<cite id="rz8od"></cite>
<blockquote id="rz8od"></blockquote>
<style id="rz8od"></style>

<tr id="rz8od"><center id="rz8od"></center></tr><ruby id="rz8od"></ruby>

    <sup id="rz8od"></sup>
    <sub id="rz8od"><s id="rz8od"><li id="rz8od"></li></s></sub> <blockquote id="rz8od"></blockquote>
    亚洲成人一区,黄av在线,干美女av,亚洲日本va午夜在线影院,日韩少妇人妻vs中文字幕,国产乱子伦精品视频,久久精品国产丝袜人妻,欧美xxxxx高潮喷水麻豆
    Hotline:400-880-1556

    English




    basic introduction

    Semiconductor light-emitting diodes (LEDs) have been widely used in indicator lights, signal lights, instrument displays, mobile phone backlights, car light sources, etc. White LED technology has also continued to develop, and LEDs have become more and more widely used in the field of lighting. In the past, there were no more comprehensive national and industry standards for LED testing. In production practice, only relative parameters can be used as the basis. Different manufacturers, users, and research institutions have been controversial about this, leading to the development of the domestic LED industry. Big impact.

    Optical performance measurement

    Luminous flux

    Method 1 Integrating sphere spectroradiometer

    Guideline:

    CIE84: 1989 "Measurement of Luminous Flux";

    IESNA LM79-08 "Electrical and photometric measurement of solid-state lighting products"

    Method 2 Distribution Photometer

    Guideline:

    CIE84: 1989 "Measurement of Luminous Flux";

    IESNA LM79-08 "Electrical and photometric measurement of solid-state lighting products"

    Test items:

    Beam angle        Light efficiency                Luminous flux

    Ring band         Spectral power distribution    Color difference    Peak wavelength

    Lumen maintenance      Color rendering index     Color coordinate        Color tolerance

    Light intensity distribution (light distribution curve)

    Method   Distribution Photometer

    Guideline:

    IESNA LM79-08 "Electrical and photometric measurement of solid-state lighting products"

    CIE 121: 1998 "Luminaire Photometry and Distribution Photometry"

    CIE 043: 1979 "Projected light intensity test"

    GB / T 9468 General requirements for photometric distribution of lamps

    GB / T 7002: 2008 Photometric test of floodlighting lamps

    Test items:

    Energy efficiency of lamps     Beam angle     Luminous intensity distribution of lamps     Brightness limit curve

    Estimated curve of indoor lamps     Equal intensity distribution curve     Total luminous flux     Ring band

    Plane iso-illuminance curve     Round iso-curve     Ballast Lumen Coefficient (BLF) Rectangular constant intensity curve

    Test Methods

    LED is a unipolar PN junction diode composed of semiconductor inorganic materials, and the relationship between voltage and current is called volt-ampere characteristic. LED electrical characteristics include forward current, forward voltage, reverse current, and reverse voltage. LEDs must be driven by a suitable current and voltage to work properly (as shown in Figure 1). The maximum allowable forward voltage, forward current, and reverse voltage and current of the LED can be obtained by testing the electrical characteristics of the LED. In addition, the optimal working electric power of the LED can also be determined.

    The test of LED electrical characteristics is generally carried out by the voltage and ammeter under the power supply of the corresponding constant current and constant voltage source.

    Optical characteristics test

    Similar to other light sources, the test of LED light characteristics mainly includes luminous flux, luminous efficiency, radiant flux, radiant efficiency, light intensity, light intensity distribution characteristics and spectral parameters.

    Luminous flux and efficiency

    There are two methods for measuring luminous flux, namely integrating sphere method and variable angle photometer method. The variable angle photometer method is the most accurate method for measuring luminous flux, but due to its longer time-consuming, the sphere method is generally used to test the luminous flux. There are two test structures in the existing integrating sphere method for measuring LED luminous flux. One is to place the tested LED at the center of the sphere, and the other is to place it on the wall of the sphere.

    Since the integrating sphere method is used to measure the luminous flux, the self-absorption of light by the light source will affect the test results. Therefore, it is often necessary to introduce auxiliary lights.

