TW201112920A - Latch mechansim - Google Patents

Latch mechansim Download PDF

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Publication number
TW201112920A
TW201112920A TW098133255A TW98133255A TW201112920A TW 201112920 A TW201112920 A TW 201112920A TW 098133255 A TW098133255 A TW 098133255A TW 98133255 A TW98133255 A TW 98133255A TW 201112920 A TW201112920 A TW 201112920A
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TW
Taiwan
Prior art keywords
casing
side wall
guiding structure
sliding block
sliding
Prior art date
Application number
TW098133255A
Other languages
Chinese (zh)
Other versions
TWI381790B (en
Inventor
Chien-Hua Lai
Original Assignee
Inventec Corp
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Publication date
Application filed by Inventec Corp filed Critical Inventec Corp
Priority to TW098133255A priority Critical patent/TWI381790B/en
Publication of TW201112920A publication Critical patent/TW201112920A/en
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Publication of TWI381790B publication Critical patent/TWI381790B/en

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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  • Battery Mounting, Suspending (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

A latch mechanism including a housing, a battery, a first slider, a second slider, and a cover is provided. The battery, the first slider, the second slider, and the cover are all disposed on the case, wherein the first slider is located at one side of the battery and the second slider is located by the first slider. The first slider releases the battery when the first slider slides toward a first direction relative to the housing, and the first slider also drives the second slider to open the cover toward a second direction relative to the housing, wherein the second direction is vertical to the first direction.

Description

201112920 090408.TW 31704twf.doc/n 六、發明說明: 【發明所屬之技術領域】 本發明是有關於一種機構,且特別β 機構。 J弋有關於一種閂鎖 【先前技術】 為了要固定 用門蓋與筆 讓筆記型電201112920 090408.TW 31704twf.doc/n VI. Description of the Invention: TECHNICAL FIELD OF THE INVENTION The present invention relates to a mechanism, and in particular to a β mechanism. J弋 has a kind of latch. [Prior Art] In order to fix the door cover and pen, let the notebook type

在習知的電子裝£中,例如筆記 電池及考量筆記型電腦的整體美觀,所匈, 記型電腦的機殼結合,使電池藏於門罢X會使 腦具有整體美觀性。 下’ 大部分的使用者習慣多買—個備用 中的筆記型電腦的電池沒電時,只能依^/也,以避免使用 座的連接才能繼續使用及充電的情^二^部充電器與插 座的環境中,而且身邊只有唯—的1=身處於沒有插 於無法繼續使用筆記型電腦魏尬纽’便會容易處 ,中,落出f。但是’當使用止:i: 發生門讀驗結合地太緊密,所間蓋難Α :的問題。或者’使用者過於用力而使門蓋壞掉::再與 Ϊ殼結ΐ。再者,就算使用者順利地將門蓋從機殼上取下: 電池緊密地固定在機殼中,也讓使用者很難將t池從機殼 中取出。 【發明内容】 201112920 090408.TW 31704twf.doc/n 本發明提供一種具有使用便利性的閂鎖機構。 本發明提出一種閃鎖機構,其包括一機殼、一電池、 一滑動塊以及一門蓋。電池、滑動塊及門蓋皆配置於機殼 上’其中滑動塊位於電池以及門蓋之間。當滑動塊朝一第 一方向相對機殼滑動時,滑動塊先解除電池的限位,且滑 動塊持續朝第一方向滑動,滑動塊使門蓋以一第二方向相 對機殼開啟,其中第一方向與第二方向互相垂直。 在本發明之閂鎖機構的一實施例中,其中滑動塊包括 一第一滑動件以及一第二滑動件,第一滑動件位於一電池 之一侧,而第二滑動件位於第一滑動件及門蓋之間。當第 一滑動件朝第一方向相對機殼滑動時,第一滑動件解二電 池的限位,且第一滑動件帶動第二滑動件使門蓋以第二方 向相對機殼開啟。 在本發明之閂鎖機構的一實施例中,上述之第二滑動 件具有一第一導引結構,而門蓋具有一第二導引結構,卷 第二滑動件朝第一方向滑動並接觸門蓋時,第一導引、纟士 沿著第二導引結構移動使第二滑動件同時帶動門蓋以第二 方向相對機殼開啟。此外,第一導引結構為凸柱而 ,引結構為凹槽。再者,第二導引結構具有相連的卡了 第-側壁、第二側壁以及第三側壁,其中第—側壁與第一 方向夹一鈍角,而第一側壁與第二側壁失—銳角,且 側壁與第二側壁夾-直角。第二侧壁與第三側壁 ^ 擔部,且當Η蓋㈣機殼f姐時,第二導;丨結構 ς 互相限位,使門蓋保持相f士機殼開啟的狀態。 均 201112920 090408.TW 31704twf.doc/n 件相對靠近第二滑動件Μ施例中,上述之第一滑動 叙杜如银^ 動件的一末端為一限位卡勾, ^士双肖移動時’解除限位卡勾與電池的 在本發明之閂鎖機構的 限位卡勾,當第一滑 在本發明之_ 一勾與電池的限位。 鎖機構的一貫施例中,上述之媸妒且古 限位槽中,以限制第-滑動件於第-方向上相對機殼j # , 有弟一限位槽,且導引柱位於第 動 有一 C機構的-實施例中, 啕荷.沾且當第二滑動件位於 件受到擋點限位。 ' 在本發明之閂鎖機構告 2,而第-滑動件相對遠離二2括,伸縮 縮彈簧對齡接。 科為卡 上述之機殼更具 鎖住位置上時,第二滑動 勾’且這些卡勾與伸 -第3的—實施例中’其中滑動塊具有 ^ 命引結構,而門蓋且古一哲 f 朝第-方向滑動並觸引結構,當滑動塊 引結構移動使滑動塊帶動;;以構沿著第二導 第-導引結構為凸柱’ 2相職殼開啟。 導引結構具有相連的-卡勾凹槽2外第二 及-第三側壁,第—側壁與 /帛一側壁以 第夹;::角’且第三侧壁與第二側壁爽-直 盒相職開啟時’第二導引結構與受撞限= 201112920 090408.TW 31704twf.doc/n 門蓋保持相對機殼開啟的狀態。 在本發明之閂鎖機構的一實施例令,其中滑動塊的一 末端為一限位卡勾,當滑動塊朝第一方向移動時 ,解除限 位卡勾與電池的限位。 在本發明之閂鎖機構的一實施例中,其中機殼具有一 導引柱’而滑動塊具有—第—限位槽,導引柱位於第〆 限位槽中,以關_塊於第—方向上相對機殼滑動。 在本發明之閂鎖機構的一實施例中,其旦 一擋點,且當滑動塊錄―鎖住位置上時,㈣塊制擔 點限位。 在本發明之_機構的—實施例中,更包括多個伸縮 廡i接而滑動塊的"""末端為—卡勾,且卡勾與伸縮彈簧對 解本發明之隨機構制兩階段的作動,先 用的限位再解除機殼與門蓋的限位,且在使 狀t戶斤門ΐ攸機殼上取下前’門蓋相對機殼保持開啟的 =性所以❹者μ方便地從機殼上取下門蓋,具使用 舉者;上述特徵和優點能更明顯易懂,下文特 舉只_,並配合所附圖式作詳細說明如下。 【實施方式】 而圖:之—種問鎖機構的局部透視示意圖, • 之立體不意圖。