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Electronic Gyroscope Sensor

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MTBF 10Kh MTBF Electronic Gyroscope Sensor Vibration 6 G 20~2000 Hz Full Scale ≤0.3°/h

Product Description: The KSIMU01D inertial Measurement Unit is a cutting-edge navigation, control and dynamic measurement device that boasts high-performance and low-cost features. It is designed to measure the angular velocity and acceleration information with great accuracy, even in harsh environmental conditions. This series of products comes equipped with a sealed design, enabling it to maintain its precision under challenging conditions. The KSIMU01D has a wide operating

Price: Negotiable MOQ: 1pcs Delivery Time: 5-8 working days

Digital RS422 Output Interface Electronic Gyroscope Sensor For Automotive Applications

Product Description The KSIMU01D inertial Measurement Unit is a top-of-the-line, yet affordable inertial measurement device perfect for navigation, control and dynamic measurement purposes. Its sealed design allows for precise measurements of angular velocity and acceleration even in the harshest environments. The KSIMU01D is equipped with numerous features including low power consumption, wide operating temperature range, wide bandwidth, small size and fast startup. These

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170g±10g Electronic Gyroscope Sensor With Roll ±180deg Output Interface Digital RS422

Product Description: The KSIMU01D Inertial Measurement Unit is a device that boasts high-performance and low-cost. It is primarily ideal for navigation, control, and dynamic measurement purposes. Thanks to its sealed design, this series of products is capable of collecting reliable and accurate data concerning the angular velocity and acceleration of a moving carrier even in the harshest of environments. The KSIMU01D includes various features that make it an efficient device

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Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005

Product Description: The KQ3GY gyroscope is a cutting-edge device developed using quartz MEMS technology. This innovative technology allows the device to sense the angular velocities of multiple axes at the same time. The axes can be configured according to customer needs. The device uses a serial port to output digital information. MEMS technology is an incredible technology that integrates various micro-devices and systems. These systems include micro-sensors, micro

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Precision Quartz MEMS Gyroscope -40℃~+65℃ Working Temperature Control system Bandwidth ≥140

Product Description: The KQ3GY gyroscope is a cutting-edge device that was developed using quartz MEMS technology. This advanced technology enables the gyroscope to sense the angular velocities of multiple axes, which can be configured according to the customer's specific needs. Additionally, the KQ3GY gyroscope is capable of outputting digital information through the serial port, making it an ideal option for a wide range of applications. MEMS technology refers to micro

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Ultra Sensitive Quartz Mems Angular Rate Sensor Control System For Precise Industrial Control Bias ≤0.03 Bandwidth ≥140

Product Description: The KQ3GY gyroscope has been designed using quartz MEMS technology. The major highlight of this technology is its ability to sense the angular velocities of multiple axes, which can be configured according to the needs of the customers. Furthermore, this technology facilitates the output of digital information through the serial port. MEMS (Micro-Electro-Mechanical Systems) successfully integrates various micro-components such as micro-sensors, micro

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Ultra Sensitive MEMS Gyroscope Sensor with Input Current < 50 mA and Wide Operating Temperature Range -40℃~+65℃ for High Reliability Applications

Product Description:The KQ3GY gyroscope has been developed using Quartz MEMS technology. Utilizing this technology ensures that multiple angular velocities can be sensed simultaneously across multiple axes that have been configured according to customer needs. Digital information can be output through the serial port allowing for ease of use.MEMS technology has given rise to the development of micro-devices and systems that integrate micro-components such as sensors,

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≤20 Bias Stability Electronic Gyroscope Sensor for Advanced Applications Automated testing

Product Description: The KQ3GY gyroscope utilizes the revolutionary quartz MEMS technology to detect the angular velocities of multiple axes (as configured by the customer). It processes this data and outputs a digital signal through its serial port for easy access and analysis. MEMS is a cutting-edge micro-device or system that combines various micro-components such as sensors, actuators, mechanical structures, power sources, and communication interfaces. It features high

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5±0.2 Vdc Input Voltage MEMS Quartz Gyro Sensor with ≤0.005 Threshold

Product Description: The KQ3GY gyroscope is developed using quartz MEMS technology. It has the capability to sense the angular velocities of multiple axes that are configured according to customer needs. The digital information obtained can then be output through the serial port. MEMS, which stands for micro-electro-mechanical systems, is a micro-device or system that integrates various components such as micro-sensors, micro-actuators, micro-mechanical structures, signal

