Hardware Basics & Peripherals

Hardware

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Welcome to Hardware! In this strand, you will explore physical computing components, peripherals, input/output connections, and how digital devices process hardware signals.

Level 1

Hardware Identification

Identifying physical tech devices vs non-tech objects, power buttons, and screens.

Learning objective

Learning About: Physical Hardware. Learning To: Identify devices. Learning To Be: Inquirer.

Let's Go!

Learn

Hardware is any physical part of a computer system that you can touch and see, such as screens, keyboards, mice, cables, and power buttons!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Identify and inspect classroom hardware!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Point to physical tech devices in the classroom (laptops, tablets).

Developing

Locate power buttons, touchscreens, and charging cables.

Secure (Goal)

Distinguish between physical hardware and non-electronic classroom objects.

Mastery

Explain that hardware includes all physical, touchable parts of a computer system.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Hardware Identification includes:

  • Core Deliverable: Identify and inspect classroom hardware!
  • Target Quality: Distinguish between physical hardware and non-electronic classroom objects.
  • Excellence & Polish: Explain that hardware includes all physical, touchable parts of a computer system.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

Can you comfortably point out the physical hardware parts of your school device?

Low
High

Learning check

Learning Check

Which of the following is a piece of physical computer hardware?

Select the matching icon or option below:

Answer correctly to unlock the next level.

Spot on! A computer mouse is a physical hardware peripheral you can hold and touch!Think about which object has electronic circuits and connects to a computer system.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: See, Think, Wonder

Achievement pathway

  • Foundation: Point to physical tech devices in the classroom (laptops, tablets).
  • Developing: Locate power buttons, touchscreens, and charging cables.
  • Secure: Distinguish between physical hardware and non-electronic classroom objects.
  • Mastering: Explain that hardware includes all physical, touchable parts of a computer system.

Curriculum links

Curriculum strand: CM.01.B.1.1

Outcome: HDW-O-01 โ€” Identifying physical tech devices vs non-tech objects, power buttons, and screens.

PYP: Form ยท Physical computing devices allow us to interact with digital tools.

Learner profile: Inquirer

Competency tags

  • hardware-id
  • physical-components
  • power-buttons
  • tech-awareness

Gate support

Accessibility alternative:

Teacher override: allow

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Locked level

Level 2: Input & Output Hardware

Complete the previous learning check to unlock this next level.

Level 2

Input & Output Hardware

Classifying hardware peripherals into Input vs Output devices.

Learning objective

Learning About: Input & Output. Learning To: Classify peripherals. Learning To Be: Communicator.

Let's Go!

Learn

Hardware peripherals are divided into Input and Output devices! Input devices (keyboards, mice, microphones) send data TO the computer. Output devices (monitors, speakers, printers) display or play results FROM the computer!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Classify Input and Output Hardware!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Recognise that hardware performs different tasks.

Developing

Sort peripherals into Input (data going in) and Output (data coming out).

Secure (Goal)

Connect an input or output device to a computer correctly.

Mastery

Explain how input hardware (keyboard) and output hardware (display) work together.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Input & Output Hardware includes:

  • Core Deliverable: Classify Input and Output Hardware!
  • Target Quality: Connect an input or output device to a computer correctly.
  • Excellence & Polish: Explain how input hardware (keyboard) and output hardware (display) work together.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

How clearly can you categorize new peripherals as input or output devices?

Low
High

Learning check

Learning Check

Which hardware device is an OUTPUT device that lets you hear audio from your computer?

Select the correct hardware classification.

Answer correctly to unlock the next level.

Great job! Headphones and speakers are output devices that receive audio signals from the computer!Think about whether sound comes OUT of the device to your ears, or goes IN from your voice.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: Zoom In

Achievement pathway

  • Foundation: Recognise that hardware performs different tasks.
  • Developing: Sort peripherals into Input (data going in) and Output (data coming out).
  • Secure: Connect an input or output device to a computer correctly.
  • Mastering: Explain how input hardware (keyboard) and output hardware (display) work together.

