WO2017185634A1 - 一种智能背包 - Google Patents

一种智能背包 Download PDF

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Publication number
WO2017185634A1
WO2017185634A1 PCT/CN2016/100424 CN2016100424W WO2017185634A1 WO 2017185634 A1 WO2017185634 A1 WO 2017185634A1 CN 2016100424 W CN2016100424 W CN 2016100424W WO 2017185634 A1 WO2017185634 A1 WO 2017185634A1
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WO
WIPO (PCT)
Prior art keywords
smart backpack
smart
backpack
power source
socket
Prior art date
Application number
PCT/CN2016/100424
Other languages
English (en)
French (fr)
Inventor
孙雷
单峰
李大龙
Original Assignee
乐视控股(北京)有限公司
乐视体育文化产业发展(北京)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 乐视控股(北京)有限公司, 乐视体育文化产业发展(北京)有限公司 filed Critical 乐视控股(北京)有限公司
Publication of WO2017185634A1 publication Critical patent/WO2017185634A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45FTRAVELLING OR CAMP EQUIPMENT: SACKS OR PACKS CARRIED ON THE BODY
    • A45F3/00Travelling or camp articles; Sacks or packs carried on the body
    • A45F3/04Sacks or packs carried on the body by means of two straps passing over the two shoulders
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C15/00Purses, bags, luggage or other receptacles covered by groups A45C1/00 - A45C11/00, combined with other objects or articles

Definitions

  • the present application relates to wearable devices, and more particularly to a smart backpack.
  • the present application solves the problem of providing a smart backpack by connecting a charging cable to a power source in the smart backpack and extending the power cord to the smart backpack strap position, thereby enabling the user to charge the mobile device when the mobile device is in a single handheld, thereby solving the existing In the technology, the mobile charging device is inconvenient to carry and cannot use the mobile terminal.
  • One technical solution adopted in the present application is to provide a storage compartment inside the smart backpack, a power supply is disposed in the storage cavity, and one end of the second charging line is connected to the power supply, and the second charging line is further One end extends from the inside of the smart backpack to the smart backpack strap and is worn from the smart backpack strap.
  • the smart backpack is internally provided with a pad, the pad is provided with a wire trough, and the second charging line is laid in the wire trough.
  • wire groove edge protrusion forms a locking member.
  • the smart backpack strap is provided with a clamping device.
  • an opening is provided in the storage cavity, and the power source enters the storage cavity through the opening.
  • the outer side edge of the opening is provided with a frame, and the inner side edge of the opening is provided with a lining plate, and the frame is connected to the lining plate by screws.
  • the frame and the lining plate are respectively connected to the surface of the smart backpack through a hot melt adhesive layer.
  • the frame is provided with a guiding groove, and a sliding plate is installed in the guiding groove, and the sliding plate opens and closes the opening by a guiding path along the guiding groove.
  • a surface of the smart backpack is provided with a display module, and the power source and the display module are connected by wires, and the wires are laid inside the smart backpack.
  • the display module includes: a display device and a socket;
  • the socket recess is configured as a plugging channel, and a wire is connected to the socket;
  • the display device is provided with a plug connector that cooperates with the plug channel, so that the display device can be plugged and connected to the socket.
  • At least two sockets are disposed on the surface of the smart backpack, and the sockets are distributed at different positions on the surface of the smart backpack body.
  • the beneficial effects of the present application are: by connecting the charging line to the power source in the smart backpack and extending the power cord to the smart backpack strap position, enabling the user to charge the mobile device when the mobile device is in a single hand, without adding the user In the case of an additional burden, the user can be charged with the mobile terminal in the normal use of the mobile terminal.
  • FIG. 1 is a schematic overall structural diagram of a smart backpack according to an embodiment of the present application.
  • FIG. 2 is a schematic overall view of a display device according to an embodiment of the present application.
  • FIG. 3 is a schematic bottom view of a plug connector according to an embodiment of the present application.
  • FIG. 4 is a schematic structural view of an entire socket of an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a cooperation relationship between a socket and a backpack body according to an embodiment of the present application.
  • FIG. 6 is a top view of the socket of the embodiment of the present application.
  • FIG. 7 is a schematic exploded view of a housing cavity according to an embodiment of the present application.
  • FIG. 8 is a rear view of a schematic diagram of a smart backpack according to an embodiment of the present application.
  • FIG. 9 is a schematic overall view of a clamping device according to an embodiment of the present application.
  • Figure 10 is a transverse cross-sectional view of a second opening of the embodiment of the present application.
  • a smart backpack 100 includes a backpack body 1 and a display module 2 .
  • the backpack body 1 is provided with a storage chamber 11 , and a power source 111 is disposed in the storage chamber 11 .
  • the display module 2 is disposed on the surface of the backpack body 1.
  • the power source 111 and the display module 2 are connected by wires, and the wires are laid inside the backpack body 1.
  • the display module 2 includes a display device 21.
  • the user can read the power of the smart backpack internal power source 111 through the display device 21, thereby solving the problem that the smart backpack power value cannot be obtained.
  • the display module 2 includes a display device 21 and a socket 22.
  • the display device 21 includes a display screen 211 and a plug connector 212.
  • the display screen 211 is constructed in a triangular shape.
  • the specific shape of the display screen 211 is not limited thereto, and the specific form of the display screen 211 includes: a circle, an ellipse, a square, or a polygon.
  • the specific shape of the display screen 211 is not limited to the above several shapes, and the display screen 211 is located on the structure of the backpack body 1.
  • the specific shape of the display screen 211 is designed to fit the specific design of the backpack body 1.
  • the display screen 211 type includes (not limited to): an LED display screen 211, a plasma display screen 211, or a liquid crystal display screen 211.
  • a plug connector 212 is provided below the display module 2.
  • the plug connector 212 is a line carrier for fixing the display screen 211 and for connecting the display screen 211 to the external power source 111 and signals.
  • the specific shape of the plug connector 212 is identical to the specific shape of the display screen 211, but the cross-sectional area of the plug connector 212 is smaller than the cross-sectional area of the display screen 211, and the plug connector 212 is connected to the center of the bottom of the display screen 211.
  • the other end of the plug connector 212 is provided with a plug hole 213 (see FIG. 3).
  • the plug hole 213 is provided with two cathode plug holes 213 and an anode plug hole 213, and the plug hole 213 and the display.
