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Tender For Providing, Supplying, Commissioning Of Innovation Lab Equipments For Government High School At Yettinabudihal Village In Ballari Taluk Ballari District Under 2515 Kkrdb (Cmdq Projects) For The Year2024-25, Ballari-Karnataka

Public Works Department has published Tender For Providing, Supplying, Commissioning Of Innovation Lab Equipments For Government High School At Yettinabudihal Village In Ballari Taluk Ballari District Under 2515 Kkrdb (Cmdq Projects) For The Year2024-25. Submission Date for this Tender is 24-06-2025. Laboratory Equipment Tenders in Ballari Karnataka. Bidders can get complete Tender details and download the document.




Tender Notice

49685505
Tender For Providing, Supplying, Commissioning Of Innovation Lab Equipments For Government High School At Yettinabudihal Village In Ballari Taluk Ballari District Under 2515 Kkrdb (Cmdq Projects) For The Year2024-25
Tender
Indian
Karnataka
Ballari
24-06-2025

Tender Documents

Tender Details

Providing, Supplying, Commissioning Of Innovation Lab Equipments For Government High School At Yettinabudihal Village In Ballari Taluk Ballari District Under 2515 Kkrdb (Cmdq Projects) For The Year2024-25 --1 Six Axis Robotic ARM Consists of •Axis – 6 axis•64- bit ARM Cortex Processor• 8GB RAM• 64 GB Storage Capacity• Servo Motors with 9.6 Kg/cm Torque • Payload – 200g• Reach – 200 mm• USB Support port • Should have 8 MP Camera • User can add various objects for detection • Should identify pre trained Objects • Should perform pick and place operation • Dimension in cm(D x H): 110 x 600 • One pair of PCB and Mechanical casing should be provided 2 Petro robot should consists of • Should have 8 MP Camera • 64 bit ARM Cortex Processor • 2-D Lidar Sensor • Person Recognition• Object Recognition • Should consists of 4 leg arm• Should perform forward and reverse motion • Should have rechargeable battery • Should have 12 V rechargeable Battery• Power Adapter for Battery Recharge •Dimension in cm (L x W x H): 62 x 20 x 45•One pair of PCB and Mechanical casing should be provided •Tasks performed: 1. Walking2. Running3. Pushups4. Dance5. Jumping6. Sit and Stand positions7. Lane following 3 Line Following robo car should consists of • A Robotic car with 4 wheels• Should have 2 IR sensors • Should have 4 DC motors • Atmega 328P Microcontroller • L298 Motor Driver for Direction and Speed control • Dimension (L x W x H): 70 x 19 x 22mm• Shaft Length (mm): 8.5 • Shaft Diameter (mm): 5.4mm-(round side) and 3.5mm-(flat side)• Rated Torque (Kg-Cm): 0.8• Gearbox Shape: Straight • Weight: 250gm•One pair of PCB and Mechanical casing should be provided 4 Obstacle avoidance robo car consists of • Robotic Car with 4 Wheels • Ultrasonic Sensors• 4 DC motors with drive • ESP32 controller • Dimension (L x W x H): 70 x 19 x 22mm• Shaft Length (mm): 8.5• Shaft Diameter (mm): 5.4mm-(round side) and 3.5mm-(flat side)• Rated Torque (Kg-Cm): 0.8 • Gearbox Shape: Straight• Weight: 250gm•One pair of PCB and Mechanical casing should be provided 5 Voice controlled Robo Car should consists of • Robotic Car with 4 Wheels • DC motors with drives• Bluetooth controller• Should perform motions by voice command • Ultrasonic Sensors• 4 DC motors with drive ESP32 controller • Dimension (L x W x H): 70 x 19 x 22mm• Shaft Length (mm): 8.5• Shaft Diameter (mm): 5.4mm-(round side) and 3.5mm-(flat side)• Rated Torque (Kg-Cm): 0.8• Gearbox Shape: Straight • Weight: 250gm •One pair of PCB and Mechanical casing should be provided 6 RC Tank Robot consists • RC Tank Chassis Kit – 01• ESP32 controller• LED • Switch• 4 DC motors with Drive Battery • 4 DC motors with drive ESP32 controller• Dimension (L x W x H): 70 x 19 x 22mm• Shaft Length (mm): 8.5• Shaft Diameter (mm): 5.4mm-(round side) and 3.5mm-(flat side)• Rated Torque (Kg-Cm): 0.8• Gearbox Shape: Straight• Weight: 250gm•One pair of PCB and Mechanical casing should be provided 8 IoT Pack