WO2014134798A1 - 一种供电电路及供电面板 - Google Patents

一种供电电路及供电面板 Download PDF

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Publication number
WO2014134798A1
WO2014134798A1 PCT/CN2013/072241 CN2013072241W WO2014134798A1 WO 2014134798 A1 WO2014134798 A1 WO 2014134798A1 CN 2013072241 W CN2013072241 W CN 2013072241W WO 2014134798 A1 WO2014134798 A1 WO 2014134798A1
Authority
WO
WIPO (PCT)
Prior art keywords
power supply
module
interface
switch module
switch
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2013/072241
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English (en)
French (fr)
Inventor
高兴国
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huawei Technologies Co Ltd
Original Assignee
Huawei Technologies Co Ltd
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 Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Priority to PCT/CN2013/072241 priority Critical patent/WO2014134798A1/zh
Priority to CN201380000232.0A priority patent/CN103534657B/zh
Priority to EP13876940.1A priority patent/EP2953292B1/en
Priority to AU2013380826A priority patent/AU2013380826B2/en
Priority to CA2903908A priority patent/CA2903908C/en
Publication of WO2014134798A1 publication Critical patent/WO2014134798A1/zh
Priority to US14/842,932 priority patent/US9774403B2/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/80Optical aspects relating to the use of optical transmission for specific applications, not provided for in groups H04B10/03 - H04B10/70, e.g. optical power feeding or optical transmission through water
    • H04B10/806Arrangements for feeding power
    • H04B10/807Optical power feeding, i.e. transmitting power using an optical signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/10Current supply arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/40Bus networks
    • H04L12/40006Architecture of a communication node
    • H04L12/40045Details regarding the feeding of energy to the node from the bus

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a power supply circuit and a power supply panel. Background technique
  • the power supply equipment (Power Supply Equipment, PSE) is used to supply power to the DP outside the user's home.
  • the medium for transmitting power is usually twisted pair.
  • the voltage output from the power supply module will not only be transmitted to the DP, but will also be transmitted to other line interfaces inside the user's home.
  • Other interfaces are usually connected to terminals such as ordinary telephones and modems of various digital subscriber lines. If the reverse voltage of this power supply module is transmitted and the user does not provide any protection measures, some terminal equipment may burn out. Please refer to FIG.
  • FIG. 1 is a schematic diagram of a circuit for powering a DP in the prior art.
  • the first terminal device 100 and the second terminal device 200 are connected on the twisted pair.
  • the power supply module 300 is added to make the DP turn on the power supply module 300 through the twisted pair to implement reverse power supply to the DP.
  • the power supply module 300 also transmits a reverse voltage to the first terminal device 100 and the second terminal device 200. Since the power supply module 300 additionally introduces a reverse voltage, the first terminal device 100 and the second terminal device 200 connected to the twisted pair have a risk of burnout. Summary of the invention
  • the embodiment of the invention provides a power supply circuit and a power supply panel, which can ensure the normal and safe use of other terminal devices in the circuit according to whether the power supply is adaptively switched for the distribution point.
  • the first aspect of the embodiment of the present invention provides a power supply circuit for supplying power from an internal line of a user's home to a distribution point outside the user's home, which may include: a power supply module, configured to supply power to the wiring point;
  • a switch module which is respectively connected to the power supply module, the wiring point, and a terminal device inside the user home, and when the wiring point does not need to be powered, the switch module only connects the wiring point and the terminal The switch module only connects the power supply module and the distribution point when the wiring point needs to be powered;
  • control module connected to the power supply module, configured to control the switch module to perform line switching according to an electrical signal output by the power supply module;
  • the isolation module is connected to the power supply module and the switch module, respectively, for preventing the service provided by the distribution point from being outputted to the power supply module and preventing the voltage provided by the power supply module from being output to the terminal device;
  • the service backhaul module is respectively connected to the isolation module and the terminal device, and is configured to output the service provided by the distribution point to the terminal device when the connection point needs to be powered.
  • the power supply circuit may further include:
  • a protection module is connected between the wiring point and the switch module for protecting the switch module and the terminal device.
  • the service backhaul module may be further configured to process and output the service provided by the distribution point to The terminal device.
  • the switch module may include:
  • the single-pole double-throw switch is connected to the control module, and is configured to receive a control signal of the control module to perform line switching.
  • a second aspect of the embodiments of the present invention provides a power supply panel for supplying power from an internal line of a user's home to a distribution point outside the user's home, which may include:
  • a switch module configured to connect only the external cable interface and the internal cable interface when not supplying power to the wiring point, and only connect the external cable interface and the reverse power supply interface when powering the wiring point ;
  • a service backhaul interface configured to connect the external cable interface to the internal cable interface through the reverse power supply interface when powering the distribution point.
  • the power supply panel may further include:
  • the control module is respectively connected to the reverse power supply interface and the switch module, and is configured to control the switch module to perform line switching according to an electrical signal output by the external power supply module.
  • the power supply panel may further include:
  • a switch control interface is connected to the switch module for connecting an external control module to control the switch module to perform line switching.
  • the switch module may include:
  • the single-pole double-throw switch is connected to the control module, and is configured to receive a control signal of the control module to perform line switching.
  • the power supply panel may further include:
  • the service processing module is respectively connected to the service backhaul interface and the external power supply module, and is configured to process the service provided by the distribution point and output the information to the various terminal devices through the service backhaul interface.
  • the power supply panel may further include:
  • the protection module is respectively connected to the external cable interface and the switch module for protecting the switch module and various terminal devices connected to the internal cable interface.
  • the power supply circuit can be automatically switched.
