TW202205065A - Adjustable mouse structure - Google Patents

Adjustable mouse structure Download PDF

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TW202205065A
TW202205065A TW109123804A TW109123804A TW202205065A TW 202205065 A TW202205065 A TW 202205065A TW 109123804 A TW109123804 A TW 109123804A TW 109123804 A TW109123804 A TW 109123804A TW 202205065 A TW202205065 A TW 202205065A
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unit
module
movable
housing
mouse structure
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TW109123804A
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TWI756740B (en
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羅仁陽
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威剛科技股份有限公司
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Abstract

Disclosed is an adjustable mouse structure, including a base module, a housing module and a deformation module. The base module is provided with an opening. The housing module can be detachably disposed on the base module, an accommodating space is defined between the housing module and the base module, and the housing module is provided with a plurality of movable openings arranged oppositely. The deformation module includes a driving unit, a transmission unit and a movable unit. The driving unit is located in the accommodating space, and a part of the body of the driving unit is located in the opening. The transmission unit is arranged in the accommodating space and connected to the driving unit. The movable unit is located on the housing module. The movable unit is provided with a plurality of support parts, each of which is penetrated through the corresponding movable port and connected to the transmission unit. When the driving unit is driven by an external force and rotates in a first direction, the transmission unit is driven by the driving unit to drive the movable unit to move toward a first orientation, so that the adjustable mouse structure is deformed from a first body to a second body. By means of the manner, the adjustable mouse structure can achieve the effect of adjusting the size of the body.

Description

可調式滑鼠結構Adjustable mouse structure

本發明關於一種滑鼠結構,特別是關於一種可調整形體大小的可調式滑鼠結構。The present invention relates to a mouse structure, in particular to an adjustable mouse structure with adjustable body size.

隨著科技的發展,電腦已與我們的工作及生活密不可分,因此,用於連接電腦設備的輸入裝置扮演了十分重要的角色。滑鼠,其作為一種普遍應用於電腦設備的輸入裝置,可代替繁瑣的指令語言而提供使用者快速靈活地操縱電腦。With the development of technology, computers have become inseparable from our work and life. Therefore, input devices used to connect computer equipment play a very important role. A mouse, as an input device commonly used in computer equipment, can replace the complicated command language and provide users with fast and flexible manipulation of the computer.

然而,由於每一個人手掌的大小都不盡相同,因此,同一種款式、大小的滑鼠只能滿足一部份的使用者的手握感,而無法確切適合每一個人的需求,使得同一個家庭或工作場所,為了滿足各個成員操作時的手握感,而需要準備多個不同規格的滑鼠。However, since the size of each person's palm is different, the mouse of the same style and size can only satisfy the grip of a part of users, but cannot exactly meet the needs of each person, making the same family Or in the workplace, in order to satisfy the grip of each member when operating, it is necessary to prepare multiple mice of different specifications.

故,如何通過結構設計的改良,來克服上述的缺陷,已成為本領域中所欲解決的重要課題之一。Therefore, how to overcome the above-mentioned defects by improving the structural design has become one of the important issues to be solved in the art.

本發明所要解決的技術問題在於,針對現有技術的不足提供一種可調式滑鼠結構。The technical problem to be solved by the present invention is to provide an adjustable mouse structure in view of the deficiencies of the prior art.

為了解決上述的技術問題,本發明所採用的其中一技術方案是提供一種可調式滑鼠結構,其包括一底座模組、一殼體模組以及一形變模組。底座模組具有一開口。殼體模組能拆卸地設置於該底座模組,該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口。形變模組包括一驅動單元、一傳動單元以及一活動單元。驅動單元位於該容置空間中,該驅動單元的一部分本體位於該開口中。傳動單元設置於該容置空間中,並連接於該驅動單元。活動單元位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元。其中,在該驅動單元受外力驅動而朝一第一方向轉動時,該傳動單元受該驅動單元的帶動而驅使該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體。In order to solve the above technical problems, one of the technical solutions adopted by the present invention is to provide an adjustable mouse structure, which includes a base module, a shell module and a deformation module. The base module has an opening. The casing module is detachably arranged on the base module, an accommodating space is defined between the casing module and the base module, and the casing module has a plurality of movable ports arranged oppositely. The deformation module includes a driving unit, a transmission unit and a movable unit. The driving unit is located in the accommodating space, and a part of the body of the driving unit is located in the opening. The transmission unit is arranged in the accommodating space and connected to the driving unit. The movable unit is located on the housing module, and the movable unit has a plurality of supporting parts, each of which is penetrated through the corresponding movable port and is connected to the transmission unit. Wherein, when the driving unit is driven by an external force and rotates in a first direction, the transmission unit is driven by the driving unit to drive the movable unit to displace in a first direction, so that the adjustable mouse structure is driven by a first direction. The shape body is deformed into a second shape body.

為了解決上述的技術問題,本發明所採用的另外一技術方案是提供一種可調式滑鼠結構,其包括一底座模組、一殼體模組以及一形變模組。殼體模組能拆卸地設置於該底座模組,該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口。形變模組包括一驅動單元、一傳動單元以及一活動單元。驅動單元位於該容置空間中。傳動單元設置於該容置空間中,並連接於該驅動單元。活動單元位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元。其中,在該驅動單元驅使該傳動單元進行一第一作動時,該傳動單元帶動該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體。In order to solve the above technical problems, another technical solution adopted by the present invention is to provide an adjustable mouse structure, which includes a base module, a shell module and a deformation module. The casing module is detachably arranged on the base module, an accommodating space is defined between the casing module and the base module, and the casing module has a plurality of movable ports arranged oppositely. The deformation module includes a driving unit, a transmission unit and a movable unit. The drive unit is located in the accommodating space. The transmission unit is arranged in the accommodating space and connected to the driving unit. The movable unit is located on the housing module, and the movable unit has a plurality of supporting parts, each of which is penetrated through the corresponding movable port and is connected to the transmission unit. Wherein, when the drive unit drives the transmission unit to perform a first action, the transmission unit drives the movable unit to move toward a first orientation, thereby deforming the adjustable mouse structure from a first body to a second body model.

本發明的其中一有益效果在於,本發明所提供的可調式滑鼠結構,其能通過“可調式滑鼠結構包括一底座模組、一殼體模組以及一形變模組。底座模組具有一開口。該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口。形變模組包括一驅動單元、一傳動單元以及一活動單元。驅動單元位於該容置空間中,該驅動單元的一部分本體位於該開口中。傳動單元設置於該容置空間中,並連接於該驅動單元。活動單元位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元;其中,在該驅動單元受外力驅動而朝一第一方向轉動時,該傳動單元受該驅動單元的帶動而驅使該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體”的技術方案,以達到可調整形體大小的功效。One of the beneficial effects of the present invention is that the adjustable mouse structure provided by the present invention can include a base module, a shell module and a deformation module through the "adjustable mouse structure. The base module has An opening. An accommodating space is defined between the casing module and the base module, and the casing module has a plurality of movable openings arranged oppositely. The deformation module includes a driving unit, a transmission unit and a movable unit The driving unit is located in the accommodating space, and a part of the main body of the driving unit is located in the opening. The transmission unit is arranged in the accommodating space and connected to the driving unit. The movable unit is located on the housing module, and the movable unit is located on the housing module. The unit has a plurality of supporting parts, each of which is penetrated through the corresponding movable port and connected to the transmission unit; wherein, when the driving unit is driven by an external force to rotate in a first direction, the transmission unit is driven by the Driven by the driving unit, the movable unit is driven to move toward a first direction, so that the adjustable mouse structure is deformed from a first shape to a second shape", so as to achieve the effect of adjusting the size of the body. .

