M341361 八、新型說明: 【新型所屬之技術領域】 一種無線通訊模組,特別指一種改良接地結構以提昇 天線模組收發信號接收效率的插卡式無線通訊模組。 【先前技術】 如圖1,其為先前技術之插卡式無線通訊模組1QQ,其 - 内部配置有一電路板11〇。此電路板1 ίο透過金屬接腳^ 11 - 與手持裝置的連接端接觸,使電路板lio與手持裝置之内 ® 建電路電性相接’形成内建電路之收發無線訊號的天線。 所適用之通訊類型包含有行動通訊(Global System forM341361 VIII. New Description: [New Technology Field] A wireless communication module, especially a plug-in wireless communication module that improves the grounding structure to improve the receiving and receiving signal efficiency of the antenna module. [Prior Art] As shown in Fig. 1, it is a plug-in type wireless communication module 1QQ of the prior art, which is internally provided with a circuit board 11A. The circuit board 1 ίο is in contact with the connection end of the handheld device through the metal pin, so that the circuit board lio is electrically connected to the built-in circuit of the handheld device to form an antenna for transmitting and receiving wireless signals of the built-in circuit. The applicable communication type includes mobile communication (Global System for
Mobi le Communication ; GSM)、編碼多重存取技術(CodeMobi le Communication ; GSM), coded multiple access technology (Code)
Division Multiple Access ; CDMA)、寬頻編碼多重存取技 術(Wide Code Division Multiple Access ; WCDMA),而 適用之頻率包含 GSM_900MHz、CDMA-800MHz、WCDMA-3GHz 等。 • 然先前技術具有無法避免之缺失,即插卡式無線通訊 模組在接收長波長之低頻無線訊號時,其接收效能大為下 降。蓋因插卡式無線通訊模組之配置電路板之内部空間有 •限,迫使電路板設計受限,導致收發訊號之天線長度與面 積十分狹小,進而使長波之無線訊號(如GSM9〇〇MHz、 CDMA800MHz)的收發效能難以提昇。 【新型内容】 有鑑於此,本創作所欲解決之問題係在於提供一種不 M341361 更動電路板之配置面積為前提,改善對 收效能_卡式無線通減組。 …之接 〜=決上述裝置問題,本創作所提供之技術手段係揭 路一種插卡式無線通訊模組,其包 與至少―麵板。 ^、―天線模組 此:線模組配置於殼體内,殼體之至少一表面開設有 開孔’至屬板固定於開孔並連接天線模組。 ^ 〗作所揭露之插卡式無線通訊模組,其更配置有一 包:於電路板周緣並貼合電路板與金屬板之間。金屬 板之材貝係選自於銅、鋼、崔呂、鐵以及錫所組成之群組。 射揭露之插卡式無線通簡組,其係插入一手 屬插槽,金屬插槽對應金屬板之一侧配置有至 少一壓紙全凰士 “蜀叛之金屬彈壓片,而手持裝置内建有一連接 金屬插槽之接地模組。 斤揭路之插卡式無線通訊模組,其係插入一手 持裝置之金千祕 $ 蜀播槽。手持裝置配置有一連接接地模組之金 屬抵合片’此金屬抵合片係抵合金屬板。 【實施方式】 為f對本創作之目的、構造特徵及其功能有進一步之 了解^配合相關實施例及圖式詳細說明如下: 狀:同日$參照圖2A與圖2B,其為本創作第一實施例之 衣置刀解不忍圖與結合示意圖。此插卡式無線通訊模組20Division Multiple Access; CDMA), Wide Code Division Multiple Access (WCDMA), and applicable frequencies include GSM_900MHz, CDMA-800MHz, WCDMA-3GHz, and so on. • However, the prior art has an unavoidable loss, that is, when the plug-in wireless communication module receives low-frequency wireless signals with long wavelengths, its receiving performance is greatly reduced. The internal space of the configuration board of the plug-in wireless communication module is limited, forcing the design of the circuit board to be limited, and the length and area of the antenna for transmitting and receiving signals are very narrow, thereby enabling long-wave wireless signals (such as GSM9〇〇MHz). CDMA800MHz) is difficult to improve the transmission and reception performance. [New content] In view of this, the problem to be solved by this creation is to provide a configuration that does not require the M341361 to move the board's configuration area, and improve the performance of the card-type wireless pass-down group. The connection between the above-mentioned devices and the technical means provided by this creation is a kind of plug-in wireless communication module, which is packaged with at least a panel. ^, "Antenna Module": The wire module is disposed in the casing, and at least one surface of the casing is provided with an opening ”, and the slab is fixed to the opening and connected to the antenna module. ^ 〗 The disclosed plug-in wireless communication module is further provided with a package: on the periphery of the circuit board and fit between the circuit board and the metal plate. The shell of the metal plate is selected from the group consisting of copper, steel, Cui Lu, iron and tin. The plug-in wireless type of the plug-in type is inserted into the slot of the one-handed one, and the metal slot is disposed on one side of the metal plate with at least one metal-pressing piece of the paper, and the built-in device is built-in. There is a grounding module connected to the metal slot. The plug-in wireless communication module of the Jin Jie Jie is inserted into the Jinqian secret slot of a handheld device. The handheld device is provided with a metal abutting piece connected to the grounding module. 