Educational Robotic Kit: STEM Bundle
- Grades: 4-12
This bundle includes the Educational Robotic Kit levels 1, 2, and 3.
Educational Robotic Kit: Level 1
The Educational Robotic Kit: Level 1 is a perfect introduction to robotics for students in Grades 4th-8th. Students will learn scientific principles as they build 45 robots including a Line Tracer, Avoider, Battle Robot, Soccer Robot, and more. The step-by-step curriculum will lead you through 12 weeks of instruction for 2-3 students. All activities are available in Google 3D Warehouse and you can build your own 3D models to better understand the engineering process.
Educational Robotic Kit: Level 2
After building the activities with the Educational Robotic Kit: Level 1, your students in Grades 5-10 can move on to the next level of robotics with The Educational Robotic Kit: Level 2. The step-by-step activities cover scientific and engineering principles while exploring robotic programming. Build the Tank Robot, Tricycle Robot, Chaser Robot, and many more robots over the 12 week schedule.
Educational Robotic Kit: Level 3
After building the activities with the Educational Robotic Kit: Level 1 & 2 your students in Grades 6-12 can move on to more advanced robotic activities that will challenge the most experienced programmers. The step-by-step activities cover scientific and engineering principles while exploring robotic programming. Build, program, and design your robots in 3D over the extensive 12 week schedule.
Please click here for access to the EQ-ROBO 1,2, & 3 curriculum.
User Creative Robotics Software is for only for Windows Operating Systems.
Main Controller (1 pcs)
- 8bit Microprocessor: ATMega16
- Character LCD with driver IC (HT1621)
- 2 X 2 channel DC Motor Control with driver IC (LB1836M)
- Input Port: Fixed 1 remote signal input port & 7 input ports for sensors (Ir, Sound, Cds...)
- Output Port: 8 output ports for LED, Beeper, Servo Motor...
- Operation Mode
- BP (Basic Program Mode): Line tracer, Avoider, Sound reaction, Remote control
- UP (User Programming Mode): programming using UCR-FCP software
- 8 remote control communication channel
- Built-in battery holder: Requires 6 AA Batteries (Not Included)
- Low battery display at LCD
- ISP & USB connector
Remote Controller (1 pcs), Remote Signal Receiver (1 pcs), Ir-Photo TR Sensor (3 pcs)
- 10 key Remote controller
- 4 direction key & 6 function key
- 8 remote control communication channel
- Low battery display
- CR 2025 Battery Not Included
- Remote signal receiver
- Infrared signal receiver IC
- Signal detection distance: Min. 7 ~ 10m
- Cable: Vcc (Red), Ground (Black), Signal (White)
- Ir-Photo TR sensor
- Infrared ray emitter & photo transistor
- Detection distance: 1 ~ 3cm
- Cable: Vcc (Red), Ground (Black), Signal (White)
DC Motor (4 pcs), DC Motor Shaft (8 pcs)
- DC Motor
- Nominal operating voltage: 10VDC
- RPM: 175 ± 10% @ 10VDC
- Reduction gear ratio: 1/56
- 4 built-in DC Motor shaft holder
- Cable: Vcc (Red), Ground (Black)
- DC Motor shaft
- Separate type DC Motor output shaft
- Material: POM
Bricks (60 pcs)
- Type & Quantity
- 1 unit-brick: 12 pcs
- 2 unit-brick: 12 pcs
- 3 unit-brick: 12 pcs
- 4 unit-brick: 12 pcs
- 5 unit-brick: 12 pcs
- Material: ABS
Frame (214 pcs)
- Type & Quantity
- 1x2 frame: 12 pcs, 1x3 frame: 12 pcs, 1x5 frame: 12 pcs, 1x7 frame: 12 pcs
- 2x5 frame: 6 pcs, 2x7 frame: 6 pcs, 2x12 frame: 6 pcs, 8x9 frame: 6 pcs
- 3x3 right angle frame: 6 pcs, 1x6 bended frames: 6 pcs, 1x9 bended frames: 6 pcs
- 1x6 round frame: 6 pcs, 5x5 cross frame: 6 pcs, 2x3 T frame: 6 pcs
- 1x6 link frame: 6 pcs, 1x2 obtuse frames: 30 pcs, 1x2 right angle frame: 30 pcs
- 1x4 servo frame: 6 pcs, 1x5 servo frame: 6 pcs, 1x7 servo link frame: 6 pcs
- 1x5 servo bended frame: 6 pcs
- Material: ABS
Axis (78 pcs), Bushing (90 pcs)
- Type & Quantity
- 25mm axis: 30 pcs
- 25mm bushing axis: 24 pcs
- 50mm axis: 18 pcs
- 75mm axis: 6 pcs
- 1-hole bushing: 60 pcs
- 2-hole bushing: 12 pcs
- 3-hole bushing: 12 pcs
- Connect bushing: 6 pcs
- Material: ABS
Gear (12 pcs), Wheel (20 pcs), Rubber shoe (8 pcs), Universal Joint (8 pcs), Hinge (8 pcs)
- Type & Quantity
- Large gear (30 teeth): 6 pcs
- Small gear (10 teeth): 6 pcs
- Sub wheel (20 mm): 6 pcs
- Large wheel (65 mm including tire): 2 pcs
- Caterpillar Driver Wheel (70 mm): 4 pcs
- Caterpillar Sub Wheel (30 mm): 4 pcs
- Middle wheel (45 mm including tire): 4 pcs
- Rubber shoe (20 mm): 8 pcs
- Universal Joint: 8 pcs
- Hinge Frame: 8 pcs
- Material: ABS, Silicon
Touch Sensor (2 pcs), Microphone Sensor(1 pcs), LED Module (2 pcs)
- Touch Sensor
- Micro switch included
- Wheel type touch detection
- Cable: Vcc (Red), Ground (Black), Signal (White)
- Microphone Sensor
