M343203 八、新型說明: 【新型所屬之技術領域】 本新型係有關一種無線控制裝置,特別是 池之無線控制裝置。 兄电 【先前技術】 目刚’-般無線控㈣置如無線滑鼠與收發器,发 月匕夠在滑鼠與收發哭夕pq、隹 /、 嗌為之間進仃無線訊號之傳送,使得連 =器之電腦系統的游標得以受到無線滑鼠之控 之雷卿收=接於電腦系統,用以取得電腦系統 ° /、W /、本身不需裝設電池。但是盔綠、、晋s 缺少實體線路或連接介面與供電體連接,所:;:二 電池於滑鼠内部,用以供應滑鼠本身之用電。又 然而’由於無線滑鼠必須在滑鼠 ::滑鼠除了自身重量以外更多了電池之重量二: :者而言操作滑鼠將更費力,並且滑鼠還需 電池或充電以防止電量乾全 ’ 奐 於使用者Μ更是不便使用之情形,所以對 卜☆非使用充電電池’則定期必須更換之電、、也 將造成使料”上 ㈣之电池 生嚴重之環保問題。 汰換後之電池亦將產 【新型内容】 為了解決上述先前技術之問題 線控制裝置,以解決#义 孓扣出一種採 先則技術所存在重量大不便於使 M343203 用、必須定期更換電池以及汰換後之電池容易造成污染 等問題。 根據本新型貫施例,_種無線控制裝置包括一無線 控制器與一訊號收發器。 無線控制器包括一感測單元、一控制單元、一無線 射V員极、,且14供電單兀。感測單元用以感測無線控制器 私=以據以輪出—移動訊號。控制單元用以提供使 用者f人至少—㈣職。無線射頻模㈣f性連接於 fit與㈣單元,以將移動訊號或控制職轉換為 ^ 卞之$ —無線射頻訊號傳送。供電單元電性連接 於热線射頻模组,接收第二 並回應第二無線射頻訊號以…:,、線射頻訊號, 器。 、化產生包此以驅動無線控制 成唬收發器包括一無線射頻模組 線射頻模組用以接收第一頻率之第‘::面。-發射第二頻率之第始私* …、線射頻訊號或 訊號轉換為一數位;:連::#ϋ ’並將第-無線射頻 杈組,用以將數位訊號傳遞至一系統。’,,、線射頻 綜上所述’藉由本新型之技術手 可利用無線射頻技術以及加人供電圣、、心制叙置 中,使得無線控制裝置可以透 热線控制器 f,達到無線供電之效果,因此無線=訊嶋 石又一般電池,可以降佤旁s 、, °不舄要再裝 低重置,亚且能夠減少廢棄電池, M343203 避免發生污染問題。 有關本新型的特徵與實作, 例詳細說明如下。 _ σ圖不作彔佳實施 【實施方式】 器的:第圖;圖為7,—實施例勒 乐圖」所不,-種無線控制器100 無線射頻模 包括-感測單元102、一控制單元ιοι 組103與一供電單元1〇4。 制單=«請終_糊單元102與控 組103。早70104係電性連接於無線射頻模 於以!感!!單元1G2用以感測無線控制器_之移動,以 移動訊號’例如用光學感測器感測反射光之 交化以對無線控制器進行定位而得到位移資料,其包括 :向:速度資料。控制單元101則用以提供使用者輸入 >一控制訊號,例如按壓控制按鍵以輸入一控制指令 之封包資料。無線射頻模組1G3用以將移動訊號或㈣ 訊號轉換為第一頻率之第一無線射頻訊號傳送。供電單 =0:用以接收第二頻率之第二無線射頻訊號,並回應 第二無線射頻訊號而產生電能以驅動無線控制器H 在此,第一頻率可選擇性地選用33KHz。第二頻率 可選擇性地選用15GKHz,然其僅為示例性說明,並^ 用以限定本新型之實施態樣。 M343203M343203 VIII. New description: [New technical field] The present invention relates to a wireless control device, in particular to a wireless control device of a pool. Brother [previous technology] Vision just---wireless control (four) set up like a wireless mouse and transceiver, the moon is enough to send and receive wireless signals between the mouse and the crying and receiving pq, 隹 /, 嗌The cursor of the computer system of the connected device can be controlled by the wireless mouse. It is connected to the computer system to obtain the computer system ° /, W /, and does not need to install the battery itself. However, the helmet green, the Jin s lacks the physical circuit or the connection interface is connected with the power supply body. The battery is used inside the mouse to supply the power of the mouse itself. Again, 'Because the wireless mouse must be in the mouse:: The mouse has more weight than the battery in addition to its own weight two: : It is more laborious to operate the mouse, and the mouse needs battery or charge to prevent the battery from drying up. All of them are inconvenient to use, so the battery that has to be replaced regularly will not be replaced by the battery, which will cause serious environmental problems after the battery is replaced. The battery will also be produced [new content] In order to solve the above-mentioned problems of the prior art line control device, to solve the problem of the use of the first technology, the weight of the technology is large, the M343203 is used, the battery must be replaced regularly, and the battery is replaced. The battery is prone to cause pollution, etc. According to the present invention, the wireless control device includes a wireless controller and a signal transceiver. The wireless controller includes a sensing unit, a control unit, and a wireless radio V-pole. , and 14 power supply unit. The sensing unit is used to sense the wireless controller private = to take the wheel - the mobile signal. The control unit is used to provide the user f person at least - (four) The wireless RF module (4) is connected to the fit and (4) units to convert the mobile signal or control unit into a wireless signal transmission. The