.M322580 八、新型說明: 【新型所屬之技術領域】 _本創作係有關-種儲存媒介,特別是一種記憶卡 、記憶卡轉接 器及其組合之記憶裝置。 【先前技術】 —一目前許多消費性電子產品大多具有記憶卡(mem〇ry咖幻進 行資料的儲存,但市場上記憶卡的規袼繁多,例如,安全數位(SD) 5己憶卡、多媒體(MMC)記憶卡、壓縮快閃(CF)記憶卡、記憶體條 (MS)圯憶卡、智慧媒體(SM)記憶卡、尖端數位(xd)記憶卡、迷 你多媒體(RS_MMC)記憶卡、迷你安全數位(mini_SD)記憶卡及迷 你快閃(Trans Flash)記憶卡等不同規袼之記憶卡,因此消費性電 子產品的製造商可以採用的記憶卡非常多,使用者通常需要額外 購買符合>肖費性電子產品之記憶卡,不僅增加費用而且記憶卡只 月色使用於相容的消費性電子產品。為了解決上述問題,許多製造 商設計許多轉接器,例如,USB讀卡機(USB cardreader )係應用 於USB接頭之轉接器。 第1圖所不為習知記憶卡之轉接器示意圖。轉接器10 一端設 有一谷置空間12用以設置記憶卡14,而轉接器1〇另一端設有一 USB連 接埠16用以連接具USB連接埠的電子產品。上述之轉接器1〇雖能設計 不同的谷置空間12以安襞不同形式的記憶卡14,但使用者仍不能將記憶 卡14直接使用於不同的電子產品,記憶卡14仍需要透過USB連接埠16 進行轉換作業,因此上述的轉接器不能有效滿足使用者的需求。 又’第2圖所示為另一習知美國專利第US7152801號之轉 接态示意圖。如圖所示,記憶卡丨8具有一端USB連接埠2〇,其 中使用者若要進行記憶卡18的轉接,使用者需利用轉接護套22 5 M322580 觀。然,本創作並不限於此,第一記憶卡100與記憶卡轉接器400之組合 亦可為一記憶卡之完整外觀。 於上述實施例中,第一記憶卡與第二記憶卡可為安全數位(SD) ,圮憶卡、多媒體(MMC)記憶卡、壓縮快閃(cf)記憶卡 '記憶體堆 疊(MS)記憶卡、智慧媒體(SM)記憶卡、尖端數位(XD)記憶卡、迷 你多媒體(RS-MMC)記憶卡、迷你安全數位(mini_SD)記憶卡、迷 - 你快閃(Trans Flash)記憶卡、智慧卡、信用卡或USB快閃記憶碟。 - 第3圖所示為本創作一實施例記憶裝置之示意圖。記憶裝置 | 包含第一記憶卡100及記憶卡轉接器400,其中記憶卡轉接器400 的外形係設計為具一第二記憶卡的結構,而第一記憶卡1〇〇具有 微小化的結構用以置入於記憶卡轉接器400中,因此,本創作之 記憶裝置即可直接轉換成各種不同形式的記憶卡。 第4圖所示為本創作一實施例第一記憶卡之示意圖。第一記憶 卡100包含基板200、USB連接埠300、USB介面接點310、導 電接墊320。基板200 —端具有一 USB連接埠300,而USB連接 埠300上設有USB介面接點310。基板200另一端設置多個導電 接墊320 ;因此第一記憶卡1〇〇藉而形成微形之USB快閃記憶碟 隱 (USB flash drive,UFD)之結構,而USB連接埠300係符合通用序 - 列匯流排規格與具有USB連接埠的電子產品連線進行資料的存 取。 接續上述,於一實施例中,本創作之第一記憶卡100係具有 至少一記憶體(圖中未示)設置於基板200上用以儲存資料,而記 憶體係為非揮發性記憶體(nonvolatile memory)或其他可適用本 創作之第一記憶卡100 ;為了提供控制記憶體内資料的存取,第一 記憶卡100内另具有控制元件(圖中未示)及被動元件(圖中未示); 再者,一塑封體(圖中未示)係為一體成形的結構用以包覆基板 200並暴露出USB連接埠300、USB介面接點310及導電接墊320。 8 M322580 第5圖及第6圖所示為本創作一實施例記憶卡轉接器之正視 圖及側视圖。記憶卡轉接器400包含上蓋500、下蓋510、佈線 600、外部導電接點610及内部導電接點620,其中記憶卡轉接器 400其係為上蓋500及下蓋510組合成殼體520,殼體520形成 具有—第二記憶卡之外形,而殼體520另一端形成槽口 630用以 容置第—記憶卡1〇〇(請參閱第3圖);記憶卡轉接器400内設置佈 線600,佈線600 —端電性連接記憶卡轉接器400之外部導電接 點610,而佈線600之另一端設置槽口 630内並電性連接内部導 電接點620。 接續上述,本創作之記憶卡轉接器其外形可製作包括一安全 數位(SD)記憶卡、多媒體(MMC)記憶卡、壓縮快閃(CF)記憶卡、 記憶體條(MS)記憶卡、智慧媒體(SM)記憶卡、尖端數位(XD)記 憶卡、迷你多媒體(RS-MMC)記憶卡、迷你安全數位(mini-SD)記 憶卡 '迷你快閃(Trans Flash)記憶卡、智慧卡(Smart Card)、信用 卡(Credit Card)及UFD卡等;此外,上蓋500及下蓋510具有一 暴露區域(圖中未示)用以暴露出記憶卡轉接器400之外部導電接 點610、記憶卡轉接器400之槽口 630及槽口 630内之内部導電 接點620,而上蓋500及下蓋510係為一塑膠材質,佈線600及 外部導電接點610係分別為導電金屬的材質,而内部導電接點 620係具有彈性結構之導電金屬。 第7圖及第8圖所示為依據本創作一實施例記憶裝置之組裝 示意圖。於一實施例中,如第7圖所示,第一記憶卡100係沿著 箭頭B朝著轉接裝置之槽口 630方向前進;第一記憶卡100係置 入記憶卡轉接器400之槽口 630内,藉以使第一記憶卡100之導 電接墊320係電性連接記憶卡轉接器400之内部導電接點620 ; 如此,如第8圖所示,即完成具第二記憶卡外形之記憶卡轉接器 400與第一記憶卡1〇〇的組裝程序。 9 M322580 第9圖及第10圖所示為依據本創作一實施例記憶卡轉接器 及第一記憶卡之立體圖。於一較佳的實施例中,為了使具第二記 憶卡外形之記憶卡轉接器400與第一記憶卡1〇〇間能精準的定 位,本創作係可於記憶卡轉接器400之槽口 630及第一記憶卡1〇〇 兩側設置接合結構,例如,第9圖所示接合結構係為礙溝 (notch)700,而崁溝700的形狀為门型,而第10圖所示崁溝71〇 的形狀係為V型;因此,上述的接合結構係扣接、卡接或其它能 定位具第二記憶卡外形之記憶卡轉接器與第一記憶卡的結構及裝 置;上述較佳實施例僅做一說明而非用以限定本創作。 另’請參考第11圖及第12圖所示分別為依據本創作一實施 例第一記憶卡之封裝流程圖及示意圖。首先於一基板200上_端 形成USB連接埠300(S10),接著,將記憶體330、控制元件34〇 及被動元件350設置於基板200上(S20);之後,記憶體330、 控制元件340及被動元件350電性連接至基板200(S30),例如, 利用引線360電性連接記憶體330至基板200 ;接著,利用上模 800及一支撐下模810進行一灌模程序,塑封體(圖中未示)經由 灌孔820進入包覆記憶體330、控制元件340、被動元件350及 基板200(S40);其中,USB連接埠綱^犯介面接點㈤中未 不)及導電接墊(圖中未示)係與支撐下模81〇接觸,因此,塑封體 具有未包覆的區域而暴露出USB連接埠、usb介面接點及導電 ,墊;又,第一記憶卡100電性連接的方法,係可利用覆晶或其 它方法所製成;塑封體因設計及製程的需要,包覆的區域及形狀 可以有所改變;上述實施例要說明的是,第一記憶卡經由灌模程 序後,得到一體成形的塑封體以達到提高封裝良率。 