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Shenzhen Kyoto Yuqi Electronics Co., Ltd

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    3rd Floor, E-commerce Building, No. 906 Meilong Avenue, Songhe Community, Longhua Street, Longhua District, Shenzhen

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Replace WAM-100 manual version 1.0 SONIC Sonic

NegotiableUpdate on 05/06
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Overview

The WAM-100 ultrasonic anemometer can obtain highly reliable data by digitally sampling and internally processing the ultrasonic waveform. Not limited to cleanrooms, it can also be used for high-precision airflow (breeze) monitoring in LCD panels, LED production lines, living environments with constantly changing temperatures, and internal airflow monitoring in refrigerators. $r $n replaces WAM-100 manual version 1.0 SONIC Sonic

Product Details

Replace WAM-100 manual version 1.0 SONIC Sonic

Replace WAM-100 manual version 1.0 SONIC Sonic


The WAM-100 ultrasonic anemometer consists of the following parts.

Install

  1. Be sure to turn off the power when installing the probe.

  2. During installation, be careful to avoid damaging the probe and applying force to the support arm that may cause deformation.

  3. Determine the installation direction of the probe; To improve measurement accuracy, it is recommended to align the probe's main wind direction with the measured wind direction.

  4. Avoid vibration when installing the probe. The ultrasonic anemometer detects the relative velocity between the probe sensors and the air, and the vibration period may introduce errors.

  5. Please do not bend, pull, or place heavy objects on the probe cable at sharp angles to avoid cable damage.

  6. Please do not place the probe cable near the local AC adapter, computer AC adapter, etc. to avoid measurement errors caused by noise interference.

  7. All connectors must be tightened, especially if the probe connectors are loose, which can introduce noise errors.

  8. When laying cables vertically, avoid the connector area bearing the weight of the cable; When fixing cables, be careful to avoid single point load-bearing.

  9. This machine does not have anti drip structure, please pay attention to the usage environment.

  10. Ultrasonic anemometer is a precision instrument, please do not use it in places with impact or vibration.

  11. Do not use in direct sunlight or near heating equipment.

7.2 Connection

  1. When connecting various cables, be sure to cut off the power supply and unplug the AC adapter from the socket.

  2. Do not pull or tug on the cable when plugging or unplugging the connector. Hold the connector area for operation.

  3. Connect according to the wiring method shown in the diagram; The shape of the connector is different. Please confirm the shape and insert it into the corresponding interface; The interface has directionality, please confirm the concave convex position before connecting.

7.3 Computer Preparation

Please refer to the separate paper "Installation Method for WASP-007F with WAM-100+TR-93T" to install the software on the computer.

7.4 Operation confirmation and setting

  1. Power the DC IN interface of WAM-100.

  2. Copy the 'SampleData' folder from the disc to the computer being used.

  3. Operate the computer to start the WASP-007F software and select 'Yes' on the display interface.

  4. Select 'Sample Data. wsp' from the copied 'SampleData' folder.

  5. Display the corresponding operation interface.

  6. Select probe: Left click in the probe selection area to open the probe selection interface, and select TR-93T from the probe type.

  7. Select the installation direction of the probe.

  8. After confirming the communication port, click on monitoring.

  9. Confirm the drawing area and the measurement data displayed by the 3D anemometer.

  10. If no data is displayed, please recheck whether the power supply, connection, and software communication port settings of the anemometer are correct.

7.5 Zero point calibration

The following is the zero calibration method. Normally, zero point calibration is not required, but it is performed when the observation target is in the gentle wind range or when it is necessary to confirm whether the equipment is operating normally.
  1. Cover the probe with a zero calibration cover to create a windless state, avoiding direct fan wind and sunlight on the probe.

  2. Right click in the drawing area and select 'Zero Calibration' and left click.

  3. Click 'Yes' on the displayed execution confirmation interface to start zero calibration.

  4. During the calibration process, the text 'Zero calibration in progress' flashes at the bottom of the screen.

  5. Calibration is completed in about 2 minutes and returns to normal measurement mode.

  6. Confirm that the wind speed values Vx, Vy, and Vz fluctuate within a range of ± 5 cm/s centered at 0 cm/s under the calibration hood state (due to factors such as the wearing method of the calibration hood, internal airflow, external noise, etc. that may exceed this range).

  7. After confirming that the zero point of the wind speed is normal, remove the calibration cover.

  8. If the wind speed zero point deviates, please recheck the connector fastening status and installation conditions, and perform zero point calibration again.

Note that zero calibration must be carried out in a windless state, and the calibration cover must not obstruct the ultrasonic propagation path; Performing calibration without meeting the conditions may result in measurement errors.

7.6 Local USB Output

The machine outputs measured wind speed and acoustic virtual temperature T for axes A, B, and C. Each measurement data contains a fixed length symbol of 6 bytes, with an additional 3 bytes of measurement status flag and 2 bytes of "Cr" and "LF". Therefore, the output of a single set of data is: 6 bytes x 4 components+3 bytes+2 bytes=29 bytes
Output example: L 10000 L -2500-500 2010ZZZRLF
Output unit:
  • Wind speed component: × 0.001 m/s

  • Acoustic virtual temperature: × 0.01 ℃

Example: A=10.0 m/s, B=-2.5 m/s, C=-0.5 m/s, T=20.10 ℃

7.7 Measurement Methods

The measurement was carried out using the accompanying WASP-007F software, as detailed in the software manual.