英語 での Diode の使用例とその 日本語 への翻訳
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We are good quality supplier of Diode Laser Module, 808nm Diode Laser Module and High Power Diode Lasers from China.
The color of the beam of a laser is determined by the wavelength of the light emitted by the laser diode pointer.
Application: laser pointer, general purpose red laser light source, high precision measurement, laser module, diode laser equipment, medical instrument, aerospace applications.
This CW 830nm SM laser diode allows the most efficient infrared light emitting with high stability and reliability performance on all application fields.
Reverse Recovery Characteristics of the Body Diode of a SiC-MOSFET Another important characteristic of the body diode of a MOSFET is the reverse recovery time trr.
This high power 1064nm IR laser diode projects the most intense infrared laser light source with high reliability in all CW diode lasers.
The finest 635nm laser diode made laser pointer ensures an especially long lifetime of more than 8000 hours.
Diode laser machine is particularly effective to hair follicle melanocytes without injury surrounding tissue.
Turn-on energy losses are also minimized thanks to a co-packaged ultra-fast recovery freewheeling diode.
An LED(Light Emitting Diode) is an electronic semiconductor device that emits light when an electric current passes through it.
This 808nm infrared laser diode with C-mount enables the most reliable and stable performance in all kinds of CW diode lasers.
This 808nm infrared laser diode with TO package enables the most reliable and stable performance in all kinds of CW diode lasers.
It is performed using gold standard 808nm diode laser technology, with energy penetrates deep into the dermis with high average.
This C-mount package 975nm far infrared laser diode ensures high efficiency and high stable performance in use of all CW diode lasers.
Firstly, the AC voltage from the transformer is rectified by a silicon diode bridge. Then, it is smoothed by a pi shaped CR filter.
Generally, the LD(Laser Diode) of the optical transmitter is built in the LD module integrated with optical parts such as optical fiber.
The sensor works by pulsing an infrared emitter diode and observing the magnitude of the reflected signal.
The expression“light emitting diode” is used herein to refer to the basic semiconductor diode structure(i.e., the chip).
Its second PIN diode receives standard CATV video signals, modulated onto an optical carrier.
Low Rds(on) also makes it possible to implement synchronous rectification where an efficient FET replaces the traditional high loss rectification diode.