根據上述,於一實施例中,本創作可將微型化之第一記憶卡, =微形之USB快閃記憶碟,縮小到置入於具第二記憶卡外形之記 ^卡轉接器,可適用於如SD、Ms、CF及XD等記憶卡,其第一 記憶卡内建的記憶體可以透過各種形式具第二記憶卡外形之記憶 M322580 卡轉接杰共同使用,達到直接轉換使用的目的,以減少使用者購 買記憶卡的成本;如此,使用者僅需辨別特定產品使用的記憶 ,,接著選用適合的具第二記憶卡外形之記憶卡轉接器,將第一 《憶卡及其具第二記憶卡外形之記憶卡轉接器組裝,組裝後之記 憶裝置即可置入於特定的電子產品中進行使用,例如,使用者擁 有一台數位相機(DC)及一台個人數位助理(pDA)其使用的記憶卡 分別為XD及CF的規袼,若使用者選用本創作之第一記憶卡及其 具第二記憶卡外形之記憶卡轉接器,僅將第一記憶卡組裝於具XD 或CF的第二記憶卡外形之記憶卡轉接器内,如此使用者可以達 成將數位相機及個人數位助理具有的XD及CF的記憶卡互相轉 用’以達到貧料分享及儲存的目的。 綜合上述,本創作提供一第一記憶卡及具有一第二記憶卡外 形之記憶卡轉接器,使用者僅需依照電子產品之記憶卡的規格將 第一記憶卡植入特定規袼的記憶卡轉接器中即可,而組裝後之記 憶裝置係可以代替電子卡置入電子產品中,因此不需利用額外的 轉接器,即可直接轉換成各種不同形式的記憶卡。藉由記憶卡轉 換器將第一記憶卡轉換成不同的第二記憶卡的相容介面,減少使 用者購買各種不同形式之記憶卡的成本,且增加使用者的便利 性。 以上所述之實施例僅係為說明本創作之技術思想及特點,其 目的在使熟習此項技藝之人士能夠瞭解本創作之内容並據以實 施,當不能以之限定本創作之專利範圍,即大凡依本創作所揭示 之精神所作之均等變化或修飾,仍應涵蓋在本創作之專利範圍 内。 【圖式簡單說明】 第1圖所示為習知記憶卡之轉接器示意圖。 11 M322580 第2圖所示為另一習知美國專利第US7152801號之轉接器禾意圖。 第3圖所示為本創作一實施例記憶裝置之示意圖。 第4圖所示為本創作一實施例第一記憶卡之示意圖。 弟曰所示為本創作一實施例記憶卡轉接器之正視圖。 第6圖所示為本創作一實施例記憶卡轉接器之側視圖。 ^圖所示為依據本創作一實施例記憶裝置之組裝示意圖。 第8圖所示為依據本創作一實施例記憶裝置之組裝示意圖。 弟9圖所示為依據本創作一實施例記憶卡轉接器及第一記憶卡之立體 圖。 第10圖所示為依據本創作另一實施例記憶卡轉接器及第一記憶卡之立 體圖。 第11圖所示為依據本創作一實施例記憶卡之封裝流程圖。 第12圖所示為依據本創作一實施例記憶卡之塑封示意圖。 第13A圖與第13B圖所示為依據本創作一實施例之正視圖。 【主要元件符號說明】 10 轉接器 12 容置空間 14、18 記憶卡 16、20 USB連接埠 22 轉接護套 100 第一記憶卡 110 第二記憶卡 200 基板 12 M322580.M322580 VIII. New Description: [New Technology Field] _ This creation is related to a kind of storage medium, especially a memory card, memory card adapter and its combination memory device. [Prior Art] - At present, many consumer electronic products mostly have memory cards (mem〇ry cafés for data storage, but there are many rules on memory cards in the market, for example, secure digital (SD) 5 memory cards, multimedia (MMC) memory card, compressed flash (CF) memory card, memory stick (MS) memory card, smart media (SM) memory card, sophisticated digital (xd) memory card, mini multimedia (RS_MMC) memory card, mini Different types of memory cards, such as secure digital (mini_SD) memory cards and mini flash (Trans Flash) memory cards, so manufacturers of consumer electronics can use a large number of memory cards, users usually need to purchase additional > The memory card of the versatile electronic product not only increases the cost but also the memory card is only used for compatible consumer electronic products. To solve the above problems, many manufacturers design many adapters, for example, USB card reader (USB) Cardreader is an adapter for a USB connector. Figure 1 is a schematic diagram of an adapter for a conventional memory card. One end of the adapter 10 is provided with a valley space 12 for setting the memory card 14, and The other end of the device 1 is provided with a USB port 16 for connecting electronic products with a USB port. The above-mentioned adapter 1 can design different valley spaces 12 to install different types of memory cards 14, but use Still, the memory card 14 cannot be directly used for different electronic products, and the memory card 14 still needs to be converted through the USB port ,16, so the above adapter cannot effectively meet the needs of the user. A transfer diagram of another conventional US Patent No. US7152801. As shown, the memory card 8 has a USB port 一端2〇, wherein the user needs to use the memory card 18 for the transfer. The adapter sheath 22 5 M322580. However, the