  • the power supply module When power is supplied to the wiring point outside the user's home, the power supply module only supplies power to the wiring point without additional reverse voltage. Output to the terminal device inside the user's home to ensure the normal and safe use of the terminal device; when there is no need to supply power to the distribution point, the switch module connects the external cable to the internal cable without affecting the use of traditional services; The module ensures the safe and stable use of the entire power supply circuit and avoids safety issues such as lightning strikes.
  • FIG. 1 is a schematic circuit diagram of power supply for an external wiring point in the prior art
  • FIG. 2 is a circuit diagram of a first embodiment of a power supply circuit of the present invention
  • FIG. 3 is a circuit diagram of a second embodiment of the power supply circuit of the present invention.
  • FIG. 4 is a circuit diagram of a first embodiment of a power supply panel of the present invention.
  • Figure 5 is a circuit diagram of a second embodiment of the power supply panel of the present invention.
  • FIG. 6 is a circuit diagram of a third embodiment of the power supply panel of the present invention.
  • FIG. 7 is a circuit diagram showing a fourth embodiment of the power supply panel of the present invention. detailed description
  • the power supply circuit is configured to supply power from an internal line of a user's home to a distribution point outside the user's home, including: The module 10, the switch module 20, the control module 30, the isolation module 40, and the service backhaul module 50.
  • the power supply module 10 is configured to supply power to the wiring point.
  • the power supply module 10 can provide a stable reverse voltage for external wiring points.
  • the power supply module 10 can be allocated according to the power supply capability of the power supply module 10.
  • one power supply module 10 can be further configured.
  • the switch module 20 is connected to the power supply module 10, the wiring point, and the terminal device inside the user's home. When the wiring point does not need to be powered, the switch module 20 only connects the wiring point. Connected to the terminal device as shown by the solid line in FIG. 2; when the wiring point needs to be powered, The switch module 20 only connects the power supply module 10 and the wiring point; as shown by the dashed line connection in FIG.
  • the switch module 20 can be a single-pole double-throw switch.
  • the single-pole double-throw switch When it is not necessary to supply power to the wiring point, the single-pole double-throw switch is switched to the internal cable by default, and the wiring points and various terminal devices are connected. Mandarin phones, modems, etc. None have any impact on traditional business.
  • the other end of the single-pole double-throw switch is switched from the internal cable to the power supply module 10, thereby connecting the power supply module 10 and the wiring point to realize the wiring. Point power supply.
  • switch module 20 a specific implementation manner of the switch module 20 is provided. Those skilled in the art should understand that any switch module that can perform line switching is within the protection scope of the present invention.
  • the single-pole double-throw switch is used for line switching, and the cost is low, the structure is simple, and the effect is better.
  • the control module 30 is connected to the power supply module 10, and is configured to control the switch module 20 to perform line switching according to an electrical signal output by the power supply module 10.
  • control module 30 is connected to the power supply module 10, and controls the switch module 20 to switch from the default position to the voltage according to the voltage or current signal provided by the power supply module 10.
  • the power supply modules 10 are connected to implement automatic control.
  • manual manual switching can be performed when power supply to the external wiring points is required, and the purpose of switching circuits to protect various terminal devices inside the home can be achieved.
  • the isolation module 40 is connected to the power supply module 10 and the switch module 20, respectively, for preventing the service provided by the distribution point from being outputted to the power supply module 10 and preventing the voltage output provided by the power supply module 10 from being output to The terminal device.
  • the service backhaul module 50 is respectively connected to the isolation module 40 and the terminal device, and is configured to output the service provided by the distribution point to the terminal device when the distribution point needs to be powered.
  • the switch module 20 is switched to connect the power supply module 10 and the wiring point.
  • the terminal device will not be able to receive various services provided by the distribution point, such as voice service, broadband service, and the like.
  • the isolation module 40 and the service backhaul module 50 By configuring the isolation module 40 and the service backhaul module 50, when the switch module 20 communicates with the power supply module 10 and the distribution point, the connection between the power supply module 10 and the distribution point is
  • the service backhaul module 50 can connect the external cable to the internal cable, so that the service provided by the distribution point can be output to the terminal device through the service backhaul module 50, and at the same time, because the isolation module 40 Existence of the power supply module 10
  • the voltage is not transmitted to the terminal device through the isolation module 40, and a high-pass filter is disposed on the line connecting the service backhaul module 50 inside the isolation module 40, such as a single unit.
  • the blocking module 40 can also prevent the service provided by the distribution point from being transmitted to the power supply module 10 through the isolation module 40.
  • the power supply circuit can be automatically switched.
  • the power supply module When power is supplied to the wiring point outside the home of the user, the power supply module only supplies power to the distribution point. The additional reverse voltage is output to the terminal equipment inside the user's home, ensuring the normal and safe use of the terminal equipment.
  • the switch module connects the external cable to the internal cable without affecting the traditional service. use.
  • the power supply circuit includes: a power supply module 10, a switch module 20, a control module 30, an isolation module 40, and a service backhaul.
  • Module 50 protection module 60.
  • the power supply module 10 is configured to supply power to the wiring point.
  • the switch module 20 is connected to the power supply module 10, the wiring point, and the terminal device inside the user's home. When the wiring point does not need to be powered, the switch module 20 only connects the wiring point. And the terminal device, when the wiring point needs to supply power, the switch module 20 only connects the power supply module 10 and the wiring point.
  • the control module 30 is connected to the power supply module 10, and is configured to control the switch module 20 to perform line switching according to an electrical signal output by the power supply module 10.