請同時參考圖1及圖2, ;* 201112920 090408.TW 31704twf.doc/n 實施例之閃鎖機構1_可以應用於筆記型電腦等電子裝 置。此閃鎖機構1000包括一機殼11〇〇、一電池胸」 第-滑動件1300、-第二滑動件14〇〇以及一門蓋15〇〇。 迅池1200、第-滑動件13〇〇、第二滑動件i獅及門蓋 皆配置於機殼1100上,其中第一滑動件13〇〇位於電池 1200的-侧’第二滑動件·位於第—滑動件13⑽旁, 此第-滑動件13GG及第二滑動件剛設置於電池麗 的同一側。當第一滑動件1300朝第-方向D1相對機殼 U00滑動時’第-滑動件1300解除電池12〇〇的限位,且 第一滑動件1300帶動第二滑動件14〇〇使門蓋15〇〇以第二 方向D2相對機殼1100開啟,其中第一方向;〇1與 向D2互相垂直。 詳細而言,第二滑動件1400具有一第一導引結構 1410,而門篕1500具有一第二導引結構151〇,其中第一 導引結構1410為凸柱,而第二導引結構151〇為凹槽。此 第一導引結構1510具有相連的卡勾1512、第一側壁1514、 鲁 弟一側壁1516以及第三側壁1518,其中第一侧壁1514與 第一方向D1夾一純角,而第一側壁1514與第二側壁1516 夾一銳角,且第三侧壁1518與第二侧壁1516夾一直角。 當第二滑動件1400朝第一方向D1滑動並接觸門蓋15〇〇 時,第一導引結構1410即是沿著第二導引結構151〇之相 連的卡勾1512、第一側壁1514、第二侧壁1516以及第三 側壁1518移動使第二滑動件1400帶動門蓋1500以第二方 向D2相對機殼11〇〇開啟。 201112920 090408.TW 31704twf.doc/n 此外弟一導引結構1510更具有一受播部bp,且 此受擋部1517是由第二側壁1516及第三侧壁Β18共同形 成的,用以在門蓋1500相對機殼11〇〇開啟時,限位第一 導引結構1410。另外,第一滑動件1300相對靠近第二滑 動^ 1400的-末端為一限位卡勾131〇,當第一滑動件1剔 朝第一方向D1移動時,限位卡勾131〇解除與電池12〇〇 的限位。在其他實施例中,限位卡勾1310也更可推移以使 電池1200的一侧相對機殼11〇〇龜起,便於使用者拿取。 另外—機几又1100還具有導引柱,而第一滑動件 具有第-限位槽1320,且導引柱! 100位於第一限位槽132〇 士中’以限制第-滑動们3〇〇只能於第一方向Di上相對機 滑動。再者,機殼1100更具有一擋點112〇,且當 第二滑動件1働位於—鎖住位置時,第二滑動件14〇〇受 到指\點1120限位。 ^閂鎖機構1000更包括多個伸縮彈簧1600、1700 ,而 第一滑動件1300相對遠離第二滑動件14〇〇的一末端為一 卡勾1330,且卡勾133〇與伸縮彈簧16〇〇連接,而第二滑 動件1400相對靠近第一滑動件測的一末端也為一卡勾 1420,且卡勾M20與伸縮彈簧poo連接。 請參考圖2,在-般電子襄置的正常使用或未使用的 狀況下’閃鎖機構1000的門蓋15〇〇會與機殼11〇〇組合在 起此蛉,伸縮彈簧1600、17〇〇呈現自然的收縮狀態, 使第一滑動件13〇〇及第二滑動件14〇〇分別位於各自的鎖 住位置。在此同時,第二滑動件14〇〇的第一導引結構ΐ4ι〇 201112920 090408.TW 31704twf.doc/n 受到第二導引結構1510的卡勾1512限位。 視Η圖第二滑動件相朗蓋移動的局部立體透 =。·參考圖2及圖3,當第_滑動件簡 動牯,因為機殼110〇的導引柱u 1300 七… 俏故彳立第一滑動件1300只能 有弟一方向D1上的移動。推移第一滑動件_朝第一方 =D1移動,伸縮彈簧聊會被拉伸並儲存一彈性恢復In the conventional electronic device, for example, the overall aesthetics of the notebook battery and the consideration notebook computer, the combination of the Hungarian and the computerized case of the notebook computer allows the battery to be hidden in the door to make the brain have an overall aesthetic appearance. Under the 'most of the users are accustomed to buy more - the battery in the spare notebook computer can only rely on ^ / also to avoid the use of the connection to continue to use and charge the ^ ^ ^ charger In the environment with the socket, and only the one around you = the body is not plugged in and can not continue to use the notebook computer Wei Wei New will be easy, in, out f. But when it is used: i: The door check is too tight, and the cover is difficult: Or 'the user is too hard to make the door cover broken:: and then crust with the clam shell. Furthermore, even if the user smoothly removes the door cover from the casing: The battery is tightly fixed in the casing, which makes it difficult for the user to remove the t-tank from the casing. SUMMARY OF THE INVENTION 201112920 090408.TW 31704twf.doc/n The present invention provides a latch mechanism that is easy to use. The invention provides a flash lock mechanism comprising a casing, a battery, a sliding block and a door cover. The battery, the sliding block and the door cover are all disposed on the casing. The sliding block is located between the battery and the door cover. When the sliding block slides relative to the casing in a first direction, the sliding block first releases the battery limit, and the sliding block continues to slide in the first direction, and the sliding block opens the door cover in a second direction relative to the casing, wherein the first The direction is perpendicular to the second direction. In an embodiment of the latch mechanism of the present invention, wherein the sliding block comprises a first sliding member and a second sliding member, the first sliding member is located on one side of the battery, and the second sliding member is located at the first sliding member. Between the door and the door. When the first sliding member slides relative to the casing in the first direction, the first sliding member releases the limit of the battery, and the first sliding member drives the second sliding member to open the door in the second direction relative to the casing. In an embodiment of the latch mechanism of the present invention, the second sliding member has a first guiding structure, and the door cover has a second guiding