将串接组件的第一端电讯连接至主要灯具的第二连接器,并将串接组件的第二端通过悬吊线吊设于天花板上。将灯具中的从属灯具的第一连接器电讯连接至串接组件的第二端,并将从属灯具远离串接组件的一端通过悬吊线吊设于天花板上。
根据本揭露的上述目的,另提出一种灯具系统的拆卸方法,包含以下步骤。提供灯具系统,灯具系统包含至少两个灯具及至少一个串接组件,每一个灯具包含框体、光源组件以及电讯组件,框体具有容置空间,光源组件固定在框体上,电讯组件设置在容置空间中且与光源组件电讯连接。电讯组件包含第一连接器及第二连接器,且第一连接器与第二连接器之间通过电源线路与讯号线路互相连接。串接组件通过电讯连接件电讯连接至与串接组件的第一端相邻的灯具的第二连接器,且串接组件通过电讯连接件电讯连接至与串接组件的第二端相邻的灯具的第一连接器。将欲卸除的灯具的电讯组件与相邻的串接组件的电讯连接件分离,此时,欲卸除的灯具的其中一端被悬吊线固定。将悬吊线与欲卸除的灯具分离,以移除欲卸除的灯具。
由上述可知,本揭露的灯具系统主要利用串接组件与灯具的电讯连接件的设计,来达到灯具跳接与功能扩充所需的电讯传递功能,由此可有效节省系统成本,并以简单的安装方式完成灯具之间或灯具与外加装置之间的电讯连接。
附图说明
为了更完整地了解实施例及其优点,现在参照附图做出下列描述,其中:
图1是绘示依照本揭露的实施方式的灯具系统的装置示意图:
图2是绘示依照本揭露的实施方式的灯具系统的串接状态的方块示意图:
图3是绘示图1的A部分放大示意图;以及
图4是绘示图1的B部分放大示意图。
具体实施方式
请同时参照图1及图2,其中图1是绘示依照本揭露的实施方式的灯具系统的装置示意图,图2是绘示依照本揭露的实施方式的灯具系统的串接状态的方块示意图。本实施方式的灯具系统100主要包含至少两个灯具(例如灯具200及灯具300)以及至少一个串接组件400。其中,灯具200与灯具300实质上具有相同的结构,相同的符号代表相同的元件,且灯具200与灯具300通过串接组件400互相串接。
另请一并参照图2至图4,其中图3是绘示图1的A部分放大示意图,图4是绘示图1的B部分放大示意图。本实施方式的灯具200(或灯具300)包含框体210、光源组件220以及电讯组件230。其中,框体210具有容置空间211。光源组件220固定在框体210上。在一实施例中,光源组件220包含发光单元(未示出)及导光板221,其中发光单元可为设置在框体210的容置空间211中的LED灯条。导光板221靠近其入光面的部分位于框体210的容置空间211中,且发光单元邻设于导光板221的入光面,用以提供光线至导光板221中。
请继续参照图2至图4,在本实施例中,电讯组件230设置在框体210的容置空间211中,且与光源组件220电讯连接。其中,电讯组件230包含第一连接器231及第二连接器232,且第一连接器231与第二连接器232之间通过电源线路与讯号线路互相连接。在一示范例中,第一连接器231与第二连接器232之间可通过2条电源线、2条讯号传递线与1条接地线互相连接。此处的讯号传递,主要可以采用数字寻址照明接口(Digital Addressable Lighting Interface,DALI)标准、电力线通信(Power Line Communication,PLC)标准、控制器局域网络(Controller Area Network,CAN)标准、RS-485标准、DMX、I2C、RS-232、以太网络(Ethernet)、专属协议或其他本领域的技术人员所熟知的各种协议来作为传递方式。依据上述布属架构,就可以通过,例如,私有的、共享的、及/或专属的通信网路,如DALI或DMX,通信多个控制信号,以控制灯具200(或灯具300)的启闭或调整灯具200(或灯具300)的亮度、色温、闪烁模式等功能。如图2所示,第一连接器231连接光源组件220,且第 一连接器231与光源组件220之间设有驱动器240,其中驱动器240配置以将来自第一连接器231的交流电转成直流电,以供光源组件220使用。
