标题: | 用于WiMax之互补金氧半类比基频电路设计 A CMOS Analog Baseband Design for WiMax |
作者: | 侯闳仁 Hou Hung-Jen 温瓌岸 温文燊 Kuei-Ann Wen Wen-ShenWuen 电子研究所 |
关键字: | 基频电路;可变增益放大器;低通滤波器;可调;analog baseband;VGA;LPF;tunable |
公开日期: | 2006 |
摘要: | 本论文针对WiMax无线网路应用提出低功率高动态范围类比基频电路之设计。为了达到多频宽和高增益范围,我们用了可单级提供30dB增益高范围的假指数之可变增益放大器(VGA)和可以改变频宽从0.625 MHz到14 MHz的多频宽滤波器(LPF),在这滤波器中是由两个转导电路组成的元件合成的。在高动态范围的架构下,以较少可变增益放大器串接级来达成低功耗和用转导电容的滤波器来减少所需面积。最后用这VGA和LPF电路设计整个类比基频电路并分析杂讯、线性度和干扰。经由0.13-μm CMOS 和1.2伏偏压的制程进行电路实作,这电路可提供86dB的最大功率增益、16dB的最低增益值,并在400mVpp输出电压时约可得40dB全谐波失真。 This thesis presents a low-power high dynamic range design of CMOS analog baseband circuitry for WiMax applications. To achieve multi-bandwidth and high gain range, the proposed variable gain amplifier employs a wide-range pseudo-exponential circuit topology providing about 30dB dynamic per-stage, and the proposed LPF(Low Pass Filter) incorporates two adjustable transconductor achieving various cut-off frequency from 0.625MHz to 14MHz. With the proposed topology, the number of amplifier stages can be reduced and the level of power consumption is tremendously lowered, and the gm-c based LPF stage help to reduce area. Base on the proposed VGA and LPF, the topology of analog baseband is analized to consider the trade-offs among noise, linearity and interference. The circuit is implemented in 0.13-μm CMOS process, and provides a maximum forward gain of 86 dB and a minimum forward gain of 16 dB from a 1.2-V supply. The harmonic distortion is 38.19dB under the output signal magnitude is 400m Vpp. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009411674 http://hdl.handle.net/11536/80588 |
显示于类别: | Thesis |
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