WO2018214500A1 - 一种轻智能手表的机芯模组及其设计方法 - Google Patents

一种轻智能手表的机芯模组及其设计方法 Download PDF

Info

Publication number
WO2018214500A1
WO2018214500A1 PCT/CN2017/118737 CN2017118737W WO2018214500A1 WO 2018214500 A1 WO2018214500 A1 WO 2018214500A1 CN 2017118737 W CN2017118737 W CN 2017118737W WO 2018214500 A1 WO2018214500 A1 WO 2018214500A1
Authority
WO
WIPO (PCT)
Prior art keywords
movement module
main board
pcb main
sub
time point
Prior art date
Application number
PCT/CN2017/118737
Other languages
English (en)
French (fr)
Inventor
柳勋
Original Assignee
歌尔科技有限公司
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 歌尔科技有限公司 filed Critical 歌尔科技有限公司
Publication of WO2018214500A1 publication Critical patent/WO2018214500A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B37/00Cases
    • G04B37/04Mounting the clockwork in the case; Shock absorbing mountings
    • G04B37/05Fixed mountings for pocket or wrist watches
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G17/00Structural details; Housings
    • G04G17/02Component assemblies
    • G04G17/04Mounting of electronic components
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G17/00Structural details; Housings
    • G04G17/02Component assemblies
    • G04G17/06Electric connectors, e.g. conductive elastomers

