TW201406641A - Multi-box card transporting device - Google Patents

Multi-box card transporting device Download PDF

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TW201406641A
TW201406641A TW101129312A TW101129312A TW201406641A TW 201406641 A TW201406641 A TW 201406641A TW 101129312 A TW101129312 A TW 101129312A TW 101129312 A TW101129312 A TW 101129312A TW 201406641 A TW201406641 A TW 201406641A
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card
module
disposed
positioning
chute
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TW101129312A
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TWI448412B (en
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林燁敏
李昭龍
林治中
黃靖譯
蔡明岳
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財團法人金屬工業研究發展中心
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Abstract

The present invention relates to a multi-box card transporting device, which comprises a sliding platform, a card-placing box module containing a plurality of card-placing boxes, and a driving module. The sliding platform comprises a sliding trough, the card-placing box module is disposed on the sliding trough, and the driving module drives the card-placing box module to slide on the sliding trough and makes the card-placing box of the card-placing box module correspond to a discharge opening of the sliding trough. The card-placing box can supply a card to a card-dispensing device corresponding to the discharge opening, and the card-dispensing device can carry out an operation of the card dispensing. The multi-box card transporting device of the present invention contains a plurality of card-placing boxes to provide the multi-box card transporting device of the present invention with a high card storage volume to decrease the frequency of replenishing a card into the card-placing box and reduce the workload of the maintenance personnel.

Description

多匣式卡片傳送裝置Multi-card card conveyor

    本發明係有關於一種卡片傳送裝置,特別是指一種多匣式卡片傳送裝置。
The present invention relates to a card transport device, and more particularly to a multi-twist card transport device.

    習知的發卡設備應用於金融業、保全業、停車業及電子貨幣等。如中華民國專利證書號第092959號之「IC電子通話卡發卡設備」,其揭露一種IC電子通話卡發卡設備,其特徵在於集進料單元、讀寫單元、編號單元、包裝單元及輸送單元於一整之機構,全部過程皆由電腦全程監控,同時電腦亦擔任簡易維修、權層分配使用及資料安全讀寫等工作,此篇專利採用圓盤式的讀寫機構排列,進料及讀寫動作可以很流暢的進行。
    另,中華民國專利公告第I367458號之「自動發卡機」,其揭露一種自動發卡機,自動發卡機包含:一基座,其上係設有一等待區、一出口區、相互平行之一第一導軌及一第二導軌,等待區及出口區係分別設置於第一導軌及第二導軌之兩端,待發送之卡片兩側係分別容置於第一導軌及第二導軌,第一導軌係可與該等待區與出口區分離;一垂直推送單元,係與該基座連接,垂直推送單元設有用於容置卡片之匣倉及一垂直驅動器;一水平推送單元,係與基座連接,水平推送單元係將卡片沿第二導軌推送至出口區而接觸卡片壓輪;以及一回收單元,係與基座連接而設置於第一導軌下方。
    又,中華民國專利公告第I340116號之「卡片送出裝置」,其揭露一種卡片送出裝置,卡片送出裝置係藉由將卡片之面推至配置為固定狀態之基體而使前述卡片保留成柱狀,並使透過前述基體之開口接觸前述卡片面之移送體往預定方向移動,而將卡片一片一片地往預定方向送出者。
    上述三篇專利揭露不同型式之發卡設備,但三篇專利之共同處為皆使用單一置卡匣,而目前市面上之發卡設備亦皆使用單一置卡匣,如此使發卡設備的卡片容納量少,當卡片需求量增加時,使發卡設置內的卡片之使用速度大幅增加,常使發卡設備的置卡匣呈空匣狀態,因此必須常常補充卡片至發卡設備的置卡匣,如此增加補充卡片至發卡設備的頻率。而補充卡片至發卡設備的置卡匣須透過維護人員執行,若補充卡片至發卡設備的頻率增加,即表示維護人員的工作量也隨補充頻率增加而增加,進而增加維護人員的工作負荷。
    為了解決上述之問題,本發明提供一種多匣式卡片傳送裝置,其具有容置複數卡片之多個置卡匣,有效提高多匣式卡片傳送裝置的卡片容納量,以減少補充卡片至該些置卡匣的頻率,並降低維護人員的工作負荷。
The conventional card issuance equipment is used in the financial industry, security industry, parking industry and electronic money. For example, the "IC electronic calling card issuing device" of the Republic of China Patent No. 092959 discloses an IC electronic calling card issuing device, which is characterized in that a feeding unit, a reading unit, a numbering unit, a packaging unit and a conveying unit are A whole organization, all processes are monitored by the computer, and the computer is also used for simple maintenance, distribution of rights, and data security. This patent uses disc-type reading and writing mechanism to arrange, feed and read and write. The action can be carried out very smoothly.
In addition, the "automatic card issuing machine" of the Republic of China Patent Publication No. I367458 discloses an automatic card issuing machine. The automatic card issuing machine comprises: a base having a waiting area, an exit area, and one parallel to each other. The guide rail and the second guide rail are respectively disposed at the two ends of the first rail and the second rail, and the two sides of the card to be sent are respectively received on the first rail and the second rail, and the first rail is respectively It can be separated from the waiting area and the exit area; a vertical pushing unit is connected to the base, the vertical pushing unit is provided with a magazine for accommodating the card and a vertical driver; and a horizontal pushing unit is connected with the base. The horizontal pushing unit pushes the card along the second rail to the exit zone to contact the card pressing wheel; and a recycling unit is connected to the base and disposed under the first rail.
Further, the "card delivery device" of the Republic of China Patent Publication No. I340116 discloses a card delivery device that retains the card in a column shape by pushing the face of the card to a base body configured to be in a fixed state. The transfer body that contacts the card surface through the opening of the base body is moved in a predetermined direction, and the card is sent one by one in a predetermined direction.
The above three patents disclose different types of card issuance equipment, but the three patents all use a single card, and currently the card issuance equipment on the market also uses a single card, so that the card issuing device has less card capacity. When the demand for the card increases, the use speed of the card in the card issuing setting is greatly increased, and the card issuing device is often left in an empty state. Therefore, the card must be replenished to the card issuing device, so that the supplementary card is added. The frequency to the card issuing device. The card to be issued to the card issuing device is not required to be executed by the maintenance personnel. If the frequency of the card is increased to the card issuing device, the workload of the maintenance personnel increases with the frequency of the supplement, thereby increasing the workload of the maintenance personnel.
In order to solve the above problems, the present invention provides a multi-snap card transfer device having a plurality of cassettes for accommodating a plurality of cards, thereby effectively increasing the card storage capacity of the multi-card type card transfer device to reduce the supplementary cards to the Set the frequency of the card and reduce the workload of maintenance personnel.