IoT Based Smart Agriculture Smart Agriculture model should include an Raspberry Pi, a 10 inch LCD display, soil moisture sensor, water pump, and relay to automate irrigation for plants. The soil moisture sensor should continuously monitor the moisture levels in the soil. When the soil is wet, the relay should remain off, preventing the pump from operating. However, when the soil moisture level drops and becomes dry, the relay should activate, turning on the water pump to irrigate the soil. The LCD display should provide real-time feedback on soil moisture levels, ensuring efficient water management and promoting healthy plant growth. Constructed with a durable plastic body for resilience, this project demonstrates the effectiveness of smart technology in modern agriculture, optimizing water usage and enhancing crop health while ensuring reliable performance in various environmental conditions. • Microcontroller: Raspberry pi• Soil Moisture Sensor – Measures soil humidity levels.• DHT11/DHT22 Sensor – Monitors temperature and humidity.• pH Sensor – Checks soil acidity or alkalinity.• LDR (Light Sensor) – Detects sunlight intensity.• Rain Sensor – Detects rainfall for irrigation control.• Ultrasonic Sensor – Monitors water level in tanks.• Water Pump – Automated irrigation control via relay.• Servo Motor – Adjusts solar panel orientation.• Relay Module (5V) – Controls high-power devices.• IoT Connectivity – Data transmission via WiFi/Bluetooth.• Cloud Storage – Stores real-time sensor data online.• Web App – Displays real-time farm conditions.• Power Adapter – Powers all connected components. 9 Smart Watch Smart Watch is an innovative wearable device project, and the model should include an ESP processor, OLED display, and four push buttons to provide a range of functionalities. The watch must feature a custom-designed PCB for compactness and efficiency, along with a durable watch belt for comfortable wear. One push button should be dedicated to displaying the current time, date, and day, while another button should provide weather information, enhancing convenience for users. The remaining two buttons should be integrated for the IoT interface, allowing interaction with various smart devices and applications. This project demonstrates the potential of combining advanced technology with practical design, creating a multifunctional smartwatch that caters to modern lifestyle needs, ensuring reliability and user-friendly operation. • ESP Processor – Core controller for smartwatch operations. • OLED Display – Displays time, date, weather, and IoT interactions. • Four Push Buttons – Dedicated for time, date, weather, and IoT control. • Custom-Designed PCB – Ensures compactness and efficiency. • Durable Watch Belt – Provides comfort for daily wear. • Time, Date, and Day Display – Activated by a dedicated button. • Weather Information Display – Accessed via a separate button. • IoT Integration – Controls and interacts with smart devices. • Energy-Efficient Design – Optimized for long battery life. • Modern & User-Friendly – Enhances convenience and usability. 11 Immersive Technology Pack VR Headset Kit Should Consist of Following Line Item VR Head Set • Storage: 512GB• Display: Each eye experiences a resolution of 2064 x 2208 pixels, delivering sharp and immersive visuals.• Processor: Powered by the Snapdragon XR2 Gen 2 chipset, providing enhanced performance for demanding VR applications.• Refresh Rate: Supports a 120Hz refresh rate, ensuring smooth and responsive gameplay.• Memory: Equipped with 8GB of RAM to handle multitasking and complex VR environments.