Definitions

  • the invention relates to the technical field of watch devices, in particular to a movement module of a light smart watch and a design method thereof.
  • the movement module of the existing light smart watch is difficult to meet the appearance requirements of various watches through a design for different manufacturers and different dials, resulting in the development of a variety of products, but there are still poor compatibility and long production cycle. Higher cost and poor reliability.
  • the invention provides a movement module of a light smart watch and a design method thereof, so as to solve the problem that the movement module of the existing light smart watch existing in the prior art is difficult to pass through a design for different manufacturers and different dials.
  • An aspect of the present invention provides a movement module of a light smart watch, comprising a PCB main board, a main gear box for mounting a hands and a sub gear box for mounting a sub dial, the main gear box being disposed on the PCB The center of the motherboard;
  • a pad is disposed on the PCB main board at twelve time points, and each pad is connected to the micro control unit MCU of the light smart watch;
  • the movement module further includes at least one elastic piece, one end of each elastic piece is set as a movable end, and the other end is set as a fixed end, the movable end is respectively located above the pad at the set time point, and the fixed end is detachably fixed on the PCB main board.
  • the sub-dial can be set at the desired position by rotating the PCB main board of the movement module, and then the elastic piece is removed from the original set time of the PCB main board, and then re-reset Fixed to the set time point of the rotated PCB motherboard;
  • the shrapnel is connected to the common GND network.
  • Another aspect of the present invention provides a method for designing a movement module of a light smart watch, comprising the following steps:
  • the main board of the PCB is provided with a main gear box for mounting the hands and a sub-gear box for mounting the sub-dial, and the main gear box is disposed at the center of the PCB main board;
  • a pad is disposed on the PCB main board at twelve time points, and each pad is connected to the micro control unit MCU of the light smart watch;
  • the movement module is provided with at least one elastic piece, one end of each elastic piece is set as a movable end, and the other end is set as a fixed end, and the movable end is located above the pad at the set time point, and the fixed end is fixed on the PCB main board. on;
  • the sub-dial When the sub-dial is mounted on the movement module, the sub-dial can be set at the desired position by rotating the PCB main board of the movement module, and then the elastic piece is removed from the original set time point of the PCB main board, and then re-fixed. To the set time point of the PCB board after rotation;
  • the movement module of the light smart watch of the present invention is firstly disposed at the center of the PCB main board through the main gear box; and is disposed at the position of the twelve time points on the PCB main board There is a pad, each pad is connected with the micro control unit MCU of the light smart watch; thus, it can be used for subsequent watch factory installation of hour hand, minute hand, auxiliary gear box, sub dial hand to indicate information such as amount of exercise, date, etc.
  • the main hands are fixed at the center of the watch, while the sub-dial can be placed anywhere else outside the center according to different product definitions;
  • the movement module includes a spring piece, one end of the elastic piece is set as a movable end, the other end is set as a fixed end, the movable end is located above the pad at the set time point, and the fixed end is fixed on the PCB main board, the movement mode
  • the sub-dial can be set at the desired position by rotating the PCB main board of the movement module, and then the elastic piece is removed from the original set time point of the PCB main board, and then re-fixed to the rotated position.
  • the PCB board is set at the time point; it does not use the traditional mechanical side button method, so the whole board area is rich, which can better solve the problem that the light smart watch has a large proportion of the gear box area, resulting in limited function of the solution; With the setting of the sub-dial, the entire module can adjust the position of the sub-dial by means of rotation;
  • shrapnel is connected to the common GND network to ensure its intelligent function.
  • the design method of the movement module of the light smart watch of the present invention firstly sets the main gear box on the PCB main board by providing a main gear box for mounting the hands and a sub gear box for mounting the sub dial. At the center of the PCB main board; a pad is placed on the PCB main board at twelve time points, and each pad is connected to the micro control unit MCU of the light smart watch; the main hand pin can be fixed at The center position of the watch, and the sub dial can be set at any position other than the center position to display information of various other functions according to different product definitions. Secondly, one end of the shrapnel is set by setting the movement module to the shrapnel.
  • the other end is set to the fixed end, the active end is located above the pad at the set time point, and the fixed end is fixed on the PCB main board; when the sub dial is mounted on the movement module, the rotating machine is passed
  • the PCB motherboard of the core module enables the sub-dial to be placed at the desired position, and then the shrapnel is removed from the original set time point of the PCB main board, and then re-fixed to the rotated PCB main board.
  • FIG. 1 is a top plan view of a movement module of a light smart watch according to an embodiment of the present invention
  • FIG. 2 is a side view of a movement module of a light smart watch according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a design method of a movement module of a light smart watch according to an embodiment of the present invention.
  • the design concept of the present invention is that the present invention adopts a movement module of a light smart watch capable of achieving sub-dial installation compatibility by rotation, and can perform no design change in the whole table assembly, and ensures light intelligence.
  • the intelligent function of the watch it is better to solve the problem that the light smart watch has a large proportion of the gearbox area, which leads to limited function of the solution, so that the sub-dial can be set at any position according to different product definitions, and the compatibility of the assembly is improved. .
  • FIG. 1 is a plan view of a movement module of a light smart watch according to an embodiment of the present invention
  • FIG. 2 is a side view of a movement module of a light smart watch according to an embodiment of the present invention.
  • the movement module of the light smart watch comprises a PCB main board 1.
  • the PCB main board 1 is provided with a main gear box 2 for mounting a hands and a sub-gear box 3 for mounting a sub-dial, a main gear
