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Smart Home Energy Panel Learning System

Explore how a modern smart home produces, stores, manages, and uses electrical energy with one integrated panel learning system. The Smart Home Energy Trainer (123-01) from LJCreate gives students hands-on experience with solar power, battery storage, EV charging, heat pumps, grid interaction, and smart energy controls.

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The Smart Home Energy Panel Learning System (123-01) from LJ Create brings the complete energy ecosystem of a modern smart home into the classroom. Students can safely learn how renewable energy is generated, converted, stored, distributed, and used across a home as they explore the relationship between solar generation, battery storage, EV charging, heat pumps, household loads, and the electrical grid.

Instead of studying each technology independently, students can see how these systems interact as part of a complete smart energy system. A touchscreen interface provides control over home systems, while electrical schematics, monitoring points, and switched faults allow students to progress from understanding energy flow to developing practical diagnostic and fault-finding skills.

Features

  • Complete smart home system connects generation, storage, and consumption.
  • Touchscreen controls let students manage home energy systems.
  • Two solar PV strings demonstrate renewable energy generation.
  • Battery storage demonstrates charging and discharging strategies.
  • EV charging system introduces transportation energy demands.
    Switched faults and test points build diagnostic skills.

Using the Smart Home Energy Panel Learning System, students can develop skills in:

Solar Energy Generation
Investigate how photovoltaic systems generate DC electricity and supply energy to a home.

Battery Energy Storage
Explore how batteries store locally generated solar energy and lower-cost off-peak grid energy for later use.

Energy Conversion
Understand how inverters and DC-DC converters manage the conversion and movement of electrical energy.

Smart Home Energy Management
Analyze how energy is distributed between generation, storage, household loads, and the electrical grid.

EV Charging
Explore how electric vehicle charging impacts household energy demand and overall energy management.

Heat Pump Systems
Investigate how heat pumps provide heating and cooling as an alternative to traditional fossil-fuel systems.

Grid Interaction
Understand energy import, surplus solar export, and the relationship between smart homes and the electrical grid.

Diagnostics & Fault-Finding
Use schematics, test points, and switched faults to trace circuits and diagnose system problems.

Curriculum

The curriculum for this learning system includes:

  • Hands-on training experiments and activities
  • Interactive online curriculum and instructional resources
  • Teacher support materials and guided learning content

Smart Home Energy Trainer (123-01) Product Details

Smart Energy Systems Include:

  • Two solar PV strings
  • Energy storage battery
  • Inverter
  • DC-DC converter
  • EV charging system
  • Air-to-water heat pump
  • Immersion heaters
  • Lighting circuits
  • Grid connection
  • Electricity meter
  • Smart control systems

More details coming soon. 

What is the Design and Technology Program?

The Design & Technology program is a comprehensive, project-based learning experience that blends teaching resources, eLearning, and virtual tools, and hands-on projects to engage students in grades 6-10. Through interactive lessons and real-world challenges, students build problem-solving, critical thinking, and teamwork skills. With flexible implementation and strong instructional support, educators can easily deliver an engaging, standards-aligned STEM experience in the classroom.

Teaching Resources

eLearning and Virtual Trainers

Hands-On Projects

Start with the Engineering Design Course

The Design & Technology program begins with the Engineering Design course, providing foundation in STEM concepts and technology before progressing into additional courses or the full program.

In this course, students build essential skills they will use throughout their learning experience, including:

  • Applying the engineering design process to solve real-world problems
  • Documenting and communicating each stage of the design process clearly and effectively
  • Generating, evaluating, and refining potential solutions

Mix and Match to build your program!

This program is extremely flexible, with 16 design projects covering over 200 class periods that you can incorporate into new or existing programs. Each design project introduces students to a different STEM career field.

