Aircraft INS Manufacturers & Suppliers

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Advanced Inertial Navigation Systems (INS) for Reliable Navigation in Challenging Operational Environments

ANELLO Photonics

Cutting-Edge Inertial Solutions for High-Accuracy Navigation & Positioning in GPS-Denied Environments

Honeywell Aerospace

Advanced Solutions for Defense Modernization: Propulsion, Sensors, Communication & Augmented Reality Systems

Inertial Labs, a VIAVI Solutions Company

Tactical Grade IMU, GPS/INS, Weapon Orientation Solutions

NovAtel

Assured Position, Navigation and Timing (PNT) Solutions for Military and Defense

Aeron Systems

Advanced Navigation Solutions for Mission-Critical Defense & Aerospace Applications

UAV Navigation-Grupo Oesía

State-Of-The-Art Flight Control & GNSS-Denied Navigation Technologies for Tactical UAV Platforms

Micro Magic

High-Precision MEMS, Quartz & FOG Inertial Sensing Systems for Military, Aerospace & Defense Applications

EMCORE Corporation

High-Performance Fiber Optic, Ring Laser Gyro and MEMS Inertial Sensors & Navigation Systems

VectorNav

Embedded Navigation Solutions for Unmanned Systems

LITEF

High-Performance Inertial Sensing & Navigation Systems for Military Land Vehicles & Ground Forces

UAV Propulsion Tech

MEMS-based Inertial Navigation Systems for Supporting Tactical Unmanned Operations in GPS-Denied Environments

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Products: Aircraft INS

31 Cutting-edge Solutions
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IRINS

LEO-aided inertial navigation system for A-PNT in D3SOE operations

LEO-aided inertial navigation system for A-PNT in D3SOE operations
IRINS from Inertial Labs, a VIAVI Solutions Inc. company, is a Low Earth Orbit (LEO)-aided Inertial... ...ous and secure navigation and timing data without reliance on GNSS. The device includes an embedded...
INS-DM-FI GPS-Aided INS

IP68-rated tactical-grade dual-antenna GNSS-INS based on FOGs & MEMS accelerometers

IP68-rated tactical-grade dual-antenna GNSS-INS based on FOGs & MEMS accelerometers
...art GNSS-aided inertial navigation system (INS) with an integrated IMU based on tactical-grade fiber...
INS-FI GPS-Aided-INS

Rugged dual-antenna GNSS-INS based on MEMS accelerometers & tactical-grade FOGs

Rugged dual-antenna GNSS-INS based on MEMS accelerometers & tactical-grade FOGs
...art GNSS-aided inertial navigation system (INS) with an integrated IMU based on tactical-grade fiber...
INS-DH-OEM

OEM dual-antenna GNSS-INS with Honeywell HG4930 IMU

OEM dual-antenna GNSS-INS with Honeywell HG4930 IMU
The Inertial Labs GPS-Aided Inertial Navigation System (INS-DH-OEM) is an OEM version of the new... ...NSS-aided MEMS inertial navigation system in an OEM form factor, featuring an advanced NovAtel...
ANELLO Aerial INS

High-performance inertial navigation system for autonomous aerial missions in GPS-denied environment

High-performance inertial navigation system for autonomous aerial missions in GPS-denied environment
...is a precision inertial navigation system developed to deliver reliable positional data and attitude...
ARGO

FOG-based INS & AHRS for airborne navigation & stabilization

FOG-based INS & AHRS for airborne navigation & stabilization
...ring excellent navigation and stabilization capabilities for both retrofit and new aircraft builds....
ARGO 4000

FOG-based GNSS-INS for airborne navigation & stabilization

FOG-based GNSS-INS for airborne navigation & stabilization
...NSS-aided INS (inertial navigation systems) offers class-leading SWaP and is designed for both...
HGuide n580 GNSS-INS

GPS-aided INS with RTK and dual-antenna capabilities

GPS-aided INS with RTK and dual-antenna capabilities
...ned GNSS-aided inertial navigation system that is ideal for applications requiring continuous...
Embedded GPS/INS with anti-jamming capabilities

High-performance certified solutions for military navigation requirements

High-performance certified solutions for military navigation requirements
... GPS/INS (EGI) systems are designed to provide military aircraft with the utmost in reliable...
Certus Mini D

Rugged miniature dual antenna GNSS-aided INS

Rugged miniature dual antenna GNSS-aided INS
...tures Advanced Navigation’s revolutionary AI-powered fusion algorithm that delivers accuracy...
Certus Mini A

Rugged tactical-grade MEMS AHRS sensor for aerial, marine & land applications

Rugged tactical-grade MEMS AHRS sensor for aerial, marine & land applications
...tures Advanced Navigation’s revolutionary AI-powered fusion algorithm that delivers accuracy...
Certus Evo

Rugged MEMS GNSS/INS for tactical navigation

Rugged MEMS GNSS/INS for tactical navigation
...EMS GNSS-aided Inertial Navigation System (INS) engineered for mission-critical defense and security...
Certus