• Mixed Reality Capabilities: Features full-color passthrough, allowing users to blend virtual and real-world elements seamlessly.Design: Utilizes pancake optics to reduce the headsets size, offering a more comfortable fit for extended use. 12 32-inch or more smart LED TV to Stream a VR applications • Resolution: HD (720p)• Smart Platform: Google TV• Features: Google Play, Google Cast Built-in, HDR10, Dolby Audio, Voice Remote, Live TV Streaming • Availability: Amazon 13 AA Batteries – 10 • Voltage: 3.7V (Lithium-Ion)• Capacity: 1800–3500 mAh• Chemistry Types: Alkaline, NiMH (Rechargeable), Lithium, Zinc-Carbon• Size: Diameter ~14.5mm, Length ~50.5mm• Weight: ~23g to 30g 14 6DoF AR-VR Educational Controller • can be used as and augmented reality (AR) device. Hold virtual heart, lungs, dinosaurs, plants and so much more in your hand to get an engaging learning experience. • AR provides students with opportunities to deepen their knowledge within several areas, including:• Science• Working with numbers• Spatial concepts • Content creation• Real-life environments & scenarios 15 Samsung Galaxy M15 5G or ARCore supported Devices • Display: 6.5-inch Super AMOLED, 1080 x 2340 pixels• Processor: MediaTek Dimensity 6100+, Octa-core• RAM & Storage: 4GB/6GB/8GB RAM, 28GB/256GB storage (expandable up to 1TB)• Rear Cameras: 50MP (wide) + 5MP (ultra-wide) + 2MP (macro)• Front Camera: 13MP• Battery: 6,000mAh, 25W fast charging • OS: Android 14 with One UI 6• Security: Side-mounted fingerprint sensor • Connectivity: 5G, NFC support• Dimensions: 160.1 x 76.8 x 9.3mm, • Weight : 217g 16 VR headset should come with following virtual environments application with iteams d) VR chemistry labe) VR human anatomyf) VR tour guideg) VR English Learning Apph) VR space explorationi) VR electrical simulatorj) VR Based Lathe Machine k) VR Based SMD Soldering & De soldering 17 Drone Kit Should Consist of Following Line Item. Drone Kit with Wi-Fi and Camera is an ideal project for enthusiasts looking to build a custom drone from the ground up. This kit typically includes essential components such as a frame, brushless motors (BLDC), electronic speed controllers (ESCs), a flight controller board (FCB), and a Wi-Fi-enabled camera for real-time video transmission. It offers the flexibility of adding a LiPo battery for power, a remote controller, and propellers for flight stability. With built-in Wi-Fi, users can easily control and monitor the drone using a mobile app or computer, while the camera provides aerial photography and video streaming capabilities. • 1 x F450 Frame • 4 x 1000kv BLDC Motor • 4 x ESC Motor • 1 x 2-3 Cell Battery Charger• 1 x 2200 mAh Lipo Battery• 1 x Fly Sky FS-CT6B 6ch 2.4GHz Transmitter & Receiver• 1 x APM 2.8 Flight Controller (Without Compass) 18 Mini Makers Pack Thermo Sage Thermo Sage is a touch-free temperature monitoring system, and the model should include an ESP8266, OLED display, infrared temperature sensor, ultrasonic sensor, two LEDs, and a buzzer for efficient health monitoring. When the ultrasonic sensor detects a person within 10 cm, the infrared sensor measures their body temperature, displaying the result on the OLED screen. If the temperature is normal, the green LED lights up as an indication. However, if the temperature exceeds the normal range, the red LED activates, and the buzzer sounds an alert. The design must feature a durable plastic body for reliable performance, offering a safe, contactless solution for monitoring body temperature, ideal for public health and safety applications. • Microcontroller: ESP8266 for wireless connectivity• Display: OLED screen for temperature readings• Temperature Sensor: Infrared sensor for touch-free measurement• Distance Sensor: Ultrasonic sensor to detect person within 10 cm• LED Indicators: Green LED for normal temperature, red LED for high temperature• Buzzer: Alerts when temperature is above normal range• Body: Durable plastic for reliable performance• One pair of PCB and Mechanical Design will be provided 19 Sun Quest Sun Quest model should include an Arduino Nano, two LDR modules, a servomotor, a solar panel, and two LEDs to maximize energy efficiency. The LDR modules detect light intensity, enabling the system to track the sun’s position. When one LDR senses higher light intensity, the servo