creation is not limited thereto, and the combination of the first memory card 100 and the memory card adapter 400 may also be the complete appearance of a memory card. In the above embodiment, the first The memory card and the second memory card can be a secure digital (SD), memory card, multimedia (MMC) memory card, compressed flash (cf) memory card 'memory stack (MS) memory card, smart media (SM) memory Card, sophisticated digital (XD) memory card, fans Multimedia (RS-MMC) memory card, mini secure digital (mini_SD) memory card, fans - your Flash (Trans Flash) memory card, smart card, credit card or USB flash memory. - Figure 3 shows the creation A memory device of the embodiment includes a first memory card 100 and a memory card adapter 400, wherein the memory card adapter 400 is designed to have a second memory card structure, and the first memory The card 1 has a miniaturized structure for being placed in the memory card adapter 400. Therefore, the memory device of the present invention can be directly converted into various types of memory cards. Fig. 4 is a schematic view showing the first memory card of an embodiment of the present invention. The first memory card 100 includes a substrate 200, a USB port 300, a USB interface contact 310, and a conductive pad 320. The substrate 200 has a USB port 300 at its end, and a USB interface contact 310 is disposed on the USB port 300. The other end of the substrate 200 is provided with a plurality of conductive pads 320; therefore, the first memory card 1 forms a structure of a USB flash drive (UFD), and the USB port is compatible with the general purpose. The sequence-column bus specification is connected to an electronic product with a USB port for data access. In the above embodiment, in the first embodiment, the first memory card 100 of the present invention has at least one memory (not shown) disposed on the substrate 200 for storing data, and the memory system is non-volatile memory (nonvolatile) Memory) or other first memory card 100 applicable to the present invention; in order to provide access to control data in the memory, the first memory card 100 further has a control component (not shown) and a passive component (not shown) Furthermore, a plastic package (not shown) is an integrally formed structure for covering the substrate 200 and exposing the USB port 300, the USB interface contact 310 and the conductive pads 320. 8 M322580 Figures 5 and 6 show a front view and a side view of a memory card adapter of an embodiment of the present invention. The memory card adapter 400 includes an upper cover 500, a lower cover 510, a wiring 600, an external conductive contact 610, and an internal conductive contact 620. The memory card adapter 400 is formed by combining the upper cover 500 and the lower cover 510 into a housing 520. The housing 520 is formed to have a second memory card shape, and the other end of the housing 520 is formed with a notch 630 for accommodating the first memory card 1 (refer to FIG. 3); the memory card adapter 400 is The wiring 600 is disposed. The wiring 600 is electrically connected to the external conductive contact 610 of the memory card adapter 400, and the other end of