当着夫的面被夫上司玩弄,最近免费中文字幕中文高清百度 ,超碰CAOPORON入口,精品国产日韩一区二区三区

行業(yè)產(chǎn)品

  • 行業(yè)產(chǎn)品

伊特克斯惰性氣體系統(tǒng)(北京)有限公司


當(dāng)前位置:伊特克斯惰性氣體系統(tǒng)(北京)有限公司>>太陽能電池>>鈣鈦礦太陽能電池>>Sol3A Class AAA Solar Simulators 太陽光模擬器

Sol3A Class AAA Solar Simulators 太陽光模擬器

返回列表頁
參  考  價面議
具體成交價以合同協(xié)議為準(zhǔn)

產(chǎn)品型號

品       牌

廠商性質(zhì)其他

所  在  地

聯(lián)系方式:郭經(jīng)理查看聯(lián)系方式

更新時間:2022-08-29 14:32:44瀏覽次數(shù):441次

聯(lián)系我時,請告知來自 環(huán)保在線

經(jīng)營模式:其他

商鋪產(chǎn)品:99條

所在地區(qū):

聯(lián)系人:郭經(jīng)理

產(chǎn)品簡介

Sol3A Class AAA Solar Simulators 太陽光模擬器

詳細(xì)介紹

Sol3A Class AAA Solar Simulators 太陽光模擬器

Leveraging over 40 years of experience in light source and power supply design, Newport’s Oriel® brand is proud to introduce the latest innovation in solar
simulators – the Oriel Sol3A™ Class AAA Solar Simulator family. The product family includes:

Model 94123A = 12 x 12 inch Beam Size
Model 94083A = 8 x 8 inch Beam Size
Model 94063A = 6 x 6 inch Beam Size
Model 94043A = 4 x 4 inch Beam Size
Model 94023A = 2 x 2 inch Beam Size

All Oriel Sol3A solar simulators are certified to IEC 60904-9 Edition 2 (2007), JIS C 8912, and ASTM E927-5 standards for Spectral Match, Non-Uniformity of
Irradiance, and Temporal Instability of Irradiance. By convention, Class AAA is reported with the first letter representing Spectral performance, the second
letter Uniformity of Irradiance, and the third letter Temporal Stability. The Oriel SOL 3A solar simulators all use a single lamp design to meet not one or two, but
all three performance criteria without compromising the 1 Sun output power, providing true Class AAA performance. The Oriel Sol3A uses a black non-
reflective finish to minimize stray light and incorporates captive screws for all panels requiring user access to facilitate lamp replacement, alignment, and filter
changes. Safety interlocks prevent inadvertent exposure to UV light. The Oriel Sol3A rugged design is backed by the Newport Corporation''s world wide
organization.

Why Class AAA?

Photovoltaic (PV) cell research and manufacturing are evolving at an amazing rate, with new technologies like thin film processes, tandem junction and multi-junction cells, organic thin films and dye sensitized cells all requiring careful evaluation of their performance. The old designation of “Class A" solar simulators had become standard in most test laboratories and manufacturing environments, but the definition of Class A has degraded to mean a system that is capable of meeting any one (typically spectral match) of the three performance parameters called out in the test methods. In October 2007 the IEC revised the method used to evaluate the performance of a solar simulator. The new standard calls for quantifying and reporting the performance of each of three performance criteria separately. A solar simulator is now measured as class A, B, or C for Spectral Match, Non-Uniformity of Irradiance, and Temporal Instability of Irradiance. The new Sol3A solar simulators have been designed to meet Class A performance for all 3 of the test requirements, Spectral Match, Non-Uniformity of Irradiance, and Temporal Instability of Irradiance as called out by IEC 60904-9 Edition 2 (2007) edition, JIS C 8912, and ASTM E 927-05.

By ensuring measurement uniformity that allows results comparability and traceability, Class AAA systems reduce binning variability of photovoltaic cell testing as compared to so called Class A, Class B or non-classified sources. This performance consistency allows for precise comparison of performance data for researchers engaged in developing novel solar materials.
Newport Corporation puts each Oriel Sol3A™ through rigorous testing for all 3 standards (IEC, STM, and JIS) to insure compliance and supplies a certificate of calibration for all three standards.