Curriculum links

Curriculum strand: CM.01.B.1.1

Outcome: HDW-O-02 โ€” Classifying hardware peripherals into Input vs Output devices.

PYP: Function ยท Different hardware peripherals perform specialized roles to send data in or show data out.

Learner profile: Communicator

Competency tags

  • input-devices
  • output-devices
  • peripherals
  • categorisation

Gate support

Accessibility alternative:

Teacher override: allow

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Locked level

Level 3: Connectors & Ports

Complete the previous learning check to unlock this next level.

Level 3

Connectors & Ports

Identifying physical ports, connectors, and safe hardware plug practices.

Learning objective

Learning About: Ports & Cables. Learning To: Connect hardware safely. Learning To Be: Thinker.

Let's Go!

Learn

Hardware connectors match specific ports! USB ports connect mice, keyboards, and drives. HDMI ports send video and audio to external monitors or projectors. Always align connectors gentlyโ€”never force a plug!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Connect peripherals safely to correct ports!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Recognise common cable ends like USB and HDMI.

Developing

Locate USB-A, USB-C, HDMI, and audio ports on a desktop or laptop.

Secure (Goal)

Safely plug in and eject external peripherals without damaging connectors.

Mastery

Explain why USB-C is becoming the universal standard for power and data.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Connectors & Ports includes:

  • Core Deliverable: Connect peripherals safely to correct ports!
  • Target Quality: Safely plug in and eject external peripherals without damaging connectors.
  • Excellence & Polish: Explain why USB-C is becoming the universal standard for power and data.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

Did you successfully identify and connect hardware to the matching port?

Low
High

Learning check

Learning Check

Which modern reversible cable and port is widely used for high-speed data transfer and fast charging?

Choose the correct hardware port.

Answer correctly to unlock the next level.

Spot on! USB-C is a compact, reversible connector used for power, video, and fast data transfer!Think about which small, oval plug works no matter which side is facing up.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: Think, Puzzle, Explore

Achievement pathway

  • Foundation: Recognise common cable ends like USB and HDMI.
  • Developing: Locate USB-A, USB-C, HDMI, and audio ports on a desktop or laptop.
  • Secure: Safely plug in and eject external peripherals without damaging connectors.
  • Mastering: Explain why USB-C is becoming the universal standard for power and data.

Curriculum links

Curriculum strand: CM.02.B.1.1

Outcome: HDW-O-03 โ€” Identifying physical ports, connectors, and safe hardware plug practices.

PYP: Connection ยท Standardized ports and cables allow modular hardware components to communicate.

Learner profile: Thinker

Competency tags

  • usb-ports
  • hdmi
  • connectors
  • safe-plugging

Gate support

Accessibility alternative:

Teacher override: allow

Back to top

Locked level

Level 4: Storage & Memory Hardware

Complete the previous learning check to unlock this next level.

Level 4

Storage & Memory Hardware

Comparing magnetic HDDs, solid-state SSDs, RAM chips, and flash drives.

Learning objective

Learning About: Storage vs RAM. Learning To: Compare memory hardware. Learning To Be: Principled.

Let's Go!

Learn

Computers use two main types of memory hardware: RAM (Random Access Memory) is fast temporary workspace that clears when powered off, while SSDs/HDDs provide permanent long-term storage for all your saved files!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Compare RAM and Permanent Storage!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Identify physical storage devices like USB thumb drives and hard drives.

Developing

Distinguish between temporary RAM memory and permanent SSD/HDD storage.

Secure (Goal)

Select appropriate storage hardware for transferring files vs long-term backup.