Market-leading dual antenna INS

Market-leading dual antenna INS
...nna GNSS aided Inertial Navigation System (INS) that provides accurate position, velocity,...
Pollux 3 INS

Ultra-miniature INS for UAVs & UGVs

Ultra-miniature INS for UAVs & UGVs
Aeron Systems' Pollux 3 is an ultra-miniature MEMS inertial navigation system incorporating...
Octantis 2 GNSS-INS

Rugged triple-frequency GNSS-aided inertial navigation system

Rugged triple-frequency GNSS-aided inertial navigation system
Aeron Systems' Octantis 2 GNSS-aided INS is a field-proven MEMS-based inertial navigation system...
Octantis 3 GNSS-INS

Rugged dual-antenna triple-frequency GNSS-aided inertial navigation system

Rugged dual-antenna triple-frequency GNSS-aided inertial navigation system
Aeron Systems' Octantis 3 GNSS-aided INS is a next-generation MEMS-based inertial navigation system...
Aldebaran GNSS-INS

FOG-based GNSS-aided inertial navigation system with tactical-grade performance

FOG-based GNSS-aided inertial navigation system with tactical-grade performance
Aeron Systems' Aldebaran is a rugged FOG inertial navigation system that outputs reliable position...
IF4010 FOG-Based INS

High-accuracy inertial navigation system for airborne, maritime and land platforms

High-accuracy inertial navigation system for airborne, maritime and land platforms
...s a ruggedised inertial navigation unit built around a closed-loop fibre-optic gyroscope and... ... accelerometer system achieving accelerometer bias stability of ~10 µg....
IF3700 FOG-Based INS

High-precision inertial navigation system for military and unmanned platforms

High-precision inertial navigation system for military and unmanned platforms
...gh-performance inertial navigation system leveraging a closed-loop fibre-optic gyroscope and...
FOG Inertial Navigation Systems

Advanced FOG-based GNSS-aided INS for critical positioning, orientation & navigation

Advanced FOG-based GNSS-aided INS for critical positioning, orientation & navigation
...such as vessel navigation and missile guidance, and are also ideal for unmanned systems navigation...
POLAR-300

MEMS-based AHRS & INS unit with air data system for UAVs

MEMS-based AHRS & INS unit with air data system for UAVs
...dead reckoning navigation in dynamic environments. It is ideal for integration into UAV avionics...
POLAR-500

AHRS & INS unit with air data system & dual GNSS compass

AHRS & INS unit with air data system & dual GNSS compass
...ding Reference System that also incorporates a dual GNSS compass, providing precise attitude and...
GEO-FOG 3D Dual INS

Rugged Inertial Navigation System with Embedded GNSS & Advanced PIC Technology

Rugged Inertial Navigation System with Embedded GNSS & Advanced PIC Technology
...EO-FOG 3D Dual Inertial Navigation System (INS) is a precise and reliable solution for military... ...Stabilization, Navigation, and Control: Ensures precise navigation for both manned and unmanned...
SDN500 GPS/INS

Tactical-Grade Miniature MEMS GPS Inertial Navigation Solution

Tactical-Grade Miniature MEMS GPS Inertial Navigation Solution
...and Fixed-Wing Aircraft: Ensures precise navigation and control for aerial operations in diverse... ...Tactical Grade System, engineered for high-quality performance in demanding military applications....
TACNAV® IIc Fiber Optic INS

FOG-based tactical inertial navigation system for all terrains

FOG-based tactical inertial navigation system for all terrains
...based tactical Inertial Navigation System (INS) that provides highly accurate navigation with an... ...dead reckoning navigation, ensuring 100% situational awareness even in GNSS-denied environments....
TACNAV® 3D

Military fiber optic INS for 3D navigation - assured-PNT-capable

Military fiber optic INS for 3D navigation - assured-PNT-capable
...® 3D tactical inertial navigation system, built on FOG (Fiber Optic Gyro) technology, offers... ...chnology, this system ensures greater reliability and accuracy in challenging terrains. TACNAV 3D...
VN-200 Rugged GNSS/INS

Miniature, high-performance GNSS-Aided INS

Miniature, high-performance GNSS-Aided INS
...nce GNSS-aided Inertial Navigation System (GNSS/INS) that combines 3-axis gyros, accelerometers and...
VN-200 Surface Mount Device GNSS/INS

Miniature, high-performance GNSS-Aided INS with Surface Mount Device (SMD) form factor

Miniature, high-performance GNSS-Aided INS with Surface Mount Device (SMD) form factor
...nce GNSS-aided Inertial Navigation System (GNSS/INS) that combines 3-axis gyros, accelerometers and...
VN-210 GNSS/INS

Tactical-grade GNSS-aided Inertial Navigation System (INS)

Tactical-grade GNSS-aided Inertial Navigation System (INS)
...nce GNSS-aided Inertial Navigation System (GNSS/INS) that combines 3-axis gyros, accelerometers and...
VN-310 Dual-Antenna GNSS/INS

Tactical-Grade GNSS/INS with Integrated GNSS-Compass

Tactical-Grade GNSS/INS with Integrated GNSS-Compass
...nna GNSS-aided Inertial Navigation System (INS). ...
Inertial Navigation Systems

Military-ready MEMS INS & inertial sensors for unmanned platforms

Military-ready MEMS INS & inertial sensors for unmanned platforms
Aeron Systems, represented by UAV Propulsion Tech, delivers advanced MEMS-based inertial navigation... ... near-tactical navigation performance...