本發明的另外一有益效果在於,本發明所提供的可調式滑鼠結構,其能通過“可調式滑鼠結構包括一底座模組、一殼體模組以及一形變模組。該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口。形變模組包括一驅動單元、一傳動單元以及一活動單元。驅動單元位於該容置空間中。傳動單元設置於該容置空間中,並連接於該驅動單元。活動單元位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元;其中,在該驅動單元驅使該傳動單元進行一第一作動時,該傳動單元帶動該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體”的技術方案,以達到可調整形體大小的功效。Another beneficial effect of the present invention is that the adjustable mouse structure provided by the present invention can pass through the "adjustable mouse structure including a base module, a shell module and a deformation module. The shell mold An accommodating space is defined between the group and the base module, and the casing module has a plurality of movable ports arranged oppositely. The deformation module includes a driving unit, a transmission unit and a movable unit. The driving unit is located in the accommodating unit. The transmission unit is arranged in the accommodating space and is connected to the drive unit. The movable unit is located on the housing module, and the movable unit has a plurality of support parts, each of which is passed through the corresponding The movable port is connected to the transmission unit; wherein, when the drive unit drives the transmission unit to perform a first action, the transmission unit drives the movable unit to move toward a first orientation, so that the adjustable mouse structure is A first-shaped body is transformed into a second-shaped body" technical scheme, so as to achieve the effect of adjusting the size of the body.

為使能更進一步瞭解本發明的特徵及技術內容,請參閱以下有關本發明的詳細說明與圖式,然而所提供的圖式僅用於提供參考與說明,並非用來對本發明加以限制。For a further understanding of the features and technical content of the present invention, please refer to the following detailed descriptions and drawings of the present invention. However, the drawings provided are only for reference and description, and are not intended to limit the present invention.

以下是通過特定的具體實施例來說明本發明所公開有關“可調式滑鼠結構”的實施方式,本領域技術人員可由本說明書所公開的內容瞭解本發明的優點與效果。本發明可通過其他不同的具體實施例加以施行或應用,本說明書中的各項細節也可基於不同觀點與應用,在不背離本發明的構思下進行各種修改與變更。另外,本發明的附圖僅為簡單示意說明,並非依實際尺寸的描繪,事先聲明。以下的實施方式將進一步詳細說明本發明的相關技術內容,但所公開的內容並非用以限制本發明的保護範圍。The following are specific embodiments to illustrate the implementation of the "adjustable mouse structure" disclosed in the present invention, and those skilled in the art can understand the advantages and effects of the present invention from the content disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present invention. In addition, the drawings of the present invention are merely schematic illustrations, and are not drawn according to the actual size, and are stated in advance. The following embodiments will further describe the related technical contents of the present invention in detail, but the disclosed contents are not intended to limit the protection scope of the present invention.

應當可以理解的是,雖然本文中可能會使用到“第一”、“第二”、“第三”等術語來描述各種元件,但這些元件不應受這些術語的限制。這些術語主要是用以區分一元件與另一元件。另外,本文中所使用的術語“或”,應視實際情況可能包括相關聯的列出項目中的任一個或者多個的組合。It should be understood that, although the terms "first", "second", "third" and the like may be used herein to describe various elements, these elements should not be limited by these terms. These terms are primarily used to distinguish one element from another. In addition, the term "or", as used herein, should include any one or a combination of more of the associated listed items, as the case may be.

[第一實施例][First Embodiment]

參閱圖1至圖6,分別為第一實施例的可調式滑鼠結構的第一立體示意圖、第二立體示意圖、俯視示意圖、分解示意圖、第一剖視示意圖以及第二剖視示意圖。如圖所示,本發明第一實施例提供一種可調式滑鼠結構Z,其包括一底座模組1、一殼體模組2以及一形變模組3。底座模組1具有一開口100。殼體模組2能拆卸地設置於底座模組1,殼體模組2與底座模組1之間界定一容置空間S,殼體模組2具有相對設置的多個活動口210。形變模組3包括一驅動單元30、一傳動單元31以及一活動單元32。驅動單元30位於容置空間S中,驅動單元30的一部分本體位於開口100中。傳動單元31設置於容置空間S中,並連接於驅動單元30。活動單元32位於殼體模組2上,活動單元32具有多個支撐部320,每一支撐部320穿設於所對應的活動口210且連接於傳動單元31。其中,在驅動單元30受外力驅動而朝一第一方向轉動時,傳動單元31受驅動單元30的帶動而驅使活動單元32朝一第一方位進行位移,進而使可調式滑鼠結構Z由一第一型體變形為一第二型體。Referring to FIG. 1 to FIG. 6 , which are respectively a first three-dimensional schematic diagram, a second three-dimensional schematic diagram, a top-view schematic diagram, an exploded schematic diagram, a first cross-sectional schematic diagram, and a second cross-sectional schematic diagram of the adjustable mouse structure of the first embodiment. As shown in the figure, the first embodiment of the present invention provides an adjustable mouse structure Z, which includes a base module 1 , a shell module 2 and a deformation module 3 . The base module 1 has an opening 100 . The casing module 2 is detachably disposed on the base module 1 , a accommodating space S is defined between the casing module 2 and the base module 1 , and the casing module 2 has a plurality of movable ports 210 arranged opposite to each other. The deformation module 3 includes a driving unit 30 , a transmission unit 31 and a movable unit 32 . The driving unit 30 is located in the accommodating space S, and a part of the body of the driving unit 30 is located in the opening 100 . The transmission unit 31 is disposed in the accommodating space S and connected to the driving unit 30 . The movable unit 32 is located on the housing module 2 , and the movable unit 32 has a plurality of supporting portions 320 , each supporting portion 320 penetrates through the corresponding movable port 210 and is connected to the transmission unit 31 . Wherein, when the driving unit 30 is driven by an external force and rotates in a first direction, the transmission unit 31 is driven by the driving unit 30 to drive the movable unit 32 to move in a first direction, so that the adjustable mouse structure Z is moved by a first direction. The shape body is deformed into a second shape body.

具體來說,本發明所提供的可調式滑鼠結構Z包括了底座模組1、殼體模組2以及形變模組3,形變模組3包括了驅動單元30、傳動單元31以及活動單元32。殼體模組2與活動單元32可為使用者操作可調式滑鼠結構Z時所握持的部份;其中,活動單元32對應於使用者的掌心部份。殼體模組2的內壁與底座模組1界定出容置空間S,驅動單元30與傳動單元31位於容置空間S中,而活動單元32位於殼體模組2的外壁上。活動單元32面對殼體模組2的一面朝外突出形成多個支撐部320,每一個支撐部320穿過殼體模組2上的活動口210而連接於傳動單元31。Specifically, the adjustable mouse structure Z provided by the present invention includes a base module 1 , a shell module 2 and a deformation module 3 , and the deformation module 3 includes a drive unit 30 , a transmission unit 31 and a movable unit 32 . The casing module 2 and the movable unit 32 can be the part that the user holds when operating the adjustable mouse structure Z; wherein, the movable unit 32 corresponds to the part of the user's palm. The inner wall of the housing module 2 and the base module 1 define an accommodating space S, the drive unit 30 and the transmission unit 31 are located in the accommodating space S, and the movable unit 32 is located on the outer wall of the housing module 2 . The side of the movable unit 32 facing the casing module 2 protrudes outward to form a plurality of supporting parts 320 , each supporting part 320 is connected to the transmission unit 31 through the movable opening 210 on the casing module 2 .

