WO2013067972A1 - 带指示灯的设备 - Google Patents

带指示灯的设备 Download PDF

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Publication number
WO2013067972A1
WO2013067972A1 PCT/CN2012/084445 CN2012084445W WO2013067972A1 WO 2013067972 A1 WO2013067972 A1 WO 2013067972A1 CN 2012084445 W CN2012084445 W CN 2012084445W WO 2013067972 A1 WO2013067972 A1 WO 2013067972A1
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WO
WIPO (PCT)
Prior art keywords
conductive
device body
indicator lights
group
indicator
Prior art date
Application number
PCT/CN2012/084445
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English (en)
French (fr)
Inventor
蒋方荣
王小斌
Original Assignee
华为技术有限公司
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.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2013067972A1 publication Critical patent/WO2013067972A1/zh

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Classifications

    • 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
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2111/00Use or application of lighting devices or systems for signalling, marking or indicating, not provided for in codes F21W2102/00 – F21W2107/00

Definitions

  • the running status information of the communication device is usually displayed by means of an indicator light. Therefore, whether the user can conveniently observe the display state of the communication device indicator light is one of the important factors for improving the convenience of the user using the communication device.
  • the prior art only sets the indicator light at a certain fixed position of the communication device.
  • the inventor found in the process of practicing the prior art: For a communication device supporting multi-angle installation, the prior art can satisfy the convenience of the user to observe the indicator light in the scenario of installing the communication device at a certain angle. However, in the scenario where the communication device is installed at other angles, the convenience of the user to observe the indicator light is low. For example: Suppose a communication device supports horizontal placement and also supports installation methods such as vertical suspension, and the indicator light of the communication device is set on the front of the communication device.
  • Embodiments of the present invention provide a device with an indicator light for improving the convenience of a user viewing an operating state of a device of the device.
  • An embodiment of the present invention provides an apparatus with an indicator, including:
  • At least two sets of indicators for displaying the operating state of the device are respectively set At different locations of the device body;
  • An indicator switch control module connected between the device body and the at least two sets of indicator lights for selectively strobing an electrical connection between a set of the at least two sets of indicators and the device body .
  • the device with indicator lights provided by the embodiment of the invention sets at least two sets of indicator lights, different sets of indicator lights are set at different positions of the device body, and the indicator light switching control circuit strobes one set of indicator lights, the device body device The operating status is indicated by a set of strobed indicators.
  • the indicator light switching control circuit can be used to illuminate a group of indicator lights for facilitating the user to observe the running status information of the device in the actual installation environment of the communication device through the indicator light switching control circuit.
  • the embodiment of the invention improves the convenience of the user observing the running state information of the device of the communication device, and is beneficial to the user to perform maintenance processing such as troubleshooting on the communication device according to the display state of the indicator light, that is, the convenience of maintenance of the communication device is improved.
  • FIG. 1 is a schematic structural diagram of an apparatus with an indicator light according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic structural diagram of a communication device according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic diagram of a state in which a gravity switch is placed horizontally according to a second embodiment of the present invention
  • FIG. 4 is a schematic diagram of a state in which a gravity switch is vertically placed according to a second embodiment of the present invention
  • FIG. 6 is a diagram showing an example of a state of use of a communication device in a state in which a light switch switching control circuit is provided in a closed state of a gravity switch according to Embodiment 2 of the present invention
  • FIG. 7 is a schematic diagram of an application scenario of a light switch switching control circuit in a closed state of a gravity switch according to Embodiment 2 of the present invention.
  • FIG. 8 is a schematic circuit diagram of an indicator light switching control circuit provided in a disconnected state of a gravity switch according to Embodiment 2 of the present invention
  • 9 is an example of a usage state of a communication device in a state in which a light switch switching control circuit is provided in an off state of a gravity switch according to Embodiment 2 of the present invention
  • FIG. 10 is a schematic diagram of an application scenario of an indicator light switching control circuit in a disconnected state of a gravity switch according to Embodiment 2 of the present invention.
  • FIG. 11 is a schematic diagram of a scenario in which a communication device is installed in an oblique suspension manner according to an embodiment of the present invention
  • FIG. 12 is a schematic diagram of a scenario in which a communication device is vertically suspended and installed according to an embodiment of the present invention.
  • FIG. 1 is a schematic structural diagram of an apparatus with an indicator light according to Embodiment 1 of the present invention.