  • the isolation module 40 is connected to the power supply module 10 and the switch module 20, respectively, for preventing the service provided by the distribution point from being outputted to the power supply module 10 and preventing the voltage output provided by the power supply module from being output to the Said terminal equipment.
  • the service backhaul module 50 is respectively connected to the isolation module 40 and the terminal device, and is configured to output the service provided by the distribution point to the terminal device when the distribution point needs to be powered.
  • the protection module 60 is connected between the wiring point and the switch module 20 for protecting the switch module 20 and the terminal device.
  • the external cable may be subjected to lightning strikes or other interference
  • various terminal devices of the switch module 20 and the back end can be Provides good protection against lightning caused by wiring points or other external equipment The terminal device caused by the blow is damaged.
  • FIG. 4 it is a schematic diagram of a composition of a power supply panel according to a first embodiment of the present invention.
  • the power supply panel is configured to supply power from an internal line of a user's home to a distribution point outside the user's home, including: Cable interface 1, internal cable interface 2, reverse power supply interface 3, switch module 4, service return interface 5.
  • the external cable interface 1 is for connecting the wiring points.
  • the internal cable interface 2 is used to connect various terminal devices. Such as a regular telephone, various modems, and the like.
  • a series of service interfaces may also be configured on the power supply panel, and only one end of these service interfaces needs to be connected to the internal cable interface 2. In this way, the terminal device can also be directly connected to these service interfaces, which makes the panel routing more neat.
  • the reverse power supply interface 3 is used to connect an external power supply module.
  • the switch module 4 is configured to connect only the external cable interface 1 and the internal cable interface 2 when not supplying power to the distribution point, and only connect the external cable interface 1 when powering the distribution point With reverse power supply interface 3.
  • the switch module 4 can be a single-pole double-throw switch, so that the structure is simple, low in cost and convenient to switch.
  • the switch module 4 may manually switch when performing line switching, or may set a corresponding control module to control the switch module 4 to perform automatic switching.
  • the service backhaul interface 5 is configured to connect the external cable interface 1 and the internal cable interface 2 through the reverse power supply interface when powering the distribution point.
  • the service backhaul interface 5 when the switch module 4 only communicates the external power supply module and the external cable interface 1, the service backhaul interface 5 outputs the service provided by the external cable interface 1 to the internal cable interface. 2, and transmitted to the respective terminal devices through the internal cable interface 2, in order to avoid the service output provided by the external cable interface 1 to the external power supply module, and at the same time, to avoid the reverse voltage provided by the external power supply module
  • the service backhaul interface 5 is output to the internal terminal device, and an isolation module can be disposed between the reverse power supply interface 3 and the external power supply module for isolating the service signal and the voltage signal.
  • the unit is connected to the internal cable interface 2, thereby realizing the unitization of the terminal device and the interface, and avoiding the disadvantages of the power supply panel being bulky and the wiring being disordered due to a large number of terminal devices that need to be connected, and the unitized expansion panel connection is also extremely easy. Easy to use.
  • the power supply panel By configuring the power supply panel with the switch module and the service return interface, and with the external power supply module and the isolation module, it is possible to realize safe and stable power supply to the distribution point only when the home main panel is replaced, without changing the user's home.
  • Various configurations of the internal terminal using the user to maintain usage habits, convenient and safe.
  • the power supply panel includes: an external cable interface 1, an internal cable interface 2, a reverse power supply interface 3, and a switch module 4. , service backhaul interface 5, control module 6.
  • the external cable interface 1 is for connecting the wiring points.
  • the internal cable interface 2 is used to connect various terminal devices.
  • the reverse power supply interface 3 is used to connect an external power supply module.
  • the switch module 4 is configured to connect only the external cable interface 1 and the internal cable interface 2 when not supplying power to the distribution point, and only connect the external cable interface 1 when powering the distribution point With reverse power supply interface 3.
  • the service backhaul interface 5 is configured to connect the external cable interface 1 and the internal cable interface 2 through the reverse power supply interface when powering the distribution point.
  • the control module 6 is respectively connected to the reverse power supply interface 3 and the switch module 4, and is configured to control the switch module 4 to perform line switching according to an electrical signal output by the external power supply module.
  • the switch module 4 can include:
  • the single-pole double-throw switch is connected to the control module 6 for receiving the control signal of the control module 6 and performing line switching.
  • the control module 6 can receive the electrical signal provided by the external power supply module from the reverse power supply interface 3, so that the switch module 4 can be controlled to perform line switching.
  • the switching process is automatically completed without manual operation, and thus the use of the package is performed. Convenient.
  • the power supply panel includes: an external cable interface 1, an internal cable interface 2, a reverse power supply interface 3, and a switch module 4. , service backhaul interface 5, switch control interface 7.
  • the external cable interface 1 is used to connect the wiring points.
  • the internal cable interface 2 is used to connect various terminal devices.
  • the reverse power supply interface 3 is used to connect an external power supply module.
  • the switch module 4 is configured to connect only the external cable interface 1 and the internal cable interface 2 when not supplying power to the distribution point, and only connect the external cable interface 1 when powering the distribution point With reverse power supply interface 3.
  • the service backhaul interface 5 is configured to connect the external cable interface 1 and the internal cable interface 2 through the reverse power supply interface 3 when powering the distribution point.
  • the switch control interface 7 is connected to the switch module for connecting an external control module to control the switch module 4 for line switching.
  • the external control module can collect the voltage or current signal of the reverse power supply interface 3 as a control trigger signal to implement automatic control circuit switching.
  • control module may be integrated in the power supply panel or may exist separately outside the power supply panel.
  • control module may be integrated in the power supply panel or may exist separately outside the power supply panel.