因此,在使用者想要調整可調式滑鼠結構Z的體型大小時,可藉由轉動外露在底座模組1的驅動單元30(如圖3所示),使得驅動單元30朝第一方向(例如順時針或逆時針的方向)轉動。接著,驅動單元30會驅使傳動單元31朝第一方位D1(例如朝殼體模組2的後方)進行位移;此時,傳動單元31會一併帶動多個支撐部320朝第一方位進行位移,進而帶動活動單元32朝第一方位進行位移。最後,可調式滑鼠結構Z即可由第一型體變形為第二型體。其中,第一型體(如圖1所示)的長度小於第二型體(如圖2所示)的長度。Therefore, when the user wants to adjust the size of the adjustable mouse structure Z, he can rotate the driving unit 30 exposed on the base module 1 (as shown in FIG. 3 ) so that the driving unit 30 faces the first direction (as shown in FIG. 3 ). such as clockwise or counterclockwise). Next, the driving unit 30 will drive the transmission unit 31 to displace toward the first orientation D1 (for example, toward the rear of the housing module 2 ); at this time, the transmission unit 31 will drive the plurality of supporting parts 320 to displace toward the first orientation. , thereby driving the movable unit 32 to move toward the first orientation. Finally, the adjustable mouse structure Z can be deformed from the first shape to the second shape. Wherein, the length of the first type body (as shown in Figure 1) is smaller than the length of the second type body (as shown in Figure 2).

相反地,在驅動單元30受外力驅動而朝一第二方向轉動時,傳動單元31受驅動單元30的帶動而驅使活動單元32朝一第二方位進行位移,進而使可調式滑鼠結構Z由第二型體變形為第一型體。也就是說,使用者也可藉由轉動驅動單元30,以使驅動單元30朝第二方向(例如順時針或逆時針的方向)轉動。接著,驅動單元30會驅使傳動單元31間接帶動活動單元32朝第二方位D2(例如朝殼體模組2的前方,如圖9所示)進行位移。最後,可調式滑鼠結構Z即可由第二型體(如圖2所示)變回第一型體(如圖1所示)。On the contrary, when the drive unit 30 is driven by an external force to rotate in a second direction, the transmission unit 31 is driven by the drive unit 30 to drive the movable unit 32 to displace in a second direction, thereby causing the adjustable mouse structure Z to move from the second direction to the second direction. The shape is deformed into the first shape. That is, the user can also rotate the driving unit 30 to rotate the driving unit 30 in the second direction (eg, clockwise or counterclockwise). Next, the driving unit 30 drives the transmission unit 31 to indirectly drive the movable unit 32 to move toward the second orientation D2 (eg, toward the front of the housing module 2 , as shown in FIG. 9 ). Finally, the adjustable mouse structure Z can be changed from the second shape (as shown in Figure 2) back to the first shape (as shown in Figure 1).

藉此,本發明所提供的可調式滑鼠結構Z通過上述的技術方案,以使活動單元32可相對於殼體模組2進行前後移動,而調整可調式滑鼠結構Z的拉伸長度,讓可調式滑鼠結構Z呈現不同長度尺寸,進而可符合不同手掌大小的使用者。Thereby, the adjustable mouse structure Z provided by the present invention adopts the above-mentioned technical solution, so that the movable unit 32 can move back and forth relative to the housing module 2 to adjust the stretching length of the adjustable mouse structure Z, The adjustable mouse structure Z is made to have different lengths and sizes, so as to be suitable for users with different palm sizes.

然而,上述所舉的例子只是其中一可行的實施例而並非用以限定本發明。However, the above-mentioned example is only one possible embodiment and is not intended to limit the present invention.

[第二實施例][Second Embodiment]

請參閱圖7及圖8,分別為本發明第二實施例的可調式滑鼠結構的部份剖視示意圖以及功能方塊圖,並請一併參閱圖1至圖6。如圖所示,本實施例的可調式滑鼠結構Z與上述第一實施例的可調式滑鼠結構Z大致相似,在此不再贅述。本實施例與上述第一實施例的不同之處在於,在本實施例中,底座模組1可包括一基板單元10以及一隔板單元11,隔板單元11設置於基板單元10上且將容置空間S區分為一第一空間S1以及一第二空間S2,基板單元10具有開口100,且開口100對應於第二空間S2;其中,殼體模組2能拆卸地連接於基板單元10與隔板單元11,殼體模組2的一部份對應於第一空間S1,殼體模組2的另一部份對應於第二空間S2,且驅動單元30與傳動單元31位於第二空間S2中。並且,可調式滑鼠結構Z還進一步包括一控制模組4以及一感測模組5。控制模組4位於第一空間S1,控制模組4通訊連接於一外部電子裝置E。感測模組5設置於基板單元10,並位於第一空間S1,感測模組5電性連接控制模組4。Please refer to FIG. 7 and FIG. 8 , which are a partial cross-sectional schematic diagram and a functional block diagram of the adjustable mouse structure according to the second embodiment of the present invention, respectively, and please refer to FIGS. 1 to 6 together. As shown in the figure, the adjustable mouse structure Z of this embodiment is substantially similar to the adjustable mouse structure Z of the above-mentioned first embodiment, which is not repeated here. The difference between this embodiment and the above-mentioned first embodiment is that, in this embodiment, the base module 1 may include a substrate unit 10 and a partition unit 11 , and the partition unit 11 is disposed on the substrate unit 10 and connects The accommodating space S is divided into a first space S1 and a second space S2, and the substrate unit 10 has an opening 100, and the opening 100 corresponds to the second space S2; wherein the housing module 2 can be detachably connected to the substrate unit 10 With the partition unit 11, a part of the housing module 2 corresponds to the first space S1, the other part of the housing module 2 corresponds to the second space S2, and the driving unit 30 and the transmission unit 31 are located in the second space S2. in space S2. Moreover, the adjustable mouse structure Z further includes a control module 4 and a sensing module 5 . The control module 4 is located in the first space S1 , and the control module 4 is connected to an external electronic device E for communication. The sensing module 5 is disposed on the substrate unit 10 and located in the first space S1 , and the sensing module 5 is electrically connected to the control module 4 .