'This metal-bonded sheet is bonded to the metal plate. [Embodiment] The purpose of this creation, the structural features and its functions are further understood. The details of the related embodiments and the drawings are as follows: Shape: Same day $ reference chart 2A and FIG. 2B , which is a schematic diagram of a clothing and a solution of the first embodiment of the present invention. The plug-in wireless communication module 20
^ ^JTL 金屬板23、一導電泡棉25與一天線模組 6 M341361 24 ° 此殼體包含有一第一外殼21a與一第二外殼22a,第 一外殼21a上開設有一穿孔,並固設金屬板23於穿孔中, 第二外殼22a係與第一外殼21a相接以形成容置空間,以 配置天線模組24於此容置空間。 導電泡棉25呈現L狀並配置於天線模組24周緣,並 • 貼合於天線模組24與金屬板23之間,以使天線模組24透 - 過導電泡棉25與金屬板23形成良好的接地,並擴大天線 _ 模組24的訊號接收面積,提昇天線模組24接收長波之無 線訊號之效能。如接收行動通訊技術(Global System for Mobile Communication ; GSM)使用的 900MHz 中長波訊號、 編碼多重存取技術(Code Division Multiple Access; CDMA)使用的800MHz的中長波訊號。同時適用寬頻編碼多 重存取技術(Wide Code Division Multiple Access; WCDMA) 所使用3GHz之短波訊號。 _ 請同時參照圖3A與圖3B,其為本創作第一實施例之 通訊模組與手持裝置結合圖與側視圖,請同時參照圖2A以 示了解。 插卡式無線通訊模組20係插入手持裝置之金屬插槽 3〇a中,金屬插槽3〇a具有複數個金屬連接線以連接手持 裝置之接地模組40。第二外殼22a之一端有一開口,天線 核組朝向開口的端面配置有複數個金屬接腳241,透過第 一外殼22a之開口使金屬接腳241與金屬連接端41相接, 7 M341361 令天線模組24連接手持裝置之接地模組4〇,以透過接地 40模組進行電磁疏導之接地作業。 金屬插槽30a對應第一外殼21a之一側配置有_個或 多個金屬彈壓片31,其係抵壓於第一外殼21a的金屬板 23。而金屬插槽30a係額外連接手持農置之接地模組, 使天線模組24透過導電泡棉25、第一外殼2ia之金屬板 • 23、金屬彈壓片31、金屬插槽30a連接至接地模組,以 • 確實產生接地效應,並透過金屬板23擴大天線模組24接 參 收長波訊號的面積’進而提昇無線訊號的接收效應。 請參照圖4 ’其為本創作第二實施例之結構示意圖。 其與第一實施例不同處在於,第一外殼21b並未開設穿 孔’而疋開设於殼體之第二外殼22b,且金屬板23固咬於 第二外殼22b之穿孔上,導電泡棉25配置於天線模組24 之周緣,並貼合於第二外殼22b與金屬板23之間。 明參照圖5,其為本創作第二實施例之通訊模、组與手 φ 持裝置結合側圖,請同時參照圖4以示了解。與第一實於 例不同處在於,手持裝置之金屬插槽3〇b並未配置金屬彈 壓片,而是在手持裝置對應第二外殼22b的部位上配置金 屬抵合片42。金屬抵合片42連接手持裝置之接地模組^^ 並抵合第二外殼22b之金屬板23上,使天線模組Μ透局 導電泡棉25、第二外殼22b之金屬板23、金屬抵合片^ 連接至接地模組4〇,確實產生接地效應。同時透過金屬板 23擴大天線模組24接收長波訊號的面積,進而提昇無線 8 M341361 訊號的收發效應。 請參照圖6,其為本創作第三實施例之結構示意圖。 其前述實施例不同處在於,殼體之第一外殼21a與第二外 殼22b皆開設有穿孔,且第一外殼21a之穿孔固設有一第 一金屬板231,第二外殼22b固設有一第二金屬板232。天 線模組24之周緣配置有二L型的導電泡棉25,其各自貼 - 合於第一金属板231與天線模組24、以及第二金屬板232 . 與天線模組24之間。 • 請參照圖7,其為本創作第三實施例之通訊模組與手 持裝置結合圖,請同時參照圖6以示了解。第三實施例與 前述之實施例不同處在於,手持裝置同時配置有金屬彈壓 片31與金屬抵合片42。如前述,金屬彈壓片31配置於金 屬插槽30b上,接地模組40則同時連接金屬插槽30a與金 屬抵合片42。金屬彈壓片31係抵壓第一金屬板231,金屬 抵合片42係抵壓第二金屬板232,故天線模組24透過導 • 電泡棉25、第二外殼22b之第二金屬板232、金屬抵合片 42連接至接地模組40 ;以及透過導電泡棉25、第一外殼 • 21a之第一金屬板231、金屬彈壓片31、金屬插槽30連接 * 至接地模組40,以確實產生接地效應,並透過兩金屬板擴 大天線模組24接收長波訊號的面積,進而提昇無線訊號的 接收效應。 雖然本創作以前述之較佳實施例揭露如上,然其並非 用以限定本創作,任何熟習相像技藝者,在不脫離本創作 M341361 之精神和範圍内,所作更動與潤飾之等效替換,仍為本創 作之專利保镬範圍内。 【圖式簡單說明】 圖1係習知技術之結構示意圖; 圖2A係本創作第一實施例之裝置分解示意圖; 圖2B係本創作第一實施例之裝置結合示意圖; • 圖3A係本創作第一實施例之通訊模組與手持裝置結合圖,· - 圖3B係本創作第一實施例之通訊模組插入插槽之侧視圖; _ 圖4係本創作第二實施例之結構示意圖; 圖5係本創作第二實施例之通訊模組插入插槽之侧視圖; 圖6係本創作第三實施例之結構示意圖;以及 圖7係本創作第三實施例之通訊模組插入插槽之側視圖。 【主要元件符號說明】 100 插卡式無線通訊模組 110 電路板 111 金屬接腳 20 插卡式無線通訊模組 21a、21b 第一外殼 22a、22b 第二外殼 23 金屬板 231 第一金屬板 232 第二金屬板 24 天線模組 M341361 241 金屬接腳 25 導電泡棉 30a、30b 金屬插槽 31 金屬彈壓片 40 接地模組 41 金屬連接端 42 金屬抵合片 11^ ^ JTL metal plate 23, a conductive foam 25 and an antenna module 6 M341361 24 ° The housing comprises a first outer casing 21a and a second outer casing 22a, a perforation is formed in the first outer casing 21a, and the metal is fixed The second outer casing 22a is connected to the first outer casing 21a to form an accommodating space for arranging the antenna module 24 in the accommodating space. The conductive foam 25 is L-shaped and disposed on the periphery of the antenna module 24, and is attached between the antenna module 24 and the metal plate 