A 160-GHz system in package for short-range mm-wave applications

Author:

Hamidipour Abouzar,Feger Reinhard,Poltschak Sebastian,Stelzer Andreas

Abstract

This paper proposes a fully integrated 160-GHz transmitter and receiver in package for millimeter-wave applications. The monolithic integrated circuits were designed with a harmonic approach and were fabricated using a SiGe:C HBT production technology with an fTand fmaxof 170 and 250 GHz, respectively. The manufactured 2006 × 1865 µm2bare dies were integrated in 6 × 6 mm2embedded wafer level ball grid array packages, where they were interconnected with highly directional antennas built on the redistribution layer of the packages. With a total frequency multiplication factor of 36 and an active balun at the first stage, the transmitter allows the use of a 4.5-GHz input signal driven from a single-ended signal source [1] and distributed on a standard low-cost printed circuit board. The receiver comprises a Gilbert-cell-based subharmonic mixer with a simulated 1-dB input compression point of −4 dBm, and a minimum double-sideband noise figure of 16.5 dB. The functionality of the proposed system was successfully demonstrated in a quasi-monostatic FMCW radar measurement with a 1-ms up-chirp frequency sweep from 157 to 160 GHz and in a forward-scatter imaging experiment with an 8-GHz frequency ramp from 157 to 165 GHz.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Terahertz Integrated Circuit Design;Terahertz Antenna Technology for Imaging and Sensing Applications;2021

2. Terahertz Sources, Detectors, and Transceivers in Silicon Technologies;Electromagnetic Materials and Devices;2020-01-22

3. State-of-the-Art Approach: System-on-Package;Smart Sensors, Measurement and Instrumentation;2019

4. A SiGe-based fully-integrated 122-GHz FMCW radar sensor in an eWLB package;International Journal of Microwave and Wireless Technologies;2017-02-10

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