在本实施例中,第一连接器231与第二连接器232分别设置在框体210的容置空间211中,且分别靠近框体210的相对两端。灯具200(或灯具300)的第一连接器231与第二连接器232分别配置以电讯连接至相邻的串接组件400。具体而言,串接组件400具有相对的第一端401及第二端402,灯具200邻设于串接组件400的第一端401并与串接组件400电讯连接,灯具300邻设于串接组件400的第二端402并与串接组件400电讯连接。
请继续参照图2至图4,串接组件400主要包含壳体410、底盖420及电讯连接件430。其中,如图4所示,壳体410具有内部空间411。底盖420设在壳体410的底部,且配置以开启或封闭内部空间411。电讯连接件430设置在壳体410的内部空间411中。如图2所示,电讯连接件430包含第三连接器431与第四连接器432,且第三连接器431与第四连接器432之间通过电源线路与讯号线路互相连接。在本实施例中,第三连接器431位于串接组件400的第一端401,第四连接器432位于串接组件400的第二端402。当灯具200连接于串接组件400的第一端401时,灯具200的框体210的容置空间211连通串接组件400的壳体410的内部空间411,且当灯具300连接于串接组件400的第二端402时,灯具300的框体210的容置空间211同样连通串接组件400的壳体410的内部空间411。同时,灯具200的第二连接器232电讯连接于串接组件400的第一端401的第三连接器431,且灯具300的第一连接器231电讯连接于串接组件400的第二端402的第四连接器432。
如图2所示,在一实施例中,串接组件400还包含外接端子440。外接端子440连接在第三连接器431与第四连接器432之间,且外接端子440配置以供外加装置A1电讯连接。在一些实施例中,外接端子440可设置在串接组件400的壳体410的内部空间411中、或是延伸在串接组件400的壳体410外。在一些例子中,外加装置A1可为用以提供非照明机能的装置,例如外加装置A1可为喇叭装置、紧急逃生指示装置、悬挂告示 牌装置、监视镜头或充电电池等。在其他例子中,外加装置A1可为用以提供环境感应机能的装置,例如外加装置A1可为环境传感器、动作传感器或颜色传感器(color sensor)等。在安装外加装置A1之前,可先将底盖420从壳体410上移除,再将外加装置A1电讯连接至串接组件400的外接端子440,然后盖上底盖420。
请再次参照图3及图4,在本实施例中,灯具200包含支撑件M1,灯具300包含支撑件M2。其中,灯具200与灯具300的框体210的顶部分别具有沟槽212,且串接组件400的壳体410的顶部同样也具有沟槽412。当灯具200连接于串接组件400的第一端401时,支撑件M1的一部分嵌设于灯具200的框体210的沟槽212中,且支撑件M1的另一部分则嵌设于串接组件400的壳体410的沟槽412中且靠近第一端401。同样地,当灯具300连接于串接组件400的第二端402时,支撑件M2的一部分嵌设于灯具300的框体210的沟槽211沟槽212中,且支撑件M2的另一部分则嵌设于串接组件400的沟槽412中且靠近第二端402。
请继续参照图1至图4,本揭露另提出一种灯具系统的组装方法。此方法主要包含以下步骤。首先,提供至少两个前述的灯具(例如灯具200及灯具300)以及串接组件400,其中灯具200可作为主要灯具,且灯具300则可作为从属灯具。然后,将主要灯具200的相对两端分别通过悬吊线R1吊设于天花板上,且将主要灯具200的电讯组件230的第一连接器231通过电源线P11连接至外部电源P1。在本实施例,外部电源P1是一种外部交流电源。接着,将串接组件400的第一端401上的第三连接器431电讯连接至主要灯具200的第二连接器232,并将串接组件的第二端402通过悬吊线R2吊设于天花板上。其中,在将串接组件400接合到主要灯具200之前,可如图3所示,可将支撑件M1先插入主要灯具200的框体210的沟槽212中。由此,当串接组件400接合到灯具200后,支撑件M1的一部分插在灯具200的框体210的沟槽212中,支撑件M1的另一部分则插在串接组件400的壳体410的沟槽412中,以增加主要灯具200与串接组件400的结合稳定度。
