WO2022062036A1 - 一种智能手表 - Google Patents
一种智能手表 Download PDFInfo
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- WO2022062036A1 WO2022062036A1 PCT/CN2020/123827 CN2020123827W WO2022062036A1 WO 2022062036 A1 WO2022062036 A1 WO 2022062036A1 CN 2020123827 W CN2020123827 W CN 2020123827W WO 2022062036 A1 WO2022062036 A1 WO 2022062036A1
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- WIPO (PCT)
- Prior art keywords
- hole
- base
- turning
- smart watch
- rotating
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- Ceased
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Classifications
-
- G—PHYSICS
- G04—HOROLOGY
- G04G—ELECTRONIC TIME-PIECES
- G04G17/00—Structural details; Housings
-
- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44C—PERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
- A44C5/00—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
- A44C5/14—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps characterised by the way of fastening to a wrist-watch or the like
-
- G—PHYSICS
- G04—HOROLOGY
- G04G—ELECTRONIC TIME-PIECES
- G04G17/00—Structural details; Housings
- G04G17/08—Housings
Definitions
- the present application relates to the technical field of watches, in particular to a smart watch.
- the traditional smart watch not only has a single structure, but also has a small shooting angle of the camera lens, and constantly changing gestures will seriously affect the user experience.
- the purpose of this application is to provide a smart watch to solve the technical problems in the prior art that due to the single structure of the smart watch, the shooting angle of the camera lens is small and the gestures need to be converted to meet the shooting requirements and thus affect the use experience.
- an embodiment of the present application provides a smart watch, comprising: a base and a watch body disposed on the base, and the smart watch further includes a flip assembly disposed between the base and the watch body and a rotating assembly disposed between the turning assembly and the watch body, through which the watch body can be turned over and stable relative to the base, and the rotating assembly is used to drive the turned over The watch body rotates relative to the base and remains stable.
- the base includes a base body and two fixed bases that are oppositely and spaced apart on the base body, and the two fixed bases extend toward each other to form support shafts;
- the turning assembly includes a turning piece connected with the watch body and a damping piece sleeved on the support shaft. Both ends of the turning piece are provided with first turning holes for accommodating the damping piece.
- the damping member is in contact with the hole wall of the first rotating hole.
- the turning member is further provided with a second rotating hole communicating with the first rotating hole, the first support shaft extends into the second rotating hole, and the first support shaft is connected to the first rotating hole.
- the hole walls of the second turning holes are in contact with each other.
- the rotating assembly includes a rotating motor and a speed reducer fixed on the watch body, the rotating motor has a first power output shaft for connecting with the speed reducer, and the speed reducer has a first power output shaft for connecting with the speed reducer a second power output shaft that is fixedly connected with the turning element.
- the watch body includes a bottom wall and a peripheral wall forming a receiving space with the bottom wall, and a connecting hole is opened on the peripheral wall;
- the rotating electrical machine and the speed reducer are arranged in the receiving space, and the second power output shaft is fixedly connected to the turning member through the connecting hole.
- a connecting shaft located in the connecting hole and fixedly connected with the second power output shaft is extended and formed on the turning member.
- the rotating assembly further includes a support bearing disposed between the connecting shaft and the hole wall of the connecting hole.
- the rotating assembly further includes a fixing frame accommodated in the accommodating space for fixing the rotating electrical machine and the speed reducer.
- the fixing frame includes a first fixing plate fixedly connected with the bottom wall and a second fixing plate with a through hole formed by bending and extending from the first fixing plate, and the speed reducer is fixed on the on the second fixing plate, and the second power output shaft is fixedly connected with the connecting shaft through the through hole.
- the smart watch is provided with a flipping component and a rotating component, and the flipping component is arranged between the base and the watch body to drive the watch body to flip relative to the base and stabilize at a flipping angle; Between the component and the watch body, the watch body is driven to rotate relative to the base and stabilized at a rotation angle.
- the smart watch needs to take photos and videos from multiple angles, the watch body can be turned by a certain angle by turning the component, and the watch body can be rotated by a certain angle by the rotating component. Combined with the turning component and the rotating component, the watch body can be rotated in three-dimensional space.