Mastery

Explain why SSDs are faster and more durable than spinning magnetic HDDs.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Storage & Memory Hardware includes:

  • Core Deliverable: Compare RAM and Permanent Storage!
  • Target Quality: Select appropriate storage hardware for transferring files vs long-term backup.
  • Excellence & Polish: Explain why SSDs are faster and more durable than spinning magnetic HDDs.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

How confident are you explaining the difference between temporary RAM and permanent SSD storage?

Low
High

Learning check

Learning Check

Which hardware component provides fast temporary memory for open apps that gets cleared when the computer turns off?

Identify the correct storage hardware.

Answer correctly to unlock the next level.

Correct! RAM is the high-speed temporary working memory used while apps are running!Think about which memory component is active temporary workspace versus saved permanent storage.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: See, Think, Wonder

Achievement pathway

  • Foundation: Identify physical storage devices like USB thumb drives and hard drives.
  • Developing: Distinguish between temporary RAM memory and permanent SSD/HDD storage.
  • Secure: Select appropriate storage hardware for transferring files vs long-term backup.
  • Mastering: Explain why SSDs are faster and more durable than spinning magnetic HDDs.

Curriculum links

Curriculum strand: CM.02.B.1.1

Outcome: HDW-O-04 โ€” Comparing magnetic HDDs, solid-state SSDs, RAM chips, and flash drives.

PYP: Responsibility ยท Hardware memory structures determine how much data a device can process and store permanently.

Learner profile: Principled

Competency tags

  • storage-hardware
  • hdd
  • ssd
  • ram
  • flash-drives

Gate support

Accessibility alternative:

Teacher override: allow

Back to top

Locked level

Level 5: Processing & Logic Cards

Complete the previous learning check to unlock this next level.

Level 5

Processing & Logic Cards

Exploring CPUs, GPUs, motherboards, expansion cards, and microcontrollers.

Learning objective

Learning About: Processors & Boards. Learning To: Examine logic cards. Learning To Be: Knowledgeable.

Let's Go!

Learn

The Motherboard is the main circuit board connecting all internal hardware! The CPU (Central Processing Unit) executes code commands, the GPU handles graphics, and microcontrollers (like BBC micro:bit) bring physical hardware projects to life!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Program a Microcontroller & Inspect Circuit Hardware!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Identify the CPU chip as the primary central processing unit.

Developing

Examine a motherboard and locate the CPU socket, RAM slots, and GPU expansion slots.

Secure (Goal)

Program an embedded microcontroller board (e.g. BBC micro:bit or Raspberry Pi).

Mastery

Explain how the CPU processes binary instructions and coordinates with other circuit cards.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Processing & Logic Cards includes:

  • Core Deliverable: Program a Microcontroller & Inspect Circuit Hardware!
  • Target Quality: Program an embedded microcontroller board (e.g. BBC micro:bit or Raspberry Pi).
  • Excellence & Polish: Explain how the CPU processes binary instructions and coordinates with other circuit cards.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

Did your microcontroller hardware successfully run your programmed instructions?

Low
High

Learning check

Learning Check

Which central hardware chip is known as the 'brain' of the computer, executing calculations and software instructions?

Select the correct processing component.

Answer correctly to unlock the next level.

Mastered! The CPU is the primary processing chip that executes code and logic instructions!Think about which hardware component performs calculations and runs program logic.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: I used to think...

Achievement pathway

  • Foundation: Identify the CPU chip as the primary central processing unit.
  • Developing: Examine a motherboard and locate the CPU socket, RAM slots, and GPU expansion slots.
  • Secure: Program an embedded microcontroller board (e.g. BBC micro:bit or Raspberry Pi).
  • Mastering: Explain how the CPU processes binary instructions and coordinates with other circuit cards.

Curriculum links

Curriculum strand: CM.03.B.1.1

Outcome: HDW-O-05 โ€” Exploring CPUs, GPUs, motherboards, expansion cards, and microcontrollers.

PYP: Perspective ยท Understanding microprocessors enables us to design physical computing and robotics systems.

