3d Digital Flux Meter

3d Digital Flux Meter

DX-330A Digital Flux Meter
1.Acquisition/display resolution of one-millionth
2.Simultaneous measurement of three-channel magnetic flux
3.Widely utilized in fixture testing production workshops
4.Automatically compatible with multi-range fixtures
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Description
Introduction

 

DX-330A three-channel digital fluxmeter is a magnetic flux measurement product developed on the basis of a single-channel fluxmeter based on the 24bit AD high-precision data acquisition system independently developed by Dexinmag Company and according to customer needs.

 

The acquisition resolution reaches one millionth, and the display resolution reaches one millionth. It can measure the magnetic flux of three channels at the same time without data loss. It can measure data such as various magnetic fields or magnetic flux Ф of permanent magnets, and has functions such as automatic sorting of upper and lower limits. The instrument is equipped with an automatic control interface, which can realize automatic quality screening and control of the measurement parts.

 

DX-330A can measure three-channel magnetic flux with one key, which can be widely used in the research and analysis of permanent magnet, soft magnetic and other materials, or can be configured with windows PC software according to actual needs to realize mass data storage.

 

Feature

 

1. Adopting a medical grade 3.5 inch TFT true color screen design, a 6-digit numerical display is more accurate;

2. Adopting intelligent drift adjustment dynamic algorithm, the entire drift adjustment process does not require manual intervention;

3. Using the "zero first and then test method" to eliminate the magnetic flux zero point, the operation is simple and the magnetic flux value is directly displayed;

4. Equipped with upper and lower limit sorting functions and displaying OK/NG sorting results;

5. Equipped with automated communication interfaces to achieve rapid automated magnetic flux testing and sorting work;

6. Automatically compatible with multiple measuring coils and measuring fixtures, without the need to adjust various parameters;

7. Equipped with a standard USB interface and optional software to form an automatic measurement system, achieving massive data storage;

 

Technical Parameters

 

Input power

AC 220V±10% 50/60Hz 1A

Display mode

TFT true color LCD screen six-digit display

Overall dimensions

307mmx260mmx120mm (Width * depth * height)

Weight

About 3.5kg

Environment

Temperature: 0℃-50℃; Humidity: 40%-85% RH

Thermal equilibrium time

Access the signal input device for about 20 minutes and wait for the drift to be stable

X Magnetic flux range

10mwb/20mwb/50mwb/100mwb Four-speed range (expandable)

Y Magnetic flux range

10mwb/20mwb/50mwb/100mwb Four-speed range (expandable)

Z Magnetic flux range

10mwb/20mwb/50mwb/100mwb Four-speed range (expandable)

Minimum resolution

0.1µwb(Full range application)

Drift adjustment

Intelligent automatic drift adjustment, no manual operation

Number of channels

Three channel magnetic flux can be measured simultaneously

Integral drift

≤1µwb/minutes or 0.01%RG②/minutes(Let's take the larger value of both)

Accuracy

≤0.3%RD①+10µwb(≥50% Full scale)

Sorting function

Set upper and lower limit sorting parameters

Communication interface

Type B USB port

Automatic interface

Weld-free butt interface (optional)

Digital output

RS232C interface (Optional)

Analog output

Full-scale corresponding ±10V, weld-free butt interface (optional)

Measuring software

It is available for Windows XP, Windows 7, and Windows 10 32/64-bit operating systems

①RD indicates the read value;②RG is the current range value;

remarks: In view of the continuous upgrading of the product, the actual contract shall prevail

 

Introduction to testing mothods

 

tesing mothod 1

 

Testing the magnetic flux of a cylinder: Place the sample in the sample stage to ensure that the magnetic field line passes vertically through the coil.

 

testing mothod 2

 

Test the magnetic flux of the magnetic tile: Place the sample in the sample stage to ensure that the magnetic field line passes vertically through the coil.

 

testing mothod 3

 

Schematic diagram of coil measurement sample magnetic flux: Place the longitudinal probe in the central area of the solenoid

 

Deliver, shipping and serving

 

We support shipping by sea, air, and express delivery. Our services cater to a range of shipping

needs, ensuring that our customers can choose the best option for their specific requirements.

We aim to meet their expectations by providing cost-effective and timely deliveries.

In addition to our shipping capabilities, we also prioritize quality customer service. Our team is always ready to provide timely and relevant information about your shipment, making sure to keep you informed every step of the way.

 

Air transportaion
sea transportation
express transportation

 

FAQ

 

Q: How does Three-Dimensional Magnetic Flux Calculation work?

A: Three-Dimensional Magnetic Flux Calculation works by employing numerical methods to solve Maxwell's equations in three-dimensional space. These equations describe how electric and magnetic fields interact with each other. The computational process involves discretizing the region of interest into small elements and iteratively solving the equations to determine the magnetic field distribution throughout the space. Various algorithms and numerical techniques are utilized to efficiently handle complex geometries and material properties.

Q: What ranges is Three-Dimensional Magnetic Flux Calculation suitable for?

A: Three-Dimensional Magnetic Flux Calculation is suitable for a wide range of applications across industries such as electrical engineering, electromagnetics, and materials science. It is commonly used in the design and analysis of electromagnetic devices including motors, transformers, generators, and sensors. Additionally, it finds applications in magnetic shielding, magnetic levitation systems, and magnetic resonance imaging (MRI), among others.

Q: How can Three-Dimensional Magnetic Flux Calculation be maintained to extend its lifespan?

A: To maintain and extend the lifespan of Three-Dimensional Magnetic Flux Calculation systems, several practices can be followed:
- Regular software updates: Keep the computational software up to date with the latest versions and patches to ensure compatibility and access to new features.
- Calibration checks: Periodically calibrate the system to ensure accurate measurements and simulations.
- Proper ventilation: Ensure adequate ventilation and cooling to prevent overheating of computational hardware components.
- Cleanliness: Keep the system and its surroundings clean to prevent dust buildup and potential damage to sensitive components.
- Avoiding overloading: Operate the system within its specified limits to prevent excessive stress on hardware and software components, which can lead to premature failure.
- Training and education: Provide training to users to ensure proper usage of the system and adherence to best practices, which can help prevent errors and optimize performance.