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Transmitter for wireless inter-chip data communications.

机译:用于无线芯片间数据通信的发送器。

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摘要

The dramatic fluctuation of gasoline price is a major concern for all. Hybrid electric vehicles with ∼ 2 times higher fuel efficiency have drawn lots of attention in the last few years. In order to replace costly photo-couplers used in hybrid engine controller boards, silicon based solutions are utilized to suggest the feasibility to lower cost and increase data rate.;This dissertation presents the design of an electronic isolator using inductive coupling fabricated in the UMC 130-nm mixed mode CMOS process. It can achieve 70-V DC isolation and around 160-MHz data transmission rate while drawing ∼ 22 mA. It only occupies 0.52 mm2, which is 3 times smaller, compared to the isolators using a capacitive coupling method. The electronic isolator is designed to provide sufficient isolation of high and low voltages coexisting in the same board. It can be used in RS-232 and IEEE 1394 applications.;The channel characteristics including antenna pair gain and delay spreads at 24-GHz in a printed circuit board for controlling hybrid engines with and without a metal cover are characterized using a 3-mm on-chip dipole antenna pair. At a 15-cm separation, the antenna pair gain can be improved by ∼10 dB with a metal cover ∼ 3.5 cm above the PCB and the maximum excess delay can be reduced to ∼ 1.1 ns from ∼ 16.5 ns, which is acceptable for recovery of clock and data for a 400 Mchip/sec system. It has been verified that on-chip dipole antennas can be used for wireless communication in the hybrid engine controller board.;Wireless interconnection using two separate wireless transceivers can operate with two different ground potentials that have large difference. A fully-integrated CDMA transmitter with an on-chip dipole antenna operating at 16.8 GHz fabricated in the UMC 130-nm CMOS process is demonstrated. It supports 7 signal levels with a 16.8-GHz carrier and 400-Mbps data rate. It includes a PLL, divider chains, a double balanced Gilbert cell up-conversion mixer, a power amplifier (PA), attenuators, a digital coder, a duplexer, and a 4-mm on-chip dipole antenna. The PA used in the transmitter chain can achieve 10-dBm saturated output power and ∼ 22-% maximum PAE. Most of the rise and fall times are around 200 ps. The worst case is 800 ps for the level 0 to level 2 transition. The CDMA transmitter occupies ∼ 5.2 mm2 and consumes 198 mW.;A bus interconnected with wireless links on a printed circuit board in which multiple sets of devices/chips can simultaneously communicate and control signals can be broadcasted to multiple devices has been presented in the dissertation. A gold bond wire with ∼ 1-mil diameter is co-optimized with a bond pad to resonate at ∼ 60 GHz. With a metal cover representing an enclosure for an electronic system (2-mm from a printed circuit board), the antenna pair gain at 10-cm separation is ∼ -53 dB including the effects of two nearby bond wires located 300 microm away. This is sufficient for building an inter-chip 1-Gbps radio link with bit error rate of 10 -12. The bond wire antennas should also be useful for general purpose over the air communication in the 60-GHz unlicensed band.
机译:汽油价格的剧烈波动是所有人的主要关切。在过去几年中,燃油效率提高了约2倍的混合动力电动汽车引起了很多关注。为了替代混合动力发动机控制板上昂贵的光耦合器,利用基于硅的解决方案来提出降低成本和提高数据速率的可行性。本文提出了一种采用UMC 130中制造的电感耦合器的电子隔离器的设计。 -nm混合模式CMOS工艺。它可以实现70V直流隔离,并具有约160MHz的数据传输速率,同时消耗约22mA的电流。与使用电容耦合方法的隔离器相比,它仅占0.52 mm2,是其三倍。电子隔离器旨在提供足够的隔离度,使高电压和低电压共存于同一块板上。它可用于RS-232和IEEE 1394应用中。通道特性,包括印刷电路板中天线对增益和延迟扩展(在24 GHz上),用于控制带金属盖和不带金属盖的混合动力发动机,其特征为3毫米片上偶极天线对。在15厘米的距离处,天线对的增益可以通过在PCB上方约3.5厘米的金属覆盖层的情况下提高约10 dB,最大过大延迟可以从约16.5 ns减小到约1.1 ns,这对于恢复来说是可以接受的400 Mchip / sec系统的时钟和数据。业已证实,片上偶极子天线可用于混合动力发动机控制器板上的无线通信。使用两个独立的无线收发器的无线互连可以在两个具有很大差异的不同地电位下工作。演示了采用UMC 130 nm CMOS工艺制造的,具有工作在16.8 GHz的片上偶极子天线的完全集成CDMA发送器。它支持16.8 GHz载波和400 Mbps数据速率的7种信号电平。它包括一个PLL,分频器链,一个双平衡吉尔伯特单元上变频混频器,一个功率放大器(PA),衰减器,一个数字编码器,一个双工器和一个4毫米片上偶极天线。发射器链中使用的PA可以达到10 dBm的饱和输出功率,最大PAE约为22%。大多数上升和下降时间约为200 ps。从0级到2级过渡的最坏情况是800 ps。 CDMA发射机占地约5.2 mm2,功耗为198 mW。本文提出了一种总线,该总线与印刷电路板上的无线链路互连,其中多套设备/芯片可以同时通信,并且可以将控制信号广播到多个设备。 。直径约1密耳的金键合线与键合焊盘共同优化,以在〜60 GHz处产生谐振。用金属外壳盖住一个用于电子系统的外壳(距印刷电路板2毫米),天线对在10厘米间隔处的增益约为-53 dB,其中包括两条相距300微米远的键合线的影响。这足以构建误码率为10 -12的芯片间1-Gbps无线链路。在60 GHz非许可频段的空中通信中,键合线天线也应用于一般用途。

著录项

  • 作者

    Wu, Hsin-Ta.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Engineering Electronics and Electrical.;Engineering General.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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