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Design of a high linearity and high gain accuracy analog baseband circuit for DAB receiver

机译:DAB接收机的高线性度,高增益精度模拟基带电路设计

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摘要

An analog baseband circuit of high linearity and high gain accuracy for a digital audio broadcasting receiver is implemented in a 0.18-μm RFCMOS process. The circuit comprises a 3rd-order active-RC complex filter (CF) and a programmable gain amplifier (PGA). An automatic tuning circuit is also designed to tune the CF's pass band. Instead of the class-A fully differential operational amplifier (FDOPA) adopted in the conventional CF and PGA design, a class-AB FDOPA is specially employed in this circuit to achieve a higher linearity and gain accuracy for its large current swing capability with lower static current consumption. In the PGA circuit, a novel DC offset cancellation technique based on the MOS resistor is introduced to reduce the settling time significantly. A reformative switching network is proposed, which can eliminate the switch resistor's influence on the gain accuracy of the PGA. The measurement result shows the gain range of the circuit is 10-50 dB with a 1-dB step size, and the gain accuracy is less than ±0.3 dB. The OIP3 is 23.3 dBm at the gain of 10 dB. Simulation results show that the settling time is reduced from 100 to 1 ms. The image band rejection is about 40 dB. It only draws 4.5 mA current from a 1.8 V supply voltage.
机译:用于数字音频广播接收器的高线性度和高增益精度的模拟基带电路是通过0.18μmRFCMOS工艺实现的。该电路包括一个三阶有源RC复合滤波器(CF)和一个可编程增益放大器(PGA)。还设计了一个自动调谐电路来调谐CF的通带。代替传统CF和PGA设计中采用的A类全差分运算放大器(FDOPA),该电路中特别采用AB类FDOPA,以其较大的电流摆幅能力和较低的静态电流实现更高的线性度和增益精度目前的消费。在PGA电路中,引入了一种基于MOS电阻的新型DC偏移消除技术,以显着减少建立时间。提出了一种新型的开关网络,可以消除开关电阻对PGA增益精度的影响。测量结果表明,电路的增益范围为10-50 dB,步长为1 dB,增益精度小于±0.3 dB。 OIP3在10 dB的增益下为23.3 dBm。仿真结果表明建立时间从100 ms减少到1 ms。镜像带抑制约为40 dB。它仅从1.8 V电源电压汲取4.5 mA电流。

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