TWI439627B - Support frame device with a self-locking mechanism - Google Patents

Support frame device with a self-locking mechanism Download PDF

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Publication number
TWI439627B
TWI439627B TW101100430A TW101100430A TWI439627B TW I439627 B TWI439627 B TW I439627B TW 101100430 A TW101100430 A TW 101100430A TW 101100430 A TW101100430 A TW 101100430A TW I439627 B TWI439627 B TW I439627B
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Taiwan
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locking
channel
gears
groove
accommodating space
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TW101100430A
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Chinese (zh)
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TW201319442A (en
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Terry Leng
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Inventec Appliances Corp
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  • Fittings On The Vehicle Exterior For Carrying Loads, And Devices For Holding Or Mounting Articles (AREA)
  • Telephone Set Structure (AREA)

Description

具自鎖機制之支架裝置Bracket device with self-locking mechanism

本發明係關於支架裝置,尤指一種設有單向齒輪模組的支架裝置,令使用者僅需透過重覆按壓,便能夠使該支架裝置自動更換為鎖定狀態或釋放狀態,以方便使用者將一可攜式電子裝置固定於該支架裝置上,或自該支架裝置上取下該可攜式電子裝置。The present invention relates to a bracket device, and more particularly to a bracket device provided with a one-way gear module, so that the user can automatically change the bracket device into a locked state or a released state only by repeated pressing, so as to facilitate the user. The portable electronic device is fixed to the bracket device or the portable electronic device is removed from the bracket device.

隨著無線網路技術的高速發展,及電子產業的精進,目前的可攜式電子產品的體積是愈來愈小,但功能卻愈來愈多,舉例而言,現今的行動電話除了撥打電話及收發簡訊之外,尚具備了照相、錄音、導航、上網、看電子書、看影片、玩遊戲...等功能,令使用者僅需攜帶一台行動電話,便如同攜帶多個不同種類的電子裝置一般,大幅提高使用者在使用上的便利性。With the rapid development of wireless network technology and the advancement of the electronics industry, the current portable electronic products are getting smaller and smaller, but more and more functions. For example, today's mobile phones are not only making calls. In addition to sending and receiving newsletters, it also has functions such as taking photos, recording, navigating, surfing the Internet, reading e-books, watching videos, playing games, etc., so that users only need to carry one mobile phone, just like carrying multiple different types. In general, the electronic device greatly improves the user's convenience in use.

承上,雖然行動電話已增加諸多功能,但在不同場合的情況下,使用者仍需藉由其它輔助裝置,才能妥善地利用,舉例而言,當使用者於開車時,若同時需使用行動電話中的導航功能,由於在使用上,使用者除需聽從導航語音指示外,尚必須觀看導航路線指示,因此,使用者勢必無法將行動電話放置於口袋中,或者採用一手持有行動電話,一手握持方向盤駕駛等危險行為,故,使用者通常會在車上組裝一支撐架,以能將行動電話直立放置於支撐架上,以能一邊聽從導航語音指示,一邊觀看行動電話的顯示幕,一般言,習知的支撐架通常是在其上設有一容置空間,以供放置該行動電話,請參閱第1圖所示,該支撐架1之一端設有一定位部11(如:吸盤),以能固定至車體上,其另一端則設有複數個凸柱13,該等凸柱13彼此間能圍繞形成一容置空間,以供使用者將行動電話放置於該容置空間中,且受到該等凸柱13的限位效果,而使該行動電話能固定於該容置空間中,如此,使用者即可方便地拿取該行動電話,或者在行車過程中能使用該行動電話之導航功能。In fact, although mobile phones have added many functions, in different situations, users still need to use other auxiliary devices to properly use them. For example, when users are driving, they need to use actions at the same time. The navigation function in the phone, in addition to the use of the navigation voice instructions, the user must also watch the navigation route indication, therefore, the user is bound to be unable to put the mobile phone in the pocket, or a mobile phone with a hand-held, Dangerous behavior such as steering in the hand, so the user usually assembles a support frame on the car to place the mobile phone upright on the support frame, so that he can watch the display of the mobile phone while listening to the navigation voice indication. Generally speaking, the conventional support frame usually has an accommodating space for the mobile phone to be placed thereon. Referring to FIG. 1 , one end of the support frame 1 is provided with a positioning portion 11 (eg, a suction cup). ), which can be fixed to the vehicle body, and the other end is provided with a plurality of studs 13 which can be surrounded by each other to form an accommodating space for use. The mobile phone is placed in the accommodating space, and is subjected to the limiting effect of the studs 13, so that the mobile phone can be fixed in the accommodating space, so that the user can conveniently take the action. The mobile phone's navigation function can be used by phone or during driving.

惟,復請參閱第1圖所示,習知支撐架1雖然能解決使用者於行車時,無法同時手持行動電話與方向盤的問題,但在實際使用上,習知支撐架1仍具有諸多缺點,首先,行動電話僅是依靠各個凸柱13的限制,而無法任意位移,但在行動電話與各個凸柱13之間,仍具有微小的間隙,因此,在行車的過程中,由於受到路面顛簸與晃動影響,行動電話便會不斷地碰撞各個凸柱13,造成行動電話的表面容易受損,其次,由於習知支撐架1並未對行動電話有任何鎖固功效,因此,在顛簸嚴重的行車過程中,行動電話即易脫離容置空間而摔落於車內底面,令行動電話損壞,導致使用者需額外花費金錢維修或購買新的行動電話。However, as shown in FIG. 1 , the conventional support frame 1 can solve the problem that the user cannot hold the mobile phone and the steering wheel at the same time when driving, but in practice, the conventional support frame 1 still has many disadvantages. First of all, the mobile phone only relies on the limitation of each of the studs 13 and cannot be arbitrarily displaced, but there is still a slight gap between the mobile phone and each of the studs 13, so that during the driving process, due to the bumpy road surface With the swaying effect, the mobile phone will continuously collide with each of the studs 13, causing the surface of the mobile phone to be easily damaged. Secondly, since the conventional support frame 1 does not have any locking effect on the mobile phone, it is severely bumpy. During the driving process, the mobile phone is easily disengaged from the accommodating space and falls on the underside of the vehicle, causing the mobile phone to be damaged, causing the user to spend extra money to repair or purchase a new mobile phone.

故,如何針對前述的缺點,設計出一種嶄新的支架裝置,除能確實定位鎖固行動電話外,尚具有方便操作與使用的便利性,以大幅增加業者的市場競爭力,即成為現今眾多相關業者亟思解決的一大課題。Therefore, how to design a new kind of bracket device for the above shortcomings, in addition to the location of the fixed mobile phone, it is convenient to operate and use, so as to greatly increase the market competitiveness of the industry, that is, become a lot of relevant A major issue solved by the industry.

有鑑於習知支撐架具有諸多缺點,因此,發明人經過長久努力研究與實驗,終於開發設計出本發明之一種具自鎖機制之支架裝置,以期藉由本發明之問世,能提供一種更為便利的嶄新支架裝置,進而能有效解決前述之問題。In view of the fact that the conventional support frame has many shortcomings, the inventor has finally developed and designed a self-locking bracket device of the present invention through long-term research and experiment, in order to provide a more convenient convenience by the present invention. The new bracket device can effectively solve the aforementioned problems.