  • the device with indicator lights as shown in FIG. 1 includes: an apparatus body 11, at least two sets of indicator lights 12, and indicator light switch control module indicator lights 12 respectively disposed at different positions of the device body 11; the indicator switch control module 13 is connected at The device body 11 and the at least two sets of indicator lights 11 are used to selectively align the electrical connection between the group of indicator lights 12 and the device body 11.
  • the indicator light 12 that is strobed by the indicator switch control module 13 displays the device operation status of the device body, and the indicator light 12 that is not strobed does not display the device operation status of the device body.
  • the indicator switch control module may include: a selection switch connected in series between the device body 11 and each group of indicator lights 12, the switch being connected in series between the device body 11 and each set of indicator lights 12, for example.
  • a switch, or a single-pole double-throw switch connected in series between the main body of the device and each of the two sets of indicator lamps 12, and a plurality of sets of indicator lights 12 are strobed to meet a set of indicators for actual display requirements. , display the operating status information of the device body.
  • the indicator switch control module can also be: an automatic control circuit including a switch switch connected between the device body 11 and each group of indicator lights 12, using an automatic electronic control, etc., in multiple sets of indicator lights 12 is a group of indicator lights that meet the actual display requirements, and displays the running status information of the device body.
  • the indicator light switch control module 13 is specifically configured to strobe, according to the posture of the device body, a set of indicator lights that match the posture of the device body in the at least two sets of indicator lights, to display the display device Running state.
  • two sets of indicators may be disposed on the main body of the device, including: a first group of indicators and a second group of indicators; wherein the first group of indicators is disposed on the first surface of the device body, and the second group of indicators And being disposed on the second surface of the apparatus body; a preset angle formed between the first surface and the second surface, the preset angle being 90 degrees.
  • the communication device provided in this embodiment sets at least two sets of indicator lights, and different sets of indicator lights are set at different positions of the device body, and the indicator switch control module strobes one set of indicator lights, and the device running state information of the device body passes the A set of strobe lights is displayed.
  • the indicator light switching control module can be used to illuminate a group of indicator lights for facilitating the user to observe the running status information of the device in the actual installation environment of the communication device through the indicator light switching control module.
  • the embodiment improves the convenience of the user to observe the running state information of the device of the communication device, and is beneficial to the user to perform maintenance processing such as troubleshooting on the communication device according to the display state of the indicator light, that is, the convenience of maintenance of the communication device is improved.
  • the technical solution provided by the embodiment of the present invention can be applied to various devices and technical fields including an indicator light, such as an electronic device, an electrical device, a communication device, and the like;
  • the technical solutions of the embodiments of the present invention are described in detail below by taking two sets of indicators for displaying the same device operating state information on the communication device as an example.
  • FIG. 2 is a schematic structural diagram of a communication device according to Embodiment 2 of the present invention.
  • the communication device shown in FIG. 2 includes: a device body 21, two sets of indicator lights respectively disposed on two sides perpendicular to each other of the device body, and an indicator light switching control module; the switching control module can be used to select according to the posture of the device body A set of indicator lights is matched with the posture of the main body of the two groups of indicators to display the running status of the device.
  • the two sets of indicators may include: a first group of indicators 221 and a second group of indicators 222.
  • the first group of indicators 221 are disposed on the first surface 211 of the apparatus body 21, and the second group of indicators 222 are disposed on the apparatus body 21.
  • the second surface 212; the first surface 211 and the second surface 212 are perpendicular to each other.
  • the gravity switch 231 may include: an insulating base 231 1 , a conductive stator 2312 , a conductive rotating shaft 2313 and a conductive mover 2314 ; the conductive stator 2312 is fixed at one end of the insulating base 2311 , and the insulating base 2311 is further One end is fixed to the fixed end of the conductive shaft 2313, and the movable end of the conductive shaft 2313 is fixed to the conductive mover 2314.
  • FIG. 3 is a schematic diagram of a state in which a gravity switch is horizontally placed according to Embodiment 2 of the present invention.
  • the insulating base 2311 of the gravity switch shown in FIG. 3 is located on a horizontal plane, and the conductive mover 2314 automatically closes the conductive stator 2312 under the action of its own gravity.
  • the circuit connected in series at both ends of the gravity switch can form a closed loop through the fixed ends of the conductive stator 2312, the lead rotor 2314 and the conductive shaft 2313 in sequence.
  • FIG. 4 is a schematic view showing a state in which a gravity switch is vertically placed according to Embodiment 2 of the present invention.
  • the insulating base 2311 of the gravity switch shown in Fig. 4 is located on the vertical plane, and the conductive mover 2314 automatically disconnects the conductive stator 2312 under the action of its own gravity.
