Fluxgate Meter

Fluxgate Meter

1.Dexinmag magnetometers for accurate weak magnetic field measurement.
2.High stability, linearity, and accuracy of fluxgate instruments.
3.Wide application in scientific research, military, and aerospace.
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Description

Dexinmag Fluxgate Magnetometer Series

Precision Magnetic Measurement Solutions

Core Advantages

  • Ultra-sensitive detection for static/low-frequency vector fields
  • Advanced digital architecture with CAN bus networking (multi-array compatibility)
  • Military-grade stability (±0.3–1nT/°C temp coefficient)
  • Modular design: Compact main unit + detachable probes
  • Real-time visualization via 5-color LCD interface

Technical Overview

Sensor Configuration

  • Triaxial measurement via orthogonal probe alignment
  • Axial options: Longitudinal (length-axis) or transverse (width-axis) sensing
  • Probe dimensions: 12–225mm variants (cylindrical/rectangular)

Performance Metrics

Model Range (μT) Resolution Accuracy* Bandwidth
DX-310 ±100/200/500 1nT ±0.5% ±20nT 1kHz
DX-370 ±100 0.01nT ±0.2% ±5nT 3kHz
DX-330F ±100/500/1000 0.1nT ±0.5% ±10nT 1kHz
  • Accuracy includes reading error + fixed offset
  • Extended operating range: -70°C to +85°C (select models)

System Architecture

  • Dual-output connectivity: Analog (BNC) + digital (RS-232)
  • 15-pin probe interface with configurable electrical controls
  • Preheating cycle: 15-minute stabilization

Field Applications

1. Geophysical Research

  • Lithospheric magnetic mapping
  • Volcanic/seismic precursor analysis

2. Aerospace & Defense

  • Satellite component magnetization testing
  • Aircraft/ship degaussing verification

3. Industrial Calibration

  • Helmholtz coil validation
  • Magnetic shielding effectiveness testing

4. Biomedical Studies

  • Biomagnetic field characterization

Customization Options

  • Probe selection: Imported or domestic 1D sensors
  • Temperature-compensated models (DX-370: ±0.3nT/°C)
  • Multi-channel analog outputs (3x BNC on advanced units)

Environmental Compliance

  • Storage: -40°C to +85°C (all models)
  • Noise floor: 10–20pT/√Hz @1Hz (optimized for low-frequency detection)

Software Integration

  • Dedicated data acquisition suite
  • Multi-device synchronization via CAN protocol

 

Deliver, shipping and serving

 

We provide a comprehensive suite of shipping services, encompassing sea, air, and express delivery methods. Our extensive range of offerings cater to a wide array of shipping needs, enabling customers to choose the most suitable option tailored to their specific requirements. We are committed to exceeding expectations by offering cost-effective and timely shipping solutions. Additionally, we place utmost importance on exceptional customer service, with our team standing ready to provide prompt and detailed updates on your shipment, ensuring you remain informed at every stage of the process.

 

Air transportaion
sea transportation
express transportation

 

FAQ

 

Q: How does a Fluxgate Magnetometer work?

A: Fluxgate Magnetometer works based on Faraday's law of electromagnetic induction and magnetic saturation effect. The Fluxgate Magnetometer detects changes in the external magnetic field by changing the magnetic flux of its internal coil and outputs a corresponding electrical signal.

Q: What advantages does the Fluxgate Magnetometer have over other types of magnetometers?

A: Fluxgate Magnetometer has higher sensitivity and accuracy, it is able to detect weak magnetic field changes, and has a wide measurement range. In addition, Fluxgate Magnetometers typically have a smaller size and lower power consumption, making them easy to integrate into a variety of applications.

Q: What is the output signal of the Fluxgate Magnetometer?

A: The output signal of the Fluxgate Magnetometer is usually an analog signal or a digital signal, and the analog signal can be directly connected to the data acquisition system or recording equipment for subsequent processing and analysis. Digital signals can be transmitted to computers or other digital devices for processing through serial communication interfaces (such as USB, RS232, etc.).