  • the switch control interface can be reserved on the power supply panel, thereby reducing the size of the power supply panel.
  • FIG. 7 is a schematic structural diagram of a fourth embodiment of the power supply panel of the present invention.
  • External cable interface 1 internal cable interface 2, reverse power supply interface 3, switch module 4, service return interface 5, switch control interface 7, business processing module 8 and protection module 9.
  • the external cable interface 1 is for connecting the wiring points.
  • the internal cable interface 2 is used to connect various terminal devices.
  • the reverse power supply interface 3 is used to connect an external power supply module.
  • the switch module 4 is configured to connect only the external cable interface 1 and the internal cable interface 2 when not supplying power to the distribution point, and only connect the external cable interface 1 when powering the distribution point With reverse power supply interface 3.
  • the service backhaul interface 5 is configured to pass the reverse power supply interface when powering the distribution point
  • the switch control interface 7 is connected to the switch module for connecting an external control module to control the switch module 4 for line switching.
  • the service processing module 8 is connected to the service backhaul interface 5 and the external power supply module, and is configured to process the service provided by the distribution point and output the service to the service backhaul interface 5 through the service backhaul interface 5 Various terminal devices.
  • the service processing module 8 can perform corresponding processing on the voice service, the broadband service, and the like uploaded by the external cable, and then output the information to the various terminal devices through the service backhaul interface 5. Meet the needs of users.
  • the protection module 9 is respectively connected to the external cable interface 1 and the switch module 4 for protecting the switch module 4 and various terminal devices connected to the internal cable interface 2.
  • the external cable may be subjected to lightning strikes or other interference
  • the protection module 9 between the external cable interface 1 and the switch module 4
  • various terminals of the switch module 4 and the back end can be The device is well protected against damage to internal terminal equipment caused by lightning strikes on external cables or other external equipment.
  • the present invention has the following advantages:
  • the power supply circuit can be automatically switched.
  • the power supply module When power is supplied to the wiring point outside the user's home, the power supply module only supplies power to the wiring point without additional reverse.