  • the circuit connected in series across the gravity switch cannot form a closed loop.
  • the gravity switch 231 is fixed to a certain surface of the apparatus main body 21, when the gravity switch 231 is in a horizontal state, the conductive mover 2314 and the conductive stator 2312 of the gravity switch 231 are automatically closed; when the gravity switch 231 is in the vertical state, The conductive mover 2314 of the gravity switch 231 and the conductive stator 2312 are automatically disconnected. Therefore, the two sets of indicator lamps respectively located on two mutually perpendicular surfaces of the apparatus main body 21 in the present embodiment can be switched and gated by utilizing the characteristics that the gravity switch automatically closes or opens according to the action of gravity.
  • FIG. 5 is a schematic circuit diagram of a light switch switching control module according to Embodiment 2 of the present invention in a closed state of a gravity switch.
  • the indicator switch control module 23 includes: a gravity switch 231 and a relay 232.
  • the relay 232 includes: a coil 2321, a changeover switch 2323, and a core 2322 inserted in the coil 2321.
  • the input end of the coil 2321 is connected to the apparatus main body 21.
  • the fixed end 2312 of the gravity switch 231 and the fixed end of the conductive shaft 2313 are connected in series between the output end of the coil 2321 and the apparatus main body 21.
  • the fixed end 23231 of the switch 2323 is connected to the fixed end of the conductive shaft 2313, and the movable end 23232 of the switch 2323 is between the first group of indicators 221 and the second group of indicators 222 when the coil 2321 is energized and de-energized. Switching the connection, for example: when the coil 2321 is in the power-on state, the movable end 23232 of the changeover switch 2323 is attracted by the iron core 2322 to be connected to one end of the first group of indicator lights 221; when the coil 2321 is in an unenergized state, the switch 2323 is switched.
  • the movable end 23232 is connected to one end of the second group of indicator lights 222.
  • the other end of the first group of indicator lamps 221 and the other end of the second group of indicator lamps 222 are connected to the apparatus body 21.
  • the gravity switch 231 is disposed on the second surface 212 of the apparatus body 21 or on any plane parallel to the second surface 212.
  • the gravity switch 231 is horizontally placed, and the conductive rotor 2314 and the conductive stator 2312 are automatically closed due to the gravity of the conductive rotating shaft 2313 and the conductive mover 2314, specifically as shown in the figure. 5 is shown.
  • the coil 2321 is A closed loop is established with the apparatus body 21 via the gravity switch 231.
  • the device operating state information of the communication device passes the first group of indicators 221.
  • the user can conveniently observe the running status information of the device displayed by the first group of indicators 221, so that the user can perform maintenance processing such as troubleshooting on the communication device according to the display state of the indicator light, that is, the maintenance of the communication device is improved. Convenience.
  • FIG. 8 is a schematic circuit diagram of an indicator light switching control module according to Embodiment 2 of the present invention in a state in which a gravity switch is turned off.
  • the gravity switch 231 is vertically suspended, and the conductive rotor 2314 is guided by the gravity of the conductive rotating shaft 2313 and the conductive mover 2314. It is automatically disconnected from the conductive stator 2312.
  • the coil 2321 cannot establish a closed loop with the device body 21 via the gravity switch 231, so no current flows through the coil, and the magnetic attraction generated by the iron core 2322 inserted in the coil 2321 disappears, so that the movable end of the switch 2323 is switched from the first One end of the group indicator 221 is automatically switched to one end of the second group of indicators 222.
  • the device running status information of the device body 21 can be displayed by the second group of indicators 222, and the first group of indicators 221 is not displayed, and the usage state of the communication device in this case is as shown in FIG.
  • FIG. 10 An example of an application scenario corresponding to the situation is shown in FIG. 10.
  • the device operating state information of the communication device is set in the second of the device body.
  • the second group of indicators 222 on the surface 212 is displayed, and the user can conveniently observe the running status information of the device displayed by the second group of indicators 222, thereby facilitating the user to troubleshoot the communication device according to the display state of the indicator light.
  • Maintenance processing which improves the convenience of maintenance of communication equipment.
  • the suspension is mounted at a certain inclination angle as shown in FIG. 11, for example, the suspension base 2311 of the gravity switch is suspended from the inclination angle of the horizontal plane by more than 75 degrees, and the vertical position as shown in FIG. 12 can also be realized.
  • the strobe second group of indicators 222 displays the device operating status information of the device body.
