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Tactical-Grade & High-Performance Inertial Sensors: MEMS IMUs, FOG IMUs, Gyroscopes, Accelerometers, INS China
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Tactical-Grade & High-Performance Inertial Sensors: MEMS IMUs, FOG IMUs, Gyroscopes, Accelerometers, INS

 GuideNav is a leading developer of high-precision inertial sensors and navigation systems that deliver the unmatched accuracy and reliability required for the most exacting of military and aerospace applications. Our accelerometers, gyroscopes, IMUs (inertial measurement units) and INS (inertial navigation systems) are currently in service in over 35 countries around the world, and are ITAR-free for simplified supply chains.

Build to withstand extreme environmental conditions, our products can be easily integrated into a wide range of designs and platforms, and can also be customized to suit your unique project requirements.

MEMS AccelerometersMEMS Accelerometers

Our MEMS accelerometers provide stability and ultra-reliable performance in a compact, lightweight and cost-effective package that meets demanding military and aerospace requirements. Offering excellent bias stability and noise parameters, they are ideal for flight control, missile motion tracking, robotics and more, and can also be integrated into higher-order systems such as IMUs and INS.

  GUIDEA1010 GUIDEA1030 GUIDEA1050 GUIDEA1100
Measurement Range (Full-Scale) ± 10g ± 30g ± 50g ± 100g
Bias Stability (10s) ≤20µg ≤40µg ≤60µg ≤150µg
Noise ≤15 µg/√Hz ≤30 µg/√Hz ≤50 µg/√Hz ≤130 µg/√Hz
Size 8.9 x 8.9 x 3.1 mm
Bandwidth (-3 dB) ≥100Hz

MEMS GyroscopesMEMS Gyroscopes

Our MEMS gyroscopes are ideal for space-constrained and cost-sensitive applications, offering a lower SWaP-C footprint than fiber optic and ring laser gyros while still delivering robust and reliable angular velocity measurement. The product range includes options to suit a variety of precision and performance requirements.

  SDG02
(Single-Axis)
TDG01
(Three-Axis)
TDG02
(Three-Axis)
Bias Instability ≤0.5°/h ≤10°/h ≤0.5°/h
ARW 0.03 deg/√h 0.05 deg/√h 0.05 deg/√h
Range ± 450 °/s ± 150 °/s ± 450 °/s
Interface RS-422

Fiber Optic Gyroscopes

Fiber Optic GyroscopesOur fiber optic gyroscopes provide the highest levels of precision and stability for navigation, control and stabilization of mission-critical military and aerospace platforms. With ultra-low drift rate, no moving parts, and excellent immunity to electromagnetic interference, they are ideal for applications with fewer constraints on size, weight and power and cost.

Single-axis FOG units are highly suited to antenna, turret and sensor platform stabilization, while three-axis FOGs meet the complex navigation and 3D angular motion tracking requirements of aircraft, missiles, submarines and other vehicles and equipment.

  GSF50
(Single-Axis)
GSF70
(Single-Axis)
GTF40
(Three-Axis)
GTF120
(Three-Axis)
Bias Instability ≤0.2°/h ≤0.1°/h ≤0.05°/h ≤0.001°/h
ARW 0.02 deg/√h 0.01 deg/√h 0.003 deg/√h 0.0003 deg/√h
Range ± 500 °/s ± 500 °/s ± 500 °/s ± 500 °/s
Interface RS-422 RS-422 RS-422 RS-422

The Ultimate Guide to Fiber Optic Gyroscopes (FOG)

Few technologies compare to the reliability of fiber optic gyroscopes (FOGs) when accuracy, durability, and stability are on the line. This complete guide talks about the basics of FOGs, their core components, and how to choose the right one for your needs. Read on to understand FOG technology’s transformative capabilities and learn how it stands apart from conventional gyroscopes, as well as what factors to consider when selecting a FOG for your specific application.

MEMS Inertial Measurement Units

MEMS Inertial Measurement UnitsCombining ultra-miniature accelerometers and gyroscopes, our MEMS IMUs provide high-accuracy 3D measurements of angular velocity and linear acceleration, enabling precise motion and orientation tracking. These compact, lightweight and low-power systems are ideal for SWaP-C conscious designs, and feature a range of performance options.

  GUIDE600 GUIDE688B GUIDE700 GUIDE900
Bias Instability ≤2°/h ≤1.2°/h ≤0.8°/h ≤0.1°/h
Random Walk 0.03 m/s/√h 0.06 m/s/√h 0.06 m/s/√h 0.06 m/s/√h
Range ± 300 °/s ± 450 °/s ± 450 °/s ± 450 °/s
Weight <20g <40g <40g <40g

FOG Inertial Measurement Units

FOG IMUsOur high-end FOG IMUs provide class-leading accuracy and ultra-low drift with bias instability of down to 0.001°/hr, making them ideal for mission-critical applications and extended-duration deployments. The robust units offer exceptional reliability under high levels of shock and vibration and other demanding environmental conditions.

  GFIMU400 GFIMU500 GFIMU90B GFIMU120
Bias Instability ≤0.1°/h ≤0.05°/h ≤0.01°/h ≤0.005°/h
Random Walk 0.06 m/s/√h 0.06 m/s/√h 0.03 m/s/√h 0.003 m/s/√h
Range ± 500 °/s ± 500 °/s ± 300 °/s ± 500 °/s
Weight <900g <1200g <5000g <5000g

MEMS Inertial Navigation Systems

MEMS Inertial Navigation SystemsOur MEMS inertial navigation systems provide accurate, stable and reliable position, velocity, and orientation data output in a low-SWaP and cost-effective package. The product range includes single- and dual-antenna variants, as well as GNSS-aided units for uninterrupted navigation performance in signal-degraded environments or during jamming and spoofing attacks.

  GUIDE1A
(GNSS-Aided)
GUIDE2D
(GNSS-Aided, SWaP-C Optimized)
GMS200
(Dual Antenna, Fast Orientation)
Attitude Accuracy 0.1° 0.1° 0.1°
Heading Accuracy 0.1° 0.1° 0.05°

FOG Inertial Navigation Systems

FOG INSOur FOG-based GNSS-aided inertial navigation systems output ultra-precise position, velocity, and orientation data with excellent long-term stability and superior resistance to shock, vibration, and extremes of temperature. Offering tactical- or navigation-grade performance, all units feature sophisticated Kalman filtering algorithms, providing continuous accurate output under poor signal conditions such as in urban canyons or during jamming and spoofing.

  GFS40 GFS75 GFS120
Roll & Pitch Accuracy
RMS, (static dual antenna, 2m baseline)
0.01° 0.005° 0.005°
Heading Accuracy (RMS) 0.05° 0.02° 0.015°
Gyro Bias Stability
(1σ, 10s Mean-Smooth)
≤0.15°/h ≤0.02°/h ≤0.006°/h

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Inertial Sensors & Navigation Systems for Military Applications

Defense Advancement showcases GuideNav's high-precision inertial sensors and navigation systems for military and aerospace applications

Feb 20, 2025

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