| Allicdata Part #: | 223-1566-ND |
| Manufacturer Part#: |
G-NSDMG-015 |
| Price: | $ 348.68 |
| Product Category: | Sensors, Transducers |
| Manufacturer: | TE Connectivity Measurement Specialties |
| Short Description: | INCLINOMETER 2-AXIS 5DEG MOD |
| More Detail: | Sensor Inclinometer ±5° X, Y Axis Module |
| DataSheet: | G-NSDMG-015 Datasheet/PDF |
| Quantity: | 18 |
| 1 +: | $ 316.98400 |
| 5 +: | $ 306.05400 |
| 10 +: | $ 300.58900 |
| Series: | D |
| Part Status: | Active |
| Axis: | X, Y |
| Measuring Range: | ±5° |
| Sensitivity: | -- |
| Bandwidth: | -- |
| Voltage Rating: | 10V ~ 30V |
| Output Type: | Voltage |
| Interface: | Analog |
| Package / Case: | Module |
| Operating Temperature: | -40°C ~ 85°C (TA) |
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Inclinometers measure tilt in two perpendicular axes, and are widely used for controlling mobility in robotic applications. One such device is called the G-NSDMG-015. This device uses a sensitive force-balance accelerometer-based technology to measure tilt, angular, position, and vibration angles in two axes. The device can measure both static and dynamic tilt angle in two perpendicular directions.
The G-NSDMG-015 is a complete inclinometer with a microcontroller-based signal conditioning feature, enabling it to measure static and dynamic tilt angle in both axes. It uses a combination of a magnetic field sensing accelerometer and a mechanical lever process to measure tilt angle. The sensor is connected to an integrated circuit with a sensor conditioning circuitry, allowing it to measure dynamic tilt angle in both X and Y directions with accuracy of 0.1 degrees.
The G-NSDMG-015 is an ultra-small, lightweight inclinometer with a compact housing, making it suitable for a variety of applications such as controlling vehicles, robotics, industrial automation, navigation systems, motor control, automotive suspension, machining, and aircraft control. The device is comparatively faster than most inclinometers, with a frequency response of up to 50 kHz. In addition, it has higher signal-to-noise levels than most inclinometers, enabling high accuracy measurement. It also has a built-in temperature compensation system to ensure accurate measurements over a wide operating range.
The working principle of the G-NSDMG-015 is based on the principle of force-balance inertial measuring. The basic building block of this type of device is an MEMS (micro-electro-mechanical systems) accelerometer which is sensitive to the magnitude of acceleration in one direction. This accelerometer has two capacitive plates which vibrate when exposed to an acceleration in the transverse axes. This vibration is converted into an electrical signal, which is then conditioned by a microcontroller and converted into digital values.
The accelerometer senses acceleration in two perpendicular directions and provides two independent outputs corresponding to the tilt angle in both of these perpendicular axes. The device internally combines these two outputs and digital values by integrating over time to produce a tilt-angle measurement. The digitally formatted measurements are transmitted via a two-wire serial interface or can be read over a digital bus.
The G-NSDMG-015 is designed with a high signal-to-noise ratio, enabling high accuracy tilt angle measurements. It also features a temperature compensation system which ensures a high accuracy over wide temperature ranges. It is designed to resist shock and vibration, making it suitable for various mobile applications. In addition, the device has low power consumption, making it suitable for battery-powered applications.
In conclusion, the G-NSDMG-015 is an inclinometer specifically designed for mobile applications. It uses a force-balance accelerometer technology to measure tilt angle in two perpendicular directions. It is an ultra-small, lightweight device with a Compact housing, making it suitable for a variety of applications. The device has a high signal-to-noise ratio, enabling accurate tilt angle measurements, and features a temperature compensation system to ensure accuracy over wide temperature ranges. It also has low power consumption, making it suitable for battery-powered applications.
The specific data is subject to PDF, and the above content is for reference
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G-NSDMG-015 Datasheet/PDF