在将串接组件400电讯连接至主要灯具200之后,接着将从属灯具 300的第一连接器231电讯连接至串接组件400的第二端402的第四连接器432,并将从属灯具300远离串接组件400的一端通过悬吊线R3吊设于天花板上,以完成整组灯具系统100的安装。同样地,在将从属灯具300接合到串接组件400之前,可如图4所示,可将支撑件M2先插入串接组件400的壳体410的沟槽412中。由此,当从属灯具300接合到串接组件400后,支撑件M2的一部分插在串接组件400的壳体410的沟槽412中,支撑件M2的另一部分则插在从属灯具300的框体210的沟槽212中,以增加从属灯具300与串接组件400的结合稳定度。
在本实施例中,灯具200为第一组灯具(最末端的灯具)且连接外部电源P1。因此,外部电源P1所提供的电力可通过灯具200的电讯组件230传至串接组件400中,然后再通过串接组件400的电讯连接件430传至灯具300,使得灯具200、串接组件400与灯具300形成彼此电讯串接。在其他实施例中,若灯具300继续连接下一组串接组件与灯具的话,传送至灯具300的电力亦可通过灯具300的电讯组件230进一步传至下一组串接组件或灯具。因此,并不需要每一组灯具与串接组件都有各自独立的外部电源,只需要一组外部电源即可供应多组灯具及串接组件的电力,因此整体配线简单、安装方便、省时。在一些应用例中,当需要扩充灯具系统100的功能时,仅需要将外加装置A1连接至串接组件400的外接端子440,而不需要额外设置外部电源或电线。
在其他的应用例子中,当只有一个灯具200时,灯具200的相对两端分别设有一条悬吊线R1,其可安装于天花板上。当需要扩充灯具200的功能时,用户仅需另外购买一组灯具组件(例如灯具300及串接组件400),并可通过前述的灯具系统的组装方法来将串接组件400与灯具300串接至灯具200上。而且,在组装串接组件400时,仅需要在串接组件400远离灯具200的一端(例如第二端402)加装一条悬吊线R2,而串接组件400靠近灯具200的一端(例如第一端402)主要通过串接组件400的第三连接器431与灯具200的第二连接器232互连时的结合力量来分担串接组件400的承重。而在其他实施例中,为了提高结合稳定性,可通过如图3所示的支撑件M1来使串接组件400与灯具200连接。在组装灯具 300时,仅需要在灯具300远离串接组件400的一端加装一条悬吊线R3,而灯具300靠近串接组件400的一端则主要通过灯具300的第一连接器231与串接组件400的第四连接器432互连时的结合力量来分担灯具300的承重。而在其他实施例中,为了提高结合稳定性,可通过如图4所示的支撑件M2来使灯具300与串接组件400连接。
本揭露另提出一种灯具系统的拆卸方法。此方法主要包含以下步骤。首先,提供如图1所示的灯具系统100。接着,将欲卸除的灯具300的电讯组件230与相邻的串接组件400的电讯连接件430分离,此时,欲卸除的灯具300的其中一端被悬吊线R3所固定。然后,将悬吊线R3与欲卸除的灯具300分离,以移除欲卸除的灯具300。具体而言,在将欲拆卸的灯具300靠近串接组件400的一端与相邻的串接组件400分离的同时,因灯具300远离串接组件400的一端通过悬吊线R3吊设于天花板上,故不会发生灯具300在与串接组件400分离的同时易从天花板掉落的问题。同样地,在将欲卸除的串接组件400与相邻的灯具200分离的同时,因串接组件400远离灯具200的一端(例如第二端402)通过悬吊线R2吊设于天花板上,故同样也不会发生串接组件400在与灯具200分离的同时易从天花板掉落的问题。因此,本揭露的灯具系统的拆卸程序相对安全,不需要担心欲卸除的灯具或串接组件掉落至地面或砸伤工作人员的事情发生。另一方面,借由本揭露的灯具系统设计,用户在拆除灯具系统的其中一组灯具或串接组件时,可不需要额外加装或拆卸整组悬吊件,进而可简化整体灯具系统的结构,并简化灯具串接与卸除方法。
