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dielectric constant相关的网络例句

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与 dielectric constant 相关的网络例句 [注:此内容来源于网络,仅供参考]

The results of numerical modeling indicate that the thin film microstrip lines with finite ground width have good broad band characteristics and the characteristic impedance, attenuation constant and effective dielectric constant have small change with the finite ground width changing.

作者用该程序对有限接地面薄膜微带线进行了时域仿真,结果显示在保证传输模不受干扰的情况下,在较宽频带范围内有限接地面对微带特性有微弱影响。

The result indicates that the poach dissipation of ceramics can be reduced when low impurity constant barium carbonate raw material with spheroidal particles is used;and the relationship of dielectric constant to temperature is more stabilized.

结果表明,杂质含量低、球形颗粒的碳酸钡原料能显著降低陶瓷的水煮损耗,但陶瓷水煮损耗异常和其致密性不存在对应关系。

It was found that sialon thin films deposited in ar and n2 atmosphere have higher relative dielectric constant, dielectric dissipation and leakage current density than those deposited in ar and o2 atmosphere.

发现在ar/n2气氛中沉积的sialon薄膜具有较高的介电常数,漏电流密度和介电损耗也稍大。

The results show that glass ceramics with thermal expansion coefficient of 5.11×10^(-6)℃, major phase of α-cordierite and ε=5.5, tan σ=2.1×10^(-4) can be prepared by the addition of 3.6% alkalis (Li2O+Na2O), and Li2O occupies 1.8%. With Li2O substitution for Na2O, spontaneous crystallization is obviously enhanced, and temperature of the first crystallization peak decreases from 950℃ to nearly 900℃, but the crystallization temperature of the second peak was not varied. With the increase of Li2O content, mixed alkali effect can be observed from the thermal expansion coefficient and dielectric loss curve which decreases first and then increases. Dielectric constant decreases monotonously with the increase of Li2O content.

研究结果表明:Li2O和Na2O总含量为3.6%,其中Li2O含量为1.8%时,微晶玻璃以α-堇青石为主晶相,热膨胀系数为5.11×10^(-6)℃,微波频率下介电常数ε为5.5,介电损耗tanσ为2.1×10^(-4);随着Li对Na的取代,玻璃的析晶能力增强,初始析晶峰温度从950℃降至900℃左右,但没有降低第二析晶峰温度;随着Li2O含量增加,热膨胀系数及介电损耗都出现明显的混合碱效应,曲线呈现先降低后升高的变化趋势;样品的介电常数随Li2O含量增加单调降低。

The results show that glass ceramics with thermal expansion coefficient of 5.11×106 ℃, major phase of α-cordierite and εr=5.5, tan σ=2.1×104 can be prepared by the addition of 3.6% alkalis(Li2O+Na2O), and Li2O occupies 1.8%. With Li2O substitution for Na2O, spontaneous crystallization is obviously enhanced, and temperature of the first crystallization peak decreases from 950 ℃ to nearly 900 ℃, but the crystallization temperature of the second peak was not varied. With the increase of Li2O content, mixed alkali effect can be observed from the thermal expansion coefficient and dielectric loss curve which decreases first and then increases. Dielectric constant decreases monotonously with the increase of Li2O content.

研究结果表明:Li2O和Na2O总含量为3.6%,其中Li2O含量为1.8%时,微晶玻璃以α-堇青石为主晶相,热膨胀系数为5.11×106 ℃,微波频率下介电常数ε r为5.5,介电损耗tan σ为2.1×104;随着Li+对Na+的取代,玻璃的析晶能力增强,初始析晶峰温度从950 ℃降至900 ℃左右,但没有降低第二析晶峰温度;随着Li2O含量增加,热膨胀系数及介电损耗都出现明显的混合碱效应,曲线呈现先降低后升高的变化趋势;样品的介电常数随Li2O含量增加单调降低。

An oxide coating is formed on the surface of the aluminum powder after the surface passivation treatment, so as to efficiently avoid the formation of leakage conductance due to mutual contact between eclectically-conducting additives and thereby to reduce the dielectric loss of the material. The composite material has high dielectric constant, low density and good flexibility. The production method of the composite material has the advantages of simple and controllable process, low hot-pressing temperature, energy conservation and environmental protection.

