SS-LED220EX 宽光谱扩展型 LED 太阳光模拟器

NT$100

1800 nm 全光谱 AM0/AM1.5G | 面向长期稳定性测试的双模式 LED 太阳光模拟器

SS-LED220EX 是一款大面积、Class A++ 可调光谱 LED 太阳光模拟器,其全光谱覆盖范围扩展至 1800 nm。该系统可在单台设备中提供 AM0 和 AM1.5G 光照环境,适用于空间光伏、多结(Multi-junction)及叠层(Tandem)太阳能电池测试。

主要性能:

  • 双光谱切换: 支持 AM0/AM1.5G 光谱一键切换,构建“一套系统、多种应用”的工作流——覆盖从 AM0 卫星太阳能帆板验证,到 AM1.5G 钙钛矿-硅叠层器件表征(Characterization)的需求。

  • 全范围光谱稳定: 提供 0–100% 辐照度控制,并在调节范围内保持光谱稳定性。

  • 高精度指标: 空间不均匀度指标优于 Class A 要求,且符合 IEC 60904-9ASTM E927 及 JIS C8912 标准。

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    产品描述

    SS-LED220EX Class A++ 可调光谱大面积 LED 太阳光模拟器集成了先进的 LED 技术,具备 0–100% 全范围辐照度控制功能,并在调节范围内保持光谱稳定性。通过将光谱范围扩展至 1800 nm 并支持 AM0/AM1.5G 一键切换,该系统提供了一套集成化解决方案:
    • 多功能表征: 适用于多结(Multi-junction)、叠层(Tandem)、钙钛矿(Perovskite)及有机太阳能电池的测试。
    • 高性能指标: 光谱匹配度与时间不稳定性均达到 Class A++ 性能水平,且空间不均匀度优于 Class A 规范
    • 符合标准: 设备设计完全符合 IEC 60904-9 与 ASTM E927 标准。
    这种高稳定性与精确度使其成为光敏感新型光伏技术进行长期稳定性与寿命测试的高效工具。它能有效减少因光源波动造成的测量误差,提升数据准确性。此外,长寿命 LED 光源具备超过 10,000 小时的运行寿命,显著降低运营成本。

    产品特点

    面向 AM0/AM1.5G 全光谱测试的 Class A++ 光谱与时间稳定性

    SS-LED220EX 在 AM0 与 AM1.5G 模式下,均能提供达到 Class A++ 等级的光谱匹配度与时间不稳定性。关键性能指标包括:

    • AM1.5G 光谱失配度:< 6.25%
    • 辐照度时间不稳定性:< 0.5%
    • 空间不均匀度:优于 Class A 规范(< 2%)
    确保严格符合 IEC 60904-9 与 ASTM E927,此稳定性实现了高重复性的模拟环境。特别适用于表征对光照稳定性敏感的器件——如低带隙有机材料、钙钛矿及叠层/多结电池——以确保数据可靠性。

    LED 可调光谱与 AM0/AM1.5G 双模式:可变辐照度,稳定光谱

    SS-LED220EX 采用创新的 LED 设计,克服传统灯泡式限制。它提供在 0–100% 全强度范围内无缝、精准的辐照度控制,同时保持光谱形状稳定。这种“可变辐照度、稳定光谱”架构实现了 AM0/AM1.5G 光谱一键切换,使单台系统即可处理:

    • 空间光伏(Space PV)的 AM0 测试。
    • 地面器件的 AM1.5G 测试。
    • 针对新兴材料的定制化光谱研究。

    长效 LED 寿命,支持长期稳定性与寿命测试

    SS-LED220EX 的 LED 光源运行寿命超过 10,000 小时。与传统灯泡式模拟器相比,此长寿命设计大幅降低了长期运营成本与维护工作量。通过减少因耗材更换造成的中断,系统支持连续的太阳能电池寿命测试,协助实验室维持高运转率与一致的测试条件。

