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SenseDisc Pro ADVANCE is a superior-level STEM kit specially designed for the advanced modernization of school and university laboratories.
This professional package brings together the autonomous data acquisition console and a total of 17 sensors (4 natively integrated sensors in the console, 9 dedicated high-precision external sensors, and 4 additional sensors for universal inputs), transforming physics, chemistry, biology, and integrated science classes into academic-level practical experiments.
Any digital science lab kit sensedisc pro advance combines a data acquisition console equipped with a color touch screen and a rechargeable battery with a wide range of specialized modules.
The system allows operation both autonomously and through direct connection via USB, Bluetooth, or Wi-Fi to interactive displays, PCs, Macs, tablets, or phones.
The dedicated iLab software platform ensures the collection, display, and real-time analysis of experimental data, providing students and teachers with advanced graphic processing tools, data tables, calibration functions, and export options for flawless laboratory reports.
Main Advantages of SenseDisc Pro ADVANCE Kit:
Maximum Configuration with 17 Sensors: Offers comprehensive coverage through 4 integrated sensors, 9 dedicated external sensors, and 4 universal input sensors, covering any experimental requirement from the school curriculum.
Flexibility and Portability: Autonomous console with touch screen and Li-Po battery allows experiments to be conducted both in the lab and in the field.
iLab Educational Software: Intuitive interface for data visualization in the form of dynamic graphs, analog indicators, or numeric tables.
Plug & Play Connectivity: Automatic recognition of sensors connected to the console without complex setup procedures.
Total Interoperability: Native compatibility with multiple operating systems (Windows, macOS, iOS, Android, Linux).
Technical Specifications
1. SenseDisc Pro Base
Total Sensors Available in Kit: 17 sensors (4 integrated in base + 9 dedicated external sensors + 4 universal input sensors)
Sampling Accuracy: Up to 100,000 samples/second
Display: 3.5 inch TFT Color Touchscreen (320x240 resolution)
Connectivity: Bluetooth, USB, Wi-Fi
Internal Storage: Integrated flash memory for over 100,000 records
Power Supply: Rechargeable Li-Po battery (operating autonomy > 8 hours)
Analysis Software: iLab (included, with user license)
OS Compatibility: Windows, macOS, iOS, Android, Linux
2. iLab Data Analysis Software Specifications
Display Modes: Line graph, analog indicator, digital, data table, GPS map
Analysis Functions: Curve fitting (linear, polynomial, exponential), derivation, integration, statistics
Real-Time Processing: Live sampling and graphic playback of data from all connected sensors
Data Export: CSV format, Excel, graphic image, save laboratory projects
Experiment Settings: Adjust sampling frequency, recording duration, and triggers
3. Sensors Integrated in SenseDisc Pro Base (4 Sensors)
Voltage Sensor:
Applications: Electric voltage measurement and circuit analysis in the physics lab.
Current Sensor:
Applications: Electric current intensity measurement and Ohm's law verification.
Temperature Sensor:
Measurement range: -40 °C to +135 °C | Accuracy: ±0.5 °C
Applications: Thermal process monitoring, heat of reaction, state changes.
Motion / Ultrasonic Sensor:
Measurement range: 0.2 m to 6 m | Resolution: 1 mm
Applications: Position, velocity, and acceleration determination.
4. External Sensors Package (9 Dedicated Sensors + 4 Universal Input Sensors)
The 9 Dedicated External Sensors (Specifications and Usage):
1. Millivolt Voltage Sensor:
Measuring Range: -500~500mV
Accuracy: ±1%
Resolution: 0.3mV
Input Impedance: 500kΩ
Usage: High-precision measurement of small electrical potential differences in sensitive electronic circuits, electrochemistry experiments (galvanic cell emf), and thermocouples.
2. Current Sensor:
Measuring Range: -30A ~ +30A
Accuracy: ±2%
Resolution: 0.02A
Usage: Measuring electric current intensity in complex direct and alternating current circuits with high amperage values.
3. Temperature Sensor:
Measuring Range: -40°C to 135°C
Accuracy: ±0.6°C
Resolution: 0.1°C
Usage: Experiments regarding heat absorption and dissipation, study of boiling and freezing points, thermodynamic chemical reactions, and Joule's law.
4. Thermocouple Sensor:
Measuring Range: -40°C to 135°C
Accuracy: ±0.6°C
Resolution: 0.1°C
Usage: Heat absorption and dissipation experiments for objects of different colors, investigating the influence of abiotic factors on crustacean distribution, heat absorption and dissipation in various liquids, water cooling models, mechanical work through friction, water boiling experiments, relationship between boiling point and pressure, Joule's law, heat of acid-base reactions, and oxygen corrosion of iron.
