WO2022100541A1 - 可穿戴设备 - Google Patents

可穿戴设备 Download PDF

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Publication number
WO2022100541A1
WO2022100541A1 PCT/CN2021/129235 CN2021129235W WO2022100541A1 WO 2022100541 A1 WO2022100541 A1 WO 2022100541A1 CN 2021129235 W CN2021129235 W CN 2021129235W WO 2022100541 A1 WO2022100541 A1 WO 2022100541A1
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WO
WIPO (PCT)
Prior art keywords
coil
belt
band
inner cavity
driving device
Prior art date
Application number
PCT/CN2021/129235
Other languages
English (en)
French (fr)
Inventor
刘川
Original Assignee
维沃移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 维沃移动通信有限公司 filed Critical 维沃移动通信有限公司
Publication of WO2022100541A1 publication Critical patent/WO2022100541A1/zh

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    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • A44C5/18Fasteners for straps, chains or the like
    • A44C5/22Fasteners for straps, chains or the like for closed straps

Definitions

  • the present application belongs to the technical field of communication devices, and in particular relates to a wearable device.
  • wearable devices With the continuous development of wearable devices, consumers have higher and higher functional requirements for wearable devices. In order to meet the needs of consumers, more functional devices are integrated into wearable devices, so that wearable devices have more function, which can improve the performance of wearable devices.
  • a wearable device includes a device body and two connecting straps, which are respectively connected to the device body, wherein one connecting strap is provided with a connecting convex buckle, and the other connecting strap is provided with a through hole, which is connected by The size interference between the convex buckle and the through hole realizes the connection of the two connection straps, thereby realizing the wearing of the wearable device.
  • the inventor found that the related technology has the following problems.
  • the user adjusts the elastic operation of the connecting strap of the wearable device, he needs to untie the two connecting straps first, and then remove the convex buckle from the wearable device. Pulling out from one through hole, and then inserting the convex buckle into the other through holes, the adjustment method of the connecting strap is complicated, which makes the user's operation of adjusting the tightness of the connecting strap of the wearable device more complicated, thereby making the user experience poor.
  • the purpose of the embodiments of the present application is to provide a wearable device, which can solve the problem of complicated operation of adjusting the tightness of the connection strap of the wearable device.
  • Embodiments of the present application provide a wearable device, including:
  • the device main body has a first connection part and a second connection part distributed in opposite directions;
  • the first connecting band is connected with the first connecting part, and the first connecting band is provided with a first inner cavity;
  • the second connecting band is connected with the second connecting part, and the second connecting band is provided with a second inner cavity;
  • the driving device is arranged in the first inner cavity
  • a driven device the driven device is arranged in the second inner cavity
  • the driving device can drive the driven device, and the driven device drives the second connecting belt relative to the first connecting belt Connect the belt movement.
  • the driving device can drive the driven device to move
  • the driven device can drive the second connecting belt to move
  • the second connecting belt moves relative to the first connecting belt, so that the second connecting belt can extend out of the first connecting belt.
  • Out of the inner cavity or retracted into the first inner cavity so as to realize the user's adjustment of the tightness of the connecting belt.
  • the belt tension adjustment is simple and convenient to improve the user experience.
  • FIG. 1 is a schematic structural diagram of a wearable device disclosed in an embodiment of the present application.
  • FIG. 2 and FIG. 3 are schematic diagrams of a partial structure of a connection belt of a wearable device disclosed in an embodiment of the present application;
  • FIG. 4 is a schematic structural diagram of a driving device in the wearable device disclosed in the embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of another driving device in the wearable device disclosed in the embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of a driven device in a wearable device disclosed in an embodiment of the present application.
  • 400-driving device 410-first coil, 420-second coil, 430-vibrating body, 440-third coil, 450-elastic member, 460-first wire, 470-first bracket,
  • an embodiment of the present application discloses a wearable device, and the disclosed wearable device includes a device body 100 , a first connection belt 200 , a second connection belt 300 , a driving device 400 and a driven device 500 .
  • the device main body 100 is the main body part of the wearable device, and the device main body 100 includes the main functional components of the wearable device, such as a device casing, a display screen, a main board, and the like.
  • the device main body 100 has a first connection part and a second connection part distributed opposite to each other.
  • the second connection part is connected with the second connection belt 300 , and the second connection part is used to realize the connection between the second connection belt 300 and the device main body 100 .
  • the first connecting portion and the second connecting portion may be raw ears.
  • the first connecting portion and the second connecting portion may also adopt other structures, which are not limited herein.
  • the first connection belt 200 and the second connection belt 300 are used to realize the wearing of the wearable device on the human body.
  • the first connection band 200 and the second connection band 300 may be watch bands, and the device body 100 may be a dial.
  • the first connecting belt 200 and the second connecting belt 300 may be of various types.
  • the first connecting belt 200 and the second connecting belt 300 may be leather belts, metal belts, etc., which are implemented in this application. The example does not limit the specific types of the first connecting tape 200 and the second connecting tape 300 .
  • the first connecting belt 200 defines a first inner cavity 201 , and the driving device 400 is disposed in the first inner cavity 201 . At this time, the driving device 400 is connected to the first connecting belt 200 .
  • the second connecting band 300 is provided with a second inner cavity 301 , the driven device 500 is disposed in the second inner cavity 301 , and the driven device 500 is connected with the second connecting band 300 .
  • the driving device 400 can drive the driven device 500 , so that the driven device 500 drives the second connection belt 300 to move relative to the first connection belt 200 .
  • the driving device 400 provides driving force for the driven device 500 , and the driving device 400 drives the driven device 500 to move in the first inner cavity 201 .
  • the driven device 500 is connected with the second connecting belt 300 , so that the driven device 500 can drive the second connecting belt 300 to move, thereby enabling the second connecting belt 300 to enter and exit the first inner cavity 201 .
  • the second connecting band 300 moves toward the inside of the first inner cavity 201 , the overall lengths of the first connecting band 200 and the second connecting band 300 are shortened.
  • the second connecting band 300 moves toward the outside of the first inner cavity 201, the overall lengths of the second connecting band 300 and the first connecting band 200 increase.
  • the tightness of the first connecting strap 200 and the second connecting strap 300 can be adjusted according to the usage of the user.
  • the embodiments disclosed in the present application do not need to separate the first connecting straps 200 and the second connecting straps 300 when adjusting the lengths of the first connecting straps 200 and the second connecting straps 300 , thereby
  • the operation steps of adjusting the tightness of the connection strap of the wearable device are simplified, so that the operation of adjusting the tightness of the connecting strap of the wearable device is simple and convenient, so as to improve the user experience.
  • the driving device 400 is arranged in the first inner cavity 201
  • the driven device 500 is arranged in the second inner cavity 301, so the driving device 400 and the driven device 500 are not easily exposed, so that it is not easy for the user to understand the driving device 400 and the driven device 500.
  • the driven device 500 causes damage, thereby improving the safety and reliability of the wearable device when worn.