由上述本揭露实施方式可知,本揭露的灯具系统主要利用串接组件与灯具的电讯连接件的设计,来达到灯具跳接与功能扩充所需的电讯传递功能,借此可有效地节省系统成本,并以简单的安装方式完成灯具之间或灯具与外加装置之间的电讯连接。
虽然本揭露的实施例已揭露如上,然其并非用以限定本揭露的实施范围,任何所属技术领域的技术人员,在不脱离本揭露的实施例的精神和范围内,应当可以做出些许更动与润饰,故本揭露的实施例的保护范围应当以所附的权利要求书所界定的范围为准。
【附图标记列表】
100   灯具系统
200   灯具、主要灯具
210   框体
211   容置空间
212   沟槽
220   光源组件
221   导光板
230   电讯组件
231   第一连接器
232   第二连接器
240   驱动器
300   灯具、从属灯具
400   串接组件
401   第一端
402   第二端
410   壳体
411   内部空间
412   沟槽
420   底盖
430   电讯连接件
431   第三连接器
432   第四连接器
440   外接端子
A1    外加装置
M1    支撑件
M2    支撑件
P1    外部电源
P11   电源线
R1   悬吊线
R2   悬吊线
R3   悬吊线

Claims (21)

  1. 一种灯具组件,其包含:
    灯具,其包含:
    框体,其具有容置空间;
    光源组件,其固定在所述框体上;以及
    电讯组件,其设置在所述容置空间中且与所述光源组件电讯连接,其中所述电讯组件包含第一连接器及第二连接器,且所述第一连接器与所述第二连接器之间通过电源线路与讯号线路互相连接;以及
    串接组件,其包含电讯连接件,其中所述串接组件配置以通过所述电讯连接件连接至所述灯具与另一灯具。
  2. 根据权利要求1所述的灯具组件,其中,
    所述串接组件的所述电讯连接件包含第三连接器与第四连接器,且所述第三连接器与所述第四连接器之间通过电源线路与讯号线路互相连接;以及
    所述串接组件的所述第三连接器电讯连接于所述灯具的所述第二连接器,且所述串接组件的所述第四连接器电讯连接于所述另一灯具。
  3. 根据权利要求2所述的灯具组件,其中,所述串接组件还包含外接端子,所述外接端子连接在所述第三连接器与所述第四连接器之间,其中所述外接端子与外加装置电讯连接。
  4. 根据权利要求3所述的灯具组件,其中,所述外加装置用以提供环境感应机能。
  5. 根据权利要求3所述的灯具组件,其中,所述外加装置用以提供非照明机能。
  6. 根据权利要求1所述的灯具组件,其中,
    所述串接组件还包含壳体及底盖,所述壳体具有内部空间,所述底盖配置以开启或封闭所述内部空间;以及
    所述电讯连接件设置在所述内部空间中。
  7. 根据权利要求1至6中任一项所述的灯具组件,其中,所述光源组件包含发光单元及导光板,其中所述发光单元设置在所述容置空间中,所述导光板连接于所述框体,且所述导光板的入光面邻设于所述光源。
  8. 根据权利要求1至6中任一项所述的灯具组件,还包含支撑件,其中所述灯具与所述串接组件的顶面分别具有对应的沟槽,所述支撑件的一部分嵌设于所述灯具的所述沟槽中,且所述支撑件的另一部分嵌设于所述串接组件的所述沟槽中。
  9. 根据权利要求1至6中任一项所述的灯具组件,其中,所述灯具、所述另一灯具与所述串接组件的上方设有悬吊线。
  10. 一种灯具系统,包含:
    至少两个灯具,其中每一灯具包含:
    框体,其具有容置空间;
    光源组件,其固定在所述框体上;以及
    电讯组件,其设置在所述容置空间中且与所述光源组件电讯连接,其中所述电讯组件包含第一连接器及第二连接器,且所述第一连接器与所述第二连接器之间通过电源线路与讯号线路互相连接;以及
    至少一个串接组件,其包含电讯连接件,其中所述至少一个串接组件通过所述电讯连接件连接在相邻的所述灯具之间。
  11. 根据权利要求10所述的灯具系统,其中,