    After the luminous flux is measured, the luminous efficiency of the LED can be measured with an electrical parameter tester. The test methods of radiant flux and radiation efficiency are similar to the test of luminous flux and luminous efficiency.

    Light intensity and light intensity distribution characteristics

    The light intensity of the point light source is evenly distributed in all directions of the space, and the test results received by detectors with different receiving apertures at different distances will not change. However, due to the inconsistent light intensity distribution of LED, the test results vary with the test distance and detector aperture. Therefore, CIE-127 proposed two recommended test conditions, so that each LED under the same conditions for light intensity test and evaluation as shown in Figure 5. At present, the recommended test conditions of CIE-127 have been cited by various LED manufacturers and inspection agencies.

    Spectral parameters

    The spectral characteristic parameters of LED mainly include peak emission wavelength, spectral radiation bandwidth and spectral power distribution. The spectrum of a monochromatic LED is a single peak, and its characteristics are expressed in terms of peak wavelength and bandwidth, while the spectrum of a white LED is composed of multiple monochromatic spectra. The spectral characteristics of all LEDs can be represented by the spectral power distribution, the white LED spectral power distribution. And the chromaticity parameter can also be calculated from the spectral power distribution of the LED.

    The measurement of the spectral power distribution needs to be performed by splitting, which separates each color light from the mixed light for measurement. Generally, prisms and gratings can be used for splitting.

    Our advantage

    1. With a professional qualification and experienced expert technical team, we can provide you with professional consultation and services.

    2. Have advanced laboratory equipment to ensure the accuracy and reliability of test data.

    3. As a third-party testing and certification organization trusted by customers worldwide, we are your certificate of quality.


    Online consultation

    Online consultation

    Recommend
    • Australian RCM certification

      Australian RCM certification

      Australian RCM certification

    • Label printer ANATEL certification

      Label printer ANATEL certification

      Label printers entering the Brazilian market, ANATEL certification is an essential passport! It is the recognition of the Brazilian Telecommunications Authority for the safety and compliance of electronic products, without which products cannot be legally sold.

    • Label printer SRRC certification

      Label printer SRRC certification

      SRRC certification is not only a guarantee of product compliance, but also a key to opening up the market.

    LED photoelectric performance testing

    Semiconductor light-emitting diodes (LEDs) have been widely used in indicator lights, signal lights, instrument displays, mobile phone backlights, car light sources, etc. White LED technology has also continued to develop, and LEDs have become more and more widely used in the field of lighting.

    Get a quote
    主站蜘蛛池模板: 免费无码又爽又刺激高潮| 久热这里只有精品6| 国产极品粉嫩馒头一线天av| 撕开奶罩揉吮奶头视频| 日韩中文字幕人妻一区| 99精品免费欧美成人小视频| а天堂中文在线资源| 试看120秒一区二区三区| 阳原县| 中国女人高潮hd| 亚洲中字幕| 3751色视频| 日韩高清在线亚洲专区观看| 国产免费人成视频在线观看| 日本边添边摸边做边爱喷水| 欧美国产综合视频| www免费视频com| 国产内射老熟女aaaa∵| 亚洲熟妇色自偷自拍另类| 少妇激情一区二区三区视频小说| 国产精品自线在线播放| 国产乱子伦视频一区二区三区| 亚洲熟妇av一区二区三区浪潮 | 免费的污污的网站在线观看| 日韩伦人妻无码| 国产丝袜美腿诱惑在线观看| 国产午夜精品无码一区二区| 风骚少妇久久精品在线观看| 国产精品久久久影视青草| 久久99久久99精品免视看国产成人| 伊人热热久久原色播放www| 韩国精品福利视频一区二区| 中文字幕一区三区| 在线天堂最新版资源| 99久久国产综合精品女同| 成人福利在线视频免费观看| 亚洲第一天堂无码专区| 黄桃av无码免费一区二区三区| 免费国产不卡午夜福在线观看| 国产亚洲精品久久久久天堂软件| 亚洲男人AV天堂午夜在|