  • the driving device 400 and the driven device 500 are not easily exposed, and the surfaces of the first connecting belt 200 and the second connecting belt 300 seen by the user are smooth and flat without being damaged, thereby improving the appearance and texture of the electronic device and improving the user experience.
  • the driving device 400 and/or the driven device 500 can be electrically connected to the device body 100 through wires, so that the control of the driving device 400 and/or the driven device 500 and the control of the driving device 400 and/or the driven device 500 can be realized.
  • Device 500 is powered.
  • one of the driving device 400 and the driven device 500 may have a third coil 440 and the other may have a magnetic member 510.
  • the third coil 440 When the first connecting belt 200 is connected with the second connecting belt 300 and the third coil 440 When powered on, the third coil 440 may magnetically cooperate with the magnetic member 510 .
  • the third coil 440 or the magnetic member 510 can drive the second connecting belt 300 to move relative to the first connecting belt 200 .
  • the structure of the third coil 440 and the magnetic member 510 is simple and the size is small, so the structure of the driving device 400 and the driven device 500 is simple, thereby making the installation space reserved for the first inner cavity 201 and the second inner cavity 301 Smaller, so that the sizes of the first connection belt 200 and the second connection belt 300 can be made smaller, which facilitates the user to wear easily and further improves the user experience.
  • the movement direction of the second connection strap 300 is controlled by the direction of the current flowing in the third coil 440 , so the commutation of the driven device 500 is flexible, so that the elastic adjustment of the connection strap of the wearable device is simpler and more reliable.
  • the lengths of the first connecting belt 200 and the second connecting belt 300 can also be adjusted in other ways, for example, the second connecting belt 300 can be adjusted by winding, and the specific adjustment method of the second connecting belt is not limited herein.
  • the above-mentioned magnetic member 510 may be a permanent magnet or an energized coil, and the specific structure of the magnetic member 510 is not limited herein.
  • the driven device 500 may further include a second bracket 520 , the second coil 420 is fixed in the second lumen 301 , and one of the third coil 440 or the magnetic member 510 may be disposed on the second bracket 520 .
  • the driving device 400 may include a first coil 410 , a second coil 420 and a vibrating body 430 , and the first coil 410 may be fixed in the first inner cavity 201 , The second coil 420 may be disposed on the vibrating body 430 , that is, the second coil 420 is wound on the vibrating body 430 .
  • the first coil 410 and the second coil 420 may be disposed opposite to each other.
  • the vibrating body 430 can move relative to the first coil 410 .
  • the first coil 410 and the second coil 420 when both the first coil 410 and the second coil 420 are energized, the first coil 410 and the second coil 420 can generate an interactive magnetic field, and under the action of the magnetic field force, the vibrating body 430 can generate Under the action of the magnetic field force, the vibrating body 430 can reciprocate in the first inner cavity 201, thereby realizing the vibration function.
  • the driving device 400 can drive the first connecting belt 200 to vibrate, and the first connecting belt 200 can transmit the vibration to the user, thereby realizing the vibration function of the wearable device.
  • the vibration function of the wearable device For example, the call reminder function and information reminder function of wearable devices, etc.
  • the vibration function of the wearable device can be transferred from the original device body 100 to the connecting belt, so that there is no need to reserve the installation position of the vibration device in the device body 100, thereby improving the occupancy of the device body 100, and promoting the device body 100
  • the thickness is smaller, which can improve the user experience.
  • the vibrating body 430 is disposed in the first connecting belt 200, and the first connecting belt 200 is in closer contact with the user, thereby making the user feel more intense vibration, thereby better reminding the user.
  • the driving device 400 may further include a first bracket 470 and an elastic member 450 , and the first bracket 470 provides a mounting basis for other components of the driving device 400 .
  • the first bracket 470 is fixedly installed in the first inner cavity 201 .
  • the first coil 410 is wound on the first bracket 470 , and the vibrating body 430 is elastically connected to the first bracket 470 through the elastic member 450 .
  • the vibrating body 430 is in a suspended state by the elastic support of the elastic member 450 , which is beneficial to realize the vibration of the elastic vibrating body 430 , thereby improving the vibration performance of the vibrating body 430 .
  • the vibrating body 430 may be made of a metal material with a relatively high density, so as to improve the inertia during the vibration process and achieve the purpose of enhancing the vibration effect.
  • the vibrating body 430 may be an iron block.
  • the elastic member 450 can not only play the role of elastic connection, but also can play the role of elastically restraining the vibration body 430 during the vibration of the vibration body 430 .
  • the elastic member 450 may have various types, for example, the elastic member 450 may be a spring, an elastic metal sheet, a rubber band, etc. Of course, the elastic member 450 may also be other structures, which are not limited herein.
  • the vibration of the driving device 400 is controlled by turning the first coil 410 and the second coil 420 on and off, so that the driving device 400 has fewer components and a simple control method, thereby reducing the manufacturing cost of the wearable device.
  • the driving device 400 may include a first coil 410 and a vibrating body 430 , the first coil 410 is fixed in the first inner cavity 201 , and the first coil 410 is connected to the vibration body 430 .
  • the bodies 430 are arranged opposite to each other, and the vibrating body 430 is a permanent magnet.
  • the vibrating body 430 can move relative to the first coil 410 .
  • the second coil 420 mentioned in the above embodiment is eliminated, and the vibrating body 430 is made of a permanent magnet.
  • the first coil 410 When the first coil 410 is energized, the first coil 410 can generate a magnetic field, and the magnetic field of the first coil 410 interacts with the magnetic field of the vibrating body 430 , so that the vibrating body 430 re-moves relative to the first coil 410 , thereby realizing vibration Features.
  • the vibrating body 430 is a permanent magnet, so that the number of components of the driving device 400 is small, so that the structure of the driving device 400 is more compact and occupies less space in the first inner cavity 201 .
  • the driving device 400 in this embodiment may further include a first bracket 470 and an elastic member 450.
  • the connection between the first bracket 470 and the elastic member 450 and the vibrating body 430 is the same as that shown in FIG.
  • the driving device 400 may adopt the structure as shown in FIG. 4 or FIG. 5 .
  • the driven device 500 has a magnetic member 510, and the magnetic member 510 at this time may be an energized coil. That is to say, the above third coil 440 is located in the driving device 400 , and at this time, the third coil 440 is the above first coil 410 .
  • the magnetic member 510 can drive the second connection strip 300 relative to the first connection strip 300.
  • the connecting belt 200 moves, but the vibrating body 430 does not vibrate. At this time, the length adjustment of the connecting belt can be realized.
  • the vibrating body 430 moves relative to the first coil 410 and the magnetic member 510 does not move. At this time, the driving device 400 can be vibrated.
  • the magnetic member 510 is an energized coil, and the presence or absence of the magnetic member 510 can be controlled by current, so the adjustment function and the vibration function of the connecting belt of the wearable device can be activated independently.
  • the vibration function can be activated at the same time when the adjusting function of the connecting belt is activated.
  • the driving device The vibration of 400 is only one of the vibration functions of the drive device 400 .