- the movement is used to find the shooting angle required by the lens, and the technical solution is used to solve the technical problems in the prior art that due to the single structure of the smart watch, the lens shooting angle is small and the gestures need to be converted to meet the shooting requirements and thus affect the use experience.
- FIG. 1 is a schematic diagram of the overall structure of a smart watch according to an embodiment of the application.
- FIG. 2 is a schematic structural diagram of a smart watch flipping a first angle according to an embodiment of the application
- FIG. 3 is a schematic structural diagram of a smart watch flipped at a second angle according to an embodiment of the application
- FIG. 4 is a schematic structural diagram of the smart watch after being turned over and rotated according to an embodiment of the application
- FIG. 5 is a schematic structural diagram of a flip component and a rotating component of a smart watch in an embodiment of the application;
- FIG. 6 is a schematic diagram of an exploded structure of a flip component and a rotating component of a smart watch according to an embodiment of the application;
- Fig. 7 is the sectional view of A-A direction in Fig. 1;
- FIG. 8 is a cross-sectional view taken along the direction B-B in FIG. 5 .
- base; 11, base body; 12, fixed seat; 12a first curved surface; 121, support shaft; 1211, first support shaft; 1212, second support shaft; 20, watch body; 20a, accommodation space; 21, bottom wall; 22, peripheral wall; 221, connecting hole; 30, flip assembly; 31, flip part; 31a, flat surface; 31b, second curved surface; 311, first turning hole; 312, second turning hole ; 313, connecting shaft; 32, damping member; 40, rotating assembly; 41, rotating electrical machine; 411, first power output shaft; 42, support bearing; 43, reducer; 431, second power output shaft; 44, fixed 441, the first fixing plate; 442, the second fixing plate; 442a, the through hole; 50, the strap; 60, the camera lens.
- the smart watch includes a base 10 and a watch body 20 arranged on the base 10 , and a camera lens 60 for taking pictures and videos is arranged on the watch body 20 .
- the smart watch further includes a turning assembly 30 disposed between the base 10 and the watch body 20 and a rotating assembly 40 disposed between the turning assembly 30 and the watch body 20 .
- the watch body 20 is turned relative to the base 10 and kept stable, and the rotating assembly 40 is used to drive the turned watch body 20 to rotate relative to the base 10 and keep it stable.
- the smart watch since the smart watch also includes a flipping component 30 and a rotating component 40, the flipping component 30 is arranged between the base 10 and the watch body 20 to drive the watch body 20 to flip relative to the base 10 and stabilize at a flipping angle;
- the assembly 40 is disposed between the turning assembly 30 and the watch body 20 to drive the watch body 20 to rotate relative to the base 10 and stabilize at a rotation angle.
- the watch body 20 can be turned by a certain angle through the turning component 30, and the watch body 20 can be rotated by a certain angle through the rotating component 40.
- the realization of the The watch body 20 moves in the three-dimensional space to find the shooting angle required by the camera lens 60.
- the range of the turning angle of the turning assembly 30 and the turning range of the rotating assembly 40 can be set and limited as required. This embodiment does not specifically limit the range of the turning angle of the turning assembly 30 and the turning range of the turning assembly 40; see FIG. 1-FIG. 4, the watch body 20 can be turned over within the turning angle range by the turning assembly 30, and the base 10 can be kept relatively stable at any turning angle, and the watch body 20 can be turned within the turning angle range by the turning assembly 40, and It remains relatively stable with the base 10 at any rotation angle.
- the base 10 includes a base body 11 and two fixed seats 12 that are oppositely and spaced apart on the base body 11 , and the two fixed seats 12 extend toward each other to form a support shaft 121 ;
- the flipping assembly 30 includes a flipping piece 31 connected to the watch body 20 and a damping piece 32 sleeved on the support shaft 121.
- the two ends of the flipping piece 31 are provided with first turning holes 311 for accommodating the damping piece 32, and the damping piece 32 is in contact with the hole wall of the first turning hole 311 .
- the support shaft 121 of the fixed seat 12 is fixed and supports the damping member 32 , and the flipping member 31 is connected to the damping member 32 through the first turning holes 311 at both ends, so the flipping member 31 can be flipped relative to the damping member 32 , that is, the watch body connected with the flipping member 31 20 can be turned relative to the base 10; due to the friction between the damping member 32 and the hole wall of the first turning hole 311, the turning member 31 can be stabilized at any turning angle, that is, the watch body 20 connected with the turning member 31 can be stable at any turning angle. A flip angle.
