Mobile-CASSY 2 WiFi

LD 524005W2
Mobile-CASSY 2 WiFi
Mobile-CASSY 2 WiFi

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Description

Multi-channel measuring device for student experiments and demonstrations in the natural sciences:

  • Large measured value display switches on automatically after start-up or when a sensor is attached (no boot time and no further keys to press)
  • 4 mm safety sockets for U, I, P and E as well as Type K socket for NiCr-Ni temperature probe integrated
  • for all CASSY sensors and sensors M
  • The touch wheel – with a turn of the wheel quickly change to the appropriate screen or the appropriate list entry
  • Measurement time, measurement interval, trigger and pre-trigger (advance) are adjustable
  • Graphs of measured values with freely selectable coordinate axes and selectable evaluation methods (e.g. zoom and straight line fitting)
  • Measured values and screen shots can be saved on an integrated micro SD card and copied onto a USB stick
  • Full support from CASSY Lab 2 (524 220), via USB lead for teaching by demonstration with the projector
  • Support leg allows easy viewing angle.
  • WiFi integrated.

Technical data

  • Graphics display: 9 cm (3.5"), colour QVGA (adjustable up to 400 cd/m²)
  • Inputs: 3 (can be used simultaneously)
  • Input A: U or CASSY sensor or sensor M
  • Input B: I or CASSY sensor or sensor M
  • Input ϑ: temperature
  • Measuring range U: ±0.1/±0.3/±1/±3/±10/±30 V
  • Measuring range I: ±0.03/±0.1/±0.3/±1/±3 A
  • Measuring range ϑ: -200 ... +200 °C / -200 ... +1200 °C
  • Sensor connections: each 2 for CASSY sensors and sensors M
  • Sampling rate: max. 500,000 values/second
  • Operation: large capacitive touch wheel (42 mm)
  • Resolution: 12 bit
  • Time resolution of the timer inputs: 20 ns
  • Loudspeaker: integrated for key tones and GM counter tube (can be disabled as required)
  • Data storage device: integrated micro SD card for more than a thousand measurement files and screen shots, optionally also via a USB stick
  • WiFi: 802.11 b/g/n (2.4 GHz) as access point or client (WPA/WPA2)
  • VNC server: integrated
  • Battery capacity: 14 watt-hours (AA size, replaceable)
  • Battery life: 8 h during operation, several years on standby
  • Kensington lock: as anti-theft protection
  • Dimensions: 175 mm x 95 mm x 40 mm

Scope of delivery

  • Mobile-CASSY 2 WiFi
  • Battery charger
  • NiCr-Ni temperature sensor
  • Quick start guide

Additionally recommended

1 5240034  4  Charging adapter for 4 Mobile-CASSY 2 LD
1 5240036  4  Holder for Mobile-CASSY 2, CPS LD
1 5240037  4  Holder for Mobile-CASSY 2, TPS LD
1 5240039  8  Storage tray Mobile-CASSY 2 LD
1 5240040 Holder for Mobile-CASSY 2, stand LD
1 524220  4  CASSY Lab 2 LD
1 666390  4  Storage Case for Mobile-CASSY 2 modules and sensors LD

