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Nanjing Sky MEMS Technology Co.,Ltd.
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Magnetic Compass Sensor 3 Axis Digital Compass Water Proof For Robotics

Nanjing Sky MEMS Technology Co.,Ltd.
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Nanjing Sky MEMS Technology Co.,Ltd.
City: Nanjing
Province/State: Jiangsu
Country/Region: China
Tel: +86-25-83356968
Contact Person:
Mr David zhu

Magnetic Compass Sensor 3 Axis Digital Compass Water Proof For Robotics

Brand Name : SkyMEMS
Model Number : EC336
Certification : CE, FCC, ROHS
Place of Origin : Nanjing, Jiangsu
MOQ : 1PCS
Price : discuss personally
Payment Terms : Western Union, MoneyGram, L/C, T/T, D/A, D/P
Supply Ability : 1000PCS for month
Delivery Time : 3-5 days after payment
Packaging Details : Strong carton with PET strap for EC336 3 Axis Digital Compass
Heading Accuracy : 0.3°-0.5°
Heading Resolution : 0.1°
Pitch Accuracy : 0.1° RMS
Roll Accuracy : 0.1° RMS
Tilt Range : ±90º pitch ±360º roll
Tilt Resolution : <0.01°
Communication Rate : 2400 to 19200Baud/S
Working Temperature : -40 to 85°C
Small Size : L114*20*20mm
Light Weight : 100g
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Magnetic Compass Sensor Water Proof 3 Axis Digital Compass System for Robotics EC336


Product Description

EC336 3 Axis Digital Compass is a high-performance, low-power consumption, tilt-compensated electronic compass module that provides industry-leading heading accuracy. The EC336 combines patented magneto-inductive sensors and a 3-axis MEMS accelerometer with SkyMEMS individual factory calibration and advanced field calibration algorithms to ensure absolute accuracy.

EC336 adopts advanced field calibration algorithms which can correct the local magnetic distortions.


Main Features

3 Axis Digital Compass Module

RS232/RS485/TTL Optional

Heading accuracy: 0.3°~0.5°, Resolution: 0.1°

Hard and soft magnetic compensation

Low power consumption

High cost-effective

Easy to integrate

Widely working temperature: -40℃~+85℃

Small size: L114*20*20mm, light weight


Typical Application

EC336 3 Axis Digital Compass Sensor is widely used in indoor and outdoor applications in harsh industrial environments, such as:

- Augmented reality applications and location based services

- Indoor and outdoor navigation

- Motion tracking

- Digital Compass

- Device Orientation

- Device Directional Movement


Technical Specifications

Technical Specs
ParametersTypicalUnits
Heading accuracy0.3°-0.5°Deg RMS
Resolution0.1°
Pitch Accuracy0.1°Deg RMS
Roll Accuracy

0.1º for pitch <65º

0.2º for pitch <80º

0.5 for pitch <86º

Deg RMS
Tilt Range

±90º pitch

±360º roll

Deg
Tilt Resolution< 0.01°Deg RMS
Hard Iron CalibrationYes
Soft Iron CalibrationYes
User CalibrationYes
Dimensions (L x W x H)114*20*20mm
Weight100g
Mounting OptionsScrew mounts/standoffs; horizontal
Connector for RS-2325-pin
Latency from Power-On< 50mSec
Maximum Sample Rate50samples/sec
Communication Rate2400 to 19200Baud/S
Output FormatsBinary Protocol
Supply Voltage5VVDC
Current Draw (Continuous Output)Max40mA
TYP30
Shock50~3000 G , Half Sine Wave Shock with 2 drops at each levelG

Competitive Advantages

High Performance 3 Axis Digital Compass sensor

- High heading accuracy

- Hard and soft magnetic compensation

- Full tests and individual calibration from -40 to 85°C

- High cost effective


FAQ

How to do Compass Installation?

The performance of a compass will greatly depend on its installation location. A compass relies on the earth's magnetic field to provide heading. Any distortions of earth's magnetic field by other sources such as a car massive iron components should be compensated for in order to determine an accurate heading. Sources of magnetic fields in any automobile include permanent magnets mostly in its audio speakers, motors, electric currents flowing in its wiring-either dc or ac, and ferro-magnetic metals such as steel or iron. The influence of these sources of interference on an electronic compass accuracy can be greatly reduced by placing the compass far away from them.

Some of the field effects can be compensated by way of calibrating the compass for a defined location in terms of magnetic interference. However, it is not always possible to compensate for time varying magnetic fields; for example, disturbances generated by the motion of magnetic metals, or unpredictable electrical current in a nearby power lines. Magnetic shielding can be used for large field disturbances from motors or audio speakers. The best way to reduce disturbances is distance. Also, never enclose the compass in a magnetically shielded metallic housing.


Product Tags:

magnetic compass sensor

      

high precision compass

      
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