  • the gravity switch can automatically control the switching strobe of the two sets of indicators according to the posture of the device body, which is an optional implementation manner of the embodiment of the present invention. Based on the characteristics of the gravity switch, similar techniques can be achieved in other ways.
  • the fixed end of the conductive shaft 2313 of the gravity switch is connected to the device body 21, and the conductive stator 2312 is connected to one end of the first group of indicator lights 221; A parallel point of the other end of the indicator light 221 and one end of the second group of indicator lamps 222 is connected to the apparatus body 21.
  • the conductive stator 2312 When the posture of the apparatus main body 21 is that the apparatus main body 21 is in the first position, the conductive stator 2312 is in contact with the conductive mover 2314 to electrically connect the apparatus main body 21 with the first group of indicator lamps 221; the posture of the apparatus main body 21 When the device body 21 is in the second position, the conductive stator 2312 is in contact with the other end of the second indicator light 222 to gate the electrical connection between the device body 21 and the second group of indicator lights.
  • the first position for example, the first surface of the first indicator light 221 of the device body is located on the vertical surface, and the second surface of the second indicator light 222 is located at a horizontal plane;
  • the first surface of the first indicator light 221 is at a horizontal plane, and the second surface of the second indicator light 222 is disposed on a vertical surface.
  • the technical solution is based on the characteristics of the gravity switch, and can automatically strobe the indicator light matching the posture of the device body according to the posture of the main body of the device, and display the running state of the device through the strobe indicator light, so as to improve the convenience of observing the running state of the device, thereby It is beneficial for the user to perform maintenance processing such as troubleshooting on the communication device according to the display state of the indicator light, that is, the convenience of maintenance of the communication device is improved.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Train Traffic Observation, Control, And Security (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

