Solar Photovoltaic Ready-To-Go

This fully equipped experiment system can be used wherever you are without further components. This kit already includes all necessary ancillary equipment, like measuring equipment, and is enclosed in an aluminium carry-case with heavy-duty foam inserts. Because of the large range of potential experiments, the product is also suitable for internal workshops in companies as well as a demonstration kit for sales representatives The scope of experiments ranges from simple trials demonstrating the basic characteristics of solar energy, to more challenging experiments dealing with topics like IV characteristics or temperature dependency of solar cells.

Specification :

Climate change is now recognized as one of the biggest threats to the future of many species on this planet, so understanding green energy and its importance is a crucial part of contemporary education.

Few teaching systems meet that need quite as comprehensively as the Solar modular system.

Since the development of the original Worlddidac Award winning Photovoltaic study kits, the range has been expanded to include modules covering wind energy, hydrogen fuel cells and comprehensive studies of energy grids including storage, conversion and efficiency.

A particular benefit of this system, over other ‘green energy’ teaching tools, is the way that the different modules are interoperable. Between them they can be used to tailor teaching from basic principles for primary school children, right through to training industry technicians.

The excellent module of ‘Measurements without Meters’ not only provides a simple and fun visual reference for younger students but also teaches the physics of light and optics. At the other end of the spectrum students can learn how to design and build professional off-grid systems, using the correct modules, investigating topics such as charge regulators and deep discharge protection.

Although the modules are interoperable with each other, a series of kits has been carefully devised to cover specific topics at key levels, accompanied with relevant worksheets and experimental guides to make teaching easier. These kits are designed to guide students to their own conclusions, through investigation and experimentation. They then apply these conclusions to the wider world, while encouraging students to be conscious of greener ways to use and produce energy.

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This fully equipped experiment system can be used wherever you are without further components. This kit already includes all necessary ancillary equipment, like measuring equipment, and is enclosed in an aluminium carry-case with heavy-duty foam inserts. Because of the large range of potential experiments, the product is also suitable for internal workshops in companies as well as a demonstration kit for sales representatives The scope of experiments ranges from simple trials demonstrating the basic characteristics of solar energy, to more challenging experiments dealing with topics like IV characteristics or temperature dependency of solar cells.

Specification :

Climate change is now recognized as one of the biggest threats to the future of many species on this planet, so understanding green energy and its importance is a crucial part of contemporary education.

Few teaching systems meet that need quite as comprehensively as the Solar modular system.

Since the development of the original Worlddidac Award winning Photovoltaic study kits, the range has been expanded to include modules covering wind energy, hydrogen fuel cells and comprehensive studies of energy grids including storage, conversion and efficiency.

A particular benefit of this system, over other ‘green energy’ teaching tools, is the way that the different modules are interoperable. Between them they can be used to tailor teaching from basic principles for primary school children, right through to training industry technicians.

The excellent module of ‘Measurements without Meters’ not only provides a simple and fun visual reference for younger students but also teaches the physics of light and optics. At the other end of the spectrum students can learn how to design and build professional off-grid systems, using the correct modules, investigating topics such as charge regulators and deep discharge protection.

Although the modules are interoperable with each other, a series of kits has been carefully devised to cover specific topics at key levels, accompanied with relevant worksheets and experimental guides to make teaching easier. These kits are designed to guide students to their own conclusions, through investigation and experimentation. They then apply these conclusions to the wider world, while encouraging students to be conscious of greener ways to use and produce energy.

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