structure, and the second sliding member slides and contacts the first direction. When the door is closed, the first guide and the gentleman move along the second guiding structure so that the second sliding member simultaneously drives the door cover to open in the second direction relative to the casing. In addition, the first guiding structure is a convex column, and the guiding structure is a groove. Furthermore, the second guiding structure has the connected first side wall, the second side wall and the third side wall, wherein the first side wall and the first direction have an obtuse angle, and the first side wall and the second side wall are lost at an acute angle, and The side wall and the second side wall are clamped at right angles. The second side wall and the third side wall ^ shoulder portion, and when the cover (four) casing f sister, the second guide; the 丨 structure ς are mutually restricted, so that the door cover maintains the state of the phase shi casing open. Both of the 201112920 090408.TW 31704twf.doc/n parts are relatively close to the second sliding member. In the first embodiment, the first sliding end of the silver sliding member is a limit hook, and the The limit hook is hooked to the limit of the battery in the latch mechanism of the present invention, when the first slide in the present invention is a hook with the battery limit. In the consistent embodiment of the lock mechanism, the above-mentioned 限 and the ancient limit groove are arranged to restrict the first sliding member from being opposite to the casing j # in the first direction, and the second limiting groove is provided, and the guiding column is located at the first movement In the case of a C-mechanism, the load is applied and the second slide is located at the stop of the member. In the latch mechanism of the present invention, the first slide member is relatively far from the two, and the telescopic spring is paired. When the card is in the locked position of the above-mentioned casing, the second sliding hook 'and these hooks and the extension - the third - in the embodiment', wherein the sliding block has a life-inducing structure, and the door cover and the ancient one Zhe f slides in the first direction and touches the structure. When the sliding block guiding structure moves, the sliding block is driven; and the structure is opened along the second guiding first guiding structure. The guiding structure has two outer and third side walls connected to the hook groove 2, the first side wall and the second side wall are first clips;:: angle ' and the third side wall and the second side wall cool-straight box 'Second guiding structure and collision limit when the position is open= 201112920 090408.TW 31704twf.doc/n The door cover is kept open relative to the casing. In an embodiment of the latch mechanism of the present invention, one end of the sliding block is a limit hook, and when the sliding block moves in the first direction, the limit of the limit hook and the battery is released. In an embodiment of the latching mechanism of the present invention, wherein the casing has a guiding post and the sliding block has a first - limiting slot, the guiding post is located in the third limiting slot, to close the block - Sliding in the direction relative to the casing. In an embodiment of the latching mechanism of the present invention, when the slider is in the locked position, the (4) block is limited. In the embodiment of the present invention, the plurality of telescopic switches are further connected to the """ end of the sliding block is a hook, and the hook and the telescopic spring are used to solve the mechanism of the present invention. The two-stage operation, the first limit is used to remove the limit of the casing and the door cover, and the front door cover is kept open when the door is removed from the casing. The user can conveniently remove the door cover from the casing, and the above features and advantages can be more clearly understood. The following is a detailed description of the following, and is described in detail below with reference to the drawings. [Embodiment] FIG. 1 is