一种带指示灯的设备,包括设备主体(11,21)、用于显示设备运行状态的至少两组指示灯(12,221,222)、以及连接在设备主体(11,21)和至少两组指示灯(12,221,222)之间的指示灯切换控制模块(13)。至少两组指示灯(12,221,222)分别设置在设备主体(11,21)的不同位置。指示灯切换控制模块(13)用于择一选通至少两组指示灯(12,221,222)中的一组指示灯(12,221,222)与设备主体(11,21)电连接。本设备提高了用户观测通信设备运行状态信息的方便性,有利于及时排除故障。

Description

带指示灯的设备 技术领域 带指示灯的设备。 背景技术
在通信技术领域中, 运维人员等用户需要获知通信设备的运行状态信息, 以便在通信设备不能正常运行时及时发现并排查故障原因。通信设备的运行状 态信息通常釆用指示灯的方式进行显示的, 因此, 用户是否能方便地观察通信 设备指示灯的显示状态, 成为提高用户使用通信设备方便性的重要因素之一。
现有技术只在通信设备的某个固定位置设置指示灯。但是,发明人在实践 现有技术的过程中发现: 对于支持多角度安装的通信设备而言, 该现有技术虽 然能够在某个角度安装通信设备的场景下满足用户观察指示灯的方便性,但在 其他角度安装通信设备的场景下用户观测指示灯的方便性则较低。 例如: 假设某一通信设备支持水平放置也支持竖直悬挂等安装方式,且该通信设 备的指示灯设置在该通信设备的正面。 当用户水平放置该通信设备时, 用户可 方便地观测到通信设备正面的指示灯; 但是, 由于实际空间受限等原因, 用户 可能选择悬挂安装该通信设备,如果该通信设备悬挂安装在距地面较高处且该 通信设备设置有指示灯的正面朝上,则用户站在地面上就不方便观察到该通信 设备的指示灯的显示状态,由此不利于用户根据指示灯的显示状态对该通信设 备进行故障排除等维护处理。 发明内容 本发明实施例提供一种带指示灯的设备,用以提高用户观测该设备的设备 运行状态的方便性。
本发明实施例提供一种带指示灯的设备, 包括:
设备主体;
用于显示设备运行状态的至少两组指示灯;所述至少两组指示灯分别设置 在所述设备主体的不同位置;
连接在所述设备主体和所述至少两组指示灯之间的指示灯切换控制模块, 用于择一选通所述至少两组指示灯中的一组指示灯与所述设备主体的电连接。
本发明实施例提供的带指示灯的设备, 通过设置至少两组指示灯, 不同组 指示灯设置在设备主体的不同位置,由指示灯切换控制电路选通其中一组指示 灯,设备主体的设备运行状态通过被选通的一组指示灯显示出来。 当本实施例 提供的通信设备在实际安装完成后,可通过指示灯切换控制电路在至少两组指 示灯中,选通通信设备实际安装环境下便于用户观察设备运行状态信息的一组 指示灯, 因此, 本发明实施例提高了用户观测通信设备的设备运行状态信息的 方便性,有利于用户根据指示灯的显示状态对该通信设备进行故障排除等维护 处理, 即提高了通信设备维护的方便性。 附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地, 下面描述 中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲, 在不付 出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明实施例一提供的带指示灯的设备的结构示意图;
图 2为本发明实施例二提供的通信设备的结构示意图;
图 3为本发明实施例二提供的重力开关水平放置的状态示意图; 图 4为本发明实施例二提供的重力开关竖直放置的状态示意图; 图 5 为本发明实施例二提供的指示灯切换控制电路在重力开关闭合状态 下的电路示意图;
图 6 为本发明实施例二提供的指示灯切换控制电路在重力开关闭合状态 下的通信设备使用状态示例;
图 7 为本发明实施例二提供的指示灯切换控制电路在重力开关闭合状态 下的应用场景示例;
图 8 为本发明实施例二提供的指示灯切换控制电路在重力开关断开状态 下的电路示意图; 图 9 为本发明实施例二提供的指示灯切换控制电路在重力开关断开状态 下的通信设备使用状态示例;
图 10为本发明实施例二提供的指示灯切换控制电路在重力开关断开状态 下的应用场景示例;
