Photovoltaic Basic Set

Photovoltaic Basic Set

Product Code : SCL-EI-10568

Lab Glassware Manufacturer, based in Ambala, Haryana, India, has been manufacturing and exporting laboratory, scientific, and educational equipment since 1982. The Photovoltaic Basic Set is a school physics apparatus used for teaching solar cells, photovoltaic energy conversion, series connection, parallel connection, voltage, current and light-angle effects, designed for physics students, STEM classrooms and teacher demonstrations. Lab Glassware Manufacturer supplies this set to institutions across East Africa, including Kenya, Tanzania, Uganda, and Rwanda.

Quick Answer: The Photovoltaic Basic Set uses two 0.5 V solar cells on a 0–90° tilting mount to give students a hands-on model of the photovoltaic effect — measuring how light angle, illumination and circuit configuration change a solar module's 1 V, 300 mA output.

SpecificationDetail
Product Name Photovoltaic Basic Set
Brand Lab Glassware Manufacturer
Category Electronic Instruments – Renewable Energy Experiment Kit
Intended Users School physics students, STEM learners, teachers and renewable-energy demonstration groups
Solar Cell Arrangement 2 solar cells connected in series
Solar Cell Voltage 0.5 V per cell
Solar Module Output 1 V, max. 300 mA
Tilt Range 0° to 90°
Connection Type 4 mm laboratory sockets
Solar Module Dimensions 90 x 90 x 100 mm
Standards / Certifications No product-specific certification confirmed; verify tender requirements before purchase

Key Features

  • 1 V photovoltaic module for clear classroom solar-energy demonstrations.
  • Two 0.5 V solar cells connected in series for basic voltage-output experiments.
  • Tilting device adjustable from 0° to 90° for studying light-angle effects.
  • 4 mm sockets support standard school laboratory circuit connections.
  • Series and parallel circuit concepts can be demonstrated with suitable accessories.
  • Stable storage case keeps the module and accessories organized after use.

What's Included in the Kit

  • Photovoltaic solar module with two 0.5 V solar cells
  • Adjustable tilting device, 0° to 90°
  • 4 mm connection sockets
  • Teaching handout with experiment descriptions and evaluation notes
  • Storage case and storage layout / arrangement plan
  • Additional connection leads, meters or loads (as applicable)

Applications and Uses

  • Demonstrating the photovoltaic effect in school physics lessons.
  • Teaching conversion of light energy into direct electrical energy.
  • Measuring voltage and current from a small solar module.
  • Showing how tilt angle affects solar-cell output.
  • Comparing series and parallel solar-cell connections.
  • Introducing renewable energy, solar generators and classroom sustainability topics.

How to Use the Photovoltaic Basic Set

  • Place the solar module on a stable laboratory bench or demonstration table.
  • Set the tilting device to the starting angle, such as 0°, 30°, 60° or 90°.
  • Connect a suitable voltmeter or load to the 4 mm sockets.
  • Illuminate the solar cells using sunlight or a suitable classroom light source.
  • Record the voltage or current reading at each tilt angle.
  • Change the angle and compare how the electrical output changes.
  • Repeat the activity using different circuit arrangements if additional components are available.

Safety note: Use the set under teacher supervision. Avoid overheating the solar cells with high-intensity lamps and disconnect meters or loads before changing circuit connections.

Care & Maintenance

  • Clean the solar-cell surface gently with a soft, dry cloth.
  • Do not scratch, bend or press the solar module surface.
  • Store the tilting unit in the supplied case after each lesson.
  • Check sockets and connecting leads before every practical session.

Part of a Broader Renewable Energy Cluster

The Photovoltaic Basic Set pairs naturally with our other renewable-energy teaching apparatus, including the Renewable Energy Experimental System and the Wind Turbine to Energy Transfer Generator, letting schools compare solar and wind conversion principles within the same energy-topics curriculum.

Why Choose Lab Glassware Manufacturer

Lab Glassware Manufacturer supplies laboratory glassware, physics apparatus, electronic instruments and science education kits for schools, colleges and institutional buyers. The brand supports practical science teaching with category-based procurement for physics, general laboratory and STEM equipment. Buyers can combine this product with our General Lab Equipment and Safety Protective Wears categories for complete laboratory supply planning.

Frequently Asked Questions

What is a Photovoltaic Basic Set used for?
A Photovoltaic Basic Set is used to demonstrate how solar cells convert light into electrical energy and how voltage and current change with circuit setup and light angle.

What is the output of the solar module?
The solar module has a listed output of 1 V and a maximum current of 300 mA under suitable illumination conditions.

Can students study the effect of light angle?
Yes. The solar cells are mounted on a tilting device adjustable from 0° to 90°, allowing students to compare output at different angles.

Does the set support series and parallel circuit demonstrations?
Yes. The set is suitable for explaining series and parallel solar-cell connections when used with appropriate circuit accessories and meters.

Is this set suitable for school physics labs?
Yes. It is suitable for teacher-guided physics practicals, renewable-energy demonstrations and STEM classroom activities.

Are certifications confirmed for this product?
No product-specific certification is confirmed in the verified source data. Any tender compliance, safety declaration or certification requirement should be confirmed before order placement.

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For institutional and export orders, contact Lab Glassware Manufacturer via our Contact Us page or submit requirements through our Lab Tenders page.

Last updated: September 2026

   

Office Address

Works:Laboratory Glassware Manufacturer Pvt. Ltd. Factory No. 449 , Industrial Area Ambala Cantt, Haryana, India

[email protected]

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