跳到主要內容

臺灣博碩士論文加值系統

(216.73.217.7) 您好!臺灣時間:2026/09/14 18:46
字體大小: 字級放大   字級縮小   預設字形  
回查詢結果 :::

詳目顯示

我願授權國圖
: 
twitterline
研究生:許富傑
研究生(外文):Fu-Chieh Hsu
論文名稱:垂直堆疊式高階雙通帶帶通濾波器設計
論文名稱(外文):Vertically Stacked High Order Stepped-Impedance Resonator (SIR) Bandpass Filters with a Dual-Passband Response
指導教授:郭仁財
指導教授(外文):Jen-Tsai Kuo
學位類別:碩士
校院名稱:國立交通大學
系所名稱:電信工程系所
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2006
畢業學年度:94
語文別:中文
論文頁數:38
中文關鍵詞:帶通濾波器雙通帶微帶線頻寬設計圖高階垂直堆疊
外文關鍵詞:Bandpass fitlerdual-pass bandmicrostripdesign graphhigh ordervertically stacked
相關次數:
  • 被引用被引用:0
  • 點閱點閱:203
  • 評分評分:
  • 下載下載:0
  • 收藏至我的研究室書目清單書目收藏:0
本論文利用步階阻抗共振腔以垂直堆疊的方式,設計具有雙通帶的高階帶通濾波器。藉由改變步階阻抗共振腔的幾何參數,調整其諧振頻率,以得到兩個通帶的中心頻率,再經由相鄰共振腔之間耦合量與長度及間距關係的設計圖,選定兩個通帶可實現的比例頻寬完成設計。為達高階設計,且使每一對相鄰共振腔均有適當的耦合量,必須靈活調整共振腔之幾何參數,以達到設計高階電路的目的。最後,實作電路的量測結果與電磁模擬結果比較,兩者相當一致。
A rigorous synthesis method is presented for higher order microstrip bandpass filters with a dual-passband response in vertical stack configuration. The building block of the circuit is stepped-impedance resonator (SIR) of which resonant frequencies can be tuned by simply adjusting its structure parameters. Fractional bandwidth design graphs are established for determining offset and space between adjacent resonators. The impedance and length ratios of the SIR should be properly chosen so that all couplings between any two adjacent resonators can fulfill the design figures given by the element values of the lowpass prototype. Second-, sixth- and eighth-order bandpass filters are designed and fabricated. Measured results of the three fabricated circuits show good agreement with the simulated responses.
目錄
中文摘要 ...................................................................................... I
英文摘要 ...................................................................................... II
致謝 ...................................................................................... III
目錄 ...................................................................................... IV
圖目錄 ...................................................................................... V
第一章 簡介.............................................................................. 1
第二章 共振腔特性與能量饋入.............................................. 3
2-1 步階阻抗共振腔特性........................................... 3
2-2 雙通帶能量饋入................................................... 4
2-3 阻抗匹配轉換器................................................... 5
第三章 高階雙通帶帶通濾波器設計……………………….. 11
3-1 頻寬設計扇形圖………………………………... 11
3-2 電路實作與量測………………………………... 15
第四章 結論.............................................................................. 36
第五章 參考文獻...................................................................... 37
[1] D. Llorens, P. Otero and C. Camacho-Penalosa, “Dual-band, single CPW port, planar-slot antenna,” IEEE Trans. Antennas Propagat., vol. 51, pp. 137-139, Jan. 2003.
[2] Y.-L. Kuo and K.-L. Wong, “Printed double-T monopole antenna for 2.4/5.2 GHz dual-band WLAN operations,” IEEE Trans. Antennas Propagat., vol. 51, pp. 2187-2192, Sept. 2003.
[3] M.-J. Kim, C.-S. Cho and J. Kim, “A dual band printed dipole antenna with spiral structure for WLAN application,” IEEE Microw. Wireless Compon. Lett., vol.15, pp. 910–912, Dec. 2005
[4] H. Hashemi and A. Hajimiri, “Concurrent multi-band low-noise amplifiers: theory, design, and applications,” IEEE Trans. Microwave Theory Tech., vol. 50, pp. 288–301, Jan. 2002.