    大面积光照设计,满足灵活与高通量测试

    本系统具备 220 mm × 220 mm 大面积光照区,可单次曝光大面积器件或多个小尺寸样品。这提升了多结、叠层或模组化 PV 测试流程的通量。系统支持四种出光方向(上、下、左、右),为集成各种测试站提供灵活性。*注:非向下出光配置需选配调整套件。*

    KA6000-1

    IVS-KA6000 & KA Viewer 软件:全方位智能测量与分析

    钙钛矿与有机太阳能电池效率优化的重要工具:
    光焱科技(Enlitech)的 IVS-KA6000 与 KA7000 软件为 SS-X 与 SS-PST 系列模拟器提供先进 I-V 特性表征。功能包括:

    • 正/反向 I-V 扫描与多通道自动化测试。
    • 针对钙钛矿测量的创新 NREL 渐近检测法。
    • 精准的光源时序控制与符合 IEC 标准的校准。
    这些工具提升了数据的可靠性与重复性,加速高效太阳能电池的开发。

    出光方向

    SS-LED220EX 采用标准向下出光设计,优化用于 >220 mm × 220 mm 光照区,以支持高通量 PV 测试。 系统支持自动化实验流程与数据采集,适用于 AM0/AM1.5G I-V 扫描与稳定性测试。它提供精准的光照时序控制,有助于在 350–1800 nm 全光谱 LED 光照下,提升关键参数(Voc、Isc、FF、Pmax)的测量重复性。

    太阳能电池校准与测试实验室

    光焱科技(Enlitech)的校准实验室于 2012 年获得 ISO/IEC 17025 认证。我们使用包括 SS-X 太阳光模拟器与 QE-R 量子效率测量系统等先进仪器。2020 年,我们转换至 ISO/IEC 17025:2017 标准。我们提供:
    • 太阳能电池量子转换效率认证。
    • 依据 IEC 60904-1 与 IEC 60904-8 进行的量子效率测量。
    • 通过 NREL、Fraunhofer ISE 或 NIM 校准溯源至 SI 单位。
    SS-X-Feature-8-1

    SS-LED220EX 维护服务

    • 为确保 SS-LED220EX 长期维持 Class A++ 光谱与时间稳定性性能,建议每年使用标准参考电池进行仪器校准
    • 作为制造商,Enlitech 运营 ISO/IEC 17025 量子效率校准实验室以提供专业支持。
    • Enlitech 可通过合格的专业工程师提供现场测量与调整服务。
    • Enlitech 在保修期后持续提供维护服务,确保系统处于最佳状态。

    技术参数

    功能与控制

    • 自动辐照度测试:支持 10–100% 辐照度调节,并保持光谱一致性
      (需配合 IVS-KA6000 软件)

    • I-V 扫描及分析:支持不同温度下六大关键参数(Voc, Isc, FF, Imax, Vmax, Pmax, η, Rs, Rsh)的测量
      (需选配温控器及 IVS-KA6000 软件)

    • 兼容多通道切换测试:支持连接自动多路复用器(标准 8 通道,最大可扩展至 32 通道)
      (选配附件;需配合 IVS-KA6000 软件)

    光源系统性能

    • 照射模式: 向下出光方向

    • 有效光照面积:> 220 mm × 220 mm

    • 光谱范围:350 nm – 1800 nm

    • 光谱匹配度 (AM1.5G):光谱失配度 < 6.25% (Class A++)

    • 光谱匹配度 (AM0):光谱失配度 < 25% (Class A)

    • 空间辐照不均匀度:< 2% (Class A)

    • 时间不稳定性:< 0.5% (Class A++)

    • 辐照强度:优于 1.2 Suns(可达 1200 W/m²)

      • 选配:可达 1.5 Suns(最大 1500 W/m²)

    • 标准光谱:AM1.5G、AM0(支持定制光谱)