本發明之一目的,係提供一種具自鎖機制之支架裝置,係包括一座體、一支撐模組、二自鎖模組及一單向齒輪模組,其中該座體之頂端與一側面設有一凹槽,以供容納一可攜式電子裝置,其內則設有一容置空間,該凹槽內鄰近底面的位置設有一軌道孔,以與該容置空間相連通,該座體鄰近頂端且對應該凹槽的位置,設有相對應的二穿孔,各該穿孔分別與該容置空間相連通,另,該支撐模組之一端設在該容置空間,其另一端則通過該軌道孔,並容納在該凹槽中,且能在該凹槽中上下位移,各該自鎖模組之一端分別位在該容置空間鄰近該座體的左、右側,其另一端則分別對應於各該穿孔,且能位移通過各該穿孔而外露至對應於該凹槽的位置,再者,該單向齒輪模組係位在該容置空間,包括二單向驅動齒輪、二前齒輪、二帶槽圓盤及二卡制元件,其中各該單向驅動齒輪分別連接至該支撐模組,且能被該支撐模組帶動而旋轉,各該前齒輪分別連接至各該自鎖模組,且能被各該自鎖模組帶動而旋轉,其軸桿分別穿過對應之單向驅動齒輪的中心軸孔,在各該單向驅動齒輪朝第一方向轉動的狀態下,能帶動各該前齒輪旋轉,在各該單向驅動齒輪朝第二方向轉動的狀態下,則不帶動各該前齒輪旋轉,各該帶槽圓盤係被各該前齒輪之軸桿穿過其中心軸孔,而能被各該前齒輪帶動而旋轉,各該帶槽圓盤分別設有一第一槽道、一第二槽道及一第三槽道,以圍繞形成一三角形,且任二條相鄰槽道的相鄰處係具有高度差,各該卡制元件之一端係可位移地設在該座體內,其另一端則分別抵靠住對應之帶槽圓盤的槽道,且在各該帶槽圓盤被帶動旋轉的狀態下,各該卡制元件之另一端會依序由對應的第一槽道、第二槽道滑移至第三槽道,在該支撐模組的另一端朝下位移至超過第一距離之前,其會帶動各該單向驅動齒輪朝第一方向轉動,進而令各該前齒輪、帶槽圓盤旋轉,且使各該卡制元件在對應之第一槽道滑移,使各該自鎖模組的另一端通過各該穿孔,朝該座體的中心軸線之方向位移;在該支撐模組的另一端朝下位移至超過該第一距離時,其會帶動各該單向驅動齒輪朝第一方向轉動,進而令各該前齒輪、帶槽圓盤旋轉,且在各該卡制元件滑移至第二槽道後,各該卡制元件係限定各該帶槽圓盤無法逆向旋轉,進而使各該前齒輪無法逆向旋轉,迫使各該自鎖模組已通過該穿孔之另一端無法位移,令可攜式電子裝置被定位至該凹槽與各該自鎖模組之另一端之間,且支撐模組的另一端會朝上位移至未超過第一距離;在該支撐模組的另一端再次朝下位移至超過第一距離時,其會帶動各該單向驅動齒輪朝第一方向轉動,進而令各該前齒輪、帶槽圓盤旋轉,且在各該卡制元件滑移至第三槽道後,各該自鎖模組會對各該前齒輪施加的一作用力,迫使各該前齒輪與帶槽圓盤逆向旋轉,直至各該卡制元件滑移回各該第一槽道為止,且迫使該支撐模組之另一端朝上位移,並令各該自鎖模組之另一端位移回該容置空間。如此,當使用者將可攜式電子裝置***支架裝置的凹槽上後,僅需重覆按壓可攜式電子裝置,便能使該支架裝置自動鎖固可攜式電子裝置,避免該可攜式電子裝置因震動或晃動而脫離該支架裝置,或使該支架裝置自動釋放可攜式電子裝置,方便使用者拿取該可攜式電子裝置。An object of the present invention is to provide a bracket device with a self-locking mechanism, which comprises a body, a support module, a two-self-locking module and a one-way gear module, wherein a top end and a side of the seat body are provided a recess is provided for accommodating a portable electronic device, and an accommodating space is disposed therein, and a track hole is disposed in the recess adjacent to the bottom surface to communicate with the accommodating space, the pedestal body is adjacent to the top end And corresponding to the position of the groove, the corresponding two perforations are provided, and the perforations are respectively connected to the accommodating space, and one end of the supporting module is disposed in the accommodating space, and the other end passes through the trajectory a hole is received in the groove and can be displaced up and down in the groove, and one end of each of the self-locking modules is respectively located in the accommodating space adjacent to the left and right sides of the pedestal body, and the other end thereof respectively corresponds to Each of the perforations is displaceable through each of the perforations to a position corresponding to the recess, and the one-way gear module is located in the receiving space, including two one-way driving gears and two front gears , two grooved discs and two-clamp components, each of which The one-way driving gears are respectively connected to the support module, and can be rotated by the support module, and the front gears are respectively connected to the self-locking modules, and can be rotated by the self-locking modules. The shaft rods respectively pass through the central shaft holes of the corresponding one-way driving gears, and in the state in which the one-way driving gears rotate in the first direction, the front gears can be rotated, and the one-way driving gears face each In the state of rotating in the two directions, each of the front gears is not rotated, and each of the grooved disks is passed through the center shaft hole of each of the front gears, and can be rotated and rotated by each of the front gears. The slotted disk is respectively provided with a first channel, a second channel and a third channel to form a triangle, and adjacent portions of any two adjacent channels have a height difference, and the card One end of the component is displaceably disposed in the housing, and the other end of the component is respectively abutted against the corresponding grooved disk, and each of the cards is rotated while the grooved disk is rotated. The other end of the component will be sequentially slipped by the corresponding first channel and second channel Up to the third channel, before the other end of the support module is displaced downward to exceed the first distance, it drives each of the one-way driving gears to rotate in a first direction, thereby making each of the front gears and the grooved disks Rotating, and causing each of the clamping elements to slide in the corresponding first channel, so that the other end of each of the self-locking modules is displaced toward the central axis of the body through the perforations; When the other end is displaced downward to exceed the first distance, it drives each of the one-way driving gears to rotate in the first direction, thereby rotating the front gears, the grooved disks, and sliding the respective components After moving to the second channel, each of the clamping elements defines that each of the grooved disks cannot be reversely rotated, so that the front gears cannot be reversely rotated, forcing the self-locking modules to pass through the other end of the perforations. The portable electronic device is positioned between the recess and the other end of each of the self-locking modules, and the other end of the support module is displaced upward to not exceed the first distance; When the other end is displaced downward again to exceed the first distance, The unidirectional driving gears are driven to rotate in the first direction, so that the front gears and the grooved disks are rotated, and after the clamping components are slid to the third channel, the self-locking modules will a force applied by each of the front gears forces each of the front gears and the grooved disk to rotate counterclockwise until each of the clamping elements slides back to each of the first channels, and forces the other end of the support module toward The upper displacement is performed, and the other end of each self-locking module is displaced back to the accommodating space. In this way, after the user inserts the portable electronic device into the recess of the bracket device, the portable electronic device can be automatically locked only by repeatedly pressing the portable electronic device, thereby avoiding the portable device. The electronic device is separated from the bracket device by vibration or shaking, or the bracket device automatically releases the portable electronic device, so that the user can conveniently take the portable electronic device.

為便 貴審查委員能對本發明目的、技術特徵及其功效,做更進一步之認識與瞭解,茲舉實施例配合圖式,詳細說明如下:For your convenience, the review committee can make a further understanding and understanding of the purpose, technical features and effects of the present invention. The embodiments are combined with the drawings, and the details are as follows:

本發明係一種具自鎖機制之支架裝置,請參閱第2圖所示,包括一座體21、一支撐模組23、二自鎖模組25及一單向齒輪模組27,在本發明之一實施例中,該座體21係由一前殼體211及一後殼體213組合而成,且在兩者相結合後,會形成一容置空間210,以能容納該支架裝置2的相關元件(如:支撐模組23、自鎖模組25、單向齒輪模組27),其中該前殼體211之頂端與一側面共同凹設有一凹槽2111,使得一可攜式電子裝置(如:行動電話、個人數位助理器、導航裝置...等)能容納於其中,該凹槽2111內鄰近底面的位置設有一軌道孔2113,以使該凹槽2111與該容置空間210相連通,該座體21鄰近頂端且對應該凹槽2111的位置,設有相對應的二穿孔2115,各該穿孔2115分別使該凹槽2111與該容置空間210相連通,又,該凹槽2111中尚設有複數個夾持彈片215,在可攜式電子裝置被***至該凹槽2111中,係會被各該夾持彈片215所夾持住,如此,藉由該等夾持彈片215的設計,不僅能穩固地將該可攜式電子裝置定位於該凹槽2111中,且該等夾持彈片215尚能在受到可攜式電子裝置的壓迫而產生形變,以提供避震效果,並避免該可攜式電子裝置因搖晃而不斷地碰撞該凹槽2111的壁面,造成可攜式電子裝置的表面受損。The present invention is a bracket device with a self-locking mechanism, as shown in FIG. 2, comprising a body 21, a support module 23, two self-locking modules 25 and a one-way gear module 27, in the present invention In one embodiment, the seat body 21 is formed by a combination of a front housing 211 and a rear housing 213, and after the two are combined, an accommodation space 210 is formed to accommodate the bracket device 2. The related components (such as the support module 23, the self-locking module 25, the one-way gear module 27), wherein a recess 2111 is recessed in the top end and the side of the front housing 211, so that a portable electronic device (such as a mobile phone, a personal digital assistant, a navigation device, etc.) can be accommodated therein, and a track hole 2113 is defined in the groove 2111 adjacent to the bottom surface, so that the groove 2111 and the accommodating space 210 Connected to the top end and corresponding to the position of the recess 2111, corresponding to the two through holes 2115, each of the through holes 2115 respectively connect the recess 2111 with the accommodating space 210, and the recess A plurality of clamping elastic pieces 215 are further disposed in the slot 2111, and the portable electronic device is inserted into the recess 2111. The clamping elastic piece 215 is clamped by the clamping elastic piece 215, so that the portable electronic device can be stably positioned in the groove 2111 by the design of the clamping elastic piece 215, and the like The clamping elastic piece 215 can be deformed by the compression of the portable electronic device to provide a shock absorbing effect, and the portable electronic device is prevented from continuously colliding with the wall surface of the recess 2111 due to shaking, thereby causing a portable type. The surface of the electronic device is damaged.

