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- Deep-Trench Termination of Bipolar RF Power Devices 双极RF功率管的深阱结终端
- RF power devices 射频功率器件
- The power of the modulated carrier wave is increased by the RF power amplifier. 射频功率放大器增加了调变载波的功率。
- Broadband high power devices become main research object. 宽频带高功率器件成为主要的研究对象。
- Therefore for to output RF power, 13.5 VDC must be applied to this pin. 因此为了获得RF的功率输出,必须在这个脚上加入13.;5V的电压。
- Broadband high power devices are main research object. 宽频带高功率器件成为主要研究对象。
- RF power device 射频功率器件
- Kinney offers further advice to those going on vacation: Unplug power devices. “月”是和“太阳”相反的存在,相对于太阳的“阳”,“月”代表了“阴”。
- Both an RF power analyzer and a spectrum analyzer are essentially specialized superheterodyne receivers. 功率分析仪和频谱分析仪都本质上都是超外差接收机。
- The comparison is carried out under the same of RF power radiated from the array aperture. 比较是在相同的阵列天线口面辐射功率条件下进行的。
- Low voltage rating power device. 低电压启动。
- Steve C. Cripps, RF Power Amplifier for Wireless Communications, Artech House, 1999. 参考文献[1]袁杰,高电电路分析与设计(二),全威图书有限公司,2001。
- Low power consumption longevity for battery powered devices. 低电能的消耗。
- Rf power pre-alarm(under the attenuation threshold with "RF "LED flashing on the amplifier display. 射频功率预报警(在衰减极限之下;用"射频"发光二极管在放大器显示上闪烁.
- It shows that even if using the RF power(13.56 MHz) as the excitation of plasma,the compressive silicon nitride film can be obtained easily. 通常认为高频下制备得到的氮化硅膜呈现张应力;但是通过实验;表明即使应用高频(13.;56MH z)作为激励源同样可以沉积出呈现压应力的氮化硅薄膜。
- The main components in a test system may include DC bias, DC measurement, RF power meter, network analyzer, RF sources, and other instruments. 一个测试系统中的主要部分可能包括直流偏压、直流测量、RF功率计、网络分析仪、RF源,以及其它仪器。
- For safety, the coil in the HTS power devices should be designed as thermal stabilized. 为安全起见,应用在高温超导电力设备中的线圈应采取热稳定化路线设计。
- The influence of chamber pressure,gas flow rate and RF power on micro loading effect in reactive ion etch of silicon dioxide is researched. 结果表明,通过对反应室压力、刻蚀气体流量和射频功率的调节,可以降低微负载效应的影响,得到良好的刻蚀均匀性。
- A powerful device exploded outside the station. 一枚威力巨大的炸弹在车站外爆炸了。
- Operating conditions including RF power, carrier gas pressure, model of nebulizer, Uranium concentration of sample, dwell time, etc are optimized. 对高频发生器入射功率、载气压力、雾化器类型、最佳铀含量范围、通道停留时间、数据采集时间和测量数次等进行优化,得到了优化的操作条件。