    本發明之目的,在於提供一種多匣式卡片傳送裝置,其具有複數置卡匣,該些置卡匣可供大量的卡片設置,即具有高卡片容納量,以減少補充卡片至該些置卡匣的頻率,並降低維護人員的工作負荷。
    本發明提供一種多匣式卡片傳送裝置,係包含:一滑動平台,其具有一基座及一滑槽,該滑槽設置於該基座,並具有一第一端、一第二端及一出料開口,該出料開口位於該第一端及該第二端之間,並對應一發卡裝置;一置卡匣模組,其設置於該滑槽並滑動於該滑槽,該置卡匣模組具有複數置卡匣,每一置卡匣具有一置入口及一出口,並供置入及釋出複數卡片;以及一驅動模組,其推動該置卡匣模組,該置卡匣模組滑動於該滑槽上,以驅使該些置卡匣之一置卡匣的該出口對應該滑槽之該出料開口。
It is an object of the present invention to provide a multi-turn card transport device having a plurality of cassettes for a large number of card settings, i.e., having a high card capacity to reduce supplementary cards to the cards. The frequency of squatting and reducing the workload of maintenance personnel.
The present invention provides a multi-small card transport device, comprising: a sliding platform having a base and a sliding slot, the sliding slot is disposed on the base, and has a first end, a second end, and a a discharge opening, the discharge opening is located between the first end and the second end, and corresponds to a card issuing device; a card clamping module is disposed on the sliding slot and slides on the sliding slot, the card is placed The cassette has a plurality of cassettes, each of the cassettes has a set inlet and an outlet for inserting and releasing a plurality of cards; and a drive module that pushes the cassette module, the card is inserted The cymbal module slides on the chute to drive the outlet of one of the latching tabs to correspond to the discharge opening of the chute.

