WO2021036732A1 - 电子设备 - Google Patents
电子设备 Download PDFInfo
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- WO2021036732A1 WO2021036732A1 PCT/CN2020/107402 CN2020107402W WO2021036732A1 WO 2021036732 A1 WO2021036732 A1 WO 2021036732A1 CN 2020107402 W CN2020107402 W CN 2020107402W WO 2021036732 A1 WO2021036732 A1 WO 2021036732A1
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- key
- position state
- electronic device
- key module
- module
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H13/00—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
- H01H13/02—Details
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H13/00—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
- H01H13/02—Details
- H01H13/12—Movable parts; Contacts mounted thereon
- H01H13/14—Operating parts, e.g. push-button
Definitions
- the present disclosure relates to the technical field of communication devices, and in particular to an electronic device.
- Electronic equipment has become one of the indispensable electronic products in people's daily life. It not only undertakes the important function of daily communication, but also meets people's increasing entertainment needs. For example, the user can download game software, and perform various actions during the game through the physical buttons of the electronic device or the touch operation on the display screen of the electronic device.
- a side button can be added to the electronic device, and the user's index finger can touch the side button to implement corresponding actions through the side button.
- the above-mentioned side buttons are generally arranged in a hidden structure, and it is not easy for the user to find the side buttons when using the side buttons, resulting in the side buttons being difficult to be triggered.
- the present disclosure provides an electronic device to solve the problem that keys are not easily triggered.
- An electronic device including:
- a housing, the housing is provided with a button groove
- a key module the key module is hinged to the key groove, and the key module includes an operating part, and the operating part is provided with a key signal input part;
- the key module is rotated relative to the housing between a first position state and a second position state.
- the key module In the first position state, the key module is located in the key groove, and in the second position state.
- the operating part In the position state, the operating part is located outside the key groove.
- the key module can rotate relative to the housing between a first position state and a second position state.
- the first position state the entire key module is located in the key groove, so that the key module is in the In the hidden state, in the second position state, the operating part of the key module is located outside the key slot. Therefore, when the user needs to use the button module, the button module can be in the second position state. At this time, the operating part of the key module protrudes relative to the housing, and it is easier for the user to find the key module, so the key module is easier to be triggered.
- FIG. 1 is a schematic diagram of an electronic device disclosed in an embodiment of the disclosure when the key module is in a second position;
- FIG. 2 is a cross-sectional view of a part of the structure of the electronic device disclosed in an embodiment of the disclosure when the key module is in a first position state;
- FIG 3 is a cross-sectional view of a part of the structure of the electronic device disclosed in an embodiment of the disclosure when the key module is in a second position state.
- the embodiments of the present disclosure disclose an electronic device.
- the electronic device may specifically include a housing 100 and a button module 200.
- the housing 100 is an installation foundation of the components included in the electronic device, and the housing 100 is provided with a key groove 110.
- the housing 100 may include a frame 120, and a part of the outer surface of the frame 120 is recessed to form a key groove 110.
- the key module 200 can be used as one of the structures for the electronic device to interact with the user.
- the key module 200 can be hinged to the key slot 110. Specifically, the key module 200 can be hinged to the housing 100 through the shaft 300.
- the key module 200 includes an operating part 210, which is provided with a key signal input part, where the key signal input part may be a physical key, and the physical key can move relative to the main part of the operating part 210 after being forced. Trigger the key signal. The user can press the operating part 210 to input a key signal, so that the electronic device can control the state of other components through the key signal.
- the key module 200 here may specifically be a side key module.
- the above-mentioned key module 200 can rotate relative to the housing 100 between a first position state and a second position state.
- the key module 200 In the first position state, the key module 200 is located in the key groove 110, at this time the key module 200 may be in a non-working state; in the second position state, the operating portion 210 of the key module 200 is located outside the key groove 110.
