iNEMO™ inertial modules are inertial measurement units (IMU) which integrate complementary types of sensors to offer more compact, robust, and easy-to-assemble solutions compared to discrete MEMS products.
iNEMO™ System-in-packages (SiP) combine accelerometer, gyroscope and magnetometer in a monolithic 6-axis or 9-axis solution.
To further save power at system level, we have designed iNEMO inertial modules with an embedded Machine Learning Core. The MLC runs an in-sensor classification engine, offloading the main processor to either run different tasks or to be put to sleep and save power, while the built-in sensors identify motion data.
The integration of multiple sensor outputs bring motion sensing systems to the level of accuracy required for the most demanding applications, such as enhanced gesture recognition, gaming, augmented reality, indoor navigation and localization-based services.
Why choosing ST's IMU?
- Best-in-class power consumption for always on applications
- High accuracy in time and temperature for a superior motion and context experience
- High shock survivability guaranteeing undisputable robustness
Discover iNEMO's portfolio

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iNEMO inertial modules with an embedded Machine Learning Core
Our newest iNemo™ inertial module family features an embedded Machine Learning Core, a key enabler for ultra-low-power edge computing.
This innovative system-in-package (SiP) solution runs an in-sensor classification engine able to increase accuracy with a better context detectability; offloading the main processor while the built-in sensors identify motion data.
Enabling longer battery runtime, lower maintenance, and reduced size and weight in context-aware and motion-sensing devices, these IMUs are easily recognizable by the letter X at the end of their product code.
Visit the MEMS Sensors Ecosystem for Machine Learning page to find out more and get started.
- LSM6DSRX iNEMO Inertial Module with Machine Learning Core, Finite State Machine and Advanced Digital Functions for High Accuracy Applications.
- LSM6DST iNEMO inertial module: 3D accelerometer and 3D gyroscope
- ISM330DHCX iNEMO inertial module with Machine Learning Core, Finite State Machine with digital output for industrial applications.
- LSM6DSOP iNEMO Inertial Module: Always-on 3D Accelerometer and 3D Gyroscope
- LSM6DSO32 iNEMO inertial module: always-on 3D accelerometer and 3D gyroscope
- LSM6DSR iNEMO Inertial Module: 3D Accelerometer and 3D Gyroscope
- LSM6DS3TR-C iNEMO 6DoF inertial measurement unit (IMU), for entry level / mid-tier smart phones and Portable PC platforms
- LSM6DS3 iNEMO 6DoF inertial measurement unit (IMU), for consumer electronics
- ASM330LHH Automotive 6-axis inertial module: 3D accelerometer and 3D gyroscope
- LSM6DSOX iNEMO inertial module with Machine Learning Core, Finite State Machine and advanced Digital Functions. Ultra-low power for battery operated IoT, Gaming, Wearable and Personal Electronics.
- LSM6DSO iNEMO 6DoF inertial measurement unit (IMU), with advanced Digital Function, Finite State Machine. For battery operated IoT, Gaming, Wearable and Consumer Electronics. Ultra-low power and high accuracy
- LSM6DS3US iNEMO 6DoF inertial measurement unit (IMU), specifically designed for PC. It includes 8kB FIFO (4kB programmable)
- ISM330DLC iNEMO inertial measurement unit (IMU): 3D accelerometer and 3D gyroscope with digital output for industrial applications
- LSM6DSL iNEMO 6DoF inertial measurement unit (IMU), for smart phones and battery operated IoT, Gaming, Wearable and Consumer Electronics. Ultra-low power and high accuracy
- LSM9DS1 9-axis iNEMO inertial module (IMU): 3D magnetometer, 3D accelerometer, 3D gyroscope with I2C and SPI
- LSM6DS33 iNEMO 6DoF inertial measurement unit (IMU), for consumer electronics
- LSM6DS3H iNEMO 6DoF inertial measurement unit (IMU) supporting OIS / EIS application
- LSM6DSM iNEMO 6DoF inertial measurement unit (IMU), for smart phones with OIS / EIS and AR/VR systems. Ultra-low power, high accuracy and stability
- LSM6DSO32X iNEMO inertial module: always-on 3D accelerometer and 3D gyroscope