- Standard Power Supply : 2.0V / Operating Voltage : 1~10V / Current Consumption at Vc=2.0V,RL=2.2K┯ : 0.5mA
- Sensitivity at f=1KHZ,RL=2.2K┯ : -30÷3dB / Signal to Noise Ratio : 58dB / Max Input Sound Level :110dB
- Cable : Vcc(Red), Ground(Black), Signal(White)
- LED Module
- Operating Voltage: DC 3V (20mA) / Reverse Current: 1.0 A (DC 5V)
- Color: Red, Green
- Cable: Vcc (Red), Ground (Black), Signal (White)
Servo Motor (3 pcs)
- 2 output axis
- Torque: 2.5 Kg·cm
- Speed: 0.2sec / 60 (6.0 V)
- Weight: 43 g
- Size: 50.8 x 38.1 x 25.4 mm
- Cable: Vcc (Red), Ground (Black), Signal (White)
Caterpillar Track & Rubber
- Type & Quantity
- Caterpillar Track: 72 pcs
- Caterpillar Rubber: 72 pcs
- Material: ABS, Silicon
Decoration Sheet (68 pcs)
- Type & Quantity
- 1x 6 sheets: 8 pcs, 1x13 sheets: 4 pcs
- 2x3 sheet: 4 pcs, 2x5 sheet: 4 pcs, 2x9 sheet: 4 pcs
- 3x3 sheet: 4 pcs, 3x5 sheet: 4 pcs, 3x11 sheet: 4 pcs
- Equilateral triangle sheet: 8 pcs
- 3x3 right triangle sheet: 8 pcs, 3x4 right triangle sheet: 8 pcs
- Semi-circle sheet: 8 pcs
- Material: PVC sheet + Printing
Spacer (24 pcs), Locking nut (30 pcs), Bolt (150 pcs), Nut (90 pcs)
- Type & Quantity
- 3mm spacer: 12 pcs
- 6mm spacer: 12 pcs
- Locking nut: 30 pcs
- M4x8 bolt: 60 pcs
- M4x12 bolt: 60 pcs
- M4x10 link bolt: 30 pcs
- M4 nut: 90 pcs
- Material: ABS, SS40
USB Cable (1 pcs)
- Connecter Type
- PC side: A type
- Board side: B type
- Length: 1000 mm
Buzzer Module (1 pcs)
- Buzzer Module
- Max Rated Current : 30mA (DC 5V)
- Resonant Frequency : 2300Hz (Error range : 10%)
- Min Sound Pressure Level : 85dB/10cm
- Cable : Vcc(Red), Ground(Black), Signal(White)
Tool (2 pcs), Toolbox (1 pc)
- Type & Quantity
- Screw driver: 1
- Spanner: 1
- Plastic toolbox: 1
- Material: PP, SS40
Educational Robotic Kit: Programming Software:
Sample Schedule:
Month |
Week |
Subject |
STUDY CONTENTS |
1 |
1 |
Robot Definition |
1) What is the robot? |
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2) What kind of parts are used in EQ-ROBO1 kit? |
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& |
3) Exercise 1 : Assemble individual parts (brick, frame, axis, bushing, bolt, nut) |
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4) Exercise 2 : Making diagram figures (triangle, rectangle, octangle, circle) |
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Part list of EQ-ROBO1 |
5) Exercise 3 : Making models (dragonfly, giraffe, fox, spider, elephant, chair) |
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2 |
Object's identify |
1) Creative thinking |
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-. Find the characteristics of object and Expression |
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& |
2) Exercise 1 : Represent the characteristics of athletes |
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-. swimmer, tennis player, fencer, striker, goalkeeper, fencer, weight lifter |
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Expression |
3) Exercise 2 : Represent the characteristics of objects |
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-. bicycle, rocking chair, windmill, boat, helicopter, airplane, firearm, motorcycle |
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3 |
Science principle-I in life |
1) Machine Foundations-I |
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-. the center of gravity, leverage principles, link structure, friction, power transmission |
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2) Exercise 1 : Making the seesaw (the center of gravity, leverage principles) |
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3) Exercise 2 : Making the Viking rides (friction) |
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4) Bonus exercise 1 : Making the watermill (power transmission) |
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5) Bonus exercise 2 : Making the ringing a bell (link structure) |
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4 |
Science principle-II in life |
1) Machine Foundations-II |
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-. elastic power |
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2) Exercise 1 : Making the catapult (leverage principle & elasticity of rubber band) |
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3) Exercise 2 : Making the rubber band power-driven car |
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4) Exercise 3 : Making the ScissorsBot (link structure & elasticity of rubber band) |
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5) Bonus exercise 1 : Making the rubber band power-driven propeller plane |
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2 |
5 |
Science principle-III in life |
