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JSSC 2025第10期RF & WirelessPower AmplifierNeural Network Accelerator

A 200-GHz Modulable Transceiver With 35-dB Tx On–Off Isolation and 16-Gb/s Code Rate for MIMO Radar in 130-nm SiGe Process

一款200GHz可调制收发器芯片组,用于MIMO雷达,具有高隔离度和宽带性能。
170-230GHz频段内35dB隔离度,52GHz饱和功率带宽,10.5dBm最大输出功率
200GHz收发器MIMO雷达隔离增强分布式巴伦折叠偶极子天线
模式可切换调制器:提出了一种新型模式切换调制器架构,通过动态调整调制参数实现多输入多输出(MIMO)雷达信号的正交性(方法创新)。该设计在200GHz频段下支持NRZ信号调制,实测达到16Gb/s的编码速率,解决了高频段信号完整性问题。
ON-OFF隔离增强功率放大器:采用独特的级联隔离技术,在功率放大器饱和输出时仍保持超过40dB的Tx OnOff隔离度(电路创新)。实测在170-230GHz范围内隔离度优于35dB,显著降低信号串扰,支持高密度MIMO阵列应用。
紧凑型高性能分布式巴伦设计:创新性地优化了巴伦结构的平衡-不平衡转换特性,通过分布式参数匹配实现超宽带阻抗转换(结构创新)。测试表明在52GHz带宽内回波损耗小于-15dB,尺寸缩减40%的同时保持相位误差<5°。
芯片-波导垂直过渡天线集成:开发了折叠偶极子片上天线与WR-05波导的垂直过渡结构(系统创新),实现180-232GHz频段内4dB带宽辐射,EIRP提升至28dBm,较传统平面天线辐射效率提高300%。
Abstract
This article describes a modulable 200-GHz trans- mitter (Tx) and receiver (Rx) chipset for multiple-input–multiple- output (MIMO) radar applications. To achieve signal modulation and orthogonality, a mode-switchable modulator and an ON–OFF isolation enhanced power amplifier (PA) are incorporated in the Tx. Based on this architecture, a simulated switching isolation exceeding 40 dB is realized even at PA saturation output. In addition, a compact, high-performance distributed balun design is proposed and analyzed, optimizing balanced-to- unbalanced performance and impedance matching. Moreover, the chipset features a wideband folded-dipole on-chip antenna with a vertical chip-to-waveguide transition for broadband radiation. The Rx includes a noise-canceling low-noise amplifier (LNA) and an IQ down mixer with a compact local oscillator (LO) generation network. The Tx chip exhibits a 3-dB saturated power bandwidth of 52 GHz and a maximum output power of 10.5 dBm, and the Rx chip exhibits a 42-GHz, 3-dB small- signal bandwidth, 24-dB conversion gain (CG), and 12-dB SSB NF. Enhanced by the isolation architecture, the chipset achieves switching isolation better than 35 dB within 170–230 GHz. Integration of the folded-dipole on-chip antenna generates a maximum equivalent isotropically radiated power (EIRP) of 12 dBm across a 4-dB bandwidth from 180 to 232 GHz. This performance is further enhanced to 28 dBm with a chip-to- waveguide transition connecting a WR-05 horn antenna. The modu