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Direct Digital Frequency Synthesis design methodology for optimized spurs / jitter performances

机译:直接数字频率合成设计方法可优化杂散/抖动性能

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The paper presents a simple methodology to choose the main parameters of Direct Digital Frequency Synthesis (DDFS) to fulfil the requirements of a given communication protocol. The set of parameters are chosen in function of the jitter and thus the BER and leads to some Digital to Analog Converter (DAC) phase noise limits. The method described relies on a Matlab algorithm that calculates the output tones of the DDFS. The latter consists of a phase accumulator, a lookup table, a DAC and a low pass filter. The algorithm permits to define the main parameters of the DDFS blocks such as the clock frequency, the number of bits in the accumulator and the lookup table memory. On the same way the DAC number of bits and the attenuation and filter bandwidth can be estimated in order to evaluate the output performances in terms of frequency resolution, jitter and spurs noise. In our application, the frequency synthesizer must ensure a frequency step of 100 Hz, a fast settling time of 200 ns, a jitter of 300 ps in the 10 kHz - 1 MHz bandwidth and the spurs amplitude must be -70 dBc at 2 MHz frequency offset from 1.4 GHz output frequency. The simulations give an insight of the challenges to be taken into account at the initial stage of the integrated circuit design.
机译:本文提出了一种简单的方法来选择直接数字频率合成(DDFS)的主要参数,以满足给定通信协议的要求。根据抖动和BER来选择参数集,并导致一些数模转换器(DAC)相位噪声限值。所描述的方法依赖于Matlab算法,该算法计算DDFS的输出音调。后者包括一个相位累加器,一个查找表,一个DAC和一个低通滤波器。该算法允许定义DDFS块的主要参数,例如时钟频率,累加器中的位数和查找表存储器。以相同的方式,可以估算DAC的位数,衰减和滤波器带宽,以便根据频率分辨率,抖动和杂散噪声评估输出性能。在我们的应用中,频率合成器必须确保100 Hz的频率步进,200 ns的快速建立时间,在10 kHz-1 MHz带宽内的300 ps抖动,并且在2 MHz频率下杂散幅度必须为-70 dBc从1.4 GHz输出频率偏移。通过仿真可以洞悉在集成电路设计初期要考虑的挑战。

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