200905353 九、發明說明: 【發明所屬之技術領域】’ ' 本發明係關於一種全效式數位相機模組,尤其係於— 使用望遠鏡鏡頭、觀景窗與數位相機鏡頭搭配,可同颧略& 像並儲存的數位相機鏡頭模組。 規貝衫 【先前技術】 隨著數位技術之不斷發展,數位相機以被 ’ c_ai Proce—^ 此頒者提南、圖像處理技術迅速發展,行動電爷、 裝置均已具有很高的數位圖像處理能力,且盆之以 ^ « CPU(Ce„tral ί 3)性能顯著提高、圖像處理技術 ^^ 之攝取影像能力_得取&。 道驗相Α拉組 ^知,位相機模組如第一圖,主要包括 收裝置40、及印刷電路板50。i中、,透If 3。紅外濾光片2〇可濾除紅外線 艮ς有,的 ί果較佳。光接收裝置40將通過红外黄光’使成像 理。該習知數位相機模組中 ^ ^讯遽進行處 倍率有限,使得此相機模組血法攝^ =取影像變焦 物體之倍率放大有進^1;=二卜,望遠鏡鏡頭,可提高遠處 轉或快轉來欣賞之全5 f影像儲存放大、縮小、倒 【發明内容】 ' 式數位相機與數位攝影機模組。 盘*“本Ϊ明之目的在於提供-種外接望if铲h ‘ 與數位m彡機,可提高 ㈣之數位相機 以上,可攝取遠距離影像:巧率為5倍,1〇倍或20倍 办像進订親貧且同步將影像錯存放大、縮 200905353 小、倒轉或快轉來欣賞之全效式數位相機鱼 為了實現本發明之目的,本發明提供1蘇=攝衫機模組。 ==影機模組,包括全效式數位相機模:=;= 先接收裝置,其巾,全效式數位相娜 ^㉟換塊及 有限,使 取 式數位相機模組,利用全效式數位 ^ 發明全效 ,成攝取遠距離影像之全效式触相機,從而 【實施方式】 ' 頭模===式鏡鏡 5、觀景窗模塊6。 尤接收衣置3及印刷電路板 堃、土鏡鏡組11及望遠鏡铲饩η ,鏡叙組η位於望遠鏡鏡筒 =同丄2。 =鏡頭模塊2包減蝴綠㈣、數= 先片23。數位相機鏡組21 t l及遽 球面透鏡組,藉此可減少偷如ϋ相機鏡同22内’其為非 來減少全效式數位相機模0抑、1极塊2内鏡片的數量, ,御之右側,可遽位:;位 效_佳。觀景窗模塊6包 二=見先牙透,使成像 61位於觀景窗模塊6内,並★二及分光鏡62。反射鏡 位於望遠鏡鏡筒12及:位相蕊==;:= 光接收裝置3及印刷雷敌姑ς Α 士之間”為45刀光叙。 頭模塊2内紅外濾光片23 工至右排列在數位相機鏡 !】、數位相機鏡組21及红則’=光線經由望遠鏡鏡組 卜’慮光片23後匯聚於光接收裝置3 200905353 CCD(C一 c一二^ :飞巧 J5 體)傳5 裝置3及印刷電路板5之間電σ為件)傳感為。光接收 至分=2 光f經望遠鏡鏡組11搁取後入射 由反射鏡6】反身it/窗!^:道入射至觀景窗模塊6經 鏡詛21,入射朵靖έ-士把進仃硯貝,另一這入射至數位相機 紅外線通過,從而避免正常拍摄=光片’ “可阻止入射光之 藉此保證圖像色彩在還原時較準確’ 射至光接收裝置3上,弁接你捉慮先片23之光線入 為電訊號,經印刷電路板處理睛:i==訊號轉換 存。使用者可在全效式炒请赵仏r f硯厅、®所規員到之影像儲 步將影像之數位_4$彳方影像並同 之數位相機細_彡機,;=遠鏡鏡頭 欣賞。 將儲存之衫像放大、縮小、倒轉或快轉來 另,本發明全效式數位相機模组旦 f不僅褐限於使用分光鏡62,亦可使用反上ϋ分光裝 哀置,此反射鏡63位於望遠镑f A 、,見63作為分光 間,其為—可受機椹兄叙同12及數位相機鏡筒22之 當反射鏡63受控制運動至到運度之反射鏡。使用時, 鏡組η齡後人=離景物之光線經望遠鏡 經由及射浐^ c丨至反射叙63,使光線射入至觀景汽槿掄& 射鏡軸賞齡_m。'當反 擷取後入射至數位相機鏡=離遠鏡鏡組η 片’其可m止人射叙&外^ 3為—紅外域止濾光 丁九之二外線通過,從㈣免正常拍攝時因紅 200905353 產生噪點’藉此保證圖像色 過肩先片23之光線人射至光接收裝 ^戰準確。牙 ,欠到之光訊號轉換為電訊號,經印刷以置3可 不物^影像儲存(請參閱細圖)。 电路板處理將遠距離 綜上所述,本發明符合發明專 申請。惟,以上所述者僅為本發日 提出專f 圍亚不以上述實闕為限,舉孰 ^例,本發明之犯 明專利之精神所作之等效修飾或變ί人士援依本發 利範圍内。 又匕S應涵盍於以下申請專 【圖式簡單說明】 ί:Ξίϊί數位相機模組之結構示意圖。 本發示 ΐ:。 【?要==】效式數位相機模組= 1 望遠鏡鏡組 11 12 數位相機鏡頭模塊 2 21 數位相機鏡筒 22 23 光接收裝置 3 4 印刷電路板 5 6 反射鏡 61 62 反射鏡 63 望遠鏡鏡頭模塊 望返鏡鏡筒 數位相機鏡組 紅外濾光片 全效式數位相機模塊 觀景窗模塊 Α 分光鏡200905353 IX. INSTRUCTIONS: [Technical field of invention] '' The present invention relates to a full-effect digital camera module, in particular, using a telescope lens, a viewing window and a digital camera lens, which can be similar to &; Digital camera lens module like and stored.规贝衫 [Previous technology] With the continuous development of digital technology, digital cameras have been rapidly developed by 'c_ai Proce-^, and the image processing technology has developed rapidly. The mobile phone and device have high digital bitmaps. Like the processing power, and the pot is ^ ^ CPU (Ce„tral ί 3) performance is significantly improved, image processing technology ^ ^ image capture ability _ get taken & 验 Α phase Α pull group ^ know, bit camera model As shown in the first figure, the group mainly includes the receiving device 40 and the printed circuit board 50. In the middle, the transparent filter 3 can filter out the infrared rays, and the light receiving device 40 is preferred. The image will be imaged by infrared yellow light. In the conventional digital camera module, the magnification of the ^ ^ 遽 有限 有限 , , , , , , , , 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此 此Second, the telescope lens can improve the distance or fast turn to enjoy the full 5 f image storage to enlarge, reduce, and down [invention] 'type digital camera and digital camera module. Disk * "The purpose of this is to provide - Kind of external contact if shovel h ' with digital m , machine, can be improved (four) Above the digital camera, you can capture long-distance images: 5 times, 1〇 or 20 times, you can order the pro-poor and sync the image to the wrong size, shrink 200905353 small, reverse or fast turn to enjoy the full effect Digital Camera Fish In order to achieve the object of the present invention, the present invention provides a 1 Su = camera system module. == Camera module, including full-effect digital camera module: =; = first receiving device, its towel, full-effect digital phase ^35 replacement block and limited, enabling digital camera module, using full-effect Digital ^ Invented full effect, into a full-effect touch camera that captures long-distance images, thus [Embodiment] 'Head mode === type mirror 