Measurement Theory
In the measuring range, the scan area can be set freely to complete the measurement. The scan step in the space also can be set freely. The date of the XYZ coordinate and the electromagnetic noise can be measured in a same time. The noise maps of the XZ plane, XY plane, YZ plane can be displayed after measuring.
Morita-Tech WM9500 3D Electromagnetic Field Visualization FAQ
1. What is the WM9500 used for?
The Morita-Tech WM9500 is used to visualize electromagnetic fields and radiated noise in three-dimensional space. It helps engineers investigate EMC issues by measuring noise around electronic devices, antennas, sensors and other components.
2. How does the WM9500 measure electromagnetic fields?
The WM9500 uses a handheld coordinate sensor to measure noise in 3D space. Measurement points can be set freely, allowing engineers to investigate electromagnetic noise from different positions and directions.
3. What does 6-axis 3D measurement mean?
6-axis 3D measurement means that the system can identify both position and orientation. This helps engineers understand not only where electromagnetic noise is measured, but also how sensor direction affects the measurement result.
4. Why is 3D visualization useful for EMC troubleshooting?
3D visualization helps engineers understand how electromagnetic noise behaves in space. Instead of measuring only one fixed point or one plane, the WM9500 allows more flexible spatial measurement, making it easier to investigate the root causes of EMC problems.
5. Can the WM9500 measure radiated noise from electronic devices?
Yes. The WM9500 is designed to measure noise radiated from objects in 3D space. It can be used for electronic devices, antennas, sensors and other equipment where electromagnetic noise distribution needs to be analyzed.
6. What is the advantage of arbitrary measurement points?
With the WM9500, measurement points in space can be set arbitrarily. This gives engineers a high degree of freedom compared with conventional noise measurement systems and helps investigate noise behavior around complex shapes or specific areas of interest.
7. Is the WM9500 suitable for antenna and sensor evaluation?
Yes. The WM9500 can be used to measure noise around antennas and sensors. It helps visualize electromagnetic field behavior and supports evaluation of how sensor orientation, position and surrounding structures may affect EMC performance.
8. How can the WM9500 help identify EMC root causes?
By measuring electromagnetic noise in 3D space, the WM9500 helps engineers see where stronger noise appears and how it changes depending on position and direction. This information can support more accurate EMC troubleshooting and countermeasure planning.
9. What is the difference from conventional noise measurement?
Conventional noise measurement systems may have limitations in measurement position and flexibility. The WM9500 allows arbitrary measurement points in 3D space, giving engineers more freedom to investigate electromagnetic noise around the actual product or device.
10. Who can benefit from using the WM9500?
The WM9500 is useful for engineers involved in EMC design, product development, antenna evaluation, sensor evaluation and troubleshooting of radiated noise problems. It is especially suitable when understanding the spatial behavior of electromagnetic fields is important.