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  • Outdoor Multi-Channel Photovoltaic Module Steady-State Test System
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Outdoor Multi-Channel Photovoltaic Module Steady-State Test System

Up to 100 channels enable unmatched test throughput. Real-time MPPT tracks true outdoor power performance. I-V sweeps and field data are recorded automatically. IP67 outdoor design supports long-term aging studies.
  • LECHENG
  • Jiangsu China

Product Description

The OT-MCTA-100T Outdoor Multi-Channel Photovoltaic Module Steady-State Test System is designed for outdoor field testing, long-term aging studies, and real-environment performance validation of photovoltaic modules and small PV devices.

Its biggest advantage is the ability to support up to 100 simultaneous outdoor test channels. This gives the system an industry-leading high-throughput capability that is rarely seen in current PV aging platforms. For perovskite, thin-film, and small PV module development, researchers can compare more samples under the same outdoor conditions, greatly improving data efficiency and shortening reliability validation cycles.

The system combines multi-channel electronic loads, real-time MPPT algorithms, I-V curve testing, environmental monitoring, automatic data saving, labeling, and remote transmission to an indoor host. It continuously tracks voltage, current, power, maximum power point data, solar irradiance, module temperature, and ambient humidity under natural sunlight conditions.

Product Functions

The system supports MPPT maximum power point tracking and I-V curve forward/reverse sweep testing, helping users monitor real outdoor power generation performance over time. It can automatically save, label, and transmit test data to the indoor host, reducing manual operation during long-term outdoor testing.

Environmental monitoring is also integrated into the system. Solar irradiance, module temperature, and ambient humidity are recorded together with electrical data, making it easier to analyze how outdoor conditions affect module degradation and performance drift.

Key Features

  • 100-Channel High Throughput: Supports up to 100 channels for large-scale outdoor comparison testing.

  • Real Outdoor Validation: Uses natural sunlight to obtain field-level performance data.

  • Real-Time MPPT Tracking: Continuously tracks true power output of each PV module.

  • Complete Data Traceability: Electrical and environmental data are recorded together.

  • Outdoor-Ready Structure: IP67 waterproof cable interfaces with waterproofing, heat dissipation, and dehumidification design.

Application Range

The OT-MCTA-100T is suitable for:

  • Perovskite solar cell outdoor stability testing

  • Thin-film PV module aging studies

  • Small photovoltaic module performance validation

  • Outdoor MPPT performance monitoring

  • PV material screening and process reliability testing

  • Long-term power degradation analysis

  • University laboratories and photovoltaic R&D centers

Key Technical Summary

CategorySpecification
ModelOT-MCTA-100T
System StructureOutdoor Unit + Indoor Host
Compatible Cell Size100 × 100 mm, Customizable
Light SourceOutdoor Natural Sunlight
Test ChannelsUp To 100 Simultaneous Channels
Optional Scanning8-Point Sequential Scanning Per Channel
Test FunctionsReal-Time MPPT + I-V Forward/Reverse Sweep
Electrical Range20 V / 1 A
Measurement Accuracy0.02% + 0.05% F.S.
Irradiance Monitoring0.1 W/m² Accuracy, 5–10 Min Per Point
Temperature Monitoring-10°C To 150°C, ±1°C
Humidity Monitoring15–100 RH%, ±2 RH%
Outdoor ProtectionIP67 Cable Interfaces, Waterproof, Heat Dissipation, Dehumidification


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  • How long does it take from equipment ordering to official production when cooperating with Locsen?

    The overall timeline varies depending on equipment specifications and production line scale. For standalone equipment, standard models require a 45-day manufacturing cycle, with total duration (including shipping and installation) of approximately 60 days. Customized equipment requires an additional 30 days based on technical requirements. For complete line solutions: • 100MW-level production lines require ~4 months for planning, equipment manufacturing, installation, and commissioning • GW-level production lines require ~8 months We provide detailed project schedules with dedicated managers ensuring seamless coordination. Example: A client's 1GW perovskite production line was completed 15 days ahead of schedule through parallel equipment manufacturing and facility construction.
  • Does Locsen offer suitable equipment and partnership solutions for startup perovskite companies

    Locsen offers a "Phased Partnership Program" specifically designed for perovskite startups. For the initial R&D phase, we provide compact pilot-scale equipment (e.g., 10MW laser scribing systems) bundled with essential process packages to facilitate technology validation and product iteration. During scale-up phases, startups qualify for upgrade benefits: • Core modules from pilot equipment can be traded in with value deduction toward production-line machinery • Optional technical collaboration including process development support and experimental data sharing This program has successfully enabled multiple startups to transition smoothly from lab to pilot production while mitigating early-stage investment risks.
  • Can Locsen's equipment handle perovskite solar cells of varying sizes? What is the maximum supported dimension?

    Locsen's laser equipment features exceptional size compatibility, capable of processing perovskite solar cells ranging from 10cm×10cm to 2.4m×1.2m. For oversized cell processing (e.g., 12m×2.4m rigid substrates), we offer customized gantry-type laser systems with multi-laser-head synchronization to ensure both precision and throughput. • Proven Performance: Successfully processed 1.2m×0.6m cells with industry-leading scribing accuracy (±15μm) and uniformity (>98%) • Modular Design: Swappable optical modules adapt to varying thicknesses (0.1-6mm) • Smart Calibration: AI-assisted real-time beam alignment compensates for substrate warpage
  • Does Locsen provide tailored laser solutions for all key production stages of perovskite solar cells?

    Yes, Locsen provides comprehensive laser processing solutions covering the entire perovskite solar cell production chain: P0 Laser Marking: For cell identification post-film deposition P1/P2/P3 Laser Scribing: Precision patterning of • Transparent conductive layers (P1) • Perovskite active layers (P2) • Back electrodes (P3) P4 Edge Isolation: Micron-level edge trimming to prevent short-circuiting Tandem Cell Modules: Dedicated laser etching systems for multi-material layer processing Our integrated equipment ecosystem ensures all laser processing requirements are met with: • ≤20μm alignment accuracy across layers • Thermal Affect Zone controlled under 5μm • Modular platforms supporting R&D to GW-scale production
  • What composition tolerance ranges do Locsen's tools support for variant perovskite formulations?

    Locsen's laser systems demonstrate exceptional adaptability to diverse perovskite compositions. • Preloaded Parameters: Optimized settings for mainstream formulations (e.g., FAPbI₃, CsPbI₃) in the laser recipe library enable instant operator access • R&D Support: For novel compositions (e.g., Sn-based perovskites), our team delivers: Custom wavelength/fluence calibration within 72 hours Performance validation ensuring <1% PCE degradation post-processing • Smart Compensation: On-board spectroscopy modules monitor reflectivity in real-time, automatically adjusting: Pulse duration (20-500ns) Beam profile (Top-hat/Gaussian) Energy density (0.5-3J/cm²) Technical Highlights: ▸ Tolerance for ±15% stoichiometric variation in Pb:Sn ratios ▸ Support for 2D/3D hybrid phase patterning ▸ Non-contact processing avoids cross-contamination

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