此外,附請參閱第2圖所示,由於各該夾持彈片215的局部區域會與凹槽2111的璧面保持一間距,以能有足夠產生形變的空間,因此,當可攜式電子裝置的尺寸不同時,各該夾持彈片215仍能夠藉由自身不同程度的形變,而緊密地迫緊該可攜式電子裝置,令本發明之支架裝置2能夠適用於不同尺寸大小的可攜式電子裝置上,不僅增加使用者於使用上的便利性,同時,能大幅提高業者的市場競爭力。In addition, as shown in FIG. 2, since the partial area of each of the clamping elastic pieces 215 is spaced apart from the plane of the groove 2111 so as to have a space sufficient for deformation, the portable electronic device is used. When the dimensions are different, each of the clamping elastic pieces 215 can still tightly press the portable electronic device by different degrees of deformation, so that the bracket device 2 of the present invention can be adapted to portable sizes of different sizes. In the electronic device, not only the convenience of the user is increased, but also the market competitiveness of the operator can be greatly improved.

另,請參閱第2及3圖所示,該支撐模組23之一端設在該容置空間210中,其另一端則通過該軌道孔2113,並容納在該凹槽2111中,且能在該凹槽2111中上下位移,在該實施例中,該支撐模組23包括一底板231、至少一底板彈簧233及一雙邊齒條235,其中各該底板彈簧233之一端係抵靠至該底板231的底面,且其另一端則抵靠至該凹槽2111的底面,在該底板231受到壓迫,且壓迫力大於各該底板彈簧233的作用力時,該底板231會迫使各該底板彈簧233變形,並朝鄰近該凹槽2111底面的方向位移,但在該底板231不再受到壓迫時,受到各該底板彈簧233的作用力影響,該底板231會朝該凹槽2111頂面的方向位移,又,該雙邊齒條235係位在該容置空間210中,其縱斷面係呈L狀,該雙邊齒條235的一端延伸穿過該軌道孔2113,並固定至該底板231上,由於雙邊齒條235的一端厚度小於軌道孔2113之高度,因此,該雙邊齒條235的一端能在軌道孔2113進行上下位移,該雙邊齒條235的另一端組裝於後殼體213上,並能上下滑移,其中間區段的對應兩側分別設有復數個齒部2351,在該實施例中,後殼體213上設有一槽道2131,使得該雙邊齒條235的另一端能嵌卡於其中,但在本發明之其它實施例中,業者能依不同的產品設計,而採用不同的滑移方式,合先陳明。In addition, as shown in FIGS. 2 and 3, one end of the support module 23 is disposed in the accommodating space 210, and the other end passes through the track hole 2113 and is received in the groove 2111, and can be The support module 23 includes a bottom plate 231, at least one bottom plate spring 233 and a double side rack 235, wherein one end of each of the bottom plate springs 233 abuts against the bottom plate. The bottom surface of the 231, and the other end thereof abuts against the bottom surface of the groove 2111. When the bottom plate 231 is pressed and the pressing force is greater than the force of each of the bottom plate springs 233, the bottom plate 231 forces the bottom plate springs 233. Deformed and displaced in a direction adjacent to the bottom surface of the groove 2111, but when the bottom plate 231 is no longer pressed, it is affected by the force of each of the bottom plate springs 233, and the bottom plate 231 is displaced toward the top surface of the groove 2111. The double-sided rack 235 is located in the accommodating space 210, and has a longitudinal section L-shaped. One end of the double-sided rack 235 extends through the track hole 2113 and is fixed to the bottom plate 231. Since the thickness of one end of the double-sided rack 235 is smaller than the height of the track hole 2113 Therefore, one end of the double-sided rack 235 can be vertically displaced in the track hole 2113, and the other end of the double-sided rack 235 is assembled on the rear case 213, and can be slid up and down, and the corresponding sides of the middle section are respectively set There are a plurality of teeth 2351. In this embodiment, a rear channel 213 is provided with a channel 2131 so that the other end of the double-sided rack 235 can be embedded therein, but in other embodiments of the present invention, the manufacturer Can be designed according to different products, and use different slipping methods, together with Chen Ming.

再者,請參閱第2及4圖所示,各該自鎖模組25之一端分別位在該容置空間210鄰近該座體21的左、右側,其另一端則分別對應於各該穿孔2115,且能位移通過各該穿孔2115而外露至對應於該凹槽2111的位置,各該自鎖模組25分別包括一鎖緊齒條251、一鎖緊彈簧253、一鎖緊滑塊255及一滑塊彈簧257,在該實施例中,由於各該自鎖模組25中的各個元件,其連接關係與作用均相同,故為方便描述,僅針對其中一個自鎖模組25進行說明,該鎖緊齒條251之一端設有一斜面2511,其另一端則設有複數個齒部2513,且該鎖緊齒條251能夠在該容置空間210中進行上下位移,另,該鎖緊彈簧253能組裝至該座體21內的一彈簧槽2117中,以避免該鎖緊彈簧253因晃動而脫離原本的位置,其一端係抵靠至鎖緊齒條251之一端的位置,在該鎖緊齒條251受力向上位移時,係會迫使該鎖緊彈簧253變形,但在該鎖緊齒條251不再受力時,該鎖緊彈簧253會對該鎖緊齒條251施加一向下的作用力,以迫使該鎖緊齒條251朝下位移。又,該鎖緊滑塊255之一端係抵靠至該鎖緊齒條251之一端的位置,其另一端則對應其中一個穿孔2115,該滑塊彈簧257之兩端則分別抵靠住該鎖緊滑塊255與該前殼體211鄰近穿孔2115的位置,在該鎖緊齒條251被帶動而向上位移時,該鎖緊滑塊255之一端會受到該鎖緊齒條251的斜面2511推擠,而朝該容置空間210的中心軸線方向位移,並穿過對應之穿孔2115,而外露至該凹槽2111中,但在該鎖緊齒條251被帶動而向下位移時,受到該滑塊彈簧257的作用力影響,該鎖緊滑塊255之一端會位移回該容置空間210中。Furthermore, as shown in FIGS. 2 and 4, one end of each of the self-locking modules 25 is located adjacent to the left and right sides of the accommodating space 210, and the other end thereof corresponds to each of the perforations. 2115, and can be displaced through the perforations 2115 to a position corresponding to the recess 2111. Each of the self-locking modules 25 includes a locking rack 251, a locking spring 253, and a locking slider 255. And a slider spring 257. In this embodiment, since each of the components in the self-locking module 25 has the same connection relationship and function, for convenience of description, only one of the self-locking modules 25 is explained. One end of the locking rack 251 is provided with a sloped surface 2511, and the other end of the locking rack 251 is provided with a plurality of teeth 2513, and the locking rack 251 can be vertically displaced in the accommodating space 210. The spring 253 can be assembled into a spring groove 2117 in the seat body 21 to prevent the lock spring 253 from being detached from the original position by the swaying, and one end thereof is abutted against the one end of the locking rack 251. When the locking rack 251 is displaced upward, the locking spring 253 is forced to deform, but The locking rack 251 when a force is no longer, the spring 253 will lock the locking rack 251 applies a downward force to force the locking rack 251 downwardly displaced. Moreover, one end of the locking slider 255 abuts against one end of the locking rack 251, and the other end corresponds to one of the through holes 2115, and the two ends of the slider spring 257 respectively abut the lock The position of the tight slider 255 and the front housing 211 adjacent to the through hole 2115, when the locking rack 251 is driven to be displaced upward, one end of the locking slider 255 is pushed by the inclined surface 2511 of the locking rack 251 Squeezing, and displacing toward the central axis of the accommodating space 210, and passing through the corresponding through hole 2115, and being exposed to the groove 2111, but when the locking rack 251 is driven to be displaced downward, The force of the slider spring 257 is affected, and one end of the locking slider 255 is displaced back into the accommodating space 210.

