MEMS Gyroscope LMG 07 High-performance MEMS gyroscope with Measurement range: ±500°/s to ±4000°/s (configurable)

The LMG07 MEMS gyroscope is a single-axis capacitive fully integrated micromachined gyroscope, composed of an all-silicon process MEMS sensing structure and a low-power signal processing ASIC.

Details

The LMG07 MEMS gyroscope is a single-axis capacitive fully integrated micromachined gyroscope, composed of an all-silicon process MEMS sensing structure and a low-power signal processing ASIC.

The LMG07 MEMS gyroscope adopts an LCC20 ceramic package with 20 pins, operates on a single 5V power supply, and features a typical power consumption of less than 18mA. Its digital output employs SPI mode.

Main features:

Measurement range: ±500°/s to ±4000°/s (configurable)

Package: LCC20 ceramic package (8.9mm × 8.9mm × 2.7mm)

Power supply: 5V ±0.25V

Calibration: Individual calibration (zero bias, scale factor)

Output interface: SPI digital signal

Integrated sensor: Built-in temperature sensor

Key features: Compact size, lightweight, and high reliability

Compliance: RoHS-compliant, suitable for lead-free soldering and SMD mounting

Typical applications: 

Lins Tech

Product indicators:

Index item model
A B C D E F
Gyro parameters
Range: X, Y, and Z (°/s) ± 500 ± 1000 ± 2000 ± 4000
Zero partial instability (°/hr) ≤1 ≤1 ≤1 ≤1
Scale factor (25° C) LSB/︒/s 5000 5000 5000 5000
Scaling factor reproducibility (1 σ) ppm ≤100 ≤100 ≤100 ≤100
Scale factor nonlinearity (1 σ) ppm ≤100 ≤150 ≤200 ≤200
Zero-partial stability (10s) ︒/h ≤1 ≤2 ≤5 ≤2 ≤5 ≤5
Zero-partial stability (1s) ︒/h ≤3 ≤5 ≤10 ≤5 ≤10 ≤20
Full-temperature and zero-bias stability

(-45°C~+85° C)

︒/h ≤5 ≤15 ≤30 ≤50 ≤50 ≤50
Zero-bias repeatability (1 σ) ︒/h ≤2 ≤5 ≤10 ≤5 ≤10 ≤10
Random walk from Angle °/ √h ≤0.05 ≤0.05 ≤0.1 ≤0.05 ≤0.1 ≤0.1
Bandwidth (-3dB)) Hz ≥100 ≥400 ≥400 ≥400
broadband noise ︒/s <0.15 <0.15 <0.15 <0.15 <0.2 <0.2
Electrical characteristics
working voltage V 5±0.25
power dissipation mA 18
design feature
size mm 8.9*8.9*2.7
weight g 0.60±0.02
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