  • the screen 211 is connected to introduce an external power source 111 power or current signal to the display screen 211 to bring the display screen 211 into a lighting state, and to transmit specific information displayed to the display screen 211 by an electrical signal.
  • the specific shape of the plug connector 212 is triangular in conformity with the shape of the display screen 211, but the shape of the plug connector 212 is not limited thereto. In some embodiments, depending on the shape of the display screen 211, the shape of the plug connector 212 can be (not Limited to: Circle, Ellipse, Square or Polygon. In other embodiments, the specific shape of the plug connector 212 is not limited to be consistent with the shape of the display screen 211. For example, if the specific shape of the display screen 211 is triangular, the shape of the plug connector 212 is cylindrical.
  • the display device 21 is detachably connected in the socket 22, and the socket 22 has a shape and a plug connector 212.
  • the shape is uniform, and the plug joint 212 is hollow inside to form the plug passage 221 .
  • the socket 22 is used to mount the display device 21, and the socket 22 is also a carrier for fixing the display device 21 to the backpack body 1.
  • the specific shape of the socket 22 is similar to the shape of the plug connector 212 and is triangular. However, it is not limited thereto, and the specific shape of the socket 22 can be varied.
  • the central end of the socket 22 is recessed to form a plug-in channel 221, and the plug-in channel 221 is used for mounting the display device 21.
  • the specific shape of the plug-in channel 221 is triangular with the plug connector 212, and the cross-sectional area of the plug-in channel 221 is slightly It is larger than the cross-sectional area of the plug connector 212 to enable the plug connector 212 to be inserted inside the plug channel 221.
  • the bottom of the insertion channel 221 is provided with a connecting post 224 that cooperates with the insertion hole 213 of the plug connector 212.
  • the connecting post 224 includes an anode connecting post 224 and a cathode connecting post 224.
  • the anode connection post 224 and the cathode connection post 224 are directly connected to a power supply line.
  • an annular expansion member (not shown) is formed on the side of the plug connector 212, and the expansion member is formed on the inner side of the insertion channel 221 The corresponding position is recessed inward to form a necking opening (not shown) that cooperates with the pressing member.
  • the plug connector 212 is inserted into the plug-in channel 221, and the plug connector 212 is easily separated from the plug-in channel 221 due to the jitter, or the connection between the connection post 224 and the plug-in hole 213 is unstable in the moving state, so that the display screen 211 cannot be It is in a steady state of lighting.
  • the expansion member is specifically an expansion ring protruding on the side of the plug joint 212.
  • the cross-sectional area of the expansion ring is larger than the cross-sectional area of the plug joint 212, and the cross-sectional area of the expansion member is slightly larger than the cross-section of the plug passage 221.
  • the necking opening is specifically an annular groove formed by the indentation on the inner wall of the insertion channel 221, and the annular groove has a larger cross-sectional area than the cross-sectional area of the insertion channel 221, and expands when the plug connector 212 is inserted into the insertion channel 221
  • the tight ring snaps into the annular groove so that the plug connector 212 cannot move within the plug channel 221. With this configuration, the stability of the connection of the plug connector 212 to the plug channel 221 can be ensured, and the plug connector 212 can be prevented from coming off the plug channel 221.
  • the socket 22 is fixed on the surface of the backpack body 1.
  • the surface of the backpack body 1 is provided with a first opening 19 similar to the outer shape of the socket 22.
  • the socket 22 is fixed to the first opening 19 on.
  • the end edge of the socket 22 that defines the insertion channel 221 is convex to form a first stop 222
  • the surface of the socket 22 is convex to form a second stop 223.
  • the first stop 222 and the second stop 223 There is a gap therebetween, and the distance between the first stop 222 and the second stop 223 is the edge for placing the first opening 19 on the surface of the backpack body 1.
  • first opening edge 19 of the backpack body 1 Places the edge of the first opening 19 of the backpack body 1 at After the first stop edge 222 and the second stop edge 223, the first stop edge 222, the edge of the first opening 19 and the second stop edge 223 form a layered structure.
  • a corresponding threaded hole (not labeled) is formed on the first stop 222 and the second stop 223, and the first opening edge is fixed between the first stop 222 and the second stop 223 by the screw 20.
  • first blocking edge 222 and the second blocking edge 223 are fixed on the surface of the backpack body 1 by the screw 20, only a partial connection state is adopted. With this connection mode, the socket 22 and the display connected to the socket 22 in the use state are used. There is a problem that the device 21 is not securely fixed.
  • first rib 222 and the second rim 223 are respectively connected to the surface of the backpack body 1 through the hot melt adhesive layer, and the specific connection manner is: at the first rim 222, the second rim 223 and the backpack
  • the portion contacted by the body 1 is coated with a hot melt adhesive, and the hot melt adhesive is solidified to form a hot melt adhesive layer.
  • the backpack body 1 is provided with two sockets 22 , which are respectively a first socket 225 and a second socket 226 .
  • the first socket 225 is disposed on the backpack body 1 (see FIG. 1), and the second socket 226 is disposed on the strap 12 of the backpack body 1.
  • the first socket 225 and the second socket 226 are respectively connected to the power source 111 by wires.
  • the display device 21 can be plugged into the first socket 225 or within the second socket 226.
  • the dual-socket design enables the user to view the display screen 211 without having to take the backpack in the back state, and only needs to pull the display device 22 out of the first socket 225 before the piggyback, and plug in In the second socket 226, the display screen can be viewed in the piggyback state, thereby greatly facilitating the user's use.
  • a power source 111 is connected to the socket 22, and the power source 111 is disposed inside the backpack body 1, and the socket 22 and the power source 111 are connected by wires.
  • the bottom of the backpack body 1 is provided with a storage cavity 11 , and the storage cavity 11 is provided with a second opening 116 .
  • a power source 111 is provided in the housing chamber 11, and the power source 111 is a rechargeable power source.
  • a wire is connected to the power source 111, and the other end of the wire is connected to the socket 22.
  • the storage compartment 11 can be provided with a WiFi module 112, which is a portable WiFi.
  • WiFi module 112 Install portable WiFi in the backpack body 1 to receive wireless signals normally outdoors, and then use itself as a WiFi hotspot to share the received WiFi signals to other wireless mobile terminals of the user to ensure that the user can perform normal outdoors. Communication.
