WO2024131332A1 - 一种多功能移动电源 - Google Patents

一种多功能移动电源 Download PDF

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Publication number
WO2024131332A1
WO2024131332A1 PCT/CN2023/129152 CN2023129152W WO2024131332A1 WO 2024131332 A1 WO2024131332 A1 WO 2024131332A1 CN 2023129152 W CN2023129152 W CN 2023129152W WO 2024131332 A1 WO2024131332 A1 WO 2024131332A1
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WO
WIPO (PCT)
Prior art keywords
control circuit
circuit board
mobile power
multifunctional mobile
shell
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PCT/CN2023/129152
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English (en)
French (fr)
Inventor
李绍青
洪木居
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深圳市四优科技有限公司
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Publication of WO2024131332A1 publication Critical patent/WO2024131332A1/zh

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  • the present invention relates to the technical field of mobile power supply equipment, and in particular to a multifunctional mobile power supply.
  • Mobile power supplies are a kind of equipment that can be carried by individuals and can store electrical energy.
  • the existing mobile power supplies have relatively simple functions. This type of mobile power supply must match the port of the product to be charged with a patch cord, which is inconvenient to use. It is often impossible to use it normally due to problems such as port connection mismatch. At the same time, when the mobile power supply is used outdoors and the power is exhausted, it is impossible to recharge the mobile power supply.
  • the present invention aims to provide a multifunctional mobile power supply, aiming to solve the problem that the existing mobile energy storage power supply has a relatively single function and low output power.
  • a multifunctional mobile power source comprising:
  • a housing comprising a shell and a cover plate disposed on the shell, the shell being provided with a key through hole, a plurality of charge and discharge through holes and a mounting groove;
  • a control circuit board the control circuit board is installed inside the housing, the control circuit board integrates a Micro-USB output interface, a Type-c input interface with a power of 100W, a Type-c output interface with a power of 140W, and a DC interface, and the Micro-USB output interface, the Type-c input interface, the Type-c output interface, and the DC interface are respectively installed on the plurality of charging and discharging through holes;
  • a battery the battery is disposed inside the housing and the battery is electrically connected to the control circuit board;
  • a magnetic wireless charging plate wherein the magnetic wireless charging plate is installed in the installation groove, and the installation groove is provided with a mounting hole, and the magnetic wireless charging plate is electrically connected to the control circuit board through the mounting hole;
  • a solar panel the solar panel is arranged on the cover plate, and the solar panel is connected to the control circuit board;
  • a button is electrically connected to the control circuit board and is installed in the button through hole.
  • a display screen is further included.
  • a display through hole is also provided on the top of the shell. The display screen is sealed and installed in the display through hole. The display screen is electrically connected to the control circuit board.
  • a heat dissipation fan is further included.
  • the first side of the shell is also provided with a heat dissipation hole, the heat dissipation hole is located on one side of the control circuit board, the heat dissipation fan is arranged inside the shell and corresponds to the heat dissipation hole, and the heat dissipation fan is electrically connected to the control circuit board.
  • the battery is a battery pack consisting of 12 5C rate 18650 cells or 12 21700 cells, and the battery pack is connected to a power BMS board, and the battery is connected to the control circuit board through the power BMS board.
  • the button through hole is arranged on the second side of the shell, and the plurality of charging and discharging through holes are arranged on the third side of the shell.
  • the chamfered surface of the shell is provided with transverse anti-slip protrusions, and the first side portion and the second side portion of the shell are provided with vertical anti-slip protrusions.
  • the magnetic wireless charging plate is provided with two arc-shaped groove groups, and the three arc-shaped grooves in the arc-shaped groove groups have the same central angle.
  • the number of the Micro-USB output interfaces is 2.
  • the solar panel is a square monocrystalline silicon solar panel, and the monocrystalline silicon solar panel is fixed to the cover plate by gluing.
