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1)  half bridge clipper
半桥削波
2)  harmonic/half-bridges-in-series
谐波/半桥串联
3)  diamond circuit
桥形半波电路,桥形半波整流电路
4)  clipping [英]['klɪpɪŋ]  [美]['klɪpɪŋ]
削波
1.
As a simplest approach, traditional clipping method can reduce PAPR of OFDM signals, but it causes large unwanted out-of-band radiation.
传统的削波算法虽然能够简单有效地降低信号的峰均功率比,但是会带来较大的额外频谱增益。
2.
This paper analyzes the impact of doubleside clipping noise and quantization noise on HFC baseband digital channel caused by A/D converter.
主要分析了 HFC回传光纤链路基带数字化后 ,因引入 A/ D而带来的量化噪声和双边削波噪声对回传信号的影响 ,导出了误符号率计算公式 ,并得出了一些具有实用价值的结论 。
3.
The paper deals with the analysis of asymptotic clipping noise distribution and its impact on M ary QAM transmission over subcarrier multiplexed lightwave system.
分析了副载波多路复用模拟光纤传输系统中 ,引入 MQAM方式的数据业务后 ,原模拟信号的削波对数字信号的影响 ,认真分析了 Qun Shi的论文 ,采用一种新的零阶 Bessel函数近似式和一种快速收敛级数算法对削波造成的 MQAM误码率进行计算 ,得出了一些较精确的结论 。
5)  half bridge
半桥
1.
Although the theory and relative technique realizing half bridge arc welding inverter is well developed now,there are still many problems need to be deeply researched during the production and realization.
半桥式弧焊逆变器实现的理论和相关技术已很成熟,但在产品化、实用化中,还有很多需要深入研究的问题。
2.
Output capacity of IGBT half bridge inverter power source has been discussed and its expression has been developed in this paper.
对半桥式IGBT逆变焊接电源输出容量的计算进行了理论分析 ,推导出相应的数学表达式 ,在此基础上分析了影响焊机输出容量的主要因素 ,从而为此类型焊接电源变压器的设计提供了必要的理论依据。
3.
A half bridge switching mode power supply(SMPS) based on PWM technology is introduced.
介绍了一款基于PWM技术的半桥式开关稳压电源。
6)  Half-bridge
半桥
1.
The DC- DC Converter Circuit of Half-bridge Resonance Based on B-SIT;
基于B-SIT的半桥谐振DC-DC变换器电路
2.
The combination of boost and half-bridge or/and full bridge current-fed DC-DC converter are widely used in UPS,fuel-cell systems in which the input voltage is much lower than the output voltage.
Boost电路和半桥、全桥电路相结合的电流馈电DC-DC变换器被广泛地使用在UPS、燃料电池等低输入电压、高输出电压的系统中。
3.
This paper presents a half-bridge switching power supply in which a intelligent intergraded chip named UC3825 is used.
利用 UC3825芯片构成了 PWM 控制的半桥变换器,文中给出了电压补偿网络和电流保护等重要的外围电路的工程设计方法。
补充资料:削削
1.纤弱貌。 2.陡峭貌。 3.凛冽貌。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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