- an end of the fixing base 12 away from the base 10 forms a first curved surface 12 a to avoid interference between the watch body 20 and the fixing base 12 when the turning component 30 drives the watch body 20 to turn over.
- the support shaft 121 includes a first support shaft 1211 and a second support shaft 1212 connected between the first support shaft 1211 and the fixed seat 12 , and the damping member 32 is sleeved on the first support shaft 1211 , and the second support shaft 1212 is in contact with the hole wall of the first rotating hole 311 . Therefore, both the second support shaft 1212 and the damping member 32 are in contact with the hole wall of the first rotating hole 311 , which increases the supporting area of the support shaft 121 for the turning member 31 to ensure that the turning member 31 can be turned stably.
- the turning member 31 further defines a second rotating hole 312 that communicates with the first rotating hole 311 , the first supporting shaft 1211 extends into the second rotating hole 312 , and the first supporting shaft 1211 is connected to the second rotating hole 312 .
- the hole walls of the two rotating holes 312 are in contact with each other. That is, the first support shaft 1211 supports the turning member 31 by abutting with the hole wall of the second rotating hole 312 , which further increases the supporting area of the support shaft 121 for the turning member 31 and greatly improves the relationship between the turning member 31 and the supporting member 31 . Relative stability between shafts 121 .
- the rotating assembly 40 includes a rotating motor 41 and a reducer 43 fixed to the watch body 20 , and the rotating motor 41 has a first power output shaft 411 for connecting with the reducer 43 , And the speed reducer 43 has a second power output shaft 431 for fixedly connecting with the turning member 31 . Since the turning member 31 connected with the second power output shaft 431 is limited by the support shaft 121 on the fixing base 12 , the rotary electric machine 41 drives the second power output shaft 431 of the reducer 43 to start to rotate through the first power output shaft 411 , the watch body 20 connected to the rotating motor 41 rotates accordingly.
- the free rotation of the watch body 20 can be realized by controlling the start and stop of the rotating motor 41, so that the watch body 20 can be stabilized at any rotation angle; at the same time, the watch body 20 can be controlled by the rotation speed of the first power output shaft 411. Further, the rotation of the rotary motor 41 is transmitted to the second power output shaft 431 of the reducer 43 to achieve deceleration and facilitate accurate control of the rotation angle of the watch body 20 .
- the watch body 20 includes a bottom wall 21 and a peripheral wall 22 forming a receiving space 20a with the bottom wall 21.
- the peripheral wall 22 is provided with a connecting hole 221; the rotating motor 41 and the speed reducer 43 are arranged in the receiving space 20a , and the second power output shaft 431 is fixedly connected with the turning member 31 through the connecting hole 221 .
- the rotating motor 41 and the speed reducer 43 are arranged in the receiving space 20a of the watch body 20, and the second power output shaft 431 is connected with the turning member 31 through the connecting hole 221 of the watch body 20, avoiding the rotating motor 41 and the speed reducer 43.
- the space interference with the flip assembly 30 is generated, and the overall aesthetics of the watch body 20 is improved at the same time.
- the turning member 31 is extended with a connecting shaft 313 which is formed in the connecting hole 221 and is fixedly connected with the second power output shaft 431;
- the connection stability is improved, and the connection hole 221 limits the connection shaft 313 to further improve the connection stability between the turning member 31 and the second power output shaft 431 .
- the flip member 31 has a flat surface 31a in contact with the watch body 20 and a second curved surface 31b opposite to the flat surface 31a.
- the connecting shaft 313 extends from the flat surface 31a toward the connecting hole 221, and passes through the flat surface 31a. 31a improves the relative stability of the turning member 31 and the watch body 20, and the second curved surface 31b prevents the turning member 31 from interfering with the base 10 when it is turned over.
- the rotating assembly 40 further includes a support bearing 42 disposed between the connecting shaft 313 and the hole wall of the connecting hole 221.
- a support bearing 42 disposed between the connecting shaft 313 and the hole wall of the connecting hole 221.
