WO2016008247A1 - 可穿戴式设备及其制造方法 - Google Patents

可穿戴式设备及其制造方法 Download PDF

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Publication number
WO2016008247A1
WO2016008247A1 PCT/CN2014/091761 CN2014091761W WO2016008247A1 WO 2016008247 A1 WO2016008247 A1 WO 2016008247A1 CN 2014091761 W CN2014091761 W CN 2014091761W WO 2016008247 A1 WO2016008247 A1 WO 2016008247A1
Authority
WO
WIPO (PCT)
Prior art keywords
face shell
wristband
wearable device
main body
bottom case
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2014/091761
Other languages
English (en)
French (fr)
Inventor
张翼
夏勇峰
李宁宁
王涛
张炼
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xiaomi Inc
Original Assignee
Xiaomi Inc
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 Xiaomi Inc filed Critical Xiaomi Inc
Priority to BR112015002968A priority Critical patent/BR112015002968A2/pt
Priority to MX2015001067A priority patent/MX350669B/es
Priority to JP2016533816A priority patent/JP6130604B2/ja
Priority to RU2015102202/12A priority patent/RU2605895C2/ru
Priority to KR1020157001054A priority patent/KR20160020392A/ko
Priority to US14/662,728 priority patent/US9615791B2/en
Publication of WO2016008247A1 publication Critical patent/WO2016008247A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1656Details related to functional adaptations of the enclosure, e.g. to provide protection against EMI, shock, water, or to host detachable peripherals like a mouse or removable expansions units like PCMCIA cards, or to provide access to internal components for maintenance or to removable storage supports like CDs or DVDs, or to mechanically mount accessories
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • A61B5/681Wristwatch-type devices
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/163Wearable computers, e.g. on a belt
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1635Details related to the integration of battery packs and other power supplies such as fuel cells or integrated AC adapter
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1684Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675
    • G06F1/1698Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675 the I/O peripheral being a sending/receiving arrangement to establish a cordless communication link, e.g. radio or infrared link, integrated cellular phone
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or discharging batteries or for supplying loads from batteries
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J2105/00Networks for supplying or distributing electric power characterised by their spatial reach or by the load
    • H02J2105/40Networks for supplying or distributing electric power characterised by their spatial reach or by the load characterised by the loads connecting to the networks or being supplied by the networks
    • H02J2105/46Medical devices, medical implants or life supporting devices

Definitions

  • the present disclosure relates to the field of smart wear technology, and in particular, to a wearable device and a method of fabricating the same.
  • the bracelet is an ornament that people really like to wear, and it can be a good decoration.
  • people's functional requirements for bracelets are getting higher and higher.
  • the wristband has a built-in sensor, and the user's health data can be collected when the user wears the wristband, and then the user can pass the health data through a USB (Universal Serial Bus) data line. Transfer to other devices for viewing and analysis.
  • USB Universal Serial Bus
  • the disclosed person finds that the above method has at least the following drawbacks: the above-mentioned wristband needs to be provided with a USB interface, but since the wristband is usually worn on the user's arm, there is a great probability that it is covered by the liquid. Causes the bracelet to malfunction frequently.
  • the embodiment of the present disclosure provides a A wearable device and a manufacturing method thereof, the technical solution is as follows:
  • a body of a wearable device comprising:
  • the face shell and the bottom case are butt-joined, and the face shell and the bottom case are enclosed to form a waterproof cavity;
  • the electronic component is disposed in the cavity
  • the electronic component includes a printed circuit board PCB and a battery, and the printed circuit board PCB is electrically connected to the battery, and the printed circuit board PCB is provided with a wireless data transceiver component and at least one sensor;
  • Two charging contacts are formed on the outer side of the bottom case, and the charging contacts are electrically connected to the electronic component.
  • the body further includes a face shell decoration member
  • the face shell includes a partially transparent or fully transparent outer surface
  • the electronic component further includes at least one indicator light electrically connected to the PCB, the indicator light being disposed in a side of the cavity near a side of the outer casing;
  • the cover garnish is disposed on the outward side of the outer casing, and the cover garnish is provided with at least one light transmissive area corresponding to the indicator light.
  • the face shell decoration piece is a metal decoration piece, and each of the light transmission areas includes n micro holes that are evenly arranged through the upper and lower surfaces of the metal decoration piece, and the light holes are provided with light-transmissive fillers.
  • the face shell garnish is formed with a laser-cured hot-melt adhesive pattern on a surface of the face shell, and the face shell garnish and the outer surface of the face shell are glued by hot melt adhesive. connection.
  • a through hole for testing waterproofness is formed on the surface shell, and a waterproof sealing sticker is attached to the through hole.
  • an outer surface of the face shell protrudes from a joint edge of the bottom case.
  • the electronic component further includes a vibration motor electrically connected to the printed circuit board PCB and the battery, respectively.
  • a wearable device comprising a body and a flexible wristband for accommodating the body, the body being any of the first aspect main body;
  • the flexible wristband includes a wristband body and a wristband buckle
  • the central portion of the main body of the wristband is provided with a receiving slot for receiving the main body of the wearable device
  • the wristband main body extends along the two ends of the accommodating groove to form a first wristband portion and a second wristband portion;
  • the first wristband portion is provided with at least one fixing hole, and the end of the first wristband portion is provided with an annular structure for passing the second wristband portion;
  • the second wristband portion is provided with a fastening hole
  • the wrist strap buckle is embedded in the buckle hole, and the wrist strap buckle is used to embed the first wristband portion when the end of the second wristband portion passes through the annular structure
  • the first wristband portion and the second wristband portion are fixedly connected to the fixing hole.
