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Ship inertial navigation system IMU-Kernel-210
IMUMEMS

Ship inertial navigation system - IMU-Kernel-210 - Inertial Labs, Inc. - IMU / MEMS
Ship inertial navigation system - IMU-Kernel-210 - Inertial Labs, Inc. - IMU / MEMS
Ship inertial navigation system - IMU-Kernel-210 - Inertial Labs, Inc. - IMU / MEMS - image - 2
Ship inertial navigation system - IMU-Kernel-210 - Inertial Labs, Inc. - IMU / MEMS - image - 3
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Characteristics

Application domain
for ships
Function
IMU, MEMS

Description

The Inertial Labs MEMS KERNEL-210 and KERNEL-220 Inertial Measurements are the third generation of the Inertial Labs Miniature MEMS sensor-based family. The KERNEL-210 and KERNEL-220 are revolutionary, compact, self-contained, strapdown, Tactical-grade Inertial Measurement Units that measure linear accelerations and angular rates with precision due to their aligned and calibrated three-axis MEMS accelerometers and three-axis MEMS gyroscopes. Angular rates and accelerations are determined with low noise and very good repeatability for both motionless and dynamic applications. The Inertial Labs KERNEL-210 and KERNEL-220 models are the breakthrough, fully integrated inertial sensors that combines the latest MEMS sensor technologies. KERNEL-220 model utilizes two types of accelerometers: with ±40g and ±90g measurement ranges. Fully calibrated, temperature compensated, mathematically aligned to an orthogonal coordinate system, the IMU contains less than 1 deg/hr Bias in-run stability gyroscopes and 0.005 mg Bias in-run stability accelerometers with very low noise and high reliability. Continuous Built-in Test (BIT), configurable communications protocols and flexible input power requirements make the Inertial Labs KERNEL easy to use in a wide range of higher order integrated system applications. The Inertial Labs KERNEL models were designed for applications, like: ❖ Autonomous vehicles ❖ Antenna and Line of Sight Stabilization Systems ❖ Passengers trains acceleration / deceleration and jerking systems ❖ Motion Reference Units (MRU) and Motion Control Sensors (MCS) ❖ Gimbals, EOC/IR, platforms orientation and stabilization ❖ GPS-Aided Inertial Navigation Systems (INS)
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