SDI-505 TACTICAL GRADE INERTIAL MEASUREMENT UNIT (IMU) (NON-ITAR)
The SDI505 supports four data message synchronization methods with either input synchronization pulse capability or an output time of validity capability. The user can choose whether the synchronization pulse is internally generated and output as a Time of Validity (TOV) of the output data or whether the SDI505 software will identify the synchronization pulse input and synchronize the output data to the input pulse.
| PARAMETERS | GYRO CHANNELS | ACCELERATION CHANNELS |
|---|---|---|
| Bias | 1°/hr – 10°/hr | 1.0 mg – 2.0 mg |
| Bias in run Stability (typical) | 1.0°/hr – 2.0°/hr | 100 μg |
| Random Walk Noise | 0.02°/√hr – 0.03°/√hr | 100 μg /√Hz – 120 μg /√Hz |
| Operating Temperature | -55 °C to +85 °C | -55 °C to +85 °C |
| Vibration (Operating) | 19g rms | 19g rms |
A Quartz Micro-Electro Mechanical System (QMEMS) tactical Inertial Measurement Unit (IMU) is designed for high-precision commercial, industrial, marine, and defense applications requiring exceptional accuracy, robustness, and long-term reliability. This IMU is the only QMEMS-based system demonstrated to achieve 1°/hour gyroscope bias stability, 1 mg accelerometer bias stability, and an ultra-low 0.02°/√hour Angle Random Walk (ARW) over wide operating temperature ranges. These performance levels place it firmly in the tactical-grade class, suitable for demanding mission-critical environments.
The IMU is built on proven QMEMS sensor technology that enables repeatable, high-volume precision production while maintaining consistent performance. It incorporates the latest generation of quartz gyroscopes and quartz accelerometers, leveraging the inherent large signal output, excellent thermal stability, and low aging characteristics of quartz materials. High-speed digital signal processing further enhances precision, linearity, and noise immunity, ensuring reliable inertial data under dynamic conditions, including shock, vibration, and extreme temperatures.
Packaged in a compact, hermetically sealed enclosure, the QMEMS IMU is engineered for durability and long service life. The solid-state design contains no wear-out components, supporting continuous operation with a reliable Mean Time Between Failure (MTBF) and a 20-year operating and storage life. This makes the IMU well suited for long-duration deployments where maintenance access is limited or unavailable.
To simplify system integration, the IMU includes continuous Built-In Test (BIT) for real-time health monitoring, configurable communications protocols, electromagnetic interference (EMI) protection, and flexible input power compatibility. Advanced synchronization capabilities support four data message timing methods, including both input synchronization pulse and output Time of Validity (ToV). Users may select whether the synchronization pulse is internally generated and output as ToV, or whether the IMU software detects an external pulse and synchronizes output data accordingly.
Together, these features make the QMEMS tactical IMU a powerful, easy-to-integrate inertial solution for a wide range of advanced, higher-order integrated system applications.
- Excellent Bias Stability
- Superior Vibration Performance
- Miniature, Small Footprint Size (volume only 19 cubic inches)
- Unprecedented Low Angle Random Walk Values
- Solid-State, One-Piece Sensor Design, High MTBF
- Multiple Data Formats/Output Interfaces
- Data Time of Validity (TOV) Input & Output Synchronization, SDI-505 only
Missile Guidance & Control
Precision Guided Munitions
Missile Targeting
Torpedo Guidance
Defense Fixed Wing
Unmanned Aerial Vehicles
Defense Helicopter
Tank Turret Stabilization
Platform Stabilization
UUV-Underwater Vehicle

