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  • 學位論文

簡易型群內光學偏芯檢查工具設計

Simple partial core group within the optical inspection tool design

指導教授 : 張益新
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摘要


這些年來DSC(數位相機)DSLR(數位單眼相機)光學產品在台灣越來越蓬渤發展,相對地要求的光學性能也遠較以往高,而在生產上對於光學性能影響最大的鏡頭單組內的群內偏芯,製造上群內偏芯的良否對於整體產品的良率影響相當大,因此在生產過程中是能否即時發現群內偏芯變化以提升產品良率,並能進一步修正錯誤是目前各家廠商急於突破的,但現今市面上相關於光學群內偏芯測定器皆相當昂貴並且體積龐大,而且要測出光學群內偏芯須花費不少時間,如此的測定器只適於設計研究使用,並不適用於須即時檢出不良的生產線使用。 本研究針對DSC(數位相機)DSLR(數位單眼相機)的鏡頭生產線所需而設計同時滿足下列條件: (1)能即時測定 (2)體積小及 (3)價格便宜 等三個目標皆能達成的前提之下來設計出簡易型的光學群內偏芯測定器,以突破目前產品生產上的困境,並且能確實的提供生產線的實際需求。

關鍵字

光學 檢測

並列摘要


Over the years more and more optical products in Taiwan, the types of products are more and more, relative to the optical performance requirements than ever before, so in the overall production process to enhance a number of requirements, and in the production the greatest impact for the optical properties of the lens single group within the core side, the manufacturing group within the core of the good side if the overall product yield a considerable impact, so whether in the production process can be found in real-time changes in the core group within the side in order to enhance product yields, and further amendments to the error is eager to break through various vendors, but in today's world of optical surface-related Partial core group within the detector are very expensive and bulky, but also to detect partial optical core group does not have to spend less time, so are only suitable for the determination of the design study, does not apply to be detected in non-performing real-time use of the production line. In this study, DSC (digital camera) DSLR (digital single-lens reflex cameras) is required for lens production line designed to meet the following conditions: (1) can be determined immediately (2) small size (3) cheap Able to achieve three goals down the premise of the optical design Simple partial core group determination, and to break the current plight of products and can provide the exact line of the actual demand.

並列關鍵字

design core inspection

參考文獻


[1]鈦思科技網站: http://www.terasoft.com.tw
[2]CANON網站: http://canon.jp.
[3]“光學元件精密製造與檢測”,財團法人國家實驗研究院儀器科研究中心,2007年。
[4]住田光學網站: http://www.sumita-opt.co.jp/ja.
[5]OHARA網站: http://www.ohara-inc.co.jp/jp/index.html

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