  • the voltage is output to the terminal device inside the user's home to ensure the normal safe use of the terminal device; when there is no need to supply power to the distribution point, the switch module connects the external cable with the internal cable without affecting the use of the traditional service;
  • the protection module it is possible to ensure the safe and stable use of the entire power supply circuit and avoid safety problems such as lightning strikes.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (Read-Only Memory) or a random access memory (RAM).

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

一种供电电路及供电面板,该供电电路包括:供电模块(10),为配线点供电;开关模块(20),分别与供电模块(10)、终端设备及配线点相连,当配线点无需供电时连通配线点与终端设备,当配线点需要供电时连通供电模块(10)与配线点;控制模块(30),与供电模块(10)相连,根据供电模块(10)输出的电信号控制开关模块(20)进行线路切换;隔离模块(40),分别与供电模块(10)及开关模块(20)相连,阻止外部业务输出至供电模块(10)及阻止供电模块(10)提供的电压输出至终端设备;业务回传模块(50),分别与隔离模块(40)及终端设备相连,当配线点需要供电时,将外部业务输出至终端设备。该供电电路及供电面板可根据是否为配线点供电自适应地切换供电线路,确保电路中其他终端设备的正常安全使用。

Description

一种供电电路及供电面板
技术领域
本发明涉及通信技术领域, 尤其涉及一种供电电路及供电面板。 背景技术
在光纤到配线点 ( Fiber To The Distribution Point, 筒称 FTTdp )组网环境 中, 由于在配线点 ( Distribution Point , 筒称 DP )本地取电困难, 因此, 如何 给 DP供电成为 FTTdp组网环境中需要解决的技术难点。
在现有技术中, 通过从用户家庭内部的供电设备 ( Power Supply Equipment, 筒称 PSE ) 向用户家庭外部的 DP供电, 其中, 传输供电的媒介 通常采用双绞线。在这种供电电路中, 由于传统用户家庭内部的双绞线连接方 式通常是串接在一起的。如果在用户家庭内部连线上的某一点连接供电模块以 反向供电给 DP,该供电模块输出的电压不仅会传输到 DP, 同时也会传输到用 户家庭内部的其他线路接口。 而其他接口通常连接着普通话机、各种数字用户 线路的调制解调器等终端设备,如果这个供电模块的反向电压传输过去, 而用 户未作任何保护措施, 可能会导致一些终端设备烧坏。 请参照图 1 , 为现有技 术中为 DP供电的电路示意图。 在一个家庭内部走线环境下, 在双绞线上连接 着第一终端设备 100及第二终端设备 200。 当需要为 FTTdp组网环境中的 DP 供电时, 将 DP与双绞线相连, 并增加供电模块 300使得 DP通过双绞线与供 电模块 300导通从而实现为 DP反向供电。 但是供电模块 300除了向 DP反向 供电外, 同时也会传输反向电压到第一终端设备 100和第二终端设备 200。 由 于供电模块 300额外引入了反向电压, 导致连接在双绞线上的第一终端设备 100和第二终端设备 200存在烧坏的风险。 发明内容
本发明实施例提供了一种供电电路及供电面板,可根据是否为配线点供电 自适应的切换供电线路, 确保电路中其他终端设备的正常安全使用。
本发明实施例第一方面提供了一种供电电路,用于从用户家庭的内部线路 向用户家庭外部的配线点供电, 可包括: 供电模块, 用于为所述配线点供电;
开关模块, 分别与所述供电模块、所述配线点以及用户家庭内部的终端设 备相连, 当所述配线点不需要供电时, 所述开关模块仅连通所述配线点与所述 终端设备, 当所述配线点需要供电时, 所述开关模块仅连通所述供电模块与所 述配线点;
控制模块, 与所述供电模块相连, 用于根据所述供电模块输出的电信号控 制所述开关模块进行线路切换;
隔离模块, 分别与所述供电模块及所述开关模块相连,用于阻止所述配线 点提供的业务输出至所述供电模块以及阻止所述供电模块提供的电压输出至 所述终端设备;
业务回传模块, 分别与所述隔离模块及所述终端设备相连, 用于当所述配 线点需要供电时, 将所述配线点提供的业务输出至所述终端设备。
在第一种可能的实现方式中, 所述供电电路还可包括:
防护模块, 连接在所述配线点与所述开关模块之间, 用于保护所述开关模 块及所述终端设备。
结合第一方面或第一方面的第一种可能的实现方式,在第二种可能的实现 方式中,所述业务回传模块还可用于对所述配线点提供的业务进行处理并输出 至所述终端设备。
结合第一方面或第一方面的第一或第二种可能的实现方式,在第三种可能 的实现方式中, 所述开关模块可包括:
单刀双掷开关,与所述控制模块相连,用于接收所述控制模块的控制信号, 进行线路切换。
本发明实施例第二方面提供了一种供电面板,用于从用户家庭的内部线路 向用户家庭外部的配线点供电, 可包括:
外部电缆接口, 用于连接所述配线点;
内部电缆接口, 用于连接各种终端设备;
反向供电接口, 用于连接外部的供电模块;
开关模块, 用于在不为所述配线点供电时,仅连通所述外部电缆接口及内 部电缆接口,在为所述配线点供电时,仅连通所述外部电缆接口与反向供电接 口; 业务回传接口, 用于在为所述配线点供电时,通过所述反向供电接口连接 所述外部电缆接口与所述内部电缆接口。
在第一种可能的实现方式中, 所述供电面板还可包括:
控制模块, 分别与所述反向供电接口及所述开关模块相连, 用于根据所述 外部的供电模块输出的电信号控制所述开关模块进行线路切换。
在第二种可能的实现方式中, 所述供电面板还可包括:
开关控制接口, 与所述开关模块连接, 用于连接外部的控制模块以控制所 述开关模块进行线路切换。