    • 工作距离:5–10 cm

    • 安全保护:具备过温自动保护功能

    • 计时功能:配备光源使用时间计数器

    • LED 光源寿命:平均 > 10,000 小时

    • 红外扩展光源寿命:平均 > 500 小时

    ModelOutput Beam SizeSpectrumUniformityInstabilityWorking Distance
    SS-LED220 x 220 mmA++ (AM1.5 G Spectral Mismatch < 6.25%)A (<2%)A++ (<0.5%)50-100mm

    System design

    应用领域

    • 多种太阳能电池效率测试:SS-LED220EX 作为一款 Class A++ 可调光谱 LED 太阳光模拟器,具备定制化光谱能力,可执行六大关键参数(Voc, Isc, FF, Imax, Vmax, Pmax, η, Rs, Rsh)的测量。该设备适用于多种光伏器件的测试,包括但不限于:
      • 钙钛矿太阳能电池(Perovskite)效率测试
      • 有机太阳能电池(Organic Solar Cell)效率测试
      • 钙钛矿/硅叠层太阳能电池(Tandem Solar Cell)效率测试
      • 异质结(HJT)硅太阳能电池测试
      • 钝化发射极背接触(PERC)硅太阳能电池测试
      • 隧穿氧化层钝化接触(TOPCon)硅太阳能电池测试
    • 太阳能电池特性表征分析:SS-LED220 支持多种分析功能,助力对太阳能电池特性的深入研究:
      • 理想因子(Ideality factor, n)测试与分析
      • 太阳能电池开路电压(Sun-Voc)测量
      • 太阳能电池辐照度线性度(Sun-Isc)测量
      • 反向饱和电流密度(J0)分析
      • 温度系数修正(α, β)分析
      • 填充因子(Fill Factor)损耗测量分析
      • 多温度实验(Multi-temperature experiments):用于热稳定性评估及温度系数提取

    Customer testimonials

    Publications

    Reducing Depletion Region Width at Electrode Interface via a Hole‐transport Layer for Over 18% Efficiency in Organic Solar Cells

    Yi Yang, Bowei Xu, Jianhui Hou
    First published: 15 November 2023 https://doi.org/10.1002/smll.202306668

    … the devices were recorded on a source measurement unit, and the measurement was carried out under AM 1.5G illumination based on a class A+AA+ solar simulator (Enlitech SS-X50) …

    Reference to:SS-X50


    Passivating defects in SnO2 electron transport layer through SnF2 incorporation in perovskite solar cells

    Fengxuan Chen , Xin Hu , Longhao Jisi , Liping Su, Huiyao Zhao , Yanbei Wei , Rui Zhou , Yangdi Chen , Jun Qu , Yonglian Xiong , Mao Liang , Wenfeng Zhang
    Volume 38, March 2024, 108552 https://doi.org/10.1016/j.mtcomm.2024.108552

    … (Enli Tech, SS-F5–3A, Taiwan). The external quantum efficiency (EQE) spectra and integral current densities in the wavelength range of 300 ∼ 850 nm were measured using an EQE … 

    Reference to:SS-F5-3A


    Defect Passivation and Fabrication of Stable Large-Area (2.0 cm2) Perovskite Solar Cells with Cost-Effective Metal Contacts

    Naba Kumar Rana*, Dhruv Pratap Singh, and Nikhil Chander*
    Publication Date:April 17, 2024 https://doi.org/10.1021/acsaelm.4c00182

    … The photocurrent–voltage (J–V) characteristics curve was measured using a Keithley 2450 source meter, an Enli-Technology Co, Ltd. (Model No-SS-F5–3A, Taiwan) solar simulator …

    Reference to:SS-F5-3A、Model No-SS-F5–3A


    Defect passivation with bromine template for efficient perovskite solar cells

    Zhuowei Du, Zhu Ma, Qianyu Liu, Zhangfeng Huang, Tangjie Yu, Yanlin Li, Shanyue Hou, Yi Chen, Qiang Yang, Wei You, Junbo Yang, Guoming Li, Jingjing Xu, Hao Du, Yixian Li, Zichen Liu, Yuelong Huang, Jian Yu, Kuan Sun, Yaohua Mai, Rong Su
    Volume 173, April 2024, 108138 https://doi.org/10.1016/j.mssp.2024.108138

