標題: 可設定式雙模低失真類比數位轉換器
Configurable Dual-mode Low-distortion A/D Converter
作者: 林明澤
Ming-Tze Lin
洪崇智
Chung-Chih Hung
電信工程研究所
關鍵字: 雙模;低失真;前饋式;音頻;量測;過取樣;dual-mode;incremental;sigma-delta;feedforward;low-distortion;oversampling
公開日期: 2007
摘要: 隨著多功能裝置需求的快速成長,如手機、mp3播放器等,多功能在今日已經變得越來越重要。在今日的裝置應用,數位電路主導整個晶片的面積。無論如何,類比轉數位介面是不可少的。使用超取樣與雜訊型化的三角積分器調變器是非常有效的技術應用在高解析度類比數位轉換器上。它本身對原件不匹配與漂移非常不敏感,而這項特點非常適合今日的VLSI設計。考慮兩種三角積分調變器,應用在音頻的三角積分調變器與應用在量測的累加調變器, 他們擁有相似的架構,並且可以用共用或者整合的方式設計在一起。因此,這個可調式超取樣類比數位轉換器不僅可以擁有兩種功能,並且可以減少晶片面積。除此之外,多級或疊接調變器,也叫做MASH,在實現方面不會有穩定性的問題還可以更適合做設計上的控制。此外,向前饋入的架構更適合此種電路,讓它有低失真的效果。 因此,為了將兩種電路合併用低失真MASH的架構實現,這個研究重點放在如何設計可設定式雙模低失真類比數位轉換器。晶片是以台積電0.18微米標準互補式金氧半導體製程所製造。在音頻應用上使用過取樣率128,也就是操作頻率為5.12 MHz,量測結果是58 dB 動態輸入範圍和 55 dB訊號失真雜訊比。在量測應用上使用操作頻率5.12 MHz的量測結果與預測使用同樣的轉換時間相比低3 bit。這個論文證明此架構引導出一種簡單且模組化的架構。
With the rapid growth in demand for multi-function device such as cellular phone and MP3 player, multi-function has become more and more important today. In today’s device application, digital circuits dominate the whole chip function. However, the analog-to-digital converter (ADC) is indispensable. The Sigma-delta modulation, associated with oversampling and noise shaping, is a well-known technique used in high-accuracy A/D converters. It is almost insensitive to component matching and variation and is suitable for today’s VLSI design. Concerning the two sigma-delta modulators, the Sigma-delta modulator for audio application and incremental modulator for measurement, they have similar architectures and can be combined together by sharing or merging their similar parts. Therefore, this configurable oversampling A/D converter can not only have two functions but also reduce the chip area. Besides, multistage or cascade modulators, also called MASH, can be realized without stability problems and more programmable. In addition, feedforward configuration is suitable for this circuit to have low-distortion. In order to combine the two circuits using feedforward MASH configuration, this research will focus on how to design a configurable dual-mode low-distortion A/D converter. The chip has been fabricated by TSMC 0.18-um CMOS process. With an oversampling ratio of 128 and a clock frequency of 5.12 MHz, the modulator achieves a 58 dB dynamic range and a peak SNDR of 55 dB for audio application. The measured resolution of the measurement application is 3 bit lower than the prediction in the same conversion time with a clock frequency of 5.12 MHz. This thesis demonstrates that this concept leads to a very simple modular architecture.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009413612
http://hdl.handle.net/11536/80872
Appears in Collections:Thesis


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