the wiring 600 is disposed in the notch 630 and electrically connected to the internal conductive contact 620. Following the above, the memory card adapter of the present invention can be formed into a secure digital (SD) memory card, a multimedia (MMC) memory card, a compressed flash (CF) memory card, a memory stick (MS) memory card, Smart Media (SM) Memory Card, Cutting Point Digital (XD) Memory Card, Mini Multimedia (RS-MMC) Memory Card, Mini-SD Digital Memory Card (Trans Flash) Memory Card, Smart Card ( The smart card, the credit card, the UFD card, and the like; in addition, the upper cover 500 and the lower cover 510 have an exposed area (not shown) for exposing the external conductive contacts 610 of the memory card adapter 400, and memory. The socket 630 of the card adapter 400 and the inner conductive contact 620 in the slot 630, and the upper cover 500 and the lower cover 510 are made of a plastic material, and the wiring 600 and the external conductive contact 610 are respectively made of conductive metal. The inner conductive contact 620 is a conductive metal having an elastic structure. Fig. 7 and Fig. 8 are schematic views showing the assembly of the memory device according to an embodiment of the present invention. In an embodiment, as shown in FIG. 7, the first memory card 100 is advanced along the arrow B toward the slot 630 of the switching device; the first memory card 100 is placed in the memory card adapter 400. In the slot 630, the conductive pads 320 of the first memory card 100 are electrically connected to the internal conductive contacts 620 of the memory card adapter 400. Thus, as shown in FIG. 8, the second memory card is completed. The assembly procedure of the shape memory card adapter 400 and the first memory card 1〇〇. 9 M322580 FIGS. 9 and 10 are perspective views of the memory card adapter and the first memory card according to an embodiment of the present invention. In a preferred embodiment, in order to accurately position the memory card adapter 400 having the shape of the second memory card and the first memory card 1 , the present invention can be implemented in the memory card adapter 400. The slot 630 and the first memory card 1 are provided with joint structures on both sides. For example, the joint structure shown in FIG. 9 is a notch 700, and the shape of the trench 700 is a gate type, and FIG. 10 The shape of the sill groove 71 is V-shaped; therefore, the above-mentioned joint structure is fastened, snapped or other structure and device capable of locating the memory card adapter having the shape of the second memory card and the first memory card; The above-described preferred embodiments are merely illustrative and are not intended to limit the present invention. Please refer to FIG. 11 and FIG. 12 for a package flow chart and a schematic diagram of the first memory card according to an embodiment of the present invention. First, a USB port 300 is formed on a substrate 200 (S10), and then the memory 330, the control device 34, and the passive device 350 are disposed on the substrate 200 (S20); thereafter, the memory 330 and the control device 340 And the passive component 350 is electrically connected to the