  • the box 2 is disposed at the center of the PCB main board 1;
  • a pad 4 is disposed on the PCB main board 1 at twelve time points, and each pad 4 is connected to the micro control unit MCU of the light smart watch;
  • the movement module further includes at least one elastic piece 5, one end of each elastic piece 5 is arranged as a movable end, the other end is set as a fixed end, the movable end is located above the pad 4 at a set time point, and the fixed end is detachably fixed at
  • the PCB main board 1 of the movement module is rotated, so that the sub-dial can be set at a desired position, and then the elastic piece 5 is set from the original set time of the PCB main board 1.
  • the bit is removed and re-fixed to the set time point of the rotated PCB main board 1;
  • the shrapnel 5 is connected to the common GND network.
  • the main hand pin is fixed to the center position of the watch through the main gear box 2, and the sub-dial can be set in the center through the auxiliary gear box 3 according to different product definitions. Any position other than the position, so with the setting of the sub-dial, the entire movement module can adjust the position of the sub-dial by means of rotation.
  • the elastic piece 5 on the PCB main board 1 can be soldered at the position of the pad 4 corresponding to the time points of two, three, and four points, the elastic piece 5 Connected to the GND network, it can be pressed into contact with the pad 4, so that the MCU can detect the low-level input at this point in time to achieve the corresponding function.
  • the watch manufacturer's product solution is the sub-dial at six o'clock At the time point, just by rotating the whole movement module on the basis of the original scheme, rotate 30° counterclockwise, then remove the elastic piece 5 separately, and then re-fix it to the corresponding two points, three points and four after the rotation.
  • the dial is compatible, and no design is required for the entire assembly.
  • the movement module includes a housing. In this way, the movement of the movement module can be protected.
  • the button 6 is respectively disposed at a position at the set time point, and the button 6 is located above the movable end of the elastic piece 5.
  • the button 6 is pressed, the movable end moves downward and is welded with the corresponding time point.
  • the discs 4 are in contact. In this way, the pressing operation of the elastic piece 5 can be realized more conveniently by pressing the button.
  • the number of the shrapnel 5 and the set time point is three, respectively. In this way, it is possible to meet the functional setting requirements of the conventional electronic watch and expand the range of application of the light smart watch produced.
  • the set time points are located at time points of two, three and four points, respectively. In this way, it can meet the usage habits of most users and improve the comfort of product use.
  • the PCB main board 1 is set in a circular shape, and the land 4 is provided in a circular shape. This facilitates processing, installation and use, increasing efficiency and reducing costs.
  • the PCB main board 1 is provided with a chip IC 7 and a motor 8.
  • the motor 8 is used for product information reminding, and the chip IC 7 can realize reminding functions such as a telephone and an alarm clock.
  • a button battery 9 is disposed under the PCB main board 1. In this way, it is possible to supply power to the entire movement module.
  • FIG. 3 is a schematic diagram of a design method of a movement module of a light smart watch according to an embodiment of the present invention.
  • a method for designing a movement module of a light smart watch includes the following steps:
  • the PCB main board 1 is provided with a main gear box 2 for mounting the hands and a sub gear box 3 for mounting the sub dial, and the main gear box 2 is disposed at the center of the PCB main board 1;
  • a pad 4 is respectively disposed on the PCB main board 1 at twelve time points, and each pad 4 is connected to the micro control unit MCU5 of the light smart watch;
  • the movement module is provided with at least one elastic piece 5, one end of each elastic piece 5 is set as a movable end, and the other end is set as a fixed end, and the movable end is located above the pad 4 at the set time point, and the fixed end is fixed.
  • the sub-dial When the sub dial is mounted on the movement module, the sub-dial can be set at a desired position by rotating the PCB main board 1 of the movement module, and then the elastic piece 5 is removed from the original set time of the PCB main board 1. Re-fixing to the set time point of the rotated PCB main board 1;
  • the shrapnel 5 is connected to the common GND network.
  • the design method of the movement module of the light smart watch of the embodiment fixes the main hand pin to the center position of the watch through the main gear box 2, and then passes the sub-dial according to different product definitions through the auxiliary gear box. 3 Set any other position outside the center position, and then rotate the whole movement module to adjust the position of the sub-dial with the setting of the sub-dial; then remove the elastic piece 5, and then re-fix it to the rotated When the time is set, the dial can be compatible, and no design is required for the whole assembly.
  • the design method of the movement module of the light smart watch further comprises the following steps:
  • the movement module is provided with a casing
  • the button 6 is respectively disposed at a position at the set time point on the outer casing, and the button 6 is located above the movable end of the elastic piece 5. When the button 6 is pressed, the movable end is moved downward and welded with the corresponding time point. Disk 4 is in contact;
  • the number of the shrapnel 5 and the set time point is three;
  • the set time points are located at the time points of two, three, and four points, respectively.
  • the elastic piece 5 on the PCB main board 1 can be soldered at the position of the pad 4 corresponding to the time points of two, three, and four points.
  • the shrapnel 5 is connected to the GND network, and the shrapnel 5 is pressed to be in contact with the pad 4, so that the MCU detects that there is a low level input at this time point, and realizes the corresponding function.
  • the dial can be compatible without any design at the time of assembly.
  • the movement module of the light smart watch of the present invention and the design method thereof, the movement core module can be configured by the button 6 of the whole point, and can be adapted to the watch products with different dial designs, and has strong versatility and solution.
  • the disc 4 can flexibly configure the position of the shrapnel 5, and while adjusting the position of the sub-dial, the module cannot be assembled into the product due to the limitation of the position of the button 6, and the conventional board can be saved without saving the PCB main board 1.
  • the area and material cost saves more layout space for the movement module, thus ensuring function and performance, which can greatly shorten the product development cycle and provide an excellent solution for the rapid launch of the product.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromechanical Clocks (AREA)