    茲為使對本發明之結構特徵及所達成之功效有更進一步之瞭解與認識,謹佐以較佳之實施例及配合詳細之說明,說明如後:
    習知卡片傳送裝置僅具有單一置卡匣,所以習知卡片傳送裝置的卡片容納量少,當卡片需求量增加時,使習知卡片傳送裝置內的卡片之使用速度大幅增加,常使習知卡片傳送裝置內的置卡匣呈空匣狀態,因此必須常常補充卡片至習知卡片傳送裝置的置卡匣,如此增加補充卡片至習知卡片傳送裝置的頻率。而補充卡片至習知卡片傳送裝置的置卡匣須透過維護人員執行,若補充卡片至習知卡片傳送裝置的頻率增加,即表示維護人員的工作量也隨補充頻率增加而增加,進而增加維護人員的工作負荷。
    為了解決習知卡片傳送裝置的問題,本發明提供一種多匣式卡片傳送裝置,其具有供複數卡片設置的複數置卡匣,有效提升卡片傳送裝置的卡片容納量,減少補充卡片至卡片傳送裝置的頻率,降低維護人員的工作負荷。
    請參閱第一圖,係為本發明之第一實施例之多匣式卡片傳送裝置的結構圖;如圖所示,本實施例提供一種多匣式卡片傳送裝置1,多匣式卡片傳送裝置1可提供複數卡片至一發卡裝置2。多匣式卡片傳送裝置1包含一滑動平台10、一置卡匣模組12及一驅動模組13。滑動平台10具有一基座101及一滑槽102,滑槽102及發卡裝置2設置於基座101上,滑槽102位於發卡裝置2的上方,並具有一第一端1021、一第二端1022及一出料開口1023。出料開口1023位於第一端1021與第二端1022之間,並對應發卡裝置2之一卡片集料槽(圖中未示)。置卡匣模組12設置於滑槽102上,並具有複數置卡匣121,該些置卡匣121係並排排列於滑槽102。每一置卡匣121具有一置入口1211及一出口1212,該些置卡匣121之該些出口1212緊貼於滑槽102之表面。上述該些置卡匣121未相互連接,即為可分離的,當然該些置卡匣121可相互連接而為一體成型之結構,於此不再贅述。
    驅動模組13具有一承載座130、一致動件131及一推桿132,承載座130設置於基座101,致動件131設置於承載座130上,推桿132穿設於致動件131,致動件131、推桿132以及滑槽102排成一列,驅動模組13係鄰近滑槽102之第一端1021設置。推桿132之一端具有一推動部1321,推動部1321抵接於最靠近滑槽102之第一端1021的置卡匣121之一側面。
    請一併參閱第二A圖及第二B圖,係為本發明之第一實施例之多匣式卡片傳送裝置的使用狀態圖;如圖所示,本實施例之多匣式卡片傳送裝置1於作動前,先置入複數卡片3(於第二A圖及第二B圖中該些卡片3係以虛框表示)至每一置卡匣121,而該些卡片3係從每一置卡匣121之置入口1211置入,且從置卡匣121的出口1212往其置入口1211作垂直堆疊,並使該些卡片3填滿每一置卡匣121,接著將該些置卡匣121放置於滑槽102的表面,該些置卡匣121的出口1212係與滑槽102的表面接觸,並設置於滑槽102的第一端1021與其出料開口1023之間。
    當多匣式卡片傳送裝置1作動時,致動件131可為馬達式、氣壓式或油壓式,以驅動推桿132作線性移動,推桿132之推動部1321推動置卡匣模組12,使置卡匣模組12滑動於滑槽102,而置卡匣模組12的該些置卡匣121從滑槽102之第一端1021往其第二端1022滑動。其中最靠近滑槽102之第二端1022的置卡匣121先滑動至滑槽102的出料開口1023上方,並使置卡匣121的出口1212對準滑槽102的出料開口1023,進而對準與出料開口1023對應之發卡裝置2的卡片集料槽,以使置卡匣121內的該些卡片3從置卡匣121的出口1212掉落至發卡裝置2的卡片集料槽內,使發卡裝置2可進行發卡。(如第二A圖所示)
    當最靠近滑槽102之第二端1022的置卡匣121為一空匣狀態時,致動件131再驅動推桿132作線性移動,推桿132之推動部1321推動置卡匣模組12向右移動,使下一置卡匣121的出口1212對應滑槽102的出料開口1023,如此可連續供應卡片3至發卡裝置2,直至每一置卡匣121都呈現空匣狀態,才需要重新填入卡片3至該些置卡匣121。(如第二B圖所示)
    上述滑槽102之第二端1022更設置一阻擋件10221,阻擋件10221用以阻擋置卡匣模組12,當推桿132之推動部1321推動置卡匣模組12時,阻擋件10221可防止置卡匣模組12從滑槽102之第二端1022脫離。本實施例之多匣式卡片傳送裝置1具有多個置卡匣121,該些置卡匣121可容納大量的卡片3,如此提升多匣式卡片傳送裝置1的卡片容納量,進而減少補充卡片3至該些置卡匣121的頻率。
    另,為了使置卡匣模組12可線性滑動於滑槽102內,滑槽102更可設置一線性滑軌,使置卡匣模組12可滑設於線性滑軌上,並可線性滑動於滑槽102內;同時地,若推桿132之推動部1321抵接於置卡匣模組12的重心位置,當推桿132之推動部1321推動置卡匣模組12時,推桿132之推動部1321推動置卡匣模組12的重心位置,置卡匣模組12因滑槽102內的線性滑軌可作線性滑動,如此可防止置卡匣模組12發生傾倒的狀況。
    再一併參閱第三A圖及第三B圖,係為本發明之第一實施例之多匣式卡片傳送裝置的另一結構圖及局部放大圖;如圖所示,為了確保欲提供卡片3至發卡裝置2的置卡匣121之出口1212可對準滑槽102的出料開口1023,每一置卡匣121具有相對應之二凸緣1213,二凸緣1213係分別從置卡匣121的出口1212之側壁向外延伸。每一凸緣1213設有一定位孔12131,而滑槽102的出料開口1023兩側的表面分別具有一凹槽1024,而每一凹槽1024設有一定位件1025。當該些置卡匣121之一置卡匣121移至滑槽102之出料開口1023時,位於出料開口1023兩側的二定位件1025分別卡設於置卡匣121的二定位孔12131,如此可使置卡匣121的出口1212可對準滑槽102的出料開口1023。
    上述定位件1025係包含一彈性元件10251及一定位滾珠10252,彈性元件10251設置於滑槽102之凹槽1024,定位滾珠10252卡設於凹槽1024之開口,當置卡匣121之二凸緣1213未設有定位孔12131的部分移至定位件1025上方時,二凸緣1213將定位滾珠10252向下壓入滑槽102的凹槽1024內,此時彈性元件10251受定位滾珠10252擠壓而呈壓縮狀態。待位於二凸緣1213之二定位孔12131移至定位件1025上方後,受擠壓的彈性元件10251被釋放而產生一推力,推力將定位滾珠10252從凹槽1024內往外推,並使定位滾珠10252卡設於定位孔12131,以定位置卡匣121於出料開口1023上,使置卡匣121可供應該些卡片3至與出料開口1023對應之發卡裝置2的卡片集料槽。
    復參閱第一圖,本實施例之多匣式卡片傳送裝置1更包含一定位模組17,定位模組17包含複數定位感測器171及一定位感應部172,本實施例之定位感測器171的數量主要配合置卡匣121的數量,本實施例具有四個置卡匣121,所以定位模組17也具有四個定位感測器171。該些定位感測器171設置於驅動模組13之承載座130,並位於推桿132之下方,相鄰的二定位感測器171間的距離為單一置卡匣121的寬度。而定位感應部172設置於推桿132相對推動部1321之一端。當致動件131驅動推桿132作線性移動時,推桿132之定位感應部172從最左側的定位感測器171向右移至下一定位感測器171,其移動距離為單一置卡匣121的寬度,即推桿132之推動部1321推動置卡匣模組12,使原本對應出料開口1023並呈空匣狀態的置卡匣121向右移動,並使填滿卡片3之下一置卡匣121移至出料開口1023上方。
    本實施例之定位感測器171為光學式感測器,將發射出一光源,當推桿132之定位感應部172遮蔽定位感測器171所發出之光源時,定位感測器171產生一感測訊號。而本實施例之多匣式卡片傳送裝置1更包含一控制器14,控制器14與致動件131電性連接,以控制致動件131之作動,而該些定位感測器171亦與控制器14電性連接,當定位感測器171產生感應訊號時,定位感測器171傳送感應訊號至控制器14,控制器14依據感應訊號停止致動件131的作動。前述僅為本發明之一實施例,應不以此為限,定位感測器171可使用其他型式之感測器,於此不再贅述
    復參閱第一圖,本實施例之多匣式卡片傳送裝置1更設有一缺料感應器15,本實施例之缺料感應器15設置於滑槽102的底部,即與置卡匣模組12不同側,並相對於出料開口1023,且與控制器14電性連接。當然本實施例之缺料感應器15可設置於滑槽102之任一位置,僅須相對於出料開口1023即可,於此不再贅述。本實施例之缺料感應器15係使用近接感應器,其可感應出料開口1023是否可供應卡片3,當缺料感應器15感應出料開口1023無供應卡片3,即對應出料開口1023之置卡匣121呈現空匣狀態時,缺料感應器15產生一感應訊號,並傳送該感應訊號至控制器14,控制器14依據感應訊號啟動驅動模組13之致動件131,並使致動件131驅動推桿132作線性移動,以推動置卡匣模組12並移動填滿卡片3之下一置卡匣121至出料開口1023之上方。
    請參閱第四圖,係為本發明之第二實施例之多匣式卡片傳送裝置的結構圖;如圖所示,本實施例之多匣式卡片傳送裝置1更設有一防傾倒模組16,防傾倒模組16設置於基座101上,並鄰近滑槽102之第二端1022,且與驅動模組13相對。防傾倒模組16具有一第一固定座161、一第二固定座162、一抵壓旋臂163及二彈性件164,第一固定座161及第二固定座162設置於基座101,第一固定座161位於滑槽102之下方,其寬度大於滑槽102的寬度。第二固定座162位於第一固定座161的一側,抵壓旋臂163具有一第一端1631及一第二端1632,抵壓旋臂163的第一端1631樞接於第二固定座162,其第二端1632抵壓於最靠近滑槽102之第二端1022的置卡槽121之一側面,如此置卡匣模組12之一側受推桿132之推動部1321抵壓,其另一側受抵壓旋臂163之第二端1632抵壓,以防止置卡匣模組12發生傾倒的狀況。
    請一併參閱第五圖,二彈性件164分別具有一第一端1641及一第二端1642,每一彈性件164之第一端1641設置於第一固定座161的一側,其第二端1642設置於抵壓旋臂163之一側。當推桿132之推動部1321持續推動置卡匣模組12往滑槽102之第二端1022滑動時,置卡匣模組12推開抵壓旋臂163,並使抵壓旋臂163相對第二固定座162往滑槽102之外側樞轉(向右樞轉),此時二彈性件164呈拉伸狀態。當置卡匣模組12往滑槽102之第一端1021滑動時,呈拉伸狀態的二彈性件164收縮,使抵壓旋臂163自動地相對第二固定座162向左樞轉,並使抵壓旋臂163之第二端1632抵壓於置卡匣模組12的側面,即表示隨著置卡匣模組12的滑動,抵壓旋臂163的第二端1632仍可持續抵壓於置卡匣模組12的側面,以確實防止置卡匣模組12發生傾倒的狀況。
    而第一固定座161與第二固定座162之間更具有一限位件165,限位件165設置於基座101上。當二彈性件164拉回抵壓旋臂163,並使抵壓旋臂163相對第二固定座162往滑槽102之第一端1021樞轉時,限位件165抵住抵壓旋臂163,並限制抵壓旋臂163向滑槽102之第一端1021樞轉的角度,防止抵壓旋臂163持續往滑槽102之第一端1021樞轉而使置卡匣模組12從滑槽102之第一端1021脫離。
    然隨著置卡匣模組12滑動,抵壓旋臂163之第二端1632仍可持續抵壓於置卡匣模組12之側面,但會移動於置卡匣模組12之側面,即隨著置卡匣模組12位於滑槽102上之位置不同,抵壓旋臂163之第二端1632位於置卡匣模組112側面的位置也不同。為了減少抵壓旋臂162之第二端1632與置卡匣模組112之側面之間的摩擦力,於抵壓旋臂162之第二端1632更設置一滾輪166,當抵壓旋臂163之第二端1632移動於置卡匣模組12之側面時,滾輪166滾動並帶動抵壓旋臂163之第二端1632移動於置卡匣模組12之側面。  
    請參閱第六A圖、第六B圖及第六C圖,係為本發明之第三實施例之多匣式卡片傳送裝置的結構圖;如圖所示,本實施例之多匣式卡片傳送裝置1與上述實施例不同在於,本實施例之驅動模組13的設置位置與上述實施例之驅動模組13的設置位置不同。本實施例之驅動模組13之承載座130設置於基座101,致動件131設置於承載座130,推桿132穿設於致動件131。致動件131及推桿132位於滑槽102之一側邊,且與滑槽102相互平行,推桿132的推動部1321抵接於置卡匣模組12之左側面。當致動件131驅動推桿132向右移動,推桿132之推動部1321推動置卡匣模組12向右移動。本實施例之驅動模組13的設置可減少多匣式卡片傳送裝置1的體積。
    為了使推桿132的推動部1321可穩定地推動置卡匣模組12,驅動模組13更具有一輔助滑軌135及一輔助支架136,輔助滑軌135設置於承載座130,並位於滑槽102之另一側邊,且與滑槽102相互平行。輔助支架136設置於輔助滑軌135,其一端連接推桿132之推動部1321。當推桿132之推動部1321向右推動置卡匣模組12時,連接推動部1321之輔助支架136也向右滑動於輔助滑軌135,如此可增加推動部1321與置卡匣模組12的側面的接觸面積,以穩定地推動置卡匣模組12。
    請參閱第七圖,係為本發明之第四實施例之多匣式卡片傳送裝置的結構圖;如圖所示,本實施例與上述實施例不同在於,本實施例提供一種防止置卡匣模組12傾倒的防傾倒模組16,並取代第三實施例之防傾倒模組16。本實施例之防傾倒模組16包含一懸臂167及一阻擋部168,懸臂167具有一第一端1671及一第二端1672,阻擋部168設置於懸臂167之第二端1672,並與懸臂167相互垂直,且位於最靠近滑槽102之第二端1022的置卡匣121之一側,而懸臂167之第一端1671設置於輔助支架136,如此防傾倒模組16與驅動模組13係圍繞置卡匣模組12,置卡匣模組12受阻擋部168阻擋,而使置卡匣模組12不會傾倒。而且上述阻擋部168可樞設於懸臂167之第二端1672,阻擋部168相對懸臂167作樞轉,當阻擋部168相對懸臂167向上樞轉時,阻擋部168將無法防止置卡匣模組12傾倒,可方便使用者取出置卡匣模組12。
    當驅動模組13之致動件131驅動推桿132時,推桿132之推動部1321推動置卡匣模組12,並帶動輔助支架136線性滑動於輔助滑軌135,而輔助支架136帶動防傾倒模組16隨置卡匣模組12之滑動方向而移動,即表示防傾倒模組16係隨著置卡匣模組12滑動而移動,以防止置卡匣模組12發生傾倒狀況。本實施例之防傾倒模組16的設置更能減少本實施例之多匣式卡片傳送裝置1的體積。
    綜上所述,本發明提供一種多匣式卡片傳送裝置,其主要應用於各式發卡設備,而本發明之多匣式卡片傳送裝置主要具有多個置卡匣,可增加多匣式卡片傳送裝置的卡片容納量,減少補充卡片至多匣式卡片傳送裝置的頻率,並降低維護人員的工作負荷。
In order to provide a better understanding and understanding of the structural features and the efficiencies of the present invention, the preferred embodiments and the detailed description are described as follows:
Conventional card transporting devices have only a single cassette, so that the card carrying capacity of the conventional card transporting device is small, and when the demand for the card is increased, the use speed of the card in the conventional card transporting device is greatly increased, which is often known. The card cassette in the card transport unit is in an empty state, so the card must often be replenished to the card slot of the conventional card transport device, thus increasing the frequency of the add-on card to the conventional card transport device. The card of the supplementary card to the conventional card transport device is not required to be executed by the maintenance personnel. If the frequency of the supplementary card to the conventional card transport device is increased, it means that the workload of the maintenance personnel is also increased with the increase of the supplementary frequency, thereby increasing the maintenance. The workload of the person.