  • the cover plate is provided with a recessed portion, the shape of the recessed portion is the same as the shape of the monocrystalline silicon solar panel, and the depth of the recessed portion is greater than the thickness of the monocrystalline silicon solar panel.
  • the multifunctional mobile power supply is provided with a magnetic wireless charging plate, so there is no need to match the connector for the port of the product to be charged.
  • the electronic product can be charged by directly placing it in the corresponding position of the magnetic wireless charging plate, which is convenient to use.
  • the multifunctional mobile power source can convert light energy into electrical energy by setting up solar panels, thereby replenishing the battery and extending the use time of the multifunctional mobile power source, thereby ensuring that the user can continue to use electricity outdoors.
  • the multifunctional mobile power supply integrates a Micro-USB output interface, a Type-c input interface with a power of 100W, a Type-c output interface with a power of 140W, and a DC interface on the control circuit board.
  • the setting of multiple output interfaces can be suitable for the charging sockets of most electronic products and can charge multiple electronic products at the same time.
  • the Type-c output interface with a power of 140W can match electronic products with high charging power and improve the charging efficiency of the multifunctional mobile power supply, thereby enhancing the user experience of the multifunctional mobile power supply.
  • a multifunctional mobile power supply setting button which can be used as an output switch of the multifunctional mobile power supply by pressing the button, controlling the magnetic wireless charging plate and the output interface to output power to the electronic products.
  • FIG1 is a schematic diagram of the overall structure of a multifunctional mobile power supply according to an embodiment of the present invention.
  • FIG2 is a schematic diagram of the structure of a multifunctional mobile power supply according to an embodiment of the present invention.
  • FIG. 3 is a second schematic diagram of the overall structure of the multifunctional mobile power supply according to an embodiment of the present invention.
  • Control circuit board 21. Micro-USB output interface; 22. Type-c input interface; 23. Type-c output interface; 24. DC interface;
  • the embodiment of the utility model provides a multifunctional mobile power supply, including a housing 1, a control circuit board 2, a battery 3, a magnetic wireless charging plate 4, a solar panel 5, and a button 6.
  • the housing 1 includes a shell 11 and a cover plate 12 covered on the shell 11, and the shell 11 is provided with a button through hole 115, a plurality of charging and discharging through holes 116 and a mounting groove 119;
  • the control circuit board 2 is installed inside the housing 1, and the control circuit board 2 integrates a Micro-USB output interface 21, a Type-c input interface 22 with a power of 100W, a Type-c output interface 23 with a power of 140W, and a DC interface 24.
  • the Micro-USB output interface 21, the Type-c input interface 22, and the Type -c output interface 23 and DC interface 24 are respectively installed on multiple charging and discharging through holes 116;
  • the battery 3 is arranged inside the shell 1, and the battery 3 is electrically connected to the control circuit board 2;
  • the magnetic wireless charging board 4 is installed in the installation groove 119, and the installation groove 119 is provided with a mounting hole 1191, and the magnetic wireless charging board 4 is electrically connected to the control circuit board 2 through the mounting hole 1191;
  • the solar panel 5 is arranged on the cover plate 12, and the solar panel 5 is connected to the control circuit board 2;
  • the button 6 is electrically connected to the control circuit board 2, and the button 6 is installed in the button through hole 115.
  • the multifunctional mobile power supply is provided with a magnetic wireless charging plate 4, so that there is no need to match a patch cord to the port of the product to be charged.
  • the electronic product can be charged by directly placing the electronic product at the corresponding position of the magnetic wireless charging plate 4, which is convenient to use.
  • the multifunctional mobile power supply can convert light energy into electrical energy by providing a solar panel 5, thereby replenishing electrical energy for the battery 3, extending the use time of the multifunctional mobile power supply, thereby ensuring that the user can continue to use electricity outdoors.
  • the multifunctional mobile power supply integrates a Micro-USB output interface 21, a Type-c input interface 22 with a power of 100W, a Type-c output interface 23 with a power of 140W, and a DC interface 24 on the control circuit board 2.
