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Education & demonstration

SOLAR → HYDROGEN → POWER

Solar Hydrogen Demo Kit for STEM Education

Explore an entire renewable-energy pathway.

Connect photovoltaic power, PEM electrolysis, gas handling, fuel-cell generation and a small electrical load. Give students a visible framework for understanding energy conversion.

Application-led selection
Defined equipment scope
solar hydrogen demo kit.webp
Reference configuration shown. Supplied equipment and appearance depend on the approved specification.

40 mL/min

Reference electrolyzer output

<1 W

Reference fuel-cell power

6.2 kg

Published system weight

PURPOSE & VALUE

Experiments with the Solar Hydrogen Demo Kit

Explore an entire renewable-energy pathway.

The kit supports supervised exploration of the solar-to-hydrogen-to-power sequence. It brings the major stages into one learning arrangement so students can observe inputs, outputs and changes in operating conditions. Confirm the electrical operating points and any auxiliary supply before defining an experiment at the stated module ratings.

01

Connect the energy-conversion stages

Use the module layout to explain how electricity drives electrolysis and how hydrogen can supply a fuel cell. Keep each conversion stage’s input and output visible.

02

Explore changes in light and load

Develop exercises around irradiance, electrical output and fuel-cell response using compatible measurements. Record which variables are controlled in each experiment.

03

Match the package to the class

Specify learning level, group size, lighting conditions, measurement channels and student worksheets. Confirm the contents and supervision requirements of the teaching package.

PROCESS & INTEGRATION

Understand the equipment pathway.

01
Solar / PV power
02
PEM electrolysis
03
Gas collection
04
Fuel-cell power
05
Electrical load

TECHNICAL DETAILS

Reference technical specifications.

Reference data for configuration review. The accepted quotation and approved technical specification define the supplied equipment.

Module Parameter Specification
Photovoltaic Panel
Total Power
12 W
Rated Voltage
5 V
Rated Current
2.4 A
PEM Electrolyzer
Rated Hydrogen Production
40 mL/min
Power Supply Voltage
3 V
Rated Current
6 A
Fuel Cell
Rated Power
<1 W
Rated Voltage
0.9 V
Rated Current
1 A
Load
Power
0.019 W
Rated Voltage
1 V
Rated Current
18.9 mA
Complete System
Dimensions
750 × 420 × 330 mm
Weight
6.2 kg

Configuration note. The PV module is listed at 12 W; the electrolyzer input point of 3 V × 6 A is 18 W. These are separate module ratings, not proof of simultaneous full-load solar operation. Confirm operating-point matching and any auxiliary supply.

APPLICATIONS

Where this configuration fits.

01

STEM education

Introduce energy conversion through a visible hydrogen pathway.

02

Technical colleges

Connect solar, electrochemical and electrical modules in practical lessons.

03

Renewable-energy training

Discuss system boundaries, measurements and operating-point differences.

BEFORE YOU REQUEST A QUOTE

Prepare a useful equipment brief.

01 / Learning environment

Indoor light source or outdoor solar conditions

02 / Electrical scope

PV operating point, electrolyzer input and any auxiliary supply

03 / Experiments

Measurements, controlled variables and recording method

04 / Teaching delivery

Student level, group size, instructions and demonstration acceptance

BUYER QUESTIONS

Questions before specification.

That is not established by the reference table. The panel is listed at 12 W while 3 V × 6 A gives an 18 W electrolyzer input point. Confirm operating-point matching and any auxiliary supply.

No. The product is a teaching kit with a small demonstration load and an educational measurement scope.

Specify the proposed light source and experimental conditions for review. Usable PV output depends on illumination and the actual module arrangement.

Request the equipment list, electrical and gas-flow diagrams, operating limits, supervised experiment instructions and the included measurement methods.

NEXT STEP / CONFIGURATION REVIEW

Tell us what the equipment needs to do.

Send your application, destination country and technical requirements. Include the delivery target and any drawings or procurement specification so the proposed scope can be reviewed against your project.

Please name the product family in your enquiry. Final technical values, documentation and delivery terms belong in the approved quotation.

Your enquiry checklist

  • Learning environment: Indoor light source or outdoor solar conditions
  • Electrical scope: PV operating point, electrolyzer input and any auxiliary supply
  • Experiments: Measurements, controlled variables and recording method
  • Teaching delivery: Student level, group size, instructions and demonstration acceptance

SUBMIT YOUR REQUEST