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Found 15 Results For "

small fiber optic inertial unit

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Quality Compact And Lightweight TDF42IMU0 Fiber Optic Inertial Unit with Low Power Consumption and High Accuracy factory

Compact And Lightweight TDF42IMU0 Fiber Optic Inertial Unit with Low Power Consumption and High Accuracy

TDF42IMU0 Fiber Optic Inertial Unit The TDF42IMU0 fiber optic inertial unit offers compact size, lightweight construction, low power consumption, and high precision performance. Designed for demanding applications with significant impact and vibration, this unit is ideal for small, high-precision inertial measurement in torpedo systems, land/airborne weapons, missile platforms, and other dynamic motion measurement scenarios. Key Features Compact dimensions: 115 * 94 * 50 mm (

Quality TDF51IMU0 Small Size High-Precision Fiber Optic Inertial Unit with Dynamic Measurement Functions for IMU Equipment factory

TDF51IMU0 Small Size High-Precision Fiber Optic Inertial Unit with Dynamic Measurement Functions for IMU Equipment

TDF51IMU0 Fiber Optic Inertial Unit Dynamic measurement functions for small size and high-precision inertial unit equipment designed for unmanned platforms, water/torpedo weapons, and land/airborne weapon platforms. Overview Fiber optic inertial units offer significant advantages including small size, light weight, low power consumption, and high accuracy. These units support pure strapdown, single axis, and dual axis modulation configurations, providing dynamic measurement

Quality High Accuracy TDF37IMU0 Fiber Optic Inertial Unit with Dynamic Measurement Functions and 0.2°/h Zero Bias Stability factory

High Accuracy TDF37IMU0 Fiber Optic Inertial Unit with Dynamic Measurement Functions and 0.2°/h Zero Bias Stability

High Accuracy TDF37IMU0 Fiber Optic Inertial Unit Fiber optic inertial units offer significant advantages including compact size, lightweight design, low power consumption, and high precision accuracy. These units are engineered for pure strapdown system design, meeting the demanding requirements of modern unmanned platforms, underwater/torpedo weapons, and various land, airborne, and missile weapon platforms that require small form factor, high-precision inertial measurement

Quality High Accuracy TDF72IMU0 Fiber Optic Inertial Unit with Low Power Consumption and Small Size for Dynamic Measurement factory

High Accuracy TDF72IMU0 Fiber Optic Inertial Unit with Low Power Consumption and Small Size for Dynamic Measurement

High Accuracy TDF72IMU0 Fiber Optic Inertial Unit This advanced fiber optic inertial unit features eight-point vibration reduction, making it ideal for applications with significant impact and vibration. With its compact design, lightweight construction, low power consumption, and high precision, it provides dynamic measurement of carrier angular and linear motion information for various defense and aerospace platforms. Key Features Eight-point vibration reduction system

Quality Low Power Consumption High Accuracy Small Size TDF42IMU0 Fiber Optic Inertial Measurement Unit factory

Low Power Consumption High Accuracy Small Size TDF42IMU0 Fiber Optic Inertial Measurement Unit

Low Power Consumption TDF42IMU0 Fiber Optic Inertial Unit This high-accuracy fiber optic inertial unit features compact design, lightweight construction, and low power consumption. It supports pure strapdown, single axis, and dual axis modulation configurations, making it ideal for unmanned platforms, torpedo weapons, and land/airborne weapon systems requiring dynamic measurement of angular and linear motion. Key Features Small size and lightweight design Low power consumptio

Quality Model FG-980S High Accuracy Fiber Optic Inertial Navigation System with Fast Alignment Time and Small Size factory

Model FG-980S High Accuracy Fiber Optic Inertial Navigation System with Fast Alignment Time and Small Size

Model FG-980S High Accuracy Fiber Optic Inertial Navigation System The FG-980S inertial navigation system features exceptional accuracy with less than 0.1 heading error. This advanced system incorporates an embedded GNSS receiver and utilizes three high-accuracy single-axis closed-loop miniature Fiber Optic Gyros (FOGs) along with quartz accelerometers. Designed with compact dimensions, lightweight construction, and low power consumption, this system serves as an ideal