  • the setting of multiple output interfaces can be suitable for the charging plug interfaces of most electronic products, and can charge multiple electronic products at the same time.
  • the Type-c output interface 23 with a power of 140W can match electronic products with high charging power and improve the charging efficiency of the multifunctional mobile power supply, thereby enhancing the user experience of the multifunctional mobile power supply.
  • the multifunctional mobile power supply is provided with a button 6. By pressing the button 6, the multifunctional mobile power supply can be used as an output switch to control the magnetic wireless charging plate 4 and the output interface to output power to the electronic product.
  • the output power of the magnetic wireless charging board 4 is 15W
  • the output power of the Micro-USB output interface 21 is 22.5W
  • the DC interface 24 can be bidirectionally input and output with a wide voltage of 5-24V.
  • the shell 11 is marked with QC3.0, PD100W, PD140W, and DC at the positions of the Micro-USB output interface 21, the Type-c input interface 22 with a power of 100W, the Type-c output interface 23 with a power of 140W, and the DC interface 24, respectively, to facilitate users to select and plug.
  • FIG. 1 and 2 it also includes a display screen 7, and the top 114 of the shell 11 is also provided with a display through hole 118, and the display screen 7 is sealed and installed in the display through hole 118, and the display screen 7 is electrically connected to the control circuit board 2.
  • the display screen 7 can be used to check the battery 3 and the charging and discharging status of the multifunctional mobile power supply, so that the user can charge the multifunctional mobile power supply in time to ensure that the multifunctional mobile power supply can guarantee sufficient power.
  • a heat dissipation fan 8 is also included.
  • a heat dissipation hole 117 is also provided on the first side portion 111 of the shell 11.
  • the heat dissipation hole 117 is located on one side of the control circuit board 2.
  • the heat dissipation fan 8 is arranged inside the shell 1 and corresponds to the heat dissipation hole 117.
  • the heat dissipation fan 8 is electrically connected to the control circuit board 2.
  • the multifunctional mobile power supply Since the multifunctional mobile power supply generates heat during the charging and discharging process, and the multifunctional mobile power supply of the present embodiment has a Type-c output interface 23 with a power of 140W, high power will lead to high heat generation. Therefore, in order to avoid the heat accumulation of the multifunctional mobile power supply affecting the use, the multifunctional mobile power supply is provided with a heat dissipation fan 8, and a heat dissipation hole 117 is provided on the first side portion 111 of the shell 11. By providing the heat dissipation hole 117 on one side of the control circuit board 2, the heat in the shell 11 can be taken away, thereby reducing the temperature in the shell 11.
  • the battery 3 is a battery group consisting of 12 5C rate 18650 cells or 12 21700 cells, and the battery group 3 is connected to a power BMS board, and the battery 3 is connected to the control circuit board 2 through the power BMS board.
  • the battery 3 is a battery pack consisting of 12 5C 18650 cells or 12 21700 cells, the storage capacity of the multifunctional mobile power supply can be guaranteed. At the same time, by connecting the battery pack to the power BMS board, the battery 3 can be prevented from being overcharged or over-discharged, thereby extending the service life of the battery 3.
  • the button through hole 115 is disposed on the second side portion 112 of the housing 11
  • the plurality of charge and discharge through holes 116 are disposed on the third side portion 113 of the housing 11 .
  • Arranging the button through hole 115 and the plurality of charge and discharge through holes 116 on different sides of the housing 11 can make the multifunctional mobile power supply more beautiful, and arranging the button through hole 115 on the second side 112 can facilitate users to press, which is more in line with the user's usage habits.
  • the chamfered surface of the housing 11 is provided with transverse anti-slip protrusions 1111
  • the first side portion 111 and the second side portion 112 of the housing 11 are provided with vertical anti-slip protrusions 1111 .
  • the first side 111 and the second side 112 of the housing 11 are provided with vertical anti-skid protrusions 1111, which can increase the friction and hand feel of the user when holding the multi-functional mobile power supply.
