loss n. 1.丧失;丢失,遗失。 2.减损,损失,亏损(额);损耗;减少,下降。 3.失败;输掉。 4.错过;浪费。 5.损毁;【军事】伤亡;〔pl.〕 伤亡及被俘人数。 loss of sight 失明。 copper loss【电学】铜耗。 core [iron] loss【电学】铁耗。 a dead loss净亏,纯损。 an idling loss空转损耗。 a total loss总损失。 His death is a great loss to the country. 他的死是国家的大损失。 profit and loss盈亏。 suffer heavy losses 遭受重大损失。 loss of pressure 压力下降。 loss in weight 重量[体重]减少。 loss of weight 失重。 the loss of a war 战败。 loss of opportunity 错过机会。 at a loss 1. 无办法,为难 (I am at a loss what to do. 我就是不知道怎样办才好)。 2. (猎犬)失去猎物嗅迹。 3. 亏本地 (sell sth. at a loss赔本卖出某物)。 cut a [the] loss 赶紧脱手以免多受损失。 for a loss 处于苦恼中 (throw them for a loss 使他们苦恼)。 make a loss 亏损。 without (any) loss of time 即刻,马上。
frequency n. 1.屡次,频仍,频繁。 2.(脉搏等的)次数,出现率;频度;【物理学】频率,周率。 audio frequency音频。 a high [low] frequency高[低]频。 the frequency of earthquakes in Japan 地震在日本的频繁发生。 mean [median] frequency中频。 resonance [resonant] frequency谐振频率,共振频率。 ultrahigh frequency超高频。 ultralow frequency超低频。 very high frequency甚高频。 very low frequency甚低频。
Exterior the support video frequency loss reports to the police with the migration detects reports to the police 支持视频丢失报警和移动侦测外部报警。
Measurements of the electrical properties of transmitting tubes - measuring methods of high frequency loss for interelectrode insulators 发射管电性能测试方法电极间绝缘体高频损耗的测试方法
( 3 ) investigations show that icc shielding layer structures help reduce high frequency loss , enhance q value , and widen frequency application range of ic components ( 2 )设计出低损耗的连接线和i / opad 、高谐振点的集成电感以及高对称性/高平衡度的集成巴仑。
Basing on other researchers ’ work , this paper has put forward a novel type of icc ( induced current cancellation ) shielding layer for rfic / mmic performance improvement , to reduce high frequency loss , increase q value , and expand its application frequency range . and present how to realize rfic / mmic components such as i / o pad , inductors , baluns and so on by applying icc shielding layer structures . furthermore co - design methods of ic component structure and foundry process structure designs has been presented in this thesis 在无线通信技术对cmos射频/微波集成电路需求的大背景下,本论文提出了用于高频集成电路( rfic / mmic )器件的各类新型icc ( inducedcurrentcancellation ,感应电流相消)屏蔽工艺结构,由此设计制造的ic部件解决了传统半导体工艺无法实现射频/微波集成电路的难题,以达到降低高频集成电路器件的高频损耗,提高器件q值以及扩宽器件应用频带的目的。