Related Documents

HTML (Quickstart Guide) HTML (Quickstart Guide) Mobile-CASSY 2
PDF (Instruction Sheet) PDF (Instruction Sheet) [524 005W2] Mobile-CASSY 2 WiFi
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P1.4.2.1 Conservation of angular momentum in elastic and inelastic rotational collision
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P1.5.1.3 Oscillations of a rod pendulum and determination of the acceleration due to gravity on earth - Measuring with rotary motion sensor
PDF (Experiment description) PDF (Experiment description) P1.8.4.2 Measuring the surface tension using the "break-away" method - Recording and evaluating with CASSY
PDF (Experiment description) PDF (Experiment description) P1.8.5.4 Static pressure and determination of the volume flow with a Venturi tube - Measuring the pressure with a pressure sensor and CASSY
PDF (Experiment description) PDF (Experiment description) P1.8.5.6 Determining the wind speed with a Prandtl pressure probe- Measuring the pressure with a pressure sensor and CASSY
PDF (Experiment description) PDF (Experiment description) P1.8.6.4 Air resistance as a function of the wind speed and body shape - Measuring the wind speed with a pressure sensor and CASSY
PDF (Experiment description) PDF (Experiment description) P1.8.6.6 Pressure curve on an airfoil profile - Measuring the pressure with a pressure sensor and CASSY
PDF (Experiment description) PDF (Experiment description) P1.8.7.4 Verifying the Bernoulli equation - Measuring with a pressure sensor and CASSY
PDF (Experiment description) PDF (Experiment description) P2.2.2.1 Efficiency of a solar collector
PDF (Experiment description) PDF (Experiment description) P2.5.2.1 Pressure-dependency of the volume of a gas at a constant temperature (Boyle-Mariotte’s law)
PDF (Experiment description) PDF (Experiment description) P2.5.2.2 Temperature-dependency of the volume of a gas at a constant pressure (Gay-Lussac’s law)
PDF (Experiment description) PDF (Experiment description) P2.5.2.3 Temperature-dependency of the pressure of a gas at a constant volume (Amontons’ law)
PDF (Experiment description) PDF (Experiment description) P2.6.3.1 Determining the efficiency of the heat pump as a function of the temperature differential
PDF (Experiment description) PDF (Experiment description) P2.6.3.2 Investigating the function of the expansion valve of the heat pump
PDF (Experiment description) PDF (Experiment description) P2.6.3.3 Analyzing the cyclical process of the heat pump with the Mollier diagram
PDF (Experiment description) PDF (Experiment description) P3.1.2.2 Confirming Coulomb’s law - Measuring with the force sensor
PDF (Experiment description) PDF (Experiment description) P3.1.3.3 Measuring the potential inside a plate capacitor
PDF (Experiment description) PDF (Experiment description) P3.1.3.4 Measuring the potential around a charged sphere
PDF (Experiment description) PDF (Experiment description) P3.1.4.2 Kirchhoff’s voltage balance: Measuring the force between two charged plates of a plate capacitor - Measuring with the force sensor
PDF (Experiment description) PDF (Experiment description) P3.1.4.3 Measuring the force between a charged sphere and a metal plate - Measuring with the force sensor
PDF (Experiment description) PDF (Experiment description) P3.1.7.3 Determining the capacitance of a plate capacitor - Measuring the charge with nC sensor S and CASSY
PDF (Experiment description) PDF (Experiment description) P3.1.7.4 Measuring the electric field strength inside a plate capacitor
PDF (Experiment description) PDF (Experiment description) P3.1.7.5 Measuring the electric field strength inside a plate capacitor as a function of the dielectrics
PDF (Experiment description) PDF (Experiment description) P3.1.7.6 Measuring the electric field strength of a charged sphere in front of a conductive plate (image charge)
PDF (Experiment description) PDF (Experiment description) P3.2.3.1 Measuring current and voltage at resistors connected in parallel and in series
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P3.2.3.1 Measuring current and voltage at resistors connected in parallel and in series
PDF (Experiment description) PDF (Experiment description) P3.3.3.1 Measuring the force acting on current-carrying conductors in the field of a horseshoe magnet
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P3.3.3.4 Basic measurements for the electrodynamic definition of the ampere
PDF (Experiment description) PDF (Experiment description) P3.3.4.1 Measuring the magnetic field for a straight conductor and on circular conductor loops
PDF (Experiment description) PDF (Experiment description) P3.3.4.2 Measuring the magnetic field of an air coil
PDF (Experiment description) PDF (Experiment description) P3.4.2.1 Measuring the induction voltage in a conductor loop moved through a magnetic field
PDF (Experiment description) PDF (Experiment description) P3.4.6.2 Measuring the earth’s magnetic field with a rotating induction coil and CASSY