In order to solve the problem of the conventional card conveying device, the present invention provides a multi-snap card conveying device having a plurality of card sets for a plurality of cards, which effectively increases the card capacity of the card conveying device and reduces the supplementary card to the card conveying device. The frequency of the maintenance staff is reduced.
Please refer to the first figure, which is a structural diagram of a multi-card type card conveying device according to a first embodiment of the present invention; as shown in the figure, the present embodiment provides a multi-snap card conveying device 1 and a multi-card type card conveying device. 1 can provide a plurality of cards to a card issuing device 2. The multi-card card transport device 1 includes a sliding platform 10, a cassette module 12 and a driving module 13. The sliding platform 10 has a base 101 and a sliding slot 102. The sliding slot 102 and the card issuing device 2 are disposed on the base 101. The sliding slot 102 is located above the card issuing device 2 and has a first end 1021 and a second end. 1022 and a discharge opening 1023. The discharge opening 1023 is located between the first end 1021 and the second end 1022 and corresponds to a card collecting trough (not shown) of the card issuing device 2. The cassette module 12 is disposed on the chute 102 and has a plurality of cassettes 121 arranged side by side in the chute 102. Each of the latches 121 has an inlet 1211 and an outlet 1212. The outlets 1212 of the latches 121 are in close contact with the surface of the sliding slot 102. The card pins 121 are not connected to each other, that is, they are separable. Of course, the card pins 121 can be connected to each other and have an integrally formed structure, which will not be described herein.
The driving module 13 has a carrier 130, an actuator 131 and a pusher 132. The carrier 130 is disposed on the base 101, the actuator 131 is disposed on the carrier 130, and the pusher 132 is disposed on the actuator 131. The actuating member 131, the push rod 132 and the sliding slot 102 are arranged in a row, and the driving module 13 is disposed adjacent to the first end 1021 of the sliding slot 102. One end of the push rod 132 has a pushing portion 1321 that abuts against one side of the pinch 121 that is closest to the first end 1021 of the chute 102.
Referring to FIG. 2A and FIG. 2B together, it is a use state diagram of the multi-card type card conveying device according to the first embodiment of the present invention; as shown in the figure, the multi-card type card conveying device of the embodiment 1 Before the operation, a plurality of cards 3 (in the second A picture and the second B picture, the cards 3 are indicated by dashed boxes) are placed into each of the cards 121, and the cards 3 are from each The inlet 1211 of the cassette 121 is placed, and is vertically stacked from the outlet 1212 of the cassette 121 to the inlet 1211 thereof, and the cards 3 are filled with each of the cassettes 121, and then the cards are placed. The cymbal 121 is placed on the surface of the chute 102. The outlet 1212 of the shank 121 is in contact with the surface of the chute 102 and disposed between the first end 1021 of the chute 102 and the discharge opening 1023 thereof.
When the multi-card type card transporting device 1 is actuated, the actuating member 131 can be a motor type, a pneumatic type or a hydraulic type to drive the push rod 132 to move linearly, and the pushing portion 1321 of the push rod 132 pushes the latching module 12 The cassette module 12 is slid to the chute 102, and the cassettes 121 of the cassette module 12 slide from the first end 1021 of the chute 102 to the second end 1022 thereof. The latch 121 closest to the second end 1022 of the chute 102 first slides over the discharge opening 1023 of the chute 102, and aligns the outlet 1212 of the latch 121 with the discharge opening 1023 of the chute 102. Aligning the card collecting slots of the card issuing device 2 corresponding to the discharging opening 1023, so that the cards 3 in the loading cassette 121 are dropped from the outlet 1212 of the setting cassette 121 into the card collecting slot of the card issuing device 2 So that the card issuing device 2 can perform card issuance. (as shown in Figure A)
When the latching 121 of the second end 1022 closest to the chute 102 is in an open state, the actuating member 131 drives the push rod 132 to move linearly, and the pushing portion 1321 of the push rod 132 pushes the latching module 12 to the direction. The right movement causes the outlet 1212 of the next cassette 121 to correspond to the discharge opening 1023 of the chute 102, so that the card 3 can be continuously supplied to the card issuing device 2 until each of the cassettes 121 is in an empty state, and then needs to be re-opened. Fill in the card 3 to the card slots 121. (as shown in Figure B)
The second end 1022 of the sliding slot 102 is further provided with a blocking member 10221. The blocking member 1021 is configured to block the clamping module 12. When the pushing portion 1321 of the pushing rod 132 pushes the clamping module 12, the blocking member 10221 can be The cassette module 12 is prevented from being detached from the second end 1022 of the chute 102. The multi-card type card transporting device 1 of the present embodiment has a plurality of card magazines 121, which can accommodate a large number of cards 3, thereby increasing the card capacity of the multi-card type card transporting device 1, thereby reducing the supplementary card. 3 to the frequency of the card 121.
In addition, in order to allow the card clamping module 12 to linearly slide in the sliding slot 102, the sliding slot 102 can further be provided with a linear sliding rail, so that the clamping cassette module 12 can be slidably disposed on the linear sliding rail and can slide linearly. In the sliding slot 102, at the same time, if the pushing portion 1321 of the push rod 132 abuts the center of gravity of the card clamping module 12, when the pushing portion 1321 of the pushing rod 132 pushes the card clamping module 12, the pushing rod 132 The pushing portion 1321 pushes the center of gravity of the card clamping module 12, and the card clamping module 12 can linearly slide due to the linear sliding rails in the sliding slot 102, thereby preventing the carding module 12 from falling over.