舉例來說,本發明的底座模組1包括了基板單元10以及隔板單元11。隔板單元11可直立地設置於基板單元10上,並將容置空間S區分為一第一空間S1以及一第二空間S2。第一空間S1可用於容置控制模組4與感測模組5;其中,控制模組4可包含處理器以及電路板,控制模組4可以有線或無線的方式通訊連接外部電子裝置E(例如電腦,但不以此為限),感測模組5可為具感測功能的光源組件,但不以此為限。第二空間S2可用於容置驅動單元30與傳動單元31。因此,藉由隔板單元11將容置空間S區隔成兩個獨立空間,可避免外界異物由開口100進入可調式滑鼠結構Z內部後,造成控制模組4與感測模組5的故障或損壞。For example, the base module 1 of the present invention includes a substrate unit 10 and a partition unit 11 . The partition unit 11 can be erected on the substrate unit 10, and divides the accommodating space S into a first space S1 and a second space S2. The first space S1 can be used to accommodate the control module 4 and the sensing module 5; wherein, the control module 4 can include a processor and a circuit board, and the control module 4 can be wired or wirelessly connected to the external electronic device E ( For example, a computer, but not limited thereto), the sensing module 5 can be a light source component with a sensing function, but not limited thereto. The second space S2 can be used to accommodate the driving unit 30 and the transmission unit 31 . Therefore, the accommodating space S is divided into two independent spaces by the partition unit 11 , which can prevent the external foreign matter from entering the inside of the adjustable mouse structure Z through the opening 100 , causing the control module 4 and the sensing module 5 to be separated from each other. malfunction or damage.

然而,上述所舉的例子只是其中一可行的實施例而並非用以限定本發明。However, the above-mentioned example is only one possible embodiment and is not intended to limit the present invention.

[第三實施例][Third Embodiment]

請參閱圖9,為本發明第三實施例的可調式滑鼠結構的分解示意圖,並請一併參閱圖1至圖8。如圖所示,本實施例的可調式滑鼠結構Z與上述各實施例的可調式滑鼠結構Z大致相似,在此不再贅述。本實施例與上述各實施例的不同之處在於,在本實施例中,殼體模組2包括一第一殼體單元20以及一第二殼體單元21,第一殼體單元20能拆卸地連接於基板單元10與隔板單元11,第一殼體單元20與基板單元10的一部份以及隔板單元11的一第一表面110界定出第一空間S1,第二殼體單元21能拆卸地連接於基板單元10與隔板單元11,第二殼體單元21具有多個活動口210、一第一表面211以及相對於第一表面211的一第二表面212,第二殼體單元21的第一表面211與基板單元10的另一部份以及隔板單元11的一第二表面111界定出第二空間S2;其中,活動單元32位於第二殼體單元21的第二表面212上。並且,傳動單元31包括一主動件310以及一從動件311,主動件310穿設於驅動單元30與從動件311,並與驅動單元30以及從動件311嚙合,且從動件311能拆卸地連接於多個支撐部320。其中,在驅動單元30朝第一方向轉動時,主動件310受驅動單元30的帶動而驅使從動件311朝第一方位進行位移,並藉由從動件311帶動活動單元32朝第一方位進行位移。其中,在驅動單元30朝第二方向轉動時,主動件310受驅動單元30的帶動而驅使從動件311朝第二方位進行位移,並藉由從動件311帶動活動單元32朝第二方位進行位移。Please refer to FIG. 9 , which is an exploded schematic view of the adjustable mouse structure according to the third embodiment of the present invention, and please refer to FIGS. 1 to 8 together. As shown in the figure, the adjustable mouse structure Z of this embodiment is substantially similar to the adjustable mouse structure Z of the above-mentioned embodiments, and details are not described herein again. The difference between this embodiment and the above-mentioned embodiments is that, in this embodiment, the housing module 2 includes a first housing unit 20 and a second housing unit 21 , and the first housing unit 20 can be disassembled Connected to the base plate unit 10 and the spacer unit 11, a part of the first case unit 20 and the base plate unit 10 and a first surface 110 of the spacer unit 11 define a first space S1, and the second case unit 21 Removably connected to the base plate unit 10 and the partition unit 11, the second housing unit 21 has a plurality of movable ports 210, a first surface 211, and a second surface 212 opposite to the first surface 211. The second housing The first surface 211 of the unit 21 , another part of the substrate unit 10 and a second surface 111 of the partition unit 11 define a second space S2 ; wherein the movable unit 32 is located on the second surface of the second housing unit 21 212 on. In addition, the transmission unit 31 includes a driving member 310 and a driven member 311. The driving member 310 is penetrated through the driving unit 30 and the driven member 311, and is engaged with the driving unit 30 and the driven member 311, and the driven member 311 can Removably connected to the plurality of support parts 320 . Wherein, when the driving unit 30 rotates in the first direction, the driving element 310 is driven by the driving unit 30 to drive the driven element 311 to move toward the first orientation, and the driven element 311 drives the movable unit 32 toward the first orientation. make a displacement. Wherein, when the driving unit 30 rotates in the second direction, the driving element 310 is driven by the driving unit 30 to drive the driven element 311 to move toward the second orientation, and the movable element 32 is driven toward the second orientation by the driven element 311 make a displacement.

舉例來說,本發明的殼體模組2包括了第一殼體單元20以及第二殼體單元21;其中,在本實施例中,第一殼體單元20與第二殼體單元21為各自獨立的元件,但不以此為限,在實際實施時,第一殼體單元20與第二殼體單元21也可為一體化結構。第一殼體單元20可與基板單元10的前半部以及隔板單元11形成第一空間S1,第一殼體單元20上還可設置按鍵元件與滾輪元件(於圖中未標示元件符號),且第一殼體單元20可對應於使用者的手指部份。第二殼體單元21可與基板單元10的前半部以及隔板單元11形成第二空間S2,活動單元32能活動地罩設在第二殼體單元21上,活動單元32與第二殼體單元21可對應於使用者的掌心部份。For example, the housing module 2 of the present invention includes a first housing unit 20 and a second housing unit 21 ; wherein, in this embodiment, the first housing unit 20 and the second housing unit 21 are They are independent components, but not limited thereto. In actual implementation, the first housing unit 20 and the second housing unit 21 may also be an integrated structure. The first housing unit 20 can form a first space S1 with the front half of the base unit 10 and the partition unit 11 , and the first housing unit 20 can also be provided with a button element and a scroll wheel element (component symbols are not marked in the figure), And the first housing unit 20 may correspond to the user's finger part. The second housing unit 21 can form a second space S2 with the front half of the base unit 10 and the partition unit 11 , the movable unit 32 can be movably covered on the second housing unit 21 , and the movable unit 32 and the second housing The unit 21 may correspond to the palm portion of the user.

本發明的傳動單元31包括了主動件310以及從動件311,主動件310可為螺桿,從動件311可為滑塊,但不以此為限。第二殼體單元21的第一表面211可朝外延伸形成一第一限位部213以及一第二限位部214,主動件310的一端能活動地連接於第一限位部213,主動件310的另一端能活動地連接於第二限位部214,且主動件310穿設於驅動單元30與從動件311;其中,驅動單元30可為齒輪,但不以此為限。活動單元32的多個支撐部320連接於從動件311。The transmission unit 31 of the present invention includes a driving member 310 and a driven member 311 , the driving member 310 can be a screw, and the driven member 311 can be a slider, but not limited thereto. The first surface 211 of the second housing unit 21 can extend outward to form a first limiting portion 213 and a second limiting portion 214 . The other end of the member 310 can be movably connected to the second limiting portion 214 , and the driving member 310 passes through the driving unit 30 and the driven member 311 ; the driving unit 30 may be a gear, but not limited thereto. The plurality of support parts 320 of the movable unit 32 are connected to the follower 311 .