a partial perspective schematic view of a lock mechanism, and is not intended to be stereoscopic. Please refer to FIG. 1 and FIG. 2 at the same time; * 201112920 090408.TW 31704twf.doc/n The flash lock mechanism 1_ of the embodiment can be applied to an electronic device such as a notebook computer. The flash lock mechanism 1000 includes a casing 11A, a battery chest, a first sliding member 1300, a second sliding member 14A, and a door cover 15A. The Xunchi 1200, the first sliding member 13〇〇, the second sliding member i and the door cover are all disposed on the casing 1100, wherein the first sliding member 13 is located on the side of the battery 1200. Next to the first sliding member 13 (10), the first sliding member 13GG and the second sliding member are disposed on the same side of the battery. When the first slider 1300 slides relative to the casing U00 toward the first direction D1, the first slider 1300 releases the limit of the battery 12〇〇, and the first slider 1300 drives the second slider 14 to cause the door cover 15 to be closed. 〇〇 is opened relative to the casing 1100 in the second direction D2, wherein the first direction; 〇1 and D2 are perpendicular to each other. In detail, the second sliding member 1400 has a first guiding structure 1410, and the threshold 1500 has a second guiding structure 151 , wherein the first guiding structure 1410 is a protruding column, and the second guiding structure 151 〇 is a groove. The first guiding structure 1510 has a connecting hook 1512, a first side wall 1514, a side wall 1516 and a third side wall 1518. The first side wall 1514 has a pure angle with the first direction D1, and the first side wall 1514 and the second side wall 1516 are at an acute angle, and the third side wall 1518 is perpendicular to the second side wall 1516. When the second sliding member 1400 slides in the first direction D1 and contacts the door cover 15 , the first guiding structure 1410 is a hook 1512 , a first side wall 1514 , which is connected along the second guiding structure 151 . The movement of the second side wall 1516 and the third side wall 1518 causes the second sliding member 1400 to drive the door cover 1500 to open relative to the casing 11 in the second direction D2. 201112920 090408.TW 31704twf.doc/n The other guiding structure 1510 further has a receiving portion bp, and the receiving portion 1517 is formed by the second side wall 1516 and the third side wall Β18 for When the cover 1500 is opened relative to the casing 11 , the first guiding structure 1410 is limited. In addition, the first slider 1300 is closer to the end of the second sliding gate 1400 and is a limiting hook 131 〇. When the first sliding member 1 is moved toward the first direction D1, the limiting hook 131 is released from the battery. 12-inch limit. In other embodiments, the limit hook 1310 is also more movable to cause one side of the battery 1200 to be torn relative to the casing 11 for the user to take. In addition, the machine 1100 also has a guide post, and the first slider has a first-limit slot 1320 and a guide post! 100 is located in the first limit slot 132 ’ ' to limit the first slides 3 〇〇 can only slide relative to the machine in the first direction Di. Moreover, the casing 1100 further has a stop point 112〇, and when the second sliding member 1 is in the locked position, the second sliding member 14 is restricted by the finger/point 1120. The latch mechanism 1000 further includes a plurality of telescopic springs 1600, 1700, and an end of the first slider 1300 relatively far from the second slider 14 is a hook 1330, and the hook 133 〇 and the telescopic spring 16 〇〇 The connection is made, and the end of the second sliding member 1400 relatively close to the first sliding member is also a hook 1420, and the hook M20 is coupled to the telescopic spring poo. Referring to FIG. 2, in the normal use or unused condition of the general electronic device, the door cover 15 of the flash lock mechanism 1000 will be combined with the casing 11〇〇, and the telescopic springs 1600, 17〇 The 〇 presents a natural contracted state such that the first slider 13 〇〇 and the second