承上,復請參閱第2及4圖所示,在該實施例中,該鎖緊滑塊255之一端的對應兩側面分別設有一圓柱2551及一塊體2553,其中該圓柱2551係抵靠至鎖緊齒條251的一端,並能沿著該斜面2511滑移,該塊體2553則能供滑塊彈簧257抵靠,另,鎖緊齒條251鄰近斜面2511底部的位置,設有一棍體2515,該鎖緊彈簧253係抵靠至該棍體2515上,惟,在本發明之其它實施例中,業者係能視產品設計,而改變前述之結構,合先敘明。As shown in FIG. 2 and FIG. 4, in this embodiment, the corresponding two sides of one end of the locking slider 255 are respectively provided with a cylinder 2551 and a body 2553, wherein the cylinder 2551 is abutted thereto. One end of the rack 251 is locked and can slide along the inclined surface 2511. The block 2553 can abut the slider spring 257, and the locking rack 251 is adjacent to the bottom of the inclined surface 2511, and has a stick body. 2515, the locking spring 253 is abutted against the stick body 2515. However, in other embodiments of the present invention, the manufacturer can change the foregoing structure depending on the product design.

復請參閱第2、3及4圖所示,該單向齒輪模組27係位在該容置空間210,包括二單向驅動齒輪271、二前齒輪273、二帶槽圓盤275及二卡制元件277,其中各該單向驅動齒輪271分別與該雙邊齒條235的齒部2351相囓合,在該雙邊齒條235上下位移時,係能帶動各該單向驅動齒輪271旋轉,又,各該前齒輪273之軸桿分別穿過對應之單向驅動齒輪271的中心軸孔,以與各該單向驅動齒輪271相組裝,且各該前齒輪273尚分別與各該鎖緊齒條251的齒部2513相囓合,在各該鎖緊齒條251上下位移時,係能帶動各該前齒輪273旋轉,在該實施例中,請參閱第5A與5B圖所示,係為單向驅動齒輪271與前齒輪273的***圖與局部放大圖,其中各該單向驅動齒輪271鄰近中心軸孔位置設有複數個簧片2711,該等簧片2711分別朝對應之單向驅動齒輪271的軸心彎曲延伸,又,各該前齒輪273之軸桿的周緣設有複數個斜向導槽2731,該等斜向導槽2731分別朝對應之前齒輪273的軸心彎曲延伸,且各該簧片2711能分別容置於各該斜向導槽2731,在各該單向驅動齒輪271朝一第一方向轉動時,各該簧片2711會抵靠住對應的斜向導槽2731之底面,以推動各該前齒輪273轉動,但在各該單向驅動齒輪271朝一第二方向轉動時,由於各該簧片2711會滑移脫離對應的斜向導槽2731,故無法推動各該前齒輪273,使得單向驅動齒輪271僅會自行旋轉,而前齒輪273則停止旋轉。Referring to Figures 2, 3 and 4, the one-way gear module 27 is located in the accommodating space 210, including two one-way driving gears 271, two front gears 273, two grooved disks 275 and two. The clamping element 277, wherein each of the one-way driving gears 271 meshes with the tooth portion 2351 of the double-sided rack 235, and when the double-sided rack 235 is displaced up and down, the one-way driving gear 271 can be driven to rotate, and The shafts of the front gears 273 respectively pass through the central shaft holes of the corresponding one-way driving gears 271 to be assembled with the one-way driving gears 271, and each of the front gears 273 and the locking teeth respectively The teeth 2513 of the strip 251 are engaged. When the locking racks 251 are displaced up and down, the front gears 273 can be rotated. In this embodiment, please refer to the figures 5A and 5B. An exploded view and a partial enlarged view of the driving gear 271 and the front gear 273, wherein each of the one-way driving gears 271 is disposed adjacent to the central shaft hole position with a plurality of reeds 2711, respectively, which are respectively directed to the corresponding one-way driving gears The axis of the 271 is bent and extended, and further, the periphery of the shaft of each of the front gears 273 is provided with a plurality of The oblique guide grooves 2731 are respectively bent and extended toward the axial center of the corresponding front gear 273, and each of the spring pieces 2711 can be respectively received in each of the oblique guide grooves 2731, and the one-way drive gear 271 faces each When the first direction is rotated, each of the reeds 2711 will abut against the bottom surface of the corresponding oblique guide groove 2731 to push the front gears 273 to rotate, but when the one-way driving gears 271 are rotated in a second direction, Each of the reeds 2711 slides away from the corresponding oblique guide groove 2731, so that each of the front gears 273 cannot be pushed, so that the one-way drive gear 271 rotates only by itself, and the front gear 273 stops rotating.

承上,復請參閱第2及6A圖所示,各該帶槽圓盤275係被各該前齒輪273之軸桿穿過其中心軸孔,以能被各該前齒輪273帶動而旋轉,其周緣分別設有一第一槽道2751、一第二槽道2753及一第三槽道2755,以圍繞形成一三角形,且任二條相鄰槽道2751、2753、2755的相鄰處係具有高度差(如第6B圖所示),各該卡制元件277之一端係可位移地設在該座體21內,其另一端則分別抵靠住對應之帶槽圓盤275的第一槽道2751,在各該帶槽圓盤275被對應之前齒輪273帶動旋轉時,各該卡制元件277之另一端會沿著第一槽道2751滑移,且在其滑移到第二槽道2753後,由於該第一槽道2751係高於該第二槽道2753,故卡制元件277之另一端無法由第二槽道2753滑移回第一槽道2751,同理,卡制元件277之另一端會依序沿著第二槽道2753與第三槽道2755滑移,且無法逆向由第三槽道2755滑移回第二槽道2753,直至卡制元件277之另一端滑移至第一槽道2751與第三槽道2755的相鄰處,且由於該第三槽道2755係高於該第一槽道2751,故卡制元件277之另一端同樣無法由第一槽道2751滑移回第三槽道2755。As shown in FIGS. 2 and 6A, each of the grooved discs 275 is passed through the central shaft hole of each of the front gears 273 so as to be rotatable by the front gears 273. A peripheral channel 2751, a second channel 2753 and a third channel 2755 are respectively disposed on the periphery thereof to form a triangle, and the adjacent portions of any two adjacent channels 2751, 2753, 2755 have a height. Poor (as shown in FIG. 6B), one end of each of the clamping members 277 is displaceably disposed in the seat body 21, and the other end thereof abuts against the first channel of the corresponding grooved disk 275, respectively. 2751. When each of the slotted disks 275 is rotated by the corresponding front gear 273, the other end of each of the clamping members 277 slides along the first channel 2751 and slides to the second channel 2753. Thereafter, since the first channel 2751 is higher than the second channel 2753, the other end of the clamping component 277 cannot be slid back to the first channel 2751 by the second channel 2753. Similarly, the clamping component 277 The other end will slide along the second channel 2753 and the third channel 2755 in sequence, and cannot be reversely swept back to the second channel 2753 by the third channel 2755 until the card The other end of the element 277 is slid to the vicinity of the first channel 2751 and the third channel 2755, and since the third channel 2755 is higher than the first channel 2751, the other end of the clamping element 277 It is also impossible to slip back to the third channel 2755 by the first channel 2751.