substrate 200 (S30), for example, electrically connecting the memory 330 to the substrate 200 by using the lead 360; then, using the upper mold 800 and a supporting lower mold 810 to perform a filling process, the plastic sealing body ( The cover memory 820, the control element 340, the passive component 350, and the substrate 200 (S40) are accessed through the filling hole 820; wherein, the USB connection interface interface (5) is not included) and the conductive pad (not shown) is in contact with the supporting lower mold 81〇, therefore, the plastic sealing body has an uncovered area to expose the USB connection port, the usb interface contact and the conductive, pad; and, the first memory card 100 is electrically The method of connection can be made by flip chip or other methods; the area and shape of the package can be changed due to the design and process requirements; the above embodiment is to illustrate that the first memory card is filled with irrigation After the molding process, an integrally formed plastic seal is obtained. In order to improve the yield package. According to the above, in an embodiment, the creation can reduce the miniaturized first memory card, the micro-shaped USB flash memory, to the card adapter placed in the shape of the second memory card. It can be applied to memory cards such as SD, Ms, CF and XD. The built-in memory of the first memory card can be used together with the memory M322580 card transfer type with the second memory card shape for direct conversion. The purpose is to reduce the cost of the user to purchase the memory card; thus, the user only needs to distinguish the memory used by the specific product, and then select the appropriate memory card adapter with the shape of the second memory card to The memory card adapter with the second memory card shape is assembled, and the assembled memory device can be placed in a specific electronic product for use. For example, the user has a digital camera (DC) and a personal digital device. The assistant (pDA) uses the memory card for the XD and CF specifications. If the user selects the first memory card of the creation and the memory card adapter with the second memory card shape, only the first memory card will be used. Assembled with XD or CF The second shape memory card memory card adapter, so the user can be reached by digital cameras and personal digital assistants have XD and CF memory cards each switch 'to achieve the purpose of sharing and storage-lean. In summary, the present invention provides a first memory card and a memory card adapter having a second memory card shape, and the user only needs to embed the first memory card into a specific memory according to the specifications of the memory card of the electronic product. The card adapter can be used, and the assembled memory device can be placed in the electronic product instead of the electronic card, so that it can be directly converted into various types of memory cards without using an additional adapter. By converting the first memory card into a compatible interface of a different second memory card by the memory card converter, the cost of purchasing various types of memory cards by the user