A tunable SAW duplexer

D. Penunuri, R. Kommrusch, N. Mellen
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引用次数: 4

Abstract

The success of SAW technology for RF front end filtering in high performance hand held mobile phones and radios is well demonstrated. The small size, high rejection and relatively low insertion loss which can be achieved using SAW impedance resonators gives this technology a significant advantage over competing approaches. One of the remaining issues for SAW impedance resonator filters has been to further improve the performance margins, particularly in the case of pass band edge insertion loss, in order to reduce average insertion loss and improve manufacturing yield. This paper describes the development of a SAW duplexer component that tunes the response of the Tx filter over a frequency range in order to improve its effective performance. The duplexer is fabricated using multi-layer LTCC technology that permits the easy interconnection of numerous diverse components, including SAW filter die, inductors, transmission lines, capacitors and voltage variable capacitors. The duplexer is designed for the dual-mode AMPS/CDMA cellular system, i.e., for transmission in the band from 824-849 MHz and for reception in the band from 869-894 MHz. The duplexer is packaged in a 9 mm/spl times/10 mm/spl times/2.5 mm form factor, attains 0.8 dB minimum insertion loss in the Tx band and 1.0 dB average insertion loss and provides good return loss in a 50 ohm system. The duplexer can be tuned under software control through the use of external DC voltages which are readily available at the RF board.
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可调谐SAW双工器
SAW技术在高性能手持移动电话和无线电射频前端滤波中的成功得到了很好的证明。使用SAW阻抗谐振器可以实现小尺寸,高抑制和相对较低的插入损耗,这使得该技术在竞争方法中具有显着优势。SAW阻抗谐振器滤波器的剩余问题之一是进一步提高性能裕度,特别是在通带边缘插入损耗的情况下,以降低平均插入损耗并提高制造良率。本文描述了一种SAW双工器组件的开发,该组件可以在一定频率范围内调谐Tx滤波器的响应,以提高其有效性能。双工器采用多层LTCC技术制造,可以轻松互连许多不同的组件,包括SAW滤波器,电感器,传输线,电容器和电压可变电容器。该双工器设计用于双模AMPS/CDMA蜂窝系统,即用于824-849 MHz频段的传输和869-894 MHz频段的接收。双工器采用9mm /spl倍/ 10mm /spl倍/2.5 mm封装,在Tx频段实现0.8 dB的最小插入损耗和1.0 dB的平均插入损耗,并在50欧姆系统中提供良好的回波损耗。双工器可以通过使用外部直流电压在软件控制下进行调谐,这些电压在射频板上很容易获得。
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