DocumentCode :
665237
Title :
Developing LED light curing unit prototype by combined pulse width modulation: Ouput beam irradiance
Author :
Sodri, A. ; Handoyo, T. ; Indrani, Dj
Author_Institution :
Dept. of Biomed. Eng., Univ. of Indonesia, Depok, Indonesia
fYear :
2013
fDate :
7-8 Nov. 2013
Firstpage :
443
Lastpage :
445
Abstract :
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.
Keywords :
bio-optics; biomedical engineering; curing; dentistry; light emitting diodes; prototypes; LED light curing unit prototype; combined pulse width modulation; dental pulp tissues; high energy light curing unit; light emitting diode; light source; ouput beam irradiance; temperature 37 degC; time 20 s; Curing; Dentistry; Light emitting diodes; Polymers; Prototypes; Pulse width modulation; Resins; irradiance; light emitting diode - light curing unit; pulse width modulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation, Communications, Information Technology, and Biomedical Engineering (ICICI-BME), 2013 3rd International Conference on
Conference_Location :
Bandung
Print_ISBN :
978-1-4799-1649-8
Type :
conf
DOI :
10.1109/ICICI-BME.2013.6698544
Filename :
6698544
Link To Document :
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