  • the chamfered surface of the housing 11 is provided with horizontal anti-skid protrusions 1111, which can reduce the impact force of the chamfer of the housing 11 when a collision occurs.
  • the magnetic wireless charging plate 4 is symmetrically provided with two arc-shaped groove 41 groups, and the three arc-shaped grooves 41 in the arc-shaped groove 41 group have the same central angle.
  • the number of the Micro-USB output interfaces 21 is two.
  • the number of Micro-USB output interfaces 21 is increased to 2, so that the output interface of the multi-functional mobile power supply can be increased, so that two charging cables can be connected at the same time to charge two electronic products.
  • the solar panel 5 is a square monocrystalline silicon solar panel 5 , and the monocrystalline silicon solar panel 5 is fixed to the cover plate 12 by gluing.
  • the solar panel 5 is set in a square shape, so that the solar panel 5 can receive light energy to the maximum extent, and improve the charging efficiency of the solar panel 5 for the battery 3.
  • the solar panel 5 uses a monocrystalline silicon solar panel 5 because the monocrystalline silicon solar panel 5 has the highest photoelectric conversion efficiency, which can further enhance the charging efficiency of the solar panel 5 for the battery 3.
  • the cover plate 12 is provided with a recess 121 .
  • the shape of the recess 121 is the same as that of the monocrystalline silicon solar panel 5 , and the depth of the recess 121 is greater than the thickness of the monocrystalline silicon solar panel 5 .
  • the cover plate 12 is provided with a through hole in the recess 121, and the monocrystalline silicon solar panel 5 is electrically connected to the control circuit board 2 through the through hole.

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  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

