Specifications
Brand Name :
Kacise
Model Number :
KQRS14
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
Full Scale Output (Nominal) :
±5 Vdc
Scale Factor Over Temperature (Dev. from 22°C Typical) :
≤0.06%/°C
Bandwidth (-90° Phase Shift) :
>50 Hz
Bias Calibration (at 22°C Typical) :
+2.5 ±0.045 Vdc
Threshold/Resolution :
≤0.004°/sec
Storage Temperature :
-55°C To +100°C
Input Current :
<20~25mA
Scale Factor Calibration (at 22°C Typical) :
±2% Of Value
Short Term Bias Stability (100 sec at const. temp) :
<0.05°/sec, typical
Description

Product Description:

The KQRS14 is a reliable and durable inertial sensor that is useful for measuring angular rotation rates. It is compact in size and features a monolithic quartz sensing element which ensures accurate readings. Additionally, the sensor has internal power regulation and operates using DC input or high-level DC output.

There are two versions of the KQRS14 available to choose from. The first is a +12Vdc version that provides a high-level +1.0 to +4.0 Vdc output. It can operate using standard battery power. The second version utilizes + and -15 Vdc and provides a high-level bipolar output of ±5 Vdc. It is specifically designed to work with conventional double-sided power supplies.

Features:

● Compact,Lightweight Design

● Wide Temperature Range

● DC Input/High-Level DC Output

● lnternal Power Regulation

● High Reliability

● Shock Resistant

Technical Parameters:

Parameter KQRS14-0XXXX-102** KQRS14-0XXXX-103**
Power Requirements
Input Voltage +9 to +18 Vdc +9 to +18 Vdc
Input Current <20 mA <25 mA (each supply)
Performance
Standard Ranges ±50,100,200,500°/sec.
Full Scale Output (Nominal) +1.0 Vdc (-FS) to +4.0 Vdc (+FS) ±5 Vdc
Scale Factor Calibration (at 22°C Typical) ±2% of value
Scale Factor Over Temperature (Dev. from 22°C Typical) ≤0.06%/°C
Bias Calibration (at 22°C Typical) +2.5 ±0.045 Vdc 0.0±0.075 Vdc
Bias Variation over Temperature (Dev. from 22°C) <3.0°/sec.
Short Term Bias Stability (100 sec at const. temp) <0.05°/sec, typical
Long Term Bias Stability (1 year) ≤1.0°/sec.
G Sensitivity (Typical) ≤0.06°/sec/g
Start-Up Time (Typical) <2.0 sec
Bandwidth (-90° Phase Shift) >50 Hz
Non-Linearity (Typical) % Full Range ≤0.05% of F.R.
Threshold/Resolution ≤0.004°/sec.*
Output Noise (DC to 100 Hz) ≤0.05°/sec./√Hz* ≤0.02°/sec./√Hz*
Weight ≤50 grams
Environments
Operating Temperature -40°C to +85°C
Storage Temperature -55°C to +100°C
Vibration Operating*** 5 grms 20 Hz to 2 kHz random
Vibration Survival*** 10 grms 20 Hz to 2 kHz random 5 minutes/axis
Shock 200g,any axis

Dimensions:

Quartz Gyroscope MEMS-55 °C To 100°C With Short-term Bias Stability Of 0.05°/sec Can Be Used For Short VoyagesQuartz Gyroscope MEMS-55 °C To 100°C With Short-term Bias Stability Of 0.05°/sec Can Be Used For Short Voyages

Description of the Interface:

KQRS14-0XXXX-102 pin assignment

Num Explain Num Explain
1 Power and Signal Ground 5 Rate Output
2 +Vdc Input 6 No connection, Leave Open
3 No connection, Leave Open 7 Built-in-test
4 No connection, Leave Open

KQRS14-0XXXX-103 pin assignment

Num Explain Num Explain
1 -Vdc Input 5 Rate Output
2 +Vdc Input 6 No connection, Leave Open
3 Power Ground 7 Built-in-test
4 Signal Ground

Applications:

Platform Stabilization

The system is designed to provide stability for platforms used in various industries, such as marine, oil and gas, and construction. It employs state-of-the-art technology to minimize the impact of waves, wind, and other external factors that can affect the balance of the platform. This helps ensure the safety of personnel working on the platform and improves the efficiency of operations.

Short Term Navigation

This service provides accurate and timely navigation information for short-term needs, such as navigating through busy ports or congested areas. The system utilizes data from various sources, including GPS and other sensors, to calculate the most optimal route. It also takes into account real-time factors such as weather, traffic, and currents to ensure safe and efficient navigation.

GPS Augmentation

The GPS augmentation system enhances the accuracy and reliability of GPS signals, particularly in areas with poor signal strength or interference. It uses ground-based reference stations and satellite-based correction signals to enhance GPS signals, which can be critical in applications such as aviation, maritime, and land-based transportation.

Camera Stabilization

Camera stabilization technology enables steady and reliable footage capture even in challenging situations. It uses advanced algorithms and mechanical stabilization to compensate for camera shake and motion, resulting in smooth and high-quality video and images. This technology is used in many applications, such as aviation, sports, and movie production.

Instrumentation

Instrumentation refers to the various sensors and monitoring devices used to measure and track parameters in different systems, such as engines, turbines, and pipelines. This data can be used to optimize performance, detect anomalies and improve safety. The instrumentation system employs various technologies such as telematics, wireless connectivity and real-time data analysis to provide up-to-date and accurate information.

Ride Control Stabilization

The ride control stabilization system is designed to enhance the comfort and safety of passengers in various modes of transportation, such as boats and cars. It uses advanced mechanical and electronic systems to reduce motions that can cause seasickness, car sickness, or discomfort due to bumpy roads. By providing a smoother ride, the system can improve passenger satisfaction and well-being.

Wind Turbine Control

Wind turbine control systems are critical in the production of clean energy from wind power. They ensure that wind turbines operate at optimal levels of efficiency and safety, by tracking the direction, speed, and other parameters of the wind and adjusting the turbine's operation accordingly. The control system also includes safety features that protect the turbine from damage due to high winds or other extreme conditions.

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 meticulously packaged in an anti-static bag to ensure protection against electrostatic discharge (ESD). The sensor is then securely encased in a custom-fit, high-density foam mold, which provides superior shock absorption during transit. This foam is placed within a durable, branded cardboard box that shields the sensor from environmental factors and potential damage while in transit.

The exterior of the box features clear labeling with the product name, handling instructions, and a barcode for easy tracking. All our packages are sealed with tamper-evident tape, offering an additional layer of security.

For shipping, the Electronic Gyroscope Sensor is dispatched via a trusted courier service to ensure timely and safe delivery. We include insurance for the full value of the product, offering peace of mind and protection for your investment. Tracking information is provided as soon as the package is dispatched, allowing for real-time monitoring of the shipment until it arrives at its destination.

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Quartz Gyroscope MEMS-55 °C To 100°C With Short-term Bias Stability Of 0.05°/sec Can Be Used For Short Voyages

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Brand Name :
Kacise
Model Number :
KQRS14
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
Contact Supplier
Quartz Gyroscope MEMS-55 °C To 100°C With Short-term Bias Stability Of 0.05°/sec Can Be Used For Short Voyages
Quartz Gyroscope MEMS-55 °C To 100°C With Short-term Bias Stability Of 0.05°/sec Can Be Used For Short Voyages

Xi'an Kacise Optronics Co.,Ltd.

Verified Supplier
7 Years
Shaanxi
Since 2008
Business Type :
Manufacturer
Total Annual :
8000000-10000000
Employee Number :
100~150
Certification Level :
Verified Supplier
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