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另外網站面板破裂- 優惠推薦- 2023年1月| 蝦皮購物台灣也說明:【新生手機快修】OPPO Reno5 5G CPH2145 液晶螢幕總成玻璃破裂觸控面板摔壞碎裂 ... LG樂金42LN5700-DC 液晶電視顯示器面板破裂零件拆賣有腳架主機板電源板邏輯板各 ...

國立清華大學 工業工程與工程管理學系工程碩士在職專班 蘇朝墩所指導 劉彥麟的 應用六標準差於中小型尺寸TFTLCD面板強度之改善 (2008),提出液晶電視面板破裂原因關鍵因素是什麼,來自於液晶顯示面板、彎曲強度、六標準差、反應曲面法。

最後網站修比買貴!液晶電視買8千面板破修1萬 糾紛 TVBS新聞網則補充:高雄一位李先生,他在3C賣場用8千多元,買了一台32吋液晶電視,當場沒有測試就用機車載回家,結果開封後發現面板裂開,業者推說,是李先生運送過程 ...

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應用六標準差於中小型尺寸TFTLCD面板強度之改善

為了解決液晶電視面板破裂原因的問題,作者劉彥麟 這樣論述:

液晶顯示面板(LCD)是目前手機最主要的元件,面板的功能在於顯示,讓手機資訊明確傳達給使用者,在目前多功能手機的世代,是最重要的溝通界面。目前的LCD主體是由玻璃基板所組成,內部有金屬線路、絕緣層、彩色濾光片(Color filter)、液晶(Liquid Crystal)等重要元件,另外加上有偏光片、驅動IC、背光模組、鐵框等元件組成LCD模組(LCM)。由於手機面板在市場上的產品生命週期,遠比液晶電視用面板來的短,為了吸引客戶,手機的設計必需多樣且多變,故朝向輕、薄、小等方向設計,這也導致LCD玻璃要愈做愈薄,例如從早期的1.1mm厚度到現今主流的0.3mm及0.2mm厚度。因手機在使用

上經常會不小心掉落或因為太薄放在口袋時壓到而造成破裂,故從0.4mm厚度的產品開始,客戶會開始要求玻璃的強度品質。由於上述原因手機變得薄、小且形狀特殊,導致在手機機構設計上有許多的限制,尤其在機構保護LCD的能力上變得很薄弱,不僅於此,LCD的厚度被要求的更薄,而螢幕尺寸設計愈來愈大,從早期1.5”~1.8”到現今2”~3.5”,造成薄化的LCD產品在強度上面臨極大的挑戰。本研究以某中小型TFT LCD面板廠為例,在市場景氣面臨巨變的環境之下,個案公司運用六標準差DMAIC的方法,企圖改善LCD彎曲強度,從傾聽客戶聲音並結合公司策略開始,進行各項實驗以及應用統計方法分析,找出重要影響因子並進行

優化與控制,最後,監控指標的改善成效以及評估整體的效益。Liquid Crystal Display, LCD, is the major component of a mobile phone and serves to display information to end users for operation instructions. It is the most important interface in the age of multi-functional mobile phone. It is mainly made of glass with other component

s, such as layout of metal, insulating layer, color filter, and liquid crystal. LCD module, LCM, consists of LCD, polarize, IC driver, back light module, housing, etc. Because the product life of mobile LCD is shorter than that of TV LCD, the design of mobile phone has been innovated with more varie

ty in order to attract more users. New mobiles are lighter, thinner, and smaller.LCD thickness has been thinned out from 1.1 mm to the current 0.2 mm and 0.3 mm. Thin glass LCD of mobile phone breaks easily when dropped and bent due to incautious usage. Therefore, mobile phone manufacturers begin t

o demand more LCD strength for 0.4 mm LCD. There are a number of limits in machinery design because mobile becomes smaller and thinner, whose design would inevitably weaken LCD protection. Besides, LCD screen has become bigger in the present design, with screen sizes from 1.5” ~ 1/8” to the current

2”~3.5” . In view of these factors, thin LCD product designs confronts huge challenges in LCD strength.This case study discusses how a small and medium-sized TFT LCD manufacturer sought to improve LCD bending strength by applying Six Sigma when facing economic recession. They started from redefining

company strategies, listening to customers, determining critical quality, making experiments, applying statistical analysis, finding main effect factors to optimization by response surface method. Finally, controlling critical quality and confirming benefit of total cost.