因此,在驅動單元30朝第一方向(例如順時針的方向)轉動時,驅動單元30會帶動主動件310一併轉動,而驅使從動件311進行位移,進而經由從動件311帶動活動單元32朝第一方位D1進行位移,進而使可調式滑鼠結構Z即可由第一型體(如圖1所示)變形為第二型體(如圖2所示)。而在驅動單元30朝第二方向轉動(例如逆時針的方向)時,驅動單元30也會帶動主動件310一併轉動,而使得從動件311帶動活動單元32朝第二方位D2進行位移,進而使可調式滑鼠結構Z即可由第二型體(如圖2所示)變形為第一型體(如圖1所示)。Therefore, when the driving unit 30 rotates in the first direction (for example, the clockwise direction), the driving unit 30 will drive the driving member 310 to rotate together, and drive the driven member 311 to displace, thereby driving the movable unit through the driven member 311 32 is displaced toward the first orientation D1, so that the adjustable mouse structure Z can be deformed from the first body (as shown in FIG. 1 ) to the second body (as shown in FIG. 2 ). When the driving unit 30 rotates in the second direction (for example, the counterclockwise direction), the driving unit 30 also drives the driving member 310 to rotate together, so that the driven member 311 drives the movable unit 32 to move toward the second direction D2. Then, the adjustable mouse structure Z can be deformed from the second body (as shown in FIG. 2 ) to the first body (as shown in FIG. 1 ).

然而,上述所舉的例子只是其中一可行的實施例而並非用以限定本發明。However, the above-mentioned example is only one possible embodiment and is not intended to limit the present invention.

[第四實施例][Fourth Embodiment]

請參閱圖10及圖11,分別為本發明第四實施例的可調式滑鼠結構的部份剖視示意圖以及功能方塊圖,並請一併參閱圖1至圖9。如圖所示,本發明第四實施例提供一種可調式滑鼠結構Z,其包括一底座模組1、一殼體模組2以及一形變模組3。殼體模組2能拆卸地設置於底座模組1,殼體模組2與底座模組1之間界定一容置空間S,殼體模組2具有相對設置的多個活動口210。形變模組3包括一驅動單元30、一傳動單元31以及一活動單元32。驅動單元30位於容置空間S中。傳動單元31設置於容置空間S中,並連接於驅動單元30。活動單元32位於殼體模組2上,活動單元32具有多個支撐部320,每一支撐部320穿設於所對應的活動口210且連接於傳動單元31。其中,在驅動單元30驅使傳動單元31進行一第一作動時,傳動單元31帶動活動單元32朝一第一方位進行位移,進而使可調式滑鼠結構Z由一第一型體變形為一第二型體。Please refer to FIG. 10 and FIG. 11 , which are a partial cross-sectional schematic diagram and a functional block diagram of the adjustable mouse structure according to the fourth embodiment of the present invention, respectively, and please refer to FIGS. 1 to 9 together. As shown in the figure, the fourth embodiment of the present invention provides an adjustable mouse structure Z, which includes a base module 1 , a shell module 2 and a deformation module 3 . The casing module 2 is detachably disposed on the base module 1 , a accommodating space S is defined between the casing module 2 and the base module 1 , and the casing module 2 has a plurality of movable ports 210 arranged opposite to each other. The deformation module 3 includes a driving unit 30 , a transmission unit 31 and a movable unit 32 . The driving unit 30 is located in the accommodating space S. The transmission unit 31 is disposed in the accommodating space S and connected to the driving unit 30 . The movable unit 32 is located on the housing module 2 , and the movable unit 32 has a plurality of supporting portions 320 , each supporting portion 320 penetrates through the corresponding movable port 210 and is connected to the transmission unit 31 . Wherein, when the drive unit 30 drives the transmission unit 31 to perform a first action, the transmission unit 31 drives the movable unit 32 to move toward a first orientation, thereby deforming the adjustable mouse structure Z from a first body to a second body model.

具體來說,本實施例的可調式滑鼠結構Z與上述各實施例的可調式滑鼠結構大致相似,在此不再贅述。本實施例與上述各實施例的不同之處在於,在本實施例中,驅動單元30可為馬達元件(例如電動馬達,但不以此為限)。因此,在驅動單元30運作、轉動(例如正轉時,但不以此為限)時,驅動單元30可驅使傳動單元31朝第一方位(例如朝殼體模組2的後方)進行位移;此時,傳動單元31會一併帶動多個支撐部320朝第一方位進行位移,進而帶動活動單元32朝第一方位進行位移。接著,可調式滑鼠結構Z即可由第一型體變形為第二型體。其中,第一型體(如圖1所示)的長度小於第二型體(如圖2所示)的長度。Specifically, the adjustable mouse structure Z of this embodiment is substantially similar to the adjustable mouse structures of the above-mentioned embodiments, and will not be repeated here. The difference between this embodiment and the above-mentioned embodiments is that, in this embodiment, the driving unit 30 may be a motor element (eg, an electric motor, but not limited thereto). Therefore, when the drive unit 30 operates and rotates (for example, when it rotates forwardly, but not limited thereto), the drive unit 30 can drive the transmission unit 31 to move toward the first orientation (for example, toward the rear of the housing module 2 ); At this time, the transmission unit 31 will drive the plurality of supporting parts 320 to displace toward the first orientation, and then drive the movable unit 32 to displace toward the first orientation. Then, the adjustable mouse structure Z can be deformed from the first shape to the second shape. Wherein, the length of the first type body (as shown in Figure 1) is smaller than the length of the second type body (as shown in Figure 2).

相反地,在驅動單元30驅使傳動單元31進行一第二作動時,傳動單元31帶動活動單元32朝一第二方位進行位移,進而使可調式滑鼠結構Z由第二型體變形為第一型體。也就是說,在驅動單元30運作、轉動(例如反轉時,但不以此為限)時,驅動單元30可驅使傳動單元31朝第二方位(例如朝殼體模組2的前方)進行位移;此時,傳動單元31會一併帶動多個支撐部320朝第二方位進行位移,進而帶動活動單元32朝第二方位進行位移。接著,可調式滑鼠結構Z即可由第二型體(如圖2所示)變回第一型體(如圖1所示)。On the contrary, when the drive unit 30 drives the transmission unit 31 to perform a second action, the transmission unit 31 drives the movable unit 32 to move toward a second direction, thereby deforming the adjustable mouse structure Z from the second shape to the first shape body. That is to say, when the drive unit 30 operates and rotates (for example, when reversed, but not limited to), the drive unit 30 can drive the transmission unit 31 to move toward the second direction (for example, toward the front of the housing module 2 ). Displacement; at this time, the transmission unit 31 will drive the plurality of supporting parts 320 to displace toward the second orientation, and then drive the movable unit 32 to displace toward the second orientation. Then, the adjustable mouse structure Z can be changed from the second shape (as shown in FIG. 2 ) back to the first shape (as shown in FIG. 1 ).

進一步地,本發明的可調式滑鼠結構Z還可進一步包括一切換模組6,其電性連接驅動單元30,在切換模組6處於一第一模式時,切換模組6驅使驅動單元30帶動傳動單元31進行第一作動,而在切換模組6處於一第二模式時,切換模組6驅使驅動單元30帶動傳動單元31進行第二作動。Further, the adjustable mouse structure Z of the present invention may further include a switching module 6 which is electrically connected to the driving unit 30 . When the switching module 6 is in a first mode, the switching module 6 drives the driving unit 30 The transmission unit 31 is driven to perform the first operation, and when the switching module 6 is in a second mode, the switching module 6 drives the driving unit 30 to drive the transmission unit 31 to perform the second operation.