Referring to FIG. 3A and FIG. 3B, another structural diagram and a partial enlarged view of the multi-card type card conveying device according to the first embodiment of the present invention; as shown in the figure, in order to ensure that a card is to be provided 3, the outlet 1212 of the card insertion device 121 of the card issuing device 2 can be aligned with the discharge opening 1023 of the chute 102, each of the clamping jaws 121 has a corresponding two flanges 1213, and the two flanges 1213 are respectively arranged from the card. The side wall of the outlet 1212 of 121 extends outward. Each of the flanges 1213 is provided with a positioning hole 12131. The surfaces of the two sides of the discharge opening 1023 of the sliding slot 102 respectively have a recess 1024, and each recess 1024 is provided with a positioning member 1025. When the one of the latching pins 121 is moved to the discharge opening 1023 of the sliding slot 102, the two positioning members 1025 located at the two sides of the discharging opening 1023 are respectively disposed on the two positioning holes 12131 of the latching chuck 121. Thus, the outlet 1212 of the chuck 121 can be aligned with the discharge opening 1023 of the chute 102.
The positioning member 1025 includes a resilient member 10251 and a positioning ball 10252. The elastic member 10251 is disposed in the groove 1024 of the sliding slot 102. The positioning ball 10252 is disposed in the opening of the recess 1024. When the portion of the 1213 that is not provided with the positioning hole 12131 is moved over the positioning member 1025, the two flanges 1213 press the positioning ball 10252 downward into the groove 1024 of the sliding groove 102, and the elastic member 10251 is pressed by the positioning ball 10252. Compressed. After the two positioning holes 12131 of the two flanges 1213 are moved over the positioning member 1025, the pressed elastic member 10251 is released to generate a thrust, and the thrust pushes the positioning ball 10252 outward from the groove 1024, and the positioning ball is moved. The 10252 card is disposed on the positioning hole 12131 to position the cassette 121 on the discharge opening 1023, so that the card 121 can supply the card 3 to the card collecting slot of the card issuing device 2 corresponding to the discharging opening 1023.
Referring to the first figure, the multi-card type card transporting device 1 of the present embodiment further includes a positioning module 17 . The positioning module 17 includes a plurality of positioning sensors 171 and a positioning sensing unit 172. The positioning sensing of the embodiment The number of the devices 171 mainly matches the number of the card holders 121. The present embodiment has four card sets 121, so the positioning module 17 also has four positioning sensors 171. The positioning sensors 171 are disposed on the carrier 130 of the driving module 13 and located below the push rod 132. The distance between the adjacent two positioning sensors 171 is the width of the single card 121. The positioning sensing portion 172 is disposed at one end of the push rod 132 relative to the pushing portion 1321. When the actuating member 131 drives the push rod 132 to move linearly, the positioning sensing portion 172 of the push rod 132 moves from the leftmost positioning sensor 171 to the right to the next positioning sensor 171, and the moving distance is a single card. The width of the crucible 121, that is, the pushing portion 1321 of the push rod 132 pushes the chucking module 12, so that the card 121 originally corresponding to the discharging opening 1023 is in an open state, and moves to the right and fills the card 3 A cassette 121 is moved over the discharge opening 1023.
The positioning sensor 171 of the embodiment is an optical sensor, and a light source is emitted. When the positioning sensing portion 172 of the push rod 132 shields the light source emitted by the positioning sensor 171, the positioning sensor 171 generates a light source. Sensing signal. The multi-card type card transporting device 1 of the present embodiment further includes a controller 14 electrically connected to the actuating member 131 to control the actuation of the actuating member 131, and the positioning sensors 171 are also The controller 14 is electrically connected. When the positioning sensor 171 generates an inductive signal, the positioning sensor 171 transmits an inductive signal to the controller 14, and the controller 14 stops the actuation of the actuator 131 according to the inductive signal. The foregoing is only one embodiment of the present invention, and is not limited thereto. The locating sensor 171 can use other types of sensors, and the multi-匣 card of the present embodiment will not be described herein. The conveying device 1 is further provided with a missing sensor 15 . The missing sensor 15 of the embodiment is disposed at the bottom of the chute 102 , that is, on the different side from the card clamping module 12 , and opposite to the discharging opening 1023 , and The controller 14 is electrically connected. Of course, the missing sensor 15 of the present embodiment can be disposed at any position of the chute 102, and only needs to be opposite to the discharge opening 1023, and details are not described herein again. The missing sensor 15 of the present embodiment uses a proximity sensor, which can sense whether the discharge opening 1023 can supply the card 3, and when the missing sensor 15 senses that the discharge opening 1023 does not supply the card 3, that is, the corresponding discharge opening 1023 When the card 121 is in an open state, the missing sensor 15 generates an inductive signal, and transmits the sensing signal to the controller 14, and the controller 14 activates the actuator 131 of the driving module 13 according to the sensing signal, and The actuating member 131 drives the push rod 132 to move linearly to push the cassette module 12 and move to fill a cassette 121 below the card 3 to above the discharge opening 1023.
Referring to FIG. 4, it is a structural diagram of a multi-card type card conveying device according to a second embodiment of the present invention; as shown in the figure, the multi-strip card conveying device 1 of the present embodiment further includes an anti-tip module 16 The anti-dumping module 16 is disposed on the base 101 and adjacent to the second end 1022 of the chute 102 and opposite to the driving module 13. The anti-dumping module 16 has a first fixing base 161, a second fixing base 162, a pressing rotating arm 163 and two elastic members 164. The first fixing base 161 and the second fixing base 162 are disposed on the base 101. A fixing seat 161 is located below the sliding groove 102 and has a width larger than the width of the sliding groove 102. The second fixing seat 162 is located at one side of the first fixing base 161. The pressing arm 163 has a first end 1631 and a second end 1632. The first end 1631 of the pressing arm 163 is pivotally connected to the second fixing seat. 162, the second end 1632 of the second end 1632 is pressed against the side of the card slot 121 closest to the second end 1022 of the sliding slot 102, so that one side of the clamping module 12 is pressed by the pushing portion 1321 of the push rod 132. The other side of the pressing arm 163 is pressed against the second end 1632 of the pressing arm 163 to prevent the chucking module 12 from falling over.