slider 14 位于 are respectively located at respective locking positions. At the same time, the first guiding structure ΐ4ι〇 201112920 090408.TW 31704twf.doc/n of the second sliding member 14〇〇 is limited by the hook 1512 of the second guiding structure 1510. Depending on the partial slide of the second slide of the second slide. Referring to Fig. 2 and Fig. 3, when the first sliding member is sturdy, because the guide post u 1300 of the casing 110 is squatted, the first sliding member 1300 can only move in the direction D1. Move the first slider _ towards the first side = D1 to move, the telescopic spring chat will be stretched and stored a resilient recovery

力,而限位卡勾1310解除與電池12〇〇的限位,並將電池 1·的一側朝第二方向D2 了頁出,使電池12〇〇的一側相對 機殼11GG_。當第—滑動件丨接觸並推移第二滑動 =1400時’第二滑動件觸的第一導引結構ι彻會沿著 第二導引結構1510移動。詳細而言,第一導引結構141〇 的^動解除卡鉤1512對其的限位,且當第二滑動件14〇〇 ,續受到第一滑動件13〇〇的帶動向第一方向^^移動時, 第二滑動件1400的第一導引結構141〇會沿著第二導引結 構1510的第一側壁1514移動。值得一提的是,因為第一 側壁1514與第一方向£)1夾一純角,而為凸柱的第一導引 結構1410只能在第一方向D1上移動,所以第一導引結構 1410與弟一側壁1514的互相干涉使得第二滑動件14〇〇推 移門盍1500朝向第二方向D2相對機殼1100開啟。 圖4為圖3之門蓋保持相對機殼開啟狀態時的示意 圖。請參考圖4,當第二導引結構141〇沿著第一側壁1514 移動而使門蓋1500相對機殼1100開啟後,第二導引結構 1410與第二側壁15H接觸,並與由第二側壁1514及第三 201112920 090408.TW 31704twf.doc/n 側壁^16共同組成的受擋部1517(標示於圖2)互相限位, 使門蓋1·保持相對機殼11〇〇開啟的狀態。特別的是, 第二導引結構1410與受擋部1517的互相配合,在使用者 未將門蓋1500從機殼110〇上取下前,門蓋15〇〇能夠一直 保持著相對機殼1100開啟的狀態。 圖5為門蓋脫離機殼時的示意圖。請參考圖$,直到 ,用者將門蓋1500從機殼11〇〇上取下之後,才會解除門 蓋1500之第二導引結構151〇的受擋部1517對於第二滑動 件1400的第一導引結構141〇的限位。此時,伸縮彈簧口〇〇 的彈性恢復力帶動第二滑動件! 朝第一方向D i的反向 移動’而機殼11GG上的擔點112〇限制第二滑動件!伽 滑動至原本的鎖住位置。附帶一提,雖然本實施例之第二 側壁1516與第三侧壁1518的爽角為直肖,但本技術領域 者也可以依照實際需求改變第二側壁1516與第三側壁 1518的夾角的角度,或者是改變第二側壁1516的形狀皆 可達到止擋第一導引結構1410的目的。 士當第二滑動件1400朝第-方向m的反向開始移動 枯,會解除第二滑動件14〇〇與第一滑動件13〇〇之間的限 位,讓第-滑動件1300也同樣受到伸縮彈簧16〇〇的彈性 恢復力帶動而朝向第—方向D1的反向移動,直至第二滑 動件1400滑動至原本的鎖住位置後,第二滑動件14〇〇進 而限制第-滑動件13GG只能滑動至第—滑動件1300原 的鎖住位置。 雖然上述實施例是以兩個滑動件來達成階段性解除 201112920 090408.TW 31704twf.d〇c/n ,池及門盖的限位,但本技術領域者也可以依照實際使用 需求將兩個滑動件整合成一滑動塊,或是更使用多個滑動 件皆可達縣解除電池的限位後開關蓋之目的。The force, and the limit hook 1310 is released from the limit of the battery 12, and the side of the battery 1· is paged out in the second direction D2 so that the side of the battery 12 is opposed to the casing 11GG_. When the first slider 丨 contacts and the second slider = 1400 is pressed, the first guiding structure ι of the second slider is moved along the second guiding structure 1510. In detail, the first guiding structure 141 解除 releases the limit of the hook 1512, and when the second sliding member 14 〇〇 continues to be driven by the first sliding member 13 向 to the first direction ^ When moving, the first guiding structure 141 of the second slider 1400 moves along the first side wall 1514 of the second guiding structure 1510. It is worth mentioning that, because the first sidewall 1514 is in a pure angle with the first direction £)1, and the first guiding structure 1410 for the stud can only move in the first direction D1, the first guiding structure The mutual interference of the 1410 with the side wall 1514 causes the second slider 14 〇〇 the sill 1500 to open toward the casing 1100 toward the second direction D2. Fig. 4 is a schematic view showing the door cover of Fig. 3 kept in a state in which the door is opened. Referring to FIG. 4, after the second guiding structure 141 moves along the first side wall 1514 to open the door cover 1500 relative to the casing 1100, the second guiding structure 1410 is in contact with the second side wall 15H, and is The side wall 1514 and the third 201112920 090408.TW 31704 twf.doc/n side wall 16 are integrally formed with the receiving portions 1517 (shown in FIG. 2) which are mutually restrained, so that the door cover 1· is kept open relative to the casing 11〇〇. In particular, the second guiding structure 1410 and the receiving portion 1517 cooperate with each other, and the door cover 15 can be kept open relative to the casing 1100 before the user removes the door cover 1500 from the casing 110. status. Figure 5 is a schematic view of the door cover when it is disengaged from the casing. Please refer to FIG. $ until the user removes the door cover 1500 from the casing 11 to release the second guiding structure 151 of the door cover 1500 from the receiving