图 11为本发明实施例提供的通信设备倾斜悬挂安装的场景示例; 图 12为本发明实施例提供的通信设备竖直悬挂安装的场景示例。 具体实施方式 为使本发明实施例的目的、技术方案和优点更加清楚, 下面将结合本发明 实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然, 所描述的实施例是本发明一部分实施例, 而不是全部的实施例。基于本发明中 的实施例 ,本领域普通技术人员在没有付出创造性劳动前提下所获得的所有其 他实施例, 都属于本发明保护的范围。
本发明以下实施例的序号仅仅为了描述, 不代表实施例的优劣。
图 1为本发明实施例一提供的带指示灯的设备的结构示意图。如图 1所示的 带指示灯的设备包括: 设备主体 11、至少两组指示灯 12和指示灯切换控制模块 指示灯 12分别设置在设备主体 11的不同位置;指示灯切换控制模块 13连接在设 备主体 11和所述至少两组指示灯 11之间,用于择一选通一组指示灯 12与设备主 体 11的电连接。被指示灯切换控制模块 13选通的指示灯 12显示设备主体的设备 运行状态, 而未被选通的指示灯 12不显示设备主体的设备运行状态。
可选的,指示灯切换控制模块可包括: 串接在设备主体 11和各组指示灯 12 之间的选择开关,该切换开关例如在设备主体 11和每组指示灯 12之间分别串接 的开关、或者在设备主体和每两组指示灯 12之间串接的一单刀双掷开关等, 釆 用手动切换等控制方式,在多组指示灯 12中选通满足实际显示需求的一组指示 灯,对设备主体的运行状态信息进行显示。或者,指示灯切换控制模块还可为: 串接在设备主体 11和各组指示灯 12之间的、 包括切换开关在内的自动控制电 路, 釆用自动电控等方式, 在多组指示灯 12中选通满足实际显示需求的一组指 示灯, 对设备主体的运行状态信息进行显示。 可选的,指示灯切换控制模块 13具体可用于根据所述设备主体的姿态, 选 通所述至少两组指示灯中与所述设备主体的姿态相匹配一组指示灯,以所述显 示设备运行 态。
可选的, 设备主体上可设置两组指示灯, 具体包括: 第一组指示灯和第二 组指示灯; 其中, 第一组指示灯设置在设备主体的第一表面, 第二组指示灯设 置在设备主体的第二表面; 第一表面和第二表面之间形成有预设夹角, 该预设 夹角可为 90度。
本实施例提供的通信设备通过设置至少两组指示灯,不同组指示灯设置在 设备主体的不同位置, 由指示灯切换控制模块选通其中一组指示灯,设备主体 的设备运行状态信息通过被选通的一组指示灯显示出来。当本实施例提供的通 信设备在实际安装完成后, 可通过指示灯切换控制模块在至少两组指示灯中, 选通通信设备实际安装环境下便于用户观察设备运行状态信息的一组指示灯, 因此, 本实施例提高了用户观测通信设备的设备运行状态信息的方便性,有利 于用户根据指示灯的显示状态对该通信设备进行故障排除等维护处理,即提高 了通信设备维护的方便性。
本发明实施例提供的技术方案可应用于各种包括指示灯的各种设备及技 术领域中, 如电子设备、 电气设备、 通信设备等等; 本发明实施例对此不受限 制。 下面不妨以通信设备上设置两组显示相同设备运行状态信息的指示灯为 例, 对本发明实施例的技术方案进行详细说明。
图 2为本发明实施例二提供的通信设备的结构示意图。如图 2所示的通信设 备包括: 设备主体 21、 分别设置在设备主体相互垂直的两个面的两组指示灯, 以及指示灯切换控制模块; 切换控制模块可用于根据设备主体的姿态, 选通两 组指示灯中与设备主体的姿态相匹配一组指示灯, 以显示设备运行状态。
上述两组指示灯可包括: 第一组指示灯 221和第二组指示灯 222 , 第一组 指示灯 221设置在设备主体 21的第一表面 211 , 第二组指示灯 222设置在设备主 体 21的第二表面 212; 第一表面 211和第二表面 212相互垂直。
上述指示灯切换控制模块引入了重力开关 231。 如图 3和图 4所示, 重力开 关 231可包括: 绝缘底座 231 1、 导电定子 2312、 导电转轴 2313和导电动子 2314; 导电定子 2312固接在绝缘底座 2311的一端,绝缘底座 2311的另一端固接导电转 轴 2313的固定端, 导电转轴 2313的活动端固接导电动子 2314。 图 3为本发明实施例二提供的重力开关水平放置的状态示意图。图 3所示的 重力开关的绝缘底座 2311位于水平面,导电动子 2314在自身重力的作用下自动 闭合导电定子 2312。 该情形下, 串接在重力开关两端的电路, 可依次经导电定 子 2312、 导电动子 2314和导电转轴 2313固定端形成闭合环路。
图 4为本发明实施例二提供的重力开关竖直放置的状态示意图。图 4所示的 重力开关的绝缘底座 2311位于竖直面,导电动子 2314在自身重力的作用下自动 断开与导电定子 2312的连接。该情形下, 由于绝缘底座 2311不导电且导电动子 2314已断开其与导电定子 2312的连接, 因此, 串接在重力开关两端的电路不能 形成闭合环路。
如果将重力开关 231固设在设备主体 21的某个表面,当重力开关 231处于水 平状态时, 重力开关 231的导电动子 2314和导电定子 2312自动闭合; 当重力开 关 231处于竖直状态时, 重力开关 231的导电动子 2314和导电定子 2312自动断 开。 因此, 可利用重力开关根据重力作用自动闭合或断开的特性, 对本实施例 分别位于设备主体 21的两个相互垂直的表面的两组指示灯进行切换选通控制。