- the rotation of the key module 200 relative to the housing 100 can be realized by a driving motor or the like, or can be realized manually by the user.
- the button module 200 in a hidden state to meet the appearance requirements of the electronic device and protect the button module 200.
- the user can operate the button module 200. Therefore, when the user needs to use the key module 200, the key module 200 can be placed in the second position state. At this time, the operating portion 210 of the key module 200 protrudes relative to the housing 100, and it is easier for the user to find the key module 200, so the key module 200 is easier to be triggered.
- the tactile sensation is more obvious, so the user can accurately perceive the button module 200 without constantly confirming the position of the button module 200, so that the user has a better experience when using the electronic device.
- the user's index finger can be placed on the key module 200 more conveniently, and then the corresponding key signal can be input.
- the electronic device further includes an elastic member 400, one end of the elastic member 400 is connected to the housing 100, and the other end of the elastic member 400 is connected to the key module 200.
- the elastic member 400 may be a spring.
- the elastic member 400 In the first position state, the elastic member 400 is in a deformed state, so it can apply a force to the housing 100. Under the action of the elastic member 400, the key module 200 abuts against the first edge of the key groove 110, and then remains there. The first position state.
- the elastic member 400 In the second position state, the elastic member 400 is also in a deformed state, so it can apply a force to the key module 200, and the key module 200 abuts against the second edge of the key groove 110 under the action of the elastic member 400, thereby maintaining In the second position.
- both the first edge and the second edge here are the boundaries of the key groove 110, and both face the key module 200 to limit the position of the key module 200 relative to the housing 100.
- one end of the above-mentioned elastic member 400 is hinged with the housing 100, and the other end of the elastic member 400 is hinged with the key module 200, so that the position of the elastic member 400 relative to the housing 100 and the key module 200 can be changed at any time.
- the rotation of the key module 200 changes, thereby preventing the elastic member 400 from being deformed laterally and shortening its service life.
- the surface where the hinge joint between the elastic member 400 and the housing 100 and the rotation axis of the key module 200 is located is the first surface. In the first position state, the hinge joint between the elastic member 400 and the key module 200 is located on the first surface.
- the hinge joint between the elastic member 400 and the key module 200 is located on the other side of the first surface.
- the elastic member 400 may be in a compressed state.
- the elastic member 400 The amount of compression first increases and then decreases, so that the elastic member 400 can reliably limit the rotation of the elastic member 400 in both the first position state and the second position state.
- the key module 200 may further include a rotating base 220, the rotating base 220 can be hinged to the housing 100 through the rotating shaft 300, and the aforementioned operating portion 210 is provided on the rotating base 220, so the rotating base 220 can be The operating part 210 is driven to rotate relative to the housing 100, thereby realizing the state switching of the key module 200.
- the key slot 110 is provided with a first arc-shaped surface 111
- the outer surface of the rotating base 220 is provided with a second arc-shaped surface 230 that matches the first arc-shaped surface 111.
- the center of the first arc-shaped surface 111, the center of the second arc-shaped surface 230, and the rotation center of the rotation base 220 are all located on the same straight line.
- the gap between the first arc-shaped surface 111 and the second arc-shaped surface 230 remains basically unchanged. Therefore, when designing the structure of the electronic device, the gap between the first arc-shaped surface 111 and the second arc-shaped surface 230 The gap is set as small as possible to prevent impurities in the external environment from entering the gap, thereby optimizing the smoothness of the key module 200 when rotating, and improving the appearance and texture of the electronic device.
- the key groove 110 is further provided with a first plane 112 which is connected to the first arc-shaped surface 111, and the outer surface of the operating portion 210 is provided with a second plane 240 adapted to the first plane 112 ,
- the second plane 240 is connected to the second arc-shaped surface 230.
- the first curved surface 111 faces the second curved surface 230
- the first plane 112 faces the second plane 240
- the second plane 240 is located outside the key groove 110.