本发明涉及移动电源设备技术领域,尤其涉及本实用新型实施例提供了一种多功能移动电源,包括外壳、控制电路板、电池、磁吸无线充电板、太阳能板、按键。外壳包括壳体与盖设于壳体的盖板,壳体设置有按键通孔、多个充放电通孔与安装凹槽;控制电路板安装于外壳内部,控制电路板集成有分别安装在多个充放电通孔的Micro‑USB输出接口、功率为100W的Type‑c输入接口、功率为140W的Type‑c输出接口、DC接口;电池设置于外壳内部,且电池与控制电路板电连接;磁吸无线充电板安装于安装凹槽,并通过安装凹槽的安装孔与控制电路板电连接;太阳能板设置于盖板,太阳能板与控制电路板连接;按键与控制电路板电连接,按键安装于按键通孔。

Description

一种多功能移动电源 技术领域
本发明涉及移动电源设备技术领域,尤其涉及一种多功能移动电源。
背景技术
随着电子技术的不断发展,移动终端的功能不断丰富,用户使用移动终端的时间越来越长,但是囿于电池技术的瓶颈,人们需要移动电源为移动终端补充电源。移动电源是一种个人可随身携带,自身能储备电能的设备,目前现有的移动电源功能较为单一,这类移动电源必须为待充电产品端口匹配接插线,使用不方便,常常出现因端口连接不匹配等问题而无法正常使用的情况,同时在户外使用移动电源至电量用尽时,无法为移动电源补充电能。此外,由于电子产品的种类差异,现在市面上大部分电子产品的最高充电功率达到135W,但是移动电源的输出功率却达不到该充电功率,导致电子产品的充电时间延长,影响使用体验。
技术问题
针对现有技术的缺点,本发明目的是提供了一种多功能移动电源,旨在解决现有的移动储能电源功能较为单一、输出功率低的问题。
技术解决方案
为实现上述发明目的,本发明提供的技术方案为:
一种多功能移动电源,包括:
外壳,所述外壳包括壳体与盖设于所述壳体的盖板,所述壳体设置有按键通孔、多个充放电通孔与安装凹槽;
控制电路板,所述控制电路板安装于所述外壳内部,所述控制电路板集成有Micro-USB输出接口、功率为100W的Type-c输入接口、功率为140W的Type-c输出接口、DC接口,所述Micro-USB输出接口、所述Type-c输入接口、所述Type-c输出接口、所述DC接口分别安装于多个所述充放电通孔;
电池,所述电池设置于所述外壳内部,且所述电池与所述控制电路板电连接;
磁吸无线充电板,所述磁吸无线充电板安装于所述安装凹槽,且所述安装凹槽设置有安装孔,所述磁吸无线充电板通过所述安装孔与所述控制电路板电连接;
太阳能板,所述太阳能板设置于所述盖板,所述太阳能板与所述控制电路板连接;
按键,所述按键与所述控制电路板电连接,所述按键安装于所述按键通孔。
作为优选方案,还包括显示屏,所述壳体的顶部还设置有显示通孔,所述显示屏密封安装于所述显示通孔,所述显示屏与所述控制电路板电连接。
作为优选方案,还包括散热扇,所述壳体的第一侧部还设置有散热孔,所述散热孔位于所述控制电路板的一侧,所述散热扇设置于所述外壳的内部且对应于所述散热孔,所述散热扇与所述控制电路板电连接。
作为优选方案,所述电池为12个5C倍率18650电芯或12个21700电芯组成的电池组,且所述电池组连接有电源BMS板,所述电池通过所述电源BMS板与所述控制电路板连接。
作为优选方案,所述按键通孔设置于所述壳体的第二侧部,多个所述充放电通孔设置于所述壳体的第三侧部。
作为优选方案,所述壳体的倒角表面设置有横向防滑凸起,所述壳体的第一侧部与所述第二侧部设置有竖向防滑凸起。
作为优选方案,所述磁吸无线充电板设置有两个弧形凹槽组,所述弧形凹槽组中的三个弧形凹槽具有相同的圆心角。
作为优选方案,所述Micro-USB输出接口的数量为2。
作为优选方案,所述太阳能板为方形的单晶硅太阳能板,所述单晶硅太阳能板通过胶合的方式固定于所述盖板。
作为优选方案,所述盖板设置有凹部,所述凹部的形状与所述单晶硅太阳能板的形状相同,所述凹部的深度大于所述单晶硅太阳能板的厚度。
有益效果
 (1)多功能移动电源通过设置磁吸无线充电板,从而可以无需要为待充电产品端口匹配接插线,直接将电子产品放置于磁吸无线充电板的对应位置,即可对电子产品进行充电,使用方便。
(2)多功能移动电源通过设置太阳能板能够将光能转化为电能,从而为电池补充电能,延长多功能移动电源的使用时间,从而保证使用者能够在户外持续用电。