23, so that the antenna module 24 is formed through the conductive foam 25 and the metal plate 23. Good grounding and expansion of the signal receiving area of the antenna _ module 24 enhances the performance of the antenna module 24 for receiving long-wave wireless signals. For example, the 900MHz medium-long wave signal used by the Global System for Mobile Communication (GSM) and the 800MHz medium-long wave signal used by Code Division Multiple Access (CDMA). At the same time, the short-wave signal of 3GHz used by Wide Code Division Multiple Access (WCDMA) is applied. Referring to FIG. 3A and FIG. 3B simultaneously, it is a combination diagram and a side view of the communication module and the handheld device according to the first embodiment of the present invention. Please refer to FIG. 2A for details. The plug-in wireless communication module 20 is inserted into the metal slot 3〇a of the handheld device, and the metal slot 3〇a has a plurality of metal connecting wires to connect the grounding module 40 of the handheld device. One end of the second outer casing 22a has an opening, and the antenna core group is disposed with a plurality of metal pins 241 facing the opening end, and the metal pin 241 is connected to the metal connecting end 41 through the opening of the first outer casing 22a. 7 M341361 The group 24 is connected to the grounding module 4〇 of the handheld device for grounding of the electromagnetic conduction through the grounding 40 module. The metal slot 30a is provided with one or a plurality of metal elastic pieces 31 corresponding to one side of the first outer casing 21a, which is pressed against the metal plate 23 of the first outer casing 21a. The metal slot 30a is additionally connected to the grounding module of the handheld farm, so that the antenna module 24 is connected to the grounding mold through the conductive foam 25, the metal plate of the first outer casing 2ia, the metal elastic piece 31, and the metal socket 30a. In the group, the grounding effect is indeed generated, and the area of the long-wave signal received by the antenna module 24 is expanded through the metal plate 23 to further enhance the receiving effect of the wireless signal. Please refer to FIG. 4' which is a schematic structural view of the second embodiment of the present invention. The difference from the first embodiment is that the first outer casing 21b does not have a through hole and is opened in the second outer casing 22b of the casing, and the metal plate 23 is fixed on the perforation of the second outer casing 22b, and the conductive foam is 25 is disposed on the periphery of the antenna module 24 and is bonded between the second outer casing 22b and the metal plate 23. Referring to FIG. 5, it is a side view of the communication mode, the group and the hand holding device of the second embodiment of the present invention. Please refer to FIG. 4 for details. The difference from the first embodiment is that the metal socket 3b of the hand-held device is not provided with a metal elastic piece, but the metal abutting piece 42 is disposed at a portion of the hand-held device corresponding to the second outer casing 22b. The metal abutting piece 42 is connected to the grounding module of the handheld device and abuts against the metal plate 23 of the second outer casing 22b, so that the antenna module penetrates the conductive foam 25, the metal plate 23 of the second outer casing 22b, and the metal The splicing ^ is connected to the grounding module 4〇, which does have a grounding effect. At the same time, the antenna module 24 is enlarged by the metal plate 23 to receive the area of the long wave signal, thereby improving the transmission and reception effect of the wireless 8 M341361 