Abstract

一种轻智能手表的机芯模组,包括PCB主板(1)中心处的主齿轮箱(2);PCB主板(1)上位于十二个时间点位处分别设置有一焊盘(4),每个焊盘(4)均与轻智能手表的微控制单元MCU相连接;机芯模组包括弹片(5),弹片(5)的活动端位于设定时间点位的焊盘(4)的上方,固定端可拆卸地固定在PCB主板(1)上,机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板(1),使得副表盘能设置在所需位置,将弹片(5)从PCB主板(1)的原设定时间点位拆下后焊接到旋转后的PCB主板(1)的设定时间点位上;其能针对不同厂商、不同表盘,仅通过一款设计就满足各种手表外观要求,便于开发多款产品,兼容性好、可靠性好,缩短生产周期,降低生产成本。还提供一种轻智能手表的机芯模组设计方法。

Description

一种轻智能手表的机芯模组及其设计方法
交叉引用
本申请引用于2017年5月24日提交的专利名称为“一种轻智能手表的机芯模组及其设计方法”的第201710374386.6号中国专利申请,其通过引用被全部并入本申请。
技术领域
本发明涉及手表设备技术领域,具体涉及一种轻智能手表的机芯模组及其设计方法。
背景技术
随着智能穿戴产品的快速发展,轻智能手表作为传统石英手表和智能手表之间的过渡产品因其具有在保持传统石英手表的外观效果的基础上,通过增加智能模块使产品具备智能功能的特点,其应用也越来越广泛。
现有的轻智能手表的机芯模组针对不同厂商、不同表盘难以通过一款设计满足各种手表外观要求,导致只能开发多款产品,但是仍然存在兼容性较差、生产周期较长、成本较高、可靠性较差等问题。
发明内容
本发明提供了一种轻智能手表的机芯模组及其设计方法,以解决现有技术中所存在的现有的轻智能手表的机芯模组针对不同厂商、不同表盘难以通过一款设计满足各种手表外观要求,导致只能开发多款产品,但是仍然存在兼容性较差、生产周期较长、成本较高、可靠性较差等问题。
本发明一方面提供了一种轻智能手表的机芯模组,包括PCB主板,PCB主板上设置有用于安装表针的主齿轮箱和用于安装副表盘的副齿轮箱,主齿轮箱设置在PCB主板的中心处;
PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,每个焊盘均与轻智能手表的微控制单元MCU相连接;
机芯模组还包括至少一个弹片,每个弹片的一端设置为活动端,另一端设置为固定端,活动端分别位于设定时间点位的焊盘的上方,固定端可拆卸固定在PCB主板上,机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板,使得副表盘能够设置在所需位置,然后将弹片从PCB主板的原设定时间点位拆下,再重新固定到旋转后的PCB主板的设定时间点位上;
弹片与公共端GND网络相连接。
本发明另一方面提供了一种轻智能手表的机芯模组的设计方法,包括以下步骤:
将PCB主板上设置有用于安装表针的主齿轮箱和用于安装副表盘的副齿轮箱,将主齿轮箱设置在PCB主板的中心处;
将PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,将每个焊盘均与轻智能手表的微控制单元MCU相连接;
将机芯模组设置至少一个弹片,将每个弹片的一端设置为活动端,另一端设置为固定端,将活动端位于设定时间点位的焊盘的上方,将固定端固定在PCB主板上;
在机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板,使得副表盘能够设置在所需位置,然后将弹片从PCB主板的原设定时间点位拆下,再重新固定到旋转后的PCB主板的设定时间点位上;
将弹片与公共端GND网络相连接。
本发明的有益效果是:本发明的这种轻智能手表的机芯模组,首先,通过主齿轮箱设置在PCB主板的中心处;PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,每个焊盘均与轻智能手表的微控制单元MCU相连接;这样,能够用于后续手表厂安装时针、分针,副齿轮箱、副表盘指针,以指示如运动量,日期等信息;主表针固定在手表的中心位置,而副表盘则可以依据不同的产品定义,设置在中心位置之外的其他任意位置;