    所述串接组件的所述电讯连接件包含第三连接器与第四连接器,且所述第三连接器与所述第四连接器之间通过电源线路与讯号线路互相连接;
    所述串接组件的所述第三连接器电讯连接于与所述串接组件的第一端相邻的所述灯具的所述第二连接器,且所述串接组件的所述第四连接器电讯连接于与所述串接组件的第二端相邻的所述灯具的所述第一连接器。
  12. 根据权利要求11所述的灯具系统,其中,所述串接组件还包含外接端子,所述外接端子连接在所述第三连接器与所述第四连接器之间,其中所述外接端子与外加装置电讯连接。
  13. 根据权利要求12所述的灯具系统,其中,所述外加装置用以提供环境感应机能。
  14. 根据权利要求12所述的灯具系统,其中,所述外加装置用以提供非照明机能。
  15. 根据权利要求10所述的灯具系统,其中,
    所述串接组件还包含壳体及底盖,所述壳体具有内部空间,所述内部空间连通相邻的所述灯具的所述框体的所述容置空间,所述底盖配置以开启或封闭所述内部空间;以及
    所述电讯连接件设置在所述内部空间中。
  16. 根据权利要求10至15中任一项所述的灯具系统,其中,所述光源组件包含发光单元及导光板,其中所述发光单元设置在所述容置空间中,所述导光板连接于所述框体,且所述导光板的入光面邻设于所述光源。
  17. 根据权利要求10至15中任一项所述的灯具系统,还包含支撑件,其中所述灯具与所述串接组件的顶面分别具有对应的沟槽,所述支撑件的一部分嵌设于所述灯具的所述沟槽中,且所述支撑件的另一部分嵌设于所述串接组件的所述沟槽中。
  18. 根据权利要求10至15中任一项所述的灯具系统,其中,每一所述灯具与所述串接组件的上方设有悬吊线。
  19. 根据权利要求10所述的灯具系统,其中,
    所述至少两个灯具中的最末端灯具的所述第一连接器连接外部电源;以及
    所述至少两个灯具中的其余灯具与所述串接组件通过所述电讯组件接合到相邻所述串接组件的所述电讯连接件,以使所述其余灯具、所述串接组件与所述最末端灯具形成电讯串接。
  20. 一种灯具系统的组装方法,包含:
    提供至少两个灯具,其中所述至少两个灯具中的每一者包含框体、光源组件以及电讯组件,其中所述框体具有容置空间,所述光源组件固定在所述框体上,所述电讯组件设置在所述容置空间中且与所述光源组件电讯连接,其中所述电讯组件包含第一连接器及第二连接器,且所述第一连接器与所述第二连接器之间通过电源线路与讯号线路互相连接;
    提供至少一个串接组件,其中所述串接组件包含电讯连接件;
    将所述至少两个灯具中的主要灯具的相对两端分别通过悬吊线吊设于天花板上,且将所述主要灯具的所述电讯组件的所述第一连接器连接至外部电源;
    将所述串接组件的第一端电讯连接至所述主要灯具的所述第二连接器,并将所述串接组件的第二端通过悬吊线吊设于所述天花板上;以及
    将所述至少两个灯具中的从属灯具的所述第一连接器电讯连接至所述串接组件的所述第二端,并将所述从属灯具远离所述串接组件的一端通过悬吊线吊设于所述天花板上。
  21. 一种灯具系统的拆卸方法,包含:
    提供灯具系统,其中所述灯具系统包含至少两个灯具及至少一个串接组件,其中所述至少两个灯具中的每一者包含框体、光源组件以及电讯组件,其中所述框体具有容置空间,所述光源组件固定在所述框体上,所述电讯组件设置在所述容置空间中且与所述光源组件电讯连接,其中所述电讯组件包含第一连接器及第二连接器,且所述第一连接器与所述第二连接器之间通过电源线路与讯号线路互相连接,其中所述串接组件通过所述电讯连接件电讯连接至与所述串接组件的第一端相邻的所述灯具的所述第二连接器,且所述串接组件通过所述电讯连接件电讯连接至与所述串接组件的第二端相邻的所述灯具的所述第一连接器;
    将欲卸除的所述灯具的所述电讯组件与相邻的所述串接组件的所述电讯连接件分离,此时,欲卸除的所述灯具的其中一端被悬吊线所固定;以及
    将所述悬吊线与欲卸除的所述灯具分离,以移除欲卸除的所述灯具。
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