结合第二方面或第二方面的第一或第二种可能的实现方式,在第三种可能 的实现方式中, 所述开关模块可包括:
单刀双掷开关,与所述控制模块相连,用于接收所述控制模块的控制信号, 进行线路切换。
结合第二方面或第二方面的第一或第二或第三种可能的实现方式,在第四 种可能的实现方式中, 所述供电面板还可包括:
业务处理模块, 分别与所述业务回传接口及所述外部的供电模块相连, 用 于对所述配线点提供的业务进行处理并通过所述业务回传接口输出至各种终 端设备。
结合第二方面或第二方面的第一或第二或第三或第四种可能的实现方式, 在第五种可能的实现方式中, 所述供电面板还可包括:
防护模块, 分别与所述外部电缆接口及所述开关模块相连, 用于保护所述 开关模块及连接在所述内部电缆接口上的各种终端设备。
实施本发明实施例, 具有如下有益效果:
通过配置开关模块、 控制模块、 隔离及业务回传模块, 可以实现供电电路 的自动切换,在为用户家庭外部的配线点供电时,供电模块仅为配线点供电而 没有额外的反向电压输出至用户家庭内部的终端设备上,确保了终端设备的正 常安全使用; 当无需为配线点供电时, 开关模块将外部电缆与内部电缆连接在 一起, 不影响传统业务的使用; 通过设置防护模块, 可以确保整个供电电路的 安全和稳定使用, 避免雷击等安全问题。 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 例中所需要使用的附图作筒单地介绍,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的 前提下, 还可以根据这些附图获得其他的附图。
图 1是现有技术中为外部的配线点供电的电路示意图;
图 2是本发明供电电路的第一实施例的电路示意图;
图 3是本发明供电电路的第二实施例的电路示意图;
图 4是本发明供电面板的第一实施例的电路示意图;
图 5是本发明供电面板的第二实施例的电路示意图;
图 6是本发明供电面板的第三实施例的电路示意图;
图 7是本发明供电面板的第四实施例的电路示意图。 具体实施方式
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, 所描述的实施例仅仅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作出创造 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。
请参照图 2, 为本发明供电电路的第一实施例的电路示意图, 在本实施例 中, 所述供电电路用于从用户家庭的内部线路向用户家庭外部的配线点供电, 包括: 供电模块 10、 开关模块 20、 控制模块 30、 隔离模块 40及业务回传模 块 50。
所述供电模块 10用于为所述配线点供电。
具体地, 所述供电模块 10可为外部的配线点提供稳定的反向电压。 当外 部的配线点数量不止一个时, 可根据所述供电模块 10的供电能力进行合理分 配, 当数量超出单个供电模块 10的承载能力时, 也可以再配置一个供电模块 10。
所述开关模块 20分别与所述供电模块 10、 所述配线点以及用户家庭内部 的终端设备相连, 当所述配线点不需要供电时, 所述开关模块 20仅连通所述 配线点与所述终端设备, 如图 2中实线连接所示; 当所述配线点需要供电时, 所述开关模块 20仅连通所述供电模块 10与所述配线点;如图 2中虚线连接所 示。
优选地, 所述开关模块 20可以是单刀双掷开关, 当不需要为所述配线点 供电时,单刀双掷开关默认切换至内部电缆上, 连通所述配线点及各种终端设 备如普通话机、 调制解调器等。 从而不对传统业务产生任何影响。 当需要为所 述配线点供电时, 单刀双掷开关的另一端从内部电缆切换到所述供电模块 10 上, 从而连通所述供电模块 10与所述配线点, 实现为所述配线点供电。
需要说明的是, 在本实施例中给出了一种开关模块 20的具体实施方式, 本领域技术人员应当理解,任何可以进行线路切换的开关模块都在本发明的保 护范围之内。采用单刀双掷开关进行线路切换,成本低、结构筒单、效果较佳。
所述控制模块 30与所述供电模块 10相连, 用于根据所述供电模块 10输 出的电信号控制所述开关模块 20进行线路切换。
当需要为所述外部的配电点供电时, 所述控制模块 30与所述供电模块 10 相连, 根据所述供电模块 10提供的电压或者电流信号控制所述开关模块 20 从默认位置切换到与所述供电模块 10相连, 从而实现自动控制。
当然, 除了通过所述控制模块 30进行自动切换, 也可以在需要对所述外 部的配线点进行供电时进行人工的手动切换, 同样可以达到切换电路,保护家 庭内部各种终端设备的目的。
所述隔离模块 40分别与所述供电模块 10及所述开关模块 20相连, 用于 阻止所述配线点提供的业务输出至所述供电模块 10以及阻止所述供电模块 10 提供的电压输出至所述终端设备。
所述业务回传模块 50分别与所述隔离模块 40及所述终端设备相连,用于 当所述配线点需要供电时, 将所述配线点提供的业务输出至所述终端设备。
具体地, 当需要为所述配线点供电时, 所述开关模块 20切换至连通所述 供电模块 10与所述配线点。 此时终端设备将无法接收到所述配线点提供的各 种业务如语音业务、 宽带业务等。 通过配置所述隔离模块 40及业务回传模块 50, 当所述开关模块 20连通所述供电模块 10与所述配线点时, 连接在所述供 电模块 10与所述配线点之间的所述业务回传模块 50则可以将外部电缆与内部 电缆连通, 从而使得所述配线点提供的业务可以通过所述业务回传模块 50输 出至所述终端设备, 同时由于所述隔离模块 40的存在, 所述供电模块 10的反 向电压不会通过所述隔离模块 40传输至所述终端设备, 如筒单的在所述隔离 模块 40内部与所述业务回传模块 50连接的线路上设置一个高通滤波器即可以 实现通交流, 阻直流的效果; 而且所述隔离模块 40还能使得所述配线点提供 的业务特不会通过所述隔离模块 40传输至所述供电模块 10。
通过配置开关模块 20、 控制模块 30、 隔离模块 40及业务回传模块 50, 可以实现供电电路的自动切换,在为用户家庭外部的配线点供电时,供电模块 仅为配线点供电而没有额外的反向电压输出至用户家庭内部的终端设备上,确 保了终端设备的正常安全使用; 当无需为配线点供电时, 开关模块将外部电缆 与内部电缆连接在一起, 不影响传统业务的使用。