signal. Please refer to FIG. 6, which is a schematic structural view of a third embodiment of the present invention. The difference between the foregoing embodiments is that the first outer casing 21a and the second outer casing 22b of the casing are provided with perforations, and the first outer casing 21a is fixed with a first metal plate 231, and the second outer casing 22b is fixed with a second metal casing 231. Metal plate 232. The outer circumference of the antenna module 24 is provided with two L-shaped conductive foams 25, which are respectively attached to the first metal plate 231 and the antenna module 24, and the second metal plate 232 and the antenna module 24. Please refer to FIG. 7 , which is a combination diagram of the communication module and the handheld device according to the third embodiment of the present invention. Please refer to FIG. 6 for understanding. The third embodiment differs from the foregoing embodiment in that the hand-held device is simultaneously provided with a metal elastic piece 31 and a metal abutting piece 42. As described above, the metal elastic piece 31 is disposed on the metal socket 30b, and the grounding module 40 is simultaneously connected to the metal socket 30a and the metal abutting piece 42. The metal elastic piece 31 is pressed against the first metal plate 231, and the metal abutting piece 42 is pressed against the second metal plate 232. Therefore, the antenna module 24 passes through the conductive foam 25 and the second metal plate 232 of the second outer casing 22b. The metal abutting piece 42 is connected to the grounding module 40; and is connected to the grounding module 40 through the conductive foam 25, the first metal plate 231 of the first outer casing 21a, the metal elastic piece 31, and the metal slot 30 to The grounding effect is indeed generated, and the area of the long wave signal is amplified by the antenna module 24 through the two metal plates, thereby improving the receiving effect of the wireless signal. Although the present invention has been disclosed in the foregoing preferred embodiments, it is not intended to limit the present invention, and any skilled person skilled in the art can make equivalent substitutions of the modifiers and retouchings without departing from the spirit and scope of the present invention M341361. This is the scope of patent protection for this creation. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic structural view of a prior art; FIG. 2A is an exploded view of the apparatus of the first embodiment of the present invention; FIG. 2B is a schematic diagram of a combination of the apparatus of the first embodiment of the present invention; The communication module of the first embodiment is combined with the handheld device, and FIG. 3B is a side view of the communication module insertion slot of the first embodiment of the present invention; FIG. 4 is a schematic structural view of the second embodiment of the present invention; Figure 5 is a side view of the communication module insertion slot of the second embodiment of the present invention; Figure 6 is a schematic structural view of the third embodiment of the present invention; and Figure 7 is a communication module insertion slot of the third embodiment of the present invention. Side view. [Main component symbol description] 100 plug-in wireless communication module 110 circuit board 111 metal pin 20 plug-in wireless communication module 21a, 21b first outer casing 22a, 22b second outer casing 23 metal plate 231 first metal plate 232 Second metal plate 24 Antenna module M341361 241 Metal pin 25 Conductive foam 30a, 30b Metal slot 31 Metal spring piece 40 Grounding module 41 Metal connection end 42 Metal abutment piece 11