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±250 °/s Range Triaxial universal angular rate gyro with -45~+80 °C Operating Temperature Range

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±250 °/s Range Triaxial universal angular rate gyro with -45~+80 °C Operating Temperature Range

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Brand Name : Kacise

Model Number : KS3ARGA1

Place of Origin : China (Mainland)

Certification : certificate of explosion-proof, CE

MOQ : 1pcs

Packaging Details : each unit has individual box and all boxes are packed in standard packages or customers requests available

Delivery Time : 5-8 working days

Payment Terms : T/T, Western Union, MoneyGram

Supply Ability : 1000 Pieces per Week

Bandwidth can customize : 80(Hz)

Nonlinearity : ≤0.05(%FR)

Incoming currentmA : <30 MA

run-up time : ≤20(ms)

Scaling factor : 8±0.5(mv/°/s)

Mean time between failures : 100khour(MTBF)

Size : 34×25×24(mm)

Storage temperature : -65~+125(°C)

Range : ±250(°/s)

Operating temperature range : -45~+80(°C)

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Product Description:

Kacise KS3ARGA1 Series: Three-Axis Universal Angular Rate Gyro

Introduction

The KS3ARGA1 series , a state-of-the-art three-axis universal angular rate gyro developed by Kacise , is a powerful device aimed at measuring the angular rates across three different axes. It integrates cutting-edge MEMS (Micro-Electro-Mechanical Systems) technology chips into each axis, ensuring outstanding performance and high cost-efficiency. Its design emphasizes not only superior reliability but also robustness in packaging, equipped with an invaluable Self-Test feature for enhanced operational assurance.

Operating Principle

The functional core of the KS3ARGA1 Series lies in its utilization of the resonator gyro principle. This technology encompasses two polysilicon sensitive structures, of which each harbors a high-frequency vibrating frame. These frames are set into resonance via electrostatic forces inducement, embodying the vital components of velocity measuring. On each of the structure's extremities, a capacitance-sensitive assembly is present. This setup is highly responsive to the Coriolis motions elicited by angular rate changes, converting these physical phenomena into a discernible electrical signal. This signal is then adeptly funneled through an amplification and modulation stage, culminating in an output that holds a direct proportionality to the measured angular rate.

Features:

● low power consumption
● wide operating temperature range
● wide bandwidth
● small size
● DC input DC output
● fast start
● high performance, low cost

Dimensions

±250 °/s Range Triaxial universal angular rate gyro with -45~+80 °C Operating Temperature Range

Technical Parameters:

Parameter KS3ARGA1
Power supply parameter
Input voltage 6-15V(Vdc)
Incoming currentmA <30 mA
Offset voltage 2.5±0.05(V)
Output voltage 0.5-4.5(V)
Product performance
Range ±250(°/s)
Scaling factor 8±0.5(mv/°/s)
Nonlinearity ≤0.05(%FR)
Resolution/Threshold ≤0.1(°/s)
Cross coupling ≤2(%)
Output noise <0.02(°/s√Hz)
run-up time ≤20(ms)
Bandwidth can customize 80(Hz)
G-value sensitivity <0.02(°/s/g)
Mean time between failures 100000hour(MTBF)
Size 34×25×24(mm)
Weight ≤40(g)
Environment
Operating temperature range -45~+80(°C)
Storage temperature -65~+125(°C)
Tolerated acceleration 20000(0.1ms)(g)

Applications:

The Diverse Applications of Electronic Control Systems

In the realm of transportation, a critical aspect that ensures optimal performance and safety is the use of advanced electronic control systems. Notably, the automotive industry heavily relies on these sophisticated technologies. Electronic components in vehicles enhance a wide variety of functions, from improving the overall driving experience to ensuring the functioning of critical systems under diverse conditions.

The aviation sector also benefits greatly from electronic control systems. Aircraft guidance and control mechanisms are central to the operation of both civilian and military aircraft. These systems enable precise navigation and maneuvering, allowing for safe and efficient flight management. With the aid of advanced electronics, pilots can make informed decisions based on accurate real-time data.

Attitude Reference Systems (ARS) represent another crucial application of electronic controls. They provide essential data on the orientation of a vehicle or platform in space, such as pitch, roll, and yaw angles. This information is indispensable for various navigational and stabilization tasks, ensuring that vehicles like aircraft maintain the correct course and attitude during their operations.

Platform stabilization is another keystone application of electronic control technology. This function is essential not only in aeronautics but also in fields such as maritime and land-based transportation. Stabilizing platforms help maintain steady positions and orientations, which are vital for accurate operations and safety.

Robotics and antenna stabilization systems also incorporate electronic controls to ensure precision and reliability. Robotic systems employ these technologies to maintain balance, navigate environments, and interact with objects. Stabilization mechanisms in antennas are equally important, enabling consistent communication by maintaining proper alignment, even in changing conditions.

Furthermore, electronic control technology is instrumental in the steady operation of visual recording and capturing devices. Camera stabilization, specifically in digital cameras and gyro-stabilized camera systems, ensures clear and sharp images by compensating for movement and vibrations. This technology is critical in various fields, from professional photography to security surveillance.

Support and Services:

Our Electronic Gyroscope Sensor is designed with precision to provide reliable performance for your applications. Our support includes detailed product documentation, an extensive online knowledge base, and troubleshooting guides to help you resolve any issues you may encounter.

We are committed to the satisfaction of our customers and strive to provide exceptional after-sales support. Should you have any feedback or suggestions, we welcome your input as it helps us to continuously improve our products and services.

Packing and Shipping:

The Electronic Gyroscope Sensor is housed in a robust, anti-static packaging to ensure the device remains secure and undamaged during transit. The interior of the packaging is lined with a cushioning material that absorbs shocks and vibrations, providing additional protection for the sensitive components of the sensor.

Prior to shipment, each package is sealed and subjected to a thorough inspection to guarantee that the sensor is securely enclosed. The exterior of the packaging is clearly labeled with handling instructions and the package contents to facilitate careful handling and to inform the recipient about the enclosed device.

For shipping, the packaged Electronic Gyroscope Sensor is placed in a larger, durable cardboard box designed to withstand the rigors of transport. This box is further secured with packing tape and, if necessary, additional cushioning materials are added to prevent movement within the box during shipment.

Each shipment includes a detailed packing slip with product information and a unique serial number for inventory tracking and quality control purposes. The package is then dispatched through a reliable courier service with options for tracking and insurance to ensure the Electronic Gyroscope Sensor arrives at its destination promptly and in pristine condition.


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