Referring to FIG. 5, the two elastic members 164 respectively have a first end 1641 and a second end 1642. The first end 1641 of each elastic member 164 is disposed on one side of the first fixing base 161, and the second portion thereof. The end 1642 is disposed on one side of the pressing arm 163. When the pushing portion 1321 of the push rod 132 continues to push the card clamping module 12 to slide to the second end 1022 of the sliding slot 102, the clamping module 12 pushes the pressing arm 163 and the pressing arm 163 is opposite. The second fixing seat 162 pivots to the outer side of the chute 102 (pivoting to the right), and at this time, the two elastic members 164 are in a stretched state. When the clamping module 12 slides toward the first end 1021 of the sliding slot 102, the two elastic members 164 in the stretched state are contracted, so that the pressing rotating arm 163 is automatically pivoted to the left relative to the second fixing base 162, and The second end 1632 of the pressing arm 163 is pressed against the side of the card clamping module 12, which means that the second end 1632 of the pressing arm 163 can continue to withstand the sliding of the clamping module 12 . Pressing on the side of the cassette module 12 ensures that the cassette module 12 is prevented from falling over.
A limiting member 165 is further disposed between the first fixing base 161 and the second fixing base 162 , and the limiting member 165 is disposed on the base 101 . When the two elastic members 164 pull back the pressing arm 163 and pivot the pressing arm 163 relative to the second fixing base 162 to the first end 1021 of the sliding slot 102, the limiting member 165 abuts against the pressing arm 163. And limiting the angle at which the pressing arm 163 pivots to the first end 1021 of the chute 102, preventing the pressing arm 163 from continuing to pivot toward the first end 1021 of the chute 102 to cause the card clamping module 12 to slide The first end 1021 of the slot 102 is disengaged.
However, as the card clamping module 12 slides, the second end 1632 of the pressing arm 163 can still be pressed against the side of the card clamping module 12, but will move to the side of the card clamping module 12, that is, The position of the second end 1632 of the pressing arm 163 on the side of the card clamping module 112 is different depending on the position of the card clamping module 12 on the sliding slot 102. In order to reduce the friction between the second end 1632 of the pressing arm 162 and the side of the clamping jaw module 112, a roller 166 is further disposed on the second end 1632 of the pressing arm 162, and the rotating arm 163 is pressed. When the second end 1632 is moved to the side of the card clamping module 12, the roller 166 rolls and drives the second end 1632 of the pressing arm 163 to move to the side of the card clamping module 12.
Please refer to FIG. 6A, FIG. 6B and FIG. 6C, which are structural diagrams of a multi-card type card conveying device according to a third embodiment of the present invention; as shown in the figure, the multi-card type card of the embodiment is shown. The transmission device 1 differs from the above embodiment in that the installation position of the drive module 13 of the present embodiment is different from the installation position of the drive module 13 of the above embodiment. The carrier 130 of the driving module 13 of the present embodiment is disposed on the base 101. The actuator 131 is disposed on the carrier 130, and the push rod 132 is disposed through the actuator 131. The actuating member 131 and the push rod 132 are located on one side of the sliding slot 102 and parallel to the sliding slot 102 . The pushing portion 1321 of the push rod 132 abuts against the left side surface of the card clamping module 12 . When the actuating member 131 drives the push rod 132 to move to the right, the pushing portion 1321 of the push rod 132 pushes the chuck module 12 to the right. The arrangement of the driving module 13 of the present embodiment can reduce the volume of the multi-card type card conveying device 1.
In order to enable the pushing portion 1321 of the push rod 132 to stably push the chucking module 12, the driving module 13 further has an auxiliary sliding rail 135 and an auxiliary bracket 136. The auxiliary sliding rail 135 is disposed on the bearing base 130 and is located in the sliding portion. The other side of the slot 102 is parallel to the chute 102. The auxiliary bracket 136 is disposed on the auxiliary rail 135, and one end thereof is connected to the pushing portion 1321 of the push rod 132. When the pushing portion 1321 of the push rod 132 pushes the latching module 12 to the right, the auxiliary bracket 136 of the connecting pushing portion 1321 also slides to the right to the auxiliary sliding rail 135, so that the pushing portion 1321 and the card clamping module 12 can be added. The contact area of the side faces to stably push the cassette module 12.
FIG. 7 is a structural diagram of a multi-card type card conveying device according to a fourth embodiment of the present invention; as shown in the figure, the embodiment is different from the above embodiment in that the embodiment provides a card preventing device. The module 12 dumps the anti-tip module 16 and replaces the anti-tip module 16 of the third embodiment. The anti-dumping module 16 of the embodiment includes a cantilever 167 and a blocking portion 168. The cantilever 167 has a first end 1671 and a second end 1672. The blocking portion 168 is disposed at the second end 1672 of the cantilever 167 and is coupled to the cantilever The 167 is perpendicular to each other and is located on the side of the card 匣 121 closest to the second end 1022 of the chute 102, and the first end 1671 of the cantilever 167 is disposed on the auxiliary bracket 136, such that the anti-tip module 16 and the driving module 13 Around the cassette module 12, the cassette module 12 is blocked by the blocking portion 168, so that the cassette module 12 does not fall. Moreover, the blocking portion 168 is pivotally disposed at the second end 1672 of the cantilever 167, and the blocking portion 168 pivots relative to the cantilever 167. When the blocking portion 168 is pivoted upward relative to the cantilever 167, the blocking portion 168 cannot prevent the card clamping module. 12 dumping allows the user to remove the cassette module 12.
When the actuating member 131 of the driving module 13 drives the push rod 132, the pushing portion 1321 of the push rod 132 pushes the latching module 12, and drives the auxiliary bracket 136 to linearly slide on the auxiliary sliding rail 135, and the auxiliary bracket 136 drives the anti-sliding rail 135. The pouring module 16 moves along with the sliding direction of the cassette module 12, that is, the anti-tip module 16 moves as the cassette module 12 slides to prevent the cassette module 12 from falling over. The arrangement of the anti-tip module 16 of the present embodiment can further reduce the volume of the multi-card type card transporting device 1 of the present embodiment.
In summary, the present invention provides a multi-snap card transfer device, which is mainly applied to various card issuing devices, and the multi-snap card transfer device of the present invention mainly has a plurality of card loading ports, which can increase multi-card type card transfer. The card capacity of the device reduces the frequency of replenishing cards to the multi-card card transport and reduces the workload of maintenance personnel.