又,復請參閱第2及6A圖所示,各該卡制元件277分別包括一圓盤滑塊2771及一撞針2773,其中各該圓盤滑塊2771之一端係抵靠至該後殼體213的板體2133上,且能在板體2133上滑移,其另一端則與各該撞針2773之一端相組裝,且各該撞針2773之一端尚分別設有一撞針彈簧2775,其另一端則抵靠至對應的帶槽圓盤275之第一槽道2751,由於受到各該撞針彈簧2775之作用力影響,故各該撞針2773能緊密地抵靠至帶槽圓盤275,且在各該撞針2773於對應之第二槽道2753滑移時,係能帶動各該圓盤滑塊2771位移,避免各該撞針2773歪斜而發生脫離的情況。此外,在該實施例中,復請參閱第6B圖所示,該第二槽道2753係略呈V型,使得其中間區段形成一凹陷部2753A與對應之一尖銳部2753B,當帶槽圓盤275朝該第一方向旋轉,使得撞針2773由第一槽道2751滑移至第二槽道2753後,該撞針2773會抵靠至該第二槽道2753之一端(即第一槽道2751與第二槽道2753的相鄰處),使得該帶槽圓盤275無法持續朝第一方向旋轉,又,若帶槽圓盤275又朝第二方向旋轉時,撞針2773便會定位至該凹陷部2753A中,而迫使該帶槽圓盤275無法朝第二方向旋轉。Moreover, as shown in FIGS. 2 and 6A, each of the clamping members 277 includes a disc slider 2771 and a striker 2773, wherein one end of each of the disc sliders 2771 is abutted against the rear housing. The plate body 2133 of the 213 is slidable on the plate body 2133, and the other end thereof is assembled with one end of each of the striker pins 2773, and one end of each of the striker pins 2773 is respectively provided with a striker spring 2775, and the other end is respectively provided with a striker spring 2775 The first channel 2751 abutting against the corresponding slotted disk 275 is affected by the force of each of the striker springs 2775, so that the striker 2773 can closely abut against the slotted disk 275, and When the striker 2773 is slid in the corresponding second channel 2753, the disk slider 2771 can be displaced to prevent the striker 2773 from being skewed and detached. In addition, in this embodiment, as shown in FIG. 6B, the second channel 2753 is slightly V-shaped, such that the middle portion thereof forms a recess 2753A and a corresponding one of the sharp portions 2753B. The disk 275 is rotated in the first direction, so that after the striker 2773 is slid from the first channel 2751 to the second channel 2753, the striker 2773 will abut against one end of the second channel 2753 (ie, the first channel) 2751 is adjacent to the second channel 2753), so that the grooved disk 275 cannot continuously rotate in the first direction, and if the grooved disk 275 is rotated in the second direction, the striker 2773 is positioned to In the recess 2753A, the grooved disk 275 is forced to rotate in the second direction.

為明確揭露本發明之支架裝置2的作動原理,茲僅就前述之各個元件的連動關係,進行說明,其中,在第7A~7E圖中,係省略前殼體,以避免過多的元件被遮蔽住,請參閱第2、3及7A圖所示,當使用者將可攜式電子裝置3放置於凹槽2111後,該可攜式電子裝置3能抵靠至該底板231的頂面,嗣,使用者能推擠該可攜式電子裝置3,同時,克服底板彈簧233的作用力,令該底板231朝該座體21的底部位移(如第7A圖之箭頭A),在該底板231朝下位移至一第一距離之前,該雙邊齒條235同樣會被帶動而朝下位移,同時,受到該雙邊齒條235的齒部2351影響,各該單向驅動齒輪271會朝第一方向轉動,並帶動對應之前齒輪273旋轉,在此特別一提者,前述之第一方向乃是指單向驅動齒輪271能夠帶動前齒輪273的旋轉方向,因此,對於第2圖之兩個單向驅動齒輪271而言,左側之單向驅動齒輪271的第一方向為順時針,右側之單向驅動齒輪271的第一方向為逆時針,合先敘明。又,復請參閱第6A及7A圖,各該前齒輪273旋轉時,係會帶動對應之帶槽圓盤275朝第一方向旋轉,且使各該撞針2773能在對應之第一槽道2751中滑移,同時,各該鎖緊齒條251會被對應之前齒輪273帶動,而向上位移(如第7A圖之箭頭B)。In order to clearly disclose the operation principle of the stent device 2 of the present invention, only the interlocking relationship of the aforementioned components will be described. In the seventh to seventh embodiments, the front casing is omitted to prevent excessive components from being obscured. As shown in the figures 2, 3 and 7A, when the user places the portable electronic device 3 in the recess 2111, the portable electronic device 3 can abut against the top surface of the bottom plate 231. The user can push the portable electronic device 3 while dissipating the force of the bottom plate spring 233 to displace the bottom plate 231 toward the bottom of the base body 21 (as indicated by arrow A in FIG. 7A). Before being displaced downward to a first distance, the double-sided rack 235 is also driven to be displaced downward, and at the same time, affected by the tooth portion 2351 of the double-sided rack 235, each of the one-way driving gears 271 faces in the first direction. Rotating and driving the corresponding gear 273 to rotate. In particular, the first direction refers to the one-way driving gear 271 capable of driving the rotation direction of the front gear 273. Therefore, for the two directions of the second figure In the case of the drive gear 271, the one-way drive gear 271 on the left side The first direction is clockwise, the right way first drive gear 271 counterclockwise direction, the first engagement stating. Moreover, referring to FIGS. 6A and 7A, when each of the front gears 273 rotates, the corresponding grooved disk 275 is rotated in the first direction, and each of the strikers 2773 can be in the corresponding first channel 2751. In the middle, at the same time, each of the locking racks 251 is driven by the corresponding front gear 273 and displaced upward (as indicated by arrow B in Fig. 7A).

承上,請參閱第2及7B圖所示,當該底板231朝下位移至超過該第一距離後,各該撞針2773(如第6A圖所示)會由對應之第一槽道2751滑移至第二槽道2753,並抵靠至第二槽道2753的一端,使得各該帶槽圓盤275無法朝第一方向旋轉,又,各該鎖緊齒條251在向上位移時,其斜面2511(如第4圖所示)會推擠對應之鎖緊滑塊255,使各該鎖緊滑塊255能通過對應的穿孔2115,朝該座體21的中心軸線之方向位移(如第7B圖之箭頭C),嗣,當使用者不再推擠可攜式電子裝置3後,由於該可攜式電子裝置3與各該鎖緊滑塊255之間尚具有間距,因此,受到底板彈簧233的作用力影響,該底板231會連同該雙邊齒條235向上位移(如第7B圖之箭頭D),直至該可攜式電子裝置3抵靠至各該鎖緊滑塊255為止(如第7C圖所示),且該底板231會回復到未超過第一距離的位置,如此,可攜式電子裝置3便會被固定至該支架裝置2上,而無法輕易地脫離。另,在該雙邊齒條235向上位移的過程中,該雙邊齒條235會帶動各該單向驅動齒輪271朝第二方向旋轉,此時,各該單向驅動齒輪271會無法帶動對應的前齒輪273旋轉,使得各該鎖緊齒條251不會被帶動而向下位移,令各該鎖緊滑塊255仍能保持於鎖定狀態。再者,當使用者不再推擠可攜式電子裝置3後,各該鎖緊彈簧253之作用力會迫使各該鎖緊齒條251向下位移,且使各該鎖緊齒條251帶動各該前齒輪273旋轉,進而帶動對應之帶槽圓盤275旋轉,此時,各該撞針2773便會由第二槽道2753之一端滑移至凹陷部2753A(如第6A、6B圖),令各該帶槽圓盤275無法旋轉,進而使各該鎖緊齒條251又無法向下位移,又,由於第二槽道2753之一端與凹陷部2753A兩者間的距離極短,故各該鎖緊滑塊255仍能夠保持於鎖定狀態。As shown in FIGS. 2 and 7B, when the bottom plate 231 is displaced downward to exceed the first distance, each of the striker 2773 (as shown in FIG. 6A) is slid by the corresponding first channel 2751. Moving to the second channel 2753 and abutting against one end of the second channel 2753, such that the grooved disk 275 cannot rotate in the first direction, and when the locking rack 251 is displaced upward, The inclined surface 2511 (shown in FIG. 4) pushes the corresponding locking slider 255 so that each locking slider 255 can be displaced toward the central axis of the base body 21 through the corresponding through hole 2115 (eg, In the arrow C) of Figure 7B, after the user no longer pushes the portable electronic device 3, since the portable electronic device 3 and the locking sliders 255 still have a spacing, the bottom plate is received. The 233 is affected by the force of the spring 233, and the bottom plate 231 is displaced upward along with the double-sided rack 235 (such as the arrow D in FIG. 7B) until the portable electronic device 3 abuts against each of the locking sliders 255 (eg, 7C, and the bottom plate 231 will return to a position that does not exceed the first distance, so that the portable electronic device 3 is fixed to the bracket. 2 home, and can not be easily disengaged. In addition, during the upward displacement of the double-sided rack 235, the double-sided rack 235 drives the one-way driving gear 271 to rotate in the second direction. At this time, each of the one-way driving gears 271 cannot drive the corresponding front. The gear 273 is rotated such that each of the locking racks 251 is not driven to be displaced downward, so that each of the locking sliders 255 can remain in the locked state. Moreover, when the user no longer pushes the portable electronic device 3, the force of each of the locking springs 253 forces the locking racks 251 to be displaced downward, and each of the locking racks 251 is driven. Each of the front gears 273 rotates to drive the corresponding slotted disk 275 to rotate. At this time, each of the strikers 2773 is slid from one end of the second channel 2753 to the recessed portion 2753A (as shown in FIGS. 6A and 6B). Therefore, the grooved discs 275 cannot be rotated, so that the locking racks 251 can not be displaced downward, and since the distance between one end of the second channel 2753 and the recessed portion 2753A is extremely short, each The locking slider 255 can still remain in the locked state.

