User Guide
ADIS16501-2/PCBZ DATA ACQUISITION
Data handling includes the following:
Direct access to the
ADIS16501
►
Figure
3).
Data acquisition and transfer. The ADIS16501-2/PCBZ breakout
►
board utilizes the microcontroller or processing unit (see Number
6 in
Figure
5) to manage the flow of data from the ADIS16501
IMU chip (see Number 8 in
esses the raw sensor data in real-time, filtering and converting
the data into usable formats.
Communication interfaces. Data from the ADIS16501 IMU can
►
be sent to other systems or devices using different connectors.
For direct data transfer to computers, use the USB connector
(see Number 2 in
Figure
5) with the ADIS16501-2/PCBZ and
EVAL-ADIS-FX3 connections.
Performance enhancements include the following:
Precision and accuracy. The microcontroller helps calibrate and
►
compensate the data received from the ADIS16501 IMU, which
can enhance the precision and accuracy of the measurements,
which is crucial for applications such as navigation and motion
analysis.
Signal integrity. The layout and design of the ADIS16501-2/
►
PCBZ breakout board are optimized to minimize noise and
interference, ensuring high signal integrity and reliable data
transmission, which is critical for maintaining the performance of
the IMU.
analog.com
IMU via the J1 connector (see
Figure
5). The microcontroller proc-
EVAL-ADIS16501
Rev. 0 | 9 of 15
Need help?
Do you have a question about the ADIS16501-2/PCBZ and is the answer not in the manual?
Questions and answers