power supply unit is electrically connected to the hot line RF module, receives the second and responds to the first The second radio frequency signal is used to receive the first frequency of the first frequency by the ...:, the line RF signal, the device generates the package to drive the wireless control into the transceiver. - Transmitting the first frequency of the second frequency ..., the line RF signal or signal is converted to a digit;: even:: #ϋ ' and the first - radio frequency group to transmit the digital signal to a system.' , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , The effect, therefore, wireless = signal stone and general battery, you can lower the side s, ° ° not to install a low reset, and can reduce the waste battery, M343203 to avoid pollution problems. For example, the details are as follows: _ σ diagram is not a good implementation [Embodiment] The device: the figure; the figure is 7, the embodiment of the music diagram", the wireless controller 100 wireless radio frequency module includes - sense The measuring unit 102, a control unit ιοι group 103 and a power supply unit 1〇4. The order form = «Please end the paste unit 102 and the control group 103. Early 70104 is electrically connected to the wireless RF model! Sense!! Unit 1G2 is used to sense the movement of the wireless controller _ to move the signal 'for example, the optical sensor senses the intersection of the reflected light to locate the wireless controller to obtain the displacement data, which includes: Speed data. The control unit 101 is configured to provide a user input > a control signal, such as pressing a control button to input a packet of control information. The radio frequency module 1G3 is configured to convert the mobile signal or the (4) signal into the first radio frequency signal of the first frequency. Power supply list =0: used to receive the second wireless RF signal of the second frequency, and generate power according to the second wireless RF signal to drive the wireless controller H. Here, the first frequency can be selectively selected from 33KHz. The second frequency is optionally 15GKHz, which is merely illustrative and is used to define embodiments of the present invention. M343203
請參照「第2圖」,為本新型一 的無線射頻模組方塊圖9 貫施例之無線控制 如「第2圖」所示,其中,無線控制器ι〇〇之無線 射頻模組103更包括一數位訊號處理單元丨〇8、一數位 類比轉換單元1〇7、一類比訊號處理單元1〇6與一天線 數位訊號處理單元108係電性連接於感測單元ι〇2 與控制單元101。數位類比轉換單元1〇7係電性連接於 數位讯號處理單元丨〇8。類比訊號處理單元1 係電性 連接於數位類比轉換單元107。最後,天線1〇5係電性 連接於類比訊號處理單元106。 ^數位訊號處理單元1〇8用以接收移動訊號或控制 訊號並產生數位訊號。由於要經由天線發送,所以必須 用數位類比轉換單元107將數位訊號轉換為類比訊 號。再以類比訊號處理單元106調變此類比訊號,使其 戒加長傳輸之距離。最後由天線1〇5接收調變後之類比 訊號並產生第一頻率之第一無線射頻訊號,再發送出 去0 4苓照「第3圖」,為本新型一實施例之訊號收發 為的方塊圖,訊號收發器200用以與無線控制器1〇〇相 互搭配以作為一反應端。 如「第3圖」所示,一種訊號收發器2〇〇包括一無 線射頻模組201與一連接介面202,例如USB介面或 M343203 PS/2介面等。 無線射頻模組201係電性連接於連接介面2〇2。 無線射頻模組201用以接收第—頻率之第一益鋳 射頻訊號或發射第二頻率之第二無線射頻訊號,並將第 一無線射頻訊號轉換為數位訊號。而連接介面搬用以 ,將數位訊號傳遞至―系統,用以控制系統之視窗操作, • 例如控制系統游標等。 _ 請參照「第4圖」,為本新型—實施例之訊號收發 器的無線射頻模組方塊圖,與前—個實施例大致相同, 其呈別在於本實施例包含有—類比數位轉換單元撕。 如第4圖」所示,其中,訊號收發器200之無線 射頻模組201更包括一數位訊號處理單元應、一類比 數位轉換單兀2〇5、一類比訊號處理單元_與一天線 數位訊號處理單元係電性連接於連接介面 搬。/比數位轉換单元2()5係電性連接於數位訊號處 理單兀2G6 °類比訊號處理單元係電性連接於類比 數=換,元2G5。最後,天線2Q3係電性連接於類比 ㈣:士一2〇3心接收第一頻率之第-無線射頻訊號 h射弟二頻率之第二無線射頻訊號。類比訊號處理單 一 > w用以將第一热線射頻訊號轉換為類比訊號,增強 八〜強度^比數位轉換單元205帛以將類比訊號轉 9 M343203 換為數位訊號’以消除雜訊等。而數位訊號處理單元 2〇6則用以處理此數位訊號,以供數位系統接收,並將 其傳遞至連接介面2〇2,再輸入至—電腦系統以控制其 操作。 根據本新型一實施例,無線控制器i⑽可為一無線 π既而5孔號收發器200可為一無線滑鼠收發器。如「第 .5圖」與「第6圖」所示,為本新型—實施例之使用示 _ 意圖。 、/、中,…、線控制器100為一無線滑鼠,訊號收發器 200為一無線滑鼠收發器。訊號收發器2⑻可透過連接 介面202與一電腦系統300電性連接,並且發送第二頻 率之第二無線射頻訊號至無線控制器1〇〇,無線控制器 100之供電單7〇 104接收到第二無線射頻訊號將產生相 對應之一感應電能以驅動無線控制器1〇〇,然後無線控 制器100經由使用者操作後便發送第一無線射頻訊號 1至訊號收發器200以控制電腦系統3〇〇。