Quantum Efficiency Tester
PL/EL Integrated System
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In-Line Four Point Probe Tester
Four Point Probe Tester
In-Line Thin Film Thickness Tester
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FTIR Spectrometer
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Automatic Spectroscopic Ellipsometer
Contact Resistance Tester
Ultra depth of field 3D microscope
Auto Visual Tester
VMM PV Vision Measuring Machine
Solar Cell Horizontal Tensile Tester
Steady State Solar Simulator for Solar Cell
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Solar Cell Comprehensive Tensile Tester
Visual Inspection Tester
Wet Leakage Current Tester
PV Module EL Tester
PV Module UV Preconditioning Chamber
Steady State Solar Simulator for PV Module
Current Continuous Monitor
Potential Induced Degradation Test
Bypass Diode Tester
LeTID Test System
Reverse Current Overload Tester
Impulse Voltage Tester
Hipot Insulation Tester
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Hipot Insulation Ground Tester
Damp Heat Test Chamber
Humidity Freeze Test
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Dynamic Mechanical Load Tester
Static Mechanical Load Tester
Hail Impact Tester
Robustness of Termination Tester
Module Breakage Tester
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Universal Testing Machine (Single-arm)
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Acetic Acid Test Chamber
EVA Degree of Crosslinking Test System
Junction Box Comprehensive Tester
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Maximum Power Point Tracker
Perovskite Glass Transmittance Tester
Perovskite P1 Laser Scribing Multifunctional Testing Machine
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Perovskite Process Inspection Workstation
Portable IV Curve Tester
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Portable Thermal Imaging Tester
Solar Module Multi-Channel Testing System
PV Inverter Power Quality Tester
Drone EL Tester
In-Line Four Point Probe Tester
FPP230 Auto
Accuracy: Comparable to offline four-probe systems, allowing customers to adhere to a unified standard for calibration.
Seamless Integration: Compatible with various automation manufacturers, supporting data transmission through PLC/LAN/MES, etc.
Custom Test Points: Customers can define 1-9 test points, with a maximum testing time of 10 seconds to complete 9-point testing, minimizing production impact.
Cost-Effective: Compared to non-contact systems on the market, it offers reduced costs, improved accuracy, and significant advantages in multi-point testing speed.
Non-Destructive Testing
The four-point probe is designed with precision measurement of delicate samples in mind, featuring gentle spring-loaded contacts and rounded tips.
The probe pressure is maintained at 3-5N to prevent the probe from piercing fragile films while still providing good electrical contact.
1% Industry-Leading Accuracy
Compared to non-contact eddy current measurements, four-probe technology offers higher resolution, good accuracy, long-term stability, and a wider measurement range.
Non-contact eddy current measurements combine the resistivity of the thin layer of the substrate with the resistivity of the surface layer, leading to uncertainty.
Data Acquisition Visualization
Millennial Smart FPP software combines data acquisition with powerful analytical capabilities, featuring an intuitive visual interface that can be used both on the device itself and offline.
As shown, Smart FPP can display measurement results in 2D or 3D formats, providing quick visual representation of key thin film uniformity data. The software allows for easy switching between various measurement parameter distribution maps and rotatable 3D graphs to provide the optimal customized process parameter view.
9 points per measurement; specific positions can be customized based on customer requirements;
supports point reduction to shorten testing time
For the same sample measured 10 times, the range of data for each point should be ≤3% (Range calculation formula: (Maximum value - Minimum value) / (Maximum value + Minimum value) from 10 measurements of the same point)
Related Videos
Millennial In-line Four Point Probe Tester Measurement Demonstration
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