  • the vibration function can also be activated independently when the connection belt is not adjusted. For example, when the vibration function of the driving device 400 is activated alone, reminder functions such as a call reminder function and a message reminder function of the wearable device can be implemented.
  • the driving device 400 may further include a first wire 460 , and the first coil 410 is connected to the device main body 100 through the first wire 460 , so that the first coil 410 and the device main body 100 are electrically connected.
  • the driven device 500 may be provided with a second wire 530.
  • the magnetic member 510 is an energized coil
  • the energized coil may be connected to the device body 100 through the second wire 530, so that the energized coil and the device body 100 are electrically connected.
  • the driving device 400 in the above embodiment may also be the driving device 400 shown in FIG. 4 , and the specific structure of the driving device 400 is not limited herein.
  • the device main body 100 is provided with a program for adjusting the tightness of the connecting strap, and the user can start the program as required to adjust the tightness of the connecting strap.
  • the starting method of the degree of tightness adjustment can be as follows: (1) Enter the tightness adjustment interface of the connecting belt through the touch screen. (2) The user touches the control button on the display screen, the device main body 100 transmits the received adjustment information to the driving device 400, and the driving device 400 starts, thereby driving the driven device 500 to drive the second belt body to move, thereby realizing the connection of the belt. Elasticity adjustment.
  • Another program starting method may be: (1) An operation button is provided on the outer surface of the device main body 100, and when the user presses the operation button for many times, the interface for adjusting the tightness of the connection strap can be entered. (2) Adjust the tightness of the connecting belt by operating the buttons.
  • the first connection belt 200 and the second connection belt 300 need to be fixed, so as to prevent the wearable device from falling off during wearing by the user.
  • one of the first connecting strip 200 and the second connecting strip 300 is provided with the first snap portion 210, the other is provided with the first matching portion 310, the first The number of the matching parts 310 is multiple, and the number of the first matching parts 310 is multiple means that the number of the first matching parts 310 is two or more. That is to say, the first engaging portion 210 may correspond to a plurality of first matching portions 310 , and the first engaging portion 210 is engaged with one of the first matching portions 310 by engaging with each other.
  • the first engaging portion 210 is separated from the first matching portion 310 in the initial position.
  • the mating portion 310 is in a snap-fit position.
  • the first engaging portion 210 is engaged with the first matching portion 310 at the target position, and the target position refers to the position where the first engaging portion 210 is engaged with the first matching portion 310 after the second connecting belt 300 is adjusted.
  • the first snap portion 210 and the first matching portion 310 can connect the first connection strip 200 and the second connection strip 300, thereby preventing the first connection strip 200 from being connected to the second connection strip 300.
  • the looseness of the connection strap 300 makes it difficult for the wearable device to fall off when the user wears it.
  • one of the first engaging portion 210 and the first matching portion 310 may be a first protrusion and the other may be a first groove, and at least part of the first protrusion may be located in the first groove , and the first protrusion is clamped with the first groove.
  • the structure of the first protrusion and the first groove is simple and easy to operate, thereby reducing the manufacturing cost of the wearable device.
  • the first protrusion may be an arc-shaped protrusion
  • the first groove may be an arc-shaped groove. At this time, the contact surface between the first protrusion and the first groove is smooth, thereby making the first protrusion and the first The friction force of a groove is small, so that the first protrusion can slide into or out of the first groove easily.
  • the first matching portion 310 when the first matching portion 310 is the first protrusion, the number of the first protrusion is multiple, and the number of the first protrusion is more than the number of the first groove. When part of the first protrusions are located outside the first grooves, the first protrusions are likely to interfere with the sidewall of the first inner cavity 201, thereby affecting the length adjustment of the connecting strip.
  • the first engaging portion 210 is a first protrusion
  • the first matching portion 310 is a first groove.
  • the number of the first grooves is multiple, and the first The protrusions can be located in the first grooves, so as to not easily interfere with the side walls of the first inner cavity 201, and thus not easily affect the adjustment function of the connecting strip.
  • one first clamping portion 210 may be provided.
  • multiple first clamping portions 210 may be provided, which is not limited herein.
  • the wearable device disclosed in this embodiment of the present application may further include an adjustment component
  • the first inner cavity 201 has a first installation position and a second installation position
  • the first An installation position and a second installation position are spaced apart along the extending direction of the first connecting belt 200
  • the adjusting assembly drives the driving device 400 to move between the first installation position and the second installation position.
  • the lengths of the first connecting strap 200 and the second connecting strap 300 can be pre-adjusted according to the wearing needs of different users.
  • the first installation position may be at a position closer to the first connection portion
  • the second installation position may be at a position farther away from the first connection portion.
  • the position of the driving device 400 can be adjusted first, and then the driven device 500 can be driven to adjust the second connecting belt 300, thereby improving the adjustment efficiency of the connecting belt.
  • the second connecting belt 300 can also be finely adjusted through the driven device 500, so that the adjustment accuracy of the connecting belt can be improved, and the user experience can be further improved.
  • a guide rail may be provided in the first inner cavity 201 , the extending direction of the guide rail is the same as that of the first connecting belt 200 , and the guide rail is slidably connected to the driving device 400 .
  • the driving device 400 can slide on the guide rail, so that the moving precision of the driving device 400 can be improved.
  • the adjusting component is provided with the fourth coil
  • the driving device 400 may be provided with a fifth coil matching the fourth coil.
  • the coils can generate interacting magnetic fields, which in turn can enable the movement of the drive device 400 .
  • such an implementation is likely to increase the power consumption of the wearable device, thereby causing the wearable device to consume more power.
  • the adjusting assembly may include an adjusting sliding shaft 610
  • the first connecting belt 200 may be provided with a sliding groove communicating with the first inner cavity 201 , and the extending direction of the sliding groove is the same as the extending direction of the first connecting belt 200
  • the adjusting sliding The shaft 610 is slidably connected to the chute, a part of the adjusting slide shaft 610 extends into the first inner cavity 201 through the chute, and is connected to the driving device 400 , and the other part of the adjusting slide shaft 610 is exposed on the outer surface of the first connecting belt 200 , which is convenient for users to operate.
  • the adjusting sliding shaft 610 can drive the driving device 400 to move between the first installation position and the second installation position. At this time, the user can drive the adjusting sliding shaft 610 to move in the chute, thereby driving the driving device 400 to move.
  • the user drives the adjustment sliding shaft 610 to move, thereby driving the driving device 400 to move.
  • the movement of the driving device 400 can only be accomplished by applying external force by the user, so there is no problem of power consumption, so that it can be Reduce the energy consumption of wearable devices.
  • one or more installation positions may also be set between the first installation position and the second installation position.
  • the driving device 400 has multiple installation positions, which further improves the adjustment accuracy of the connection belt of the wearable device. .
  • the driving device 400 After the driving device 400 is adjusted to the first installation position or the second installation position, the driving device 400 needs to be fixed in the first installation position or the second installation position, so as to prevent the driving device 400 from moving and affecting the wearing effect of the user.
  • the first installation position and the second installation position may be respectively provided with the second clamping portion 220, and the driving device 400 may be provided with a second matching portion, when the driving device 400 is located at the In the case of one of the first installation position and the second installation position, the second engaging portion 220 is engaged with the second matching portion.
