WO2019144359A1 - 智能充电器 - Google Patents

智能充电器 Download PDF

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Publication number
WO2019144359A1
WO2019144359A1 PCT/CN2018/074195 CN2018074195W WO2019144359A1 WO 2019144359 A1 WO2019144359 A1 WO 2019144359A1 CN 2018074195 W CN2018074195 W CN 2018074195W WO 2019144359 A1 WO2019144359 A1 WO 2019144359A1
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WO
WIPO (PCT)
Prior art keywords
output
module
charged
control module
main control
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PCT/CN2018/074195
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English (en)
French (fr)
Inventor
廖新辉
肖莹
胡杲辰
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深圳市通拓科技有限公司
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Application filed by 深圳市通拓科技有限公司 filed Critical 深圳市通拓科技有限公司
Priority to PCT/CN2018/074195 priority Critical patent/WO2019144359A1/zh
Publication of WO2019144359A1 publication Critical patent/WO2019144359A1/zh

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

Definitions

  • the utility model relates to the technical field of charging devices, in particular to a smart charger.
  • the technical problem to be solved by the present invention is to provide a smart charger for the above-mentioned deficiencies in the prior art.
  • the technical means adopted by the utility model to solve the technical problem is to provide a smart charger, comprising a charger body, the charging gun body comprises a plurality of output terminals electrically connected with the device to be charged, an output feedback module, a power monitoring module and a main control a module, the output feedback module is electrically connected to the output end, the power monitoring module is electrically connected to the output feedback module, the main control module is electrically connected to the power monitoring module; and the output feedback module detects an output After outputting the output electrical signal to the device to be charged, the output electrical signal is transmitted to the power monitoring module, and the power monitoring module receives the output electrical signal and outputs the maximum charging power signal of the device to be charged to the main And a control module, the main control module is electrically connected to the output end, and the main control module receives the real-time charging current outputted to the device to be charged after receiving the maximum charging power.
  • the smart charger further includes a voltage stabilizing module, and the voltage stabilizing module is disposed between the main control module and the output terminal for providing a stable voltage output for the output end.
  • the smart charger further includes an input end and an input detecting module, the input end is coupled to an external charging power source, the input detecting module is disposed between the input end and the main control module, and the input detecting is performed.
  • the module detects the input current signal of the input terminal and outputs a pulse signal to the main control module.
  • the smart charger further includes a voltage detecting module electrically connected to the output end, the input end and the power monitoring module, and the voltage detecting module detects an input voltage signal and an output end of the input end The output voltage signal is then transmitted to the power monitoring module.
  • the smart charger further includes a voltage conversion module, the voltage conversion module is electrically connected to the main control module and the output end, and the voltage conversion module adjusts the output of the output terminal according to a control signal output by the main control module.
  • the voltage value of the real-time charging current is electrically connected to the main control module and the output end, and the voltage conversion module adjusts the output of the output terminal according to a control signal output by the main control module. The voltage value of the real-time charging current.
  • the voltage conversion module includes at least one of an AC-DC converter or a DC-AC converter.
  • the charger body includes a housing, and one side of the housing is provided with a receiving portion for inserting the device to be charged, and the plurality of output ends are disposed in the receiving portion for waiting with the housing
  • the charging interface of the charging device is correspondingly plugged, and the input end is disposed on the other side of the housing.
  • the accommodating portion includes a vertical plate and a bottom plate respectively abutting the side surface and the bottom surface of the device to be charged, and the plurality of output ends are disposed on the bottom plate.
  • the riser and the bottom plate are integrally formed structures.
  • the opening of the receiving portion is a diagonal opening.
  • the embodiment of the present invention provides an output feedback signal to detect an output electrical signal output from the output terminal to the device to be charged, and transmits the output electrical signal to the power monitoring module.
  • the power monitoring module outputs a maximum charging power signal of the device to be charged to the main control module, and the main control module outputs the real-time charging current outputted to the device to be charged through the maximum charging power, thereby effectively improving the power conversion efficiency and reducing the energy.
  • FIG. 1 is a schematic block diagram of an embodiment of a smart charger of the present invention.
  • FIG. 2 is a schematic structural view of an embodiment of the smart charger of the present invention.
  • a smart charger including a charger body 1, the charging gun body 1 including a plurality of outputs electrically connected to a device to be charged (not shown)
  • the output control module 12 is electrically connected to the output end 11, and the power monitoring module 13 is electrically connected to the output feedback module 12, and the output feedback module 12 is electrically connected to the output feedback module 12.
  • the main control module 14 is electrically connected to the power monitoring module 13; the output feedback module 12 detects the output electrical signal outputted by the output terminal 11 to the device to be charged, and then transmits the output electrical signal to the power monitoring module 13, Receiving the output electrical signal, the power monitoring module 13 outputs a maximum charging power signal of the device to be charged to the main control module 14, and the main control module 14 is electrically connected to the output terminal 11, the main control module After receiving the maximum charging power, the output end 11 outputs the real-time charging current outputted to the device to be charged.