請參閱第2及7D圖所示,當使用者再度按壓該可攜式電子裝置3,使得該底板231連同該雙邊齒條235向下位移時,該雙邊齒條235會帶動各該單向驅動齒輪271旋轉,進而使對應之前齒輪273與帶槽圓盤275旋轉,由於撞針2773在滑移時,會受到第二槽道2753之尖銳部2753B(如第6A、6B圖所示)的限制,而僅能朝第三槽道2755的方向滑移,直至各該撞針2773滑移至第三槽道2755中,嗣,當使用者不再按壓該可攜式電子裝置3後,各該鎖緊彈簧253之作用力會迫使各該鎖緊齒條251向下位移(如第7D圖之箭頭E),此時,各該鎖緊齒條251會帶動各該前齒輪273旋轉,進而帶動對應之帶槽圓盤275旋轉,令各該撞針2773能沿著第三槽道2755滑移,並滑移至第一槽道2751為止,又,在各該鎖緊齒條251向下位移的過程中,各該鎖緊滑塊255受到對應之滑塊彈簧257的作用力影響,會朝遠離該座體21的中心軸線之方向位移(如第7D圖之箭頭F),並經由對應之穿孔2115而位移於容置空間210,以處於釋放狀態(如第7E圖所示),同時,該底板231受到各該底板彈簧233的作用力影響,亦會帶動該可攜式電子裝置3向上位移,以便於使用者直接取出該可攜式電子裝置3。Referring to FIGS. 2 and 7D, when the user presses the portable electronic device 3 again, the bottom plate 231 is displaced downward along with the double-sided rack 235, the double-sided rack 235 drives the one-way drive. The gear 271 rotates to rotate the corresponding front gear 273 and the grooved disk 275. Since the striker 2773 is slipping, it is limited by the sharp portion 2753B of the second channel 2753 (as shown in Figs. 6A and 6B). Only sliding in the direction of the third channel 2755 until the striker 2773 slides into the third channel 2755, 嗣, when the user no longer presses the portable electronic device 3, each of the locks The force of the spring 253 forces the locking racks 251 to be displaced downward (as indicated by the arrow E in FIG. 7D). At this time, each of the locking racks 251 drives the front gears 273 to rotate, thereby driving the corresponding ones. The slotted disk 275 rotates so that each of the striker 2773 can slide along the third channel 2755 and slide to the first channel 2751, and again, during the downward displacement of each of the locking racks 251 Each of the locking sliders 255 is affected by the force of the corresponding slider spring 257 and faces away from the central axis of the housing body 21. The directional displacement (such as arrow F in FIG. 7D) is displaced to the accommodating space 210 via the corresponding through hole 2115 to be in a released state (as shown in FIG. 7E), and at the same time, the bottom plate 231 is subjected to each of the bottom plate springs. The force effect of the 233 also drives the portable electronic device 3 to be displaced upwards, so that the user can directly remove the portable electronic device 3.

如此,復請參閱第2及7A圖所示,藉由本發明之支架裝置2的整體結構,當使用者欲將可攜式電子裝置3固定至支架裝置2上時,僅需將可攜式電子裝置3放置於凹槽2111中,且按壓該可攜式電子裝置3,以使該支撐模組23的另一端朝下位移至超過第一距離後,便能使該支架裝置2自動鎖固該可攜式電子裝置3,避免該可攜式電子裝置3因震動或晃動而脫離該支架裝置2,又,當使用者欲取出該可攜式電子裝置3時,僅需再次按壓該可攜式電子裝置3後,該支架裝置2便會自動釋放該可攜式電子裝置3,令該支撐模組23的另一端帶動該可攜式電子裝置3向上位移,方便使用者直接拿取該可攜式電子裝置3。Therefore, as shown in FIGS. 2 and 7A, with the overall structure of the bracket device 2 of the present invention, when the user wants to fix the portable electronic device 3 to the bracket device 2, only the portable electronic device is needed. The device 3 is placed in the recess 2111, and the portable electronic device 3 is pressed to displace the other end of the support module 23 downward beyond the first distance, so that the bracket device 2 can automatically lock the bracket device 2 The portable electronic device 3 prevents the portable electronic device 3 from being detached from the cradle device 2 due to vibration or shaking. Moreover, when the user wants to take out the portable electronic device 3, the portable electronic device 3 only needs to be pressed again. After the electronic device 3, the cradle device 2 automatically releases the portable electronic device 3, so that the other end of the supporting module 23 drives the portable electronic device 3 to be displaced upwards, so that the user can directly take the portable device. Electronic device 3.

按,以上所述,僅係本發明之較佳實施例,惟,本發明所主張之權利範圍,並不侷限於此,按凡熟悉該項技藝人士,依據本發明所揭露之技術內容,可輕易思及之等效變化,均應屬不脫離本發明之保護範疇。The above is only the preferred embodiment of the present invention, but the scope of the claims of the present invention is not limited thereto, and according to those skilled in the art, according to the technical content disclosed in the present invention, Equivalent changes that are easily considered are within the scope of protection of the invention.

2...支架裝置2. . . Bracket device

21...座體twenty one. . . Seat

210...容置空間210. . . Housing space

211...前殼體211. . . Front housing

2111...凹槽2111. . . Groove

2113...軌道孔2113. . . Track hole

2115...穿孔2115. . . perforation

2117...彈簧槽2117. . . Spring slot

213...後殼體213. . . Rear housing

2131...槽道2131. . . Channel

2133...板體2133. . . Plate body

215...夾持彈片215. . . Clamping shrapnel

23...支撐模組twenty three. . . Support module

231...底板231. . . Bottom plate

233...底板彈簧233. . . Bottom spring

235...雙邊齒條235. . . Double side rack

2351、2513...齒部2351, 2513. . . Tooth

25...自鎖模組25. . . Self-locking module

251...鎖緊齒條251. . . Locking rack

2511...斜面2511. . . Bevel

2515...棍體2515. . . Stick body

253...鎖緊彈簧253. . . Locking spring

255...鎖緊滑塊255. . . Lock slider

2551...圓柱2551. . . cylinder

2553...塊體2553. . . Block

257...滑塊彈簧257. . . Slide spring

27...單向齒輪模組27. . . One-way gear module

271...單向驅動齒輪271. . . One-way drive gear

2711...簧片2711. . . Reed

273...前齒輪273. . . Front gear

2731...斜向導槽2731. . . Oblique guide slot

275...帶槽圓盤275. . . Grooved disc

2751...第一槽道2751. . . First channel

2753...第二槽道2753. . . Second channel

2753A...凹陷部2753A. . . Depression

2753B...尖銳部2753B. . . Sharp part

2755...第三槽道2755. . . Third channel

277...卡制元件277. . . Card component

2771...圓盤滑塊2771. . . Disc slider

2773...撞針2773. . . firing pin

2775...撞針彈簧2775. . . Needle spring

3...可攜式電子裝置3. . . Portable electronic device

第1圖係習知支撐架的示意圖;Figure 1 is a schematic view of a conventional support frame;

第2圖係本發明之支架裝置的***示意圖;Figure 2 is a schematic view showing the explosion of the stent device of the present invention;

第3圖係支撐模組的示意圖;Figure 3 is a schematic view of the support module;

第4圖係自鎖模組的示意圖;Figure 4 is a schematic view of a self-locking module;

第5A圖係單向驅動齒輪與前齒輪的***示意圖;Figure 5A is a schematic diagram of the explosion of the one-way drive gear and the front gear;

第5B圖係單向驅動齒輪與前齒輪的局部放大圖;Figure 5B is a partial enlarged view of the one-way drive gear and the front gear;

第6A圖係帶槽圓盤的示意圖;Figure 6A is a schematic view of a grooved disk;

第6B圖係帶槽圓盤的槽道示意圖;Figure 6B is a schematic view of a grooved grooved disk;

第7A圖係支架裝置的第一動作示意圖;Figure 7A is a schematic view of the first action of the stent device;

第7B圖係支架裝置的第二動作示意圖;Figure 7B is a schematic view of the second action of the stent device;

第7C圖係支架裝置的第三動作示意圖;Figure 7C is a schematic view of the third action of the stent device;

第7D圖係支架裝置的第四動作示意圖;及Figure 7D is a schematic view of the fourth action of the stent device; and

第7E圖係支架裝置的第五動作示意圖。Figure 7E is a schematic view of the fifth action of the stent device.

