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A Hybrid Loop Two-Point Modulator Without DCO Nonlinearity Calibration by Utilizing 1 Bit High-Pass Modulation

机译:通过使用1位高通调制无需DCO非线性校准的混合环路两点调制器

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This paper presents a two-point modulator architecture which is immune to the nonlinear effect of the digitally-controlled oscillator (DCO). By utilizing a 1 bit ΔΣ modulation with embedded finite-impulse response (FIR) filtering the high-pass modulation path does not suffer from the DCO gain nonlinearity, thus requiring absolute gain calibration only. The digital FIR filter in the high-pass modulation path not only suppresses quantization noise but also reduces noise coupling with time-interleaved switching of partitioned capacitors. A hybrid FIR filtering method is also employed for the low-pass modulation path to enhance the linearity of the fractional-N phase-locked loop (PLL). A 1.8 GHz two-point modulator based on a semi-digital PLL is implemented in 65 nm CMOS consuming 6.9 mW from a 1 V supply. At the divide-by-2 output frequency of 913.2 MHz, the error-vector magnitude (EVM) values of 1.79% and 1.63% are achieved with 1.08 Mb/s and 270 kb/s GMSK modulation respectively. When the 1.08 Mb/s GFSK modulation is performed with the same PLL parameters, the EVM value of 1.96% is achieved.
机译:本文提出了一种两点调制器架构,该架构不受数字控制振荡器(DCO)的非线性影响。通过利用带有嵌入式有限脉冲响应(FIR)滤波的1位ΔΣ调制,高通调制路径不会遭受DCO增益非线性的影响,因此仅需要绝对增益校准即可。高通调制路径中的数字FIR滤波器不仅抑制了量化噪声,而且还减少了与分区电容器的时间交错开关耦合的噪声。对于低通调制路径,还采用了混合FIR滤波方法,以增强分数N锁相环(PLL)的线性度。一个基于半数字PLL的1.8 GHz两点调制器在65 nm CMOS中实现,消耗1 V电源时的功耗为6.9 mW。在913.2 MHz的2分频输出频率下,通过1.08 Mb / s和270 kb / s GMSK调制分别获得1.79%和1.63%的误差矢量幅度(EVM)值。当在相同的PLL参数下执行1.08 Mb / s GFSK调制时,EVM值为1.96%。

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