    … simulator (Enli Tech, SS-F5-3A, Taiwan) in glovebox. The active area of PSCs was 0.105 cm 2 . The maximum power point tracking (MPPT) stability test is continuously tested under the …

    Reference to:SS-F5-3A


    A Direct Chemical Approach to Mitigate Environment Lead Contamination in Perovskite Solar Cells

    by Benjamin Liu, Zihan Jia and Zhiliang Chen *
    Published: 28 March 2024 https://doi.org/10.3390/en17071629

    … (100 mW/cm2), courtesy of the SS-F5-3A solar simulator from Enli Technology, Co., Ltd. (Taiwan, China). The measurement took place in ambient conditions and at room temperature. …

    Reference to:SS-F5-3A


    Low-temperature processed planar perovskite solar cells based on bilayer electron transport layer stabilized using a surface defect passivation strategy

    Naba Kumar Rana, Manas R. Samantaray, Dhruv Pratap Singh Nikhil Chander
    Published: 08 January 2024 https://doi.org/10.1007/s00339-023-07243-3

    … (AM 1.5G, 1000 W/m 2 ) using a solar simulator system (Enli-Technology Co. Ltd, Model No.-SS-F5-3A, Taiwan). The intensity of the light was calibrated using a standard reference …

    Reference to:SS-F5-3A、Model No.-SS-F5-3A


    Efficient micrometer-scale thick-film perovskite solar cells with superior stability

    Jian-Fei Hu, Gang Chen, Shun-Zhang Yu, Yue-Xin Lin, Kai-Yu Wang, Zong-Wei Li, Guo-Dong Zhang, Teng-Fei Pan, Ya-Jing Li, Ming-Jie Li, Ying-Dong Xia, Yi-Fan Lv Yong-Hua Chen
    Published: 29 December 2023 https://doi.org/10.1007/s12598-023-02529-0

    … A Keithley 2400 source meter and an Enlitech SS-F5-3A solar simulator (Enli Tech,

    Taiwan, China) were used to test the devices. NIST-certified monocrystalline Si solar cell (Newport …

    Reference to:SS-F5-3A


    Fabrication of Highly Efficient and Ambient Stable Planar MAPbI3 Perovskite Solar Cells via Defect Passivation through Crosslinking Strategy

    Tapas Das, Arun Kumar, Sonia Rani, Asim Guchhait, Dhriti Sundar Ghosh
    First published: 20 February 2024 https://doi.org/10.1002/adem.202302078

    … 5G (100 mW/cm2) intensity sunshine solar simulator was used to capture the JV curves (Enli-Technology Co, Ltd, Model No – SS-F5-3A, Taiwan). A reference silicon cell that meets …

    Reference to:SS-F5-3A、Model No – SS-F5-3A


    Introducing back-surface field for efficient inverted CsPbI3 perovskite solar cells

    Chunyan Lu, Xiaodong Li, Haobo Yuan, Wenxiao Zhang, Xuemin Guo, Acan Liu, Hui Yang, Wen Li, Zhengbo Cui, YuYang Hu, Junfeng Fang
    Volume 480, 15 January 2024, 147267 https://doi.org/10.1016/j.cej.2023.147267

    … (Enlitech, SS-F5-3A) with simulated AM 1.5G illumination (100 mW cm −2 ). The light source is a 450-W xenon lamp calibrated by a standard Si reference solar cell (Enli/SRC2020, SRC– …

    Reference to:SS-F5-3A、SRC2020


    Diffusible capping layer enabled homogeneous crystallization and component distribution of hybrid sequential deposited perovskite