图 5为本发明实施例二提供的指示灯切换控制模块在重力开关闭合状态下 的电路示意图。 如图 3和图 5所示, 指示灯切换控制模块 23包括: 重力开关 231 和继电器 232。 继电器 232包括: 线圈 2321、 切换开关 2323和插入在线圈 2321 内的铁芯 2322。 线圈 2321的输入端与设备主体 21连接。 重力开关 231的导电定 子 2312和导电转轴 2313的固定端, 串接在线圈 2321的输出端和设备主体 21之 间。切换开关 2323的固定端 23231与导电转轴 2313的固定端连接,切换开关 2323 的活动端 23232在线圈 2321处于通电和不通电状态下,在第一组指示灯 221和第 二组指示灯 222之间切换连接, 例如: 在线圈 2321处于通电状态下, 切换开关 2323的活动端 23232被铁芯 2322吸附而与第一组指示灯 221的一端连接;在线圈 2321处于未通电状态下,切换开关 2323的活动端 23232与第二组指示灯 222的一 端连接。 第一组指示灯 221的另一端和第二组指示灯 222的另一端的并联点, 与 设备主体 21连接。
不妨假设重力开关 231设置在设备主体 21的第二表面 212上或与第二表面 212平行的任一平面上。 当设备主体 21的姿态为设备主体 21处于第一位置时, 重力开关 231水平放置, 由于导电转轴 2313和导电动子 2314自身重力的作用, 导电动子 2314与导电定子 2312自动闭合, 具体如图 5所示。 这样, 线圈 2321就 经重力开关 231与设备主体 21建立闭合环路。 当设备主体 21提供的电流通过继 电器 232的线圈 2321时, 线圈 2321内插入的铁芯 2322就会产生磁吸力, 该磁吸 力吸附切换开关 2323的活动端, 使得切换开关 2323的活动端与第一组指示灯 221的一端连接。 此时, 设备主体 21的设备运行状态信息即可通过第一组指示 灯 221进行显示, 而第二组指示灯 222不显示,通信设备在该情形下的使用状态 示意图如图 6所示。该情形对应的应用场景示例如图 7所示, 当设备主体处于第 一位置, 例如用户为通信设备水平放置在设备放置台 24上时,通信设备的设备 运行状态信息通过第一组指示灯 221显示, 用户可以很方便地观察到第一组指 示灯 221显示的设备运行状态信息, 因此有利于用户根据指示灯的显示状态对 该通信设备进行故障排除等维护处理, 即提高了通信设备维护的方便性。
图 8为本发明实施例二提供的指示灯切换控制模块在重力开关断开状态下 的电路示意图。如图 4和图 8所示, 当设备主体 21的姿态为设备主体 21处于第二 位置时, 重力开关 231竖直悬挂, 由于导电转轴 2313和导电动子 2314自身重力 的作用, 导电动子 2314与导电定子 2312自动断开。 这样, 线圈 2321无法经重力 开关 231与设备主体 21建立闭合环路, 因此没有电流流经线圈, 线圈 2321内插 入的铁芯 2322产生的磁吸力消失,使得切换开关 2323的活动端,从第一组指示 灯 221的一端自动切换连接到第二组指示灯 222的一端。此时,设备主体 21的设 备运行状态信息即可通过第二组指示灯 222进行显示,而第一组指示灯 221不显 示, 通信设备在该情形下的使用状态示意图如图 9所示。 该情形对应的应用场 景示例如图 10所示, 当设备主体处于第二位置, 例如当用户将通信设备竖直悬 挂在墙壁 25上时, 通信设备的设备运行状态信息设置在设备主体的第二表面 212上的第二组指示灯 222显示, 用户可以艮方便地观察到第二组指示灯 222显 示的设备运行状态信息,因此有利于用户根据指示灯的显示状态对该通信设备 进行故障排除等维护处理, 即提高了通信设备维护的方便性。
虽然以上是以设备主体的两个相互垂直的表面分别设置一组指示灯的场 景为例,对本实施例基于重力开关进行不同组指示灯之间自动切换的技术方案 进行说明; 但是可以理解, 本实施例技术方案还可应用于, 设备主体任意两个 满足一定角度要求的不同表面上分别设置的指示灯的自动切换控制,分别设置 有指示灯的不同表面的夹角,可满足重力开关从导电动子因受力能改变其与导 电定子之间的连接关系即可。 进一步可选的,根据对重力开关的力学分析, 当重力开关的绝缘底座 231 1 与水平面的夹角大于 75度时, 重力开关的导电动子 2314因自身以及导电转轴 2313重力作用, 断开导电动子 2314与导电定子 2312之间的连接, 如图 1 1所示。 因此, 釆用如图 11所示的以一定的倾斜角悬挂安装,如以重力开关的绝缘底座 2311与水平面的倾斜角大于 75度的倾斜角悬挂安装,也可实现如图 12所示的竖 直悬挂安装通信设备场景下可实现的相似技术效果, 即选通第二组指示灯 222 显示设备主体的设备运行状态信息。
此外, 上述重力开关通过其与继电器的配合, 实现根据设备主体的姿态自 动控制两组指示灯的切换选通的方式, 为本发明实施例的一种可选实现方式。 基于重力开关的特性, 釆用其他方式也可实现相似技术效果。