- this structure can appropriately increase the size of the key module 200, so that the operating part 210 of the key module 200 is larger.
- the operating part 210 When the key module 200 is in the first position, the operating part 210 is easier for the user to find; on the other hand, On the one hand, the size of the operating portion 210 is not too large, so that the key module 200 occupies a smaller space.
- the first plane 112 may be parallel to the second plane 240.
- a first magnetic member 510 may be provided on the key module 200 and a second magnetic member 520 may be provided on the housing 100. Both the first magnetic member 510 and the second magnetic member 520 may be magnets.
- the first magnetic member 510 and the second magnetic member 520 are magnetically connected, so that the key module 200 and the housing 100 are not easy to rotate relative to each other, even if the key module 200 is in an unexpected situation (that is, there is no need to use the key module In the state of 200), it is not easy to rotate relative to the housing 100 under the action of external force, so that the key module 200 can be kept in the hidden state more reliably.
- the first magnetic member 510 and the second magnetic member 520 are magnetically connected, so that the key module 200 and the housing 100 are not easy to rotate relative to each other, even if the user presses the key signal input part to apply the key module 200
- the force of the button module 200 is slightly larger, and the key module 200 is not easy to rotate relative to the housing 100, so as to enhance the user's experience when using the electronic device.
- the number of the above-mentioned second magnetic member 520 may be one, or two or more. In order to enable the key module 200 to be more stably maintained in more positions relative to the housing 100, the number of the second magnetic members 520 may be at least two, and the second magnetic members 520 are arranged at intervals. In the first position state, the first magnetic member 510 is magnetically connected to one of the second magnetic members 520, and in the second position state, the first magnetic member 510 is magnetically connected to the other second magnetic member 520. After being arranged in this way, the key module 200 can stably maintain its position relative to the housing 100 in both the first position state and the second position state.
- the aforementioned key signal input unit may include a sensor 600 for sensing the pressing signal and generating the key signal.
- the sensor 600 may be a capacitive pressure sensor. In the first position state, the sensor 600 is located in the button groove 110, and the housing 100 shields the sensor 600; in the second position state, the sensor 600 is located outside the button groove 110.
- the sensor 600 It can sense the pressing signal and generate a key signal, and make the electronic device control the state of other parts according to the key signal.
- the number of the aforementioned key module 200 may be one, or two or more. When the number of key modules 200 is at least two, two of the key modules 200 are distributed at both ends of the housing 100, so that both of the user's hands can press the key module 200. When the user holds the electronic device laterally, the user's left index finger and right index finger respectively press the two key modules 200 to simultaneously output more key signals.
- the function of the key module 200 may not be limited to inputting key signals.
- a light-emitting device may be provided on the key module 200, and the light-emitting device may specifically be a fill light, an ambient light, or other devices with a light-emitting function.
- the fill light on the button module 200 can be used to fill light; when the user uses the electronic device to play a game, the ambient light on the button module 200 can emit specific light, making the user experience better Great.
- other components can also be integrated on the key module 200 to make the functions of the key module 200 more diversified.
- the electronic device disclosed in the embodiment of the present disclosure may be a smart phone, a tablet computer, an e-book reader, or a wearable device.
- the electronic device may also be other devices, which is not limited in the embodiments of the present disclosure.
