Big Solar Fan Model
Product Code : SCL-TMFEEL-12179
This Educational Instrument provides an empirical platform for studying photovoltaic energy harvesting and DC motor actuation. Engineered for Secondary and Vocational (TVET) curricula, it facilitates the quantitative analysis of solar-to-mechanical energy efficiency. The unit is calibrated for classroom demonstration, meeting international institutional quality standards for renewable energy simulation models in academic laboratory environments.
Technical Specifications
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Tender Specification |
OEM Technical Detail |
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Energy Harvesting Unit |
High-efficiency silicon photovoltaic panel with integrated leads |
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Actuator System |
High-torque, low-friction DC motor calibrated for solar-load startups |
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Material Grade |
High-impact ABS polymer and UV-stabilized structural components |
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Configuration |
Large-scale desktop model for high-visibility group demonstrations |
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Base Construction |
Reinforced stable platform with vibration-damping footings |
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ISO Compliance Code |
ISO 9001:2015 (Manufacturing Quality Management) |
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HS Code |
9023.00 (Models for demonstrational purposes) |
Key Pedagogical Outcomes (Bloom’s Taxonomy)
Feature: Integrated Photovoltaic Panel. Outcome: Enables students to analyze radiant-to-electrical energy conversion efficiency, supporting Physics Module: Solar Dynamics.
Feature: Low-Inertia Aerodynamic Blades. Outcome: Demonstrates the relationship between torque and load under varying light intensities, facilitating data-driven mechatronics study.
Feature: Exposed Mechanical Linkage. Outcome: Provides visual verification of current flow being converted into mechanical work, aiding in the comprehension of the Conservation of Energy principle.
Feature: Rigid Support Stand. Outcome: Allows for the empirical measurement of incident light angles and the impact of solar orientation on energy output.
International Logistics & Compliance
To facilitate global institutional deployment, this Educational Instrument is dispatched in export-grade seaworthy crating (ISPM-15 compliant) to protect calibrated mechatronic components and solar cells during multi-modal transit. Documentation includes a Manufacturer’s Authorization Form (MAF), IQ/OQ/PQ Certification, and technical User Manuals in English. The unit features a tropicalized design, utilizing non-oxidizing electrical contacts and UV-resistant surfaces tested for sustained operation in environments reaching 45°C and 90% humidity.
Why Source from the OEM
Sourcing directly from the OEM ensures vertical integration across the entire production cycle, from the precision injection molding of aerodynamic fan profiles to the electrical testing of photovoltaic outputs. Unlike third-party traders, our facility provides batch-tested uniformity and guaranteed electrical specification matching for large-scale institutional tenders. Direct factory engagement ensures institutional long-term viability through immediate spares availability and technical support directly from the design engineering team.
