ICM-42688-P


IMU MEMS de 6 ejes que combina un giroscopio de 3 ejes y un acelerómetro de 3 ejes con procesamiento de movimiento APEX para AR/VR, wearables y robótica.

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Pieza del fabricante:

ICM-42688-P

Paquete:

LGA-14 (2,5 x 3,0 x 0,91 mm)

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Descripción

En 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 Nombre Tipo Descripción
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 Suelo
7 SCL / SCLK I I2C serial clock / SPI serial clock input
8 SDA / SDI E/S I2C serial data / SPI data input (MOSI)
9 SDO / AD0 E/S 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)
Aplicación Descripción
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
Modelo Fabricante Compatibilidad Diferencia clave
ICM-42670-P TDK InvenSense Serie Sibling 6-axis IMU, smaller 2x2mm package, lower cost, fewer gyro ranges, no external clock input
ICM-42605 TDK InvenSense Serie Sibling 6-axis IMU, no APEX engine, simpler feature set, lower power
BMI270 Bosch Alternativa competitiva 6-axis IMU with built-in gesture recognition; different pinout; 2.5×3.0mm LGA
LSM6DSOX STMicroelectronics Alternativa competitiva 6-axis IMU with machine learning core; 2.5x3mm LGA-14; different register map
ICM-45686 TDK InvenSense Actualización de la serie Next-generation 6-axis with ultra-low-noise and higher ODR; different package
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Address: Room 2919, Guoli Building, Huaqiang North, Futian District, Shenzhen, Guangdong, China
 

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