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Shenzhen Rion Technology Co., Ltd.
Shenzhen Rion Technology Co., Ltd.
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3D Digital Compass Incorporating Three Axis Gyroscope Accelerometer and Magnetic Induction Technology for Directional Data

製品詳細

起源の場所: 広東省、中国

ブランド名: RION

証明: CE,RHOS

モデル番号: DDM365B

支払及び船積みの言葉

最小注文数量: 1

価格: 135 USD/PCS

パッケージの詳細: カートン

受渡し時間: 5〜8営業日

支払条件: T/T、D/P

供給の能力: 3000/month

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3D Digital Compass

,

Accelerometer 3D Digital Compass

,

3 Axis 3D Digital Compass

傾斜角測定範囲:
ピッチ±85°、ロール角±180°
傾き解像度:
0.1°
傾斜の正確さ:
広い臨時雇用者。範囲:
-40℃~+85℃
動作範囲:
-40℃~+85℃
MTBF:
≥98000 時間/時間
絶縁抵抗:
≥100 メゴム
サイズ:
L55*W37*H24mm
傾斜角測定範囲:
ピッチ±85°、ロール角±180°
傾き解像度:
0.1°
傾斜の正確さ:
広い臨時雇用者。範囲:
-40℃~+85℃
動作範囲:
-40℃~+85℃
MTBF:
≥98000 時間/時間
絶縁抵抗:
≥100 メゴム
サイズ:
L55*W37*H24mm
記述
3D Digital Compass Incorporating Three Axis Gyroscope Accelerometer and Magnetic Induction Technology for Directional Data
PRODUCT DESCRIPTION

DDM365B is a three-dimensional dynamic electronic compass that integrates a 12 axis inertial measurement unit, including three-axis attitude angle, three-axis accelerometer, three-axis gyroscope, and three-axis magnetic induction technology. By utilizing the high dynamic angle characteristics of gyroscopes and the high stability attitude characteristics of accelerometer, the pitch and roll angles that follow complex attitude changes are obtained through dynamic inertial navigation algorithms. The geomagnetic azimuth angle adopts hard and soft magnetic calibration algorithms, which enable the compass to eliminate the influence of magnetic fields through calibration algorithms even in environments with magnetic field interference. By real-time calculation of heading through the central processing unit and dynamic heading
compensation of magnetic azimuth over a large range using dynamic pitch and roll angles, the compass can provide high-precision heading data even at a tilt angle of up to ± 85 °. The electronic compass integrates a highly DSP processing unit with diverse output methods, including standard interfaces such as RS232/RS485/TTL, and can also accept customization of other communication interfaces.
DDM365B is small in size, low in power consumption, and can be used in many highly seismic and extremely harsh environments such as offshore ships, antenna search, etc. It is more suitable for various high-precision measurement integrated control systems today.

MAIN FEATURES

Inclination angle measurement range: pitch ±85°, roll angle ±180°
Inclination resolution: 0.1°
Inclination accuracy: 1°
DC 5V power supply
With hard magnetic, soft magnetic and tilt angle compensation
IP67 waterproof rating
Standard RS232/RS485/TTL output interface
Wide temp. range: -40+85

APPLICATION

Satellite antenna search
Antenna servo control
Marine surveying and mapping
Infrared image
Special occasion robot
GPS integrated navigation
Laser rangefinder
ROV underwater robot navigation

3D Digital Compass Incorporating Three Axis Gyroscope Accelerometer and Magnetic Induction Technology for Directional Data 0

3D Digital Compass Incorporating Three Axis Gyroscope Accelerometer and Magnetic Induction Technology for Directional Data 1

3D Digital Compass Incorporating Three Axis Gyroscope Accelerometer and Magnetic Induction Technology for Directional Data 2
MEASUREMENT AND INSTALLATION

Since the azimuth angle of the three-dimensional electronic compass uses the principle of geomagnetism, it is necessary to select the environmental installation location with the least magnetic interference. Please install this product away from iron, magnets, motors, and other magnetic objects. Even if there are these magnetic media around, it needs to be controlled at more than 40CM (different magnetic fields interfere with the compass at different distances). To ensure product measurement accuracy, Copper screws must be used for installation. This product can compensate in stable magnetic environment, but cannot compensate for changed magnetic interference. Please pay attention to the magnetic field generated by the wires with direct current, because the magnitude of the magnetic field will change with the direct current. The battery is also a source of interference for changes. Every installation is different and the user must evaluate the feasibility of the installation in all possible operating
environments. In a non-interference environment, the measured heading accuracy of this product is ≤1°, but scientific testing methods are also crucial. The test method we recommend is: install this
electronic compass on a vertically erected aluminum (non-magnetic other material) pole to measure heading accuracy (of course, the rotating pole is perpendicular to the rotating platform, and try to avoid large external magnetic fields. interference). This can reduce the radius of the compass rotation and scientifically improve the measurement accuracy. This is only to provide laboratory installation, and must be handled flexibly in specific situations. For example: when installed on a car, the product is installed perpendicular to the direction of movement.

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