半导体学报
半導體學報
반도체학보
CHINESE JOURNAL OF SEMICONDUCTORS
2007年
3期
372-376
,共5页
周竹瑾%李志升%李宁%李巍%任俊彦
週竹瑾%李誌升%李寧%李巍%任俊彥
주죽근%리지승%리저%리외%임준언
有源RC滤波器%可变增益放大器%Tow-Thomas%消除直流偏置%双模
有源RC濾波器%可變增益放大器%Tow-Thomas%消除直流偏置%雙模
유원RC려파기%가변증익방대기%Tow-Thomas%소제직류편치%쌍모
active RC filter%VGA%Tow-Thomas%DC-offset correction%dual-mode
采用SMIC 0.35μm CMOS混合信号工艺,实现了同时适用于GSM/WCDMA的完整的基带.基带由双模的高线性度的四阶切比雪夫形式的有源RC低通滤波器以及三级可变增益放大器构成.滤波器的设计同时满足GSM和WCDMA的带宽性能并且为降低制造成本在两种模式下具有最大的元件共享度.基带由于插入了高通滤波器具有滤除直流的功能,并且为了优化GSM模式下的功耗,运放的带宽做成可调.在最大增益情况下测得的噪声系数在GSM和WCDMA模式下分别为42和27.3dBm.在单位增益的情况下,WCDMA模式下的IIP3为40dBm,功耗为47.0mW;在GSM模式下,IIP3为28dBm,功耗为31.8mW.电源电压为3.3V.
採用SMIC 0.35μm CMOS混閤信號工藝,實現瞭同時適用于GSM/WCDMA的完整的基帶.基帶由雙模的高線性度的四階切比雪伕形式的有源RC低通濾波器以及三級可變增益放大器構成.濾波器的設計同時滿足GSM和WCDMA的帶寬性能併且為降低製造成本在兩種模式下具有最大的元件共享度.基帶由于插入瞭高通濾波器具有濾除直流的功能,併且為瞭優化GSM模式下的功耗,運放的帶寬做成可調.在最大增益情況下測得的譟聲繫數在GSM和WCDMA模式下分彆為42和27.3dBm.在單位增益的情況下,WCDMA模式下的IIP3為40dBm,功耗為47.0mW;在GSM模式下,IIP3為28dBm,功耗為31.8mW.電源電壓為3.3V.
채용SMIC 0.35μm CMOS혼합신호공예,실현료동시괄용우GSM/WCDMA적완정적기대.기대유쌍모적고선성도적사계절비설부형식적유원RC저통려파기이급삼급가변증익방대기구성.려파기적설계동시만족GSM화WCDMA적대관성능병차위강저제조성본재량충모식하구유최대적원건공향도.기대유우삽입료고통려파기구유려제직류적공능,병차위료우화GSM모식하적공모,운방적대관주성가조.재최대증익정황하측득적조성계수재GSM화WCDMA모식하분별위42화27.3dBm.재단위증익적정황하,WCDMA모식하적IIP3위40dBm,공모위47.0mW;재GSM모식하,IIP3위28dBm,공모위31.8mW.전원전압위3.3V.
This paper describes a complete baseband chain for both GSM and WCDMA receivers with a SMIC 0.35μm mixed signal process. The chain consists of a dual-mode,highly linear, fourth order Chebyshev active RC filter and three VGA stages. The filter is designed to meet the bandwidth specifications of the GSM and WCDMA standards and share the maximum number of components between the two modes to reduce manufacturing cost.The design is free of DC-offset and has an inter-stage high-pass filter, and operational amplifiers with adjustable GBW are used to minimize GSM-mode power consumption. The measured noise figures are 27.3 and 42dBm in WCDMA and GSM modes, respectively, at the maximum gain. The IIP3 is 40dBm at unit gain in the WCDMA mode,and the circuit consumes 47.0mW. The IIP3 is 28dBm in the GSM mode, and the circuit consumes 31.8mW.The supply voltage is 3.3V.