2...支架裝置2. . . Bracket device

21...座體twenty one. . . Seat

210...容置空間210. . . Housing space

211...前殼體211. . . Front housing

2111...凹槽2111. . . Groove

2113...軌道孔2113. . . Track hole

2115...穿孔2115. . . perforation

2117...彈簧槽2117. . . Spring slot

213...後殼體213. . . Rear housing

2131...槽道2131. . . Channel

215...夾持彈片215. . . Clamping shrapnel

23...支撐模組twenty three. . . Support module

231...底板231. . . Bottom plate

233...底板彈簧233. . . Bottom spring

235...雙邊齒條235. . . Double side rack

25...自鎖模組25. . . Self-locking module

251...鎖緊齒條251. . . Locking rack

253...鎖緊彈簧253. . . Locking spring

255...鎖緊滑塊255. . . Lock slider

257...滑塊彈簧257. . . Slide spring

27...單向齒輪模組27. . . One-way gear module

271...單向驅動齒輪271. . . One-way drive gear

273...前齒輪273. . . Front gear

275...帶槽圓盤275. . . Grooved disc

277...卡制元件277. . . Card component

Claims (10)

一種具自鎖機制之支架裝置,係包括:一座體,其頂端與一側面共同凹設有一凹槽,以供容納一可攜式電子裝置,其內設有一容置空間,該凹槽內鄰近底面的位置設有一軌道孔,以使該凹槽與該容置空間相連通,該座體鄰近頂端且對應該凹槽的位置,設有相對應的二穿孔,各該穿孔分別使該凹槽與該容置空間相連通;一支撐模組,其一端設在該容置空間內,其另一端則通過該軌道孔,並容納在該凹槽中,且能在該凹槽中上下位移;二自鎖模組,其一端分別位在該容置空間內鄰近該座體的左、右側,其另一端則分別對應於各該穿孔,且能位移通過各該穿孔而外露至對應於該凹槽的位置;及一單向齒輪模組,係設在該容置空間內,包括二單向驅動齒輪、二前齒輪、二帶槽圓盤及二卡制元件,其中各該單向驅動齒輪分別連接至該支撐模組,且能被該支撐模組帶動而旋轉,各該前齒輪分別連接至各該自鎖模組,且能被各該自鎖模組帶動而旋轉,其軸桿分別穿過對應之單向驅動齒輪的中心軸孔,在各該單向驅動齒輪朝一第一方向轉動的狀態下,能帶動各該前齒輪旋轉,在各該單向驅動齒輪朝一第二方向轉動的狀態下,則不帶動各該前齒輪旋轉,各該帶槽圓盤係被各該前齒輪之軸桿穿過其中心軸孔,而能被各該前齒輪帶動而旋轉,各該帶槽圓盤分別設有一第一槽道、一第二槽道及一第三槽道,以圍繞形成一三角形,且任二條相鄰槽道的相鄰處係具有高度差,各該卡制元件之一端係可位移地設在該座體內,其另一端則分別抵靠住對應之帶槽圓盤的槽道,且在各該帶槽圓盤被帶動旋轉的狀態下,各該卡制元件之另一端會由對應的第一槽道依序滑移至第二槽道與第三槽道。 A bracket device with a self-locking mechanism includes: a body having a recess recessed in a top end and a side surface for receiving a portable electronic device, wherein an accommodation space is disposed in the recess The bottom surface is provided with a track hole for communicating the groove with the accommodating space, the seat body is adjacent to the top end and corresponding to the position of the groove, and corresponding two through holes are provided, each of the holes respectively making the groove Connected to the accommodating space; a supporting module, one end of which is disposed in the accommodating space, the other end of which passes through the track hole and is received in the groove, and can be vertically displaced in the groove; The second self-locking module has one end located adjacent to the left and right sides of the seat body in the accommodating space, and the other end corresponding to each of the through holes respectively, and is displaceable through each of the through holes to be corresponding to the concave a position of the slot; and a one-way gear module disposed in the accommodating space, comprising two unidirectional driving gears, two front gears, two grooved disks and two clamping components, wherein the one-way driving gears Connected to the support module separately and can be supported by the support The group is driven and rotated, and each of the front gears is respectively connected to each of the self-locking modules, and can be rotated by the self-locking modules, and the shafts respectively pass through the central shaft holes of the corresponding one-way driving gears, In a state in which the one-way driving gear rotates in a first direction, each of the front gears can be rotated, and in a state in which each of the one-way driving gears rotates in a second direction, each of the front gears is not rotated. The slotted disc is driven by the shaft of each of the front gears through its central shaft hole, and can be rotated by each of the front gears. Each of the grooved discs is respectively provided with a first channel and a second channel. And a third channel to form a triangle, and adjacent portions of any two adjacent channels have a height difference, one end of each of the clamping elements is displaceably disposed in the body, and the other end is Abutting the corresponding grooved disk, respectively, and in the state in which each of the grooved disks is rotated, the other end of each of the clamping elements is sequentially slipped by the corresponding first channel to The second channel and the third channel. 如請求項1所述之支架裝置,其中在各該帶槽圓盤被帶動旋轉的狀態下,各該卡制元件之另一端會由對應的第一槽道依序滑移至第二槽道與第三槽道,在該支撐模組的另一端朝下位移且未超過一第一距離的狀態下,其會帶動各該單向驅動齒輪朝該第一方向轉動,進而令各該前齒輪及帶槽圓盤旋轉,且使各該卡制元件在對應之第一槽道滑移,使各該自鎖模組的另一端通過各該穿孔,朝該座體的中心軸線之方向位移;在該支撐模組的另一端朝下位移至超過該第一距離的狀態下,其會帶動各該單向驅動齒輪朝該第一方向轉動,進而令各該前齒輪、帶槽圓盤旋轉,且在各該卡制元件滑移並定位至第二槽道後,該支撐模組的另一端朝上位移至未超過該第一距離,且各該卡制元件限定各該帶槽圓盤無法逆向旋轉,進而使各該前齒輪無法逆向旋轉,迫使各該自鎖模組已通過該穿孔之另一端無法位移;在該支撐模組的另一端再次朝下位移至超過該第一距離的狀態下,其會帶動各該單向驅動齒輪朝該第一方向轉動,進而令各該前齒輪、帶槽圓盤旋轉,且在各該卡制元件滑移至第三槽道後,各該自鎖模組會對各該前齒輪施加的一作用力,迫使各該前齒輪與帶槽圓盤逆向旋轉,直至各該卡制元件滑移回各該第一槽道為止,且迫使該支撐模組之另一端朝上位移,並令各該自鎖模組之另一端位移回該容置空間。 The bracket device of claim 1, wherein in the state in which each of the slotted disks is rotated, the other end of each of the clamping elements is sequentially slipped by the corresponding first channel to the second channel. And the third channel, in a state in which the other end of the support module is displaced downward and does not exceed a first distance, it drives each of the one-way driving gears to rotate in the first direction, thereby making each of the front gears And rotating the slotted disk, and causing each of the clamping components to slide in the corresponding first channel, so that the other end of each of the self-locking modules is displaced toward the central axis of the base through the perforations; When the other end of the supporting module is displaced downward to exceed the first distance, the one-way driving gear is driven to rotate in the first direction, thereby rotating the front gear and the grooved disk. And after each of the clamping components is slid and positioned to the second channel, the other end of the supporting module is displaced upward to not exceed the first distance, and each of the clamping elements defines each of the grooved disks to be reversed Rotating, so that each of the front gears cannot rotate in the opposite direction, forcing each self-mode-locking The other end of the through hole is not displaceable; and the other end of the supporting module is displaced downward again to exceed the first distance, which drives the one-way driving gear to rotate in the first direction, thereby Rotating each of the front gears and the grooved discs, and after each of the clamping elements slides to the third channel, each of the self-locking modules applies a force to each of the front gears, forcing each of the front gears Reverse rotation with the slotted disc until each of the clamping elements slides back to each of the first slots, and forces the other end of the support module to be displaced upward, and displaces the other end of each of the self-locking modules Go back to the accommodating space. 