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D-Band, 2-D Scalable CMOS Planar Phased Array Transmitters With λ/2-Spaced Integrated Antenna

delete2025-08-01
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PRE
AI
B
Bingli Dai
J
Jicong Zhang
X
Xiangao Meng
Y
Yi Hu
M
Ming Guan
H
Hegang Deng
Z
Zhi Chen
B
Bo Zhang
C
Cheng Wang *
DOI:10.1109/TMTT.2025.3595454delete
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Abstract

Abstract

En 中文
To exploit the >100-GHz spectrum and overcome the attenuation of the wireless channel, a large-scale CMOS phased array is indispensable. However, the size of the array is currently limited by the loss and imbalance of the classic binary distribution network. In addition, since the available chip area shrinks quadratically with the wavelength (proportional to lambda(2) ), a >100- GHz lambda/2-spaced planar array is highly challenging. To solve the above issues, this article presents a D-band, 2-D scalable CMOS planar phased array transmitter (TX) with a precise lambda/2 antenna spacing. It employs a traveling-wave LO/IF distribution network, which enables the 2-D scalability by cascading the CMOS TX chips through the chip-edge wire bonding. Inside each chip, four highly integrated TXs perform the IF amplitude and phase control, and the IF-to-RF upconversion. The LO amplitude attenuation is compensated by a proposed subsampling (SS) tripler. Furthermore, a triple-resonance, on-chip antenna feed with quartz superstrate achieves a 3-dB bandwidth of 16 GHz (12%) and a 42% area reduction. Then, the 134 similar to 141 GHz, 16- and 64-element CMOS planar phased arrays are built. In the measurement, a peak effective isotropic radiated power (EIRP) of 26 dBm and an output RF power of 20 mW are recorded at 138 GHz for the 16-element array. In both the vertical and horizontal directions, a +/- 40(degrees) beam steering angles are recorded. The 64-element phased array exhibits a 35-dBm EIRP and a +/- 60(degrees) beam steering capability. A 10-m light-of-the-sight (LoS) transmission of a 14 Gbit/s, 16-quadrature amplitude modulation (QAM) data stream with an error vector magnitude (EVM) of 9.8% is also demonstrated.
Keywords:
Phased arrays
System-on-chip
Distribution networks
Array signal processing
Radio frequency
Antenna arrays
Wireless communication
Arrays
Microwave antenna arrays
Scalability
CMOS planar phased array
D band
IF beamforming
lambda/2 spacing
on-chip antenna
quartz superstrate
subsampling (SS) tripler
2-D scalable
wireless communication

Journal

IEEE Transactions on Microwave Theory and Techniques cover
IEEE Transactions on Microwave Theory and Techniques
IF:
4.5
Papers:
560
Citations:
3.5W

Organization

No organization information available