Mingjiada Supply/Recycle ADI ADXL357 Low Noise, Low Power 3-Axis MEMS Accelerometers - UAV Sensor Chip
Mingjiada Electronics Supplies and Recycles ADI ADXL357 Low-Noise Three-Axis MEMS Accelerometers — For UAVs and Industrial Inertial Sensing
In UAV flight control, platform stabilisation and condition monitoring designs, accelerometers directly influence attitude estimation, vibration suppression and long-term drift performance. Shenzhen Mingjiada Electronics Co., Ltd. — provides genuine, in-stock supply and surplus stock recycling services for the ADI ADXL357 low-noise triaxial MEMS accelerometer, catering to customers in the drone, robotics, structural health monitoring and industrial condition monitoring sectors, and supporting samples, small-batch trial production and bulk order fulfilment.
I. ADXL357 Product Overview
The ADXL357 is a digital-output, three-axis MEMS accelerometer launched by ADI, positioned as ‘low-noise, low-drift and low-power’, primarily targeting high-performance industrial and inertial measurement applications. The ADXL357 supports ranges of ±10 g and ±20 g, offering low noise, minimal offset drift and long-term stability across the temperature range, enabling precision applications with minimal calibration requirements.
II. The main specifications of the ADXL357 are as follows:
Measurement axes: X/Y/Z (three axes); configurable ranges of ±10 g, ±20 g and ±40 g
Output interface: Digital SPI, limited I²C; built-in 20-bit ADC
Noise spectral density: Typically 75 μg/√Hz (all axes, as stated on the official Chinese page; some documentation lists 80 μg/√Hz depending on range/test conditions)
0g offset temperature drift: up to 0.75 mg/°C (−40 to +125 °C)
Power consumption: typical 200 μA in measurement mode (VSUPPLY, LDO enabled); 21 μA in standby
Power supply: VSUPPLY 2.25–3.6 V (internally regulated); typically 1.8 V ± 10% for V1P8 (analogue/digital) when bypassing the LDO
Filtering: Programmable high-pass/low-pass digital filtering, supporting synchronous sampling data interpolation
Temperature sensing: Integrated temperature sensor
Package/Environment: 14-pin LCC, 6 × 5.6 × 2.2 mm; operating temperature −40 to +125 °C; hermetically sealed package for long-term stability
III. ADXL357 Key Features:
Sealed package provides excellent long-term stability
0 g offset versus temperature (all axes): 0.75 mg/°C (maximum)
Ultra-low noise spectral density (all axes): 75 μg/√Hz
Low power consumption VSUPPLY (LDO regulator enabled)
Measurement mode: 200 μA
Standby mode: 21 μA
Digital Output Features
Supports digital SPI and restricted I²C interfaces
20-bit ADC
Data interpolation algorithm for synchronous sampling
Programmable high-pass and low-pass digital filters
Integrated temperature sensor
Voltage range options
VSUPPLY with integrated internal regulator: 2.25 V to 3.6 V
V1P8ANA and V1P8DIG (bypassed by the internal LDO regulator): 1.8 V (typical, ±10 per cent)
Operating temperature range: –40°C to +125°C
14-pin, 6 mm × 5.6 mm × 2.2 mm, LCC package
IV. Why it is Suitable for Drones and Unmanned Systems
The official applications for the ADXL357 cover IMUs, AHRS, platform stabilisation, tilt detection, robotics, condition monitoring, structural health monitoring and seismic imaging. In the context of drones, its value lies primarily in three areas:
1. Tilt measurement under high vibration: Resonance from drone motors, propellers and the airframe generates continuous vibration. The ADXL357’s low noise and low 0g drift characteristics enable precise tilt measurements in high-vibration environments, reducing attitude errors caused by vibration.
2. More stable IMU/AHRS front-end: As a three-axis accelerometer input, it works in conjunction with gyroscopes to form an IMU/AHRS, used for flight attitude reference, platform stabilisation and landing attitude determination; The 20-bit ADC and programmable filtering facilitate noise reduction in subsequent fusion algorithms.
3. Wide temperature range and low power consumption for airborne nodes: −40 to +125 °C, 200 μA measurement current, and dual SPI/I²C interfaces facilitate board layout for flight control motherboards, wireless sensor nodes and redundant attitude modules.
In applications such as drone flight control, industrial IMUs, robotic attitude control, platform stabilisation and vibration monitoring, the noise, zero-offset drift and long-term stability of accelerometers directly affect system accuracy. Mingjiada Electronics has long provided supply and recycling services for the ADI ADXL357 | 3-axis MEMS accelerometer, supporting the procurement of genuine original parts, BOM fulfilment, stock recycling and the disposal of obsolete stock.
For further information regarding the ADI ADXL357 | 3-axis MEMS accelerometer, to request samples or enquire about buy-back prices, please visit the Mingjiada Electronics website (https://www.integrated-ic.com/) for further details on supply and demand.
Tags: ADXL357BEZ, ADXL357BE, ADXL357B, ADXL357
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