  • the smart charger of the present invention is provided with a plurality of output terminals 11 for simultaneously connecting a plurality of devices to be charged, and the smart charger is connected to three devices to be charged at the same time as an example, and the output feedback module 12 detects the output of the output terminal 11
  • the output electrical signal of the charging current to the charging device is then transmitted to the power monitoring module 13, and the power monitoring module 13 calculates the maximum charging power of the three devices to be charged according to a preset algorithm, and then passes through the main control module.
  • 14 real-time charging current output to the three devices to be charged is configured according to the maximum charging power, thereby achieving maximum charging efficiency for all devices to be charged.
  • the output feedback module 12 detects that only one output terminal 11 has an output electrical signal. At this time, the main control module 14 will concentrate all the charging power to the output terminal 11 Therefore, the charging terminal reaches the highest charging efficiency of the device to be charged. In a specific implementation, the main control module 14 also adjusts the real-time charging current of the device to be charged according to the specific charging parameter of the device to be charged.
  • the power monitoring module 13 outputs the maximum value of the device to be charged.
  • the charging power signal is sent to the main control module 14, and the main control module 14 outputs the real-time charging current to the device to be charged through the maximum charging power modulation output terminal 11, which can effectively improve the power conversion efficiency, reduce the energy internal consumption, improve the charging efficiency, and improve the user experience. .
  • the smart charger further includes a voltage stabilizing module 15 disposed between the main control module 14 and the output terminal 11 for providing a stable voltage output for the output terminal 11. .
  • the main control module 14 allocates the real-time charging current according to the maximum charging power described above, and then outputs the output to the device to be charged through the output terminal 11 for charging, and a voltage stabilizing module is provided between the main control module 14 and the output terminal 11. 15 that the output terminal 11 provides a stable voltage output, which can effectively play the role of overvoltage protection, and provides the safety of the smart charger of the present invention.
  • the smart charger further includes an input end 16 and an input detecting module 17, the input end 16 is coupled to an external charging power source, and the input detecting module 17 is disposed at the input end 16 and Between the main control modules 14, the input detection module 17 detects an input current signal of the input terminal 16 and outputs a pulse signal to the main control module 14.
  • the mains when the smart charger is connected to the mains, the mains is an external charging power source, and after the input detecting module 17 detects that the input terminal 16 is coupled to the external charging power source, the input detecting module 17 outputs a pulse signal to the main
  • the control module 14 thus activates the main control module 14, so that the main control module 14 controls the power monitoring module 13 and the voltage stabilizing module 15 to be in a standby state, thereby improving the stability of the smart charger of the utility information.
  • the smart charger further includes a voltage detecting module 18, and the voltage detecting module 18 is electrically connected to the output end 11, the input end 16, and the power monitoring module 13, and the voltage detecting module 18 After detecting the input voltage signal of the input terminal 16 and the output voltage signal of the output terminal 11, the input voltage signal and the output voltage signal are transmitted to the power monitoring module 13.
  • the smart charger further includes a voltage conversion module 19, the voltage conversion module 19 is electrically connected to the main control module 14 and the output terminal 11, and the voltage conversion module 19 is according to the main control module.
  • the output control signal of 14 adjusts the output terminal 11 to output the voltage value of the real-time charging current.
  • the voltage conversion module 19 includes at least one of an AC-DC converter or a DC-AC converter.
  • the main control module 14 calculates an output control signal according to the maximum charging power, and the voltage conversion module 19 adjusts the output end 11 to output the real-time charging current according to the control signal. Voltage value to improve charging efficiency.
  • the charger body 1 includes a housing 2, and a receiving portion 21 for inserting the device to be charged is disposed on one side of the housing 2, and the plurality of output ends 11 are disposed in the receiving portion 21.
  • the input end 16 is provided on the other side of the outer casing 2.
  • the accommodating portion 21 includes a vertical plate 211 and a bottom plate 212 respectively abutting the side surface and the bottom surface of the device to be charged, and the plurality of output ends 11 are disposed on the bottom plate 212.
  • the housing 2 is provided with a receiving portion 21, and the plurality of input ends are disposed on the bottom plate 212 of the accommodating portion 21, and the vertical plate 211 is connected to the bottom plate 212 to form the accommodating portion 21, which can effectively improve the utility.
  • the new smart charger and plug-in stability with charging device enhances the user experience.
  • the riser 211 and the bottom plate 212 are integrally formed.
  • the vertical plate 211 and the bottom plate 212 as an integrally formed structure, the overall structural strength of the accommodating portion 21 can be effectively improved, and the service life of the smart charging device of the present invention can be improved.
  • the opening of the receiving portion 21 is an oblique opening.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