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Abstract
本公开提供一种电子设备,其包括:壳体,所述壳体设有按键槽;按键模组,所述按键模组铰接于所述按键槽,且所述按键模组包括操作部,所述操作部设有按键信号输入部;所述按键模组相对于所述壳体在第一位置态和第二位置态之间转动,在所述第一位置态,所述按键模组位于所述按键槽内,在所述第二位置态,所述操作部位于所述按键槽之外。当用户需要使用按键模组时,使按键模组处于第二位置态即可。此时,按键模组的操作部相对于壳体凸出,用户更容易找到按键模组,因此该按键模组更容易被触发。
Description
相关申请的交叉引用
本申请主张在2019年8月23日在中国提交的中国专利申请号No.201910783823.9的优先权,其全部内容通过引用包含于此。
本公开涉及通信设备技术领域,尤其涉及一种电子设备。
电子设备已经成为人们日常生活中不可或缺的电子产品之一,其不仅担负着日常通信联络的重要功能,还可以满足人们日渐增加的娱乐需求。例如,用户可以下载游戏软件,通过电子设备的实体按键或者在电子设备的显示屏上实施触控操作,即可完成游戏过程中的各种动作。
通常,为了获得更好的操作体验,用户经常会横向握持电子设备。并且,为了使用户在游戏过程中可以同时实现多种操作,电子设备上可以增加侧按键,用户的食指可以接触该侧按键,以通过该侧按键实施对应的动作。
然而,为了满足电子设备的美观性要求,上述侧按键一般设置为隐藏式结构,用户使用该侧按键时不容易找到该侧按键,导致该侧按键不容易被触发。
发明内容
本公开提供一种电子设备,以解决按键不容易被触发的问题。
为了解决上述问题,本公开采用下述技术方案:
一种电子设备,包括:
壳体,所述壳体设有按键槽;
按键模组,所述按键模组铰接于所述按键槽,且所述按键模组包括操作部,所述操作部设有按键信号输入部;
所述按键模组相对于所述壳体在第一位置态和第二位置态之间转动,在 所述第一位置态,所述按键模组位于所述按键槽内,在所述第二位置态,所述操作部位于所述按键槽之外。
本公开采用的技术方案能够达到以下有益效果:
本公开提供的电子设备中,按键模组可以相对于壳体在第一位置态和第二位置态之间转动,在第一位置态,整个按键模组位于按键槽内,使得按键模组处于隐藏状态,在第二位置态,按键模组的操作部位于按键槽之外。因此,当用户需要使用按键模组时,使按键模组处于第二位置态即可。此时,按键模组的操作部相对于壳体凸出,用户更容易找到按键模组,因此该按键模组更容易被触发。
此处所说明的附图用来提供对本公开的进一步理解,构成本公开的一部分,本公开的示意性实施例及其说明用于解释本公开,并不构成对本公开的不当限定。在附图中:
图1为本公开实施例公开的电子设备在按键模组处于第二位置态时的示意图;
图2为本公开实施例公开的电子设备的部分结构在按键模组处于第一位置态时的剖视图;
图3为本公开实施例公开的电子设备的部分结构在按键模组处于第二位置态时的剖视图。
附图标记说明:
100-壳体、110-按键槽、111-第一弧形面、112-第一平面、120-边框、200-按键模组、210-操作部、220-转动基部、230-第二弧形面、240-第二平面、300-转轴、400-弹性件、510-第一磁性件、520-第二磁性件、600-传感器。
为使本公开的目的、技术方案和优点更加清楚,下面将结合本公开具体实施例及相应的附图对本公开技术方案进行清楚、完整地描述。显然,所描述的实施例仅是本公开一部分实施例,而不是全部的实施例。基于本公开中 的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
以下结合附图,详细说明本公开各个实施例公开的技术方案。