- the rotating assembly 40 further includes a fixing frame 44 accommodated in the accommodating space 20 a , and the rotating motor 41 and the reducer 43 are accommodated in the accommodating space 20 a through the fixing frame 44 .
- the fixing frame 44 includes a first fixing plate 441 fixedly connected with the bottom wall 21 and a second fixing plate 442 having a through hole 442a formed by bending and extending from the first fixing plate 441 .
- the speed reducer 43 It is fixed on the second fixing plate 442, and the second power output shaft 431 is fixedly connected with the connecting shaft 313 through the through hole 442a.
- the rotary motor 41 is fixed on the second fixing plate 442 through the speed reducer 43 and together with the speed reducer 43 , and the second power output shaft 431 of the speed reducer 43 is connected to the connecting shaft 313 through the through hole 442 a , so that the rotating motor 41 can pass through the rotating motor 41 .
- the watch body 20 is driven to rotate.
- the smart watch further includes straps 50 extending from both ends of the base 10 , and the smart watch can be worn through the straps 50 .
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Abstract
一种智能手表,包括底座(10)和设置在底座(10)上的手表主体(20),智能手表还包括设置在底座(10)与手表主体(20)之间的翻转组件(30)和设置在翻转组件(30)与手表主体(20)之间的转动组件(40),通过翻转组件(30)能够使手表主体(20)相对底座(10)翻转并保持稳定,转动组件(40)用于驱动翻转后的手表主体(20)相对底座(10)转动并保持稳定。解决了现有技术中智能手表因结构单一而导致镜头拍摄角度较小以及需转换手势来达到拍摄需求进而影响使用体验的技术问题。
Description
本申请涉及手表的技术领域,尤其涉及一种智能手表。
现有的智能手表大多为固定式,即手表本体相对表带、底座的位置固定不变。因此,手表本体上的可拍照摄像镜头也是相对固定的,用户在拍照不同角度的照片时需要改变不同的手势来实现。传统的智能手表不仅结构形式单一,可拍照摄像镜头的拍摄角度较小,而且不断转换手势会严重影响用户体验。
因此,有必要提供一种新型的智能手表来解决上述问题。
本申请的目的在于提供一种智能手表,以解决现有技术中智能手表因结构单一而导致摄像镜头拍摄角度较小以及需转换手势来达到拍摄需求进而影响使用体验的技术问题。
为此,本申请实施例中提供了一种智能手表,包括:底座和设置在所述底座上的手表主体,所述智能手表还包括设置在所述底座与所述手表主体之间的翻转组件和设置在所述翻转组件与所述手表主体之间的转动组件,通过所述翻转组件能够使所述手表主体相对所述底座翻转并保持稳定,所述转动组件用于驱动翻转后的所述手表主体相对所述底座转动并保持稳定。
作为一种改进,所述底座包括底座本体和两个相对且间隔设置在所述底座本体上的固定座,两个所述固定座朝向彼此延伸形成有支撑轴;