  • the role of the WiFi module 112 is not limited thereto. In the outdoor travel of the team, the WiFi module 112 can share the wireless signal accepted by itself as a hotspot to multiple wireless terminals, providing an outdoor Internet environment for the team.
  • the WiFi module 112 and the power source 111 are also connected by wires, but are not limited thereto, in some selective
  • the WiFi module 112 is provided with a USB connector
  • the power source 111 is provided with a USB interface cooperated with the WiFi module 112, and the WiFi module 112 can be directly plugged into the power source 111.
  • the wireless signal received by the WiFi module 112 in this embodiment includes: 2.5G, 3G or 4G wireless signals.
  • a frame 114 is mounted on the edge of the second opening 116, and a shutter 113 is mounted on the frame 114.
  • the frame 114 is mounted on the outer edge of the second opening 116.
  • the inner edge of the second opening 116 is further connected with a lining plate 115.
  • the lining plate 115 and the frame 114 are provided with opposite screw holes (not shown), the lining plate 115 and the frame.
  • 114 is fixed to the edge of the second opening 116 by screws.
  • the frame 114 and the lining plate 115 are fixed to the edge of the second opening 116 by screws, only the partial connection state is adopted. With this connection mode, the frame 114 and the lining plate have a problem of unstable connection in the use state.
  • the frame 114 and the lining plate are respectively connected to the surfaces of the two sides of the second opening 116 through the hot melt adhesive layer, and the specific connection manner is: the frame 114 and the lining plate are in contact with the inner surface of the second opening 116.
  • the hot melt adhesive is applied to the part, and the hot melt adhesive forms a hot melt adhesive layer.
  • a guide groove 117 is defined in the frame 114, and the shutter 113 is connected to the guide groove 117 by push-pull.
  • the shutter 113 is inserted into the guide groove 117 to completely close the second opening 116.
  • the shutter 113 is pulled out of the guide groove 117, and the second opening 116 is completely opened.
  • the non-permanent closing method is adopted, and the electronic device in the storage chamber 11 can be taken out, and the smart backpack is cleaned.
  • the permanent closing method of the cloth stitching cannot take out the power source 111 and the WiFi module 112 in the storage chamber 11, so the smart backpack cannot be thoroughly cleaned, and the cleaning of the smart backpack cannot shorten the service life of the smart backpack. .
  • the display device 21 is provided with a SoC module (system on chip), and the SoC module (not shown) detects the remaining power of the power source 111 by detecting the voltage signal that the battery outputs to the display device 21, and the power consumption can be used as a standard. The ratio of capacity is called.
  • the SoC module control display 211 displays the remaining power after calculating the remaining battery power.
  • display 211 can display the signal strength of WiFi module 112.
  • a wireless signal receiving device (not shown) is provided in the display device 21, and the wireless signal receiving device is connected to the SoC module.
  • the wireless signal receiving device accesses the hotspot of the WiFi module 112, and reads the WiFi module.
  • 112 current signal strength, and the received signal strength signal of the WiFi module 112 is sent to the SoC module, and the SoC module controls the display screen 211 to display the current WiFi signal strength for the user to view.
  • the SoC module records the total value of the wireless traffic of the WiFi module 112 while recording the value that has been used by the WiFi module 112.
  • the warning display includes (not limited to): a beating display, a blinking display, a discoloration display, and the like.
  • the backpack body 1 is provided with a receiving cavity 14 which is a main cavity of the backpack body 1 and functions to hold the user's luggage items.
  • a receiving cavity 14 which is a main cavity of the backpack body 1 and functions to hold the user's luggage items.
  • the smart backpack is provided with a power source 111.
  • the power source 111 can also charge other mobile terminals of the user.
  • the smart backpack is internally provided with a first charging line (not shown), and the power source 111 is provided with an interface for plugging the first charging line.
  • One end of the first charging line is connected to the power source 111, and the other end extends through a partition (not shown) between the storage chamber 11 and the accommodating chamber 14 into the accommodating chamber 14, and the user can put the carried mobile terminal into the Within the receiving cavity 14, the mobile terminal is charged by a first charging line that extends into the receiving cavity 14.
  • One end of the first charging line and the power source is provided with a USB connector (not shown), and the power supply is provided with a USB interface (not shown) that cooperates with the USB connector, and the USB connector can be plugged and connected in the USB interface.
  • the USB charging interface and the connector are used to realize the pluggable connection between the charging cable and the power supply, so that the user can replace the charging cable of different specifications.
  • the mobile terminal in this embodiment includes (not limited to): includes a mobile phone, a notebook, a tablet computer, or a POS machine.
  • the first charging line extending into the accommodating chamber 14 can be one or more. When the charging line is plural, the number of the first charging lines corresponds to a moving end having a different charging voltage. For a mobile terminal having the same charging voltage, it is possible to satisfy its charging demand by having a plurality of charging interfaces on a first charging line.
  • the smart backpack is provided with a plurality of receiving chambers, and a receiving cavity can be set as a dedicated receiving space, and the first charging wire can directly protrude into the receiving cavity.
  • a fast charging system (not shown) is provided within the power source 111.
  • the fast charging system is capable of detecting the optimal charging current of the mobile terminal. After detecting the optimal charging current of the mobile terminal, the charging current of the power source 111 is adjusted to the current, which can speed up the charging rate of the mobile terminal.
  • the display device 21 can display the state of charge, and the mobile terminal can transmit its own state of charge to the wireless signal receiving device of the charging device, and the SoC module of the display device 21 reads the signal transmitted by the mobile terminal.
  • the control display screen 211 displays the state of charge of the mobile terminal. It is convenient for the user to obtain the charging status of the mobile terminal from outside the smart backpack.
  • the smart backpack can charge the mobile terminal in the context of the user holding the mobile terminal.
  • a second charging line 15 is connected to the power source 111 of the smart backpack, and the second charging line 15 extends from the interlayer of the side of the smart backpack close to the back of the human body into the strap 12 of the smart backpack, and passes through the smart belt. Backpack strap 12. Since the second charging line 15 is routed through the strap 12 of the smart backpack, the user can charge the mobile terminal while holding the mobile terminal. It is avoided that the user must put the mobile terminal into the accommodating chamber 14 for charging.
