Product information "TI-Innovator™ TI-SensorLink Adapter"
Allows for connection to four popular Vernier sensors (pH, Temperature, Force, or Pressure sensors) to the TI-Innovator™ Hub. Designed to be used with the TI-Innovator™ Hub.
Bildungsstufe:
Diploma/ Vocational/ Uni, Middle years
DataLogger Schnittstellen:
TI Innovator
Fach:
informatics, mathematics, physics
language:
English, French, German, Italian
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The Stainless Steel Temperature Probe is a rugged, general-purpose temperature sensor that can be used in organic liquids, salt solutions, acids, and bases. Use it as you would use a thermometer for experiments in chemistry, physics, biology, Earth science, and environmental science.
Specifications
Temperature range: –40 to 135°C (–40 to 275°F)
Maximum temperature that the sensor can tolerate without damage: 150°C
Typical Resolution:0.17°C (–40 to 0°C)
0.03°C (0 to 40°C)
0.1°C (40 to 100°C)
0.25°C (100 to 135°C)
Temperature sensor: 20 kΩ NTC Thermistor
Accuracy: ±0.2°C at 0°C, ±0.5°C at 100°C
Response time (time for 90% change in reading):10 seconds (in water, with stirring)
400 seconds (in still air)
90 seconds (in moving air)
Probe dimensions:Probe length (handle plus body): 15.5 cm
Stainless steel body: length 10.5 cm, diameter 4.0 mm
Probe handle: length 5.0 cm, diameter 1.25 cm
What's included
Vernier Stainless Steel Temperature Probe
User Manual - TMP-BTA
Inspire the next generation of innovators and Inventors. The TI-Innovator Hub is the centerpiece of the TI-Innovator System, a project kit that extends the functionality of Texas Instruments (TI) graphing calculators to make coding and engineering design accessible to students in the classroom. Plug-and-play and ready-to-use with TI graphing calculators, the TI-Innovator Hub enables students to learn basic coding and design, use those skills to program and build working solutions, and connect science, technology, engineering and math (STEM) concepts.
Plug-and-play with the TI-84 Plus CE-T graphing calculator and the TI-Nspire CX handheld and software
Enclosed in a durable case that is ready for your classroom
Students can write code to program working solutions that actuate a red-green-blue LED, single red LED, light brightness sensor and speaker built into the TI-Innovator Hub.
I/O ports support additional components to expand TI-Innovator System functionality
Supports an external breadboard to create and build projects
TI LaunchPad Technology inside is the same technology used by real engineers to design products
Three input ports, Three output ports
Breadboard connector with 20 labeled pins
I²C port
Mini-USB Port (DATA port for connection to a TI graphing calculator, or a computer running TI-Nspire CX software)
Micro-USB port (POWER port to connect to external power source)
Powered by a MSP-EXP432P401-ET TI LaunchPad Board
Compatible programming languages:
TI Basic (through TI-84 Plus CE-T graphing calculator or TI-Nspire CX Technology)
Lua (through TI-Nspire CX Technology)
Use the Gas Pressure Sensor to monitor pressure changes of a gas in chemistry and biology experiments.
Specifications
Pressure Range: 0 to 210 kPa (0 to 2.1 atm or 0 to 1600 mm Hg)
Accuracy: ±4 kPa
Maximum pressure that the sensor can tolerate without permanent damage: 405 kPa (4 atm)
What's included
Vernier Gas Pressure Sensor
Tapered valve connectors (Stopper Stems)(2) inserted into a No. 5 stopper
Tapered valve connector (Stopper Stem)(1) inserted into a No. 1 stopper
Two-way valve
18 inch Tygon tubing with Luer Lock connectors
20 mL syringe
White transpiration tubing clamps (2)
User Manual - GPS-BTA
Our general-purpose pH Sensor can be used across disciplines, including chemistry, biology, middle school science, and environmental science.
Specifications
Range: pH 0–14
Accuracy with new electrode (pH): ±0.2
Type: Sealed, gel-filled, polycarbonate body, Ag/AgCl reference, single junction
Shaft Diameter: 12 mm OD
Storage solution: pH-4/KCl solution (10 g KCl in 100 mL buffer pH-4 solution)
What's included
Vernier pH Sensor
pH storage solution
pH storage solution bottle
User Manual - PH-BTA
Motion adds a new dimension of engagement in math, science and coding
Programming Rover to move is a fun way to explore topics and concepts in middle grades and high school, promote collaborative problem-solving, and spark lively conversations.
