Allicdata Part #: | 342-1039-ND |
Manufacturer Part#: |
HMR3300-D00-232 |
Price: | $ 326.58 |
Product Category: | Sensors, Transducers |
Manufacturer: | |
Short Description: | MODULE DIGITAL COMPASS 3-AXIS |
More Detail: | ±2 Gauss, ±60° Compass X, Y, Z 100 µGauss, 0.1° Mo... |
DataSheet: | HMR3300-D00-232 Datasheet/PDF |
Quantity: | 13 |
1 +: | $ 296.88800 |
5 +: | $ 286.65000 |
10 +: | $ 281.53200 |
Series: | HMR |
Part Status: | Active |
Type: | Digital Compass |
Axis: | X, Y, Z |
Measuring Range: | ±2 Gauss, ±60° |
For Measuring: | Heading, Pitch and Roll |
Resolution: | 100 µGauss, 0.1° |
Package / Case: | Module (No Case) |
Interface: | RS-232 |
Operating Temperature: | -20°C ~ 70°C (TA) |
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The HMR3300-D00-232 is an advanced Hall effect magnetic sensor designed to provide the user with accurate direction readings in a broad range of applications. It’s a three-axis Hall effect magnetic sensor which combines the advantages of a Hall effect sensor with three orthogonal sensing elements – providing a precise, high-precision measurement of both the magnitude and direction of a magnetic field. Its great flexibility allows it to be used in a wide range of applications, from navigation and positioning to directional sensing in robotics, navigation for unmanned aerial vehicles, and industrial automation.
The HMR3300-D00-232 is composed of an ASIC and a magneto-resistive element (MRE). The Hall effect sensor consists of three sensing elements that are aligned perpendicular to one another. This allows the sensor to measure the magnetic field in two dimensions (north and east) and provide the user with a direction vector as a result. The sensing elements are composed of two nickel cobalt resistors positioned in a Wheatstone bridge configuration with their outputs forming the Y and X components. The ASIC then combines the X and Y components to calculate the direction vector.
The HMR3300-D00-232 also offers high temperature stability, allowing it to be used in a broad range of environmental conditions. The device can be operated across a wide temperature range of -40℃ to +85℃ and is resistant to high temperatures up to +125℃ from time to time. Besides, this magnetic sensor also comes with a low noise performance, operating at a maximum noise level of 0.05mTp-p. The high accuracy of this device also makes it suitable for demanding applications such as robotics and navigation.
This Hall effect magnetic sensor is ideal for a broad range of applications, including navigation, unmanned aerial vehicles, robotics and industrial automation. The sensor’s signal conditioning circuitry makes it suitable for these applications, as it eliminates environmental interference, such as vibration and shock, and provides the user with an accurate measurement. The HMR3300-D00-232 is also designed to be integrated into a variety of products, such as embedded systems, robots, GPS receivers, and navigation systems.
The HMR3300-D00-232 is an ideal Hall effect magnetic sensor for navigation and positioning applications. The device’s three-axis sensing element provides the user with an accurate direction vector, even in challenging environments, allowing the user to track the direction of a magnetic field over time. The ASIC combines the X and Y components of the magnetic field to calculate the direction vector, ensuring a highly precise measurement. This integrated circuit also helps to reduce power consumption and provides a wide temperature range, making it suitable for use in a broad range of situations.
In conclusion, the HMR3300-D00-232 is an advanced Hall effect magnetic sensor that provides the user with a precise and accurate direction vector. With low noise performance and high temperature stability, the sensor is suitable for a variety of applications, from navigation and positioning to robotics and industrial automation. Its integrated signal conditioning circuitry eliminates environmental interference, such as vibration and shock, and its wide temperature range makes it ideal for use over a broad range of conditions. As such, the HMR3300-D00-232 is an ideal choice for navigational and positional applications.
The specific data is subject to PDF, and the above content is for reference
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