所述翻转组件包括与所述手表主体连接的翻转件和套设在所述支撑轴上的阻尼件,所述翻转件的两端开设有用于收容所述阻尼件的第一转孔,且所述阻尼件与所述第一转孔的孔壁抵接。
作为一种改进,所述翻转件还开设有与所述第一转孔连通的第二转孔,所述第一支撑轴延伸进所述第二转孔内,且所述第一支撑轴与所述第二转孔的孔壁抵接。
作为一种改进,所述转动组件包括固定于所述手表主体的旋转电机和减速器,所述旋转电机具有用于与所述减速器连接的第一动力输出轴,且所述减速器具有用于与所述翻转件固定连接的第二动力输出轴。
作为一种改进,所述手表主体包括底壁和与所述底壁形成收容空间的周壁,所述周壁上开设有连接孔;
所述旋转电机和所述减速器设置在所述收容空间内,且所述第二动力输出轴经所述连接孔与所述翻转件固定连接。
作为一种改进,所述翻转件延伸形成有位于所述连接孔内并与所述第二动力输出轴固定连接的连接轴。
作为一种改进,所述转动组件还包括设置在所述连接轴与连接孔的孔壁之间的支撑轴承。
作为一种改进,所述转动组件还包括收容于所述收容空间内的用于固定所述旋转电机和所述减速器的固定架。
作为一种改进,所述固定架包括与所述底壁固定连接的第一固定板和自所述第一固定板弯折延伸形成的具有通孔的第二固定板,所述减速器固定在所述第二固定板上,且所述第二动力输出轴经所述通孔与所述连接轴固定连接。
本申请的有益效果在于:该智能手表由于设置有翻转组件和转动组件,该翻转组件设置在底座与手表主体之间,以驱动手表主体相对底座翻转并稳定在一翻转角度;转动组件设置在翻转组件与手表主体之间,以驱动手表主体相对底座转动并稳定在一转动角度。在智能手表需要进行多角度拍照录像时,可通过翻转组件使得手表主体翻转一定的角度,并通过转动组件使手表主体转动一定的角度,结合翻转组件和转动组件,实现了手表主体在三维空间内运动以找准镜头所需的拍摄角度,运用本技术方案解决了现有技术中智能手表因结构单一而导致镜头拍摄角度较小以及需转换手势来达到拍摄需求进而影响使用体验的技术问题。
图1为本申请一实施例中智能手表的整体结构示意图;
图2为本申请一实施例中智能手表翻转第一角度的结构示意图;
图3为本申请一实施例中智能手表翻转第二角度的结构示意图;
图4为本申请一实施例中智能手表翻转且转动后的结构示意图;
图5为本申请一实施例中智能手表的翻转组件和转动组件的结构示意图;
图6为本申请一实施例中智能手表的翻转组件和转动组件的分解结构示意图;
图7为图1中A-A方向的剖面图;
图8为图5中B-B方向的剖面图。
图中:10、底座;11、底座本体;12、固定座;12a、第一曲面;121、支撑轴;1211、第一支撑轴;1212、第二支撑轴;20、手表主体;20a、收容空间;21、底壁;22、周壁;221、连接孔;30、翻转组件;31、翻转件;31a、平板面;31b、第二曲面;311、第一转孔;312、第二转孔;313、连接轴;32、阻尼件;40、转动组件;41、旋转电机;411、第一动力输出轴;42、支撑轴承;43、减速器;431、第二动力输出轴;44、固定架;441、第一固定板;442、第二固定板;442a、通孔;50、表带;60、摄像镜头。
为了便于理解本申请,下面将参照相关附图对本申请进行更全面的描述。附图中给出了本申请的较佳的实施例。但是,本申请可以通过其他多种不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本申请的公开内容的理解更加透彻全面。
需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。本文所使用的术语“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,本文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。本文中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例的目的,不是旨在于限制本申请。本文所使用的术语“及/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。
本申请提供了一种智能手表,参加图1-图4,智能手表包括底座10和设置在底座10上的手表主体20,手表主体20上设置用于拍照录像的摄像镜头60。
如图5及图6所示,智能手表还包括设置在底座10与手表主体20之间的翻转组件30和设置在翻转组件30与手表主体20之间的转动组件40,通过翻转组件30能够使手表主体20相对底座10翻转并保持稳定,转动组件40用于驱动翻转后的手表主体20相对底座10转动并保持稳定。
