收发机
CMOS芯片
像素
太赫兹辐射
反射(计算机编程)
电子线路
分辨率(逻辑)
振幅
电子工程
光学
计算机科学
材料科学
电气工程
光电子学
工程类
物理
人工智能
程序设计语言
作者
Pranith R. Byreddy,Yukun Zhu,Suprovo Ghosh,Harshpreet S. Bakshi,Walter Sosa Portillo,Jayson P. Van Marter,Kenneth K. O,Murat Torlak,Wooyeol Choi
标识
DOI:10.1109/tthz.2024.3350515
摘要
A 1 × 3 array of 296-GHz complementary metal oxide semiconductor concurrent transceiver pixels incorporating a low noise amplifier, a differential gain stage, and a double-balanced I/Q mixer and a quadrature local oscillator generator for extraction of baseband signal amplitude and phase in addition to the RF section in an area of ∼ (λ/2) 2 is demonstrated. The effective isotropic radiated power of the array is ∼−6 dBm and the minimum double sideband receiver pixel noise figure is ∼48 dB. An E-shaped patch antenna is used to broaden the antenna bandwidth (14-GHz -10-dB |S 11 | bandwidth). Using a pair of these arrays, lens-less short-range reflection mode imaging of a target ∼1 cm away through a cardboard covering is demonstrated. The phase and amplitude outputs enable a synthetic increase of the effective aperture to the scan area from the pixel area for improved image quality and resolution. The use of phase combining for the 1 × 3 transmitter array also improves the isolation between the pair for reflection-mode imaging which limits the stand-off range by ∼10 dB (to ∼70 dB) compared to that when a pair of single pixels with a conductive wall is used.
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