  • the second engaging portion 220 and the second matching portion are snap-fitted, so that the driving device 400 can be prevented from moving, thereby not easily affecting the wearing effect of the user.
  • the force between the second engaging portion 220 and the second matching portion should be greater than the reaction force of the driven device 500 to the driving device 400, so as to prevent the driven device 500 from driving the driving device 400 during the movement move.
  • the second engaging portion 220 is a second protrusion
  • the second matching portion is a second groove
  • at least part of the second protrusion may be located in the second groove and be engaged with the second groove .
  • the structures of the second engaging portion 220 and the second matching portion are simple and easy to operate, thereby reducing the manufacturing cost of the wearable device.
  • the second protrusion may be an arc-shaped protrusion
  • the second groove may be an arc-shaped groove. At this time, the contact surface between the second protrusion and the second groove is smooth, thereby making the second protrusion and the first The frictional force of the two grooves is relatively small, so that the second protrusion can slide into or out of the second groove conveniently.
  • first connecting belt 200 and the second connecting belt 300 need to have a certain hardness, so as to prevent the first connecting belt 200 or the second connecting belt 300 from being too soft and making it difficult to adjust the connecting belts.
  • first connecting belt 200 and the second connecting belt 300 may be made of cortical materials with a certain hardness, and of course other materials, which are not limited herein.
  • the first connecting band 200 may include a first rigid band body segment and a first flexible band body segment, one end of the first flexible band body segment is connected to the first connecting portion, The other end of the first flexible band body segment is connected to the first end of the first rigid band body segment, the first rigid band body segment may be provided with a first inner cavity 201, and the end of the second connecting band 300 facing away from the second connecting portion The second end of the first rigid belt body segment extends into the first inner cavity 201 .
  • the texture of the first flexible belt body is relatively soft, so that the bendability is good, which is convenient for the user to wear, and the rigidity of the first rigid belt body is relatively strong, so that it is not easy to bend, so that the second connection belt 300 is not easy to be bent. It is easy to be clamped by the first connecting belt 200 , thereby making the adjustment of the second connecting belt 300 more convenient.
  • the first rigid belt body segment can be made of a metal material with relatively high hardness, and the first flexible belt body segment can be made of a leather material with better flexibility.
  • the second connecting band 300 may include a second rigid band body segment and a second flexible band body segment, and one end of the second flexible band body segment is connected to the second connecting portion , the other end of the second flexible band body segment is connected with the first end of the second rigid band body segment, and the second end of the second rigid band body segment extends from the end of the first connecting band 200 away from the first connecting part to the in the first lumen 201 .
  • the texture of the second flexible belt body is relatively soft, so that the bendability is good, which is convenient for the user to wear, and the second rigid belt body is relatively rigid, so that it is not easy to bend, so that the second connection belt 300 does not It is easy to accumulate in the first inner cavity 201 , so that it is not easy for the second connecting belt 300 to be stuck in the first inner cavity 201 , thereby making the adjustment of the second connecting belt 300 smoother.