如图1-图3所示,本公开实施例公开一种电子设备,该电子设备具体可以包括壳体100和按键模组200。壳体100是电子设备所包含的零部件的安装基础,该壳体100设有按键槽110。具体实施例中,壳体100可以包括边框120,该边框120的部分外表面凹陷形成按键槽110。按键模组200可以作为电子设备与用户进行交互的结构之一,该按键模组200可以铰接于按键槽110,具体地,按键模组200可以通过转轴300与壳体100铰接。该按键模组200包括操作部210,该操作部210设有按键信号输入部,这里的按键信号输入部可以是物理按键,该物理按键受力后可以相对于操作部210的主体部分移动,从而触发按键信号。用户可以按压该操作部210,进而输入按键信号,以便于电子设备通过该按键信号控制其他零部件的状态。这里的按键模组200具体可以是侧按键模组。
上述按键模组200可以相对于壳体100在第一位置态和第二位置态之间转动。在第一位置态,按键模组200位于按键槽110内,此时按键模组200可以处于非工作状态;在第二位置态,按键模组200的操作部210位于按键槽110之外。可选地,按键模组200相对于壳体100的转动可以通过驱动电机等实现,也可以用户手动实现。
由上述内容可知,在第一位置态,按键模组200处于隐藏状态,以满足电子设备的外观需求,并且保护该按键模组200,在第二位置态,用户可以操作按键模组200。因此,当用户需要使用按键模组200时,使按键模组200处于第二位置态即可。此时,按键模组200的操作部210相对于壳体100凸出,用户更容易找到按键模组200,因此该按键模组200更容易被触发。当用户使用该按键模组200时,触感更加明显,因此用户可以准确感知该按键模组200,不需要不断确认按键模组200的位置,使得用户使用电子设备时的体验更好。尤其当用户横向握持电子设备时,用户的食指可以更加方便地放置到按键模组200上,进而输入对应的按键信号。
进一步地,电子设备还包括弹性件400,该弹性件400的一端与壳体100 连接,该弹性件400的另一端与按键模组200连接。可选地,该弹性件400可以是弹簧。在第一位置态,弹性件400处于变形状态,因此其可以向壳体100施加作用力,按键模组200在弹性件400的作用下与按键槽110的第一边沿抵靠,进而保持在该第一位置态。在第二位置态,弹性件400同样处于变形状态,因此其可以向按键模组200施加作用力,按键模组200在弹性件400的作用下与按键槽110的第二边沿抵靠,进而保持在第二位置态。需要说明的是,这里的第一边沿和第二边沿均是按键槽110的边界,两者均朝向按键模组200,以限制按键模组200相对于壳体100的位置。
可选的实施例中,上述弹性件400的一端与壳体100铰接,弹性件400的另一端与按键模组200铰接,使得弹性件400相对于壳体100和按键模组200的位置可以随着按键模组200的转动发生变化,进而防止弹性件400发生横向变形而缩短其使用寿命。此时,弹性件400与壳体100的铰接处和按键模组200的转动轴线所在的面为第一面,在第一位置态,弹性件400与按键模组200的铰接处位于第一面的一侧,在第二位置态,弹性件400与按键模组200的铰接处位于第一面的另一侧。可选地,在第一位置态和第二位置态,弹性件400均可以处于被压缩的状态,当按键模组200在第一位置态和第二位置态之间转动时,弹性件400的压缩量先增加再减小,使得弹性件400在第一位置态和第二位置态均可以可靠地限制弹性件400的转动。
可选地,按键模组200还可以包括转动基部220,该转动基部220可以通过转轴300与壳体100铰接,且前文所述的操作部210设置于该转动基部220上,因此转动基部220可以带动操作部210相对于壳体100转动,进而实现按键模组200的状态切换。为了使得电子设备的结构更加紧凑,按键槽110设有第一弧形面111,转动基部220的外表面设有与第一弧形面111相适配的第二弧形面230。进一步地,第一弧形面111的圆心、第二弧形面230的圆心以及转动基部220的转动中心(该转动中心位于转轴300的转动轴线上)均位于同一直线上,当按键模组200转动时,第一弧形面111和第二弧形面230之间的间隙基本保持不变,因此设计电子设备的结构时,可以将第一弧形面111和第二弧形面230之间的间隙设置得尽量小,以防止外部环境中的杂质进入该间隙内,从而优化按键模组200转动时的流畅性,同时可以 提升电子设备的外观质感。