1...多匣式卡片傳送裝置1. . . Multi-card card conveyor

10...滑動平台10. . . Sliding platform

101...基座101. . . Pedestal

102...滑槽102. . . Chute

1021...第一端1021. . . First end

1022...第二端1022. . . Second end

10221...阻擋件10221. . . Blocker

1023...出料開口1023. . . Discharge opening

1024...凹槽1024. . . Groove

1025...定位件1025. . . Positioning member

10251...彈性元件10251. . . Elastic component

10252...定位滾珠10252. . . Positioning ball

12...置卡匣模組12. . . Card module

121...置卡匣121. . . Card

1211...置入口1211. . . Set entrance

1212...出口1212. . . Export

1213...凸緣1213. . . Flange

12131...定位孔12131. . . Positioning hole

13...驅動模組13. . . Drive module

130...承載座130. . . Carrier

131...致動件131. . . Actuator

132...推桿132. . . Putt

1321...推動部1321. . . Promotion department

135...輔助滑軌135. . . Auxiliary slide

136...輔助支架136. . . Auxiliary bracket

14...控制器14. . . Controller

15...缺料感應器15. . . Missing sensor

16...防傾倒模組16. . . Anti-dumping module

161...第一固定座161. . . First mount

162...第二固定座162. . . Second mount

163...抵壓旋臂163. . . Resisting spiral arm

1631...第一端1631. . . First end

1632...第二端1632. . . Second end

164...彈性件164. . . Elastic part

1641...第一端1641. . . First end

1642...第二端1642. . . Second end

165...限位件165. . . Limiter

166...滾輪166. . . Wheel

167...懸臂167. . . cantilever

1671...第一端1671. . . First end

1672...第二端1672. . . Second end

168...阻擋部168. . . Blocking

17...定位模組17. . . Positioning module

171...定位感測器171. . . Positioning sensor

172...定位感應部172. . . Positioning sensor

2...發卡裝置2. . . Card issuing device

3...卡片3. . . card

第一圖係為本發明之第一實施例之多匣式卡片傳送裝置的結構圖;
第二A圖係為本發明之第一實施例之多匣式卡片傳送裝置的使用狀態圖;
第二B圖係為本發明之第一實施例之多匣式卡片傳送裝置的另一使用狀態圖;
第三A圖係為本發明之第一實施例之多匣式卡片傳送裝置的另一結構圖;
第三B圖係為本發明之第一實施例之多匣式卡片傳送裝置的局部放大圖;
第四圖係為本發明之第二實施例之多匣式卡片傳送裝置的結構圖;
第五圖係為本發明之第二實施例之多匣式卡片傳送裝置的使用狀態圖;
第六A圖係為本發明之第三實施例之多匣式卡片傳送裝置的結構圖;
第六B圖係為本發明之第三實施例之多匣式卡片傳送裝置的另ㄧ結構圖;
第六C圖係為本發明之第三實施例之多匣式卡片傳送裝置的再ㄧ結構圖;以及
第七圖係為本發明之第四實施例之多匣式卡片傳送裝置的結構圖。
The first drawing is a structural view of a multi-card type card conveying device according to a first embodiment of the present invention;
Figure 2A is a view showing a state of use of the multi-card type card conveying device of the first embodiment of the present invention;
2B is another use state diagram of the multi-snap card conveying device of the first embodiment of the present invention;
Figure 3A is another structural diagram of the multi-card type card conveying device of the first embodiment of the present invention;
Figure 3B is a partial enlarged view of the multi-card type card conveying device of the first embodiment of the present invention;
Figure 4 is a structural view of a multi-card type card transporting apparatus according to a second embodiment of the present invention;
Figure 5 is a view showing a state of use of the multi-card type card conveying device of the second embodiment of the present invention;
Figure 6A is a structural view of a multi-card type card transporting apparatus according to a third embodiment of the present invention;
Figure 6B is another structural diagram of the multi-card type card conveying device of the third embodiment of the present invention;
6 is a structural view of a multi-card type card transporting apparatus according to a third embodiment of the present invention; and a seventh diagram is a structural diagram of a multi-card type card transporting apparatus according to a fourth embodiment of the present invention.

1...多匣式卡片傳送裝置1. . . Multi-card card conveyor

10...滑動平台10. . . Sliding platform

101...基座101. . . Pedestal

102...滑槽102. . . Chute

1021...第一端1021. . . First end

1022...第二端1022. . . Second end

10221...阻擋件10221. . . Blocker

1023...出料開口1023. . . Discharge opening

12...置卡匣模組12. . . Card module

121...置卡匣121. . . Card

1211...置入口1211. . . Set entrance

1212...出口1212. . . Export

13...驅動模組13. . . Drive module

130...承載座130. . . Carrier

131...致動件131. . . Actuator

132...推桿132. . . Putt

1321...推動部1321. . . Promotion department

14...控制器14. . . Controller

15...缺料感應器15. . . Missing sensor

17...定位模組17. . . Positioning module

171...定位感測器171. . . Positioning sensor

172...定位感應部172. . . Positioning sensor

2...發卡裝置2. . . Card issuing device

Claims (14)