舉例來說,配合圖11所示,本發明的可調式滑鼠結構Z還可進一步包括一切換模組6,其可為多段式的切換開關,即具有控制驅動單元30進行正轉、反轉以及停止轉動等功能,但不以此為限。切換模組6可嵌設於底座模組1、或使用者可接觸到的其他位置。切換模組6電性連接於驅動單元30,也可電性連接於前述控制模組4。因此,在使用者觸壓切換模組6,而使切換模組6處於第一模式(即控制驅動單元30正轉,但不以此為限)時,驅動單元30則會受切換模組6的控制而運作、轉動,並驅使傳動單元31朝第一方位(例如朝殼體模組2的後方)進行位移,進而使得可調式滑鼠結構Z由第一型體變形為第二型體。For example, as shown in FIG. 11 , the adjustable mouse structure Z of the present invention may further include a switching module 6 , which can be a multi-stage switching switch, that is, has a control driving unit 30 for forward rotation and reverse rotation and functions such as stopping rotation, but not limited to this. The switching module 6 can be embedded in the base module 1 or other positions accessible to the user. The switching module 6 is electrically connected to the driving unit 30 , and can also be electrically connected to the aforementioned control module 4 . Therefore, when the user touches and presses the switching module 6 and the switching module 6 is in the first mode (ie, controls the driving unit 30 to rotate forward, but not limited to this), the driving unit 30 will be affected by the switching module 6 . It operates and rotates under the control of the controller, and drives the transmission unit 31 to move toward the first direction (eg, toward the rear of the housing module 2 ), so that the adjustable mouse structure Z is deformed from the first shape to the second shape.

而當使用者觸壓切換模組6,而使切換模組6處於第二模式(即控制驅動單元30反轉,但不以此為限)時,驅動單元30則會受切換模組6的控制而運作、轉動,並驅使傳動單元31朝第二方位(例如朝殼體模組2的後方)進行位移,進而使得可調式滑鼠結構Z由第二型體變形為第一型體。When the user touches the switching module 6 to make the switching module 6 in the second mode (ie, controls the driving unit 30 to reverse, but not limited to), the driving unit 30 will be affected by the switching module 6 . Control to operate, rotate, and drive the transmission unit 31 to move toward the second direction (eg, toward the rear of the housing module 2 ), so that the adjustable mouse structure Z is deformed from the second body to the first body.

此外,切換模組6也可包含第三模式,即控制驅動單元30停止轉動的模式。In addition, the switching module 6 may also include a third mode, that is, a mode in which the drive unit 30 is controlled to stop rotating.

然而,上述所舉的例子只是其中一可行的實施例而並非用以限定本發明。However, the above-mentioned example is only one possible embodiment and is not intended to limit the present invention.

值得注意的是,上述各實施例中,第一方向與第二方向是彼此相反,第一方位與第二方位彼此相反。並且,本發明的可調式滑鼠結構Z可變形的型態並不限於上述兩種型態(第一型體與第二型體),本發明可藉由使驅動單元30朝不同的方向轉動以及轉動不同的圈數,而使活動單元32位移到不同的位置,進而使可調式滑鼠結構Z變化成不同大小的形體。It should be noted that, in the above embodiments, the first direction and the second direction are opposite to each other, and the first orientation and the second orientation are opposite to each other. Moreover, the deformable type of the adjustable mouse structure Z of the present invention is not limited to the above two types (the first type body and the second type body), and the present invention can rotate the driving unit 30 in different directions by rotating the driving unit 30 in different directions. And rotating different number of turns, so that the movable unit 32 is displaced to different positions, so that the adjustable mouse structure Z can be changed into shapes of different sizes.

[實施例的有益效果][Advantageous effects of the embodiment]

本發明的其中一有益效果在於,本發明所提供的可調式滑鼠結構Z,其能通過“可調式滑鼠結構包括一底座模組1、一殼體模組2以及一形變模組3。底座模組1具有一開口100。殼體模組2與底座模組1之間界定一容置空間S,殼體模組2具有相對設置的多個活動口210。形變模組包括一驅動單元30、一傳動單元31以及一活動單元32。驅動單元30位於容置空間S中,驅動單元30的一部分本體位於開口100中。傳動單元31設置於容置空間S中,並連接於驅動單元30。活動單元32位於殼體模組2上,活動單元32具有多個支撐部320,每一支撐部320穿設於所對應的活動口210且連接於傳動單元31。其中,在驅動單元30受外力驅動而朝一第一方向轉動時,傳動單元31受驅動單元30的帶動而驅使活動單元32朝一第一方位進行位移,進而使可調式滑鼠結構Z由一第一型體變形為一第二型體”的技術方案,以達到可調整形體大小的功效。One of the beneficial effects of the present invention is that the adjustable mouse structure Z provided by the present invention can pass through "the adjustable mouse structure includes a base module 1 , a shell module 2 and a deformation module 3 . The base module 1 has an opening 100. An accommodating space S is defined between the housing module 2 and the base module 1, and the housing module 2 has a plurality of movable ports 210 arranged oppositely. The deformation module includes a driving unit 30. A transmission unit 31 and a movable unit 32. The driving unit 30 is located in the accommodating space S, and a part of the body of the driving unit 30 is located in the opening 100. The transmission unit 31 is arranged in the accommodating space S and is connected to the driving unit 30 The movable unit 32 is located on the housing module 2, and the movable unit 32 has a plurality of supporting parts 320, each supporting part 320 passes through the corresponding movable port 210 and is connected to the transmission unit 31. Among them, the driving unit 30 receives When the external force is driven to rotate in a first direction, the transmission unit 31 is driven by the driving unit 30 to drive the movable unit 32 to move in a first direction, so that the adjustable mouse structure Z is deformed from a first body to a second body. Body shape" technical solution to achieve the effect of adjustable body size.

本發明的另外一有益效果在於,本發明所提供的可調式滑鼠結構,其能通過“可調式滑鼠結構包括一底座模組1、一殼體模組2以及一形變模組3。殼體模組2與底座模組1之間界定一容置空間S,殼體模組2具有相對設置的多個活動口210。形變模組包括一驅動單元30、一傳動單元31以及一活動單元32。驅動單元30位於容置空間S中。傳動單元31設置於容置空間S中,並連接於驅動單元30。活動單元32位於殼體模組2上,活動單元32具有多個支撐部320,每一支撐部320穿設於所對應的活動口210且連接於傳動單元31;其中,在驅動單元30驅使傳動單元31進行一第一作動時,傳動單元31帶動活動單元32朝一第一方位進行位移,進而使可調式滑鼠結構Z由一第一型體變形為一第二型體”的技術方案,以達到可調整形體大小的功效。Another beneficial effect of the present invention is that the adjustable mouse structure provided by the present invention can pass through the "adjustable mouse structure including a base module 1, a shell module 2 and a deformation module 3. The shell An accommodating space S is defined between the body module 2 and the base module 1, and the casing module 2 has a plurality of movable ports 210 arranged oppositely. The deformation module includes a driving unit 30, a transmission unit 31 and a movable unit 32. The driving unit 30 is located in the accommodating space S. The transmission unit 31 is arranged in the accommodating space S and is connected to the driving unit 30. The movable unit 32 is located on the housing module 2, and the movable unit 32 has a plurality of supporting parts 320 , each supporting portion 320 is passed through the corresponding movable port 210 and connected to the transmission unit 31; wherein, when the driving unit 30 drives the transmission unit 31 to perform a first action, the transmission unit 31 drives the movable unit 32 to a first orientation Displacement, and then the adjustable mouse structure Z is deformed from a first body to a second body" technical scheme, so as to achieve the effect of adjusting the size of the body.

