手动太阳能电池测试套件

Manual Solar Cell Testing Kit

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T2002B2-G2009A.jpg

T2002B2-G2009A.jpg

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通过完整的解决方案控制您的太阳能电池测试,实现快速、可靠的器件表征。该套件包括:

  • 经过精心校准的 LED 太阳能模拟器,可提供高质量的光谱。实现出色的光谱匹配、空间均匀性和时间均匀性,以实现可靠的测试。
  • 双输出源测量单元,可完全控制您的测试参数。自定义测量并自信地捕获准确
    的 I-V 曲线和性能指标。

单独或一起使用源测量单元和太阳模拟器,以满足您的确切实验要求。


Specifications


Solar Simulator

Spectral Match A
Spatial Uniformity (over 15 mm diameter area) A
Spatial Uniformity (over 25 mm diameter area) B
Spatial Uniformity (over 32 mm diameter area) C
Temporal Instability A
Spectral irradiance graph measured at 1000 W/m2 (1 Sun)
Type LED-based, steady-state
Spectral Deviation <70%
Spectral Coverage >80%
Working Distance 8.5 cm
Irradiance (at working distance) 1000 W/m2
Maximum Lamp Time 10000 hours
Lamp Dimensions (L x W x H) 10.5 cm x 9.0 cm x 8.0 cm
Weight 600 g

Source Measure Unit

Voltage Source

Range Accuracy Precision Resolution
±10 V 10 mV 333 µV 170 µV

Voltage Measure

Range Accuracy Precision Resolution
±10V 10 mV 50 µV 10 µV

Current Measure

Range Max Current Accuracy1 Precision2 Resolution Burden
1 ±200 mA ±500 µA 10 µA 1 µA <20 mV
2 ±20 mA ±10 µA 1 µA 100 nA <20 mV
3 ±2 mA ±1 µA 100 nA 10 nA <20 mV
4 ±200 µA ±100 nA 10 nA 1 nA <20 mV
5 ±20 µA ±10 nA 1 nA 0.1nA <20 mV

1Accuracy has been measured at the maximum current of the range.
2Precision has been measured at the highest OSR (9).

Voltage Meter

Range Accuracy Precision Resolution
±10 V 10 mV 50 µV 10 µV

Please see the Source Measure Unit product page for full specifications.

Ossila Source Measure Unit with Test Board

Equipment Specifications

Compatible Substrates 20 mm x 15 mm (T2002B2-G2009A1 or T2002G2-G2009A1)
25 mm x 25 mm (T2002E2-G2009A1 or T2002G2-G2009A1)
Lamp Dimensions (L x W x H) 105 mm x 90 mm x 80 mm (4.31" x 3.54" x 3.15")
Source Measure Unit Dimensions (L x W x H) 185 mm x 125 mm x 55 mm (7.28" x 4.92" x 2.17")

Software


Solar Cell I-V

Solar Cell I-V SoftwareRapid device characterization with the Ossila Solar Cell I-V software

With the PC software, you can:

  1. Perform current-voltage measurements anywhere between -10 V and 10 V.

  2. Take high resolution measurements, with voltage increments as low as 170 µV.

  3. Manage the experiment more directly, with custom settle times between applying voltage and measuring current.

  4. Measure device hysteresis by perform consecutive measurements in forwards and backward directions.

The software has 3 measurement tabs: Solar Cell Characterization, Stabilized Current Output, and Solar Lifetime Measurement. 'Characterization' performs I-V measurements and calculates the important device properties, the 'Stabilized Current' tab allows you to determine how the current output of your device evolves over time using, and the 'Lifetime' tab enables you to track key device properties (PCE, FF, Jsc, Voc) over an extended time by performing periodic I-V characterization. Between measurements the solar cell can be held at open-circuit, short-circuit, or maximum power.

Software Requirements

Operating System Windows 10 (32-bit or 64-bit)
CPU Dual Core 2 GHz
RAM 2 GB
Available Hard Drive Space 192 MB
Monitor Resolution 1680 x 1050
Connectivity USB 2.0, or Ethernet (requires DHCP)

Learn about the Source Measure Unit Front Panel software.

Solar Simulator Console

Control and customize the output of your LED solar simulator. You can choose the overall power level or control each LED individually to tailor the output to your specific requirements. The user-friendly software can be installed on as many PCs as you want and you can access future updates for free.

Solar Simulator Console softwareSolar Simulator Console software

Software Requirements

Operating System Windows 10 or 11 (64-bit)
CPU Dual Core 2 GHz
RAM 4 GB
Available Hard Drive Space 142 MB
Monitor Resolution 1440 x 960
Connectivity USB



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