portion 1517 of the second sliding member 1400. A guiding structure 141 〇 limit. At this time, the elastic restoring force of the telescopic spring port 带 drives the second slider! The reverse movement in the first direction D i ' and the load 112 on the casing 11GG limit the second slider! Gap Slide to the original locked position. Incidentally, although the refreshing angle of the second side wall 1516 and the third side wall 1518 of the embodiment is straight, the angle of the angle between the second side wall 1516 and the third side wall 1518 can be changed according to actual needs. Or changing the shape of the second side wall 1516 can achieve the purpose of stopping the first guiding structure 1410. When the second slider 1400 starts moving in the reverse direction of the first direction m, the limit between the second slider 14〇〇 and the first slider 13〇〇 is released, and the first slider 1300 is also the same. The second sliding member 14 〇〇 further restricts the first sliding member by the elastic restoring force of the telescopic spring 16 而 and the reverse movement toward the first direction D1 until the second sliding member 1400 slides to the original locking position. The 13GG can only slide to the original locking position of the first slider 1300. Although the above embodiment uses two sliding members to achieve the staged release of the 201112920 090408.TW 31704twf.d〇c/n, the limit of the pool and the door cover, the technical person can also slide the two sliding according to the actual use requirements. The integration of a piece into a sliding block, or more use of a plurality of sliding parts can reach the purpose of the county to release the battery after the limit switch cover.

綜上所述,於本發明之閂鎖機構中’滑動塊的滑動可 先解除電池與機殼之_限位,再使門蓋相對機殼開啟。 =以’可以確保電池與電子裝置的電性解除之後再開啟門 盍。此外,在使用者未將門蓋從機殼上取下之前,第二滑 ^之導引結構與門蓋之第二導引結構的互相配合, 4得^盍會一直保持著相對機殼開啟的狀態,並不會再掉 機/V又中,具有讓使用者易於拿取門蓋的使用便利性。 太恭雖本發明已以實施例揭露如上,然其並非用以限定 太;?12 ^壬何所屬技術領域中具有通常知識者,在不脫離 和範圍内’當可作些許之更動與潤飾,故本 "Ή乾圍當視後附之中料利範圍所界定者為準。 【圖式簡單說明】 =ί本實施例之—_鎖機構的局部透視示意圖。 圖2為圖1之立體示意圖。 視圖圖3為圖2之第二滑動件相對門蓋移動的局部立體透 圖4為圖3之Η盍轉相對機朗啟狀態時的示意 图5為門蓋脫離機殼時的示意圖。 201112920 090408.TW 31704twf.doc/n 【主要元件符號說明】 1000 :閂鎖機構 1100 :機殼 1110 :導引柱 1120 :擋點 1200 :電池 1300 :第一滑動件 1310 :限位卡勾 1320 :第一限位槽 1330、1420 :卡勾 1400 :第二滑動件 1410 :第一導引結構 1500 :門蓋 1510 :第二導引結構 1512 :卡勾 1514:第一側壁 1516 :第二側壁 1517 :受擋部 1518 :第三側壁 1600、1700 :伸縮彈簀 D1 :第一方向 D2 :第二方向In summary, in the latch mechanism of the present invention, the sliding of the sliding block can first release the limit of the battery and the casing, and then open the door cover relative to the casing. = can be used to ensure that the battery and electronic device are electrically removed before opening the door. In addition, before the user removes the door cover from the casing, the guiding structure of the second sliding guide and the second guiding structure of the door cover cooperate with each other, and the door hinge is kept open relative to the casing. The state, and will not be dropped again / V in the middle, has the convenience of the user to easily access the door. Although the present invention has been disclosed in the above embodiments by way of example, it is not intended to limit the scope of the invention, and the general knowledge of those skilled in the art can be modified and retouched without departing from the scope of the invention. Therefore, this is the definition of the scope of profit and loss in the attached section. [Simple description of the drawing] = a partial perspective schematic view of the lock mechanism of the present embodiment. Figure 2 is a perspective view of Figure 1. 3 is a partial perspective view of the second slider moving relative to the door cover of FIG. 2. FIG. 5 is a schematic view of the third embodiment when the door cover is separated from the casing. FIG. 201112920 090408.TW 31704twf.doc/n [Main component symbol description] 1000: Latch mechanism 1100: Case 1110: Guide post 1120: Stop point 1200: Battery 1300: First slider 1310: Limit hook 1320: The first limiting slot 1330, 1420: the hook 1400: the second sliding member 1410: the first guiding structure 1500: the door cover 1510: the second guiding structure 1512: the hook 1514: the first side wall 1516: the second side wall 1517 : receiving portion 1518 : third side wall 1600 , 1700 : telescopic magazine D1 : first direction D2 : second direction