请参照图 3 , 为本发明供电电路的第二实施例的电路示意图; 在本实施例 中, 所述供电电路包括: 供电模块 10、 开关模块 20、 控制模块 30、 隔离模块 40、 业务回传模块 50、 防护模块 60。
所述供电模块 10用于为所述配线点供电。
所述开关模块 20分别与所述供电模块 10、 所述配线点以及用户家庭内部 的终端设备相连, 当所述配线点不需要供电时, 所述开关模块 20仅连通所述 配线点与所述终端设备, 当所述配线点需要供电时, 所述开关模块 20仅连通 所述供电模块 10与所述配线点。
所述控制模块 30与所述供电模块 10相连, 用于根据所述供电模块 10输 出的电信号控制所述开关模块 20进行线路切换。
所述隔离模块 40分别与所述供电模块 10及所述开关模块 20相连, 用于 阻止所述配线点提供的业务输出至所述供电模块 10以及阻止所述供电模块提 供的电压输出至所述终端设备。
所述业务回传模块 50分别与所述隔离模块 40及所述终端设备相连,用于 当所述配线点需要供电时, 将所述配线点提供的业务输出至所述终端设备。
所述防护模块 60连接在所述配线点与所述开关模块 20之间,用于保护所 述开关模块 20及终端设备。
具体地, 因为外部电缆可能遭受雷击或其他干扰,通过在所述配线点与所 述开关模块 20之间设置所述防护模块 60, 从而能够对所述开关模块 20及后 端的各种终端设备起到良好的保护作用,避免因配线点或其他外部设备遭受雷 击引起的终端设备损坏。
通过设置防护模块, 可以确保整个供电电路的安全和稳定使用,避免雷击 等安全问题。
请参照图 4, 为本发明供电面板的第一实施例的组成示意图; 在本实施例 中, 所述供电面板用于从用户家庭的内部线路向用户家庭外部的配线点供电, 包括: 外部电缆接口 1、 内部电缆接口 2、 反向供电接口 3、 开关模块 4、 业务 回传接口 5。
所述外部电缆接口 1用于连接所述配线点。
所述内部电缆接口 2用于连接各种终端设备。如普通话机、各种调制解调 器等。 当然, 也可以在所述供电面板上配置一系列的业务接口, 只需要确保这 些业务接口一端与所述内部电缆接口 2相连即可。这样终端设备也可以直接连 接在这些业务接口上, 使得面板走线更工整。
所述反向供电接口 3用于连接外部的供电模块。
所述开关模块 4用于在不为所述配线点供电时,仅连通所述外部电缆接口 1及内部电缆接口 2, 在为所述配线点供电时, 仅连通所述外部电缆接口 1与 反向供电接口 3。
优选地, 所述开关模块 4可以是单刀双掷开关, 这样结构筒单、 成本低且 切换方便。
可选地, 所述开关模块 4在进行线路切换时, 可以采用人工切换, 也可以 设置相应的控制模块以控制所述开关模块 4进行自动切换。
所述业务回传接口 5用于在为所述配线点供电时,通过所述反向供电接口 连接所述外部电缆接口 1与所述内部电缆接口 2。
具体地,当所述开关模块 4仅连通所述外部的供电模块与所述外部电缆接 口 1时,所述业务回传接口 5将所述外部电缆接口 1提供的业务输出至所述内 部电缆接口 2上, 并通过所述内部电缆接口 2传输至各个终端设备, 为了避免 所述外部电缆接口 1提供的业务输出至外部的供电模块,同时为了避免外部的 供电模块提供的反向电压通过所述业务回传接口 5输出至内部的终端设备,可 以在所述反向供电接口 3 与外部的供电模块之间设置一个隔离模块用于隔离 业务信号及电压信号即可。
当需要连接的终端设备较多时, 可以配置多个扩展面板, 多个扩展面板均 与所述内部电缆接口 2相连,从而实现终端设备与接口的单元化,避免因需要 连接的终端设备较多造成所述供电面板体积庞大、布线杂乱等弊端,单元化的 扩展面板连接也极为轻松, 使用方便。
通过配置带有开关模块及业务回传接口的供电面板,配合外部的供电模块 及隔离模块,可以在只更换家庭主面板的情况下实现对配线点进行安全稳定的 供电, 同时无需改变用户家庭内部终端的各种配置, 利用用户保持使用习惯, 方便安全。
请参照图 5 , 为本发明供电面板的第二实施例的组成示意图; 在本实施例 中, 所述供电面板包括: 外部电缆接口 1、 内部电缆接口 2、 反向供电接口 3、 开关模块 4、 业务回传接口 5、 控制模块 6。
所述外部电缆接口 1用于连接所述配线点。
所述内部电缆接口 2用于连接各种终端设备。
所述反向供电接口 3用于连接外部的供电模块。
所述开关模块 4用于在不为所述配线点供电时,仅连通所述外部电缆接口 1及内部电缆接口 2, 在为所述配线点供电时, 仅连通所述外部电缆接口 1与 反向供电接口 3。
所述业务回传接口 5用于在为所述配线点供电时,通过所述反向供电接口 连接所述外部电缆接口 1与所述内部电缆接口 2。
所述控制模块 6分别与所述反向供电接口 3及所述开关模块 4相连,用于 根据所述外部的供电模块输出的电信号控制所述开关模块 4进行线路切换。
优选地, 所述开关模块 4可包括:
单刀双掷开关, 与所述控制模块 6相连, 用于接收所述控制模块 6的控制 信号, 进行线路切换。
所述控制模块 6通过从所述反向供电接口 3接收外部的供电模块提供的电 信号, 从而可以控制所述开关模块 4进行线路切换, 切换过程无需人工操作, 自动完成, 因而使用筒单, 方便快捷。
请参照图 6, 为本发明供电面板的第三实施例的组成示意图; 在本实施例 中, 所述供电面板包括: 外部电缆接口 1、 内部电缆接口 2、 反向供电接口 3、 开关模块 4、 业务回传接口 5、 开关控制接口 7。 所述外部电缆接口 1用于连接所述配线点。
所述内部电缆接口 2用于连接各种终端设备。
所述反向供电接口 3用于连接外部的供电模块。
所述开关模块 4用于在不为所述配线点供电时,仅连通所述外部电缆接口 1及内部电缆接口 2, 在为所述配线点供电时, 仅连通所述外部电缆接口 1与 反向供电接口 3。
所述业务回传接口 5用于在为所述配线点供电时,通过所述反向供电接口 3连接所述外部电缆接口 1与所述内部电缆接口 2。
所述开关控制接口 7与所述开关模块连接,用于连接外部的控制模块以控 制所述开关模块 4进行线路切换。具体地, 外部的控制模块可以采集所述反向 供电接口 3的电压或电流信号作为控制的触发信号以实现自动控制线路切换。
与上一实施例对比可知,控制模块既可以集成在所述供电面板内部,也可 以单独存在于所述供电面板外部,当控制模块单独存在于所述供电面板的外部 时, 只需要在所述供电面板上预留开关控制接口即可,从而减少了供电面板的 体积。
请参照图 7, 为本发明供电面板的第四实施例的组成示意图。 外部电缆接 口 1、 内部电缆接口 2、 反向供电接口 3、 开关模块 4、 业务回传接口 5、 开关 控制接口 7、 业务处理模块 8及防护模块 9。