  • a mobile phone clamping device 13 is provided at the position of the smart backpack strap 12, and the clamping device 13 includes a connecting plate 131. The two ends of the connecting plate 131 are rolled up to form a first stopping edge 132 and a second stopping edge 133.
  • the lower end of the connecting plate 131 is rolled up to form a third stopping edge 134, and the connecting plate 131 is provided with a first connecting groove 135. And the second connecting groove 136, a certain distance is left between the first connecting groove 135 and the second connecting groove 136.
  • the smart backpack strap 12 is inserted by the first connecting slot 135 and then passed out by the second connecting slot 136, so that the mobile phone clamping device 13 can be fixed on the smart backpack strap 12.
  • the handset is inserted from above the handset gripping device 13 between the first stop edge 132 and the second stop edge 133 and the lower end of the handset is brought into contact with the third stop edge 134, i.e., the handset is placed on the gripping device 13.
  • the mobile phone holding device 13 is not limited thereto, and in some alternative embodiments, the first stop edge 132 and the second stop edge 133 can be separated from the connecting plate 131 in the width direction of the clamping device 13, with this configuration.
  • the clamping device 13 can be adapted to different sizes of mobile phones.
  • the gripping device 13 is provided on the smart backpack to enable the user to use the mobile phone at any time.
  • the second charging line 15 is disposed in the interlayer of the smart backpack.
  • the shape of the electric wire in the backpack is easily changed under the action of external force during the use process, and the frequent shape bending changes easily cause the electric wire to break, which affects the normal use of the smart backpack.
  • the smart backpack is provided with a wire protection device in the interlayer on the side close to the back of the human body.
  • a cushion 17 is provided in the interlayer of the smart backpack near the side of the back of the human body, and the cushion 17 is a flexible panel made of foamed plastic.
  • the pad 17 is provided with a wire trough 170 in a path extending from the second charging line 15.
  • the cross-sectional area of the wire trough 170 is slightly larger than the cross-sectional area of the second charging line 15, and the second charging line 15 is placed in the wire trough.
  • a locking member 172 is formed at an edge of the wire trough 170, and the locking member 172 is correspondingly disposed on both sides of the wire trough 170, and the locking member 172 is disposed.
  • the area where the opening position of the wire trough 170 is set is smaller than the cross-sectional area of the second charging line 15, and the external power supply line is prevented from coming off the wire trough 170.
  • the side of the smart backpack near the back of the human body is provided with a first movable opening 16 on the extending path of the second charging line 15 , and the first movable opening 16 is specifically a zipper disposed on the surface of the smart backpack or Velcro.
  • the first movable opening 16 adopts a movable opening and closing manner, and is in a closed state during normal use of the backpack.
  • the first movable opening 16 can be opened to disassemble the second charging wire 15.
  • the user with the movable opening can remove the second charging line 15 from the smart backpack at any time, so that the user can replace the second charging line 15 and at the same time facilitate the user to clean the smart backpack.
  • the smart backpack shoulder strap position is provided with a second movable opening 121 on the extending path of the second charging line 15, and the second movable opening 121 is specifically a zipper or a Velcro disposed on the smart backpack strap 12.
  • Smart backpack users can control the smart backpack in the piggyback state.
  • the smart backpack strap 12 is provided with a switch, and the switch and the power source 111 are connected by wires, and the wires connecting the switch and the power source 111 are laid in the wire trough of the smart backpack interlayer.
  • the user can control the power source 111 of the smart backpack while the smart backpack is in a piggyback state, which is convenient for the user to control.
  • the switch mounted at the position of the smart backpack strap 12 is a touch screen switch, and the touch screen switch is connected to the power source 111, the WiFi module 112, and the display device 21 inside the smart backpack by wires.
  • the touch screen switch can control the power source 111, the WiFi module 112, and the display device 21 inside the smart backpack individually or in groups.
  • the touch screen switch can sense the sliding track that the user has packed. The smart backpack is controlled accordingly by the sliding track.
  • the touch screen switch is internally provided with a storage device, and the storage device pre-stores a gesture control command, and the touch screen switch detects the sliding trace of the user, and compares the sliding trace with the pre-stored gesture control command, according to the ratio.
  • This control mode is also the overall control mode of the smart backpack. .
  • the WiFi module 112 in the smart backpack When the WiFi module 112 in the smart backpack is turned on or off, the user places a finger on the touch screen switch and leaves a V-shaped track, that is, can control the opening or closing of the WiFi module 112.
  • the user places two fingers on the touch switch at the same time, and controls the display device 21 to be turned on and off by standing still for two seconds.
  • the display device 21 is capable of multi-color display
  • the touch screen switch is capable of controlling the display color of the display device 21.
  • the user places the gesture at the edge position of the touch switch and touches The display color of the display device 21 can be adjusted by sliding the edge position of the screen switch.
  • control gestures for the touch screen switch are not limited to the above, and a plurality of different difference gestures can be designed according to different application scenarios.
  • a smart backpack includes a backpack body 1 .
  • the smart backpack is internally provided with a storage 11 .
  • the storage chamber 11 is provided with a power source 111 .
  • One end of the second charging line 15 is connected to the power source 111 .
  • the other end of the second charging line 15 extends from the inside of the smart backpack to the position of the smart backpack strap 12 and is worn out from the smart backpack strap.
  • the user can charge the mobile device when there is a mobile device in a single hand, In the case of adding an extra burden to the user, the user can first charge the mobile terminal while the mobile terminal is normally used.