  • a wearable device comprising a body and a charging wire for charging the body, the body being any of the subjects described in the first aspect ;
  • the charging line includes a main body receiving end and a charging end;
  • the main body receiving end is formed with a half cavity for receiving a main body of the wearable device, and two charging terminals are formed on an inner surface of the half cavity, and the two charging terminals are used for the wearable When the main body of the device is inserted into the half cavity, it is electrically connected to two charging contacts of the main body;
  • the two charging terminals of the main body receiving end are electrically connected to the charging end;
  • the charging end is at least one of a universal serial bus USB interface, a mini universal serial bus MiniUSB interface, a micro universal serial bus MicroUSB interface, a 30-pin pin interface, and a power adapter.
  • a device manufacturing method for manufacturing any of the wearable device bodies of the first aspect comprising:
  • the face shell and the bottom case of a polycarbonate PC material are obtained by hot press forming;
  • the cavity formed by enclosing the face shell and the bottom case is tested for water repellency.
  • the waterproofing test is performed on the cavity formed by enclosing the face shell and the bottom case, including:
  • the through hole is sealed using a waterproof seal when the waterproof test is passed.
  • the method further includes:
  • the face shell trim is attached to the outer shell surface of the face shell.
  • processing the metal sheet into a decorative part of the shell comprising:
  • the side edges of the rounded rectangular piece are subjected to a high-brightness polishing treatment, and subjected to secondary oxidation treatment after polishing;
  • the facing the decorative part of the face shell on the outer surface of the face shell comprises:
  • the face shell trim is glued to the outer shell surface of the face shell by hot melt glue.
  • the related art needs to be provided with a USB interface, but since the wristband is usually worn on the user's arm, there is a high probability of being liquid. Coverage, which causes the problem of frequent failure of the bracelet; it achieves the effect that the user can still use the wearable device in a humid environment or when it needs to contact water.
  • FIG. 1 is an exploded view of a structure of a body of a wearable device, according to an exemplary embodiment
  • FIG. 2 is a structural exploded view of a body of a wearable device, according to another exemplary embodiment
  • FIG. 3 is a schematic structural diagram of a wearable device according to another exemplary embodiment
  • FIG. 4 is a schematic structural diagram of a wearable device according to another exemplary embodiment
  • FIG. 5 is a flow chart showing a method of manufacturing a wearable device body according to another exemplary embodiment
  • FIG. 6 is a flow chart showing a method of manufacturing a wearable device body according to another exemplary embodiment.
  • FIG. 1 is an exploded view of a structure of a body of a wearable device including a face shell 110, a bottom case 130, and an electronic component 150, according to an exemplary embodiment.
  • the face shell 110 and the bottom case 130 are butted up and down, and the face shell 110 and the bottom case 130 are enclosed to form a waterproof cavity.
  • the electronic component 150 is disposed within the cavity.
  • the electronic component 150 includes a PCB (Printed Circuit Board) 151 and a battery 152.
  • the PCB 151 and the battery 152 are electrically connected.
  • the PCB 151 is provided with a wireless data transceiving component and at least one sensor.
  • Two charging contacts 131 are formed on the outer side of the bottom case 130, and the charging contacts 131 are electrically connected to the electronic component 150.
  • the main body of the wearable device provided in this embodiment solves the problem that a USB interface needs to be provided in the related art by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but
  • the ring is usually worn on the user's arm and has a high probability of being covered by the liquid, causing the bracelet to malfunction frequently; it can be used normally in a humid environment or when it needs to be in contact with water, wearing a wearable device. Effect.
  • FIG. 2 is a structural exploded view of a main body of a wearable device, the main body of the wearable device includes a face shell 110, a bottom case 130, and an electronic component 150, according to an exemplary embodiment;
  • the face shell 110 and the bottom case 130 are butted up and down, and the face shell 110 and the bottom case 130 are enclosed to form a waterproof cavity.
  • the electronic component is disposed within the cavity.
  • the electronic component 150 includes a PCB 151 and a battery 152.
  • the PCB 151 and the battery 152 are electrically connected.
  • the PCB 151 is provided with a wireless data transceiving component and at least one sensor. There are also two mating contacts 153 on the electronic component 150.
  • Two charging contacts 131 are formed on the outer side of the bottom case 130.
  • the charging contacts 131 are electrically connected to the electronic component 150, that is, electrically connected to the mating contacts 153.
  • the body further includes a face shell trim 120.
  • the face shell 110 includes a partially transparent or fully transparent outer surface 111.
  • the electronic component 150 further includes at least one indicator light 154 electrically connected to the PCB 151, the indicator light 155 being disposed in the cavity on a side close to the outer surface 111.
  • the cover garnish 120 is disposed on the outward side of the outer surface 111, and the corresponding indicator 154 on the cover garnish 120 is provided with at least one transparent area 121.
  • the indicator light 153 disposed on the side close to the outer surface 111 of the cavity is directed to the light-transmitting region 121, that is, the light-emitting line of the indicator light 154 can be transmitted through the transparent portion 121 through the transparent portion of the outer surface 111.
  • the face shell decoration member 120 is a metal decoration member, and each of the light transmission regions 121 includes n micro holes that are evenly arranged through the upper and lower surfaces of the metal decoration member, and the light holes are provided in the micro holes, and the light transmission is filled.