一種多匣式卡片傳送裝置,係包含:
一滑動平台,具有一基座及一滑槽,該滑槽設置於該基座,並具有一第一端、一第二端及一出料開口,該出料開口位於該第一端及該第二端之間,並對應一發卡裝置;
一置卡匣模組,設置於該滑槽,該置卡匣模組具有複數置卡匣,每一置卡匣具有一置入口及一出口,供置入及釋出複數卡片;以及
一驅動模組,推動該置卡匣模組滑動於該滑槽上,以驅使該些置卡匣之一置卡匣的該出口對應該滑槽之該出料開口。
A multi-turn card transfer device comprising:
a sliding platform having a base and a sliding slot, the sliding slot is disposed on the base, and has a first end, a second end and a discharge opening, wherein the discharge opening is located at the first end and the sliding end Between the second ends, and corresponding to a card issuing device;
a cassette module is disposed on the chute, the card cassette module has a plurality of cassettes, each of the cassettes has a set inlet and an outlet for inserting and releasing a plurality of cards; and a drive The module pushes the card module to slide on the chute to drive the outlet of one of the card tabs to correspond to the discharge opening of the chute.
如申請專利範圍第1項所述之多匣式卡片傳送裝置,其中該滑槽之該第二端更設有一阻擋件,該阻擋件阻擋該置卡匣模組。The multi-small card transport device of claim 1, wherein the second end of the chute is further provided with a blocking member that blocks the chucking module. 如申請專利範圍第1項所述之多匣式卡片傳送裝置,其中該驅動模組係包含:
一承載座,設置於該基座;
一致動件,設置於該承載座;以及
一推桿,設置於該致動件,並具有一推動部,該推動部抵接該置卡匣模組;
其中該致動件驅動該推桿,該推桿之該推動部推動該置卡匣模組。
The multi-card type card conveying device according to claim 1, wherein the driving module comprises:
a carrier disposed on the base;
An actuating member is disposed on the carrier; and a push rod is disposed on the actuating member and has a pushing portion, the pushing portion abutting the card clamping module;
The actuating member drives the push rod, and the pushing portion of the push rod pushes the chuck module.
如申請專利範圍第3項所述之多匣式卡片傳送裝置,其中該致動件及該推桿設置於該滑槽之一側邊,並與該滑槽相互平行。The multi-small card transport device of claim 3, wherein the actuating member and the push rod are disposed on one side of the chute and parallel to the chute. 如申請專利範圍第4項所述之多匣式卡片傳送裝置,其中該驅動模組更包含:
一輔助滑軌,設置於該承載座,並位於該滑槽之另一側邊,並與該滑槽相互平行;以及
一輔助支架,設置於該輔助滑軌並滑動於該輔助滑軌,且連接該推動部。
The multi-card type card transfer device of claim 4, wherein the drive module further comprises:
An auxiliary rail disposed on the carrier and located on the other side of the sliding slot and parallel to the sliding slot; and an auxiliary bracket disposed on the auxiliary sliding rail and sliding on the auxiliary sliding rail, and Connect the pusher.
如申請專利範圍第1項所述之多匣式卡片傳送裝置,更包含:
一防傾倒模組,抵接該置卡匣模組。
The multi-card type card conveying device as claimed in claim 1, further comprising:
An anti-dumping module abuts the card cassette module.
如申請專利範圍第6項所述之多匣式卡片傳送裝置,其中該防傾倒模組設置於該基座,並鄰近該滑槽之該第二端,且抵接該置卡匣模組,其係包含:
一第一固定座,設置於該基座;
一第二固定座,設置於該第一固定座之一側;
一抵壓旋臂,具有一第一端及一第二端,該抵壓旋臂之該第一端樞接於該第二固定座,該抵壓旋臂之該第二端抵接於該置卡匣模組;以及
二彈性件,分別具有一第一端及一第二端,每一彈性件之第一端連接於該第一固定座,其第二端連接該抵壓旋臂。
The multi-small card transport device of claim 6, wherein the anti-tip module is disposed on the base and adjacent to the second end of the chute, and abuts the card clamp module. Its system contains:
a first fixing seat disposed on the base;
a second fixing seat disposed on one side of the first fixing seat;
a first end and a second end of the pressing arm, the first end of the pressing arm is pivotally connected to the second fixing base, and the second end of the pressing arm abuts The first elastic end has a first end and a second end, and the first end of each elastic member is connected to the first fixing base, and the second end is connected to the pressing rotating arm.
如申請專利範圍第7項所述之多匣式卡片傳送裝置,其中該防傾倒模組係更包含:
一限位件,設置於該基座,並位於該第一固定座與該第二固定座之間,該限位件限制該抵壓旋臂往該滑槽之該第一端樞轉的角度。
The multi-card type card conveying device according to claim 7, wherein the anti-dumping module further comprises:
a limiting member disposed on the base and located between the first fixing seat and the second fixing seat, the limiting member limiting an angle at which the pressing rotating arm pivots to the first end of the sliding slot .
如申請專利範圍第6項所述之多匣式卡片傳送裝置,其中該防傾倒模組,設置於該驅動模組,並抵接該置卡匣模組,該防傾倒模組係包含:
一懸臂,具有一第一端及一第二端,該第一端設置於該驅動模組;以及
一阻擋部,設置於該懸臂之該第二端,並抵接該置卡匣模組。
The anti-dumping module is provided in the driving module and abuts the card clamping module, and the anti-dumping module comprises:
A cantilever has a first end and a second end, the first end is disposed on the driving module, and a blocking portion is disposed on the second end of the cantilever and abuts the clamping module.
如申請專利範圍第9項所述之多匣式卡片傳送裝置,其中該阻擋部樞設於該懸臂之該第二端,該阻擋部相對該懸臂樞轉。The multi-slice card transport device of claim 9, wherein the blocking portion is pivotally disposed at the second end of the cantilever, the blocking portion pivoting relative to the cantilever. 如申請專利範圍第1項所述之多匣式卡片傳送裝置,更包含:
一控制器,電性連接該驅動模組,並控制該驅動模組。
The multi-card type card conveying device as claimed in claim 1, further comprising:
A controller electrically connects the driving module and controls the driving module.
如申請專利範圍第11項所述之多匣式卡片傳送裝置,更包含一定位模組,其係包含:
複數定位感測器,設置於該驅動模組的一承載座,並電性連接該控制器;以及
一定位感應部,設置於該驅動模組之一推桿,該推桿用於推動該置卡匣模組;
其中該定位感應部觸發該些定位感測器之一定位感測器,該定位感測器產生一感測訊號,並傳送該感測訊號至該控制器,該控制器依據該感測訊號停止該驅動模組。
The multi-card type card conveying device of claim 11, further comprising a positioning module, comprising:
a plurality of positioning sensors disposed on a carrier of the driving module and electrically connected to the controller; and a positioning sensing portion disposed on one of the driving modules, the pushing rod is used to push the positioning Card module
The positioning sensing unit triggers one of the positioning sensors to position the sensor, the positioning sensor generates a sensing signal, and transmits the sensing signal to the controller, and the controller stops according to the sensing signal. The drive module.
如申請專利範圍第11項所述之多匣式卡片傳送裝置,更包含:
一缺料感應器,設置於該滑槽並相對於該出料開口,且與該控制器電性連接,該缺料感應器感應該出料開口未提供該卡片時,該缺料感應器產生一感應訊號,並傳送該感應訊號至該控制器,該控制器依據該感應訊號驅動該驅動模組推動該置卡匣模組。
The multi-card type card conveying device as claimed in claim 11, further comprising:
a missing sensor is disposed in the sliding slot and is electrically connected to the discharge opening, and the missing sensor senses that the discharging opening does not provide the card, and the missing sensor generates An inductive signal is transmitted to the controller, and the controller drives the driving module to drive the card module according to the sensing signal.
如申請專利範圍第1項所述之多匣式卡片傳送裝置,更包含:
至少一定位孔,設置於每一置卡匣之至少一凸緣;以及
至少一定位件,設置於該滑槽之至少一凹槽,並相對該出料開口之周圍;
其中該定位件卡設於該定位孔,該置卡匣之該出口對應該出料開口。
The multi-card type card conveying device as claimed in claim 1, further comprising:
The at least one positioning hole is disposed on the at least one flange of each of the latching holes; and the at least one positioning member is disposed on the at least one groove of the sliding slot and opposite to the discharge opening;
The positioning member is disposed in the positioning hole, and the outlet of the clamping card corresponds to the discharge opening.
TW101129312A 2012-08-14 2012-08-14 Multi-box card transporting device TW201406641A (en)

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CN104103094A (en) * 2014-06-13 2014-10-15 上海怡力工程设备有限公司 Various-ticket output device assigned with heterogeneous value
CN117466016A (en) * 2023-12-27 2024-01-30 苏州元脑智能科技有限公司 Sheet separating mechanism and sheet conveying system

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Publication number Priority date Publication date Assignee Title
JP4904149B2 (en) * 2006-12-27 2012-03-28 日本電産サンキョー株式会社 Card sending device
CN201177823Y (en) * 2008-04-16 2009-01-07 中国科学院沈阳自动化研究所 Card receiving-providing machine
JP5176143B2 (en) * 2008-08-20 2013-04-03 ネッツエスアイ東洋株式会社 Card dispenser

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104103094A (en) * 2014-06-13 2014-10-15 上海怡力工程设备有限公司 Various-ticket output device assigned with heterogeneous value
CN104103094B (en) * 2014-06-13 2016-08-24 上海怡力工程设备有限公司 A kind of multiple ticket card follower composing different value
CN117466016A (en) * 2023-12-27 2024-01-30 苏州元脑智能科技有限公司 Sheet separating mechanism and sheet conveying system

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