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60 GHz Single-Chip Front-End MMICs and Systems for Multi-Gb/s Wireless Communication

机译:用于多Gb / s无线通信的60 GHz单芯片前端MMIC和系统

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Single-chip 60 GHz transmitter (TX) and receiver (RX) MMICs have been designed and characterized in a 0.15mum (fT~ 120 GHz/f MAX> 200 GHz) GaAs mHEMT MMIC process. This paper describes the second generation of single-chip TX and RX MMICs together with work on packaging (e.g., flip-chip) and system measurements. Compared to the first generation of the designs in a commercial pHEMT technology, the MMICs presented in this paper show the same high level of integration but occupy smaller chip area and have higher gain and output power at only half the DC power consumption. The system operates with a LO signal in the range of 7-8 GHz. This LO signal is multiplied in an integrated multiply-by-eight (X8) LO multiplier chain, resulting in an IF center frequency of 2.5 GHz. Packaging and interconnects are discussed and as an alternative to wire bonding, flip-chip assembly tests are presented and discussed. System measurements are also described where bit error rate (BER) and eye diagrams are measured when the presented TX and RX MMICs transmits and receives a modulated signal. A data rate of 1.5 Gb/s with simple ASK modulation was achieved, restricted by the measurement setup rather than the TX and RX MMICs. These tests indicate that the presented MMICs are especially well suited for transmission and reception of wireless signals at data rates of several Gb/s
机译:单芯片60 GHz发送器(TX)和接收器(RX)MMIC的设计和特征是采用0.15μm(fT〜120 GHz / f MAX> 200 GHz)GaAs mHEMT MMIC工艺。本文介绍了第二代单芯片TX和RX MMIC以及封装(例如倒装芯片)和系统测量方面的工作。与商用pHEMT技术中的第一代设计相比,本文介绍的MMIC具有相同的高集成度,但占用的芯片面积较小,并且增益和输出功率仅为直流功耗的一半。该系统使用7-8 GHz范围内的LO信号运行。该LO信号被乘以一个集成的乘8倍(X8)LO乘法器链,从而得到2.5 GHz的IF中心频率。讨论了封装和互连,并提出了并讨论了倒装芯片组装测试作为引线键合的替代方法。还介绍了系统测量,其中当显示的TX和RX MMIC发送和接收调制信号时,将测量误码率(BER)和眼图。通过简单的ASK调制,获得了1.5 Gb / s的数据速率,受测量设置的限制,而不是TX和RX MMIC的限制。这些测试表明,所提供的MMIC特别适合以数Gb / s的数据速率传输和接收无线信号

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