例如参见图 2-图 4 , 在一种可选的实施方式中: 重力开关的导电转轴 2313 的固定端与设备主体 21连接, 导电定子 2312与第一组指示灯 221的一端连接; 第一组指示灯 221的另一端和第二组指示灯 222的一端的并联点,与设备主体 21 连接。在设备主体 21的姿态为设备主体 21处于第一位置时, 导电定子 2312与导 电动子 2314触接, 以选通设备主体 21与第一组指示灯 221的电连接; 在设备主 体 21的姿态为设备主体 21处于第二位置时, 导电定子 2312与第二指示灯 222的 另一端触接, 以选通设备主体 21与第二组指示灯的电连接。 该情形下, 所述第 一位置例如设备主体设置第一指示灯 221的第一表面位于竖直面、 且设置第二 指示灯 222的第二表面位于水平面; 所述第二位置例如设备主体设置第一指示 灯 221的第一表面位于水平面、 且设置第二指示灯 222的第二表面位于竖直面。 该技术方案基于重力开关的特性,可根据设备主体的姿态自动选通与设备主体 姿态匹配的指示灯,通过选通的指示灯显示设备运行状态, 以提高人们观测设 备运行状态的方便性,从而有利于用户根据指示灯的显示状态对该通信设备进 行故障排除等维护处理, 即提高了通信设备维护的方便性。
最后应说明的是: 以上实施例仅用以说明本发明的技术方案, 而非对其限 制; 尽管参照前述实施例对本发明进行了详细的说明, 本领域的普通技术人员 应当理解: 其依然可以对前述各实施例所记载的技术方案进行修改, 或者对其 中部分技术特征进行等同替换; 而这些修改或者替换, 并不使相应技术方案的 本质脱离本发明各实施例技术方案的精神和范围。

Claims

1、 一种带指示灯的设备, 其特征在于, 包括:
设备主体;
用于显示设备运行状态的至少两组指示灯;所述至少两组指示灯分别设置 在所述设备主体的不同位置;
连接在所述设备主体和所述至少两组指示灯之间的指示灯切换控制模块, 用于择一选通所述至少两组指示灯中的一组指示灯与所述设备主体的电连接。
2、 根据权利要求 1所述的设备, 其特征在于,
所述指示灯切换控制模块, 具体用于根据所述设备主体的姿态, 选通所述 至少两组指示灯中与所述设备主体的姿态相匹配一组指示灯,以所述显示设备 运行状态。
3、 根据权利要求 1或 2所述的设备, 其特征在于,
所述至少两组指示灯包括: 第一组指示灯和第二组指示灯;
所述第一组指示灯设置在所述设备主体的第一表面,所述第二组指示灯设 置在所述设备主体的第二表面;所述第一表面和所述第二表面之间形成有预设 夹角。
4、 根据权利要求 3所述的设备, 其特征在于, 所述指示灯切换控制模块包 括: 重力开关;
所述重力开关包括: 绝缘底座、 导电定子、 导电转轴和导电动子; 所述导 电定子固接在所述绝缘底座的一端,所述绝缘底座的另一端固接所述导电转轴 的固定端, 所述导电转轴的活动端固接所述导电动子;
所述导电转轴的固定端与所述设备主体连接 ,所述导电定子与所述第一组 指示灯的一端连接;所述第一组指示灯的另一端和所述第二组指示灯的一端的 并联点, 与所述设备主体连接;
在所述设备主体的姿态为所述设备主体处于第一位置时,所述导电定子与 所述导电动子触接, 以选通所述设备主体与所述第一组指示灯的电连接; 在所 述设备主体的姿态为所述设备主体处于第二位置时,所述导电定子与所述第二 指示灯的另一端触接, 以选通所述设备主体与所述第二组指示灯的电连接。
5、 根据权利要求 4所述的设备, 其特征在于, 所述第一表面和所述第二表 面之间的夹角等于 90度。
6、 根据权利要求 3所述的设备, 其特征在于,
所述指示灯切换控制模块包括: 重力开关和继电器;
所述重力开关包括: 绝缘底座、 导电定子、 导电转轴和导电动子; 所述导 电定子固接在所述绝缘底座的一端,所述绝缘底座的另一端固接所述导电转轴 的固定端, 所述导电转轴的活动端固接所述导电动子;
所述继电器包括: 线圈、 切换开关和插入在所述线圈内的铁芯; 所述线圈 的输入端与所述设备主体连接; 所述导电定子和所述导电转轴的固定端, 串接 在所述线圈的输出端和所述设备主体之间;所述切换开关的固定端与所述导电 转轴的固定端连接; 在所述线圈处于通电状态下, 所述切换开关的活动端被所 述铁芯吸附而与所述第一组指示灯的一端连接;且在所述线圈处于未通电状态 下, 所述切换开关的活动端与所述第二组指示灯的一端连接;
所述第一组指示灯的另一端和所述第二组指示灯的另一端的并联点,与所 述设备主体连接; 在所述设备主体的姿态为所述设备主体处于第一位置时, 所 述导电定子与所述导电动子触接,以选通所述设备主体和所述线圈之间的电连 接; 在所述设备主体的姿态为所述设备主体处于第二位置时, 所述导电定子与 所述导电动子断开, 以断开所述设备主体和所述线圈之间的电连接。
7、 根据权利要求 6所述的设备, 其特征在于, 所述第一表面和所述第二表 面之间的夹角等于 90度。
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