紫外线通过放电管屏面上的荧光粉转变成可见光。
The ultraviolet light is then converted to visible light by phosphors on the surface of the discharge tube.
同时展望了灯用稀土荧光粉的发展前景。
Moreover, it gives the outlook of rare earth phosphor used for lamp.
采用特殊玻管和荧光粉。
测定了荧光粉的结构、发射光谱和激发光谱。
The structure, emission spectrum and excitation spectrum of the phosphor were measured.
用途:用于荧光粉的活化剂和柘榴石的添加剂。
本公司生产的三基色荧光粉质量稳定,价格合理。
The Company produced trichromatic phosphor stable quality, reasonable price.
采用荧光粉包膜技术,减少三基色荧光粉的衰减。
It adopts enveloping technology of fluorescent powder to reduce attenuation of tri - phosphor fluorescent powder.
至于荧光粉品质的分选,可用验钞灯作对比检验。
As for the fluorescent powder quality sorting, yanchao lights available comparison test. & k2 ]!
在普通的电灯玻璃管内,ESL灯通过向内置的荧光粉发射电子而发光。
The ESL bulbs generate light by firing electrons to stimulate phosphor, and the whole setup is encased in normal light-bulb glass.
彩色PDP的发光效率在很大程度上与工作气体和荧光粉有关。
The luminous efficiency of color PDP is related to the working gases and phosphors in great extent.
它以合成树脂为基材,将磷光粉、荧光粉等发光物质附着在纸上。
It is the synthetic resin to the substrate, the phosphor powder, such as light-emitting phosphor material attached to the paper.
研究了烧结温度、保温时间以及粘结剂对荧光粉二次性能的影响。
The effects of baking temperature, holding time and binder on secondary luminescence properties of phosphor were systematically explored.
激活剂用量和煅烧温度影响荧光粉的发光亮度,是主要控制因素。
The flux dosage and calcination temperature, which affect luminosity of the fluorescent powder, are the major controlling factors.
通过本文研究,为FED荧光粉的研究提供了一些基础依据和方向。
Some foundations and directions are provided for the researches of FED phosphors in this paper.
射线粉末衍射数据确证了其晶体结构,证明这些荧光粉晶相组成纯净。
The data of X-Ray Powder Diffraction have proved these phosphors 'structure and their pure crystal composition.
采用变频预热方式,减少灯丝及荧光粉的冲击,大幅提升灯管的寿命。
Using Frequency preheating can greatly reduce the impact on filament, and improve the lifespan.
同时,利用正交实验探讨了合成工艺条件对荧光粉相对发光强度的影响。
The effect of the synthetic conditions on the relative luminescence intensity was discussed with orthogonal test.
除此之外还有在蓝光led上涂上荧光粉,将蓝光转化成白光的白光led。
In addition, painted with phosphor, LED emitting blue light can be transformed to that emitting white light.
通过测定样品的激发光谱和发射光谱,研究了焙烧温度对荧光粉结构的影响。
The effects of calcining temperature on structural variations of the phosphors were investigated.
今天我在女朋友家沙发上睡了一阵,醒来发现她给我涂了一身的暮光之城荧光粉。
Today, I woke up from a long nap on my girlfriend's couch only to find out that she had covered me in Twilight body glitter while I was asleep.
传统CRT投影管中荧光屏的制作,大都采用沉淀法在玻璃沉底上沉积一层荧光粉。
In the traditional CRT projection displays, the phosphor screen mostly is fabricated by depositing phosphor powder on the glass substrate.
与传统封装方法相比,采用荧光粉远离芯片的封装方法可使发光效率提高5%左右。
As compared with traditional packaging method, the coating method with phosphors away from the LED chip can improve the luminous efficiency by more than 5%.
发光管受热均匀,从而提高三基色荧光粉的发光效率,因此功率提高5%更加节能。
Equality heat of tube, the light efficiency of tri-color powder was raised so the power 5% higher, more energy-saving.
设计等离子体显示板(PDP)真空紫外荧光测试系统来测评PD P荧光粉的特性。
A testing system for Vacuum Ultraviolet (VUV) fluorescence spectrum radiation in Plasma Display Panel (PDP) is designed for testing and evaluating the properties of PDP phosphor.
研究了在蓝光芯片加黄色荧光粉制备白光LED方法中,色坐标位置对光通量的影响。
The luminous intensity, luminous flux and color coordinate of high-power white LED have relations with different place.
在PD P屏的制作过程中,荧光粉经历了浆料制备、干燥、烧结以及老炼等工艺过程。
In the process of fabricating a PDP, phosphor undergo the process of paste preparation, drying, sintering and aging etc.
原文想要表示:荧光粉及用此荧光粉所制造的荧光屏在光电平板显示器中具有实用价值。
The experimental results show that the phosphor and the making phosphor screen is realization in the photoelectric flat display.
球形颗粒荧光粉的光散射面积最小,堆积密度大,有助于提高发光材料的发光强度和使用寿命。
Spherical particles have minimum scattering area, high packing density; which is beneficial to the luminescent intensity and lifetime of the devices.
球形颗粒荧光粉的光散射面积最小,堆积密度大,有助于提高发光材料的发光强度和使用寿命。
Spherical particles have minimum scattering area, high packing density; which is beneficial to the luminescent intensity and lifetime of the devices.
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