本实用新型涉及一种智能充电器,包括充电器本体,所述充电枪本体包括与待充电设备电连接的若干输出端、输出反馈模块、功率监控模块和主控制模块,输出反馈模块与输出端电连接,功率监控模块与输出反馈模块电连接,主控制模块与功率监控模块电连接;输出反馈模块检测输出端输出至待充电设备的输出电信号后,将该输出电信号传送给功率监控模块,功率监控模块接收输出电信号后输出待充电设备的最大充电功率信号至主控制模块,主控制模块与输出端电连接,主控制模块接收最大充电功率后调配输出端输出至待充电设备的实时充电电流。本实用新型实施例能有效调配输出端输出至待充电设备的实时充电电流,提高充电效率,提高用户体验。

Description

智能充电器 技术领域
本实用新型涉及充电设备技术领域,特别涉及一种智能充电器。
背景技术
现如今,由于消费类电子产业的蓬勃发展,各种新品的电子产品不断地推陈出新,而且各种电子产品的规格参数也是各式各样,没有统一标准,在电子产品充电与储能领域,产品配套的充电设备也是分门别类,品种繁多。
现有的充电设备中已经出来了有不少通用型充电设备,但由于规格参数的匹配上很难完全匹配,因此,在实际使用当中,电能转换效率并不高,导致充电效率不高,产品自身内耗严重,造成了能源的浪费,降低产品使用寿命,也影响用户的体验效果。
实用新型内容
本实用新型要解决的技术问题在于针对上述现有技术中的不足之处,提供一种智能充电器。
本实用新型解决技术问题采用的技术手段是提供一种智能充电器,包括充电器本体,所述充电枪本体包括与待充电设备电连接的若干输出端、输出反馈模块、功率监控模块和主控制模块,所述输出反馈模块与所述输出端电连接,所述功率监控模块与所述输出反馈模块电连接,所述主控制模块与所述功率监控模块电连接;所述输出反馈模块检测输出端输出至所述待充电设备的输出电信号后,将该输出电信号传送给功率监控模块,所述功率监控模块接收所述输出电信号后输出所述待充电设备的最大充电功率信号至主控制模块,所述主控制模块与所述输出端电连接,所述主控制模块接收所述最大充电功率后调配输出端输出至所述待充电设备的实时充电电流。
进一步地,所述智能充电器还包括稳压模块,所述稳压模块设于所述主控制模块和输出端之间用于为输出端提供稳定电压输出。
进一步地,所述智能充电器还包括输入端和输入检测模块,所述输入端与外接充电电源耦接,所述输入检测模块设于所述输入端和主控制模块之间,所述输入检测模块检测所述输入端的输入电流信号后输出脉冲信号至所述主控制模块。
进一步地,所述智能充电器还包括电压检测模块,所述电压检测模块与所述输出端、输入端和功率监控模块电连接,所述电压检测模块检测所述输入端的输入电压信号和输出端的输出电压信号后传送至所述功率监控模块。
进一步地,所述智能充电器还包括电压转换模块,所述电压转换模块与所述主控制模块和输出端电连接,所述电压转换模块根据主控制模块输出的控制信号调整所述输出端输出所述实时充电电流的电压值。
进一步地,所述电压转换模块包括AC-DC转换器或DC-AC转换器中的至少一种。
进一步地,所述充电器本体包括外壳,所述外壳一侧设有供所述待充电设备插入的容置部,所述多个输出端设于所述容置部中用于与所述待充电设备的充电接口对应插接,所述输入端设于所述外壳的另一侧。
进一步地,所述容置部包括分别与所述待充电设备的侧面和底面抵接的竖板和底板,所述多个输出端设置于所述底板上。