在本申请中,由于该智能手表还包括翻转组件30和转动组件40,翻转组件30设置在底座10与手表主体20之间,以驱动手表主体20相对底座10翻转并稳定在一翻转角度;转动组件40设置在翻转组件30与手表主体20之间,以驱动手表主体20相对底座10转动并稳定在一转动角度。在智能手表需要进行多角度拍照录像时,可通过翻转组件30使得手表主体20翻转一定的角度,并通过转动组件40使手表主体20转动一定的角度,结合翻转组件30和转动组件40,实现了手表主体20在三维空间内运动以找准摄像镜头60所需的拍摄角度,运用本技术方案解决了现有技术中智能手表因结构单一而导致摄像镜头60拍摄角度较小以及需转换手势来达到拍摄需求进而影响使用体验的技术问题。
需要说明的是,翻转组件30的翻转角度范围和转动组件40的转动范围可根据需要进行设置限定,本实施例不对翻转组件30的翻转角度范围和转动组件40的转动范围作具体限定;参见图1-图4,通过翻转组件30可使手表主体20在翻转角度范围内翻转,并在任一翻转角度与底座10保持相对稳定,通过转动组件40可使手表主体20在转动角度范围内转动,并在任一转动角度与底座10保持相对稳定。
在一种实施例中,参见图6及图7,底座10包括底座本体11和两个相对且间隔设置在底座本体11上的固定座12,两个固定座12朝向彼此延伸形成有支撑轴121;翻转组件30包括与手表主体20连接的翻转件31和套设在支撑轴121上的阻尼件32,翻转件31的两端开设有用于收容阻尼件32的第一转孔311,且阻尼件32与第一转孔311的孔壁抵接。
固定座12的支撑轴121固定支撑阻尼件32,翻转件31通过两端的第一转孔311与阻尼件32连接,因此翻转件31可相对阻尼件32翻转,即与翻转件31连接的手表主体20可相对底座10翻转;由于阻尼件32与第一转孔311的孔壁之间的摩擦力,使得翻转件31可稳定在任一翻转角度,即与翻转件31连接的手表主体20可稳定在任一翻转角度。
请参考图2,固定座12远离底座10的一端形成第一曲面12a,避免翻转组件30带动手表主体20翻转时、手表主体20与固定座12产生干涉。
在一些具体的实施例中,支撑轴121包括第一支撑轴1211和连接在第一支撑轴1211与固定座12之间的第二支撑轴1212,阻尼件32套设在第一支撑轴1211上,且第二支撑轴1212与第一转孔311的孔壁抵接。因此,第二支撑轴1212、阻尼件32均与第一转孔311的孔壁抵接,增到了支撑轴121对翻转件31的支撑面积,以保证翻转件31稳定翻转。
在一些具体的实施例中,翻转件31还开设有与第一转孔311连通的第二转孔312,第一支撑轴1211延伸进第二转孔312内,且第一支撑轴1211与第二转孔312的孔壁抵接。即,第一支撑轴1211通过与第二转孔312的孔壁抵接实现对翻转件31的支撑,进一步增到了支撑轴121对翻转件31的支撑面积,大幅度提高了翻转件31与支撑轴121之间的相对稳定性。
在一种实施例中,参见图6及图8,转动组件40包括固定于手表主体20旋转电机41和减速器43,旋转电机41具有用于与减速器43连接的第一动力输出轴411,且减速器43具有用于与翻转件31固定连接的第二动力输出轴431。由于与第二动力输出轴431连接的翻转件31受固定座12上的支撑轴121的限定,因此,旋转电机41通过第一动力输出轴411驱动减速器43的第二动力输出轴431开始转动时,与旋转电机41连接的手表主体20随之转动。本实施例中可以通过控制旋转电机41的启停来实现手表主体20的自由转动,使手表主体20可以稳定在任一转动角度;同时可通过第一动力输出轴411的转动速度来控制手表主体20的转动速度;进一步地,旋转电机41的转动传递到减速器43的第二动力输出轴431,以实现减速,便于准确控制手表主体20的转动角度。
在一些具体的实施例中,手表主体20包括底壁21和与底壁21形成收容空间20a的周壁22,周壁22上开设有连接孔221;旋转电机41和减速器43设置在收容空间20a内,且第二动力输出轴431经连接孔221与翻转件31固定连接。将旋转电机41和减速器43设置在手表主体20的收容空间20a内,并通过手表主体20的连接孔221实现第二动力输出轴431与翻转件31的连接,避免旋转电机41、减速器43与翻转组件30产生空间干涉,同时提高了手表主体20的整体美观性。
在一种实施例中,翻转件31延伸有形成位于连接孔221内并与第二动力输出轴431固定连接的连接轴313;通过连接轴313提高了翻转件31与第二动力输出轴431的连接稳定性,同时连接孔221对连接轴313进行限位,进一步提高翻转件31与第二动力输出轴431之间的连接稳定性。