更进一步地,按键槽110还设有第一平面112,该第一平面112与第一弧形面111相连,操作部210的外表面设有与第一平面112相适配的第二平面240,该第二平面240与第二弧形面230相连。在第一位置态,第一弧形面111朝向第二弧形面230,第一平面112朝向第二平面240;在第二位置态,第二平面240位于按键槽110之外。此种结构一方面可以适当增加按键模组200的尺寸,使得按键模组200的操作部210更大,当按键模组200处于第一位置态时,操作部210更容易被用户找到;另一方面,操作部210的尺寸不会过大,从而使得按键模组200占用的空间更小。可选地,在第一位置态,第一平面112可以平行于第二平面240。
为了使按键模组200可以更稳定地保持在第一位置态和第二位置态,可以在按键模组200上设有第一磁性件510,壳体100上设有第二磁性件520。这里的第一磁性件510和第二磁性件520均可以是磁铁。在第一位置态,第一磁性件510与第二磁性件520磁性相连,使得按键模组200和壳体100不容易相对转动,即使按键模组200在意外情况(即不需要使用按键模组200的状态)下受到外力作用也不容易相对于壳体100转动,使得按键模组200可以更可靠地保持在隐藏状态。或者,在第二位置态,第一磁性件510与第二磁性件520磁性相连,使得按键模组200和壳体100不容易相对转动,即使用户按压按键信号输入部时向按键模组200施加的作用力稍大,按键模组200也不容易相对于壳体100转动,以此提升用户使用电子设备时的体验。
上述第二磁性件520的数量可以是一个,也可以是两个甚至更多个。为了使按键模组200可以相对于壳体100更稳定地保持在更多位置,第二磁性件520的数量可以为至少两个,各第二磁性件520间隔排布。在第一位置态,第一磁性件510与其中一个第二磁性件520磁性相连,在第二位置态,第一磁性件510与另一个第二磁性件520磁性相连。如此设置后,按键模组200在第一位置态和第二位置态下均可以稳定地保持其相对于壳体100的位置。
为了更准确地感应用户施加的按压信号,前文所述的按键信号输入部可以包括传感器600,该传感器600用于感应按压信号并生成按键信号。具体地,该传感器600可以是电容式压力传感器。在第一位置态,传感器600位 于按键槽110内,此时壳体100遮挡该传感器600;在第二位置态,传感器600位于按键槽110之外,当用户按压按键模组200时,传感器600可以感应到按压信号并生成按键信号,并使电子设备根据该按键信号控制其他零部件的状态。
上述按键模组200的数量可以是一个,也可以是两个甚至更多个。当按键模组200的数量为至少两个时,其中两个按键模组200分布在壳体100的两端,使得用户的双手都可以按压该按键模组200。当用户横向握持电子设备时,用户的左手食指和右手食指分别按压两个按键模组200,以此同时输出更多的按键信号。
上述各实施例中,按键模组200的功能可以不限于输入按键信号。可选地,可以在按键模组200上设有发光器件,该发光器件具体可以是补光灯、氛围灯或者其他具有发光功能的器件。当电子设备进行拍摄操作时,按键模组200上的补光灯可以进行补光;当用户使用该电子设备打游戏时,按键模组200上的氛围灯可以发出特定的光线,使得用户体验更好。当然,按键模组200上还可以集成其他元器件,使得按键模组200的功能更多样化。
本公开实施例所公开的电子设备可以为智能手机、平板电脑、电子书阅读器或可穿戴设备。当然,该电子设备也可以是其他设备,本公开实施例对此不做限制。
本公开上文实施例中重点描述的是各个实施例之间的不同,各个实施例之间不同的优化特征只要不矛盾,均可以组合形成更优的实施例,考虑到行文简洁,在此则不再赘述。
以上所述仅为本公开的实施例而已,并不用于限制本公开。对于本领域技术人员来说,本公开可以有各种更改和变化。凡在本公开的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本公开的权利要求范围之内。
Claims (11)