motor should rotate the solar panel toward that direction to optimize energy capture. The LEDs connected to the solar panel will demonstrate real-time power generation, lighting up to show how current is produced as the panel adjusts. The design must feature a durable plastic body for longevity, enhancing solar energy efficiency by dynamically following the sun’s path throughout the day. • Microcontroller: Arduino Nano for system control• Light Sensors: Two LDR modules for detecting light intensity• Actuator: Servo motor for rotating the solar panel• Solar Panel: Generates and demonstrates power output• LED Indicators: Show real-time power generation• Body: Durable plastic for longevity • One pair of PCB and Mechanical Design will be provided 20 LightScape Lightscape model should include an Arduino Nano, LDR module, IR sensor, and 6 LEDs to optimize energy usage based on environmental conditions. When the LDR detects darkness (indicating nighttime), the system should activate, keeping 3 LEDs ON for basic lighting. When the IR sensor detects movement, all 6 LEDs should turn ON for 5 seconds to enhance visibility for pedestrians or vehicles, then return to 3 LEDs ON. During daylight, when the LDR senses light, the LEDs should remain OFF to conserve energy. The design must feature a durable plastic body for reliability, providing efficient, adaptive street lighting that responds to both time of day and movement, significantly improving energy conservation and safety on the streets. • Microcontroller: Arduino Nano for system automation• Sensors: LDR for detecting light levels, IR sensor for motion detection• LEDs: 6 LEDs for adaptive street lighting• Lighting Control: 3 LEDs ON at night, all 6 ON when motion is detected for 5 seconds• Energy Conservation: LEDs OFF during daylight • Body: Durable plastic for reliability• One pair of PCB and Mechanical Design will be provided 21 Navwave NavWave is a sonar-inspired object detection system, and the model should include an ESP8266, OLED display, ultrasonic sensor, and servo motor to detect and display nearby objects. The ultrasonic sensor, mounted on the servo motor, should continuously rotate from 0 to 180 degrees, scanning the surroundings for obstacles. As objects are detected, the system should display a dotted pattern on the OLED screen, similar to a submarine radar interface, providing a real-time visual representation of object proximity and location. The design must feature a durable plastic body for reliability, simulating sonar navigation and offering a dynamic way to monitor nearby obstacles through the rotating ultrasonic sensor and radar-like display. Its robust design ensures optimal performance in various environments, making it an excellent tool for obstacle detection and navigation. •Microcontroller: ESP8266 for processing and wireless capability• Display: OLED screen with radar-like visual representation• Sensor: Ultrasonic sensor for object detection• Actuator: Servo motor for 0°-180° scanning motion• Detection Mechanism: Real-time scanning and obstacle mapping• Body: Durable plastic for reliability• One pair of PCB and Mechanical Design will be provided 22 Electronics & Hardware Kit Universal Electrical/Electronic breadboard plug and play training kit designed to perform the experiments from the basic to advance level of electrical and electronics exercises, This kit is made easy to conduct experiments by plugging in the components in to the specifically designed breadboard. Should have built-in Function generator, power supply and required meters List of components • Resistors Set• Potentiometers • Non-linear resistors VDR-, LDR-, NTC-, PTC resistors • Capacitors Set• Transformer 27 Smart Solar Renewable Energy Kit • Solar Photovoltaic Training Kit for Lab experiments• PV Module Stand: 1No.. 28 SAM S-5 Missile System Missile defense systems are essential for national security, airspace protection, and strategic deterrence. This will