PDF (Experiment description) PDF (Experiment description) P3.6.6.1 Determining the heating power of an ohmic load in an AC circuit as a function of the applied voltage
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P5.3.1.4 Diffraction at a single slit - Recording and evaluating with CASSY
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P5.3.1.5 Diffraction at a double slit and multiple slits - Recording and evaluating with CASSY
PDF (Experiment description) PDF (Experiment description) P5.4.6.1 Faraday effect: determining Verdet’s constant for flint glass as a function of the wavelength
PDF (Description from CASSY Lab) PDF (Description from CASSY Lab) P5.5.1.2 Determining the luminous intensity as a function of the distance from the light source - Measuring with Mobile-CASSY
PDF (Experiment description) PDF (Experiment description) P5.5.2.1 Stefan-Boltzmann law: measuring the radiant intensity of a "black body" as a function of temperature
PDF (Experiment description) PDF (Experiment description) P5.5.2.3 Confirming the laws of radiation with Leslie's cube
PDF (Experiment description) PDF (Experiment description) P6.1.3.1 Determining the specific charge of the electron
PDF (Experiment description) PDF (Experiment description) P6.2.7.4 Measuring the Zeeman splitting of the red cadmium line as a function of the magnetic field - spectroscopy using a Fabry-Perot etalon
PDF (Experiment description) PDF (Experiment description) P6.4.1.4 Recording the characteristic of a Geiger-Müller (end-window) counter tube
PDF (Experiment description) PDF (Experiment description) P6.5.3.1 Nuclear magnetic resonance in polystyrene, glycerin and Teflon
PDF (Experiment description) PDF (Experiment description) P6.5.7.1 Deflection of beta radiation in a magnetic field
PDF (Experiment description) PDF (Experiment description) P7.1.4.2 Investigating the elastic and plastic extension of metal wires - Recording and evaluating with CASSY
PDF (Experiment description) PDF (Experiment description) P7.2.1.1 Investigating the Hall effect in silver
PDF (Experiment description) PDF (Experiment description) P7.2.1.2 Investigating the anomalous Hall effect in tungsten
PDF (Experiment description) PDF (Experiment description) P7.2.1.3 Determining the density and mobility of charge carriers in n-Germanium
PDF (Experiment description) PDF (Experiment description) P7.2.1.4 Determining the density and mobility of charge carriers in p-Germanium
PDF (Experiment description) PDF (Experiment description) P7.2.1.5 Determining the band gap of germanium
PDF (Experiment description) PDF (Experiment description) C1.1.2.1 Melting ice, boiling water
PDF (Experiment description) PDF (Experiment description) C1.1.2.2 Melting and solidification curve of tin (de)
PDF (Experiment description) PDF (Experiment description) C1.3.3.1 Thermal anomaly of water
PDF (Experiment description) PDF (Experiment description) C1.4.4.2 Temperature-dependency of the volume of a gas at a constant pressure (Gay-Lussac’s law) (de)
PDF (Experiment description) PDF (Experiment description) C1.7.2.1 Determination of acidity (pKa value) by titration
PDF (Experiment description) PDF (Experiment description) C1.7.3.1 Determination of the enthalpy of solution of salts
PDF (Experiment description) PDF (Experiment description) C1.7.3.2 Determination of the solubility product of silver halides
PDF (Experiment description) PDF (Experiment description) C2.3.3.1 Boiling range distribution of petrol
PDF (Experiment description) PDF (Experiment description) C2.3.3.2 Boiling range distribution and fractionated distillation of petroleum
PDF (Experiment description) PDF (Experiment description) C2.4.3.1 Distillation of red wine
PDF (Experiment description) PDF (Experiment description) C3.2.1.1 Gas chromatographical analysis of cigarette lighter gas (butane gas)
PDF (Experiment description) PDF (Experiment description) C3.2.1.2 Gas chromatographical separation of alcohols - effect of temperature, CPS version
PDF (Experiment description) PDF (Experiment description) C3.3.2.1 The Beer-Lambert law
PDF (Experiment description) PDF (Experiment description) C3.4.3.1 Nuclear magnetic resonance (NMR) on water, polystyrene, glycerine and Teflon
PDF (Experiment description) PDF (Experiment description) C3.5.1.3 Potentiometric titration of iron(II) ions (de)
PDF (Experiment description) PDF (Experiment description) C3.5.2.1 Conductometric titration of a hydrochloric acid solution, CPS variety
PDF (Experiment description) PDF (Experiment description) C3.5.3.2 Manganometric determination of iron(II) ions
PDF (Experiment description) PDF (Experiment description) C3.6.1.1 Determination of water contents with indicator reagents and immersion photometer
PDF (Experiment description) PDF (Experiment description) C3.6.4.2 Determination of the content of phosphoric acid in a cola drink
