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94123A 3a太陽(yáng)光模擬器

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3a太陽(yáng)光模擬器

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杭州譜鐳光電技術(shù)有限公司(Hangzhou SPL Photonics Co.,Ltd)創(chuàng)立于2008年,經(jīng)過(guò)近10年公司同仁共同的的努力和發(fā)展,公司在光譜儀器、激光器系統(tǒng)及配件,生物光學(xué)和量子光學(xué)等領(lǐng)域和應(yīng)用有非常多的經(jīng)驗(yàn)和解決方案,同時(shí)也組建了一支專業(yè)的銷售和服務(wù)團(tuán)隊(duì)。

 

公司秉承專業(yè)服務(wù)客戶為上的目標(biāo),一直嚴(yán)格要求,以盡善盡美為工作方向,和客戶一起前行。目前公司在光譜儀器和激光檢測(cè)系統(tǒng)方面有自己的研發(fā)能力,開(kāi)發(fā)出了便攜式土壤重金屬分析儀(LIBS)、便攜式紅寶石標(biāo)壓系統(tǒng)、顯微拉曼測(cè)量系統(tǒng)等。同時(shí)公司時(shí)刻關(guān)注較早Z前沿的技術(shù)和產(chǎn)品,目前代理包括微型光纖光譜儀、紅外光譜儀,飛秒激光器,納秒激光器,可調(diào)諧激光器,窄線寬激光器,He-Ne激光器等各種激光器和配件。同時(shí)代理各類光電檢測(cè)設(shè)備,包括功率計(jì)、能量計(jì)、光束質(zhì)量分析系統(tǒng)、脈寬測(cè)量探測(cè)器和自相關(guān)儀、偏振態(tài)測(cè)量系統(tǒng)。還有代理各類光學(xué)配件,包括光學(xué)元器件,位移系統(tǒng),濾波片。

 

目前公司主要代理品牌如下:

美國(guó)海洋光學(xué):光纖光譜儀及配件;

美國(guó)CEO:激光二極管,二極管側(cè)泵模塊,各類納秒激光器,激光控制器;

奧地利Montfrot:適用于便攜的超緊湊納秒高能量激光器,大功率皮秒、飛秒激光器;

美國(guó)EOT:高品質(zhì)隔離器、各類光電探測(cè)器;

美國(guó)DataRay: 光束質(zhì)量分析系統(tǒng)及配件;

德國(guó)CarbonVision:高品質(zhì)碳纖維面包板及定制產(chǎn)品;

丹麥DFM:?jiǎn)晤l激光器;

德國(guó)GRINTECH:自聚焦透鏡、生物醫(yī)學(xué)用定制透鏡系統(tǒng);

法國(guó)IRISIOME:皮秒可編程調(diào)諧激光器;

德國(guó)LIOP:超穩(wěn)定高精度光學(xué)調(diào)整架及光機(jī)械產(chǎn)品;

德國(guó)MRC:光束自穩(wěn)定系統(tǒng);

立陶宛QLI:高能量緊湊風(fēng)冷納秒激光器,可五倍頻到213nm;

美國(guó)Axsun:OCT用高速掃頻激光光源;

ProSP:各類定制光譜系統(tǒng);

立陶宛Integrated Optics:超緊湊穩(wěn)定的半導(dǎo)體和DPSS激光器;

德國(guó)Class 5:高功率飛秒激光器系統(tǒng),OPCPA系統(tǒng)。

微型光纖光譜儀,激光器,激光測(cè)量?jī)x器,光學(xué)元件,光機(jī)械

Oriel Sol3A Class AAA Solar Simulators

?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.

Table 1 Class AAA Standards and Specifications

Organization IEC JIS ASTM
Performance Parameter 60904-9-2007 C 8912 E92-05
Spectral Match
(fraction of ideal percentage)
0.75 - 1.25 0.75 - 1.25 0.75 - 1.25
Non-Uniformity of Irradiance 2.0% <±2% 2%
Temporal Instability 0.5% STI <±1% 2%
  <2.0% LTI    

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 - 500 13.9 - 23.1 18.5
500 - 600 15.1 - 25.1 20.1
600 - 700 13.7 - 22.9 18.3
700 - 800 11.1 - 18.5 14.8
800 - 900 9.2 - 15.3 12.2
900 - 1100 12.1 - 20.1 16.1
Spectral Uniform Fig2Fig. 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

Model Size Working Distance Range (Inches)
94023A 2 x 2 (50.8 x 50.8) 12.0 ±0.5
94043A 4 x 4 (101.6 x 101.6) 4.0 ±0.5
94063A 6 x 6 (152.4 x 152.4) 5.0 ±0.5
94083A 8 x 8 (203.2 x 203.2) 15.0 ±0.5
94123A 12x12 (304.8 x 304.8)  
Irrad Uniform Plot Fig3Fig. 2 Measured Uniformity of a 2x2” Oriel Class AAA Solar Simulator.

Temporal Instability

Temporal Instability is the third performance parameter of Class AAA standards. It requires that the output light be stable over time in order to ensure that the lamp fluctuations do not distort the measurement of solar cell efficiency. Oriel’s Sol3A easily meets the requirements for temporal instability as defined by the IEC, ASTM, and JIS standards. The IEC 60904-9 (2007) has the most stringent requirements for short term instability with a maximum allowable level of 0.5%. Figure 4 shows a typical instability response for an Oriel Sol3A utilizing a 50 millisecond data acquisition time.

Elapsed Time (sec) 60
No. of Data Points 1200
% Instability 0.369
Temporal Fig4Fig. 3 Typical Output Variation of a 1.6 kW Oriel Sol3A Solar Simulator Over Time.

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