Target indicator flashes with each click. These include objects between the sensor and target object,Įither directly in front of the sensor or to the sides.
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Remove objects that may interfere with the measurement. On the GLX while viewing any display screen, press c Press Velocity orĪim the motion sensor slightly up to avoid detecting the In the SPARKvue graph, press the Graph Tools icon to open In the PASCO Capstone graph, click the label of the verticalĪxis and select Velocity or Acceleration from the Measurements Menu. You can alsoĮnable Velocity and Acceleration measurements. The Position measurement appears by default. If the object will move, it should move directly toward The object should be at least 15 cm from the transducer. Set the range switch to the short range (Īrrange the Motion Sensor and object so that the Motion
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The Xplorer GLX automatically detects the Motion SensorĪnd opens a graph display of position on the vertical axis andĬlick s again to start recording data in a new data run. To create a graph display, double click a choice in the workbook page, or drag the Graph icon from the Displays palette In the Tools palette to open the Hardware Setup panel.Ĭonfirm that the panel shows the icon of the Motion Sensor In the software, click the “Hardware Setup” icon PASCO Capstone will automatically prepare itself for dataĬollection. The interface to it and start the data acquisition software. To Connect to a PASPORT-compatible InterfaceĬonnect the Motion Sensor's plug to a PASPORT input port Press a measurements and then press the “Show” icon to create a graph display. Shows a list of the sensor’s parameters (such as position, When the sensor is connected to a SPARK SLS, the screen The User’s Guide or the on-line help for the interface and/or the data acquisition software. Note: Essential PASCO Capstone, SPARK SLS, and GLX tasks areĭescribed briefly in this instruction sheet. Theory of operation is described and specifications are listed at
#Set range axis pasco capstone software
This instruction sheet includes procedures for setting up the hardware and software collecting data, changing the sample rate, calibrating the sensor, mounting the sensor on equipment, and Measurements, it determines the position, velocity, and acceleration of the object. Times between outgoing pulses and returning echoes.
#Set range axis pasco capstone series
It produces a series of ultrasonic pulses and detects the sound reflecting back from an object in front of it. To measure and record position, velocity, and acceleration. The PS-2103A Motion Sensor works with your PASCO interface Move the object in a straight line directly away from or Place an object in front of the sensor at least 15 cm away.Ĭlick “Record” or press “Start to begin recording data. It and start the data acquisition software (such as PASCO If you are using a computer, connect the PASCO interface to Interface (such as the 850 Universal Interface or the SPARK He is married to Mateja Wheeler, and they are expecting a baby boy mid October.Connect the Motion Sensor to your PASPORT-compatible He is currently working towards a PhD in Electrical Engineering at Stanford University.
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Jonathan Wheeler attended Andrews University from 2011-2016, where he earned a BS in Physics and Mathematical Studies, and a BSE in Engineering. My PhD studies ways to overcome these limits by using a new type of optical source, namely a stable laser whose temporal coherence we intentionally destroy with high-speed random phase modulation. Conventional FOGs require highly incoherent optical sources (such as erbium-doped fiber sources) to achieve high levels of accuracy, but the erbium-doped fiber sources used in most FOGs have fundamental physical limits that limit the SNR and stability of a device. They are typically found in high-performance vehicles including aircraft, submarines, and spacecraft (including the Mars Rover). Jonathan Wheeler is the speaker for this week's eigen* colloquium series, held on Friday, October 1, at 12:30 EDT in Haughey Hall 133.įiber optic gyroscopes (FOGs) are a well-established widely deployed sensor used to measure rotation rates.