    Qiaojing Xu, Biao Shi, Yucheng Li, Jingjing Liu, Yuxiang Li, Zetong SunLi, Pengfei Liu, Yubo Zhang, Cong Sun, Wei Han, Qian Huang, Dekun Zhang, Huizhi Ren, Xiaona Du, Ying Zhao, Xiaodan Zhang
    First published: 08 November 2023 https://doi.org/10.1002/adma.202308692

    … source meter under AM 1.5G illumination with a xenon-lamp-based solar simulator (Enli. Tech., SSF5-3A). The light intensity was calibrated to 100 mW/cm2 by a standard silicon cell …

    Reference to:SSF5-3A

    Efficient inverted CsPbI3 perovskite solar cells fabricated in common air

    Chunyan Lu , Xiaodong Li , Xuemin Guo , Sheng Fu , Wenxiao Zhang , Haobo Yuan , Junfeng Fang
    Volume 452, Part 3, 15 January 2023, 139495 https://doi.org/10.1016/j.cej.2022.139495

    , SS-F5-3A) with simulated AM 1.5G illumination (100 mW cm −2 ). The light source is a 450-W xenon lamp calibrated by a standard Si reference solar cell (Enli… (Enlitech, SS-F5-3A) with … 

    Reference to:SS-F5-3A


    RETRACTED: Interfacial passivation by Mono-ethanolamine in planar perovskite solar-cell

    Naba Kumar Rana , Pijus Kanti Samanta
    Volume 348, 1 October 2023, 134689 https://doi.org/10.1016/j.matlet.2023.134689

    … 5G (100 mW/cm2) intensity sunlight solar simulator (Enli-Technology Co, Ltd, Model No-SS-F5-3A, Taiwan). The intensity of the light was calibrated using a Contents lists available at …

    Reference to:SS-F5-3A、Model No-SS-F5-3A


    An organic small molecule as a solid additive in non-fullerene organic solar cells with improved efficiency and operational stability

    Yi-Nuo Yang, Xiao-Ming Li, Shi-Jie Wang, Xiao-Peng Duan, Yun-Hao Cai, Xiao-Bo Sun, Dong-Hui Wei, Wei Ma Yan-Ming Sun
    Published: 20 October 2022 https://doi.org/10.1007/s10118-022-2860-8

    … (Enli Technology Co., Ltd., SS-F5-3A). The representative current density-voltage (J-V) curves for optimized OSCs are illustrated in Fig. 2(a), and the corresponding photovoltaic …

    Reference to:SS-F5-3A


    Iodine-trapping strategy for light-heat stable inverted perovskite solar cells under ISOS protocols

    Xiaodong Li, Hui Yang, Acan Liu, Chunyan Lu, Haobo Yuan, Wenxiao Zhang and Junfeng Fang
    First published 07 Nov 2023 DOI https://doi.org/10.1039/D3EE03405D

    … To calibrate the initial illumination intensity to 100 mW cm −2 , the PSC is first measured under a solar simulator (Enlitech, SS-F5-3A) with simulated AM 1.5G illumination (450 W xenon …

    Reference to:SS-F5-3A


    Tuning Ag quantum clusters in glass as an efficient spectral converter: From fundamental to applicable

    Wenyan Zheng, Pengcheng Li, Chenhao Wang, Xvsheng Qiao, Guodong Qian, Xianping Fan
    Volume 599, 1 January 2023, 121910 https://doi.org/10.1016/j.jnoncrysol.2022.121910

    … The current density-voltage (JV) curves of OSCs were tested on Keithley 2400, under AM 1.5 G by an Enli SS-F5–3A solar simulator whose light intensity was calibrated with a standard …

    Reference to:SS-F5-3A


    Enhancing efficiency and stability of perovskite solar cells through two-step deposition method with the addition of cesium halides to PbI2 precursor

    Seoungjun Ahn , Wei-Hao Chiu , Hsin-Ming Cheng , Vembu Suryanarayanan , Gao Chen , Yu-Ching Huang , Ming-Chung Wu , Kun-Mu Lee
    Volume 120, September 2023, 106847 https://doi.org/10.1016/j.orgel.2023.106847