在此,供電單 •元丨⑽可選擇性地選用電感線圈。 ‘ 练上所述,藉由本新型之技術手段,無線控制裝置 可利用無線射頻技術以及加入供電單元1〇4至無線控 制器100中,使得訊號收發器200可以透過無線射頻= 號傳遞能量,達到無線供電之效果,因此無線控制器 100不需要再裝設一般電池,可以降低重量,並且能夠 減少廢棄電池,避免發生污染問題。 M343203 非用例揭露如上,然其並 新型之精神和範圍内,當像技勢者,在不脫離本 本新型之專利保護範;二4之更動與潤飾,因此 範圍所界定者為準。㈣書所附之申請專利 【圖式簡單說明】 ΐ 本施例之無線控制11的方塊圖; 模組方塊^、、本新型—實施例之無線控制器的無線射頻 f 3圖係為本新型—實施例之訊號收發器的方塊圖; 第4圖係為本新型—實施例之訊號收發 模組方塊圖; …、、、表射頰 ^)圖係為本新型一實施例之使用示意圖;以及 第6圖係為本新型一實施例之使用示意圖。 【主要元件符號說明】 101 102 103 104 105 106 107 100 無線控制器 控制單元 感測單元 恶線射頻模組 供電單元 天線 類比訊號處理單元 數位類比轉換單元 11 M343203 108 數位訊號處理單元 200 訊號收發器 201 無線射頻模組 202 連接介面 203 天線 204 類比訊號處理單元 .205 類比數位轉換單元 ^ 206 數位訊號處理單元 ® 300 電腦糸統Please refer to "Figure 2" for the wireless RF module of the new type. Figure 9 shows the wireless control of the example. The wireless controller module of the wireless controller ι〇〇 is shown in Figure 2. The system includes a digital signal processing unit 丨〇8, a digital analog conversion unit 〇7, an analog signal processing unit 1-6, and an antenna digital signal processing unit 108 electrically connected to the sensing unit ι2 and the control unit 101. . The digital analog conversion unit 1〇7 is electrically connected to the digital signal processing unit 丨〇8. The analog signal processing unit 1 is electrically connected to the digital analog conversion unit 107. Finally, the antenna 1〇5 is electrically connected to the analog signal processing unit 106. The digital signal processing unit 1 8 is for receiving a mobile signal or a control signal and generating a digital signal. Since it is to be transmitted via the antenna, the digital analog conversion unit 107 must be used to convert the digital signal into an analog signal. The analog signal processing unit 106 then modulates the analog signal to lengthen the transmission distance. Finally, the modulated analog signal is received by the antenna 1〇5 and the first radio frequency signal of the first frequency is generated, and then transmitted to the “Fig. 3”, which is a block for transmitting and receiving signals according to an embodiment of the present invention. The signal transceiver 200 is used to interact with the wireless controller 1 as a reactive terminal. As shown in Fig. 3, a signal transceiver 2 includes a wireless RF module 201 and a connection interface 202, such as a USB interface or a M343203 PS/2 interface. The radio frequency module 201 is electrically connected to the connection interface 2〇2. The radio frequency module 201 is configured to receive the first frequency RF signal of the first frequency or the second radio frequency signal of the second frequency, and convert the first radio frequency signal into a digital signal. The connection interface is used to transfer the digital signal to the "system" to control the window operation of the system, such as controlling the system cursor. _Please refer to FIG. 4, which is a block diagram of a radio frequency module of the signal transceiver of the present invention, which is substantially the same as the previous embodiment. The present embodiment includes an analog-to-digital conversion unit. tear. As shown in FIG. 4, the radio frequency module 201 of the signal transceiver 200 further includes a digital signal processing unit, an analog-to-digital conversion unit 2〇5, an analog signal processing unit _ and an antenna digital signal. The processing unit is electrically connected to the connection interface. / than the digital conversion unit 2 () 5 is electrically connected to the digital signal processing unit 2G6 ° analog signal processing unit is electrically connected to the analogy = change, element 2G5. Finally, the antenna 2Q3 is electrically