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用于超宽带M序列雷达传感器的0.35微米硅锗双极互补金属氧化物半导体技术中的模数转换器设计

Design of AD Converters in 0.35 µm SiGe BiCMOS Technology for Ultra-Wideband M-Sequence Radar Sensors.

作者信息

Sokol Miroslav, Galajda Pavol, Saliga Jan, Jurik Patrik

机构信息

Department of Electronics and Multimedia Telecommunications, Technical University of Košice, 042 00 Kosice, Slovakia.

出版信息

Sensors (Basel). 2024 Apr 29;24(9):2838. doi: 10.3390/s24092838.

Abstract

The article presents the analysis, design, and low-cost implementation of application-specific AD converters for M-sequence-based UWB applications to minimize and integrate the whole UWB sensor system. Therefore, the main goal of this article is to integrate the AD converter's own design with the UWB analog part into the system-in-package (SiP) or directly into the system-on-a-chip (SoC), which cannot be implemented with commercial AD converters, or which would be disproportionately expensive. Based on the current and used UWB sensor system requirements, to achieve the maximum possible bandwidth in the proposed semiconductor technology, a parallel converter structure is designed and presented in this article. Moreover, 5-bit and 4-bit parallel flash AD converters were initially designed as part of the research and design of UWB M-sequence radar systems for specific applications, and are briefly introduced in this article. The requirements of the newly proposed specific UWB M-sequence systems were established based on the knowledge gained from these initial designs. After thorough testing and evaluation of the concept of the early proposed AD converters for these specific UWB M-sequence systems, the design of a new AD converter was initiated. After confirming sufficient characteristics based on the requirements of UWB M-sequence systems for specific applications, a 7-bit AD converter in low-cost 0.35 µm SiGe BiCMOS technology from AMS was designed, fabricated, and presented in this article. The proposed 7-bit AD converter achieves the following parameters: ENOB = 6.4 bits, SINAD = 38 dB, SFDR = 42 dBc, INL = ±2-bit LSB, and DNL = ±1.5 LSB. The maximum sampling rate reaches 1.4 Gs/s, the power consumption at 20 Ms/s is 1050 mW, and at 1.4 Gs/s is 1290 mW, with a power supply of -3.3 V.

摘要

本文介绍了用于基于M序列的超宽带(UWB)应用的专用模数转换器(AD转换器)的分析、设计和低成本实现方法,以最小化并集成整个UWB传感器系统。因此,本文的主要目标是将AD转换器自身的设计与UWB模拟部分集成到系统级封装(SiP)中,或直接集成到片上系统(SoC)中,这是商用AD转换器无法实现的,或者成本过高。基于当前使用的UWB传感器系统要求,为在所提出的半导体技术中实现尽可能大的带宽,本文设计并展示了一种并行转换器结构。此外,作为特定应用的UWB M序列雷达系统研究和设计的一部分,最初设计了5位和4位并行闪存AD转换器,并在本文中简要介绍。新提出的特定UWB M序列系统的要求是基于从这些初始设计中获得的知识确定的。在对这些特定UWB M序列系统早期提出的AD转换器概念进行全面测试和评估后,启动了新AD转换器的设计。根据特定应用的UWB M序列系统要求确认具有足够的特性后,本文设计、制造并展示了一款采用AMS公司低成本0.35 µm SiGe BiCMOS技术的7位AD转换器。所提出的7位AD转换器实现了以下参数:有效位数(ENOB)= 6.4位,信纳比(SINAD)= 38 dB,无杂散动态范围(SFDR)= 42 dBc,积分非线性(INL)= ±2位最低有效位(LSB),以及微分非线性(DNL)= ±1.5 LSB。最大采样率达到1.4 Gs/s,在20 Ms/s时的功耗为1050 mW,在1.4 Gs/s时为1290 mW,电源电压为 -3.3 V。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb37/11086366/cdc5806e8272/sensors-24-02838-g001.jpg

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