  • the second rigid belt body segment may be made of a metal material with greater hardness, and the second flexible belt body segment may be made of a leather material with better flexibility.
  • the second connecting belt 300 when the second connecting belt 300 is moving, the second connecting belt 300 is easily detached from the first inner cavity 201, thereby causing the first connecting belt 200 and the second connecting belt 300 to fail to cooperate.
  • the end of the first connecting band 200 facing away from the first connecting portion is provided with a first limiting portion
  • the end of the second connecting band 300 facing away from the second connecting portion may be provided with a first limiting portion. Two limiting parts, the first limiting part and the second limiting part are limited and matched in the extending direction of the first connecting band 200 .
  • the first limiting portion and the second limiting portion can prevent the second connecting band 300 from being detached from the first inner cavity 201 , thereby effectively preventing the first connecting band
  • the possible cooperation failure between the 200 and the second connecting band 300 improves the safety and reliability of wearing the wearable device.
  • the first limiting portion may be a first limiting protrusion
  • the second limiting portion may be a second limiting protrusion
  • the first limiting protrusion and the second limiting protrusion may be connected at the first
  • the extension direction of the belt 200 is limited to fit.
  • the wearable devices disclosed in the embodiments of the present application may be devices such as smart watches, smart bracelets, and electronic belts, and the embodiments of the present application do not limit the specific types of wearable devices.

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Abstract

本申请公开了一种可穿戴设备,属于通信设备技术领域。该可穿戴设备包括设备主体、第一连接带、第二连接带、驱动装置和从动装置;所述设备主体具有相背分布的第一连接部和第二连接部;所述第一连接带与所述第一连接部相连,所述第一连接带开设有第一内腔;所述第二连接带与第二连接部相连,所述第二连接带开设有第二内腔;所述驱动装置设置于所述第一内腔中;所述从动装置设置于所述第二内腔中;在所述第一连接带与所述第二连接带相连接的情况下,所述驱动装置可驱动所述从动装置,所述从动装置带动所述第二连接带相对于所述第一连接带运动。

Description

可穿戴设备
交叉引用
本发明要求在2020年11月12日提交中国专利局、申请号为202011261143X、发明名称为“可穿戴设备”的中国专利申请的优先权,该申请的全部内容通过引用结合在本发明中。
技术领域
本申请属于通信设备技术领域,具体涉及一种可穿戴设备。
背景技术
随着可穿戴设备的不断发展,消费者对于可穿戴设备的功能要求越来越高,为了满足消费者的需求,可穿戴设备中集成了更多的功能器件,以使得可穿戴设备具有更多的功能,进而能够提高可穿戴设备的使用性能。
相关技术中,可穿戴设备包括设备主体和两个连接带,两个连接带分别与设备主体相连接,其中,一个连接带上设置有连接凸扣,另一个连接带开设有通孔,通过连接凸扣与通孔之间的尺寸干涉,从而实现两条连接带的连接,进而实现可穿戴设备的佩戴。
在实现本发明创造的过程中,发明人发现相关技术存在如下问题,用户在调节可穿戴设备的连接带的松紧操作时,每次需要先将两个连接带解开,然后将凸扣从其中一个通孔中拔出,再将凸扣插入其他通孔中,此种连接带的调节方式较为繁琐,致使用户调节可穿戴设备的连接带的松紧操作较为复杂,进而使得用户体验较差。
发明内容
本申请实施例的目的是提供一种可穿戴设备,能够解决可穿戴设备的连接带的松紧调节操作复杂的问题。
为了解决上述技术问题,本申请是这样实现的:
本申请实施例提供了一种可穿戴设备,包括:
设备主体;所述设备主体具有相背分布的第一连接部和第二连接部;
第一连接带,所述第一连接带与所述第一连接部相连,所述第一连接带开设有第一内腔;
第二连接带,所述第二连接带与第二连接部相连,所述第二连接带开设有第二内腔;
驱动装置,所述驱动装置设置于所述第一内腔中;
从动装置,所述从动装置设置于所述第二内腔中;
在所述第一连接带与所述第二连接带相连接的情况下,所述驱动装置可驱动所述从动装置,所述从动装置带动所述第二连接带相对于所述第一连接带运动。
在本申请实施例中,驱动装置能够驱动从动装置移动,从动装置能够驱动第二连接带移动,第二连接带相对于第一连接带运动,进而使得第二连接带能够伸出第一内腔之外或者缩回第一内腔之内,从而实现用户对连接带的松紧调节。此方案中,第一连接带和第二连接带调节长度时,无需分离第一连接带和第二连接带,从而简化可穿戴设备的连接带的松紧调节操作步骤,进而使得可穿戴设备的连接带松紧调节操作简单、方便,以改善用户体验。
附图说明
图1是本申请实施例公开的可穿戴设备的结构示意图;
图2和图3是本申请实施例公开的可穿戴设备的连接带的部分结构的示意图;
图4是本申请实施例公开的可穿戴设备中,驱动装置的结构示意图;
图5是本申请实施例公开的可穿戴设备中,另一种驱动装置的结构示意图;
图6是本申请实施例公开的可穿戴设备中,从动装置的结构示意图。
附图标记说明:
100-设备主体、
200-第一连接带、201-第一内腔、210-第一卡接部、220-第二卡接部、
300-第二连接带、301-第二内腔、310-第一配合部、
400-驱动装置、410-第一线圈、420-第二线圈、430-振动体、440第三线圈、450-弹性件、460-第一导线、470-第一支架、
500-从动装置、510-磁性件、520-第二支架、530-第二导线、