Agricultural Technology

In the Agricultural Technology course, students will:

  • Investigate the development of agricultural technology and its impact
  • Explore the application of biotechnology in agriculture
  • Design a series of automated agricultural machines and environmental control systems

In the Automotive Technology course, students will:

  • Explore the operation of automotive electrical systems
  • Learn about the operation of internal combustion engines, transmission systems, brakes, and steering and suspension
  • Verify operation and troubleshooting by taking electrical measurements

In the Biomedical Technology course, students will:

  • Explore the impact on society of medical advances such as sanitation and vaccination
  • Investigate genetic engineering and medical scanning as examples of biomedical technology
  • Design and develop a control system for a medical scanning machine

In the Computer Science course, students will:

  • Explore techniques for algorithm development, including the use of problem-solving techniques, flowchart design, and pseudo-code
  • Design algorithms, and then develop and test programs to control an expandable mobile robot

In the Construction Engineering course, students will:

  • Explore how structures are designed to withstand the forces imposed on them due to the weight of the structure, the building contents, and natural events such as earthquakes and weather
  • Investigate how beams are used in construction, and design a series of beams using different materials

In the Electronics Technology course, students will:

  • Explore the design, development, and production of electronic systems
  • Use simulation tools to model electronic circuits and develop a series of electronic circuits using the systems approach

In the Energy Generation course, students will:

  • Explore how electricity is generated in fossil-fuel power plants
  • Investigate a range of sustainable methods of power generation, including wind, solar, geothermal, hydro, and nuclear power
  • Design a series of plans for sustainable power generation via simulation

In the Energy in Buildings course, students:

  • Discover how energy is used in modern buildings and explore technology that helps reduce the energy used in buildings, including glazing, insulation, and heat pumps
  • Explore how renewable energy generation can be used to provide energy for buildings

In the Industrial Robotics course, students will:

  • Explore the deployment of industrial machines and their impact on society
  •  Investigate the basic components of robotic systems and design a series of automated robotic systems to solve industrial problems

In the Machine Tool course, students will:

  • Discover how machine tools, such as saws, lathes, and mills, are used to convert materials into useful products
  • Explore how CNC machines can be used to automate the manufacture of product parts

In the Manufacturing Technology course, students will:

  • Investigate how products are manufactured by processing materials
  • Explore the process of plastic injection molding and design and produce a series of injection-molded products

In the Marketing and Sales course, students will:

  • Explore how marketing is used to develop sales for engineered products and services
  • Investigate how advertising and pricing can be used to promote sales of products, and investigate the process by which the products are sold and distributed to customers

In the Mechatronics course, students will:

  • Explore basic mechanical principles, including simple machines such as gears, pulleys, and levers
  • Design and develop solutions to a range of engineering problems using mechanical systems
  • Investigate the principles of fluid power and its application in construction machines

In the Mobile Robotics course, students will:

  • Explore applications of mobile robotic systems and investigate how mobile robotic systems are powered and controlled
  • Design a series of mobile robotic systems to meet a design brief

In the Rapid Manufacturing course, students will:

  • Investigates the use of 3D printing and injection molding as part of the rapid manufacturing process
  • Explore how 3D printers can be used to produce tooling for manufacturing, and design and develop tooling for injection molding
  • Design and manufacture a plastic product using 3D printing and an injection molding machine

In the Transportation Technology course, students will:

  • Investigates the development of transportation technology and its impact on society
  • Explore the fundamental principles of transport technology and apply the physical science concepts to design transportation systems

Career Pathways

Each course provides college and career readiness instruction for STEM pathways, like:

Agriculture Technology

Architecture & Construction

Business, Management & Administration

Health Science

Information Technology

Manufacturing

Marketing, Sales & Service

Science, Technology, Engineering, & Mathematics

Learn more about the Design and Technology Program

The full program includes 17 project-based courses. Each course includes:

  • A presentation to introduce the course and identify career pathways
  • Pre & Post Tests
  • Set of lessons including: theory presentations, and hands-on activities

With the design and technology course, you can implement the full program, or just individual courses or trainers. The flexible structure allows it to fit in well as a whole class activity, pod rotations, or even just as supplemental curriculum for your class. 

More Complete Programs

 LJ Create has a variety of different program areas, including mechatronics, industry 4.0, engineering, automotive, and more!

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