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Modeling a IF Double Sampling Bandpass Switched Capacitor ΣΔ ADC with a Symmetric Noise Transfer Function for WiMAX/WLAN

机译:为WiMAX / WLAN的对称噪声传输功能进行建模AF Double采样带通开关电容ΣΔADC

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4G technology aims to revolutionize private and professional communication with its ubiquity and high-speed transmission (averaging 100Mbps). WiMAX and WLAN are two of the high speed access technologies to be used in the 4G mobile communication. Apropos to their high bandwidths,oversampling converters, e.g.ΣΔ ADCs, used for these standards would entail high levels of power consumption. Double sampling technique used in ΣA ADCs help in reducing the power consumption, since the actual sampling rate is only half the sampling frequency required to achieve a target resolution. But for conventional modulators, with low pass noise transfer functions (NTF), this benefit is hampered by the introduction of folded noise due to the mismatch of sampling capacitances. This paper presents a novel method of designing IF bandpass switched capacitor (SC)ΣA modulators with symmetric NTFs. Such a bandpass NTF is formulated with its center frequency at one-fourth the effective sampling frequency. The symmetricity ensures that the folded noise is 'noise-shaped' along with the quantization noise. The idea is verified with a discrete time bandpassΣA modulator modeled using Simulink?, including various nonlinearities, viz. clock jitter, opampnonidealities, and capacitive mismatch effects owing to double sampling and use of a multibitquantizer. Behavioral simulations of the proposed non-ideal model for WiMAX and WLAN, with a bandwith of 10MHz and 11MHz, respectively, achieved a peak resolution greater than 10 bits for each of the standards.
机译:4G技术旨在彻底改变私人和专业沟通,与其泛滥,高速传输(平均为100Mbps)。 WiMAX和WLAN是4G移动通信中使用的两个高速接入技术。 APROPOS到高带宽,用于这些标准的过采样转换器,例如,用于这些标准的e4G.ΣΔADC将需要高水平的功耗。 ΣAADCS中使用的双采样技术有助于降低功耗,因为实际采样率仅为实现目标分辨率所需的采样频率的一半。但对于传统调制器,通过低通噪声传递功能(NTF),通过引入由于采样电容不匹配而引入折叠噪声阻碍了这种益处。本文提出了一种设计具有对称NTFS的带通开关电容(SC)ΣA调制器的新颖方法。这种带通NTF在有效采样频率的四分之一时,其中心频率配制。对称性确保折叠的噪声与量化噪声以及量化噪声以及折叠噪声。使用Simulink(包括Simulink的离散时间带百分比σa调制器)验证了该想法,包括各种非线性,viz。由于双重采样和使用多点antizer,时钟抖动,OpampNonidealities和电容性错配。 WiMAX和WLAN的所提出的非理想模型的行为模拟分别具有10MHz和11MHz的带,实现了每个标准的峰值分辨率大于10位。

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