更進一步來說,本發明所提供的可調式滑鼠結構Z通過上述的技術方案,利用多層殼體(即活動單元32與殼體模組2)、齒輪、螺桿與滑塊等機構的配合設置,以使活動單元32可相對於殼體模組2進行前後移動,而拉伸或縮短可調式滑鼠結構Z的長度,進而達到調整可調式滑鼠結構Z的長度的功效,讓可調式滑鼠結構Z可呈現不同長度尺寸,而可符合不同手掌大小的使用者。Furthermore, the adjustable mouse structure Z provided by the present invention utilizes the above-mentioned technical solutions, and utilizes the coordination of the multi-layer housing (ie the movable unit 32 and the housing module 2), gears, screws and sliders. , so that the movable unit 32 can move back and forth relative to the housing module 2, and stretch or shorten the length of the adjustable mouse structure Z, thereby achieving the effect of adjusting the length of the adjustable mouse structure Z, allowing the adjustable sliding The mouse structure Z can have different lengths and sizes, and can be adapted to users with different palm sizes.

以上所公開的內容僅為本發明的優選可行實施例,並非因此侷限本發明的申請專利範圍,所以凡是運用本發明說明書及圖式內容所做的等效技術變化,均包含於本發明的申請專利範圍內。The contents disclosed above are only preferred feasible embodiments of the present invention, and are not intended to limit the scope of the present invention. Therefore, any equivalent technical changes made by using the contents of the description and drawings of the present invention are included in the application of the present invention. within the scope of the patent.

Z:可調式滑鼠結構 1:底座模組 10:基板單元 100:開口 11:隔板單元 110:第一表面 111:第二表面 2:殼體模組 20:第一殼體單元 21:第二殼體單元 210:活動口 211:第一表面 212:第二表面 213:第一限位部 214:第二限位部 3:形變模組 30:驅動單元 31:傳動單元 310:主動件 311:從動件 32:活動單元 320:支撐部 4:控制模組 5:感測模組 6:切換模組 D1:第一方位 D2:第二方位 E:外部電子裝置 S:容置空間 S1:第一空間 S2:第二空間Z: Adjustable mouse structure 1: base module 10: Substrate unit 100: Opening 11: Baffle unit 110: First surface 111: Second surface 2: Shell module 20: The first housing unit 21: Second housing unit 210: Active mouth 211: First Surface 212: Second Surface 213: The first limit part 214: The second limit part 3: Deformation module 30: Drive unit 31: Transmission unit 310: Active Parts 311: Follower 32: Activity Unit 320: Support Department 4: Control module 5: Sensing module 6: Switch modules D1: first position D2: The second position E: External Electronics S: accommodating space S1: First space S2: Second space

圖1為本發明第一實施例的可調式滑鼠結構的第一立體示意圖。FIG. 1 is a first three-dimensional schematic diagram of an adjustable mouse structure according to a first embodiment of the present invention.

圖2為本發明第一實施例的可調式滑鼠結構的第二立體示意圖。FIG. 2 is a second schematic perspective view of the adjustable mouse structure according to the first embodiment of the present invention.

圖3為本發明第一實施例的可調式滑鼠結構的俯視示意圖。FIG. 3 is a schematic top view of the adjustable mouse structure according to the first embodiment of the present invention.

圖4為本發明第一實施例的可調式滑鼠結構的分解示意圖。FIG. 4 is an exploded schematic diagram of the adjustable mouse structure according to the first embodiment of the present invention.

圖5為本發明第一實施例的可調式滑鼠結構的部份剖視的第一剖視示意圖。5 is a first schematic cross-sectional view of a partial cross-section of the adjustable mouse structure according to the first embodiment of the present invention.

圖6為本發明第一實施例的可調式滑鼠結構的部份剖視的第二剖視示意圖。6 is a second schematic cross-sectional view of a partial cross-section of the adjustable mouse structure according to the first embodiment of the present invention.

圖7為本發明第二實施例的可調式滑鼠結構的部份剖視示意圖。7 is a partial cross-sectional schematic diagram of an adjustable mouse structure according to a second embodiment of the present invention.

圖8為本發明第二實施例的可調式滑鼠結構的功能方塊圖。FIG. 8 is a functional block diagram of an adjustable mouse structure according to a second embodiment of the present invention.

圖9為本發明第三實施例的可調式滑鼠結構的分解示意圖。FIG. 9 is an exploded schematic diagram of an adjustable mouse structure according to a third embodiment of the present invention.

圖10為本發明第四實施例的可調式滑鼠結構的部份剖視示意圖。10 is a partial cross-sectional schematic diagram of an adjustable mouse structure according to a fourth embodiment of the present invention.

圖11為本發明第四實施例的可調式滑鼠結構的功能方塊圖。FIG. 11 is a functional block diagram of an adjustable mouse structure according to a fourth embodiment of the present invention.

Z:可調式滑鼠結構Z: Adjustable mouse structure

1:底座模組1: base module

2:殼體模組2: Shell module

210:活動口210: Active mouth

30:驅動單元30: Drive unit

31:傳動單元31: Transmission unit

32:活動單元32: Activity Unit

320:支撐部320: Support Department

S:容置空間S: accommodating space

Claims (10)