  • the material may be a UV (Ultraviolet Rays) glue.
  • the light-transmitting region is a circular region having a diameter of 2.5 mm, and the circular region has 170 micropores having a diameter of 0.07 mm.
  • the face shell garnish 120 is formed with a laser-cured hot-melt adhesive pattern on the surface of the face shell 110, and the face shell garnish 120 and the outer surface of the face shell 110 are bonded by hot melt adhesive.
  • This embodiment does not limit the specific shape of the hot-melt adhesive pattern.
  • a through hole 112 for testing waterproofness is formed on the surface shell 110, and a waterproof sealing sticker 113 is attached to the through hole.
  • the outer surface 111 of the face shell 110 protrudes from the joint edge 132 of the bottom case 130 .
  • the electronic component 150 further includes a vibration motor 155 electrically connected to the PCB 151 and the battery 152, respectively.
  • the main body of the wearable device provided in this embodiment solves the problem that a USB interface needs to be provided in the related art by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but
  • the ring is usually worn on the user's arm and has a high probability of being covered by the liquid, causing the bracelet to malfunction frequently; it can be used normally in a humid environment or when it needs to be in contact with water, wearing a wearable device. Effect.
  • FIG. 3 is a schematic structural view of a wearable device including a main body and a flexible wristband for accommodating the main body, according to an exemplary embodiment. among them:
  • the body can be the body of any of the wearable devices mentioned in the embodiment shown in Figure 1 or Figure 2.
  • the flexible wristband 300 includes a wristband body 310 and a wristband buckle 320.
  • the central portion of the wristband main body 310 is provided with a receiving slot 311 for receiving the main body of the wearable device.
  • the wristband main body 310 extends along the two ends of the accommodating groove 311 to form a first wristband portion 312 and a second wristband portion 313, respectively.
  • the first wristband portion 312 is provided with at least one fixing hole 312a, and the end of the first wristband portion 312 is provided with an annular structure 312b for passing the second wristband portion 313.
  • the second wristband portion 313 is provided with a fastening hole 313a.
  • the wrist strap buckle 320 is embedded in the buckle hole 313a.
  • the wrist strap buckle 320 is used to be inserted into the fixing hole 312a of the first wristband portion 312 when the end of the second wristband portion 313 passes through the annular structure 312b.
  • the first wristband portion 312 and the second wristband portion 313 are fixedly coupled.
  • the wearable device provided in this embodiment solves the need in the related art to provide a USB interface by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but since the wristband is usually Wearing on the user's arm, there is a high probability of being covered by liquid, causing the problem of frequent failure of the bracelet; achieving the effect that the user can still use and wear the wearable device in a humid environment or when it needs to contact water. .
  • the flexible wristband for accommodating the main body prevents the charging contact from being exposed by accommodating the main body into the accommodating groove; and the wearable device can be worn by the wristband main body to Related parts.
  • FIG. 4 is a schematic structural diagram of a wearable device including a main body and a charging line for charging a main body according to an exemplary embodiment. among them:
  • the body can be the body of any of the wearable devices mentioned in the embodiment shown in Figure 1 or Figure 2.
  • the charging line 400 includes a main body receiving end 410 and a charging end 420.
  • the main body receiving end 410 is formed with a half cavity for accommodating the main body of the wearable device, and two charging terminals 411 are formed on the inner surface of the half cavity, and the two charging terminals 411 are used for inserting the main body of the wearable device. In the case of a half cavity, it is electrically connected to the two charging contacts 131 of the main body.
  • the two charging terminals 411 of the main body receiving end 410 are electrically connected to the charging end 420.
  • the charging terminal 420 is at least a USB interface, a MiniUSB (Mini Universal Serial Bus) interface, a MicroUSB (Micro Universal Serial Bus) interface, a 30-pin (30-pin) interface, and a power adapter.
  • MiniUSB Mini Universal Serial Bus
  • MicroUSB Micro Universal Serial Bus
  • 30-pin 30-pin
  • power adapter One.
  • This embodiment takes the charging end 420 as a USB interface as an example.
  • the wearable device provided in this embodiment solves the need in the related art to provide a USB interface by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but since the wristband is usually Wearing on the user's arm, there is a high probability of being covered by liquid, causing the problem of frequent failure of the bracelet; achieving the effect that the user can still use and wear the wearable device in a humid environment or when it needs to contact water. .
  • the charging line for charging the main body can be configured to charge the main body of the wearable device, and the charging line can use various ports to perform the main body on the main body through various charging ends. Charging.
  • FIG. 5 is a flowchart of a method of manufacturing a wearable device body for manufacturing a body of any of the wearable devices in the embodiment shown in FIG. 1 or FIG. 2, according to an exemplary embodiment. , the method includes:
  • step 501 a face shell and a bottom shell of a PC (Polycarbonate, polycarbonate) material are obtained by hot press forming.
  • PC Polycarbonate, polycarbonate
  • Step 502 placing the electronic component in a cavity formed by enclosing the face shell and the bottom case, and electrically connecting the electronic component to the two charging contacts on the bottom case.
  • Step 503 the cavity formed by enclosing the face shell and the bottom case is waterproof sealed.
  • step 504 the cavity formed by enclosing the face shell and the bottom case is tested for water repellency.
