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    • 6. 发明公开
    • SOLAR PHOTOVOLTAIC MODULE
    • FOTOVOLTAISCHES SOLARMODUL
    • EP3129810A1
    • 2017-02-15
    • EP15713958.5
    • 2015-04-10
    • CSEM Centre Suisse d'Electronique et de Microtechnique SA
    • BALLIF, ChristopheESCARRE PALOU, JordiPERRET-AEBI, Laure-EmmanuelleLI, Hengyu
    • G02B5/02F24J2/04G02B5/26G02B5/28H01L31/0525H02S40/44
    • H01L31/0547F24S20/60G02B5/0278G02B5/265G02B5/281H01L31/02366H01L31/0481H02S40/44Y02E10/52
    • A solar photovoltaic module (1) intended to receive incident light, said incident light comprising incident visible light and incident near infrared light, visible light being defined as light having a wavelength between 380 nm and 700 nm, excluding 700 nm and near infrared light is defined as light having a wavelength between 700 nm and 2000 nm, characterized in that said solar photovoltaic module (1) comprises: —a photovoltaic element (2), sensitive to near-infra red light, —at least a first infrared transmitting cover sheet (4), arranged to one side of said photovoltaic element (2), comprising: —infrared transmission means arranged to transmit at least 65% of said incident infrared light through said infrared transmitting cover sheet, —visible light transmission means arranged to transmit as less as possible incident light having wavelengths lower than 600 nm, preferably lower than 650 nm, more preferably lower than 700 nm, excluding the wavelength of 700 nm, through said infrared transmitting cover sheet (4), —reflection means arranged to reflect a portion of said incident visible light of said infrared transmitting cover sheet (4), to the side of said incident light.
    • 一种用于接收入射光的太阳能光伏模块(1),所述入射光包括入射的可见光和入射的近红外光,可见光被定义为波长在380nm和700nm之间的光,不包括700nm和近红外光 定义为波长在700nm和2000nm之间的光,其特征在于,所述太阳能光伏模块(1)包括: - 对近红外光敏感的光电元件(2), - 至少第一红外透射盖板 (4),布置在所述光电元件(2)的一侧,包括: - 红外传输装置,其布置成透过所述红外线传输覆盖片透过至少65%的入射红外光; - 可见光传输装置, 尽可能少的波长低于600nm,优选低于650nm,更优选低于700nm的入射光,除了700nm的波长,通过所述in (4),被设置为将所述红外线传输覆盖片(4)的所述入射可见光的一部分反射到所述入射光侧的反射装置。
    • 9. 发明公开
    • Chirped dichroic mirror and a source for broadband light pulses
    • Gechirpter dichroitischer Spiegel und Quellefürbreitbandige Lichtimpulse
    • EP2908159A1
    • 2015-08-19
    • EP14155053.3
    • 2014-02-13
    • Deutsches Elektronen-Synchrotron DESY
    • Kärtner, FranzChia, Shih-Hsuan
    • G02B5/08G02B27/10G02B27/14H01S3/00G02B5/28
    • H01S3/0057G02B5/0816G02B5/0825G02B5/281G02B27/1006G02B27/141H01S3/2391
    • The present invention is directed to a chirped dichroic mirror comprising a stack of alternating high refractive index and low refractive index layers, a front end portion including an antireflective coating followed by an impedance matching region in which the ratio of the optical thickness of a high refractive index layer to the optical thickness of the next following low refractive index layer is adiabatically increasing to a first value, the impedance matching region being followed by a chirped mirror region where the Bragg wavelength of the layer pair is generally increasing or generally decreasing, characterized in that the layers in a back end region form a second impedance matching region in which the ratio of the optical thickness of a high refractive index layer to the optical thickness of the next following low refractive index layer starts at the value of this ratio in the adjacent chirped mirror region and is then adiabatically decreasing in order to provide matched impedance to the surrounding medium over the transmission spectral band.
    • 本发明涉及一种啁啾分色镜,其包括交替的高折射率和低折射率层的叠层,前端部分包括抗反射涂层,随后是阻抗匹配区域,其中高折射率和低折射率层的光学厚度的比率 索引层与下一个低折射率层的光学厚度绝热地增加到第一值,阻抗匹配区域后面是啁啾镜区域,其中层对的布拉格波长通常增加或大体上减小,其特征在于 后端区域中的层形成第二阻抗匹配区域,其中高折射率层的光学厚度与下一个后续低折射率层的光学厚度的比率以相邻的该比率的该值的值开始 啁啾镜区域,然后绝热地减少以提供匹配的障碍 通过传输光谱带向周围介质传播。