PDF (Experiment description) PDF (Experiment description) C4.1.2.2 Determination of the reaction order of the reaction of malachite green with hydroxide ions
PDF (Experiment description) PDF (Experiment description) C4.1.3.1 Reaction of malachite green with hydroxide ions
PDF (Experiment description) PDF (Experiment description) C4.1.3.3 Concentration and reaction rate: Magnesium in strong and weak acids
PDF (Experiment description) PDF (Experiment description) C4.1.4.1 The Briggs Rauscher Reaction
PDF (Experiment description) PDF (Experiment description) C4.2.3.1 Determination of the complex disintegration constant of Silver diamine complex.
PDF (Experiment description) PDF (Experiment description) C4.3.1.1 Differentiating between endothermic and exothermic reactions
PDF (Experiment description) PDF (Experiment description) C4.3.3.3 Determination of the enthalpy of neutralisation of acids and alkali solutions
PDF (Experiment description) PDF (Experiment description) C4.3.3.4 Determination of enthalpy of mixing
PDF (Experiment description) PDF (Experiment description) C4.4.1.4 Electrolytic dissociation: Dependence of conductivity on electrolyte concentration
PDF (Experiment description) PDF (Experiment description) C4.4.1.8 Conductivity of melts
PDF (Experiment description) PDF (Experiment description) C4.4.3.1s The electrochemical series using stand material
PDF (Experiment description) PDF (Experiment description) C4.4.3.2s Standard potentials of metals using stand material
PDF (Experiment description) PDF (Experiment description) C5.1.1.1 Production of sulfuric acid by the contact method
PDF (Experiment description) PDF (Experiment description) C5.3.1.2 Catalytic purification of automobile exhaust gases
PDF (Experiment description) PDF (Experiment description) C5.3.2.1 Greenhouse effect
PDF (Experiment description) PDF (Experiment description) C5.3.2.2 Ozone hole problem
PDF (Experiment description) PDF (Experiment description) C5.3.3.1 Recording a breakthrough curve of activated carbon filters
PDF (Experiment description) PDF (Experiment description) C5.4.1.2 Analysis of fuel from rapeseed oil
PDF (Experiment description) PDF (Experiment description) C6.1.2.1 Enzymatics: Splitting urea with urease
PDF (Experiment description) PDF (Experiment description) C6.1.2.2 Michealis-Menten kinetics using the enzyme urease
PDF (Experiment description) PDF (Experiment description) C6.2.1.1 Yeast fermentation - Test of oxygen consumption
PDF (Experiment description) PDF (Experiment description) C6.2.2.3 Production of yoghurt
PDF (Experiment description) PDF (Experiment description) B1.1.2.1 Determination of the reaction time
PDF (Experiment description) PDF (Experiment description) B1.1.2.2 Determination of nerve conduction velocity
PDF (Experiment description) PDF (Experiment description) B1.1.2.3 Dependence of the reaction time on the type of the stimulus
PDF (Experiment description) PDF (Experiment description) B1.1.2.4 Electromyogram (EMG) (de)
PDF (Experiment description) PDF (Experiment description) B1.1.2.6 Determination of the frequency-dependent hearing threshold and the hearing threshold
PDF (Experiment description) PDF (Experiment description) B1.1.2.7 Recording of a sound audiogram (hearing curve) (de)
PDF (Experiment description) PDF (Experiment description) B1.1.2.8 Skin resistance and skin conductance (de)
PDF (Experiment description) PDF (Experiment description) B4.1.2.1 Turbidity measurement of water (de)
PDF (Experiment description) PDF (Experiment description) B4.1.2.2 Determination of the pH value of water (de)
PDF (Experiment description) PDF (Experiment description) B4.1.2.3 Determination of the ion content in water (de)
PDF (Experiment description) PDF (Experiment description) B4.1.2.4 Determination of water hardness (de)

Downloads

Web Link Web Link CASSY.App Web
ZIP ZIP Mobile Config, Mobile Edit, Mobile-Control and Mobile-CASSY 2 Firmware (V1.23)
Utilities and firmware update without CASSY Lab 2
MSI MSI CASSY Lab 2 (en, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (fr, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (es, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (pt, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (it, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (nl, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (ru, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
MSI MSI CASSY Lab 2 (zh, V2.30)
Free demo version, full version requires a licence code of CASSY Lab 2
Manual Manual CASSY Lab 2 Manual (en)
Manual Manual CASSY Lab 2 Manual (fr)
Manual Manual CASSY Lab 2 Manual (es)
Web Link Web Link CASSY Lab 2 Web Help (en)
Web Link Web Link CASSY Lab 2 Web Help (fr)
Web Link Web Link CASSY Lab 2 Web Help (es)
ZIP ZIP CASSY SDK for own software development (Windows/Linux)
ZIP ZIP LabVIEW driver for LabVIEW 2017 or higher (Windows)
ZIP ZIP MATLAB driver with examples (Windows)
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