其次,通过机芯模组包括弹片,弹片的一端设置为活动端,另一端设置为固定端,活动端位于设定时间点位的焊盘的上方,固定端固定在PCB主板上,机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板,使得副表盘能够设置在所需位置,然后将弹片从PCB主板的原设定时间点位拆下,再重新固定到旋转后的PCB主板的设定时间点位上;其不使用传统机械侧按键方式,因此整板面积富裕,能够较好的解决轻智能手 表因齿轮箱面积占比大,导致方案功能有限的问题;其能够配合副表盘的设定,整个模组能够通过旋转的方式,调整副表盘的位置;
再次,通过弹片与公共端GND网络相连接,以保证其智能功能。
本发明的这种轻智能手表的机芯模组的设计方法,首先,通过将PCB主板上设置有用于安装表针的主齿轮箱和用于安装副表盘的副齿轮箱,将主齿轮箱设置在PCB主板的中心处;将PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,将每个焊盘均与轻智能手表的微控制单元MCU相连接;能够将主表针固定在手表的中心位置,而副表盘则可以依据不同的产品定义,设置在中心位置之外的其他任意位置以显示多种其他功能的信息;其次,通过将机芯模组设置弹片,将弹片的一端设置为活动端,另一端设置为固定端,将活动端位于设定时间点位的焊盘的上方,将固定端固定在PCB主板上;在机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板,使得副表盘能够设置在所需位置,然后将弹片从PCB主板的原设定时间点位拆下,再重新固定到旋转后的PCB主板的设定时间点位上;能够在整表组装时不需要做任何设计变更,仅仅通过旋转机芯模组及改变弹片的焊接位置,就可满足副表盘安装兼容性的要求;其次,通过将弹片与公共端GND网络相连接,以保证轻智能手表的智能功能。
附图说明
图1是本发明一个实施例的轻智能手表的机芯模组的俯视图;
图2是本发明一个实施例的轻智能手表的机芯模组的侧视图;
图3是本发明一个实施例的轻智能手表的机芯模组的设计方法的示意图。
具体实施方式
本发明的设计构思是:本发明采用一种能够通过旋转即能够实现副表盘安装兼容性的轻智能手表的机芯模组,能够在整表组装时不需要做任何设计变更,在保证轻智能手表的智能功能的同时,较好的解决轻智能手表因齿轮箱面积占比大,导致方案功能有限的问题,使得副表盘可以依据不同的产品定义,设置在任意位置,提高其装配的兼容性。
实施例一
图1是本发明一个实施例的轻智能手表的机芯模组的俯视图;图2是本发明一个实施例的轻智能手表的机芯模组的侧视图。
参见图1和图2,该轻智能手表的机芯模组,包括PCB主板1,PCB主板1上设置有用于安装表针的主齿轮箱2和用于安装副表盘的副齿轮箱3,主齿轮箱2设置在PCB主板1的中心处;
PCB主板1上位于十二个时间点位的位置处分别设置有一焊盘4,每个焊盘4均与轻智能手表的微控制单元MCU相连接;
机芯模组还包括至少一个弹片5,每个弹片5的一端设置为活动端,另一端设置为固定端,活动端位于设定时间点位的焊盘4的上方,固定端可拆卸固定在PCB主板1上,机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板1,使得副表盘能够设置在所需位置,然后将弹片5从PCB主板1的原设定时间点位拆下,再重新固定到旋转后的PCB主板1的设定时间点位上;
弹片5与公共端GND网络相连接。
可见,本实施例的这种轻智能手表的机芯模组,主表针通过主齿轮箱2固定在手表的中心位置,而副表盘则能够依据不同的产品定义,通过副齿轮箱3设置在中心位置之外的其他任意位置,因此配合副表盘的设定,整个机芯模组能够通过旋转的方式,调整副表盘的位置。举例说明,当副表盘设定在七点的时间点位时,PCB主板1上的弹片5可以焊接在对应两点、三点和四点的时间点位的焊盘4的位置处,弹片5与GND网络相连接,其被按压后能够与焊盘4接触,从而可以使MCU检测到此时间点位有低电平输入,实现相应功能,当手表生产厂商的产品方案是副表盘在六点的时间点位时,仅仅通过将整个机芯模组在原有方案基础上,逆时针旋转30°,然后将弹片5分别拆下后,再重新固定到旋转后的对应两点、三点和四点的时间点位的焊盘4的位置处,即可实现表盘的兼容,整表组装时无需做任何设计。
实施例二
