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Tri-Axis Digital Compass HMC5883L

Tri-Axis Digital Compass HMC5883L
Tri-Axis Digital Compass HMC5883L
Tri-Axis Digital Compass HMC5883L
Tri-Axis Digital Compass HMC5883L
Tri-Axis Digital Compass HMC5883L
KES 800.00
  • Stock: In Stock
  • Model: HMC5883L
  • Weight: 1.80g
  • Dimensions: 15.20mm x 13.80mm x 3.00mm
  • SKU: 250

High-Precision 3-Axis Digital Magnetometer

The HMC5883L 3-Axis Digital Magnetometer breakout module is engineered for low-field magnetic sensing with a digital interface, making it ideal for low-cost compassing and precise magnetic vector detection. Built upon Honeywell AMR (Anisotropic Magnetoresistive) technology, this sensor measures both the direction and magnitude of Earth magnetic fields across three orthogonal axes (X, Y, Z). Featuring a high-quality immersion gold PCB crafted with precision automated machine welding, this compact breakout module provides superior thermal stability and electrical performance for microcontrollers operating at 3.3V or 5V logic levels.

Advanced Technical Capabilities and Integration

At the core of the module is a 12-bit ADC coupled with low-noise AMR sensors capable of achieving compass heading accuracies within 1 to 2 degrees. The device offers an adjustable full-scale magnetic field range from +/- 1.3 to +/- 8.1 Gauss, making it adaptable to clean magnetic environments as well as industrial settings. Data communication is handled via a standard I2C bus interface operating up to 400 kHz. Integrated power management circuitry enables seamless power supply input between 3.0V and 5.0V DC, maintaining full signal compatibility with 3.3V ARM/ESP microcontrollers as well as 5V Arduino development architectures.

Versatile Robotics and Navigation Applications

Whether building an autonomous rover, quadcopter flight controller, or handheld orientation device, absolute heading calculation is critical. The HMC5883L excels in hard-iron and soft-iron calibration workflows when combined with accelerometer data for tilt compensation. Common application scenarios include mobile robot path tracking, dead-reckoning navigation systems, space orientation tracking, and magnetic anomaly detection for environmental monitoring systems.

Hardware Interfacing and Pinout

Connecting the module to standard microcontroller platforms requires only four wire connections. Power the board by connecting VCC to a 3.3V or 5V regulated source and GND to system ground. Signal lines connect directly to the I2C bus: SDA connects to the data line (Arduino pin A4) and SCL connects to the clock line (Arduino pin A5). Standard open-source software libraries handle raw reading conversions to Micro-Teslas or Gauss, allowing straightforward heading angle calculations using double-argument arctangent mathematical functions.

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