- 一种电子设备,包括:壳体(100),所述壳体(100)设有按键槽(110);按键模组(200),所述按键模组(200)铰接于所述按键槽(110),且所述按键模组(200)包括操作部(210),所述操作部(210)设有按键信号输入部;所述按键模组(200)相对于所述壳体(100)在第一位置态和第二位置态之间转动,在所述第一位置态,所述按键模组(200)位于所述按键槽(110)内,在所述第二位置态,所述操作部(210)位于所述按键槽(110)之外。
- 根据权利要求1所述的电子设备,其中,所述电子设备还包括弹性件(400),所述弹性件(400)的一端与所述壳体(100)连接,所述弹性件(400)的另一端与所述按键模组(200)连接,在所述第一位置态,所述按键模组(200)在所述弹性件(400)的作用下与所述按键槽(110)的第一边沿抵靠,在所述第二位置态,所述按键模组(200)在所述弹性件(400)的作用下与所述按键槽(110)的第二边沿抵靠。
- 根据权利要求2所述的电子设备,其中,所述弹性件(400)的一端与所述壳体(100)铰接,所述弹性件(400)的另一端与所述按键模组(200)铰接,所述弹性件(400)与所述壳体(100)的铰接处和所述按键模组(200)的转动轴线所在的面为第一面,在所述第一位置态,所述弹性件(400)与所述按键模组(200)的铰接处位于所述第一面的一侧,在所述第二位置态,所述弹性件(400)与所述按键模组(200)的铰接处位于所述第一面的另一侧。
- 根据权利要求1所述的电子设备,其中,所述按键模组(200)还包括转动基部(220),所述转动基部(220)与所述壳体(100)铰接,所述操作部(210)设置于所述转动基部(220)上,所述按键槽(110)设有第一弧形面(111),所述转动基部(220)的外表面设有与所述第一弧形面(111)相适配的第二弧形面(230)。
- 根据权利要求4所述的电子设备,其中,所述第一弧形面(111)的圆心、所述第二弧形面(230)的圆心以及所述转动基部(220)的转动中心 均位于同一直线上。
- 根据权利要求4所述的电子设备,其中,所述按键槽(110)还设有第一平面(112),所述第一平面(112)与所述第一弧形面(111)相连,所述操作部(210)的外表面设有第二平面(240),所述第二平面(240)与所述第二弧形面(230)相连,在所述第一位置态,所述第一弧形面(111)朝向所述第二弧形面(230),所述第一平面(112)朝向所述第二平面(240),在所述第二位置态,所述第二平面(240)位于所述按键槽(110)之外。
- 根据权利要求1所述的电子设备,其中,所述按键模组(200)上设有第一磁性件(510),所述壳体(100)上设有第二磁性件(520),在所述第一位置态,所述第一磁性件(510)与所述第二磁性件(520)磁性相连,或者,在所述第二位置态,所述第一磁性件(510)与所述第二磁性件(520)磁性相连。
- 根据权利要求7所述的电子设备,其中,所述第二磁性件(520)的数量为至少两个,各所述第二磁性件(520)间隔排布,在所述第一位置态,所述第一磁性件(510)与其中一个所述第二磁性件(520)磁性相连,在所述第二位置态,所述第一磁性件(510)与另一个所述第二磁性件(520)磁性相连。
- 根据权利要求1所述的电子设备,其中,所述按键信号输入部包括传感器(600),所述传感器(600)用于感应按压信号并生成按键信号,在所述第一位置态,所述传感器(600)位于所述按键槽(110)内,在所述第二位置态,所述传感器(600)位于所述按键槽(110)之外。
- 根据权利要求1所述的电子设备,其中,所述按键模组(200)的数量为至少两个,其中两个所述按键模组(200)分布在所述壳体(100)的两端。
- 根据权利要求1所述的电子设备,其中,所述按键模组(200)上设有发光器件,在所述第二位置态,所述发光器件位于所述按键槽(110)之外。
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