  • the method for manufacturing a wearable device solves the problem that a USB interface needs to be provided in the related art by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but
  • the bracelet is usually worn on the user's arm and has a high probability of being covered by liquid, which causes the bracelet to malfunction frequently. It can be used normally when the user can wet or need to touch the water, wearing wearable The effect of the device.
  • FIG. 6 is a flow chart showing a method of manufacturing a wearable device body for manufacturing a body of any of the wearable devices in the embodiment shown in FIG. 1 or FIG. 2, according to an exemplary embodiment. , the method includes:
  • Step 601 obtaining a surface shell and a bottom shell of a PC material by hot press forming
  • the face shell includes a rounded rectangular outer surface and a shell edge extending from the edge of the outer surface in a direction perpendicular to the outer surface, the outer surface being transparent, the outer surface being partially transparent or completely transparent.
  • Step 602 placing the electronic component in a cavity formed by enclosing the face shell and the bottom case, and electrically connecting the electronic component to the two charging contacts on the bottom case;
  • the electronic component is provided with two charging contacts, which are in contact with the inner extending portions of the two charging contacts on the outer side of the bottom case, and the electronic component can be provided with a PCB, an electric motor, a battery, an indicator light, a wireless data transceiving component and at least one Kind of sensor.
  • Step 603 the cavity formed by enclosing the face shell and the bottom shell is waterproofly sealed
  • the cavity may be waterproof sealed using a sealing method such as an O-ring seal.
  • Step 604 performing a waterproof test on a cavity formed by enclosing the face shell and the bottom case
  • This step can be divided into the following three sub-steps:
  • the cavity is subjected to a gas pressure test by gas pressure through the through hole, that is, whether the test passes according to the pressure loss.
  • Step 605 processing the metal sheet into a decorative part of the shell
  • This step can be divided into the following eight substeps:
  • the metal sheet is processed into a rounded rectangular piece by press forming, and the metal plate may be an aluminum alloy.
  • the outer surface of the rounded rectangular piece is polished, sandblasted and oxidized.
  • the side edges of the rounded rectangular piece are subjected to high-brightness polishing treatment, and subjected to secondary oxidation treatment after polishing.
  • the light-transmissive area of the rounded rectangular piece is subjected to a milling process, and the light-transmitting area is directly below the indicator light located below the transparent area of the outer surface.