A Comprehensive Overview of Aircraft Inertial Navigation Systems (INS)

William Mackenzie

Updated:

Introduction to Aircraft Inertial Navigation Systems (INS)

An aircraft inertial navigation system is a foundational subsystem aboard modern military airframes. By providing continuous position, velocity, attitude, heading, and navigation timing information without relying on external RF signals, an INS in aircraft remains indispensable for combat aviation, intelligence gathering, and autonomous operations.

Unlike satellite-based navigation technologies, an inertial navigation system in aircraft operates independently by measuring the platform’s motion through a combination of precision accelerometers and gyroscopes. This self-contained architecture allows military forces to maintain navigation accuracy even when GPS or other GNSS signals are degraded, denied, or deliberately spoofed.

Most modern military aircraft employ integrated navigation architectures that combine an aircraft INS with GNSS and other navigation sensors. These systems use satellite navigation updates to improve long-term accuracy while retaining the ability to continue operating when external signals become unavailable.

Platforms Leveraging INS Across Defense Aviation

Combat and Reconnaissance Airframes

Modern fighter aircraft operate in highly dynamic environments that demand exceptional spatial accuracy. Robust INS configurations support air-to-air engagements, precision strike missions, and terrain-following flight profiles. Similarly, Intelligence, Surveillance, and Reconnaissance (ISR) platforms depend on an advanced inertial navigation system aircraft setup to accurately geolocate targets, synchronize sensor payloads, and maintain mission effectiveness over extended tracking periods.

Transport, Maritime Patrol, and Special Mission Aircraft

Military transport aircraft rely on inertial navigation systems for long-range route navigation, precision approaches, and operation in regions where satellite navigation availability may be limited. Maritime patrol aircraft utilize INS data to support anti-submarine warfare, maritime surveillance, and sensor alignment, while special mission aircraft depend on highly accurate navigation and attitude information to support electronic warfare, intelligence collection, and airborne command-and-control functions.

Rotorcraft and Unmanned Aircraft

Helicopters and tactical rotorcraft frequently utilize INS in aviation for low-altitude terrain avoidance, hover stabilization, and weapon pointing in degraded visual environments. For unmanned platforms, an airborne GPS-aided inertial system or compact standalone aircraft INS serves as the primary navigation foundation, enabling autonomous waypoint navigation, stable flight control, and resilient swarm or collaborative combat operations when primary communication links are disrupted. Loitering munitions and Collaborative Combat Aircraft (CCA) similarly rely on advanced inertial navigation capabilities to maintain mission effectiveness in GNSS-contested environments.

Core Components of Aircraft Inertial Navigation Systems

The overall performance and drift rate of an aviation INS are primarily determined by the quality of its underlying Inertial Measurement Unit (IMU) and gyroscope technology:

  • Accelerometers: Measure linear acceleration along multiple axes, enabling the INS to calculate changes in velocity and position over time. Together with gyroscopes, they form the core sensing elements of the IMU.
  • Ring Laser Gyros (RLG): Utilize laser beams in a closed optical path to offer excellent long-term stability and linear accuracy, making them standard for high-end combat and strategic aircraft.
  • Fiber Optic Gyros (FOG): Employ coiled optical fibers to provide high bandwidth, exceptional reliability, and reduced maintenance in compact system designs.
  • MEMS Gyroscopes: Leverage micro-machined silicon structures to deliver ultra-low size, weight, power, and cost (SWaP-C), making them ideal for loitering munitions and small tactical UAVs.

Advanced embedded software and filtering techniques process these raw sensor inputs in real time, mitigating the effects of inherent sensor errors and drift while managing data distribution across the wider avionics architecture. Many modern systems also integrate inputs from GNSS receivers, air data systems, radar altimeters, and other onboard sensors to enhance overall navigation performance.

Defense Standards & Selection Criteria

Every aircraft inertial navigation systems deployment must conform to strict military and aerospace certification standards before achieving airworthiness:

  • Environmental & EMI: Systems must meet MIL-STD-810 requirements for shock, vibration, and temperature extremes, alongside MIL-STD-461 for electromagnetic compatibility.
  • Software & Hardware Assurance: Many military and dual-use aircraft programs also apply standards such as DO-160, DO-178C (software assurance), and DO-254 (airborne electronic hardware) to support airworthiness certification and safety-critical system development.

When choosing an inertial navigation system aviation solution, system integrators must carefully balance the platform’s maximum allowable drift rate against rigid SWaP-C constraints. While Commercial Off-The-Shelf (COTS) systems dramatically reduce development risk and speed up deployment timelines, custom-engineered solutions remain necessary for highly specialized airframe form factors or unique data bus architectures.