5. Motion / Ultrasound Sensor:
Measuring Range: 20cm ~ 600cm
Accuracy: ±2%
Resolution: 0.1cm
Usage: Used to measure the displacement of moving objects. Typical experiments: exploring uniform rectilinear motion, using the displacement sensor to measure the trolley's movement speed, and other related experiments.
6. Light Sensor:
Measuring Range: 0 ~ 55000 Lux
Accuracy: ±5%
Resolution: 15 Lux
Usage: Used for sensitive, precise, and fast measurement of environmental light intensity. Typical experiments: exploring the relationship between illumination and distance (inverse-square law in optics) and the study of photosynthesis.
7. Sound Level Sensor (Sound Level Meter):
Measuring Range: 40dB ~ 92dB
Accuracy: ±4dB
Resolution: 0.1dB
Usage: Sound synthesis, environmental noise measurement, acoustic wave reflection analysis, and study of sound level intensity.
8. Absolute Pressure Sensor:
Measuring Range: 0 ~ 400 kPa
Accuracy: ±6 kPa
Resolution: 0.1 kPa
Usage: Used to measure the absolute pressure of a gas in an atmospheric environment or a closed space. Typical experiments: measuring atmospheric pressure, chemical reactions of metals with hydrochloric acid and dilute sulfuric acid, compression ignition device experiments, study of water boiling, and pressure-temperature relationship.
9. Heart Rate Sensor:
Measuring Range: 0 ~ 200 bpm
Accuracy: ±2 bpm
Resolution: 1 bpm
Usage: Used for real-time acquisition and display of heart rate and pulse changes on the terminal. Typical experiments: measuring human heart rate in different states (resting, physical exertion) and advanced physiology or biology experiments.
The 4 Universal Input Additional Sensors and Their Usage:
1. Force Sensor:
Measuring Range: -50N ~ +50N
Accuracy: ±1% F.S.
Resolution: 0.03N
Usage: Used to measure pulling and pushing forces. Typical experiments: estimating atmospheric pressure, relationship between action force and reaction force, and other related experiments.
2. pH Sensor:
Measuring Range: 0 ~ 14 pH
Accuracy: ±0.1 pH
Resolution: 0.01 pH
Usage: Used for fast and precise measurement of solution pH values. Typical experiments: measuring garden soil pH, acid rain pH measurement, acid-base titrations, and neutralization experiments.
3. Conductivity Sensor:
Measuring Range: 0 ~ 20000 µS/cm
Accuracy: ±3% F.S.
Resolution: 6 µS/cm
Usage: Used to measure the electrical conductivity of solutions. Typical experiments: measuring drinking water or tap water conductivity, comparing the conductivity of different aqueous solutions, and investigating electrolytes.
4. Dissolved Oxygen & Gas Oxygen Integrated Sensor:
Dissolved Oxygen:
Measuring Range: 0 ~ 20 mg/L
Accuracy: ±0.5 mg/L
Resolution: 0.01 mg/L
Gas Oxygen:
Measuring Range: 0 ~ 100%
Accuracy: ±2% F.S.
Resolution: 0.1%
Usage: Used to measure dissolved oxygen concentration in liquid media, as well as oxygen concentration in gaseous state. Typical experiments: exploring candle burning, studying physical and chemical properties of water bodies, and other related experiments.
Usage Scenarios in School Laboratory with iLab Software
Physics, Mechanics, and Electromagnetism: Detailed study of circuits with the millivolt and current sensors; kinematics experiments using the ultrasound motion sensor, force sensor, and triaxial accelerometer for live graphic analysis in iLab.
Chemistry and Thermodynamics: Real-time monitoring of thermal variations with the thermocouple and temperature sensor, study of absolute pressure, as well as analysis of solution properties with the pH and conductivity sensors.
Biology, Anatomy, and Physiology: Investigating vital parameters (heart rate, pulse) in various states of exertion and rest, as well as studying biological processes with the integrated oxygen sensor.
Environmental Science and Georesearch (Fieldwork): Collecting field data (temperature, motion, gas, pH, pressure, altitude, dissolved oxygen) automatically correlated with GPS coordinates during outdoor practical applications.
ADVANCE Kit Contents (17 Sensors)
SenseDisc Pro Datalogger Console (with 4 integrated sensors: Altimeter, Barometer, Triaxial accelerometer, GPS)
Set of 9 high-precision dedicated external sensors (Millivolt, Current, Temperature, Thermocouple, Motion, Light, Sound, Absolute Pressure, Pulse)
4 additional universal input sensors (Force, pH, Conductivity, Dissolved Oxygen/Gas)
USB data and charging cable
Compatible power adapter / charging station
iLab data acquisition and analysis software suite (multi-platform license for Windows, macOS, iOS, Android)
User manual and detailed scientific experiment guide
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