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Dynamic Architecture and Frequency Scaling in 0.8–1.2 GS/s 7 b Subranging ADC

机译:0.8–1.2 GS / s的动态架构和频率缩放7 b子范围ADC

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Dynamic Architecture and Frequency Scaling (DAFS) is shown to realize superlinear power scaling in high-speed analog-to-digital converters (ADCs). To achieve both high-speed operation and low power consumption, the ADC architecture is reconfigured between binary search and flash every clock cycle, relying on the conversion delay. The proposed binary search/flash architecture reconfigurable ADC can be implemented with only a small modification to conventional binary search ADCs. By live configuring, the flash operation is adaptively performed when an excess delay is detected. DAFS not only significantly improves the power scaling but also compensates for transistor speed shifts due to process, voltage and temperature (PVT) variations. Therefore, DAFS can be used to improve the design margin of high-speed ADCs. A prototype subranging ADC fabricated in 65 nm CMOS technology operates up to 1220 MS/s and achieves an SNDR of 36.2 dB with a Nyquist input frequency. DAFS is active between 820–1220 MS/s and achieves peak power reduction of 30%, when compared with the power scaling when DAFS is disabled. A peak FoM of 85 fJ/conv. was obtained at 820 MS/s, which is nearly a twofold improvement over that of previously reported subranging ADCs.
机译:示出了动态架构和频率缩放(DAFS),以实现高速模数转换器(ADC)中的超线性功率缩放。为了实现高速运行和低功耗,ADC架构在每个时钟周期的二进制搜索和闪存之间重新配置,具体取决于转换延迟。所提出的二进制搜索/闪存架构可重配置ADC只需对常规二进制搜索ADC进行少量修改即可实现。通过实时配置,当检测到过量延迟时,自适应地执行闪光操作。 DAFS不仅显着改善了功率缩放比例,还补偿了由于工艺,电压和温度(PVT)变化而引起的晶体管速度漂移。因此,DAFS可用于提高高速ADC的设计裕度。采用65 nm CMOS技术制造的ADC原型ADC的最高工作频率为1220 MS / s,在奈奎斯特输入频率下的SNDR为36.2 dB。与禁用DAFS时的功率缩放相比,DAFS在820-1220 MS / s之间处于活动状态,并实现了30%的峰值功率降低。峰FoM为85 fJ / conv。它以820 MS / s的速度获得,比以前报道的细分ADC几乎提高了两倍。

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