一種可調式滑鼠結構,其包括: 一底座模組,其具有一開口; 一殼體模組,其能拆卸地設置於該底座模組,該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口;以及 一形變模組,其包括: 一驅動單元,其位於該容置空間中,該驅動單元的一部分本體位於該開口中; 一傳動單元,其設置於該容置空間中,並連接於該驅動單元;以及 一活動單元,其位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元; 其中,在該驅動單元受外力驅動而朝一第一方向轉動時,該傳動單元受該驅動單元的帶動而驅使該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體。An adjustable mouse structure, comprising: a base module, which has an opening; a housing module, which can be detachably arranged on the base module, an accommodating space is defined between the housing module and the base module, and the housing module has a plurality of movable ports arranged oppositely; and A deformation module, which includes: a driving unit, which is located in the accommodating space, and a part of the body of the driving unit is located in the opening; a transmission unit disposed in the accommodating space and connected to the drive unit; and a movable unit located on the housing module, the movable unit has a plurality of support parts, each of the support parts is penetrated through the corresponding movable port and connected to the transmission unit; Wherein, when the driving unit is driven by an external force and rotates in a first direction, the transmission unit is driven by the driving unit to drive the movable unit to displace in a first direction, so that the adjustable mouse structure is driven by a first direction. The shape body is deformed into a second shape body. 如請求項1所述的可調式滑鼠結構,其中,在該驅動單元受外力驅動而朝一第二方向轉動時,該傳動單元受該驅動單元的帶動而驅使該活動單元朝一第二方位進行位移,進而使該可調式滑鼠結構由該第二型體變形為該第一型體。The adjustable mouse structure according to claim 1, wherein when the driving unit is driven by an external force to rotate in a second direction, the transmission unit is driven by the driving unit to drive the movable unit to displace in a second direction , and then the adjustable mouse structure is deformed from the second body to the first body. 如請求項2所述的可調式滑鼠結構,其中,該第一方向與該第二方向彼此相反,該第一方位與該第二方位彼此相反。The adjustable mouse structure of claim 2, wherein the first direction and the second direction are opposite to each other, and the first orientation and the second orientation are opposite to each other. 如請求項2所述的可調式滑鼠結構,其中,該底座模組包括一基板單元以及一隔板單元,該隔板單元設置於該基板單元上且將該容置空間區分為一第一空間以及一第二空間,該基板單元具有該開口,且該開口對應於該第二空間;其中,該殼體模組能拆卸地連接於該基板單元與該隔板單元,該殼體模組的一部份對應於該第一空間,該殼體模組的另一部份對應於該第二空間,且該驅動單元與該傳動單元位於該第二空間中。The adjustable mouse structure according to claim 2, wherein the base module includes a base plate unit and a spacer unit, the spacer unit is disposed on the base plate unit and the accommodating space is divided into a first space and a second space, the base plate unit has the opening, and the opening corresponds to the second space; wherein, the casing module can be detachably connected to the base plate unit and the partition unit, the casing module A part of the housing module corresponds to the first space, the other part of the housing module corresponds to the second space, and the driving unit and the transmission unit are located in the second space. 如請求項4所述的可調式滑鼠結構,其中,該殼體模組包括一第一殼體單元以及一第二殼體單元,該第一殼體單元能拆卸地連接於該基板單元與該隔板單元,該第一殼體單元與該基板單元的一部份以及該隔板單元的一第一表面界定出該第一空間,該第二殼體單元能拆卸地連接於該基板單元與該隔板單元,該第二殼體單元具有多個該活動口、一第一表面以及相對於該第一表面的一第二表面,該第二殼體單元的該第一表面與該基板單元的另一部份以及該隔板單元的一第二表面界定出該第二空間;其中,該活動單元位於該第二殼體單元的該第二表面上。The adjustable mouse structure according to claim 4, wherein the housing module comprises a first housing unit and a second housing unit, the first housing unit is detachably connected to the base unit and the The partition unit, the first housing unit and a part of the base unit and a first surface of the partition unit define the first space, and the second housing unit is detachably connected to the base unit With the partition unit, the second housing unit has a plurality of the movable ports, a first surface and a second surface opposite to the first surface, the first surface of the second housing unit and the base plate Another part of the unit and a second surface of the partition unit define the second space; wherein the movable unit is located on the second surface of the second housing unit. 如請求項5所述的可調式滑鼠結構,其中,該傳動單元包括一主動件以及一從動件,該主動件穿設於該驅動單元與該從動件,並與該驅動單元以及該從動件嚙合,且該從動件能拆卸地連接於多個該支撐部;其中,該驅動單元為齒輪,該主動件為螺桿,該從動件為滑塊。The adjustable mouse structure according to claim 5, wherein the transmission unit includes a driving member and a driven member, the driving member passes through the driving unit and the driven member, and communicates with the driving unit and the driven member. The follower is meshed, and the follower is detachably connected to a plurality of the support parts; wherein, the driving unit is a gear, the driving part is a screw, and the follower is a slider. 如請求項6所述的可調式滑鼠結構,其中,在該驅動單元朝該第一方向轉動時,該主動件受該驅動單元的帶動而驅使該從動件朝該第一方位進行位移,並藉由該從動件帶動該活動單元朝該第一方位進行位移;其中,在該驅動單元朝該第二方向轉動時,該主動件受該驅動單元的帶動而驅使該從動件朝該第二方位進行位移,並藉由該從動件帶動該活動單元朝該第二方位進行位移。The adjustable mouse structure according to claim 6, wherein when the driving unit rotates toward the first direction, the driving element is driven by the driving unit to drive the driven element to displace toward the first direction, and drive the movable unit to displace toward the first direction by the driven element; wherein, when the driving unit rotates toward the second direction, the driving element is driven by the drive unit to drive the driven element toward the second direction The second orientation is displaced, and the movable unit is driven by the follower to move toward the second orientation. 如請求項4所述的可調式滑鼠結構,還進一步包括: 一控制模組,其位於該第一空間,該控制模組通訊連接於一外部電子裝置;以及 一感測模組,其設置於該基板單元,並位於該第一空間,該感測模組電性連接該控制模組。The adjustable mouse structure according to claim 4, further comprising: a control module located in the first space, the control module is communicatively connected to an external electronic device; and A sensing module is disposed on the substrate unit and located in the first space, and the sensing module is electrically connected to the control module. 一種可調式滑鼠結構,其包括: 一底座模組; 一殼體模組,其能拆卸地設置於該底座模組,該殼體模組與該底座模組之間界定一容置空間,該殼體模組具有相對設置的多個活動口;以及 一形變模組,其包括: 一驅動單元,其位於該容置空間中; 一傳動單元,其設置於該容置空間中,並連接於該驅動單元;以及 一活動單元,其位於該殼體模組上,該活動單元具有多個支撐部,每一該支撐部穿設於所對應的該活動口且連接於該傳動單元; 其中,在該驅動單元驅使該傳動單元進行一第一作動時,該傳動單元帶動該活動單元朝一第一方位進行位移,進而使該可調式滑鼠結構由一第一型體變形為一第二型體。An adjustable mouse structure, comprising: a base module; a housing module, which can be detachably arranged on the base module, an accommodating space is defined between the housing module and the base module, and the housing module has a plurality of movable ports arranged oppositely; and A deformation module, which includes: a drive unit located in the accommodating space; a transmission unit disposed in the accommodating space and connected to the drive unit; and a movable unit located on the housing module, the movable unit has a plurality of support parts, each of the support parts is penetrated through the corresponding movable port and connected to the transmission unit; Wherein, when the drive unit drives the transmission unit to perform a first action, the transmission unit drives the movable unit to move toward a first orientation, thereby deforming the adjustable mouse structure from a first body to a second body model. 如請求項9所述的可調式滑鼠結構,其中,在該驅動單元驅使該傳動單元進行一第二作動時,該傳動單元帶動該活動單元朝一第二方位進行位移,進而使該可調式滑鼠結構由該第二型體變形為該第一型體;其中,該驅動單元為馬達元件,且該可調式滑鼠結構還進一步包括一切換模組,其電性連接該驅動單元,在該切換模組處於一第一模式時,該切換模組驅使該驅動單元帶動該傳動單元進行該第一作動,而在該切換模組處於一第二模式時,該切換模組驅使該驅動單元帶動該傳動單元進行該第二作動。The adjustable mouse structure according to claim 9, wherein when the drive unit drives the transmission unit to perform a second action, the transmission unit drives the movable unit to move toward a second direction, thereby making the adjustable slider The mouse structure is transformed from the second body to the first body; wherein, the driving unit is a motor element, and the adjustable mouse structure further includes a switching module, which is electrically connected to the driving unit, in the When the switching module is in a first mode, the switching module drives the driving unit to drive the transmission unit to perform the first action, and when the switching module is in a second mode, the switching module drives the driving unit to drive The transmission unit performs the second actuation.
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