Abstract

一种智能背包(100),内部设有置物腔(11),置物腔(11)内设有电源(111),电源(111)上连接有充电线(15),充电线(15)的另一端由智能背包(100)内部延伸至智能背包(100)的背带(12)位置,并从智能背包(100)的背带(12)穿出。通过给智能背包(100)内的电源(111)连接充电线(15),并使充电线(15)延伸至智能背包(100)的背带(12)位置,使用户能够在单手持有移动设备时对移动设备进行充电,在不给用户增添额外负担的情况下,能够使用户在正常使用移动终端的情况下对移动终端进行充电。

Description

一种智能背包
相关申请的交叉参考
本申请要求于2016年4月28日提交中国专利局,申请号为201620373595.X,发明名称为“一种智能背包”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及可穿戴设备,尤其是一种智能背包。
背景技术
伴随着电子产品微型化技术的逐步发展,当前智能可穿戴设备成为新的发展趋势。
移动终端作为现代人不可或缺的通讯装置,几乎无时无刻的伴随着人们的身旁,现有技术中移动终端面临的最大问题如何增加移动终端的续航能力。
发明人在研究中发现,现有技术中提供的移动充电设备,当用户处于行走状态下对移动终端进行充电,用户必须同时手持移动终端和移动充电设备,或者将手持移动终端和移动充电设备放置在背包内进行充电。以上两种方法中手持充电会增加用户除移动终端之外的额外负担,在背包内进行充电会使用户在充电期间无法正常使用移动终端。
发明内容
本申请通过提供一种智能背包,通过给智能背包内的电源连接充电线,并使电源线延伸至智能背包背带位置,使用户能够在单手持有移动设备时对移动设备进行充电,解决现有技术中采用移动充电设备充电时携带不便与无法使用移动终端的问题。
本申请采用的一个技术方案是:提供所述智能背包内部设有置物腔,所述置物腔内设有电源,所述电源上连接有第二充电线的一端,所述第二充电线的另一端由智能背包内部延伸至智能背包背带位置,并从智能背包背带穿出。
进一步地,所述智能背包内部设有衬垫,所述衬垫上开设有走线槽,所述第二充电线铺设在所述走线槽内。
更进一步地,所述走线槽边沿凸起形成锁紧件。
更进一步地,所述智能背包背带上设有夹持装置。
更进一步地,所述置物腔上设有开口,所述电源通过所述开口进入置物腔内。
更进一步地,所述开口外侧边缘设有框架,所述开口内侧边缘设有衬板,所述框架与所述衬板通过螺钉连接。
更进一步地,所述框架与衬板分别通过热熔胶层与所述智能背包表面连接。
更进一步地,所述框架上开设有导向槽,所述导向槽内安装有闸板,所述闸板通过沿所述导向槽的导向路径开合所述开口。
更进一步地,所述智能背包表面上设有显示模块,所述电源与显示模块通过导线连接,所述导线在智能背包内部铺设。
更进一步地,所述显示模块包括:显示装置与插座;
所述插座内陷构造成插接通道,且所述插座上连接有导线;
所述显示装置上设置与所述插接通道配合的插接头,使所述显示装置可拔插的与插座连接。
更进一步地,所述智能背包表面至少设置两个插座,所述插座分布在智能背包本体表面的不同位置。
本申请的有益效果为:通过给智能背包内的电源连接充电线,并使电源线延伸至智能背包背带位置,使用户能够在单手持有移动设备时对移动设备进行充电,在不给用户增添额外负担的情况先,能够使用户在正常使用移动终端的情况下对移动终端进行充电。
附图说明
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定,附图中具有相同参考数字标号的元件表示为类似的元件,除非有特别申明,附图中的图不构成比例限制。
图1为本申请实施例的智能背包整体结构示意图;
图2为本申请实施例的显示装置整体示意图;
图3为本申请实施例的插接头底部示意图;
图4为本申请实施例的插座整体结构示意图;
图5为本申请实施例的插座与背包本体的配合关系示意图;
图6本申请实施例的插座俯视图;
图7为本申请实施例的置物腔分解示意图;
图8为本申请实施例的智能背包示意图的后视图;
图9为本申请实施例的夹持装置整体示意图;
图10为本申请实施例的第二开口横向剖视图。
具体实施方式
为了便于理解本申请,下面结合附图和具体实施方式,对本申请进行更详细的说明。需要说明的是,当元件被表述“固定于”另一个元件,它可以直接在另一个元件上、或者其间可以存在一个或多个居中的元件。当一个元件被表述“连接”另一个元件,它可以是直接连接到另一个元件、或者其间可以存在一个或多个居中的元件。本说明书所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的。
除非另有定义,本说明书所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同。在本申请的说明书中所使用的术语 只是为了描述具体的实施方式的目的,不是用于限制本申请。本说明书所使用的术语“和/或”包括一个或多个相关的所列项目的任意的和所有的组合。
下面结合附图和实施方式对本申请进行详细说明。
实施例1
请参阅图1,一种智能背包100,包括:背包本体1与显示模块2。其中,背包本体1内设有置物腔11,置物腔11内设置电源111。显示模块2设置在背包本体1的表面,电源111与显示模块2通过导线连接,导线在背包本体1内部铺设,显示模块2包括显示装置21。
通过在智能背包100上设置显示装置21,使用户能够通过显示装置21能够读取智能背包内部电源111的电量,解决智能背包电量数值无法获取的问题。
请参阅图2、图3,显示模块2包括显示装置21与插座22。显示装置21包括:显示屏211与插接头212。其中显示屏211构造成三角形。显示屏211的具体形状不限于此,显示屏211的具体形态包括:圆形、椭圆、方形或多边形。显示屏211的具体形状不限于上述几种形状,显示屏211位于背包本体1上一个结构,显示屏211的具体形状设计配合于背包本体1的具体设计。显示屏211类型包括(不限于):LED显示屏211、等离子显示屏211或液晶显示屏211。显示模块2下方设有插接头212,插接头212是用于固定显示屏211,以及为显示屏211接入外部电源111与信号的线路载体。插接头212的具体形状与显示屏211的具体形状一致,但插接头212的横截面积小于显示屏211的横截面积,插接头212连接在显示屏211底部的中央位置。插接头212的另一端端部设有插接孔213(见图3),插接孔213共设有两个,分别为阴极插接孔213与阳极插接孔213,插接孔213与显示屏211连接用于为显示屏211引入外部电源111供电或电流信号,以使显示屏211处于点亮状态,以及通过电信号向显示屏211传递显示的具体信息。插接头212的具体形状与显示屏211的形状一致均为三角形,但插接头212的形状不局限于此,在一些实施方式中根据显示屏211形状的不同,插接头212的形状能够为(不限于):圆形、椭圆、方形或多边形。在另一些实施方式中,插接头212的具体形状不限于与显示屏211形状一致,举例说明,如显示屏211的具体形状为三角形,插接头212的形状为圆柱形。
