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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 28-GHz Flip-Chip Packaged Chireix Transmitter With On-Antenna Outphasing Active Load Modulation
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A 28-GHz Flip-Chip Packaged Chireix Transmitter With On-Antenna Outphasing Active Load Modulation

机译:28 GHz倒装芯片封装的Chireix发射机,天线上的相位已超过有源负载调制

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This paper presents a packaged 28-GHz Chireix outphasing transmitter (TX) for power amplifier (PA) efficiency enhancement at both peak and hack-off output power (PRO). The main objective is to investigate the possibility of employing a multi-feed antenna as a multi-port passive network to perform outphasing active load modulation. As a proof of concept, an outphasing TX architecture is proposed by leveraging a dual-feed loop antenna (DLA) to achieve high efficiency transmission of wideband complex modulated signals. Theoretical analysis and simulation results prove that the proposed DLA is electrically equivalent to an ideal differential series non-isolating power combiner, enabling superior on-antenna outphasing operation. Multi-functional signal processing is therefore achieved in a single loop-antenna footprint, including high-efficiency on-antenna power combining, outphasing active load modulation, and millimeter-wave (mm-Wave) signal radiation. Moreover, unlike conventional spatial vectorial combining techniques (e.g., spatial IQ or spatial outphasing), the antenna-level signal processing preserves the wide antenna unit field of view (FoV) and is particularly suitable for array or multiple-input-multiple-output (MIMO) applications. The proposed Chireix TX contains two phase-shifted sub-TXs simultaneously driving a DLA on package. The measurements demonstrate a 53%/43% PA drain/poweradded efficiency (DE/PAE) at 17.1-dBm saturated output power (P-sat) and 36 %/23% DE/PAE at 6-dB PRO. The high-efficiency Chireix TX supports up to 15 Gb/s 64-QAM with 10.4-dBm average output power and 34% average PA DE (19.2% average PAE) while maintaining EVM/ACLR better than -27.5 dBc/-28 dBc in a wireless radiation testing environment.
机译:本文提出了一种封装的28 GHz Chireix移相发送器(TX),用于在峰值和断路输出功率(PRO)上提高功率放大器(PA)的效率。主要目的是研究采用多馈天线作为多端口无源网络来执行过相有源负载调制的可能性。作为概念的证明,通过利用双馈环形天线(DLA)来实现宽带复调制信号的高效传输,提出了一种过时的TX体系结构。理论分析和仿真结果证明,提出的DLA在电气上等效于理想的差分串联非隔离功率合成器,可实现出色的天线上移相操作。因此,多功能信号处理可在单个环形天线覆盖区中实现,包括高效的天线上功率组合,超过有源负载调制和毫米波(mm-Wave)信号辐射。此外,与传统的空间矢量组合技术(例如,空间IQ或空间移相)不同,天线级信号处理保留了宽天线单元视场(FoV),特别适合于阵列或多输入多输出( MIMO)应用。拟议的Chireix TX包含两个相移的sub-TX,它们同时驱动封装上的DLA。测量结果表明,在17.1 dBm饱和输出功率(P-sat)下,PA漏极/功率增加效率(DE / PAE)为53%/ 43%,在6dB PRO下,DE / PAE为36%/ 23%。高效的Chireix TX支持高达15 Gb / s的64-QAM,平均输出功率为10.4 dBm,平均PA DE为34%(平均PAE为19.2%),同时保持EVM / ACLR优于-27.5 dBc / -28 dBc。无线辐射测试环境。

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