610-调节滑轴。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,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,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别 类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”,一般表示前后关联对象是一种“或”的关系。
下面结合附图,通过具体的实施例及其应用场景对本申请实施例提供的可穿戴设备进行详细地说明。
请参考图1~图6,本申请实施例公开一种可穿戴设备,所公开的可穿戴设备包括设备主体100、第一连接带200、第二连接带300、驱动装置400和从动装置500。
设备主体100为可穿戴设备的主体部分,设备主体100包括可穿戴设备的主要功能器件,例如设备壳体、显示屏、主板等。
设备主体100具有相背分布的第一连接部和第二连接部,第一连接部与第一连接带200相连,第一连接部用于实现第一连接带200与设备主体100的连接。第二连接部与第二连接带300相连,第二连接部用于实现第二连接带300与设备主体100的连接。可选地,第一连接部和第二连接部可以为生耳,当然,第一连接部和第二连接部还可以采用其他结构,本文不作限制。
第一连接带200和第二连接带300用于实现可穿戴设备在人体上的佩戴。例如,在可穿戴设备为手表的情况下,第一连接带200和第二连接带300可以为手表带,设备主体100可以为表盘。在本申请实施例中,第一连接带200和第二连接带300的种类可以有多种,例如,第一连接带200和第二连接带300可以是皮质带、金属带等,本申请实施例不限制第一连接带200和第二连接带300的具体种类。
第一连接带200开设有第一内腔201,驱动装置400设置于第一内腔201中。此时,驱动装置400与第一连接带200相连接。第二连接带300开设有第二内腔301,从动装置500设置于第二内腔301中,从动装置500与第二连接带300相连接。在第一连接带200与第二连接带300相连接的情况下,驱动装置400可驱动从动装置500,从而使得从动装置500带动第二连接带300相对于第一连接带200运动。
具体的操作过程中,驱动装置400为从动装置500提供驱动力,驱动装置400驱动从动装置500在第一内腔201中运动,此时,从动装置500与第二连接带300相连接,从而使得从动装置500能够带动第二连接带300运动,进而可实现第二连接带300进出第一内腔201。当第二连接带300朝向第一内腔201内运动时,第一连接带200和第二连接带300的整体长度缩短。当第二连接带300朝向第一内腔201之外运动时,第二连接带300和第一连接带200的整体长度增长。此时,可根据用户的使用情况调节第一连接带200和第二连接带300的松紧程度。
本申请公开的实施例相比于背景技术中的连接带调节方式来说,第一连接带200和第二连接带300调节长度时,无需分离第一连接带200和第二连接带300,从而简化可穿戴设备的连接带的松紧调节操作步骤,进而使得可穿戴设备的连接带松紧调节操作简单、方便,以改善用户体验。
另外,驱动装置400设置于第一内腔201中,从动装置500设置于第二内腔301中,因此驱动装置400和从动装置500不容易外露,从而使得用户不容易对驱动装置400和从动装置500造成损坏,进而提高了可穿戴设备的佩戴时的安全性和可靠性。
此外,驱动装置400和从动装置500不容易外露,用户看到的第一连接 带200和第二连接带300表面光滑平整,没有被破坏,从而提高了电子设备的外观质感,提高用户体验。
可选地,驱动装置400和/或从动装置500可以通过导线与设备主体100电连接,从而可实现对驱动装置400和/或从动装置500的控制以及为驱动装置400和/或从动装置500供电。
本文公开一种驱动装置400和从动装置500的具体结构,当然还可以为其他结构,本文对此不作限制。具体地,驱动装置400与从动装置500中,一者可以有第三线圈440,另一者可以有磁性件510,在第一连接带200与第二连接带300相连接且第三线圈440通电的情况下,第三线圈440可以与磁性件510磁性配合。第三线圈440或磁性件510可以带动第二连接带300相对于第一连接带200运动。
具体地操作过程中,当第三线圈440产生的磁场和磁性件510产生的磁场的极性相同时,第三线圈440和磁性件510之间产生磁斥力,进而驱动第二连接带300朝向第一内腔201之外运动,从而增大第一连接带200和第二连接带300的整体长度,进而使得可穿戴设备的连接带放松。当第三线圈440产生的磁场和磁性件510产生的磁场的极性相反时,第三线圈440和磁性件510之间产生磁吸力,进而驱动第二连接带300朝向第一内腔201之内移动,从而减小第一连接带200和第二连接带300的整体长度,从而使得可穿戴设备的连接带收紧。
此方案中,第三线圈440和磁性件510结构简单、尺寸较小,因此驱动装置400和从动装置500结构简单,进而使得第一内腔201和第二内腔301预留出的安装空间较小,从而可以使得第一连接带200和第二连接带300的尺寸较小,促使用户佩戴方便,进一步改善用户体验。
另外,第二连接带300的运动方向通过第三线圈440内通入的电流的方向控制,因此从动装置500的换向灵活,从而使得可穿戴设备的连接带的松紧调节更加简单,可靠。
当然,第一连接带200和第二连接带300的长度还可以采用其他调节方式,例如,第二连接带300可以采用收卷调节的方式,第二连接带的具体调节方式本文不作限制。
上述的磁性件510可以为永磁铁,也可以为通电线圈,对于磁性件510的具体结构本文不作限制。
可选地,从动装置500还可以包括第二支架520,第二线圈420固定在第二内腔301中,第三线圈440或者磁性件510的其中一者可以设置在第二支架520上。
如图5所示,在另一种可选的实施例中,驱动装置400可以包括第一线圈410、第二线圈420和振动体430,第一线圈410可以固定于第一内腔201中,第二线圈420可以设置于振动体430,也就是说,第二线圈420缠绕在振动体430上。第一线圈410与第二线圈420可以相对设置。
在第一线圈410和第二线圈420均通电的情况下,振动体430可以相对于第一线圈410运动。
具体的操作过程中,在第一线圈410和第二线圈420均通电的情况下,第一线圈410和第二线圈420能够产生相互作用的磁场,在磁场力的作用下,振动体430能够产生相互作用的磁场,在磁场力的作用下,振动体430能够在第一内腔201中进行往复运动,进而实现振动功能。
此方案中,驱动装置400可以带动第一连接带200振动,第一连接带200可以将振动传递至用户,进而实现可穿戴设备的振动功能。例如,可穿戴设 备的来电提醒功能、信息提醒功能等。
此时,可穿戴设备的振动功能可以从原本设备主体100上转移至连接带,从而使得设备主体100内无需预留振动器件的安装位置,进而改善了设备主体100的占用情况,促使设备主体100的厚度较小,进而能够改善用户的使用体验。
另外,振动体430设置于第一连接带200内,第一连接带200与用户接触更加紧密,从而使得用户感受到的振感更加强烈,从而能够起到更好的提醒用户的作用。
可选地,驱动装置400还可以包括第一支架470和弹性件450,第一支架470为驱动装置400的其他组成部件提供安装基础。第一支架470固定安装于第一内腔201中。第一线圈410缠绕在第一支架470上,振动体430通过弹性件450与第一支架470弹性相连。此时振动体430通过弹性件450的弹性支撑处于悬空状态,从而有利于实现弹性振动体430的振动,进而提高振动体430的振动性能。在具体的实施方式中,振动体430可以采用密度较大的金属材料制作,从而提高振动过程中的惯性,达到增强振动效果的目的。例如,振动体430可以是铁块。
弹性件450不但能够起到弹性连接的作用,而且弹性件450还能够在振动体430振动的过程中起到弹性约束振动体430的作用。弹性件450的种类可以有多种,例如,弹性件450可以为弹簧、弹性金属片、橡皮筋等,当然,弹性件450还可以为其他结构,本文不作限制。
另外,通过第一线圈410和第二线圈420的通断电来控制驱动装置400振动,从而使得驱动装置400的零部件较少,控制方式简单,进而能够降低可穿戴设备的制造成本。
如图4所示,在另一种可选的实施例中,驱动装置400可以包括第一线圈410和振动体430,第一线圈410固定于第一内腔201中,第一线圈410与振动体430相对设置,振动体430为永磁铁。
在第一线圈410通电的情况下,振动体430可以相对于第一线圈410运动。此实施例取消了上文实施例提及的第二线圈420,将振动体430采用永磁铁制作。
在第一线圈410通电的情况下,第一线圈410能够产生磁场,第一线圈410的磁场与振动体430的磁场相互作用,从而使得振动体430相对于第一线圈410复运动,进而实现振动功能。