所述外部电缆接口 1用于连接所述配线点。
所述内部电缆接口 2用于连接各种终端设备。
所述反向供电接口 3用于连接外部的供电模块。
所述开关模块 4用于在不为所述配线点供电时,仅连通所述外部电缆接口 1及内部电缆接口 2, 在为所述配线点供电时, 仅连通所述外部电缆接口 1与 反向供电接口 3。
所述业务回传接口 5用于在为所述配线点供电时,通过所述反向供电接口
3连接所述外部电缆接口 1与所述内部电缆接口 2。
所述开关控制接口 7与所述开关模块连接,用于连接外部的控制模块以控 制所述开关模块 4进行线路切换。
所述业务处理模块 8分别与所述业务回传接口 5及所述外部的供电模块相 连,用于对所述配线点提供的业务进行处理并通过所述业务回传接口 5输出至 各种终端设备。
具体地, 所述业务处理模块 8可以对外部电缆上传来的语音业务、 宽带业 务等进行相应的处理之后再通过所述业务回传接口 5输出至各种终端设备。满 足用户的相应需求。
所述防护模块 9分别与所述外部电缆接口 1及所述开关模块 4相连,用于 保护所述开关模块 4及连接在所述内部电缆接口 2上的各种终端设备。
具体地, 因为外部电缆可能遭受雷击或其他干扰,通过在所述外部电缆接 口 1与所述开关模块 4之间设置所述防护模块 9, 从而能够对所述开关模块 4 及后端的各种终端设备起到良好的保护作用,避免因外部电缆或其他外部设备 遭受雷击引起的内部终端设备损坏。
需要说明的是, 本说明书中的各个实施例均采用递进的方式描述,每个实 施例重点说明的都是与其它实施例的不同之处,各个实施例之间相同相似的部 分互相参见即可。 对于装置实施例而言, 由于其与方法实施例基本相似, 所以 描述的比较筒单, 相关之处参见方法实施例的部分说明即可。
通过上述实施例的描述, 本发明具有以下优点:
通过配置开关模块、 控制模块、 隔离模块及业务回传模块, 可以实现供电 电路的自动切换,在为用户家庭外部的配线点供电时,供电模块仅为配线点供 电而没有额外的反向电压输出至用户家庭内部的终端设备上,确保了终端设备 的正常安全使用; 当无需为配线点供电时, 开关模块将所述外部电缆与内部电 缆连接在一起, 不影响传统业务的使用; 通过设置防护模块, 可以确保整个供 电电路的安全和稳定使用, 避免雷击等安全问题。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算 机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。 其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory, 筒称 ROM )或随机存取存储器( Random Access Memory , 筒称 RAM )等。
以上对本发明实施例所提供的一种供电电路及供电面板进行了详细介绍, 说明只是用于帮助理解本发明的方法及其核心思想; 同时,对于本领域的一般 技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处 , 综上所述, 本说明书内容不应理解为对本发明的限制。

Claims

权 利 要 求
1、 一种供电电路, 用于从用户家庭的内部线路向用户家庭外部的配线点 供电, 其特征在于, 包括:
供电模块, 用于为所述配线点供电;
开关模块, 分别与所述供电模块、所述配线点以及用户家庭内部的终端设 备相连, 当所述配线点不需要供电时, 所述开关模块仅连通所述配线点与所述 终端设备, 当所述配线点需要供电时, 所述开关模块仅连通所述供电模块与所 述配线点;
控制模块, 与所述供电模块相连, 用于根据所述供电模块输出的电信号控 制所述开关模块进行线路切换;
隔离模块, 分别与所述供电模块及所述开关模块相连,用于阻止所述配线 点提供的业务输出至所述供电模块以及阻止所述供电模块提供的电压输出至 所述终端设备;
业务回传模块, 分别与所述隔离模块及所述终端设备相连, 用于当所述配 线点需要供电时, 将所述配线点提供的业务输出至所述终端设备。
2、 如权利要求 1所述的供电电路, 其特征在于, 所述供电电路还包括: 防护模块, 连接在所述配线点与所述开关模块之间, 用于保护所述开关模 块及所述终端设备。
3、 如权利要求 1或 2所述的供电电路, 其特征在于, 所述业务回传模块 还用于对所述配线点提供的业务进行处理并输出至所述终端设备。
4、 如权利要求 1-3任一项所述的供电电路, 其特征在于, 所述开关模块 包括:
单刀双掷开关,与所述控制模块相连,用于接收所述控制模块的控制信号, 进行线路切换。
5、 一种供电面板, 用于从用户家庭的内部线路向用户家庭外部的配线点 供电, 其特征在于, 包括:
外部电缆接口, 用于连接所述配线点;
内部电缆接口, 用于连接各种终端设备;
反向供电接口, 用于连接外部的供电模块;
开关模块, 用于在不为所述配线点供电时,仅连通所述外部电缆接口及内 部电缆接口,在为所述配线点供电时,仅连通所述外部电缆接口与反向供电接 口;
业务回传接口, 用于在为所述配线点供电时,通过所述反向供电接口连接 所述外部电缆接口与所述内部电缆接口。
6、 如权利要求 5所述的供电面板, 其特征在于, 所述供电面板还包括: 控制模块, 分别与所述反向供电接口及所述开关模块相连, 用于根据所述 外部的供电模块输出的电信号控制所述开关模块进行线路切换。
7、 如权利要求 5所述的供电面板, 其特征在于, 所述供电面板还包括: 开关控制接口, 与所述开关模块连接, 用于连接外部的控制模块以控制所 述开关模块进行线路切换。
8、 如权利要求 5-7任一项所述的供电面板, 其特征在于, 所述开关模块 包括:
单刀双掷开关,与所述控制模块相连,用于接收所述控制模块的控制信号, 进行线路切换。
9、 如权利要求 6-8任一项所述的供电面板, 其特征在于, 所述供电面板 还包括:
业务处理模块, 分别与所述业务回传接口及所述外部的供电模块相连, 用 于对所述配线点提供的业务进行处理并通过所述业务回传接口输出至各种终 端设备。
10、 如权利要求 6-9任一项所述的供电面板, 其特征在于, 所述供电面板 还包括:
防护模块, 分别与所述外部电缆接口及所述开关模块相连, 用于保护所述 开关模块及连接在所述内部电缆接口上的各种终端设备。
PCT/CN2013/072241 2013-03-06 2013-03-06 一种供电电路及供电面板 Ceased WO2014134798A1 (zh)

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