Defining Class AAA Performance Standards

Photovoltaic standards mandate that Class AAA solar simulators meet demanding requirements in three key performance areas: spectral match to the solar spectrum, spatial non-uniformity of irradiance, and temporal instability of irradiance.
There are three standards that define solar simulator performance.

  • IEC 60904-9 Edition 2 (2007) Photovoltaic Devices – Part 9: Solar Simulator Performance Requirements

  • JIS C 8912-1998, Solar Simulators for Crystalline Solar Cells and Modules

  • ASTM E 927-05 (2005) Specification for Solar Simulation for Terrestrial PV Testing

Table 1 Class AAA Standards and Specifications

OrganizationIECJISASTM
Performance Parameter60904-9-2007C 8912E92-05
Spectral Match
(fraction of ideal percentage)
0.75 - 1.250.75 - 1.250.75 - 1.25
Non-Uniformity of Irradiance2.0%2%
Temporal Instability0.5% STI2%


Spectral Match

The standards define the spectral match of a solar simulator as a percentage of the integrated intensity in 6 spectral ranges (listed in Table 2). Any deviation from the specified percentages must then lie within a range that determines the class of the simulator. For Class AAA, this range is 0.75 to 1.25 times the ideal percentage.

Spectral Match

Table 2 Ideal Spectral Match Defined by IEC Standards

Spectral Range (nm)Total Irradiance Range (%)Ideal %
400 - 50013.9 - 23.118.5
500 - 60015.1 - 25.120.1
600 - 70013.7 - 22.918.3
700 - 80011.1 - 18.514.8
800 - 9009.2 - 15.312.2
900 - 110012.1 - 20.116.1


Fig. 1 Oriel Sol3A Spectral Match with AM 1.5G
spectral correction filter meets IEC, JIS, ASTM Class A
requirements to for spectral match.

Spatial Uniformity of Irradiance

The irradiance uniformity over the work area is the most difficult Class AAA requirement to achieve and maintain. Hot spots can lead to significant errors in measured cell efficiency and can cause inaccurate binning of cells. The Class AAA spatial non-uniformity performance standard is designed to minimize the impact of hot spots and has a very stringent requirement of ≤2%. The plot below shows the uniformity of the irradiance across a typical simulator working area. Each unit will come with a plot of irradiance non-uniformity. The working distance ranges for each simulator are listed in Table 3.

Sol3A Working Distances

Table 3 Working Distances

ModelSizeWorking Distance Range (Inches)
94023A2 x 2 (50.8 x 50.8)12.0 ±0.5
94043A4 x 4 (101.6 x 101.6)4.0 ±0.5
94063A6 x 6 (152.4 x 152.4)5.0 ±0.5
94083A8 x 8 (203.2 x 203.2)15.0 ±0.5
94123A12x12 (304.8 x 304.8)



感興趣的產(chǎn)品PRODUCTS YOU ARE INTERESTED IN

環(huán)保在線 設(shè)計制作,未經(jīng)允許翻錄必究 .? ? ? Copyright(C)?2021 http://www.yixinui.com,All rights reserved.

以上信息由企業(yè)自行提供,信息內(nèi)容的真實(shí)性、準(zhǔn)確性和合法性由相關(guān)企業(yè)負(fù)責(zé),環(huán)保在線對此不承擔(dān)任何保證責(zé)任。 溫馨提示:為規(guī)避購買風(fēng)險,建議您在購買產(chǎn)品前務(wù)必確認(rèn)供應(yīng)商資質(zhì)及產(chǎn)品質(zhì)量。

會員登錄

×

請輸入賬號

請輸入密碼

=

請輸驗(yàn)證碼

收藏該商鋪

登錄 后再收藏

提示

您的留言已提交成功!我們將在第一時間回復(fù)您~
扶风县| 宝应县| 丰台区| 沁阳市| 建水县| 思茅市| 浪卡子县| 平陆县| 南开区| 化隆| 余庆县| 华安县| 视频| 永平县| 安图县| 长武县| 昌邑市| 彰化市| 利津县| 札达县| 逊克县| 丹江口市| 神木县| 酉阳| 闻喜县| 龙海市| 涟源市| 简阳市| 加查县| 精河县| 城固县| 曲水县| 威信县| 揭阳市| 岳阳市| 上杭县| 凌源市| 英吉沙县| 巩义市| 奉贤区| 湟源县|