(3)多功能移动电源通过在控制电路板集成有Micro-USB输出接口、功率为100W的Type-c输入接口、功率为140W的Type-c输出接口、DC接口,多种输出接口的设置能够适用于大部分电子产品的充电插接口,同时为多个电子产品进行充电,而功率为140W的Type-c输出接口能够匹配充电功率大的电子产品,并提高多功能移动电源的充电效率,从而提升多功能移动电源的使用体验。
(4)多功能移动电源设置按键,通过按压按键能够作为多功能移动电源的输出开关,控制磁吸无线充电板与输出接口向电子产品输出电能。
附图说明
图1是本发明实施例的多功能移动电源的整体结构示意图之一;
图2是本发明实施例的多功能移动电源的结构分解示意图;
图3是本发明实施例的多功能移动电源的整体结构示意图之二。
附图标记说明:
1、外壳;11、壳体;111、第一侧部;1111、防滑凸起;112、第二侧部;113、第三侧部;114、顶部;115、按键通孔;116、充放电通孔;117、散热孔;118、显示通孔;119、安装凹槽;1191、安装孔;12、盖板;121、凹部;
2、控制电路板;21、Micro-USB输出接口;22、Type-c输入接口;23、Type-c输出接口;24、DC接口;
3、电池;
4、磁吸无线充电板;41、弧形凹槽;
5、太阳能板;
6、按键;
7、显示屏;
8、散热扇。
本发明的实施方式
下面结合附图与具体实施例来对本实用新型作进一步描述。
参照图1至图3所示,本实用新型实施例提供了一种多功能移动电源,包括外壳1、控制电路板2、电池3、磁吸无线充电板4、太阳能板5、按键6。外壳1包括壳体11与盖设于壳体11的盖板12,壳体11设置有按键通孔115、多个充放电通孔116与安装凹槽119;控制电路板2安装于外壳1内部,控制电路板2集成有Micro-USB输出接口21、功率为100W的Type-c输入接口22、功率为140W的Type-c输出接口23、DC接口24,Micro-USB输出接口21、Type-c输入接口22、Type-c输出接口23、DC接口24分别安装于多个充放电通孔116;电池3设置于外壳1内部,且电池3与控制电路板2电连接;磁吸无线充电板4安装于安装凹槽119,安装凹槽119设置有安装孔1191,磁吸无线充电板4通过安装孔1191与控制电路板2电连接;太阳能板5设置于盖板12,太阳能板5与控制电路板2连接;按键6与控制电路板2电连接,按键6安装于按键通孔115。
多功能移动电源通过设置磁吸无线充电板4,从而可以无需要为待充电产品端口匹配接插线,直接将电子产品放置于磁吸无线充电板4的对应位置,即可对电子产品进行充电,使用方便。
多功能移动电源通过设置太阳能板5能够将光能转化为电能,从而为电池3补充电能,延长多功能移动电源的使用时间,从而保证使用者能够在户外持续用电。
多功能移动电源通过在控制电路板2集成有Micro-USB输出接口21、功率为100W的Type-c输入接口22、功率为140W的Type-c输出接口23、DC接口24,多种输出接口的设置能够适用于大部分电子产品的充电插接口,同时为多个电子产品进行充电,而功率为140W的Type-c输出接口23能够匹配充电功率大的电子产品,并提高多功能移动电源的充电效率,从而提升多功能移动电源的使用体验。
多功能移动电源设置按键6,通过按压按键6能够作为多功能移动电源的输出开关,控制磁吸无线充电板4与输出接口向电子产品输出电能。
需要说明的是,磁吸无线充电板4的输出功率为15W,Micro-USB输出接口21的输出功率为22.5W,DC接口24可双向输入、输出的宽电压为5-24V。壳体11分别在Micro-USB输出接口21、功率为100W的Type-c输入接口22、功率为140W的Type-c输出接口23、DC接口24的位置标识有QC3.0、PD100W、PD140W、DC,方便用户进行选择插接。参照图1与图2所示,还包括显示屏7,壳体11的顶部114还设置有显示通孔118,显示屏7密封安装于显示通孔118,显示屏7与控制电路板2电连接。
通过显示屏7能够查看多功能移动电源的电池3电量与充放电状态,从而使用户能够及时对多功能移动电源进行充电,确保多功能移动电源能够保证充足的电能。
参照图1、图2与图3所示,还包括散热扇8,壳体11的第一侧部111还设置有散热孔117,散热孔117位于控制电路板2的一侧,散热扇8设置于外壳1的内部且对应于散热孔117,散热扇8与控制电路板2电连接。