    … The AM 1.5G solar simulator (SS-F5-3A, ENLI Technology Co. Ltd. ) was used as the irradiation light source for the current density–voltage (J–V) measurements. The illumination …

    Reference to:SS-F5-3A


    A multifunctional and scalable fullerene electron transporting material for efficient inverted perovskite solar cells and modules

    Kangrong Yan, Ziqiu Shen, Benfang Niu, Yanchun Huang, Di Wang, Emely Gu, Buyi Yan, Jizhong Yao, Hongzheng Chen Chang-Zhi Li
    Published: 10 May 2023 https://doi.org/10.1007/s11426-023-1596-9

    … from Enli Technology (Enlitech, SS-F5-3A), and the light intensity was calibrated with a certified standard photovoltaic reference cell (SRC2020, Enlitech). The JV measurements were…

    Reference to:SS-F5-3A、SRC2020


    Fabrication of a Highly Functional TiO2/AZO Bilayer Electron Transport Layer for Planar Perovskite Solar Cells

    Naba Kumar Rana, Arun Kumar, Nikhil Chander, and Dhriti Sundar Ghosh *
    Publication Date:January 23, 2023 https://doi.org/10.1021/acsaelm.2c01552

    … 5G (100 mW/cm 2 ) intensity sunlight solar simulator (Enli-Technology Co, Ltd, Model No – SS-F5-3A, Taiwan). The intensity of the light was calibrated using a standard reference silicon …

    Reference to:SS-F5-3A、Model No – SS-F5-3A


    Structural optimization of inverted CsPbI2Br perovskite solar cells for enhanced performance via SCAPS-1D simulation

    Tapas Das , Naba Kumar Rana and Asim Guchhait
    Published 20 June 2023 https://doi.org/10.1088/1402-4896/acdc65

    … 5G (100 mW cm −2 ) intensity Sunshine solar simulator was used to capture the JV curves (Enli-Technology Co, Ltd., Model No – SS-F5–3A, Taiwan). A reference silicon cell that meets …

    Reference to:SS-F5-3A、Model No – SS-F5–3A


    Gelation of hole transport layer to improve the stability of perovskite solar cells

    Ying Zhang, Chenxiao Zhou, Lizhi Lin, Fengtao Pei, Mengqi Xiao, Xiaoyan Yang, Guizhou Yuan, Cheng Zhu, Yu Chen Qi Chen
    Published: 10 July 2023 https://doi.org/10.1007/s40820-023-01145-y

    … 5G illumination at 1000 W m −2 solar simulator (SS-F5-3A, Enlitech). The JV scan method was by reverse scanning from 1.2 to − 0.2 V or forward scanning from − 0.2 to 1.2 V at a …

    Reference to:SS-F5-3A

    A-site cation engineering enables oriented Ruddlesden-Popper perovskites towards efficient solar cells

    Rui Liu, Yue Yu, Chang Liu, Hua Yang, Xiao-Lei Shi, Hua Yu Zhi-Gang Chen
    Published: 09 October 2022 https://doi.org/10.1007/s11426-022-1349-6

    … Simulated solar illumination was provided by an AAA Class Solar Simulator (Enli Tech, SS-F5-3A, Taiwan, China) with AM1.5G spectrum and light intensity of 100 mW cm … 

    Reference to:SS-F5-3A


    Intrinsically inert hyperbranched interlayer for enhanced stability of organic solar cells

    Yawen Li, Tengfei Li, Jiayu Wang, Xiaowei Zhan, Yuze Lin
    Volume 67, Issue 2, 30 January 2022, Pages 171-177 https://doi.org/10.1016/j.scib.2021.09.013

    … The current density–voltage (J–V) characteristics were measured under AM 1.5G spectrum from a solar simulator (Enlitech model SS-F5-3A) and a Keithley 2450 source-measure unit. …