[5] L.-H. Lu, H.-H. Hsieh and Y.-S. Wang, “A compact 2.4/5.2-GHz CMOS dual-band low-noise amplifier,” IEEE Microw. Wireless Compon. Lett., vol.15, pp. 685–687, Oct. 2005
[6] Z. Li, R. Quintal and K.-K. O, “A dual-band CMOS front-end with two gain modes for wireless LAN applications,” IEEE J. Solid-State Circuits, vol. 39, pp. 2069–2073, Nov. 2004.
[7] L.-C. Tsai and C.W. Hsue, "Dual-band bandpass filters using equal-length coupled-serial-shunted lines and Z-transform technique," IEEE Trans. Microwave Theory and Tech., vol. 52, pp. 1111-1117, Apr. 2004.
[8] H. Miyake, S. Kitazawa, T. Ishizaki, T. Yamada and Y. Nagatomi, “A miniaturized monolithic dual band filter using ceramic lamination technique for dual mode portable telephones,” in IEEE MTT-S Int. Microwave Symp. Dig., pp.789-792, 1997.
[9] X. Guan, Z. Ma, P. Cai, Y. Kobayashi, T. Anada, and G. Hagiwara, “Synthesizing microstrip dual-band bandpass filters using frequency transformation and circuit conversion technique,” IEICE Trans. Electron., vol.E89-C, pp.495–502, April 2006.
[10] S. Sun and L. Zhu, “Compact dual-band microstrip bandpass filter without external feeds,” IEEE Microw. Wireless Compon. Lett., vol. 15, pp. 644–646, Oct. 2005.
[11] J.-T. Kuo and H.-S. Cheng, “Design of quasi-elliptic function filters with a dual-passband response,” IEEE Microwave Wireless Compon. Lett., vol. 14, pp. 472-474, Oct. 2004.
[12] C.-L. Hsu, J.-T. Kuo and F.-C. Hsu, “Design of loop resonator filters with a dual-passband response,” in Asia-Pacific Microwave Conference Proceedings, Suzhou, PROC, Dec. 4-7, 2005.
[13] J.-T. Kuo, T.-H. Yeh and C.-C. Yeh, “Design of microstrip bandpass filters with a dual-passband response,” IEEE Trans. Microwave Theory Tech., vol. 53, pp. 1331-1337, Apr. 2005.
[14] S.-F. R. Chang, W.-L. Chen, S.-C. Chang, C.-K. Tu, C.-L. Wei, C.-H.Chien, C.-H. Tsai, J. Chen and A. Chen, “A dual-band RF transceiver for multi-standard WLAN applications,” IEEE Trans. Microwave Theory Tech., vol. 53, pp. 1048-1055, Mar. 2005.
[15] M. Makimoto and S. Yamashita, “Bandpass filters using parallel coupled stripline stepped impedance resonators,” IEEE Trans. MTT., vol. 28, Dec. 1980.
[16] G. L. Matthaei, L. Young, and E. M. T. Jones, Microwave Filters, Impedance-Matching Network, and Coupling Structures, Norwood MA: Artech House, 1980.
[17] C. Monzon, “A small dual-frequency transformer in two sections,” IEEE Trans. Microwave Theory Tech., vol. 51, pp. 1157-1161, Apr. 2003.
[18] J. S. Hong and M. J. Lancaster, Microstrip Filters for RF/Microwave Applications. New York: John Wiley & Sons, 2001.
[19] Zeland Software Inc., IE3D simulator, Jan.1997.
[20] David M. Pozar, Microwave Engineering, John Wiley & Sons, New York, 2005, 5th Ed.
[21] J.-T. Kuo, C.-C. Yeh and F.-C. Hsu, “Design of vertically stacked stepped-impedance resonator (SIR) filters with a dual-passband response,” presented in 10th International Symposium on Microwave and Optical Technology, pp. 688-691, Fukuoka, Japan, Aug. 22-25, 2005.
QRCODE
 
 
 
 
 
                                                                                                                                                                                                                                                                                                                                                                                                               
第一頁 上一頁 下一頁 最後一頁 top