由于多功能移动电源在充放电过程中会产生热量,且本实施例的多功能移动电源具有功率为140W的Type-c输出接口23,功率大就会导致发热量大,因此为了避免多功能移动电源的热量堆积影响使用,所以本多功能移动电源设置散热扇8,且对应在壳体11的第一侧部111设置散热孔117,通过将散热孔117设置在控制电路板2的一侧,从而可以将壳体11内的热量带走,降低壳体11内的温度。
具体地,电池3为12个5C倍率18650电芯或12个21700电芯组成的电池3组,且电池3组连接有电源BMS板,电池3通过电源BMS板与控制电路板2连接。
由于电池3为12个5C倍率18650电芯或12个21700电芯组成的电池组,能够保证多功能移动电源的蓄电能力。同时通过将电池组连接有电源BMS板,能够防止电池3过充或过放,从而延长电池3的使用寿命。
参照图1与图2所示,按键通孔115设置于壳体11的第二侧部112,多个充放电通孔116设置于壳体11的第三侧部113。
将按键通孔115与多个充放电通孔116设置在壳体11的不同侧部,能够使多功能移动电源更加地美观,且将按键通孔115设置在第二侧部112能够方便用户进行按压,更加符合用户的使用习惯。
参照图1与图2所示,壳体11的倒角表面设置有横向防滑凸起1111,壳体11的第一侧部111与第二侧部112设置有竖向防滑凸起1111。
通过在壳体11的第一侧部111与第二侧部112设置有竖向防滑凸起1111,可以增加用户在手持多功能移动电源时的摩擦力与手感。而壳体11的倒角表面设置有横向防滑凸起1111,能够减少壳体11的倒角在发生碰撞时的冲击力。
参照图1与图2所示,磁吸无线充电板4对称设置有两个弧形凹槽41组,弧形凹槽41组中的三个弧形凹槽41具有相同的圆心角。
通过在磁吸无线充电板4对称设置有两个弧形凹槽41组相当于在移动电源表面设置了一个无线充电标识,帮助用户确认移动终端进行无线充电的摆放位置。
参照图1与图2所示,Micro-USB输出接口21的数量为2。
由于现在用户拥有的电子产品数量多,因此可能出现电子产品同时电量不足的情况,因此本实施例通过将Micro-USB输出接口21的数量为2,可以增加多功能移动电源的输出接口,从而同时连接两条充电线为两个电子产品进行充电。
参照图2与图3所示,太阳能板5为方形的单晶硅太阳能板5,单晶硅太阳能板5通过胶合的方式固定于盖板12。
因为壳体11与盖板12为方形,而为了使太阳能板5的面积达到最大,从而能够吸收更多光能,因此将太阳能板5设置为方形,从而可以使太阳能板5最大程度的接收光能,提高太阳能板5为电池3的充电效率。同时太阳能板5选用单晶硅太阳能板5,是因为单晶硅太阳能板5的光电转化效率最高,从而可以进一步地加强太阳能板5对电池3的充电效率。
参照图2与图3所示,盖板12设置有凹部121,凹部121的形状与单晶硅太阳能板5的形状相同,凹部121的深度大于单晶硅太阳能板5的厚度。
通过将单晶硅太阳能板5安装在凹部121,能够避免多功能移动电源受到碰撞时导致单晶硅太阳能板5发生移位,同时凹部121的深度大于单晶硅太阳能板5的厚度,能够在多功能移动电源放置时,避免单晶硅太阳能板5与台面发生接触,导致单晶硅太阳能板5受到损伤,影响单晶硅太阳能板5的使用。盖板12在凹部121设置有通孔,单晶硅太阳能板5通过通孔与控制电路板2电连接。
工业实用性
以上所述仅为本发明的较佳实施例,凡依本发明权利要求范围所做的均等变化与修饰,皆应属本发明权利要求的涵盖范围。

Claims (10)

  1. 一种多功能移动电源,其特征在于,包括:
    外壳,所述外壳包括壳体与盖设于所述壳体的盖板,所述壳体设置有按键通孔、多个充放电通孔与安装凹槽;
    控制电路板,所述控制电路板安装于所述外壳内部,所述控制电路板集成有Micro-USB输出接口、功率为100W的Type-c输入接口、功率为140W的Type-c输出接口、DC接口,所述Micro-USB输出接口、所述Type-c输入接口、所述Type-c输出接口、所述DC接口分别安装于多个所述充放电通孔;
    电池,所述电池设置于所述外壳内部,且所述电池与所述控制电路板电连接;
    磁吸无线充电板,所述磁吸无线充电板安装于所述安装凹槽,且所述安装凹槽设置有安装孔,所述磁吸无线充电板通过所述安装孔与所述控制电路板电连接;