本实施例中是重点对轻智能手表的机芯模组的具体实现方式所做的说明,其他内容参见本发明的其他实施例。
机芯模组包括外壳。这样,能够对机芯模组起到保护的作用。
优选的,外壳上位于设定时间点位的位置处分别设置有按键6,按键6位于弹片5的活动端的上方,按下按键6时,活动端向下移动并与相应的时间点位的焊盘4相接触。这样,能够更加方便地通过按动按键,实现对弹片5的压下操作。
优选的,弹片5和设定时间点位的数量分别为三个。这样,能够符合传统的电子手表的功能设置需要,扩大所生产的轻智能手表的适用范围。
优选的,设定时间点位分别位于二点、三点和四点的时间点位处。这样,能够符合大多数使用者的使用习惯,提高产品使用舒适度。
优选的,PCB主板1设置为圆形,焊盘4设置为圆形。这样,方便加工和安装及使用,提高效率,降低成本。
优选的,PCB主板1上设置有芯片IC 7和马达8。这样,马达8用于产品信息提醒,配合芯片IC 7可以实现如电话、闹钟等提醒功能。
优选的,PCB主板1的下面设置有纽扣电池9。这样,能够给整个机芯模组的工作进行供电。
实施例三
图3是本发明一个实施例的轻智能手表的机芯模组的设计方法的示意图。
一种轻智能手表的机芯模组的设计方法,参见图3,包括以下步骤:
将PCB主板1上设置有用于安装表针的主齿轮箱2和用于安装副表盘的副齿轮箱3,将主齿轮箱2设置在PCB主板1的中心处;
将PCB主板1上位于十二个时间点位的位置处分别设置有一焊盘4,将每个焊盘4均与轻智能手表的微控制单元MCU5相连接;
将机芯模组设置至少一个弹片5,将每个弹片5的一端设置为活动端,另一端设置为固定端,将活动端位于设定时间点位的焊盘4的上方,将固定端固定在PCB主板1上;
在机芯模组上安装副表盘时,通过旋转机芯模组的PCB主板1,使得副表盘能够设置在所需位置,然后将弹片5从PCB主板1的原设定时间点位拆下,再重新固定到旋转后的PCB主板1的设定时间点位上;
将弹片5与公共端GND网络相连接。
可见,本实施例的这种轻智能手表的机芯模组的设计方法,将主表针通过主齿轮箱2固定在手表的中心位置,然后将副表盘则依据不同的产品定义,通过副齿轮箱3设置在中心位置之外的其他任意位置,然后配合副表盘的设定,将整个机芯模组旋转,调整副表盘的位置;然后将弹片5分别拆下后,再重新固定到旋转后的设定时间点位上,即 可实现表盘的兼容,整表组装时无需做任何设计。
实施例四
本实施例中是重点对轻智能手表的机芯模组的设计方法具体实现方式所做的说明,其他内容参见本发明的其他实施例。
该轻智能手表的机芯模组设计方法,还包括以下步骤:
将机芯模组设置有外壳;
将外壳上位于设定时间点位的位置处分别设置有按键6,将按键6位于弹片5的活动端的上方,按下按键6时,使得活动端向下移动并与相应的时间点位的焊盘4相接触;
将弹片5和设定时间点位的数量分别为三个;
将设定时间点位分别位于二点、三点和四点的时间点位处。
这样,假设将副表盘设定在七点的时间点位时,则将PCB主板1上的弹片5可以焊接在对应两点、三点和四点的时间点位的焊盘4的位置处,将弹片5与GND网络相连接,弹片5被按压后能够与焊盘4接触,使MCU检测到此时间点位有低电平输入,实现相应功能,当手表生产厂商的产品方案是副表盘在六点的时间点位时,仅将整个机芯模组在原有方案基础上,逆时针旋转30°,然后将弹片5分别拆下后,再重新固定到旋转后的对应两点、三点和四点的时间点位的焊盘4的位置处,整表组装时无需做任何设计,即可实现表盘的兼容。
本发明的轻智能手表的机芯模组及其设计方法,所述机芯模组可以通过整点位的按键6配置,可以适配不同表盘设计的手表产品,具有极强的通用性,解决了不同厂商、不同外观要求,机芯模组无法通用的行业难题,为模组厂提供了极好的解决方案,其节省物料成本,可靠稳定;其通过在十二个时间点位设置的焊盘4,可以灵活配置弹片5的位置,在调整副表盘位置的同时,不会因按键6位置的限制,造成模组无法装配到产品中,且其不使用传统按键,能够节省PCB主板1的面积和物料成本,为机芯模组节省更多布板空间,从而保证功能和性能,其能够极大缩短产品开发周期,为产品快速上市提供极好的方案保证。
以上仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。凡在本发明的精神和原则之内所作的任何修改、等同替换、改进等,均包含在本发明的保护范围内。