    Reference to:SS-F5-3A


    Small molecule interfacial cross-linker for highly efficient two-dimensional perovskite solar cells

    Hongming Hou, Taotao Hu, Fu Zhang, Rui Liu, Jialong He, Chang Liu, Yue Yu, Dong Chen, Qiaofeng Wu, Meng Zhang, Hua Yu
    Volume 68, May 2022, Pages 35-41 https://doi.org/10.1016/j.jechem.2021.10.026

    … The photocurrent density–voltage (JV) curves of devices were acquired using a Keithley B2901A SourceMeter and AAA Class Solar Simulator (SS-F5-3A, Enli Technology Co., Ltd.), …

    Reference to:SS-F5-3A


    Heterogeneous lead iodide obtains perovskite solar cells with efficiency of 24.27%

    Qianyu Liu, Zhu Ma, Yanlin Li, Guangyuan Yan, Dejun Huang, Shanyue Hou, Weiya Zhou, Xin Wang, Jie Ren, Yan Xiang, Rui Ding, Xuelin Yue, Zhuowei Du, Meng Zhang, Wenfeng Zhang, Lianfeng Duan, Yuelong Huang
    Volume 448, 15 November 2022, 137676 https://doi.org/10.1016/j.cej.2022.137676

    … The simulated sunlight was offered by the AAA solar simulator (SS-F5-3A, Enli Technology Co., Ltd.). With the AM1.5 G spectrum, the intensity of the solar simulator was calibrated to …

    Reference to:SS-F5-3A


    Stability study of large‐area perovskite solar cells fabricated with copper as low‐cost metal contact

    Manas R. Samantaray, Naba Kr. Rana, Arun Kumar, Dhriti S. Ghosh, Nikhil Chander
    First published: 02 September 2021 https://doi.org/10.1002/er.7243

    … The current density-voltage (J-V) curves of PSCs were recorded using a class AAA solar simulator (Enli-Technology Co. Ltd, Model No-SS-F5-3A, Taiwan ).
    The devices were measured …

    Reference to:SS-F5-3A、Model No-SS-F5-3A


    Subtle alignment of organic semiconductors at the donor/acceptor heterojunction facilitates the photoelectric conversion process

    Yu-Xuan Liu, Liang Wang, Ke Zhou, Hong-Bo Wu, Xiao-Bo Zhou, Zai-Fei Ma, Sheng-Wei Guo Wei Ma
    Published: 21 June 2022 https://doi.org/10.1007/s10118-022-2759-4

    … J-V characteristic was measured in the N2 glovebox under AM 1.5G (100 mW·cm−2) using an AAA solar simulator (SSF5-3A, Enli Technology Co., Ltd.) calibrated with a standard …

    Reference to:SS-F5-3A


    Large-area Si solar cells based on molybdenum oxide hole selective contacts

    Manas R. Samantaray, Tushar Chichkhede, Dhriti S. Ghosh Nikhil Chander
    Published: 23 February 2022 https://doi.org/10.1007/s12633-022-01743-2

    … class AAA solar simulator (Enli-Technology Co. Ltd., Model No- SS-F5-3A, Taiwan ) having a…
    … using a quantum efficiency measurement system (Enli-Technology Co. Ltd. Model No-QE-R

    Reference to:SS-F5-3A、Model No- SS-F5-3A、Model No-QE-R


    Ligand exchange engineering of FAPbI3 perovskite quantum dots for solar cells

    Wentao Fan, Qiyuan Gao, Xinyi Mei, Donglin Jia, Jingxuan Chen, Junming Qiu, Qisen Zhou Xiaoliang Zhang
    Published: 23 September 2022 https://doi.org/10.1007/s12200-022-00038-z

    … 5G, 100 mW/cm 2 ) provided by a solar simulator (Enli Technology Co., Ltd. SS-F5-3A ), the …
    … The external quantum efficiency (EQE) spectrum was measured using an Enli Technology …