此方案中,振动体430为永磁铁,从而使得驱动装置400的组成部件的数量较少,进而使得驱动装置400的结构较为紧凑,占用第一内腔201的空间较小。
此实施例中的驱动装置400还可以包括第一支架470和弹性件450,第一支架470和弹性件450与振动体430的连接与图5所示的方案相同,因此本文不在赘述。
在另一种可选的实施例中,驱动装置400可以采用如图4或图5中的结构。从动装置500有磁性件510,此时的磁性件510可以为通电线圈。也就是说,上文中的第三线圈440位于驱动装置400,此时,第三线圈440就是上文中的第一线圈410。
在第一连接带200与第二连接带300相连接,且第一线圈410和磁性件510通电以及第二线圈420未通电的情况下,磁性件510能够带动第二连接带300相对于第一连接带200运动,而振动体430不振动。此时,可实现连接带的长度调节。
在第一线圈410和第二线圈420均通电以及磁性件510未通电的情况下,振动体430相对于第一线圈410运动,磁性件510不会发生运动。此时,可实现驱动装置400振动。
上述实施例中,磁性件510为通电线圈,磁性件510磁性的有无可以通过电流控制,因此可穿戴设备的连接带的调节功能和振动功能可以单独启动。或者,用户调节连接带的过程中,为了使得用户能够感受到连接带进行调节动作,可以在连接带的调节功能启动的情况下同时启动振动功能,需要注意的是,连接带调节时,驱动装置400的振动仅为驱动装置400的其中一种振动功能。在连接带不调节的情况下,振动功能也可以单独启动,例如,驱动装置400的振动功能单独启动时,可以实现可穿戴设备的来电提醒功能、信息提醒功能等提醒功能。
可选地,驱动装置400还可以包括有第一导线460,第一线圈410通过第一导线460与设备主体100相连接,从而实现第一线圈410与设备主体100电导通。从动装置500可以设置有第二导线530,当磁性件510为通电线圈时,通电线圈可以通过第二导线530与设备主体100相连接,从而实现通电线圈与设备主体100电导通。
当然,上述实施例中的驱动装置400还可以为图4所示的驱动装置400,对于驱动装置400的具体结构,本文不作限制。
在一种可选的实施方案中,设备主体100内设置有连接带的松紧调节程序,用户可以根据需要启动该程序,以对连接带的松紧程度进行调节。松紧调节程度的启动方法可以为:(1)通过触摸显示屏进入连接带的松紧调节界面。(2)用户触摸显示屏上的控制按键,设备主体100将接收到的调节信息传递至驱动装置400,驱动装置400启动,从而驱动从动装置500带动第二 带体运动,进而实现连接带的松紧调节。
另一种程序启动方法可以为:(1)设备主体100的外表面设置有操作按键,用户多次按压操作按键的情况下,可以进入连接带的松紧调节界面。(2)再通过操作按键对连接带进行松紧调节。
第一连接带200和第二连接带300在调节完成后,需要将第一连接带200和第二连接带300固定,从而防止可穿戴设备在用户佩戴的过程中脱落。为此,在一种可选的实施例中,第一连接带200和第二连接带300中,一者设置有第一卡接部210,另一者设置有第一配合部310,第一配合部310的数量为多个,第一配合部310的数量为多个是指第一配合部310的数量为两个或者两个以上。也就是说,第一卡接部210可以对应多个第一配合部310,第一卡接部210与第一配合部310的其中一个卡接配合。在调节连接带的长度的过程中,第一卡接部210与初始位置的第一配合部310相分离,初始位置是指第二连接带300未调节前,第一卡接部210与第一配合部310相卡接位置。第一卡接部210与目标位置的第一配合部310相卡接,目标位置是指第二连接带300调节后,第一卡接部210与第一配合部310相卡接的位置。此方案中,第二连接带300调节后,第一卡接部210和第一配合部310能够将第一连接带200和第二连接带300相连接,从而防止第一连接带200和第二连接带300发生松动的现象,进而使得可穿戴设备不容易在用户佩戴时脱落。
具体地,第一卡接部210和第一配合部310中,一者可以为第一凸起,另一者可以为第一凹槽,第一凸起的至少部分可以位于第一凹槽内,且第一凸起与第一凹槽卡接,此种方案中,第一凸起和第一凹槽的结构简单,易于操作,进而使得可穿戴设备的制造成本较低。进一步地,第一凸起可以为弧形凸起,第一凹槽可以为弧形凹槽,此时,第一凸起与第一凹槽的接触面光 滑,进而使得第一凸起和第一凹槽的摩擦力较小,从而方便第一凸起滑入或者滑出第一凹槽。
上述实施例中,当第一配合部310为第一凸起时,第一凸起的数量为多个,第一凸起的数量多于第一凹槽的数量。当部分第一凸起位于第一凹槽之外的情况下,第一凸起容易与第一内腔201的侧壁发生干涉,进而影响连接带的长度调节。在另一种可选的实施例中,第一卡接部210为第一凸起,第一配合部310为第一凹槽,此方案中,第一凹槽的数量为多个,第一凸起可以位于第一凹槽内,进而不容易与第一内腔201的侧壁发生干涉,从而不容易影响连接带的调节功能。可选地,第一卡接部210可以设置一个,当然,第一卡接部210还可以设置多个,本文不作限制。
为了满足不同用户的佩戴需求,在一种可选的实施例中,本申请实施例公开的可穿戴设备还可以包括调节组件,第一内腔201具有第一安装位置和第二安装位置,第一安装位置和第二安装位置沿第一连接带200的延伸方向间隔分布,调节组件驱动驱动装置400在第一安装位置和第二安装位置之间运动。此方案中,根据不同用户的佩戴需要,可以对第一连接带200和第二连接带300的长度进行预调节。例如,第一安装位置可以在距离第一连接部较近的位置,第二安装位置可以在距离第一连接部较远的位置。此时,当用户的手腕较大时,驱动装置400可以设置于第二安装位置处;当用户的手腕较小时,驱动装置400可以设置于第一安装位置处。
此方案中,可以先对驱动装置400的位置进行调节,再驱动从动装置500调节第二连接带300,进而可以提高连接带的调节效率。
另外,当预调节完成后,还可以通过从动装置500对第二连接带300进行细调,从而能够提高连接带的调节精度,进一步改善用户体验。
在另一种可选的方案中,第一内腔201中可以设置有导轨,导轨的延伸方向与第一连接带200的延伸方向相同,导轨与驱动装置400滑动连接。此方案中,驱动装置400可以在导轨上滑动,从而能够提高驱动装置400的移动精度。
上述实施例中,调节组件设置有第四线圈,驱动装置400上可以设置与第四线圈相匹配的第五线圈,在第四线圈和第五线圈均通电的情况下,第四线圈和第五线圈可产生相互作用的磁场,进而可实现驱动装置400的移动。但是,此种实施方式容易造成可穿戴设备的能耗增加,进而使得可穿戴设备耗电量较大。
为此,本申请公开一种调节组件的具体结构,当然还可以采用其他结构,本文对此不作限制。具体地,调节组件可以包括调节滑轴610,第一连接带200可以开设有与第一内腔201相连通的滑槽,滑槽的延伸方向与第一连接带200的延伸方向相同,调节滑轴610与滑槽滑动相连,调节滑轴610的部分通过滑槽伸入至第一内腔201,且与驱动装置400相连,调节滑轴610的另一部分外露于第一连接带200的外表面,从而方便用户进行操作。调节滑轴610可以带动驱动装置400在第一安装位置和第二安装位置之间运动。此时,用户可以驱动调节滑轴610在滑槽内移动,进而带动驱动装置400运动。
此方案中,用户通过驱动调节滑轴610移动,从而驱动驱动装置400移动,此时,驱动装置400移动的过程中,仅通过用户施加外力即可完成,因此不存在耗电的问题,从而能够降低可穿戴设备的能耗。
进一步地,第一安装位置和第二安装位置之间还可以设置有一个或多个安装位置,此时,驱动装置400具有多个安装位置,进一提高了可穿戴设备的连接带的调节精度。
驱动装置400在调节至第一安装位置或第二安装位置后,需要将驱动装置400固定在该第一安装位置或第二安装位置,从而防止驱动装置400移动,影响用户佩戴的效果。为此,在另一种可选的实施例中,第一安装位置和第二安装位置可以分别设置有第二卡接部220,驱动装置400可以设置有第二配合部,在驱动装置400位于第一安装位置和第二安装位置中的一者的情况下,第二卡接部220与第二配合部相卡接。此方案中,第二卡接部220和第二配合部卡接配合,从而可以防止驱动装置400移动,进而不容易影响用户佩戴的效果。
需要注意的是,第二卡接部220与第二配合部之间的作用力应该大于从动装置500对驱动装置400的反作用力,从而防止从动装置500在移动的过程中带动驱动装置400移动。
可选地,第二卡接部220为第二凸起,第二配合部为第二凹槽,第二凸起的至少部分可以位于第二凹槽内,且与第二凹槽相卡接。此方案中,第二卡接部220和第二配合部的结构简单,易于操作,进而使得可穿戴设备的制造成本较低。进一步地,第二凸起可以为弧形凸起,第二凹槽可以为弧形凹槽,此时,第二凸起与第二凹槽的接触面光滑,进而使得第二凸起和第二凹槽的摩擦力较小,从而方便第二凸起滑入或者滑出第二凹槽。