在一些具体的实施例中,翻转件31具有与手表主体20相接触的平板面31a与平板面31a相对的第二曲面31b,连接轴313自平板面31a朝向连接孔221延伸形成,通过平板面31a提高翻转件31与手表主体20的相对稳定性,通过第二曲面31b避免翻转件31翻转时与底座10发生干涉。
在一种实施例中,转动组件40还包括设置在连接轴313与连接孔221的孔壁之间的支撑轴承42,通过设置支撑轴承42,一方面提高了手表主体20转动时的稳定性,另一方面大幅度提高了连接轴313与第二动力输出轴431之间的稳定性,从而综合保证手表主体20稳定的相对底座10转动。
在一种实施例中,转动组件40还包括收容于收容空间20a内的固定架44,旋转电机41和减速器43通过固定架44收容在收容空间20a内。
在一些具体的实施例中,固定架44包括与底壁21固定连接的第一固定板441和自第一固定板441弯折延伸形成的具有通孔442a的第二固定板442,减速器43固定在第二固定板442上,且第二动力输出轴431经通孔442a与连接轴313固定连接。
旋转电机41通过减速器43并与减速器43一起固定在第二固定板442上,减速器43的第二动力输出轴431再经过通孔442a与连接轴313连接,从而实现了通过旋转电机41带动手表主体20转动。
需要说明的是,该智能手表还包括自底座10的两端延伸形成的表带50,通过表带50实现智能手表的佩戴。
以上实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。
Claims (10)
- 一种智能手表,包括底座和设置在所述底座上的手表主体,其特征在于,所述智能手表还包括设置在所述底座与所述手表主体之间的翻转组件和设置在所述翻转组件与所述手表主体之间的转动组件,通过所述翻转组件能够使所述手表主体相对所述底座翻转并保持稳定,所述转动组件用于驱动翻转后的所述手表主体相对所述底座转动并保持稳定。
- 根据权利要求1所述的智能手表,其特征在于,所述底座包括底座本体和两个相对且间隔设置在所述底座本体上的固定座,两个所述固定座朝向彼此延伸形成有支撑轴;所述翻转组件包括与所述手表主体连接的翻转件和套设在所述支撑轴上的阻尼件,所述翻转件的两端开设有用于收容所述阻尼件的第一转孔,且所述阻尼件与所述第一转孔的孔壁抵接。
- 根据权利要求2所述的智能手表,其特征在于,所述支撑轴包括第一支撑轴和连接在所述第一支撑轴与固定座之间的第二支撑轴,所述阻尼件套设在所述第一支撑轴上,且所述第二支撑轴与所述第一转孔的孔壁抵接。
- 根据权利要求3所述的智能手表,其特征在于,所述翻转件还开设有与所述第一转孔连通的第二转孔,所述第一支撑轴延伸进所述第二转孔内,且所述第一支撑轴与所述第二转孔的孔壁抵接。
- 根据权利要求2-4中任一项所述的智能手表,其特征在于,所述转动组件包括固定于所述手表主体的旋转电机和减速器,所述旋转电机具有用于与所述减速器连接的第一动力输出轴,且所述减速器具有用于与所述翻转件固定连接的第二动力输出轴。
- 根据权利要求5所述的智能手表,其特征在于,所述手表主体包括底壁和与所述底壁形成收容空间的周壁,所述周壁上开设有连接孔;所述旋转电机和所述减速器设置在所述收容空间内,且所述第二动力输出轴经所述连接孔与所述翻转件固定连接。
- 根据权利要求6所述的智能手表,其特征在于,所述翻转件延伸形成有位于所述连接孔内并与所述第二动力输出轴固定连接的连接轴。
- 根据权利要求7所述的智能手表,其特征在于,所述转动组件还包括设置在所述连接轴与连接孔的孔壁之间的支撑轴承。
- 根据权利要求8所述的智能手表,其特征在于,所述转动组件还包括收容于所述收容空间内的用于固定所述旋转电机和所述减速器的固定架。
- 根据权利要求9所述的智能手表,其特征在于,所述固定架包括与所述底壁固定连接的第一固定板和自所述第一固定板弯折延伸形成的具有通孔的第二固定板,所述减速器固定在所述第二固定板上,且所述第二动力输出轴经所述通孔与所述连接轴固定连接。
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| CN113064340B (zh) * | 2021-03-26 | 2022-08-30 | 歌尔股份有限公司 | 一种智能手表及其双轴旋转表盖 |
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| CN208971621U (zh) * | 2018-10-23 | 2019-06-11 | 广东小天才科技有限公司 | 一种拍摄装置可自动旋转的智能主机及智能手表 |
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