    Reference to:SS-F5-3A


    α-Phase intermediate for efficient and stable narrow bandgap triple cation perovskite solar cells

    Lin Du, Changtao Peng, Qian Chen, Yu Tang, Hui Su, Wenfeng Zhang, Haijin Li, Qiyun Wang, Yan Xiang, Liuwen Tian, Puan Lin, Shenghou Zhou, Yuelong Huang
    Volume 910, 25 July 2022, 164722 https://doi.org/10.1016/j.jallcom.2022.164722

    … (Enli Tech, SS-F5–3A, Taiwan), which was calibrated by a standard silicon solar cell. The JV characteristics were recorded sweeping the voltage from forward bias to short circuit …

    Reference to:SS-F5-3A


    Efficient Energy Level Modulation via Electrophilic KBF4 for High-Performance Inverted Planar Perovskite Solar Cells with Superior Stability

    by Qiaofeng Wu , Taotao Hu, Chang Liu, Yue Yu, Hongming Hou, Rui Liu, Meng Zhang, and Hua Yu*
    Publication Date:February 10, 2022 https://doi.org/10.1021/acs.jpcc.2c00283

    … Illumination was provided by an AAA Class Simulator (SS-F5-3A, Enli Technology Co., Ltd.) under AM 1.5G spectrum and a light intensity of 100 mW/cm 2 . In addition, the light intensity…

    Reference to:SS-F5-3A

    配件

    标准电池 (Reference Cells) 

    光焱科技 (Enlitech) 提供种类丰富的标准电池选择,符合 WPVS 封装类型与 IEC 60904 标准。标准电池旨在辅助进行准确的太阳能电池表征,以适应各类新兴光伏技术的快速发展。通过独特的滤光片嵌入技术,我们能够设定特定的光谱波长响应范围,从而有效降低太阳光模拟器与新兴太阳能电池材料之间的光谱失配 (Spectral Mismatch)。

    经过校准的标准电池是太阳光模拟器校准与精准电池表征的重要组成部分。光焱科技的校准实验室已通过 ISO/IEC 17025 标准认证。所有 SRC-2020 系列标准电池的校准均可溯源至 NIST。此外,光焱科技也提供专业的标准电池重新校准服务。

    09_SRC-2020_标准电池

    光焱科技提供多种太阳能标准电池,用于校准太阳光模拟器或日光模拟器的辐照强度。光谱响应曲线如下图所示。每套标准电池组件包含一个带光学窗口的 WPVS 封装硅标准电池、两根 Lemo 连接线,以及一份经认证的日光强度校准报告。

    软件 

    IVS-KA6000:专业高效的电流-电压 (I-V) 测量软件

    2024Enlitech-Reference-Cell-Spectral-Chart-1
    2024Enlitech-Reference-Cell-Spectral-Chart2

    所有 SS-X 系列太阳光模拟器均可通过 IVS-KA6000 进行控制,这是一款专为精密光伏特性表征而设计的电流-电压 (I-V) 测量软件。用户不仅可以通过 IVS-KA6000 软件控制光闸 (Shutter),还能直接控制输出辐照度。这使得用户能够轻松完成复杂的 I-V 测试,例如在不同辐照度水平下的测试,或太阳能电池开路电压 (Sun-Voc) 测量。所有来自 IVS-KA6000 的数据均可导入多功能分析软件 IVS-KA-Viewer 进行读取与分析。

    显著提升测试效率:在过去,测量并拟合太阳能电池的理想因子 (Ideality factor n) 是一项耗时的工作。例如,在 10 种不同辐照度水平下获取 10 条 I-V 曲线通常需要一小时,整理数据又需花费约一小时。然而,通过结合 SS-X 太阳光模拟器、IVS-KA6000IVS-KA-Viewer 的集成测试方案,理想因子 N 的测量与拟合可在数分钟内完成。如果您对此感兴趣,欢迎联系我们了解详情。

    KA6000-1

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