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Reference : TE-130 - Liquid Heating Engineering Training System
The TE-130 training system is designed for the study of heat transfer processes in liquids for university laboratories, engineering education, and technical training centers. The equipment enables students and researchers to perform practical experiments related to thermal and fluid dynamics processes using real-time measurements and data analysis.
The system allows the following laboratory studies and practical experiments:
The equipment is supplied as a complete delivery set and ensures full compatibility between design, components, and operational functionality.

References :
The Solar Hydrogen Trainer is a 400 Wp off-grid photovoltaic system combined with an electrolyzer for on-site hydrogen production. Using clean solar energy, the system generates hydrogen sustainably and can be integrated with the Fuel Cell Trainer or the Nexa® Training System to form a comprehensive micro-laboratory platform.
The system enables complete energy balancing of the solar hydrogen generation process. Performance and production data from the PV modules, power electronics, battery storage, and electrolyzer are displayed in the included software and can be logged and exported for further analysis. Energy flows between individual components are clearly visualized, providing full system transparency.
Mobile solar modules with adjustable tilt angles and optional solar sensors allow for advanced experimentation in photovoltaic performance and system optimization.

Reference : HS-105
The HS-105 is a complete educational training system designed for the study of energy efficiency in heating technology. It features a fully functional closed-loop heating circuit for analyzing performance, pressure losses, and system behavior.
Equipped with advanced sensors and software, the system allows real-time visualization of energy flows, control response analysis, and comparison between different circulating pump technologies.
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Reference : 8021637
Up to four EasyPort USB modules can be connected simultaneously via a USB hub or four separate USB ports on a PC. Each module must be assigned a unique address.
For signal exchange between EasyPort USB and PC software, the EzOPC OPC server or the EasyPort USB ActiveX control component is available.

Reference : FCT-693
The Fuel Cell Trainer is a comprehensive educational system designed to teach the fundamental engineering principles of PEM fuel cell technology. With extensive experimental capabilities and thoroughly revised instructional materials, including predefined experiments, it provides a complete and structured learning solution.
All components of the fuel cell system are individually displayed, ensuring maximum transparency and clarity during instruction. Integrated parameter displays allow real-time monitoring of operating conditions, enhancing both theoretical understanding and practical insight.
Thanks to its modular design, the Fuel Cell Trainer can be easily adapted to different educational levels, from introductory courses to advanced engineering programs. The system is suitable for users with limited prior experience. The included software supports computer-assisted measurement, data acquisition, and experimentation, enabling precise analysis and documentation of results.
Suitable for lectures and practical training in:
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Reference : 548687
Up to four EasyPort USB modules can be connected simultaneously via a USB hub or four separate USB ports on a PC. Each module must be assigned a unique address.
For signal exchange between EasyPort USB and PC software, the EzOPC OPC server or the EasyPort USB ActiveX control component is available.
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References
SAS1000 Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600
SAS1000L Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600 (power ≤15kW)
SAS1000M Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600 (multi-channel)
ITECH introduces its latest high-speed, high-performance photovoltaic simulation solution. When combined with high-power DC power supplies, the SAS1000/L solar array simulation software accurately reproduces solar array I-V curves, with output voltage up to 2250 V and scalable system power up to 10 MW.
The system delivers fast dynamic response, excellent control accuracy, high repeatability, outstanding stability, and precision performance. It features built-in simulation models compliant with EN 50530, Sandia National Laboratories PV model, NB/T 32004, CGC/GF004, and CGC/GF035.
Users can easily configure test regulations, material types, Vmp, Pmp, and other parameters to simulate I-V curve characteristics and automatically generate test reports. The software is ideal for static and dynamic maximum power point tracking (MPPT) performance testing of photovoltaic inverters.

Reference 530.801.000
The 200 W Photovoltaic Training System is designed to provide a comprehensive understanding of solar power generation and photovoltaic system operation. It enables students and trainees to explore the fundamental principles of solar energy production while gaining hands-on experience with real measurement and analysis tools.
This educational platform allows users to study the electrical characteristics of photovoltaic modules, including the determination of the Maximum Power Point (MPP). It also demonstrates how various environmental factors influence the performance and efficiency of solar panels, such as:
The system enables practical experiments and measurements in both DC and AC circuits, allowing users to observe the behavior of the photovoltaic system under different environmental and operating conditions.
Measurement data can be easily recorded, analyzed, and visualized on a computer using the included dual-channel digital multimeter with USB interface, together with the supplied data acquisition software. This allows users to generate graphs, compare results, and better understand the relationship between environmental conditions and energy production.
This training system is particularly suitable for technical education, vocational training, engineering programs, and renewable energy laboratories.
Electrical consumption (full lighting configuration):
3'200 W

Reference : TE-130 - Liquid Heating Engineering Training System
The TE-130 training system is designed for the study of heat transfer processes in liquids for university laboratories, engineering education, and technical training centers. The equipment enables students and researchers to perform practical experiments related to thermal and fluid dynamics processes using real-time measurements and data analysis.
The system allows the following laboratory studies and practical experiments:
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