  • a predetermined number of micropores are drilled in each of the light-transmitting regions, and micro-perforation can be performed using a laser.
  • the UV glue is injected into the micropores.
  • the micro-holes are irradiated with UV glue in the ultraviolet curing micropores.
  • step 606 the face shell trim is attached to the outer shell surface of the face shell.
  • This step can be divided into the following two substeps:
  • the hot-melt adhesive pattern is carved out on the surface of the face-shell decoration member facing the face shell.
  • the face shell decorative piece is glued to the outer surface of the face shell by hot melt glue.
  • the method for manufacturing a wearable device solves the problem that a USB interface needs to be provided in the related art by providing a waterproof inner cavity including a wireless data transceiver component in the wearable device, but
  • the bracelet is usually worn on the user's arm and has a high probability of being covered by liquid, which causes the bracelet to malfunction frequently. It can be used normally when the user can wet or need to touch the water, wearing wearable The effect of the device.
  • the manufacturing method increases the light transmittance of the light-transmissive area of the rounded rectangular piece by milling the light-transmissive area of the rounded rectangular piece, so that the indicator light can work at a lower brightness. In order to reduce the energy consumption of the indicator light.
  • the manufacturing method increases the bonding strength between the face decoration member and the face shell by laser engraving the hot-melt adhesive pattern on the surface of the face shell decorative member facing the face shell.

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  • Casings For Electric Apparatus (AREA)
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  • Measuring And Recording Apparatus For Diagnosis (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
  • Battery Mounting, Suspending (AREA)

Abstract

一种可穿戴式设备及其制造方法,属于智能穿戴技术领域。该可穿戴式设备包括:面壳(110)、底壳(130)和电子部件(150);该面壳(110)和底壳(130)上下对接,且面壳(110)和底壳(130)围合形成一防水性空腔;该电子部件(150)设置于该空腔内;该电子部件(150)包括印制电路板(151)和电池(152),该印制电路板(151)上设置有无线数据收发组件和至少一种传感器。该可穿戴设备中设置一包含无线数据收发组件的防水空腔,解决了相关技术中需要设置有USB接口,导致手环经常发生故障的问题,达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。

Description

可穿戴式设备及其制造方法
本申请基于申请号为201410345261.7、申请日为2014/7/18的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本公开涉及智能穿戴技术领域,特别涉及一种可穿戴式设备及其制造方法。
背景技术
手环是一种人们非常喜欢佩戴的装饰品,它能够起到很好的装饰作用。但随着科技的迅速发展,人们对于手环的功能性要求也越来越高。
相关技术中有一种手环,该手环内置有传感器,可以在用户佩戴该手环时采集用户的健康数据,之后用户可以将该健康数据通过USB(Universal Serial Bus,通用串行总线)数据线传输至其他设备进行查看和分析。
公开人在实现本公开的过程中,发现上述方式至少存在如下缺陷:上述手环上需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障。
发明内容
为了解决相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题,本公开实施例提供了一种可穿戴式设备及其制造方法,所述技术方案如下:
根据本公开实施例的第一方面,提供一种可穿戴式设备的主体,所述主体包括:
面壳、底壳和电子部件;
所述面壳和所述底壳上下对接,且所述面壳和所述底壳围合形成一防水性空腔;
所述电子部件设置于所述空腔内;
所述电子部件包括印制电路板PCB和电池,所述印制电路板PCB和所述电池电性相连,所述印制电路板PCB上设置有无线数据收发组件和至少一种传感器;
所述底壳外侧形成有两个充电触点,所述充电触点与所述电子部件电性相连。