其中,显示装置21是可拔插的连接在插座22中,插座22外形与插接头212 的形状一致,插接头212内部中空形成插接通道221。
请参阅图4、图6,具体地,插座22用于安装显示装置21,同时插座22也是将显示装置21固定在背包本体1上的一种载体。插座22的具体形状与插接头212的形状相似,均为三角形。但不限于此,插座22的具体形状能够是多变的。插座22一端中部内陷形成插接通道221,插接通道221用于安装显示装置21,插接通道221的具体形状与插接头212相配合均为三角形,且插接通道221的横截面积略大于插接头212的横截面积,以使插接头212能够插入到插接通道221内部。插接通道221底部设有与插接头212的插接孔213相配合的连接柱224,连接柱224包括:阳极连接柱224与阴极连接柱224。阳极连接柱224与阴极连接柱224直接连接有电源线。使用时将显示装置21中的插接头212插入到插接通道221内,使插接通道221内的连接柱224插入到插接孔213内,从而为显示屏211供电。
作为显示装置21与插座22连接方式的一种选择性实施例,在插接头212侧边上凸起形成环形的胀紧件(图未示),插接通道221内部侧边上在胀紧件对应位置向内凹陷形成与紧涨件配合的缩颈口(图未示)。插接头212插接在插接通道221内,容易由于抖动使插接头212脱离插接通道221,或者在运动状态下使连接柱224与插接孔213的连接不稳定,使显示屏211不能够处于稳定的点亮状态。胀紧件具体为突起在插接头212侧边上的胀紧环,胀紧环的横截面积大于插接头212的横截面积,且胀紧件的横截面积略大于插接通道221的横截面积。缩颈口具体为在插接通道221内壁上内陷形成的环形凹槽,环形凹槽的横截面积大于插接通道221的横截面积,当插接头212插入到插接通道221内时胀紧环卡入到环形凹槽内,使插接头212在插接通道221内无法进行移动。采用这一结构,能够保证插接头212与插接通道221连接的稳定性,防止插接头212脱离插接通道221。
请一并参阅图4和图5,插座22固定在背包本体1的表面上,背包本体1的表面上开设有与插座22外形相似的第一开口19,插座22即固定在该第一开口19上。在一些实施方式中,插座22开设插接通道221的端部边缘位置凸起形成第一挡沿222,插座22表面凸起形成第二挡沿223,第一挡沿222与第二挡沿223之间留有间距,第一挡沿222与第二挡沿223之间的距离是用于放置背包本体1表面第一开口19的边缘。将背包本体1第一开口19的边缘放置在 第一挡沿222与第二挡沿223之间后,第一挡沿222、第一开口19的边缘与第二挡沿223形成层状结构。在第一挡沿222与第二挡沿223上开设相互对应的螺纹孔(未标识),通过螺钉20将第一开口边缘固定在第一挡沿222与第二挡沿223之间。第一挡沿222与第二挡沿223通过螺钉20固定在背包本体1表面上时,仅有局部处于连接状态,采用这一连接方式,在使用状态下插座22以及连结在插座22上的显示装置21会出现固定不牢固的问题。在另一些实施方式中,第一挡沿222与第二挡沿223通过热熔胶层分别与背包本体1表面连接,具体的连接方式为:在第一挡沿222第二挡沿223与背包本体1接触的部位涂覆热熔胶,热熔胶凝固后形成热熔胶层。
请参阅图8,在一些选择性实施方式中,背包本体1上设有两个插座22,分别为:第一插座225与第二插座226。其中第一插座225设置在背包本体1上(见图1),第二插座226设置在背包本体1的背带12上。第一插座225与第二插座226分别与电源111通过导线连接。显示装置21能够插接在第一插座225内或第二插座226内。采用双插座的设计,能够使用户在背负状态下无需将背包先行拿下后,才能观看到显示屏211,而只需在背负之前,将显示装置22从第一插座225内拔出,插接在第二插座226内,即可在背负状态下观看到显示屏,从而极大地方便了用户使用。
插座22上连接有电源111,电源111设置在背包本体1内部,插座22与电源111之间通过导线连接。
请参阅图7,具体地,背包本体1底部设有置物腔11,置物腔11上设有第二开口116。置物腔11内设有电源111,该电源111为可充电电源。电源111上连接有导线,电线的另一端连接在插座22。在一些实施方式中,置物腔11能设有WiFi模块112,所述WiFi模块112为随身WiFi。用户在野外行走时,由于无线终端受自身无线天线强度的限制,无法获取无线信号或获取的无线信号较弱,影响用户在野外通信能力。在背包本体1内安装随身WiFi,能够在户外正常的接收无线信号,然后将自身作为一个WiFi热点,将接收到的WiFi信号分享给用户的其他无线移动端,以保证用户能够在户外进行正常的通信。当然,WiFi模块112的作用不局限于此,在团队户外旅行中,WiFi模块112能够将自身接受的无线信号作为热点分享到多个无线终端,为团队提供户外上网环境。WiFi模块112与电源111之间同样通过导线连接,但不限于此,在一些选择性 实施例中,WiFi模块112上设有USB接头,电源111上设有与WiFi模块112配合的USB接口,WiFi模块112能直接插接在电源111上。需要说明的是,本实施方式中的WiFi模块112接收的无线信号包括:2.5G、3G或者4G无线信号。
请参阅图10,第二开口116边缘上安装有框架114,框架114上安装有闸板113。框架114安装在第二开口116的外侧边缘,第二开口116内侧边缘上还连接有衬板115,衬板115与框架114上开设有相对的螺孔(图未示),衬板115与框架114通过螺钉固定在第二开口116边缘。框架114与衬板115通过螺钉固定在第二开口116边缘上时,仅有局部处于连接状态,采用这一连接方式,在使用状态下框架114与衬板存在连接不稳定的问题。在另一些实施方式中,框架114与衬板通过热熔胶层分别与第二开口116两侧的表面上,具体的连接方式为:在框架114与、衬板与第二开口116内外表面接触的部位涂覆热熔胶,热熔胶凝固后形成热熔胶层。