Claims (10)

  1. 一种轻智能手表的机芯模组,包括PCB主板,所述PCB主板上设置有用于安装表针的主齿轮箱和用于安装副表盘的副齿轮箱,其特征在于,所述主齿轮箱设置在所述PCB主板的中心处;
    所述PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,每个所述焊盘均与所述轻智能手表的微控制单元MCU相连接;
    所述机芯模组还包括至少一个弹片,每个所述弹片的一端设置为活动端,另一端设置为固定端,所述活动端位于设定时间点位的所述焊盘的上方,所述固定端可拆卸固定在所述PCB主板上,所述机芯模组上安装副表盘时,通过旋转所述机芯模组的所述PCB主板,使得副表盘能够设置在所需位置,然后将所述弹片从所述PCB主板的原所述设定时间点位拆下,再重新固定到旋转后的所述PCB主板的所述设定时间点位上;
    所述弹片与公共端GND网络相连接。
  2. 如权利要求1所述的轻智能手表的机芯模组,其特征在于,所述机芯模组还包括外壳。
  3. 如权利要求2所述的轻智能手表的机芯模组,其特征在于,所述外壳上位于所述设定时间点位的位置处分别设置有按键,所述按键位于所述弹片的所述活动端的上方,按下所述按键时,所述活动端向下移动并与相应的所述设定时间点位的所述焊盘相接触。
  4. 如权利要求3所述的轻智能手表的机芯模组,其特征在于,所述弹片和所述设定时间点位的数量分别为三个。
  5. 如权利要求4所述的轻智能手表的机芯模组,其特征在于,所述设定时间点位分别位于二点、三点和四点的所述时间点位处。
  6. 如权利要求1-5中任一项所述的轻智能手表的机芯模组,其特征在于,所述PCB主板设置为圆形,所述焊盘设置为圆形。
  7. 如权利要求1-5中任一项所述的轻智能手表的机芯模组,其特征在于,所述PCB主板上设置有芯片IC和马达。
  8. 如权利要求1-5中任一项所述的轻智能手表的机芯模组,其特征在于, 所述PCB主板的下面设置有纽扣电池。
  9. 一种轻智能手表的机芯模组设计方法,其特征在于,包括以下步骤:
    将所述PCB主板上设置有用于安装表针的主齿轮箱和用于安装副表盘的副齿轮箱,将所述主齿轮箱设置在所述PCB主板的中心处;
    将所述PCB主板上位于十二个时间点位的位置处分别设置有一焊盘,将每个所述焊盘均与所述轻智能手表的微控制单元MCU相连接;
    将所述机芯模组设置至少一个弹片,每个将所述弹片的一端设置为活动端,另一端设置为固定端,将所述活动端位于设定时间点位的所述焊盘的上方,将所述固定端固定在所述PCB主板上;
    在所述机芯模组上安装副表盘时,通过旋转所述机芯模组的所述PCB主板,使得副表盘能够设置在所需位置,然后将所述弹片从所述PCB主板的原所述设定时间点位拆下,再重新固定到旋转后的所述PCB主板的所述设定时间点位上;
    将所述弹片与公共端GND网络相连接。
  10. 如权利要求9所述的设计方法,其特征在于,还包括以下步骤:
    将所述机芯模组设置有外壳;
    将所述外壳上位于所述设定时间点位的位置处分别设置有按键,将所述按键位于所述弹片的所述活动端的上方,按下所述按键时,使得所述活动端向下移动并与相应的所述设定时间点位的所述焊盘相接触;
    将所述弹片和所述设定时间点位的数量分别为三个;
    将所述设定时间点位分别位于二点、三点和四点的所述时间点位处。
PCT/CN2017/118737 2017-05-24 2017-12-26 一种轻智能手表的机芯模组及其设计方法 WO2018214500A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710374386.6A CN107024853B (zh) 2017-05-24 2017-05-24 一种轻智能手表的机芯模组及其设计方法
CN201710374386.6 2017-05-24

Publications (1)

Publication Number Publication Date
WO2018214500A1 true WO2018214500A1 (zh) 2018-11-29

Family

ID=59529256

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/118737 WO2018214500A1 (zh) 2017-05-24 2017-12-26 一种轻智能手表的机芯模组及其设计方法

Country Status (2)