可选的,所述主体还包括面壳装饰件;
所述面壳包括一局部透明或全部透明的外壳面;
所述电子部件还包括与所述PCB电性相连的至少一个指示灯,所述指示灯在所述空腔内设置在靠近所述外壳面的一侧;
所述面壳装饰件贴合设置在所述外壳面朝外一侧,所述面壳装饰件上对应所述指示灯设置有至少一个透光区域。
可选的,所述面壳装饰件为金属装饰件,每个透光区域包括贯穿所述金属装饰件上下表面且均匀排列的n个微孔,所述微孔中设置有透光填充物。
可选的,所述面壳装饰件朝向所述面壳的表面上形成有镭雕的热熔粘胶纹路,所述面壳装饰件与所述面壳的外表面之间通过热熔胶胶合连接。
可选的,所述面壳上形成有一用于测试防水性的通孔,所述通孔上贴有防水密封贴。
可选的,所述面壳与所述底壳接合后,所述面壳的外壳面突出于所述底壳的接合边缘。
可选的,所述电子部件还包括振动马达,所述振动马达分别和所述印制电路板PCB、所述电池电性相连。
根据本公开实施例的第二方面,提供一种可穿戴式设备,所述可穿戴式设备包括主体和用于容纳所述主体的柔性腕带,所述主体为第一方面所述的任一主体;
所述柔性腕带包括腕带主体和腕带扣钉;
所述腕带主体的中心部分设置一容置槽,所述容置槽用于收容所述可穿戴式设备的主体;
所述腕带主体沿所述容置槽的两端分别延伸形成有第一腕带部和第二腕带部;
所述第一腕带部上设置有至少一个固定孔,所述第一腕带部的末端设置有一个用于使所述第二腕带部穿过的环状结构;
所述第二腕带部上设置有一个扣钉孔;
所述腕带扣钉嵌于所述扣钉孔中,所述腕带扣钉用于在所述第二腕带部的末端穿过所述环状结构时,嵌入所述第一腕带部的所述固定孔中将所述第一腕带部和第二腕带部固定连接。
根据本公开的第三方面,还提供了一种可穿戴式设备,所述可穿戴设备包括主体和用于为所述主体充电的充电线,所述主体为第一方面所述的任一主体;
所述充电线包括主体收容端和充电端;
所述主体收容端形成有一用于容纳所述可穿戴式设备的主体的半空腔,所述半空腔的内表面上形成有两个充电端子,所述两个充电端子用于在所述可穿戴式设备的主体插接入所述半空腔时,与所述主体的两个充电触点电性接触相连;
所述主体收容端的所述两个充电端子与所述充电端电性相连;
所述充电端为通用串行总线USB接口、迷你通用串行总线MiniUSB接口、微型通用串行总线MicroUSB接口、30脚位pin接口和电源适配器中的至少一种。
根据本公开实施例的第四方面,提供一种设备制造方法,用于制造如第一方面所述的任一可穿戴式设备主体,所述方法包括:
通过热压成型得到聚碳酸酯PC材质的所述面壳和所述底壳;
将所述电子部件放置在所述面壳和所述底壳围合形成的空腔中,并使所述电子部件与所述底壳上的两个充电触点电性相连;
将所述面壳和所述底壳围合形成的空腔进行防水性密封;
对所述面壳和所述底壳围合形成的空腔进行防水性测试。
可选的,所述对所述面壳和所述底壳围合形成的空腔进行防水性测试,包括:
在所述面壳上形成一通孔;
通过所述通孔对所述空腔以气体加压进行防水性测试;
在所述防水性测试通过时,使用防水密封贴对所述通孔进行密封。
可选的,所述方法,还包括:
将金属板材加工为面壳装饰件;
将所述面壳装饰件贴合在所述面壳的外壳面上。
可选的,所述将金属板材加工为面壳装饰件,包括:
通过冲压成型将所述金属板材加工成圆角矩形片;
对所述圆角矩形片的外表面进行抛光、喷砂和氧化处理;
将所述圆角矩形片的侧棱边进行高亮抛光处理,并在抛光后进行二次氧化处理;
对所述圆角矩形片的透光区域进行铣薄处理;
在每个透光区域钻出预定个数的微孔;
在所述微孔中注入紫外光固化UV胶;
对所述微孔照射紫外光,固化所述微孔中的所述紫外光固化UV胶;
可选的,所述将所述面壳装饰件贴合在所述面壳的外壳面上,包括:
在所述面壳装饰件朝向所述面壳的表面上镭雕出热熔粘胶纹路;
将所述面壳装饰件通过热熔胶胶合连接在所述面壳的外壳面上。
本公开实施例提供的技术方案可以包括以下有益效果:
通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本公开的实施例,并与说明书一起用于解释本公开的原理。
图1是根据一示例性实施例示出的一种可穿戴式设备主体的结构爆炸图;
图2是根据另一示例性实施例示出的一种可穿戴式设备主体的结构爆炸图;
图3是根据另一示例性实施例示出的一种可穿戴式设备的结构示意图;
图4是根据另一示例性实施例示出的一种可穿戴式设备的结构示意图;
图5是根据另一示例性实施例示出的一种可穿戴式设备主体的制造方法流程图;
图6是根据另一示例性实施例示出的一种可穿戴式设备主体的制造方法流程图。
通过上述附图,已示出本公开明确的实施例,后文中将有更详细的描述。这些附图和文字描述并不是为了通过任何方式限制本公开构思的范围,而是通过参考特定实施例为本领域技术人员说明本公开的概念。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
图1是根据一示例性实施例示出的一种可穿戴式设备的主体的结构爆炸图,该可穿戴式设备的主体包括:面壳110、底壳130和电子部件150。
面壳110和底壳130上下对接,且面壳110和底壳130围合形成一防水性空腔。
电子部件150设置于空腔内。
电子部件150包括PCB(Printed Circuit Board,印制电路板)151和电池152,PCB151和电池152电性相连,PCB151上设置有无线数据收发组件和至少一种传感器。
底壳130外侧形成有两个充电触点131,充电触点131与电子部件150电性相连。
综上所述,本实施例提供的可穿戴式设备的主体,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
图2是根据一示例性实施例示出的一种可穿戴式设备的主体的结构爆炸图,该可穿戴式设备的主体包括:面壳110、底壳130和电子部件150;
面壳110和底壳130上下对接,且面壳110和底壳130围合形成一防水性空腔。
电子部件设置于空腔内。
电子部件150包括PCB151和电池152,PCB151和电池152电性相连,PCB151上设置有无线数据收发组件和至少一种传感器。电子部件150上还有两个配合触点153。
底壳130外侧形成有两个充电触点131,充电触点131与电子部件150电性相连,即与配合触点153电性相连。
可选的,主体还包括面壳装饰件120。
面壳110包括一局部透明或全部透明的外壳面111。
电子部件150还包括与PCB151电性相连的至少一个指示灯154,指示灯155在空腔内设置在靠近外壳面111的一侧。
面壳装饰件120贴合设置在外壳面111朝外一侧,面壳装饰件120上对应指示灯154设置有至少一个透光区域121。
在空腔内设置在靠近外壳面111的一侧的指示灯153正对于透光区域121,即指示灯154所发光线可经外壳面111的透明部分,由透光区域121传出。
可选的,面壳装饰件120为金属装饰件,每个透光区域121包括贯穿金属装饰件上下表面且均匀排列的n个微孔,微孔中设置有透光填充物,该透光填充物可以是UV(Ultraviolet Rays紫外光)胶。比如透光区域为直径2.5mm的圆形区域,该圆形区域有170个直径0.07mm的微孔。