1) Machine Foundations-III |
- motor, gear, gear train, gear ratio, crank |
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2) Exercise 1 : Making a manual fan (acceleration gear) |
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3) Exercise 2 : Making a dancing clown (motor, power transmission) |
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4) Exercise 3 : Making a 4-legged crawler (motor, reduction gear, crank, link) |
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5) Bonus exercise 1 : Making a shoveling machine (reduction gear, crank, link) |
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6 |
Science principle-IV in life |
1) Electronics Foundations-I |
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-. Brain of robot : main controller's function, usage and I/O ports |
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2) Exercise 1 : Making a helicopter (main controller, 1 motor) (safety training) |
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3) Exercise 2 : Making a BeetleBot (main controller, 1 motor) |
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4) Class robot competition : 1m running using BeetleBot |
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7 |
Science principle-V in life |
1) Electronics Foundations-II |
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-. Infrared ray, Ir & Photo TR sensor |
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2) Exercise 1 : Making a troublemaker (main controller, Ir sensor, 2 motor) |
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3) Bonus exercise 1 : Making a copy machine (main controller, Ir sensor, 2 motor) |
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8 |
Line tracer |
1) Robot-I |
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-. Line tracing concept, operation principles and basic algorithm |
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2) Exercise 1 : Making a line tracing robot (main controller, 3 Ir sensor, 2 motor) |
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3) Exercise 2 : Testing the operating status according to the different sensor's distance |
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4) Class robot competition : Line tracing |
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3 |
9 |
Science principle-VI in life |
1) Electronics Foundations-III |
- Remote controller |
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2) Exercise 1 : remote controller's function, usage and communication channel setting |
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3) Exercise 2 : Making a brick board game (main controller, remote controller, 1 motor) |
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4) Exercise 3 : Making a remote control car (main controller, remote controller, 2 motor) |
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5) Class robot competition : Car racing by remote controller |
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10 |
Avoider |
1) Robot-II |
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-. Obstacle avoiding concept, operation principles and basic algorithm |
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2) Exercise 1 : Making an avoider robot (main controller, 3 Ir sensor, 2 motor) |
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3) Exercise 2 : Testing the operating status according to the different sensor's distance |
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4) Class robot competition : Obstacle avoiding |
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11 |
Battle robot |
1) Robot-III |
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-. Understanding the conductors, insulators, semiconductors |
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2) Exercise 1 : Making a battle robot (main controller, remote controller, 2 motor) |
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3) Class robot competition |
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-. 1:1 battle competition (sumo wrestling) |
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-. 2:2 battle competition (bursting the balloon) |
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12 |
Soccer robot |
1) Robot-IV |
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-. Understanding the electric current, voltage and resistance |
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2) Exercise 1 : Making a spider soccer robot |
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3) Exercise 2 : Making a scorpion soccer robot |
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4) Class robot competition : 3:3 robot soccer game
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