如請求項2所述之支架裝置,其中各該第二槽道分別呈V型, 使得其中間區段分別形成一凹陷部與對應之一尖銳部,在各該支撐模組的另一端再次朝下位移至超過該第一距離的狀態下,各該卡制元件會受到各該尖銳部的限制,而朝該第三槽道的方向滑移。 The bracket device of claim 2, wherein each of the second channels is V-shaped, Forming a recessed portion and a corresponding one of the sharp portions in the middle portion, and each of the clamping members is subjected to each sharp state in a state in which the other end of each of the supporting modules is again displaced downward to exceed the first distance. The restriction of the part, and slips in the direction of the third channel. 如請求項2或3所述之支架裝置,其中該支撐模組包括:一底板,係位在該凹槽內;至少一底板彈簧,係位在該凹槽內,且其兩端分別底靠該底板與該凹槽之底面;及一雙邊齒條,係位在該容置空間,其一端係延伸突出至該軌道孔,並連接至該底板,且能在該軌道孔進行上下位移,其中間區段的對應兩側分別設有複數個齒部。 The support device of claim 2 or 3, wherein the support module comprises: a bottom plate, which is located in the groove; at least one bottom plate spring is located in the groove, and the two ends thereof are respectively bottomed The bottom plate and the bottom surface of the groove; and a double-sided rack, which is located in the accommodating space, has one end extending to the track hole and connected to the bottom plate, and can be vertically displaced in the track hole, wherein A plurality of teeth are respectively disposed on corresponding sides of the intermediate section. 如請求項4所述之支架裝置,其中各該自鎖模組分別包括:二鎖緊齒條,係位在該容置空間,其一端設有一斜面,其另一端則設有複數個齒部,各該鎖緊齒條的齒部分別與對應之前齒輪相嚙合,以能被各該前齒輪帶動而旋轉;二鎖緊彈簧,係位在該容置空間,其一端分別抵靠至各該鎖緊齒條對應斜面底部的位置,以對各該鎖緊齒條施加一向下移動的作用力;二鎖緊滑塊,係位在該容置空間,其一端分別抵靠至各該鎖緊齒條之一端的位置,在各該鎖緊齒條被帶動而向上位移的狀態下,各該鎖緊滑塊之一端會受到對應之鎖緊齒條的斜面推擠,而朝該容置空間的中心軸線方向位移,並分別穿過對應之穿孔,而外露至該凹槽中;及二滑塊彈簧,係位在該容置空間,其一端分別抵靠住各該鎖緊 滑塊,其另一端則抵靠住該座體,以對各該鎖緊滑塊施加一向遠離凹槽移動的作用力。 The bracket device of claim 4, wherein each of the self-locking modules comprises: two locking racks, which are located in the accommodating space, and have a bevel at one end and a plurality of teeth at the other end. The teeth of each of the locking racks respectively mesh with the corresponding front gears so as to be rotatable by the front gears; the two locking springs are located in the accommodating space, and one end thereof abuts each of the gears The locking rack corresponds to the bottom of the inclined surface to apply a downward moving force to each of the locking racks; the second locking slider is located in the receiving space, and one end thereof abuts against each of the locking a position of one end of the rack, in a state in which each of the locking racks is driven to be displaced upward, one end of each of the locking sliders is pushed by the inclined surface of the corresponding locking rack, and facing the receiving space The central axis is displaced in the direction of the axis and is respectively exposed through the corresponding perforation to the groove; and the two slider springs are located in the accommodating space, and one end thereof abuts against each of the locks The slider has its other end abutting against the seat body to apply a force to each of the locking sliders to move away from the groove. 如請求項5所述之支架裝置,其中該座體包括:一前殼體,其頂端與一側面凹設有該凹槽,該前殼體鄰近凹槽底面的另一側面開設有一軌道孔,該前殼體鄰近頂端且對應凹槽的位置,設有相對應的二穿孔;及一後殼體,係與該前殼體之另一側面相組裝,且組裝後會在該前殼體與後殼體之間形成該容置空間。 The bracket device of claim 5, wherein the base body comprises: a front housing, the top end and a side surface are recessed with the recess, and the front housing defines a track hole adjacent to the other side of the bottom surface of the recess. The front casing is adjacent to the top end and corresponding to the position of the groove, and is provided with corresponding two perforations; and a rear casing is assembled with the other side of the front casing, and is assembled in the front casing and The accommodating space is formed between the rear housings. 如請求項6所述之支架裝置,其中各該卡制元件分別包括:一圓盤滑塊,係位在該容置空間,且抵靠至該後殼體上之一板體,並能在該板體上滑移;及一撞針,其一端分別藉由一撞針彈簧抵靠至該圓盤滑塊,其另一端則分別抵靠住對應之帶槽圓盤的槽道,且在各該帶槽圓盤被帶動旋轉的狀態下,各該撞針會在對應之槽道中滑移。 The bracket device of claim 6, wherein each of the clamping elements comprises: a disc slider, which is located in the accommodating space and abuts against a plate body on the rear housing, and can be Sliding on the plate; and a striker, one end of which is respectively abutted against the disc slider by a striker spring, and the other end of which abuts against the corresponding grooved disc, respectively, and In the state in which the slotted disk is rotated, each of the strikers will slip in the corresponding channel. 如請求項7所述之支架裝置,其中各該單向驅動齒輪鄰近中心軸孔位置分別設有複數個簧片,各該簧片分別朝對應之單向驅動齒輪的軸心彎曲延伸,各該前齒輪之軸桿的周緣分別設有複數個斜向導槽,各該斜向導槽分別朝對應之前齒輪的軸心彎曲延伸,且各該簧片能分別容置於各該斜向導槽,在各該單向驅動齒輪朝該第一方向轉動的狀態下,各該簧片會抵靠住對應的斜向導槽之底面,並推動各該前齒輪旋轉,在各該單向驅動齒輪朝該第二方向轉動的狀態下,各該簧片會滑移脫離對應的斜向導槽。 The bracket device of claim 7, wherein each of the one-way driving gears is respectively provided with a plurality of reeds adjacent to the central shaft hole, and each of the reeds is bent and extended toward an axis of the corresponding one-way driving gear, respectively. The periphery of the shaft of the front gear is respectively provided with a plurality of oblique guide grooves, each of which is bent and extended toward the axis of the corresponding gear, and each of the springs can be respectively accommodated in each of the oblique guide grooves. In a state in which the one-way driving gear rotates in the first direction, each of the reeds abuts against a bottom surface of the corresponding oblique guiding groove, and pushes each of the front gears to rotate, and the one-way driving gear faces the second When the direction is rotated, each of the reeds will slide away from the corresponding oblique guide groove. 如請求項8所述之支架裝置,其中該鎖緊滑塊之一端的對應兩 側面分別設有一圓柱及一塊體,該圓柱係抵靠至鎖緊齒條的一端,並能沿著該斜面滑移,該塊體係與該滑塊彈簧相抵靠。 The bracket device of claim 8, wherein the two ends of the locking slider correspond to two The sides are respectively provided with a cylinder and a body which abuts against one end of the locking rack and can slide along the inclined surface, and the block system abuts against the slider spring. 如請求項9所述之支架裝置,其中該鎖緊齒條鄰近斜面底部的位置,設有一棍體,該鎖緊彈簧係抵靠至該棍體上。 The bracket device of claim 9, wherein the locking rack is adjacent to the bottom of the slope, and a stick body is provided, the locking spring being abutted against the stick body.
TW101100430A 2011-11-04 2012-01-05 Support frame device with a self-locking mechanism TWI439627B (en)

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