5, view window module 6. In particular, the receiving device 3 and the printed circuit board 堃, the soil mirror group 11 and the telescope shovel η, the mirror group η is located in the telescope tube = the same 丄 2. = Lens module 2 package minus butterfly green (four), number = first film 23. The digital camera lens set 21 tl and the spherical lens group can reduce the number of lenses in the full-effect digital camera module 0 and the 1-pole block 2 by reducing the camera lens. On the right side, it can be 遽 position:; The viewing window module 6 packs two = see the first tooth, so that the imaging 61 is located in the viewing window module 6, and the second and the beam splitter 62. The mirror is located at the telescope lens barrel 12 and: the phase phase core ==;:= between the light receiving device 3 and the printing mine and the aunt ” ” ” is 45 knives. The infrared filter 23 in the head module 2 is arranged to the right. In the digital camera mirror!], the digital camera lens group 21 and the red color '= light through the telescope mirror group 'the light-receiving sheet 23 and then gathered in the light receiving device 3 200905353 CCD (C-c one two ^: Feiqiao J5 body) Pass 5 device 3 and printed circuit board 5 between the electric σ is a sensor. The light is received to the sub=2 light f is taken by the telescope mirror 11 and then incident by the mirror 6] reflexive it/window! ^: It is incident on the viewing window module 6 through the mirror 诅 21, and the incident έ έ έ 士 士 , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , 数 数 数To ensure that the color of the image is more accurate when it is restored, it is sent to the light receiving device 3, and the light of the first piece 23 is taken into the electrical signal, and the printed circuit board processes the eye: i==signal conversion. Users can use the full-featured speculation Zhao Zhao rf砚 hall, the image of the controller to store the image of the digital image _4$ square image and the same digital camera _ machine,; = far lens lens appreciation . The full-size digital camera module of the present invention is not limited to the use of the beam splitter 62, but can also be used with the anti-upper beam splitting device. The mirror 63 can be enlarged, reduced, inverted, or fast-turned. Located in the telephoto pound f A , see 63 as the splitting room, which is the mirror that can be controlled by the camera 12 and the digital camera barrel 22 when the mirror 63 is controlled to the degree of motion. When in use, the mirror group η age-old person = the light from the scene through the telescope through the shot ^ c丨 to the reflection of the Syrian 63, so that the light is injected into the viewing car & the mirror axis age _m. 'When the anti-pick is taken, it is incident on the digital camera lens = η piece from the far-mirror lens group'. It can be stopped by the human eye and the outer ^ 3 is - the infrared field stops the filter Ding Jiuzhi 2 outside line, from (four) free normal When shooting, red 200905353 produces noise 'to ensure that the image color is over the shoulder first film 23 and the light is shot to the light receiving device. Tooth, the light signal owed to it is converted into a signal signal, and it can be set by printing to save the image (see the detailed picture). The board processing will be remotely described. The present invention is in accordance with the invention application. However, the above is only for the purpose of this issue. It is not limited to the above-mentioned facts. The equivalent modification or modification of the spirit of the patent of the present invention is based on this issue. Within the scope of profit. Also, 匕S should cover the following application. [Simplified illustration] ί:Ξίϊί The structure of the digital camera module. This presentation ΐ:. [? want ==] effect digital camera module = 1 telescope lens group 11 12 digital camera lens module 2 21 digital camera lens barrel 22 23 light receiving device 3 4 printed circuit board 5 6 mirror 61 62 mirror 63 telescope lens Module lookback mirror tube digital camera lens set infrared filter full-effect digital camera module viewing window module Α spectroscope