DRM4000L-N00-232 Allicdata Electronics
Allicdata Part #:

342-1087-ND

Manufacturer Part#:

DRM4000L-N00-232

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer:
Short Description: MODULE DEAD RECKONING RS-232
More Detail: Compass X, Y, Z Module
DataSheet: DRM4000L-N00-232 datasheetDRM4000L-N00-232 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: DRM™
Part Status: Obsolete
Type: Dead Reckoning Module
Axis: X, Y, Z
Measuring Range: --
For Measuring: Heading
Resolution: --
Package / Case: Module
Interface: RS-232
Operating Temperature: -40°C ~ 85°C (TA)
Description

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Magnetic sensors are one of the most important and popular sensors used in many applications today. In particular, the DRM4000L-N00-232 is a highly sensitive magnetic sensor that can measure the magnetic fields present in a wide variety of applications such as motors, aircraft, ships, and electromechanical devices. The scope of this paper is to describe the application field and the working principle of the DRM4000L-N00-232.

The DRM4000L-N00-232 is a high-performance digital compass that uses a specialized Hall-effect sensing element. The sensor has a high sensitivity of up to four degrees, allowing it to measure both the magnitude and direction of a magnetic field. The DRM4000L-N00-232 is designed for use in a variety of applications, such as automotive navigation systems, navigational compasses, and magnetometers.

The DRM4000L-N00-232 is designed to measure the direction of a magnetic field, and it can be used in environments where a high degree of accuracy is required. The sensor is used to measure the headings of ships or aircraft, as well as the position of a vehicle or robot in a closed environment. It can also be used in robotics for controlling the motion of a robot through its programming. The accuracy of the DRM4000L-N00-232 is such that it can be used in precision navigation systems.

The DRM4000L-N00-232 operates on a principle known as the “Hall-effect”. This principle states that when a current passes through a transverse conductor, it can cause a magnetic field to be generated in the presence of a magnetic source, and the size of this field can be determined. The DRM4000L-N00-232 utilizes this principle to detect the presence of a magnetic field and determine its direction.

To measure the magnitude and direction of the magnetic field, the DRM4000L-N00-232 utilizes specialized coils installed in the interior of the sensor. The coils form a double-shielded design that is capable of measuring the very small signals generated by the magnetic field. The signals are then converted into digital representations by a microcontroller and the measurements can be taken with accuracy up to four degrees.

To better understand how the DRM4000L-N00-232 works, it is helpful to think of it in terms of two distinct components: the sensor itself and the electronic circuitry. The sensor is a device made up of several coils that are placed around a magnet and the purpose of the coils is to measure the intensity of the magnetic field. The electronic circuitry is responsible for taking the signals generated by the coils and converting them into digital values.

Once the magnitude and direction of the magnetic field have been measured, the data can be used to calculate the bearing of the object in relation to the magnetic field. This data can then be used for applications such as navigational compass systems, controlling the motion of robots, or determining the true orientation of a vehicle or structure.

In conclusion, the DRM4000L-N00-232 is a versatile and highly accurate magnetic sensor. It is designed to measure the magnitude and direction of magnetic fields, and its high accuracy makes it suitable for precision applications such as navigation systems, robot motion control, and orientating vehicles or structures. The DRM4000L-N00-232 can be used in a wide variety of applications, making it an invaluable tool for engineers and scientists alike.

The specific data is subject to PDF, and the above content is for reference

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