Plug-and-play ready
The TI-Innovator™ Rover is out-of-the-box ready to connect to the TI-Innovator™ Hub, which is placed in a special bay on Rover. Either a TI-84 Plus CE graphing calculator or TI-Nspire™ CX handheld is secured with clamps on top of Rover.
Motivate students to think differently
Rover rolls over roadblocks to learning by providing students with a new way to experience — not just see — math. The physical representation creates an additional entry point to problem solving that connects math, coding and movement.
Take the on-ramp to robotics
Rover is an introduction to coding and robotics. The simple programming language that is built into TI graphing technology makes it easy to program the system, run it and troubleshoot to correct or fine-tune performance.
Make math a moving experience
Motion enables students to engage in math from a new perspective. Rover puts math in their world in a way that encourages them to ask, "what if...?" and inspires them to persist in finding solutions to make the vehicle perform the way they want it to.
Built for the classroom
A durable, rechargeable battery powers Rover's two motors. The vehicle also includes a color sensor; a distance sensor; an LED display; a holder for a marker to draw paths on paper; and a gyroscope to measure heading.
Unlimited opportunities
Rover's design allows for access to the TI-Innovator™ Hub input and output ports, so students can add additional capabilities to their Rover experience.
The new TI-Nspire CX II-T CAS with colour display provides a combination of a handheld and Software! Whether in the classroom or at home, any kind of mathematical or scientific exercise can be solved with this computer algebra system (CAS). Thanks to parallel operation, files can be created on the PC and easily transferred to the handheld and vice versa.
Key Features
NEW: Faster processor over predecessor TI-Nspire CX CAS
NEW: CAS can be disabled. Deactivation of CAS in test mode possible! Easily disable the ability to perform symbolic arithmetic in document settings.
Handheld features:
Backlit high-resolution colour display for notes, graphs, geometry, lists & spreadsheets, data & statistics
Import your own images and superimpose graphs, points, etc.
154 MB of available RAM
3D display of function graphs
Differential equations (Euler & Runge-Kutta)
Periodic table (tns file)
Chem Box feature allows easy input chemical formulas and equations
Vernier Data Quest app
Touchpad for easy navigation
Scratchpad (notepad) in the Home view for quick calculations (Calculator) and function graphs (Graph) without saving.
Variable page layout for parallel display of up to 4 working areas.
Data Collection SupportCompatible with TI-Nspire Lab Cradle, Vernier EasyLink® USB Sensor and Vernier EasyTemp® temperature sensor systems to allow collection and analysis of real-world data
Advanced mathematics Software:
Symbol manipulation for ......Algebra including arithmetic with undefined variables, factoring and expanding polynomials and roots in equations....Differentiation and integration including indefinite integrals, derivatives, limits and Taylor polynomials.
Solve simultaneous equations (linear and non-linear) and differential equations
Linear algebra (eigenvalues and eigenvectors, matrix functions)
Units, conversions, physical constants
TI-Nspire CAS includes the following 8 applications which are dynamically linked to each other:CalculatorPerform calculations in proper math notation.GraphsPlot, explore and animate functions, equations and inequalities.GeometryConstruct and explore dynamically geometric figures and properties.DataQuestPlug and play data collection and scientific analysis.Lists & SpreadsheetCombine spreadsheet functionality with mathematical operations.Data & StatisticsDynamic graphing and interactive analysis of data.NotesCreate interactive activities, documents or reports.ProgrammingAdd new functionality and create rich STEM activities.
Press-to-Test: How to use Press-to-Test
Further info: TI-Nspire Technology
Use the Dual-Range Force Sensor in a wide variety of experiments, including the study of friction, simple harmonic motion, impact in collisions, or centripetal force.
Specifications
± 10 N Range Resolution: 0.01 N
± 50 N Range Resolution: 0.05 N
Accuracy: ±0.2 N when calibrated
What's included
Dual-Range Force Sensor
Hook
Bumper
Nylon thumb screw
Accessory Rod
User Manual - DFS-BTA
CHF 262.90*
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