Learner profile: Knowledgeable

Competency tags

  • cpu
  • gpu
  • motherboard
  • microcontrollers
  • microbit

Gate support

Accessibility alternative:

Teacher override: allow

Back to top

Locked level

Level 6: Hardware Specs & Diagnostics

Complete the previous learning check to unlock this next level.

Level 6

Hardware Specs & Diagnostics

Reading hardware specifications, basic hardware troubleshooting, and e-waste awareness.

Learning objective

Learning About: Hardware Specs & Sustainability. Learning To: Audit & troubleshoot. Learning To Be: Reflective.

Let's Go!

Learn

Hardware auditing allows you to identify system capabilities! Checking RAM, CPU clock speed, and storage space reveals performance bottlenecks. Practicing safe maintenance, repair, and e-waste recycling ensures technology remains sustainable!

Curriculum Level:Level 1
๐Ÿ–ฅ๏ธ

Hardware & Systems Lab

Level 1: Hardware Architecture
1
๐Ÿ‘๏ธ
Display (Output)
Keyboard (Input)
Mouse
MOTHERBOARD (MAIN CIRCUIT BOARD)
CPUThe Brain
RAM
SSD/HDD
Long-term Storage
GPU (Graphics)
NIC (Wi-Fi)

Title

Type

Description

Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.

Try it yourself

Audit System Hardware & Troubleshoot Issues!

๐ŸŒŸ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)โ–พ

๐ŸŽฏ Task Success Criteria (Rubric)

Foundation

Open System Properties or Task Manager to view hardware specifications.

Developing

Read and compare device hardware specs (e.g., 16GB RAM, 512GB SSD, 2.5GHz CPU).

Secure (Goal)

Troubleshoot common hardware issues (loose cables, unplugged power, peripheral driver resets).

Mastery

Evaluate the environmental impact of e-waste and propose modular hardware repair strategies.

๐Ÿ‘€ What A Good One Looks Like (WAGOLL)

Exemplar Standard

A top-tier student project for Hardware Specs & Diagnostics includes:

  • Core Deliverable: Audit System Hardware & Troubleshoot Issues!
  • Target Quality: Troubleshoot common hardware issues (loose cables, unplugged power, peripheral driver resets).
  • Excellence & Polish: Evaluate the environmental impact of e-waste and propose modular hardware repair strategies.
๐Ÿ“
Save to Your Website Portfolio:

When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!

โญSelf-Assessment: How confident do you feel with this skill?

Reflect

How confident are you auditing hardware specs and troubleshooting simple cable/port issues?

Low
High

Learning check

Learning Check

What should you do first if an external mouse or keyboard suddenly stops responding?

Choose the best sustainability and hardware maintenance practice.

Answer correctly to complete this strand.

Excellent! Always check loose connections, ports, and power before assuming hardware is broken!Think about simple, non-destructive physical troubleshooting steps first.
Teacher setup, curriculum links and progress descriptors

Spark support

Routine: Step Inside

Achievement pathway

  • Foundation: Open System Properties or Task Manager to view hardware specifications.
  • Developing: Read and compare device hardware specs (e.g., 16GB RAM, 512GB SSD, 2.5GHz CPU).
  • Secure: Troubleshoot common hardware issues (loose cables, unplugged power, peripheral driver resets).
  • Mastering: Evaluate the environmental impact of e-waste and propose modular hardware repair strategies.

Curriculum links

Curriculum strand: CM.03.B.1.1

Outcome: HDW-O-06 โ€” Reading hardware specifications, basic hardware troubleshooting, and e-waste awareness.

PYP: Reflection ยท Responsible hardware maintenance and recycling protects resources and extends tech lifespans.

Learner profile: Reflective

Competency tags

  • hardware-specs
  • troubleshooting
  • e-waste
  • sustainability
  • diagnostics

Gate support

Accessibility alternative:

Teacher override: allow

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