Country Link
CN (1) CN107024853B (zh)
WO (1) WO2018214500A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107024853B (zh) * 2017-05-24 2023-01-17 歌尔科技有限公司 一种轻智能手表的机芯模组及其设计方法

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3780517A (en) * 1972-11-07 1973-12-25 M Ajrulahi Chime battery clock with adjusting wheel for adjusting the movement thereof
CN1040274A (zh) * 1988-06-17 1990-03-07 精工爱普生株式会社 多功能电子表
CN101198911A (zh) * 2005-06-17 2008-06-11 天美时集团公司 通用电子设备模块的构造
CN104142621A (zh) * 2013-05-06 2014-11-12 巨擘科技股份有限公司 腕表结构、腕表用的电子旋钮以及显示器型腕表
CN107024853A (zh) * 2017-05-24 2017-08-08 歌尔科技有限公司 一种轻智能手表的机芯模组及其设计方法
CN206975417U (zh) * 2017-05-24 2018-02-06 歌尔科技有限公司 一种轻智能手表的机芯模组

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202433698U (zh) * 2011-12-22 2012-09-12 林立榕 一种带复位功能的led手表
CN203838481U (zh) * 2014-05-19 2014-09-17 魏正鹏 一种智能时钟
CN204086833U (zh) * 2014-09-26 2015-01-07 陈玉水 一种具有智能模块和机械机芯的复合手表
CN105810489B (zh) * 2015-08-24 2017-10-24 张一帆 有限空间内实现转动与按压组合操作界面的设备及方法
CN205750317U (zh) * 2016-04-01 2016-11-30 深圳欧德蒙科技有限公司 一种智能机芯、智能手表和齿轮组驱动波测试装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3780517A (en) * 1972-11-07 1973-12-25 M Ajrulahi Chime battery clock with adjusting wheel for adjusting the movement thereof
CN1040274A (zh) * 1988-06-17 1990-03-07 精工爱普生株式会社 多功能电子表
CN101198911A (zh) * 2005-06-17 2008-06-11 天美时集团公司 通用电子设备模块的构造
CN104142621A (zh) * 2013-05-06 2014-11-12 巨擘科技股份有限公司 腕表结构、腕表用的电子旋钮以及显示器型腕表
CN107024853A (zh) * 2017-05-24 2017-08-08 歌尔科技有限公司 一种轻智能手表的机芯模组及其设计方法
CN206975417U (zh) * 2017-05-24 2018-02-06 歌尔科技有限公司 一种轻智能手表的机芯模组

Also Published As

Publication number Publication date
CN107024853B (zh) 2023-01-17
CN107024853A (zh) 2017-08-08

Similar Documents

Publication Publication Date Title
US9223296B2 (en) Wristwatch structure, electronic crown for wristwatch, and wristwatch having display
US9256209B2 (en) Wristwatch structure, electronic core for wristwatch, and method for manufacturing wristwatch
WO2018214500A1 (zh) 一种轻智能手表的机芯模组及其设计方法
CN103293939A (zh) 一种磁指示手表
CN202995285U (zh) 带lcd显示屏的指针手表
Zheng et al. The Design of Hearing and hypnosis all-in-one Machine
CN104361803A (zh) 一种基于万年历温湿度计单片机教学实训系统
JP2566310Y2 (ja) アナログ時計のモジュール構造
CN206975417U (zh) 一种轻智能手表的机芯模组
CN102253642A (zh) 多功能电子钟
CN205080374U (zh) 一种双层智能手表
CN105022254B (zh) 一种智能手表及其触摸组件
CN205006121U (zh) 一种儿童智能手表
CN204406044U (zh) 一种蓝牙手表
CN204613599U (zh) 包括表盘的电动机械表或数字表
CN208421546U (zh) 一种具有动感的led电子手表
CN220323744U (zh) 一种组合式的穿戴手表液晶显示模组
CN219162551U (zh) 一种解压电子钟
CN210626888U (zh) 一种悬浮指针手表
CN207992711U (zh) 闹钟装置
CN219533649U (zh) 一种供电子钟使用的万能外壳结构
CN2554666Y (zh) 带有独立整体式附加功能机构的手表机芯
CN202126584U (zh) 录音手表
JPS593463Y2 (ja) デジタル電子時計用プツシユボタン
CN208399907U (zh) 一种混动轮子同步手表机芯

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17910913

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17910913

Country of ref document: EP

Kind code of ref document: A1