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Developing LED light curing unit prototype by combined pulse width modulation: Ouput beam irradiance

机译:通过组合脉冲宽度调制开发LED光固化单元原型:输出光束辐照度

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The application of high-energy light curing unit (LCU) may potentially damage dental pulp tissues due to temperature rise caused by. A previous research has displayed an output temperature of 37°C of light emitting diode - light curing unit prototype. With curing time of 20 seconds and temperature output of 37°C, the objective of this research is to optimize the irradiance of the prototype light emitting diode - light curing unit using a pulse width modulation combination method to obtain irradiance beam output of 1000 mW/cm2. The pulse width modulation mode was programmed by combining a low and high output irradiance beam into 5 modes (combinations). A high power blue LED, model Pl.02.Xl.04041, was used as a light source. Results showed that the irradiance beam output was 715±24 mW/cm2. To obtain a higher irradiance beam output of 1000 mW/cm2, a further study would be using the combination of PWM method with a higher power LED source.
机译:高能光固化单元(LCU)的应用可能会由于引起的温度升高而潜在地损坏牙髓组织。先前的研究显示出发光二极管的输出温度为37°C-光固化单元原型。以20秒的固化时间和37°C的温度输出,本研究的目的是使用脉冲宽度调制组合方法优化原型发光二极管-光固化单元的辐照度,以获得1000 mW /的辐照光束输出。平方厘米通过将低和高输出辐照光束组合为5种模式(组合)来编程脉冲宽度调制模式。使用Pl.02.Xl.04041型高功率蓝色LED作为光源。结果表明,辐照束输出为715±24 mW / cm2。为了获得更高的辐照光束输出1000 mW / cm2,将结合使用PWM方法和更高功率的LED源进行进一步的研究。

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