可选的,面壳装饰件120朝向面壳110的表面上形成有镭雕的热熔粘胶纹路,面壳装饰件120与面壳110的外表面之间通过热熔胶胶合连接。本实施例对该热熔粘胶纹路的具体形状不做限定。
可选的,面壳110上形成有一用于测试防水性的通孔112,通孔上贴有防水密封贴113。
可选的,面壳110与底壳130接合后,面壳110的外壳面111突出于底壳130的接合边缘132。
可选的,电子部件150还包括振动马达155,振动马达155分别和PCB151、电池152电性相连。
综上所述,本实施例提供的可穿戴式设备的主体,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
图3是根据一示例性实施例示出的一种可穿戴式设备的结构示意图,该可穿戴式设备包括主体和用于容纳主体的柔性腕带。其中:
该主体可以为图1或图2所示实施例提及的任一可穿戴式设备的主体。
该柔性腕带300包括:腕带主体310和腕带扣钉320。
腕带主体310的中心部分设置一容置槽311,容置槽311用于收容可穿戴式设备的主体。
腕带主体310沿容置槽311的两端分别延伸形成有第一腕带部312和第二腕带部313。
第一腕带部312上设置有至少一个固定孔312a,第一腕带部312的末端设置有一个用于使第二腕带部313穿过的环状结构312b。
第二腕带部313上设置有一个扣钉孔313a。
腕带扣钉320嵌于扣钉孔313a中,腕带扣钉320用于在第二腕带部313的末端穿过环状结构312b时,嵌入第一腕带部312的固定孔312a中将第一腕带部312和第二腕带部313固定连接。
综上所述,本实施例提供的可穿戴式设备,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
需要补充说明的是,本实施例提供的用于容纳主体的柔性腕带,通过将主体收容至容置槽中,防止了充电触点的外露;且通过腕带主体可将穿戴式设备佩戴至相关部位。
图4是根据一示例性实施例示出的一种可穿戴式设备的结构示意图,该可穿戴式设备包括主体和用于为主体充电的充电线。其中:
该主体可以为图1或图2所示实施例提及的任一可穿戴式设备的主体。
该充电线400包括主体收容端410和充电端420。
主体收容端410形成有一用于容纳可穿戴式设备的主体的半空腔,半空腔的内表面上形成有两个充电端子411,两个充电端子411用于在可穿戴式设备的主体插接入半空腔时,与主体的两个充电触点131电性接触相连。
主体收容端410的两个充电端子411与充电端420电性相连。
充电端420为USB接口、MiniUSB(Mini Universal Serial Bus,迷你通用串行总线)接口、MicroUSB(Micro Universal Serial Bus,微型通用串行总线)接口、30pin(30脚位)接口和电源适配器中的至少一种。本实施例以充电端420为USB接口为例。
综上所述,本实施例提供的可穿戴式设备,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
需要补充说明的是,本实施例提供的用于为主体充电的充电线,可配套的为可穿戴设备的主体进行充电,且通过多种充电端使该充电线可利用多种端口对主体进行充电。
图5是根据一示例性实施例示出的一种可穿戴式设备主体的制造方法的流程图,该方法用于制造如图1或图2所示实施例中的任一可穿戴式设备的主体,该方法包括:
步骤501,通过热压成型得到PC(Polycarbonate,聚碳酸酯)材质的面壳和底壳。
步骤502,将电子部件放置在面壳和底壳围合形成的空腔中,并使电子部件与底壳上的两个充电触点电性相连。
步骤503,将面壳和底壳围合形成的空腔进行防水性密封。
步骤504,对面壳和底壳围合形成的空腔进行防水性测试。
综上所述,本实施例提供的可穿戴式设备的制造方法,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
图6是根据一示例性实施例示出的一种可穿戴式设备主体的制造方法的流程图,该方法用于制造如图1或图2所示实施例中的任一可穿戴式设备的主体,该方法包括:
步骤601,通过热压成型得到PC材质的面壳和底壳;
面壳包括圆角矩形状的外壳面,和从外壳面的边缘沿垂直于外壳面的方向延伸形成的壳沿,外壳面是透明的,外壳面可以是部分透明或全部透明。
步骤602,将电子部件放置在面壳和底壳围合形成的空腔中,并使电子部件与底壳上的两个充电触点电性相连;
电子部件设置有两个充电触点,与底壳外侧上两颗充电触点的内侧延伸部分配合接触,电子部件内可以设置有PCB、电动马达、电池、指示灯、无线数据收发组件和至少一种传感器。
步骤603,将面壳和底壳围合形成的空腔进行防水性密封;
可使用O型圈密封等密封方法对该空腔进行防水性密封。
步骤604,对面壳和底壳围合形成的空腔进行防水性测试;
此步骤可以分为下面3个子步骤:
第一、在面壳上形成一通孔;
第二、通过通孔对空腔以气体加压进行防水性测试,即根据压力损失来确认测试是否通过。
第三、在防水性测试通过时,使用防水密封贴对通孔进行密封。
步骤605,将金属板材加工为面壳装饰件;
这一步骤可以分为下面8个子步骤:
第一、通过冲压成型将金属板材加工成圆角矩形片,该金属板材可以为铝合金。
第二、对圆角矩形片的外表面进行抛光、喷砂和氧化处理。
第三、将圆角矩形片的侧棱边进行高亮抛光处理,并在抛光后进行二次氧化处理。
第四、对圆角矩形片的透光区域进行铣薄处理,该透光区域下方正对于位于外壳面透明区域下方的指示灯。
第五、在每个透光区域钻出预定个数的微孔,可使用激光进行微穿孔。
第六、在微孔中注入UV胶。
第七、对微孔照射紫外光固化微孔中的UV胶。
步骤606,将面壳装饰件贴合在面壳的外壳面上。
这一步骤可以分为下面2个子步骤:
第一、在面壳装饰件朝向面壳的表面上镭雕出热熔粘胶纹路。
第二、将面壳装饰件通过热熔胶胶合连接在面壳的外壳面上。
综上所述,本实施例提供的可穿戴式设备的制造方法,通过在可穿戴式设备中设置一包含无线数据收发组件的防水内腔,解决了相关技术中需要设置有USB接口,但由于手环通常佩戴在用户的手臂上,有很大的概率被液体所覆盖,导致手环经常发生故障的问题;达到了用户能在潮湿环境或需要接触水时仍能正常使用、佩戴可穿戴式设备的效果。
需要补充说明的是,本制造方法通过对圆角矩形片的透光区域进行铣薄处理,增加了圆角矩形片的透光区域的透光率,使指示灯可以在更低的亮度下工作,从而达到减小指示灯能耗的效果。
需要补充说明的是,本制造方法通过在面壳装饰件朝向面壳的表面上镭雕出热熔粘胶纹路,增加了面壳装饰件和面壳之间的胶合强度。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本公开的其它实施方案。本申请旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由下面的权利要求指出。