Claims (1)

201112920 090408.TW 31704twf.doc/n 七、申請專利範圍: 1· 一種閂鎖機構,包括: 一機殼; 一電池,配置於該機殼上; 一滑動塊,配置於該機殻上;以及 一門蓋,配置於該機殼上,其中該滑動塊位於該電池 及該門蓋之間,當該滑動塊朝一第一方向相姆該機殼滑動 時,該滑動瑰先解除該電池的限位,且該滑動塊持^二該 第一方向滑動,該滑動塊使糾蓋以一第二方向“ 殼開啟,其中該第一方向與該第二方向互相垂直。Λ 2.如申請專利範圍第丨項所述之閂鎖機構,其中該滑 動塊包括: 一第一滑動件,配置於該機殼上,並位於該— 一側;以及 电之 一第二滑動件,配置於該機殼上,並位 件及該門蓋之間, ^ 4 當第-滑動件朝該第一方向相對該機殼 電池的限位,且該第-滑動件帶 X 以該第二方向相對該機殼開啟。 -、、4· =細翻第2項所叙_賴,其帽第 一’月 八有一第一導弓丨結構,而 滑動件朝該第-方向滑動i = 動件二沿箸該第二導引結構移動使該第二滑 、τ 。門盍以謗第二方向相對該機殼開啟。 13 201112920 uy〇408.TW 317〇4twf.doc/n 4‘如巾請專觀圍第3項所述之⑽機構,其中該第 一導引結構為凸检,而該第二導引結構為凹槽。 5·如申請專利範g第3項所述之閃鎖機構,其中該第 -導引結構具有相連的一卡勾、—第—侧壁、—第二側壁 第三側壁’該第—侧壁與該第—方向夹—純角,而 該第二側壁與該第二健炎—銳角,且該第三侧壁與該第 二側壁夾一直角。 1如中請專利翻第5項所述之閃鎖機構,其中該第 :上Z該第三側壁形成一受擋部,且當該門蓋相對該 Ηΐ二技厂該第二導引結構與該受擋部互相限位,使該 門孤保持相對該機殼開啟的狀態。 一^^销機構,其中該第 該電池的限Γ 移動時,解除該限位卡勾與 殼且m專糊第2韻述之問鎖機構,其中該機 而該第一滑動件具有一第一限位槽,且 位於該第—限位槽中,以限制該第—滑動件㈣ 第方向上相對該機殼滑動。 、人 殼更LT2利範圍第2項所述之問鎖機構,其中該機 ± ,、有擋點,且當該第二滑動件位於一錯你付罢μ 牯,該第二滑動件受到該擋點限位。、’、 多個^請專利範圍第2項所述之_機構,更包括 夕個伸縮彈|’而該第-滑動件相對遠離該第二滑動件的 201112920 uyuws.TW 31704twf.doc/n 一末端及該第二滑動件相對靠近該第一滑動件的一末端各 為一卡勾,且該些卡勾與該些伸縮彈簧對應連接。 11. 如申請專利範圍第1項所述之閂鎖機構,其中該 滑動塊具有一第一導引結構,而該門蓋具有一第二導引結 構,當該滑動塊朝該第一方向滑動並接觸該門蓋時,該第 一導引結構沿著該第二導引結構移動使該滑動塊帶動該門 蓋以該第二方向相對該機殼開啟。 12. 如申請專利範圍第11項所述之閂鎖機構,其中該 第一導引結構為凸柱,而該第二導引結構為凹槽。 13. 如申請專利範圍第11項所述之閂鎖機構,其中該 第二導引結構具有相連的一卡勾、一第一側壁、一第二側 壁以及一第三侧壁,該第一侧壁與該第一方向夾一鈍角, 而該第一側壁與該第二侧壁夾一銳角,且該第三側壁與該 第二側壁夾一直角。 14. 如_請專利範圍第13項所述之閂鎖機構,其中該 第二側壁以及該第三側壁形成一受擋部,且當該門蓋相對 該機殼開啟時,該第二導引結構與該受擋部互相限位,使 該門蓋保持相對該機殼開啟的狀態。 15. 如申請專利範圍第1項所述之閂鎖機構,其中該 滑動塊的一末端為一限位卡勾,當該滑動塊朝該第一方向 移動時,解除該限位卡勾與該電池的限位。 16. 如申請專利範圍第1項所述之閂鎖機構,其中該 機殼具有一導引柱,而該滑動塊具有一第一限位槽,且該 導引柱位於該第一限位槽中,以限制該滑動塊於該第一方 15 201112920 uyu^ue. IW 31704twf doc/n 向上相對該機殼滑動。 17. 如申請專利範圍第1項所述之閂鎖機構,其中該 機殼更具有一擋點,且當該滑動塊位於一鎖住位置上時, 該滑動塊受到該擋點限位。 18. 如申請專利範圍第1項所述之閂鎖機構,更包括 多個伸縮彈簧,而該滑動塊的一末端為一卡勾,且該些卡 勾與該些伸縮彈簧對應連接。201112920 090408.TW 31704twf.doc/n VII. Patent application scope: 1. A latching mechanism comprising: a casing; a battery disposed on the casing; a sliding block disposed on the casing; a door cover disposed on the casing, wherein the sliding block is located between the battery and the door cover, and when the sliding block slides toward the first direction, the sliding block releases the battery limit And sliding the second block in the first direction, the sliding block causes the cover to be opened in a second direction, wherein the first direction and the second direction are perpendicular to each other. Λ 2. As claimed in the patent scope The latching mechanism of the present invention, wherein the sliding block comprises: a first sliding member disposed on the casing and located at the one side; and a second sliding member disposed on the casing Between the positional member and the door cover, ^ 4 when the first sliding member is opposite to the casing battery in the first direction, and the first sliding member belt X is opened relative to the casing in the second direction -,, 4· = fine-tune the second item, _ Lai, its cap a 'month eight has a first guiding bow structure, and the sliding member slides in the first direction i = the moving member 2 moves along the second guiding structure to make the second sliding, τ. The threshold is in the second direction Open with respect to the casing. 13 201112920 uy〇408.TW 317〇4twf.doc/n 4'If you want to take a look at the (10) mechanism mentioned in item 3, the first guiding structure is a convex inspection, and the The second guiding structure is a groove. The flashing mechanism of claim 3, wherein the first guiding structure has a connecting hook, a first side wall, and a second side wall. The third sidewall 'the first sidewall is clamped with the first direction--the pure angle, and the second sidewall is opposite the second health-elastic angle, and the third sidewall is perpendicular to the second sidewall. The flash lock mechanism of claim 5, wherein the third side wall of the upper portion forms a receiving portion, and the second guiding structure and the receiving portion are opposite to the second