精品无码人妻一区二区三区不卡-97日日碰人人模人人澡-老少交欧美另类-欧美极p品少妇的xxxxx-精品国产自在精品国产精华天

Advantages of Fresnel Lenses

2014-02-09 admin1

  Our team is ready to assist you! Please visit our website at http://www.03116688.com/about/335-en.html

  Fresnel lenses consist of a series of concentric grooves etched into plastic. Their thin, lightweight construction, availability in small as well as large sizes, and excellent light gathering ability make them useful in a variety of applications. Fresnel lenses are most often used in light gathering applications, such as condenser systems or emitter/detector setups. They can also be used as magnifiers or projection lenses in illumination systems, and image formulation.

  A Fresnel (pronounced fray-NEL) lens replaces the curved surface of a conventional optical lens with a series of concentric grooves. These contours act as individual refracting surfaces, bending parallel light rays to a common focal length (Figure 1). As a result, a Fresnel lens, while physically narrow in profile, is capable of focusing light similar to a conventional optical lens but has several advantages over its thicker counterpart.

  Figure 1: Profile of a Fresnel Lens [View Larger Image]

  THE THEORY OF FRESNEL LENSES

  Interested in a short video? Check out Fresnel Lens Review. View Now

  The driving principle behind the conception of a Fresnel lens is that the direction of propagation of light does not change within a medium (unless scattered). Instead, light rays are only deviated at the surfaces of a medium. As a result, the bulk of the material in the center of a lens serves only to increase the amount of weight and absorption within the system.

  To take advantage of this physical property, 18th-century physicists began experimenting with the creation of what is known today as a Fresnel lens. At that time, grooves were cut into a piece of glass in order to create annular rings of a curved profile. This curved profile, when extruded, formed a conventional, curved lens – either spherical or aspherical (Figure 2). Due to this similar optical property compared to a conventional optical lens, a Fresnel lens can offer slightly better focusing performance, depending upon the application. In addition, high groove density allows higher quality images, while low groove density yields better efficiency (as needed in light gathering applications). However, it is important to note that when high precision imaging is required, conventional singlet, doublet, or aspheric optical lenses are still best.

  Figure 2: Side Profile Comparison of a Plano-Convex (PCX) and a Fresnel Lens [View Larger Image]

  MANUFACTURING FRESNEL LENSES

  The first Fresnel lenses were made by tediously grinding and polishing glass by hand. Eventually, molten glass was poured into molds, but it was only with the development of optical-quality plastics and injection-molding technology in the 20th-century that the use of Fresnel lenses in many industrial and commercial applications became practical.

  Fresnel lenses can be manufactured from a variety of substrates. They are manufactured from acrylic to polycarbonate to vinyl, depending on the desired wavelength of operation. Acrylic is the most common substrate due to its high transmittance in the visible and ultraviolet (UV) regions, but polycarbonate is the substrate of choice in harsh environments due to its resistance to impact and high temperature.

  APPLICATION EXAMPLES

  While French physicist Augustin-Jean Fresnel (1788 - 1827) was not the first to conceptualize a Fresnel lens, he was able to popularize it by integrating it into lighthouses. Since then, Fresnel lenses have been utilized in a variety of applications, from light collimation and light collection to magnification.

  Light Collimation

  A Fresnel lens can easily collimate a point source by placing it one focal length away from the source. In a finite-conjugate system, the grooved side of the Fresnel lens should face the longer conjugate (Figures 3 - 4) because this produces the best performance.

  Figure 3: Light Collimation of a Point Source with a Fresnel Lens [View Larger Image]

  Light Collection

  One of the most common applications for a Fresnel lens is the collection of solar light, which is considered very nearly parallel (an infinite-conjugate system). Using a Fresnel lens for light collection is ideal for concentrating light onto a photovoltaic cell or to heat a surface. For example, a Fresnel lens can be used for popular home maintenance such as heating a home or pool! In these cases, the overall surface area of the lens determines the amount of collected light.

  Figure 4: Light Collection of Collimated Light with a Fresnel Lens [View Larger Image]

  Magnification

  Another common application for a Fresnel lens is magnification. It can be used as a magnifier or projection lens; however, due to the high level of distortion, this is not recommended. Also, the image quality does not compare to that of a higher-precision system given the amount of distortion.

  While commonly found in solar applications, Fresnel lenses are ideal for any application requiring inexpensive, thin, lightweight positive lens elements. Fresnel lenses are not new technology, but their pervasiveness has increased with improvements in manufacturing techniques and materials. Fresnel lenses are truly unique optical lenses which make them a great tool for a range of interesting and fun optical designs.

主站蜘蛛池模板: 人妻丰满熟妇岳av无码区hd| 888亚洲欧美国产va在线播放| 日日橹狠狠爱欧美视频| 无码av不卡一区二区三区| 久久久久国精品产熟女久色| 国产午夜人做人免费视频网站| 九九热在线视频观看这里只有精品| 久久99av无色码人妻蜜柚| 色yeye香蕉凹凸视频在线观看| 精品久久久久中文字幕app| 狠狠色综合网久久久久久| 777米奇久久最新地址| 美丽人妻被按摩中出中文字幕| 99尹人香蕉国产免费天天| 又湿又紧又大又爽a视频| 亚洲区激情区无码区日韩区| 国产成人精品怡红院在线观看| 亚洲中文字幕无码一区| 国产精品鲁鲁鲁| 国产乱码一区二区三区爽爽爽 | 夜夜添无码一区二区三区| 超碰97人人做人人爱亚洲| 国内精品久久久久久中文字幕| 狠狠综合久久综合中文88| 亚洲精品一区国产欧美| 日本熟妇色熟妇在线视频播放 | 久久亚洲国产成人影院| av激情亚洲男人的天堂国语| 中文字幕乱码人在线视频1区| 国产成人a∨激情视频厨房 | 99视频精品国产免费观看| 西西人体午夜视频无码| 60岁欧美乱子伦xxxx| 女人被男人爽到呻吟的视频| av午夜福利一片免费看久久| 波多野结衣av一区二区全免费观看| 亚洲精品国产一区二区精华| 国产公开免费人成视频| 中文精品一区二区三区四区| 精品伊人久久久大香线蕉下载| 国产精品久久久久久久久久免费看|