ICM-42688-P


6-axis MEMS IMU combining a 3-axis gyroscope and 3-axis accelerometer with APEX motion processing for AR/VR, wearables, and robotics.

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Manufacturer Part:

ICM-42688-P

Package:

LGA-14 (2.5 x 3.0 x 0.91 mm)

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Description

The ICM-42688-P by TDK InvenSense is a high-precision 6-axis MEMS MotionTracking IMU combining a 3-axis gyroscope (2.8 mdps/sqrt(Hz) noise) and 3-axis accelerometer (70 ug/sqrt(Hz) noise) in a 2.5 x 3.0 x 0.91 mm LGA-14 package. It is the industry first IMU with 20-bit FIFO data format (19-bit gyro, 18-bit accel). Gyro full-scale ranges span +/-15.625 to +/-2000 dps; accelerometer +/-2g to +/-16g. Low-noise 6-axis current consumption is just 0.88 mA.

The on-chip APEX engine provides pedometer, tilt detection, tap detection, wake-on-motion, raise-to-wake/sleep, and significant motion detection. External clock input (31-50 kHz) reduces sensitivity drift. Interfaces: I3C (12.5 MHz), I2C (1 MHz), SPI (24 MHz). 2 KB FIFO, 20,000g shock tolerance. VDD/VDDIO 1.71-3.6V, -40 to +85C. RoHS/Green, ECCN EAR99. Active. Targeted at AR/VR, wearables, robotics, and IoT motion sensing.

The ICM-42688-P is a high-precision 6-axis MEMS MotionTracking device manufactured by TDK InvenSense, combining a 3-axis gyroscope and a 3-axis accelerometer in a 2.5 x 3.0 x 0.91 mm LGA-14 package. It is the industry’s first IMU to support 20-bit data format in FIFO, encapsulating 19-bit gyroscope data and 18-bit accelerometer data for high-resolution motion sensing.

The gyroscope offers programmable full-scale ranges from +/-15.625 to +/-2000 dps with 0.5% sensitivity error and 2.8 mdps/sqrt(Hz) rate noise density. The accelerometer offers programmable full-scale ranges from +/-2g to +/-16g with 0.5% sensitivity error and 70 ug/sqrt(Hz) noise density. Low-noise 6-axis current consumption is 0.88 mA.

The device supports external clock input (31 kHz to 50 kHz) for reducing system-level sensitivity error and improving orientation measurement accuracy. On-chip APEX Motion Processing engine provides pedometer, tilt detection, tap detection, wake-on-motion, raise to wake/sleep, and significant motion detection functions without host CPU intervention.

Communication interfaces include I3C (12.5 MHz), I2C (1 MHz), and SPI (24 MHz). A 2 KB FIFO buffer enables burst data reads, reducing host CPU load. The device operates from VDD and VDDIO of 1.71V to 3.6V, across -40 to +85C. It features 20,000g shock tolerance and is RoHS and Green compliant. ECCN: EAR99. Product status: In Production. Standard packaging: 5,000 pcs/reel.

The ICM-42688-P operates as a 6-axis inertial measurement unit with the following subsystem architecture:

1. MEMS Gyroscope: Three independent MEMS vibratory gyroscope elements measure angular rate around the X, Y, and Z axes. Each element uses the Coriolis effect — when a vibrating mass rotates, the Coriolis force produces a proportional displacement perpendicular to both the vibration and rotation axes. This displacement is capacitively sensed and converted to a digital signal by 16-bit ADCs. Eight programmable full-scale ranges (±15.625 to ±2000 dps) trade off resolution vs. dynamic range.

2. MEMS Accelerometer: Three independent MEMS accelerometer elements measure linear acceleration along X, Y, and Z axes using capacitive displacement sensing of proof masses suspended by silicon springs. Four programmable full-scale ranges (±2g to ±16g) are available. The 18-bit resolution in FIFO mode provides high-precision data for orientation and motion analysis.

3. Signal Processing: Raw sensor data passes through user-programmable digital low-pass filters for both gyroscope and accelerometer channels. A dedicated temperature sensor enables thermal compensation. The 2 KB FIFO buffer stores processed sensor data in 20-bit format, supporting burst reads to minimize host CPU overhead.

4. APEX Motion Engine: An on-chip hardware accelerator processes sensor data in real-time to detect motion events without host CPU intervention. Functions include pedometer (step counting), tilt detection (>35 degrees), tap detection (single/double), wake-on-motion (accelerometer threshold), raise-to-wake/sleep (gesture), and significant motion detection. These generate programmable interrupts on two interrupt pins.

5. External Clock Input: An optional external clock (31-50 kHz) can be fed to the device to synchronize the internal sample rate, reducing sensitivity drift due to temperature variation and device-to-device variation. This is critical for precision orientation estimation in AR/VR and robotics.

6. Host Interface: The configurable interface supports I3C (up to 12.5 MHz SDR / 25 MHz DDR), I2C (up to 1 MHz), or SPI (up to 24 MHz). Interface mode is selected at power-up via the AP pin state.

Pin Name Type Description
1 NC No connect (leave floating)
2 AP I Interface select; LOW = I3C/I2C, HIGH = SPI at power-up
3 INT1 O Programmable interrupt 1 output (active high, push-pull or open-drain)
4 FSYNC I External sync/frame sync input; also serves as external clock input (31-50 kHz)
5 REGOUT O Internal regulator output bypass (connect 0.1 uF cap to GND)
6 GND G Ground
7 SCL / SCLK I I2C serial clock / SPI serial clock input
8 SDA / SDI I/O I2C serial data / SPI data input (MOSI)
9 SDO / AD0 I/O SPI data output (MISO) / I2C address select bit 0
10 CS I SPI chip select (active low); must be tied HIGH for I2C/I3C mode
11 INT2 O Programmable interrupt 2 output
12 VDDIO P Digital I/O supply voltage (1.71-3.6V)
13 VDD P Analog and digital core supply voltage (1.71-3.6V)
14 NC No connect (leave floating)
Application Description
AR/VR Headsets High-precision 6-axis tracking with 20-bit FIFO data, external clock sync, and low-latency interrupts for head/hand motion in augmented and virtual reality systems
Wearable Devices Ultra-low-power wake-on-motion and APEX pedometer for smartwatches and fitness trackers; 0.88 mA 6-axis current in low-noise mode
Robotics High-resolution gyroscope (2.8 mdps noise) with 20,000g shock tolerance for IMU-based orientation estimation in drones and robotic platforms
IoT Motion Sensing Significant motion detection and tilt detection for battery-powered IoT devices with minimal host CPU wake-up; I3C interface for modern SoCs
Sports Analytics Tap detection, raise-to-wake, and pedometer for sports equipment and activity tracking with real-time motion classification
Model Manufacturer Compatibility Key Difference
ICM-42670-P TDK InvenSense Series Sibling 6-axis IMU, smaller 2x2mm package, lower cost, fewer gyro ranges, no external clock input
ICM-42605 TDK InvenSense Series Sibling 6-axis IMU, no APEX engine, simpler feature set, lower power
BMI270 Bosch Competitive Alternative 6-axis IMU with built-in gesture recognition; different pinout; 2.5×3.0mm LGA
LSM6DSOX STMicroelectronics Competitive Alternative 6-axis IMU with machine learning core; 2.5x3mm LGA-14; different register map
ICM-45686 TDK InvenSense Series Upgrade Next-generation 6-axis with ultra-low-noise and higher ODR; different package
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All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

Service & Packaging

All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.