铝粉经过钝化处理,表面形成一层氧化物包覆层,有效地避免了导电添料因相互接触而形成漏电导,降低了材料的介电损耗;复合材料介电常数高,密度低,加工简单,并具有良好的柔韧性;复合材料的制备方法工艺易控简单、热压温度低、节能环保。

In this thesis, there are two types of varactors used in the VCO: one is the Philips' BB135 p-n junction capacitor; the other is Al/HfO2/Si capacitor with HfO2 dielectric. Because the dielectric constant of HfO2 is larger than that of SiO2, the capacitance of Al/HfO2/Si capacitor will be larger than that of MOS capacitor with the same thickness and area. Therefore, there will be larger unit voltage for adjusting the ratio of the capacitance values of the capacitors.

在本论文实验的VCO电路中之可变电容有2种:一种是飞利浦厂商所提供型号为BB135之P-N接面电容;第二种是自制的Al/HfO2/Si电容是使用二氧化铪(HfO2)来做为电容的介电材料,因为HfO2介电常数比氧化矽(SiO2)大,目的是要在相同厚度以及面积下,就可以有较大的电容值,希望能藉此有较大的单位电压改变电容值的比值。

The diversifications of abnormal peaks of dielectric constant and loss were clarified by space-charge model, and during phase transitions, the common-body contradiction was proposed qualitatively between the effect of space-charge model with hopping cation by changing frequency and that of current-carrier scattering by their structural transitions, their co-contributions decided the change behaviors of dielectric constants and loss.

以不同化学微畴的空间电荷模型讨论了相应介电峰和损耗峰的变化机理,提出在频率改变时畴中阳离子跃迁形成空间电荷的效应和相变所带来的载流子散射效应是一对矛盾共同体,它们间的贡献对比决定了介电常数和介电损耗的变化行为。

The temperature rising mechanisms of manganese carbonate fines containing coal by microwave heating were discussed. The results show that, manganese carbonate fines containing coal have good characteristics of microwave heating and self-reduction. At the molar ratios of C atom to O atom as 1.1, 1.2 and 1.3 in the mixed materials, the averaged maximum temperature-rising rate of the mixed materials by microwave heating is 140.7 K/min at 1 473 K with the microwave frequency of 2.450 GHz. At the different containing coal ratios and heating temperatures, the value of the dielectric constant is big, 5.5, but that of the permeability is about 1, so the mixed materials belong to dielectric loss. The temperature rising performance depends chiefly upon the electromagnetic performance of materials, whose change is caused primarily by the chemical reaction, the changes of crystal structural , and the changes of defects state. The bigger the containing coal ratio, the better the absorptivity of microwave. At the same containing coal ratio, the higher the heating temperature, the weaker the absorptivity of microwave.

研究结果表明:含碳碳酸锰矿粉具有优良的微波加热特性和自还原性;在微波加热频率为2.450 GHz、碳氧原子摩尔比分别为1.1,1.2和1.3时,微波加热混合物料至1 473 K的升温速率平均最高达到140.7 K/min;不同的加热温度和配碳比下混合物料的介电常数较大,都在5.5左右,而磁导率为1左右,属介电损耗型;微波加热含碳碳酸锰矿粉的升温性能主要取决于含碳碳酸锰矿粉的电磁性能,而电磁性能的改变主要是由物料加热过程中产生的化学反应、晶体结构变化及缺陷状态的改变引起的;配碳比提高,物料吸收微波的能力有所提高;在相同的配碳比下,加热温度升高,吸收微波的能力有所减弱。

Disadvantage of this device is high voltage, in order to reduce the operating voltage to achieve the purpose of actual use, screening of high dielectric constant material as the dielectric layer material is topic of future research.

缺点是工作电压偏高,需要进一步筛选出介电系数高的物质来作为介电绝缘层材料,以便降低工作电压,达到实际可以使用的目的。

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