进一步地,所述竖板和底板为一体成型结构。
进一步地,所述容置部的开口为斜口。
有益效果
采用上述技术方案,本实用新型至少具有以下有益效果:本实用新型实施例通过设有输出反馈模块以检测输出端输出至待充电设备的输出电信号,并将该输出电信号传送给功率监控模块后,通过功率监控模块输出待充电设备的最大充电功率信号给主控制模块,主控制模块通过该最大充电功率调配输出端输出至待充电设备的实时充电电流,能有效提高电能转换效率,减少能源内耗,提高充电效率,提高用户体验。
附图说明
图1是本实用新型智能充电器一个实施例的原理框图。
图2是本实用新型智能充电器一个实施例的结构示意图。
本实用新型目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型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实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
请参阅图1和图2,本实用新型提供一种技术方案:一种智能充电器,包括充电器本体1,所述充电枪本体1包括与待充电设备(图未示)电连接的若干输出端11、输出反馈模块12、功率监控模块13和主控制模块14,所述输出反馈模块12与所述输出端11电连接,所述功率监控模块13与所述输出反馈模块12电连接,所述主控制模块14与所述功率监控模块13电连接;所述输出反馈模块12检测输出端11输出至所述待充电设备的输出电信号后,将该输出电信号传送给功率监控模块13,所述功率监控模块13接收所述输出电信号后输出所述待充电设备的最大充电功率信号至主控制模块14,所述主控制模块14与所述输出端11电连接,所述主控制模块14接收所述最大充电功率后调配输出端11输出至所述待充电设备的实时充电电流。
在实施时,本实用新型智能充电器设有多个输出端11用于同时连接多个待充电设备,以智能充电器同时连接3个待充电设备为例,输出反馈模块12检测输出端11输出至待充电设备的充电电流的输出电信号,然后将该输出电信号传送给功率监控模块13,功率监控模块13根据预设算法计算出3个待充电设备的最大充电功率,然后通过主控制模块14根据该最大充电功率调配输出至3个待充电设备的实时充电电流,从而实现对所有待充电设备的最大的充电效率。
当本实用新型智能充电器只连接1个待充电设备时,输出反馈模块12检测到只有一个输出端11有输出电信号,此时,主控制模块14将集中所有的充电功率到该输出端11上,从而使得该输出端11给待充电设备的充电效率达到最高,在具体实施时,主控制模块14还会根据待充电设备的具体充电参数调节输出待充电设备的实时充电电流。
本实施例通过设有输出反馈模块12以检测输出端11输出至待充电设备的输出电信号,并将该输出电信号传送给功率监控模块13后,通过功率监控模块13输出待充电设备的最大充电功率信号给主控制模块14,主控制模块14通过该最大充电功率调配输出端11输出至待充电设备的实时充电电流,能有效提高电能转换效率,减少能源内耗,提高充电效率,提高用户体验。
在一个可选实施例中,所述智能充电器还包括稳压模块15,所述稳压模块15设于所述主控制模块14和输出端11之间用于为输出端11提供稳定电压输出。
