MS1000 Series Tactical Grade Accelerometer

The MS1000 series is a best-in-class, innovative MEMS accelerometer, based on 25 years of experience from Safran Colibrys. The MS1000 Series reaches unbeatable performance levels for long-term bias and scale factor repeatability, in run bias and vibration rectification error (VRE).

This series of accelerometers feature an innovative microelectromechanical design specifically for advanced, tactical grade inertial applications where resistance to high shock and vibration in extreme harsh environments is required.

The MS1000 series is available in different ranges from 2G to 100G and with an evaluation board for faster prototyping.

MS1000 Series Tactical Grade Accelerometer

Range features

A high level overview of what this range offers

  • Available ranges: +/-2, 5, 10, 16, 30, 100G
  • Long term bias repeatability : 1.2 mg (+/10g, typ)
  • Residual bias modelling error : 0.7 mg (+/10g, typ)
  • Low noise: 34 µg/√Hz (+/10g, typ)
  • In-run bias stability (Allan Variance @ 10 s): 15 μg (+/10g, typ)
  • Non Linearity (IEEE Norm, % of full scale) : 0.3 %
  • Operating temperature : -40; +125 °C
  • Single Axis.
  • Size : 9 X 9 mm2
  • Applications: IMU, platform stabilisation, train positioning, drilling, health structure monitoring

Downloads

for MS1000 Series Tactical Grade Accelerometer

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Safran STS Catalogue 2024
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What’s in this range?

All the variants in the range and a comparison of what they offer

Key ParametersMS1002MS1005MS1010MS1016MS1030MS1100Unit

Full-scale acceleration

+/-2

+/-5

+/-10

+/- 16

+/-30

+/-100

g

Residual bias modelling error

0.14

0.35

0.7

+/- 1.1

2.1

7.0

mg

Long-term bias repeatability

0.24

0.6

1.2

+/- 1.9

3.6

12.0

mg

In run bias stability

3

7.5

15

24

45

150

µg

Residual scale factor modeling error

120

120

120

120

120

120

Ppm

Scale factor sensitivity

1350

540

270

169

90

27

mV/g

Misalignment

10

10

10

10

10

10

mrad

Resolution (1Hz)

7

17

34

54

102

339

µg ms

Non linearity (IEEE norm)

0.3

0.3

0.3

0.3

0.3

0.3

% FS

Inertial Micro Sensors MEMS