应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本公开的范围仅由所附的权利要求来限制。

Claims (14)

  1. 一种可穿戴式设备的主体,其特征在于,所述主体包括:
    面壳、底壳和电子部件;
    所述面壳和所述底壳上下对接,且所述面壳和所述底壳围合形成一防水性空腔;
    所述电子部件设置于所述空腔内;
    所述电子部件包括印制电路板PCB和电池,所述印制电路板PCB和所述电池电性相连,所述印制电路板PCB上设置有无线数据收发组件和至少一种传感器;
    所述底壳外侧形成有两个充电触点,所述充电触点与所述电子部件电性相连。
  2. 根据权利要求1所述的主体,其特征在于,所述主体还包括面壳装饰件;
    所述面壳包括一局部透明或全部透明的外壳面;
    所述电子部件还包括与所述PCB电性相连的至少一个指示灯,所述指示灯在所述空腔内设置在靠近所述外壳面的一侧;
    所述面壳装饰件贴合设置在所述外壳面朝外一侧,所述面壳装饰件上对应所述指示灯设置有至少一个透光区域。
  3. 根据权利要求2所述的主体,其特征在于,所述面壳装饰件为金属装饰件,每个透光区域包括贯穿所述金属装饰件上下表面且均匀排列的n个微孔,所述微孔中设置有透光填充物。
  4. 根据权利要求2所述的主体,其特征在于,所述面壳装饰件朝向所述面壳的表面上形成有镭雕的热熔粘胶纹路,所述面壳装饰件与所述面壳的外表面之间通过热熔胶胶合连接。
  5. 根据权利要求1至4任一所述的主体,其特征在于,
    所述面壳上形成有一用于测试防水性的通孔,所述通孔上贴有防水密封贴。
  6. 根据权利要求1至4任一所述的主体,其特征在于,所述面壳与所述底壳接合后,所述面壳的外壳面突出于所述底壳的接合边缘。
  7. 根据权利要求1至4所述的主体,其特征在于,所述电子部件还包括振动马达,所述振动马达分别和所述印制电路板PCB、所述电池电性相连。
  8. 一种可穿戴式设备,其特征在于,所述可穿戴设备包括主体和用于容纳所述主体 的柔性腕带;
    所述主体为如权利要求1至7任一所述的主体;
    所述柔性腕带包括腕带主体和腕带扣钉;
    所述腕带主体的中心部分设置一容置槽,所述容置槽用于收容所述可穿戴式设备的主体;
    所述腕带主体沿所述容置槽的两端分别延伸形成有第一腕带部和第二腕带部;
    所述第一腕带部上设置有至少一个固定孔,所述第一腕带部的末端设置有一个用于使所述第二腕带部穿过的环状结构;
    所述第二腕带部上设置有一个扣钉孔;
    所述腕带扣钉嵌于所述扣钉孔中,所述腕带扣钉用于在所述第二腕带部的末端穿过所述环状结构时,嵌入所述第一腕带部的所述固定孔中将所述第一腕带部和第二腕带部固定连接。
  9. 一种可穿戴式设备,其特征在于,所述可穿戴设备包括主体和用于为所述主体充电的充电线;
    所述主体为如权利要求1至7任一所述的主体;
    所述充电线包括主体收容端和充电端;
    所述主体收容端形成有一用于容纳所述可穿戴式设备的主体的半空腔,所述半空腔的内表面上形成有两个充电端子,所述两个充电端子用于在所述可穿戴式设备的主体插接入所述半空腔时,与所述主体的两个充电触点电性接触相连;
    所述主体收容端的所述两个充电端子与所述充电端电性相连;
    所述充电端为通用串行总线USB接口、迷你通用串行总线MiniUSB接口、微型通用串行总线MicroUSB接口、30脚位pin接口和电源适配器中的至少一种。
  10. 一种设备制造方法,用于制造如权利要求1至7任一所述的可穿戴式设备的主体,其特征在于,所述方法包括:
    通过热压成型得到聚碳酸酯PC材质的所述面壳和所述底壳;
    将所述电子部件放置在所述面壳和所述底壳围合形成的空腔中,并使所述电子部件与所述底壳上的两个充电触点电性相连;
    将所述面壳和所述底壳围合形成的空腔进行防水性密封;
    对所述面壳和所述底壳围合形成的空腔进行防水性测试。
  11. 根据权利要求10所述的方法,其特征在于,所述对所述面壳和所述底壳围合形成的空腔进行防水性测试,包括:
    在所述面壳上形成一通孔;
    通过所述通孔对所述空腔以气体加压进行防水性测试;
    在所述防水性测试通过时,使用防水密封贴对所述通孔进行密封。
  12. 根据权利要求10或11所述的方法,其特征在于,所述方法,还包括:
    将金属板材加工为面壳装饰件;
    将所述面壳装饰件贴合在所述面壳的外壳面上。
  13. 根据权利要求12所述的方法,其特征在于,所述将金属板材加工为面壳装饰件,包括:
    通过冲压成型将所述金属板材加工成圆角矩形片;
    对所述圆角矩形片的外表面进行抛光、喷砂和氧化处理;
    将所述圆角矩形片的侧棱边进行高亮抛光处理,并在抛光后进行二次氧化处理;
    对所述圆角矩形片的透光区域进行铣薄处理;
    在每个透光区域钻出预定个数的微孔;
    在所述微孔中注入紫外光固化UV胶;
    对所述微孔照射紫外光,固化所述微孔中的所述紫外光固化UV胶;
  14. 根据权利要求12所述的方法,其特征在于,所述将所述面壳装饰件贴合在所述面壳的外壳面上,包括:
    在所述面壳装饰件朝向所述面壳的表面上镭雕出热熔粘胶纹路;
    将所述面壳装饰件通过热熔胶胶合连接在所述面壳的外壳面上。
PCT/CN2014/091761 2014-07-18 2014-11-20 可穿戴式设备及其制造方法 Ceased WO2016008247A1 (zh)

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CN106094500A (zh) * 2016-08-23 2016-11-09 广东小天才科技有限公司 一种智能手表充电端子的防水结构
CN108663927A (zh) * 2018-06-28 2018-10-16 浙江理工大学 一种多功能太阳能充电手表
CN112564217A (zh) * 2020-11-30 2021-03-26 Oppo广东移动通信有限公司 智能穿戴设备

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BR112015002968A2 (pt) 2017-07-04
RU2015102202A (ru) 2016-09-10
RU2605895C2 (ru) 2016-12-27
KR20160020392A (ko) 2016-02-23
MX350669B (es) 2017-09-13
JP6130604B2 (ja) 2017-05-17
MX2015001067A (es) 2016-04-27
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EP2974650A1 (en) 2016-01-20
CN104146771B (zh) 2017-03-29

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