在实施时,主控制模块14根据上述最大充电功率调配所述实时充电电流,然后通过输出端11输出至待充电设备进行充电,通过在主控制模块14和输出端11之间设有稳压模块15以为输出端11提供稳定电压输出,能有效起到过压保护的作用,提供本实用新型智能充电器的使用安全性。
在一个可选实施例中,所述智能充电器还包括输入端16和输入检测模块17,所述输入端16与外接充电电源耦接,所述输入检测模块17设于所述输入端16和主控制模块14之间,所述输入检测模块17检测所述输入端16的输入电流信号后输出脉冲信号至所述主控制模块14。
在实施时,当智能充电器与市电连接时,所述市电为外接充电电源,通过输入检测模块17检测到输入端16与外接充电电源耦接后,输入检测模块17输出脉冲信号至主控制模块14从而激活主控制模块14,使主控制模块14控制功率监控模块13和稳压模块15处于待机状态,提高本实用信息智能充电器的稳定性。
在一个可选实施例中,所述智能充电器还包括电压检测模块18,所述电压检测模块18与所述输出端11、输入端16和功率监控模块13电连接,所述电压检测模块18检测所述输入端16的输入电压信号和输出端11的输出电压信号后,将该输入电压信号和输出电压信号传送至所述功率监控模块13。
本实施例通过设有电压监测模块18,检测输入端16的输入电压信号的电压大小,并检测输出端11的输出电压信号的电压大小,为功率监控模块13统筹计算所述最大充电功率提供准确信息,提供充电效率。
在一个可选实施例中,所述智能充电器还包括电压转换模块19,所述电压转换模块19与所述主控制模块14和输出端11电连接,所述电压转换模块19根据主控制模块14输出的控制信号调整所述输出端11输出所述实时充电电流的电压值。在实施时,所述电压转换模块19包括AC-DC转换器或DC-AC转换器中的至少一种。
本实施例通过设有电压转换模块19,所述主控制模块14根据所述最大充电功率计算输出控制信号,所述电压转换模块19根据所述控制信号调整输出端11输出所述实时充电电流的电压值,提高充电效率。
进一步地,所述充电器本体1包括外壳2,所述外壳2一侧设有供所述待充电设备插入的容置部21,所述多个输出端11设于所述容置部21中用于与所述待充电设备的充电接口对应插接,所述输入端16设于所述外壳2的另一侧。
在实施时,所述容置部21包括分别与所述待充电设备的侧面和底面抵接的竖板211和底板212,所述多个输出端11设置于所述底板212上。
本实施例通过在外壳2设有容置部21,所述多个输入端设于容置部21的底板212上,底板212上连接竖版211以组成容置部21,能有效提高本实用新型智能充电器与带充电设备的插接稳定性,提高用户体验。
在一个实施例中,所述竖板211和底板212为一体成型结构。
本实施例通过将所述竖版211和底板212设计为一体成型结构,能有效提高容置部21的整体结构强度,提高本实用新型智能充电设备的使用寿命。
在一个可选实施例中,所述容置部21的开口为斜口。通过将所述容置不21的开口设计成斜口,方便待充电设备插入容置部21,进而使得输出端11与所述待充电设备的充电接口对应插接,使用方便快捷,提高用户体验。
以上所述仅为本实用新型的优选实施例,并非因此限制本实用新型的专利范围,凡是利用本实用新型说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本实用新型的专利保护范围内。