    太阳能板,所述太阳能板设置于所述盖板,所述太阳能板与所述控制电路板连接;
    按键,所述按键与所述控制电路板电连接,所述按键安装于所述按键通孔。
  2. 根据权利要求1所述的多功能移动电源,其特征在于,还包括显示屏,所述壳体的顶部还设置有显示通孔,所述显示屏密封安装于所述显示通孔,所述显示屏与所述控制电路板电连接。
  3. 根据权利要求1所述的多功能移动电源,其特征在于,还包括散热扇,所述壳体的第一侧部还设置有散热孔,所述散热孔位于所述控制电路板的一侧,所述散热扇设置于所述外壳的内部且对应于所述散热孔,所述散热扇与所述控制电路板电连接。
  4. 根据权利要求1所述的多功能移动电源,其特征在于,所述电池为12个5C倍率18650电芯或12个21700电芯组成的电池组,且所述电池组连接有电源BMS板,所述电池通过所述电源BMS板与所述控制电路板连接。
  5. 根据权利要求1所述的多功能移动电源,其特征在于,所述按键通孔设置于所述壳体的第二侧部,多个所述充放电通孔设置于所述壳体的第三侧部。
  6. 根据权利要求1所述的多功能移动电源,其特征在于,所述壳体的倒角表面设置有横向防滑凸起,所述壳体的第一侧部与第二侧部设置有竖向防滑凸起。
  7. 根据权利要求1所述的多功能移动电源,其特征在于,所述磁吸无线充电板对称设置有两个弧形凹槽组,所述弧形凹槽组中的三个弧形凹槽具有相同的圆心角。
  8. 根据权利要求1所述的多功能移动电源,其特征在于,所述Micro-USB输出接口的数量为2。
  9. 根据权利要求1所述的多功能移动电源,其特征在于,所述太阳能板为方形的单晶硅太阳能板,所述单晶硅太阳能板通过胶合的方式固定于所述盖板。
  10. 根据权利要求9所述的多功能移动电源,其特征在于,所述盖板设置有凹部,所述凹部的形状与所述单晶硅太阳能板的形状相同,所述凹部的深度大于所述单晶硅太阳能板的厚度。
PCT/CN2023/129152 2022-12-20 2023-11-01 一种多功能移动电源 WO2024131332A1 (zh)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN209930010U (zh) * 2019-07-08 2020-01-10 安顺智森电子科技有限公司 一种便携式移动电源
CN213402580U (zh) * 2020-11-03 2021-06-08 潍坊声博士声学科技有限公司 一种无线快充移动电源
CN213661247U (zh) * 2020-11-17 2021-07-09 广州疆海科技有限公司 一种支持大功率输出的多功能充电宝
CN214380258U (zh) * 2021-01-27 2021-10-08 东莞保力电子有限公司 一种智能多用途移动电源
CN215870862U (zh) * 2021-09-13 2022-02-18 深圳市泰德炜电子科技有限公司 一种户外太阳能移动储能电源
CN219372048U (zh) * 2022-12-20 2023-07-18 深圳市四优科技有限公司 一种多功能移动电源

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN209930010U (zh) * 2019-07-08 2020-01-10 安顺智森电子科技有限公司 一种便携式移动电源
CN213402580U (zh) * 2020-11-03 2021-06-08 潍坊声博士声学科技有限公司 一种无线快充移动电源
CN213661247U (zh) * 2020-11-17 2021-07-09 广州疆海科技有限公司 一种支持大功率输出的多功能充电宝
CN214380258U (zh) * 2021-01-27 2021-10-08 东莞保力电子有限公司 一种智能多用途移动电源
CN215870862U (zh) * 2021-09-13 2022-02-18 深圳市泰德炜电子科技有限公司 一种户外太阳能移动储能电源
CN219372048U (zh) * 2022-12-20 2023-07-18 深圳市四优科技有限公司 一种多功能移动电源

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