Allicdata Part #: | ADIS16136/PCBZ-ND |
Manufacturer Part#: |
ADIS16136/PCBZ |
Price: | $ 0.69 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Analog Devices Inc. |
Short Description: | BOARD EVAL FOR ADIS16136 |
More Detail: | ADIS16136 iMEMS®, iSensor™ Gyroscope Sensor Evalua... |
DataSheet: | ADIS16136/PCBZ Datasheet/PDF |
Quantity: | 2 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 0.63000 |
Series: | iMEMS®, iSensor™ |
Part Status: | Obsolete |
Lead Free Status / RoHS Status: | -- |
Sensor Type: | Gyroscope |
Moisture Sensitivity Level (MSL): | -- |
Sensing Range: | ±450°/sec |
Interface: | Serial, SPI |
Sensitivity: | -- |
Voltage - Supply: | -- |
Embedded: | No |
Supplied Contents: | Board(s) |
Utilized IC / Part: | ADIS16136 |
Base Part Number: | ADIS16136 |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
In the field of advanced engineering and high precision applications, ADIS16136/PCBZ are prone to be discussed, thanks to their excellent performance that contributes to lots of projects. The outline here is to introduce the capabilities of ADIS16136/PCBZ in both application and working principles.
Application Field
As a part of a series of board-level inertial sensors manufactured by Analog Devices, ADIS16136/PCBZ is mainly used to measure angular rate and linear acceleration. With this, it is particularly suitable for high precision applications such as dynamic sensoring systems, aircraft stabilization systems, Multi-Copters and Rubik’s Cube Solving Robots.
The ADIS16136/PCBZ device is a fully featured inertial sensing system and it offers high dynamic range full-scale angular rates up to ±16,000° per second. The linear acceleration is also offered with up to ±200g acceleration. As a whole, ADIS16136/PCBZ are adaptable to various kinds of motion sensing applications thanks to the high linear and rotary accuracy combined with an extended temperature range.
The board-level interface allows the direct connection of the device to other supporting electronics like boards and systems. This makes the ADIS16136/PCBZ is especially useful for applications in which sufficient space and fineness are necessary, such as drones, data acquisition systems, and robotics.
Working Principle
The ADIS16136/PCBZ inertial measurement unit (IMU) works according to the traditional MEMS principle, and it is based on a multi-axis combination of inertial sensors, such as gyroscopes and accelerometers. The board detects acceleration and gyroscope movements along the XY axis, providing raw signals out of up to four channels – a pitch channel roll channel yaw rate channel, and an X-axis acceleration channel.
The combination of gyroscope and accelerometers allows easy and precise motion sensing within a wide variety of applications. The gyroscope measures angular rate, so that the ADIS16136/PCBZ can detect and track motion in three dimensions. This makes it suitable for navigation tasks such as stabilization. On the other hand, accelerometer measures linear acceleration, which enables highly accurate speed and position estimation.
In addition, the ADIS16136/PCBZ can measure acceleration in three directions, which is useful for navigation in unconstrained trajectories or high dynamic motions. Besides, all measured values are provided in a fully digital form, which eliminates the necessity for external components such as signal amplifiers and accelerometer mounted towards the device.
To be more precise and reliable, ADIS16136/PCBZ are provided with complete calibration along with temperature compensation and selftest features, which guarantee a high degree of accuracy and precision. As compared to other inertial measurement units, ADIS16136/PCBZ runs with a high precision over dynamic ranges beyond ±16,000°/s angular rate and ±200g linear acceleration.
Conclusion
In conclusion, ADIS16136/PCBZ are advanced board-level inertial sensors designed especially for high precision applications. Based on the MEMS principle, these instruments provide full-scale angular rates up to ±16,000° per second and linear acceleration up to ±200g. The board-level interface, complete calibration, and robust self-test features make them suitable for various kinds of motion sensing applications, such as aircraft stabilization systems, data acquisition systems, and robotics.
The specific data is subject to PDF, and the above content is for reference
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