框架114上开设有导向槽117,闸板113通过推拉的方式连接在导向槽117内。背包在使用时,将闸板113插入到导向槽117内,以使第二开口116完全闭合。需要将置物腔11内的电源111和WiFi模块112取出时,将闸板113抽出导向槽117,使第二开口116完全打开。采用闸板113这种非永久性闭合的方式,能够随时将置物腔11内电源111与WiFi模块112取出,方便更换损坏的电子器件,延长了智能背包的使用寿命。同时采用非永久性的闭合方式,能够将置物腔11内的电子器件取出后,对智能背包进行清洗。而采用布料缝合这种永久式的闭合方式,无法将置物腔11内的电源111与WiFi模块112取出,故无法对智能背包进行彻底清洗,无法对智能背包进行清洗必然会缩短智能背包的使用寿命。
显示装置21内设有SoC模块(System on Chip,片上系统),SoC模块(图未示)通过检测电池输出到显示装置21能的电压信号,计算出电源111的剩余电量,即可用电量占标称容量的比例。计算出电池的剩余电量后SoC模块控制显示屏211显示剩余电量。
在一些选择性实施方式中,显示屏211能够显示WiFi模块112的信号强度。在显示装置21内设置无线信号接收装置(图未示),无线信号接收装置与SoC模块连接。无线信号接收装置接入到WiFi模块112的热点中,读取WiFi模块 112当前的信号强度,并将接收到的WiFi模块112的信号强度信号发送到SoC模块内,SoC模块控制显示屏211显示当前WiFi信号强度,供用户查看。在另一些选择性实施方式中,SoC模块记录WiFi模块112无线流量的总数值,同时记录WiFi模块112的流量已使用的数值,当WiFi模块112的使用流量超过上限时或接近上限值时,通过警示显示的方式提醒用户,防止由于流量超量使用,给用户造成经济损失。警示显示包括(不限于):跳动显示、闪烁显示、变色显示等。
背包本体1内设有容纳腔14,容纳腔14是背包本体1的主腔体,其功能是用于盛放用户的行李物品。移动终端作为现在社会中人们与外接交流的主要工具,已经在现在生活中扮演者不可缺少的角色。人们携带移动终端外出时,遇到的最大的问题是:移动终端电量不足,需要充电,在户外旅行时,这种情况尤为常见。
智能背包内设有电源111,电源111除了能够为智能背包自身安装的电子设备供电外,还能够为用户的其他移动终端进行充电。智能背包内部设有第一充电线(图未示),电源111上设有供第一充电线插接的接口。第一充电线的一端连接在电源111上,另一端贯穿置物腔11与容纳腔14之间的隔层(图未示)伸入到容纳腔14内,用户能够将携带的移动终端放入到容纳腔14内,通过伸入到容纳腔14内的第一充电线为移动终端充电。第一充电线与电源连接的一端设有USB接头(图未示),电源上设有与USB接头配合的USB接口(图未示),USB接头可拔插的连接在USB接口内。通过给智能背包内的电源连接充电线,使用户能够通过智能背包的电源为移动终端充电,解决现有技术中户外环境下无法为移动终端充电的难题。采用USB充电接口与接头,实现了充电线与电源的可拔插连接,方便用户更换不同规格的充电线。
本实施方式中的移动终端包括(不限于):包括手机、笔记本、平板电脑或POS机等。伸入到容纳腔14内的第一充电线能够为一根或多个,当充电线为多根时,第一充电线的个数对应于充电电压不同的移动端。对于具有相同充电电压的移动终端,能够通过在一根第一充电线上带有多个充电接口满足其充电需求。在一些实施方式中,智能背包上设有多个容纳腔,能够设定一个容纳腔为专用的容纳空间,第一充电线能够直接伸入到该容纳腔内。
在一些选择性实施方式中,电源111内设有快速充电系统(图未示)。快速充电系统能够检测移动终端的最佳充电电流,检测到移动终端的最佳充电电流后,将电源111的充电电流调整到该电流,能够加快移动终端的充电速率。
在一些选择性实施方式中,显示装置21能够显示充电状态,移动终端能够将自身的充电状态发送到充电装置的无线信号接收装置中,显示装置21的SoC模块读取到移动终端发送的信号后,控制显示屏211显示移动终端的充电状态。方便用户从智能背包外部获取移动终端的充电状态。
智能背包能够在用户手持移动终端的情境下对移动终端进行充电。如图1所示,智能背包的电源111上连接有第二充电线15,第二充电线15由智能背包靠近人体背部的一侧的夹层中延伸至智能背包的背带12中,并穿出智能背包的背带12。由于第二充电线15由智能背包的背带12位置穿出,用户能够在手持移动终端时,对移动终端进行充电。避免用户一定要将移动终端放入到容纳腔14内进行充电。
用户在在户外对手持移动终端进行充电时,一般情况下,都是对手机进行充电。用户手持手机进行充电时会影响到用户的身体协调性,如在爬山的过程中,手持手机进行充电会影响用户用手进行攀登,但将手机放置在容纳腔14内进行充电,会造成用户要反复从智能背包中拿放手机不便。在一些选择性实施方式中,如图8、图9所示,在智能背包背带12位置设有手机夹持装置13,夹持装置13包括:连接板131。连接板131两侧边缘处向上卷起形成第一止挡沿132与第二止挡沿133,连接板131下端向上卷起形成第三止挡沿134,连接板131开设有第一连接槽135与第二连接槽136,第一连接槽135与第二连接槽136之间留有一定间距。使用时,智能背包背带12由第一连接槽135插入后,再由第二连接槽136穿出,即能够将手机夹持装置13固定在智能背包背带12上。将手机从手机夹持装置13上方插入到第一止挡沿132与第二止挡沿133之间,并使手机下端与第三止挡沿134接触,即将手机放置在夹持装置13上。手机夹持装置13不局限于此,在一些选择性实施方式中,第一止挡沿132与第二止挡沿133能够沿夹持装置13的宽度方向与连接板131分离,采用这种结构能够使夹持装置13适应不同尺寸的手机。在智能背包被带上设置夹持装置13,能够使用户随时使用手机。