is reduced, and the convenience of the user is increased. The embodiments described above are only for explaining the technical idea and characteristics of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement them according to the scope of the patent. That is, the equivalent changes or modifications made by the people in accordance with the spirit revealed by this creation should still be covered by the scope of the patent of this creation. [Simple description of the diagram] Figure 1 shows a schematic diagram of the adapter of the conventional memory card. 11 M322580 Figure 2 shows another conventional US Patent No. US7152801. FIG. 3 is a schematic view showing a memory device according to an embodiment of the present invention. Fig. 4 is a schematic view showing the first memory card of an embodiment of the present invention. A front view of the memory card adapter of an embodiment of the present invention is shown. Figure 6 is a side elevational view of the memory card adapter of one embodiment of the present invention. FIG. 4 is a schematic view showing the assembly of a memory device according to an embodiment of the present invention. FIG. 8 is a schematic view showing the assembly of the memory device according to an embodiment of the present invention. Figure 9 is a perspective view of the memory card adapter and the first memory card in accordance with an embodiment of the present invention. Fig. 10 is a perspective view showing a memory card adapter and a first memory card according to another embodiment of the present invention. FIG. 11 is a flow chart showing the packaging of the memory card according to an embodiment of the present invention. FIG. 12 is a schematic view showing the plastic sealing of the memory card according to an embodiment of the present invention. Figures 13A and 13B show front views of an embodiment in accordance with the present invention. [Main component symbol description] 10 Adapter 12 accommodating space 14, 18 memory card 16, 20 USB port 埠 22 adapter sheath 100 first memory card 110 second memory card 200 substrate 12 M322580
300 USB連接埠 310 USB介面接點 320 導電接墊 330 記憶體 340 控制元件 350 被動元件 360 引線 400 記憶卡轉接器 500 上蓋 510 下蓋 520 殼體 600 佈線 610 外部導電接點 620 内部導電接點 630 槽口 700、710 崁溝 800 上模 810 支撐下模 820 灌孔 A、B 連接方向 S10 一基板上一端形成USB連接琿 S20 將記憶體、控制元件及被動元件設置於基板上 S30 記憶體、控制元件及被動元件電性連接至基板 S40 利用上模及一支撐下模進行一灌模程序分別將塑封體包 覆記憶體、控制元件、被動元件及基板 13300 USB port 埠310 USB interface contact 320 Conductor pad 330 Memory 340 Control element 350 Passive component 360 Lead 400 Memory card adapter 500 Upper cover 510 Lower cover 520 Housing 600 Wiring 610 External conductive contacts 620 Internal conductive contacts 630 notch 700, 710 800 800 800 upper die 810 support lower die 820 perforation A, B connection direction S10 one end of the substrate forms a USB connection 珲 S20 The memory, control components and passive components are placed on the substrate S30 memory, The control component and the passive component are electrically connected to the substrate S40. The molding process is performed by using the upper die and a supporting lower die to respectively cover the memory body, the control component, the passive component and the substrate 13 .