3 Axis Gauss Meter
VGA display can simultaneously or optionally display a variety of different measurements of each channel: magnetic field density, frequency, temperature, maximum value, minimum value, peak, valley, date, and time. DX-360 has the function of vector overlay. It could choose three axis Gauss meter probe. Its main characters are high resolution ( 0.1mG 10nT ), high precision ( + 0.15%), VGA large screen high-speed display, simultaneous measurement of temperature and frequency efficiency, automatic zero, automatic measurement, automatic acquisition of maximum value, minimum value, the peak, valley, vector superposition value, angle and real-time graphic display of test results. It provides a variety of display units: Gauss, Tesla, Oe, A / m; RS-232 interface or IEEE485 interface, large capacity and real-time data output and multiple communication modes, and high precision analog output. It is the best choice for scientific research institutions and aerospace.
Features
|
5 ¾-bit resolution on VGA color panel |
Automically capture max./min.value |
|
Easy use menu-driven mode |
Relative mode,graphical display of real-time measurement |
|
vector superposition measured value and angle |
Auto-zero, automatic/manual range |
|
Probe Auto Calibration / Auto Memory operation mode / Probe temperature compensation |
IEEE-485 or RS-232 interface |
|
Automatic zero, temperature compensation |
Date, Time and Brightness setting |
|
dozens of optional square or circular probes |
High capacity for data storage |
|
Automatically identified probe coefficients and numbers |
Threshold alarm filter |
|
Optional units: Gauss, Tesla, Oe, A / m |
Data reading, the operation mode of memory |
Specifications
|
Total Range |
±300kGs(30T) |
||||
|
Test Dimensions |
3D (X, Y, Z) |
||||
|
Measurement Method |
Auto (Automatic range switching) |
||||
|
Range (mT) |
3 (Weak magnetic field) |
30 |
300 |
3000 |
30000 |
|
Resolution (DC) |
0.01uT |
0.0001mT |
0.001mT |
0.01mT |
0.1mT |
|
Resolution (AC) |
0.1Gs/10uT |
||||
|
Accuracy |
DC: One-dimensional – Reading range ±0.05% ±0.005% (0-3T); AC: Reading range ±1% ±0.5% (0-10k) |
||||
|
Response Frequency |
DC-100KHz |
||||
|
3D Corrected Orthogonality Error |
Better than 0.1° |
||||
|
Probe Temperature Coefficient |
-(0.02% ±1 count)/℃ |
||||
|
Probe Temperature Compensated Coefficient |
-(0.007% ±1 count)/℃ |
||||
|
Unit Conversion |
1T=1000mT,1mT=1000uT,1Gs=1Oe, 1mT=10Gs,1Gs=79.8A/m |
||||
|
Analog Interface |
BNC-±3V (1mV/mT) Customizable |
||||
|
Communication Interface |
RS-232, USB, BNC |
||||
|
Power Supply Adapter |
110V-240V @50-60Hz |
||||
|
Calibration Standard |
DX-20ST NMR Magnetic Field |
||||
|
Dimensions |
470*460*170(mm) (excluding handle) |
||||
|
Compatible Probes |
3D/2D/1D (Room Temperature, High Temperature, Low Temperature, High and Low Temperature) |
||||
|
Equipment Weight |
Approx. 7Kg |
||||
Remarks: Weak magnetic field probe needs to be purchased separately.
DX-360 optional accessories
1. Test micro dynamic platform and probe fixed frame
2. 3D drawing software: 3D angle collection, the 3D graph, graph drawing print.
Multi-dimensional magnetic measurement pictures

Picture 1: D plot of rectangular magnets

Picture 2: D plot of elliptic magnets

Picture 3: D plot of cylindrical magnets

Picture 4: D plot of circular magnets

Picture 5: D plot of multipole ring magnets

Picture 6: Magnets 3D distribution vector diagram
You may also like
DX-360 3 axis Gauss meter
Article: "A Study on the Electromagnetic Environment and Experimental Simulation of Electrified Railroad Mobile Catenary"
Use device: DX-360 3 axis gauss meter
Link: https://www.mdpi.com/2071-1050/17/4/1518
Article: Revisiting the “Stick‐Slip” Process via Magnetism‐Coupled Flexible Sensors with Bioinspired Ridge Architecture
Use device: DX-360 3-axis gauss meter
Link: https://advanced.onlinelibrary.wiley.com/doi/full/10.1002/adma.202417867
Article: "Bionic Perception of Surface Adhesion via a Magnetized Spring-like Sensor with Axial Stretchability"
Use device: DX-360 three-axis commercial Gauss-Tesla meter
Link: https://pubs.acs.org/doi/full/10.1021/acsnano.5c07356