第二充电线15设置在智能背包的夹层内,在使用过程种背包内的电线在外力作用下形状容易发生变化,频繁的形状弯折变化容易造成电线断路,影响智能背包的正常使用。为解决这一技术问题,智能背包靠近人体背部的一侧的夹层中设有走线保护装置。智能背包靠近人体背部的一侧的夹层中设有衬垫17,衬垫17是由泡沫塑料制成的柔性面板。衬垫17在第二充电线15延伸的路径上开设有走线槽170,走线槽170的横截面积略大于第二充电线15的横截面积,第二充电线15置于走线槽170内。为防止第二充电线15在使用过程中脱离走线槽170,在走线槽170边缘位置突起形成锁紧件172,锁紧件172在走线槽170两侧对应设置,锁紧件172的设置使走线槽170开口局部位置的面积小于第二充电线15的横截面积,防止外接电源线脱离走线槽170。
由于外接电源线设置在智能背包的夹层内,很难将外接电源线抽出,即使抽出也无法重新将第二充电线15铺设在智能背包的夹层内。在一些选择性实施方式中,智能背包靠近人体背部的一侧在第二充电线15的延伸路径上开设有第一活动开口16,第一活动开口16具体为设置在智能背包表面上的拉链或魔术贴。第一活动开口16采用活动开合的方式,在背包正常使用的过程中处于闭合状态,需要将第二充电线15抽出时能够将第一活动开口16打开,将第二充电线15拆卸下来。采用活动开口的设计用户能够随时将第二充电线15从智能背包上拆卸下来,方便用户对第二充电线15的更换,同时能够方便用户对智能背包进行清洗。
智能背包肩带位置在第二充电线15延伸路径上设有第二活动开口121,第二活动开口121具体为设置在智能背包背带12上的拉链或魔术贴。
智能背包用户能够在背负状态下对智能背包进行控制。智能背包背带12位置设有开关,开关与电源111之间通过导线连接,连接开关与电源111的导线铺设在智能背包夹层的走线槽内。用户能够在智能背包处于背负状态下,对智能背包的电源111进行控制,方便用户控制。
请参阅图8,在一些选择性实施方式中,安装在智能背包背带12位置的开关为触屏开关,触屏开关与智能背包内部的电源111、WiFi模块112以及显示装置21通过导线连接。触屏开关能够对智能背包内部的电源111、WiFi模块112以及显示装置21单独或群体控制。触屏开关能够感应到用户收拾的滑动轨迹, 通过滑动轨迹对智能背包进行相应的控制。具体为:触屏开关内部设有存储装置,存储装置内预存储手势控制指令,触屏开关将检测到用户的滑动痕迹后,将该滑动痕迹与预存储的手势控制指令进行比对,根据比对结果选择执行控制指令。采用电源111总开关模式时,用户只需要开启智能背包的部分功能时,不得不开启智能背包的所有功能,造成不必要的电能损耗。采用这一技术方案,能够方便用户对智能背包内的电子器件进行单个控制,减少对智能背包中电源111损耗。
对于触屏开关的手势控制指令,以下举例说明。
对电源111开启与关闭的控制时,用户将手指放置在触屏开关的表面,并静止两秒,即可控制智能背包电源111的开启与关闭,这一控制方式也即智能背包的总控方式。
开启或关闭智能背包中的WiFi模块112时,用户将手指放置在触屏开关上,并留下V形轨迹,即能够控制WiFi模块112的开启或关闭。
开启或关闭智能背包中的显示装置21时,用户将两根手指同时放置在触控开关上,并静止两秒即可控制显示装置21的开启和关闭。
在一些选择性实施方式中,显示装置21能够进行多色彩显示,触屏开关能够对显示装置21的显示色彩进行控制,控制色彩显示时,用户将手势放置在触控开关的边缘位置并沿触屏开关的边缘位置进行滑动,即可调节显示装置21的显示色彩。
对于触屏开关的控制手势不局限于上述几种,能够根据具体应用场景的不同,设计多种不同的区别手势。
实施例2
请参阅图1,一种智能背包,包括背包本体1,所述智能背包内部设有置物11,所述置物腔11内设有电源111,所述电源111上连接有第二充电线15的一端,所述第二充电线15的另一端由智能背包内部延伸至智能背包背带12位置,并从智能背包背带穿出。
通过给智能背包内的电源111连接充电线,并使电源111线延伸至智能背包背带12位置,使用户能够在单手持有移动设备时对移动设备进行充电,在不 给用户增添额外负担的情况先,能够使用户在正常使用移动终端的情况下对移动终端进行充电。
需要说明的是,本申请的说明书及其附图中给出了本申请的较佳的实施方式,但是,本申请可以通过许多不同的形式来实现,并不限于本说明书所描述的实施方式,这些实施方式不作为对本申请内容的额外限制,提供这些实施方式的目的是使对本申请的公开内容的理解更加透彻全面。并且,上述各技术特征继续相互组合,形成未在上面列举的各种实施方式,均视为本申请说明书记载的范围;进一步地,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,而所有这些改进和变换都应属于本申请所附权利要求的保护范围。

Claims (10)

  1. 一种智能背包,其特征在于,所述智能背包内部设有置物腔,所述置物腔内设有电源,所述电源上连接有第二充电线的一端,所述第二充电线的另一端由智能背包内部延伸至智能背包背带位置,并从智能背包背带穿出。
  2. 根据权利要求1所述智能背包,其特征在于,所述智能背包内部设有衬垫,所述衬垫上开设有走线槽,所述第二充电线铺设在所述走线槽内。
  3. 根据权利要求2所述智能背包,其特征在于,所述走线槽边沿凸起形成锁紧件。
  4. 根据权利要求1~3任意一项所述智能背包,其特征在于,所述智能背包背带上设有夹持装置。
  5. 根据权利要求4所述智能背包,其特征在于,所述置物腔上设有开口,所述电源通过所述开口进入置物腔内。
  6. 根据权利要求5所述智能背包,其特征在于,所述开口外侧边缘设有框架,所述开口内侧边缘设有衬板,所述框架与所述衬板连接。
  7. 根据权利要求6所述智能背包,其特征在于,所述框架与衬板分别通过热熔胶层与所述智能背包的表面连接。
  8. 根据权利要求7所述智能背包,其特征在于,所述框架上开设有导向槽,所述导向槽内安装有闸板,所述闸板通过沿所述导向槽的导向路径开合所述开口。
  9. 根据权利要求5~8任意一项所述智能背包,其特征在于,所述智能背包表面上设有显示模块,所述电源与显示模块通过导线连接,所述导线在智能背包内部铺设。
  10. 根据权利要求9所述智能背包,其特征在于,所述显示模块包括:显示装置与插座;
    所述插座内陷构造成插接通道,且所述插座上连接有导线;
    所述显示装置上设置与所述插接通道配合的插接头,使所述显示装置可拔 插的与插座连接。
PCT/CN2016/100424 2016-04-28 2016-09-27 一种智能背包 WO2017185634A1 (zh)

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