guiding structure The blocking portions are mutually restricted, so that the door is kept in a state of being opened relative to the casing. A pin mechanism, wherein the limit of the battery is removed, The limit hook and the shell and the m-specific paste the second rhyme of the lock mechanism, wherein the first slide has a first limit slot and is located in the first limit slot to limit the first - the sliding member (4) slides in the first direction relative to the casing. The human casing is further in the LT2 range. The locking mechanism described in item 2, wherein the machine has a stop point, and when the second sliding member is located at a wrong position You pay for the second slide, the second slide is limited by the stop point., ', multiple ^ Please refer to the scope of the second paragraph of the patent, including the evening telescopic bomb|' and the first slide a distal end of the first sliding member and a second sliding member opposite to the first sliding member are respectively a hook, and the hooks and the telescopic The springs are connected. 11. The latch mechanism of claim 1, wherein the sliding block has a first guiding structure, and the door cover has a second guiding structure, the sliding block sliding toward the first direction And contacting the first guiding structure along the second guiding structure, the sliding block drives the door cover to open in the second direction relative to the casing. 12. The latch mechanism of claim 11, wherein the first guiding structure is a stud and the second guiding structure is a groove. 13. The latch mechanism of claim 11, wherein the second guiding structure has a connecting hook, a first side wall, a second side wall and a third side wall, the first side The wall has an obtuse angle with the first direction, and the first side wall and the second side wall have an acute angle, and the third side wall and the second side wall are at right angles. The latching mechanism of claim 13, wherein the second side wall and the third side wall form a receiving portion, and the second guiding is when the door cover is opened relative to the casing The structure and the receiving portion are mutually constrained to maintain the door cover in a state of being opened relative to the casing. The latching mechanism of claim 1, wherein an end of the sliding block is a limit hook, and when the sliding block moves in the first direction, the limit hook is released. Battery limit. The latching mechanism of claim 1, wherein the casing has a guiding post, and the sliding block has a first limiting slot, and the guiding post is located in the first limiting slot In order to limit the sliding block on the first side 15 201112920 uyu^ue. IW 31704twf doc/n slides upward relative to the casing. 17. The latch mechanism of claim 1, wherein the housing further has a stop point, and when the slide block is in a locked position, the slide block is limited by the stop point. 18. The latching mechanism of claim 1, further comprising a plurality of telescopic springs, wherein one end of the sliding block is a hook, and the hooks are correspondingly connected to the telescopic springs. 1616
TW098133255A 2009-09-30 2009-09-30 Latch mechansim TWI381790B (en)

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US9429996B2 (en) 2014-12-05 2016-08-30 Acer Incorporated Cover assembly
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TWI489928B (en) * 2012-04-20 2015-06-21 Wistron Corp Lock mechanism adapted to an electronic device and electronic device therewith
CN103429030A (en) * 2012-05-22 2013-12-04 纬创资通股份有限公司 Slide switch and electronic device with same
CN103429030B (en) * 2012-05-22 2016-01-20 纬创资通股份有限公司 Slide switch and electronic device with same
US9367096B2 (en) 2012-05-22 2016-06-14 Wistron Corporation Slide switch and electronic device thereof
US9429996B2 (en) 2014-12-05 2016-08-30 Acer Incorporated Cover assembly
TWI557328B (en) * 2014-12-05 2016-11-11 宏碁股份有限公司 Cover assembly
CN109577372A (en) * 2018-12-31 2019-04-05 江苏扬桩金源管业有限公司 Convenient for the assembled piping lane of tubular service

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