explore the working principles of the missile system, focusing on its launch mechanism, guidance technology, and interception capabilities. Additionally, it will analyze the applications of the model in air defense, including target tracking, threat neutralization, and military strategy. SAM S-5 Missile System should consist of the following items. • Raspberry Pi x 1• Camera Module x 1• Lidar or Ultrasonic sensor x 1 • Servo Motors• Gyroscope x 1• Shooter x 1• Battery x 1 • Battery Adapter x 1 29 GEO Satellite Communication Kit Satellites play a crucial role in modern communication, navigation, weather forecasting, and scientific research. This will explore the communication and data transmission process in GEO satellites analyze the applications of GEO satellites in telecommunications, weather forecasting, and remote sensing. GEO Satellite Communication Kit should consist of the following items. • Raspberry Pi x 3• ESP8266 x 3• ZigBee Module and adapter x 3 • RF Module x 3 • Temperature and Humidity Sensor x 2 • Soil Moisture Sensor x 1 • NPK Sensor x 1 • Pressure Sensor x 2• Co2 Sensor x 1• Camera Module x 1• Buzzer x 3 • LEDs• Rover Model x 1• Base station Model x 1• Battery • Battery Adapter 30 LUNAR PATH Explorer- Rover BOT It should comes with Matt finished metal chassis. Included all sensor metal clamps, and high torque DC Johnson A grade motors. Compatible with Arduino, raspberry, etc. Easy to assemble. Assembly manual provided in the kit. All required components, sensors, and tools are provided in the kit. It should consists of following items: 12V DC 10 RPM MOTORS -2• ULTRASONIC SENSORS - 3• IR SENSORS - 5 • WIDE TRACK WHEELS - 4• WIDE TRACK BELT• NUT BOLTS• SPANNER • TWO IN ONE SCREWDRIVER,• JUMPER WIRES• SG90 SERVO MOTOR -1 • ON/OFF ROCKER SWITCH -2• TOGGLE SWITCH - 2• MOTOR WIRES 31 Package No. 1 Atal Tinkering Lab The package should include all items As per QR/specification for Package No. 1 - Atal Tinkering Lab of NITI AAYOG Electronics Development, Robotics, Internet of Things and Sensors approved by NITI AAYOG (Approved Copy of Qrs / Specification uploaded in Gem portal) Specification: Microcontrollers & Boards:• Arduino Uno/Nano/Mega (or equivalents).• Raspberry Pi 3 Model B+.• ESP32, Node MCU.Prototyping Tools:• Solderless breadboards (400 and 800 pins).• Self-adhesive proto shield and FR2 A-grade materials.• Hook-up wires, jumper cables (M-M, M-F, F-F), and alligator connectors.Sensors & Modules:• Wide range of sensors: Humidity, temperature, motion, gas (MQ series), IR, ultrasonic, PIR, and more.• RFID Reader, Bluetooth, GSM, GPS, and Wi-Fi modules.• Capacitive touch, soil moisture, rain, and color recognition sensors.Displays & Actuators:• 16x2 LCD display with I2C interface. • LED matrices, RGB LEDs, and various single-color LEDs.• Motors: DC, stepper, servo, vibrating, and BO motor with driver modules.Miscellaneous Components: • Resistor and capacitor kits, diodes, transistors, and ICs (LM555).• Relays, motor drivers, and piezoelectric plates.• Robotics, drone, and application-specific DIY kitsPower & Connectivity:• USB cables, battery packs, power banks, and clips. 32 Package No. 2 Atal Tinkering Lab – Rapid Prototyping Tools The Package should include all items As per QR/specification for Package No.2 - Atal Tinkering Lab of NITI AAYOG Rapid Prototyping Tools approved by NITI AAYOG Specifications: • 3D Printer Kit and tools • Dedicated UPS/Power back up • Filament for 3D printer • Filament Storage Box • Set of Arts & Crafts Accessories – e.g.- stationary items and basic prototyping materials 33 Package No. 3 Atal Tinkering Lab – Mechanical, Electrical and Measurement Tools The package should include all items As per QR/specification for Package No.3 - Atal Tinkering Lab of NITI AAYOG Rapid Prototyping Tools approved by NITI AAYOG

Key Value

Document Fees
INR 1340 /-
EMD
INR 107000.0 /-
Tender Value
INR 53.24 Lakhs /-

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