Claims (10)

  1. 一种智能充电器,包括充电器本体,其特征在于:所述充电枪本体包括与待充电设备电连接的若干输出端、输出反馈模块、功率监控模块和主控制模块,所述输出反馈模块与所述输出端电连接,所述功率监控模块与所述输出反馈模块电连接,所述主控制模块与所述功率监控模块电连接;所述输出反馈模块检测输出端输出至所述待充电设备的输出电信号后,将该输出电信号传送给功率监控模块,所述功率监控模块接收所述输出电信号后输出所述待充电设备的最大充电功率信号至主控制模块,所述主控制模块与所述输出端电连接,所述主控制模块接收所述最大充电功率后调配输出端输出至所述待充电设备的实时充电电流。
  2. 根据权利要求1所述的智能充电器,其特征在于:所述智能充电器还包括稳压模块,所述稳压模块设于所述主控制模块和输出端之间用于为输出端提供稳定电压输出。
  3. 根据权利要求2所述的智能充电器,其特征在于:所述智能充电器还包括输入端和输入检测模块,所述输入端与外接充电电源耦接,所述输入检测模块设于所述输入端和主控制模块之间,所述输入检测模块检测所述输入端的输入电流信号后输出脉冲信号至所述主控制模块。
  4. 根据权利要求3所述的智能充电器,其特征在于:所述智能充电器还包括电压检测模块,所述电压检测模块与所述输出端、输入端和功率监控模块电连接,所述电压检测模块检测所述输入端的输入电压信号和输出端的输出电压信号后传送至所述功率监控模块。
  5. 根据权利要求1所述的智能充电器,其特征在于,所述智能充电器还包括电压转换模块,所述电压转换模块与所述主控制模块和输出端电连接,所述电压转换模块根据主控制模块输出的控制信号调整所述输出端输出所述实时充电电流的电压值。
  6. 根据权利要求5所述的智能充电器,其特征在于:所述电压转换模块包括AC-DC转换器或DC-AC转换器中的至少一种。
  7. 根据权利要求1所述的智能充电器,其特征在于:所述充电器本体包括外壳,所述外壳一侧设有供所述待充电设备插入的容置部,所述多个输出端设于所述容置部中用于与所述待充电设备的充电接口对应插接,所述输入端设于所述外壳的另一侧。
  8. 根据权利要求7所述的智能充电器,其特征在于:所述容置部包括分别与所述待充电设备的侧面和底面抵接的竖板和底板,所述多个输出端设置于所述底板上。
  9. 根据权利要求8所述的智能充电器,其特征在于:所述竖板和底板为一体成型结构。
  10. 根据权利要求9所述的智能充电器,其特征在于:所述容置部的开口为斜口。
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CN102270858A (zh) * 2010-06-01 2011-12-07 硕颉科技股份有限公司 充电装置
CN102412606A (zh) * 2011-11-18 2012-04-11 中国电力科学研究院 一种充电控制器及其控制方法
CN203984066U (zh) * 2014-07-24 2014-12-03 帝发技术(无锡)有限公司 智能充电器线路
CN205029395U (zh) * 2015-10-19 2016-02-10 安徽工程大学机电学院 嵌入式智能充电器

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102270858A (zh) * 2010-06-01 2011-12-07 硕颉科技股份有限公司 充电装置
CN102412606A (zh) * 2011-11-18 2012-04-11 中国电力科学研究院 一种充电控制器及其控制方法
CN203984066U (zh) * 2014-07-24 2014-12-03 帝发技术(无锡)有限公司 智能充电器线路
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