需要注意的是,第一连接带200和第二连接带300需要具有一定的硬度,从而防止第一连接带200或第二连接带300过于柔软,造成连接带难以调节。例如,第一连接带200和第二连接带300可以采用具有一定硬度的皮质材料制作,当然也可以采用其他材料制作,本文不作限制。
当第一连接带200柔性较大时,第一连接带200容易发生弯曲,从而使得第一连接带200容易夹住第二连接带300,进而使得第二连接带300难以 运动,致使连接带难以调节。为此,在一种可选的实施例中,第一连接带200可以包括第一刚性带体段和第一柔性带体段,第一柔性带体段的一端与第一连接部相连接,第一柔性带体段的另一端与第一刚性带体段的第一端相连接,第一刚性带体段可以开设有第一内腔201,第二连接带300背离第二连接部的一端自第一刚性带体段的第二端伸入至第一内腔201中。
此方案中,第一柔性带体段质地较为柔软,从而弯曲性较好,进而可以方便用户佩戴,第一刚性带体段刚性较强,从而不容易发生弯曲,进而使得第二连接带300不容易被第一连接带200夹住,进而使得第二连接带300调节更加方便。可选地,第一刚性带体段可以采用硬度较大的金属材料制作,第一柔性带体段可以采用柔性较好的皮质材料制作。
当第二连接带300柔性较大时,第二连接带300容易发生弯曲,从而容易造成第二连接带300在第一内腔201中堆积,进而造成连接带难以调节。为此,在另一种可选的实施例中,第二连接带300可以包括第二刚性带体段和第二柔性带体段,第二柔性带体段的一端与第二连接部相连接,第二柔性带体段的另一端与第二刚性带体段的第一端相连接,第二刚性带体段的第二端自第一连接带200背离第一连接部的一端伸入至第一内腔201中。此方案中,第二柔性带体段质地较为柔软,从而弯曲性较好,进而可以方便用户佩戴,第二刚性带体段刚性较强,从而不容易发生弯曲,进而使得第二连接带300不容易在第一内腔201中堆积,进而不容易使得第二连接带300卡在第一内腔201中,进而使得第二连接带300调节时更加顺畅。可选地,第二刚性带体段可以采用硬度较大的金属材料制作,第二柔性带体段可以采用柔性较好的皮质材料制作。
上述实施例中,当第二连接带300在移动的过程中,第二连接带300容 易从第一内腔201中脱离,进而造成第一连接带200与第二连接带300配合失效。为此,在另一种可选的实施例中,第一连接带200背离第一连接部的一端设置有第一限位部,第二连接带300背离第二连接部的一端可以设置有第二限位部,第一限位部和第二限位部在第一连接带200的延伸方向限位配合。此方案中,当第二连接带300移动的过程中,第一限位部和第二限位部能够阻碍第二连接带300从第一内腔201中脱离,进而能够有效防止第一连接带200和第二连接带300可能存在的配合失效,进而提高了可穿戴设备佩戴的安全性和可靠性。可选地,第一限位部可以是第一限位凸起,第二限位部可以为第二限位凸起,第一限位凸起和第二限位凸起可以在第一连接带200的延伸方向限位配合。
本申请实施例公开的可穿戴设备可以是智能手表、智能手环、电子皮带等设备,本申请实施例不限制可穿戴设备的具体种类。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。

Claims (12)

  1. 一种可穿戴设备,其中,包括:
    设备主体(100),所述设备主体(100)具有相背分布的第一连接部和第二连接部;
    第一连接带(200),所述第一连接带(200)与所述第一连接部相连,所述第一连接带(200)开设有第一内腔(201);
    第二连接带(300),所述第二连接带(300)与第二连接部相连,所述第二连接带(300)开设有第二内腔(301);
    驱动装置(400),所述驱动装置(400)设置于所述第一内腔(201)中;
    从动装置(500),所述从动装置(500)设置于所述第二内腔(301)中;
    在所述第一连接带(200)与所述第二连接带(300)相连接的情况下,所述驱动装置(400)可驱动所述从动装置(500),所述从动装置(500)带动所述第二连接带(300)相对于所述第一连接带(200)运动。
  2. 根据权利要求1所述的可穿戴设备,其中,所述驱动装置(400)包括第一线圈(410)、第二线圈(420)和振动体(430),所述第一线圈(410)固定于所述第一内腔(201)中,所述第二线圈(420)设置于所述振动体(430),所述第一线圈(410)与所述第二线圈(420)相对设置;
    在所述第一线圈(410)和所述第二线圈(420)均通电的情况下,所述振动体(430)相对于所述第一线圈(410)运动。
  3. 根据权利要求1所述的可穿戴设备,其中,所述驱动装置(400)包括第一线圈(410)和振动体(430),所述第一线圈(410)固定于所述第一内腔(201)中,所述第一线圈(410)与所述振动体(430)相对设置,所述振动体(430)为永磁铁;
    在所述第一线圈(410)通电的情况下,所述振动体(430)相对于所述第一线圈(410)运动。
  4. 根据权利要求1所述的可穿戴设备,其中,所述驱动装置(400)与所述从动装置(500)中,一者有第三线圈(440),另一者有磁性件(510),在所述第一连接带(200)与所述第二连接带(300)相连接且第三线圈(440)通电的情况下,所述第三线圈(440)与所述磁性件(510)磁性配合,所述第三线圈(440)或所述磁性件(510)带动所述第二连接带(300)相对于所述第一连接带(200)运动。
  5. 根据权利要求1所述的可穿戴设备,其中,所述第一连接带(200)和所述第二连接带(300)中,一者设置有第一卡接部(210),另一者设置有第一配合部(310),所述第一配合部(310)的数量为多个,所述第一卡接部(210)与所述第一配合部(310)的其中一个卡接配合。
  6. 根据权利要求5所述的可穿戴设备,其中,所述第一卡接部(210)为第一凸起,所述第一配合部(310)为第一凹槽,所述第一凸起的至少部分位于所述第一凹槽内,且所述第一凸起与所述第一凹槽卡接。
  7. 根据权利要求1所述的可穿戴设备,其中,所述可穿戴设备还包括调节组件,所述第一内腔(201)具有第一安装位置和第二安装位置,所述第一安装位置和所述第二安装位置沿所述第一连接带(200)的延伸方向间隔分布,所述调节组件驱动所述驱动装置(400)在所述第一安装装置和所述第二安装装置之间运动。
  8. 根据权利要求7所述的可穿戴设备,其中,所述调节组件包括调节滑轴(610),所述第一连接带(200)开设有与所述第一内腔(201)相连通的滑槽,所述滑槽的延伸方向与所述第一连接带(200)的延伸方向相同,所述调节滑轴(610)与所述滑槽滑动相连,所述调节滑轴(610)的部分通过所述滑槽伸入至所述第一内腔(201),且与所述驱动装置(400)相连,所述调节滑轴(610)带动所述驱动装置(400)在所述第一安装位置和所述第二安装位置之间运动。
  9. 根据权利要求7所述的可穿戴设备,其中,所述第一安装位置和所述第二安装位置分别设置有第二卡接部(220),所述驱动装置(400)设置有第二配合部,在所述驱动装置位于所述第一安装位置和所述第二安装位置中的一者的情况下,所述第二卡接部(220)与所述第二配合部相卡接。
  10. 根据权利要求9所述的可穿戴设备,其中,所述第二卡接部(220)为第二凸起,所述第二配合部为第二凹槽,所述第二凸起的至少部分位于所述第二凹槽内,且与所述第二凹槽相卡接。
  11. 根据权利要求1所述的可穿戴设备,其中,所述第一连接带(200)包括第一刚性带体段和第一柔性带体段,所述第一柔性带体段的一端与所述第一连接部相连接,所述第一柔性带体段的另一端与所述第一刚性带体段的第一端相连接,所述第一刚性带体段开设有所述第一内腔(201),所述第二连接带(300)背离所述第二连接部的一端自所述第一刚性带体段的第二端伸入至所述第一内腔(201)中;和/或,
    所述第二连接带(300)包括第二刚性带体段和第二柔性带体段,所述第二柔性带体段的一端与所述第二连接部相连接,所述第二柔性带体段的另一端与所述第二刚性带体段的第一端相连接,所述第二刚性带体段的第二端自所述第一连接带(200)背离所述第一连接部的一端伸入至所述第一内腔(201)中。
  12. 根据权利要求1所述的可穿戴设备,其中,所述第一连接带(200)背离所述第一连接部的一端设置有第一限位部,所述第二连接带(300)背离所述第二连接部的一端设置有第二限位部,所述第一限位部和所述第二限位部在所述第一连接带(200)的延伸方向限位配合。
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