connected to the analogy (4): the first radio frequency signal of the second frequency is received by the second radio frequency signal of the second frequency. The analog signal processing unit > w is used to convert the first hot line RF signal into an analog signal, and the enhanced eight-intensity ratio digital conversion unit 205 is configured to convert the analog signal to 9 M343203 into a digital signal to eliminate noise. The digital signal processing unit 2〇6 is used to process the digital signal for the digital system to receive and transmit it to the connection interface 2〇2, and then to the computer system to control its operation. According to an embodiment of the present invention, the wireless controller i (10) may be a wireless π and the 5-hole transceiver 200 may be a wireless mouse transceiver. As shown in "Fig. 5" and "Fig. 6", the present invention is intended to be used. The /, medium, ..., line controller 100 is a wireless mouse, and the signal transceiver 200 is a wireless mouse transceiver. The signal transceiver 2 (8) can be electrically connected to a computer system 300 through the connection interface 202, and send the second wireless RF signal of the second frequency to the wireless controller 1 , and the power supply unit 7〇104 of the wireless controller 100 receives the first The second radio frequency signal will generate a corresponding one of the inductive powers to drive the wireless controller 1〇〇, and then the wireless controller 100 transmits the first radio frequency signal 1 to the signal transceiver 200 to control the computer system via the user operation. Hey. Here, the power supply unit (10) can optionally use an inductor coil. According to the technical means of the present invention, the wireless control device can utilize the radio frequency technology and join the power supply unit 1-4 to the wireless controller 100, so that the signal transceiver 200 can transmit energy through the radio frequency = number. The effect of wireless power supply, therefore, the wireless controller 100 does not need to install a general battery, can reduce the weight, and can reduce the waste battery to avoid pollution problems. M343203 Non-use cases are as disclosed above, but within the spirit and scope of the new type, when it is like a technical person, it does not deviate from the patent protection model of this new type; the change and refinement of the second and fourth, therefore, the scope is defined. (4) Patent application attached to the book [Simple description of the drawing] 块 Block diagram of the wireless control 11 of the present embodiment; Module block ^, The wireless RF f 3 diagram of the wireless controller of the present invention is an - block diagram of the signal transceiver of the embodiment; FIG. 4 is a block diagram of the signal transceiving module of the present invention - the embodiment; the diagram of the ..., and the buccal image is a schematic diagram of the use of the present invention; And Figure 6 is a schematic view showing the use of an embodiment of the present invention. [Main component symbol description] 101 102 103 104 105 106 107 100 Wireless controller control unit Sensing unit Bad line RF module Power supply unit Antenna analog signal processing unit Digital analog conversion unit 11 M343203 108 Digital signal processing unit 200 Signal transceiver 201 Radio Frequency Module 202 Connection Interface 203 Antenna 204 Analog Signal Processing Unit. 205 Analog Digital Conversion Unit ^ 206 Digital Signal Processing Unit ® 300 Computer System
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