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±100 Measurement range Electronic Gyroscope Sensor with ≥140 Bandwidth Threshold ≤0.005

Product Description: The KQ3GY gyroscope is an advanced product that is made possible through the use of quartz MEMS technology. This cutting-edge technology allows the gyroscope to simultaneously sense the angular velocities of multiple axes, which can be configured according to the specific needs of the customer. The KQ3GY then outputs digital information through its serial port, providing quick and reliable data to the user. MEMS, or micro-electro-mechanical systems, is a

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≤0.03 Bias ±100 Measurement Range Quartz MEMS Rate Sensor for Industrial Applications

Product Description: The KQ3GY gyroscope is an innovative technology developed using quartz MEMS technology. This cutting-edge device is capable of sensing the angular velocities of multiple axes configured according to the customer’s needs. The digital output information is available for users through the serial port. MEMS or Micro-Electro-Mechanical systems integrate various micro-components such as sensors, actuators, mechanical structures, interfaces, signal processing,

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Quartz MEMS Gyroscope Sensor with Low Power Consumption <50mA, Wide Operating Temperature -40℃ to +65℃, and High Precision Bias ≤0.03

Product Description: The KQ3GY gyroscope is an advanced instrument developed utilizing quartz MEMS technology. This state-of-the-art device has the ability to simultaneously detect the angular velocities of multiple axes, which can be configured based on the specific needs of the customer. Additionally, the KQ3GY is capable of outputting digital information through the serial port for easy data transfer and analysis. In essence, MEMS refers to microtechnology that integrates

Price: Negotiable MOQ: 1pcs Delivery Time: 5-8 working days

±100 Measurement Range Quartz MEMS Gyroscope For Virtual Reality Applications Input Current < 50 MA

Product Description The KQ3GY gyroscope is built with innovative quartz MEMS technology. This cutting-edge technology allows the gyroscope to sense the angular velocities of multiple axes at the same time. The KQ3GY can be configured to meet customers' specific needs in terms of the number of axes it measures, and it outputs digital information through the serial port. MEMS technology is a type of micro-device, and it is designed to integrate micro-sensors, micro-actuators,

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Compact Lightweight MEMS Quartz Rate Sensor 9-18 Vdc Input -40 ° C To 85.C Operating Temperature

Product Description: KQRS14 Inertial Sensor The KQRS14 is a compact and rugged solid-state inertial sensor that is primarily used to measure angular rotation rates. It is equipped with a monolithic quartz sensing element that ensures high accuracy and reliability in various applications. With its internal power regulation and DC input/high-level DC output operation, this sensor offers easy and convenient use. There are two versions of the KQRS14 available in the market to

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High Reliability Gyro Sensor Low Bias Variation Short Term Navigation <20~25mA Input Current

Product Description: The KQRS14 is a robust and compact solid-state sensor that is primarily used to measure angular rotation rates. Its highly advanced design comes equipped with a monolithic quartz sensing element, which ensures maximum accuracy in readings. In addition, this sensor is equipped with an internal power regulation component and can operate using DC input or high-level DC output. Two different versions of the KQRS14 are available to users. The +12Vdc variant is

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MEMS Quartz Gyroscope Vibration Resistance 5 Grms 2.0 Sec Start Up -40°C To +85°C Operating Range

Product Description: The KQRS14 is a robust and durable inertial sensor that is designed for measuring angular rotation rates. It is compact in size and built with solid-state technology. The sensing element is monolithic quartz, which provides reliable and accurate readings. This sensor boasts internal power regulation for smooth operation, and DC input and high-level DC output capability, making it an ideal choice for various applications. Two versions of the KQRS14 are

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Speed Response Quartz MEMS Gyroscope with 200g Shock Tolerance and DC Input/High-Level DC Output in Compact Rugged Design

Product Description: The KQRS14 is an advanced inertial sensor designed to measure angular rotation rates. This compact and rugged sensor features a monolithic quartz sensing element, which ensures accurate and reliable measurement performance even in harsh environments. Additionally, the sensor incorporates internal power regulation, which ensures reliable operation over wide temperature and power supply ranges. The KQRS14 comes in two different versions to meet different

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Shock Resistance MEMS Rate Sensor with Wide Bandwidth and Low Input Current for Precision Angular Measurement

Product Description: The KQRS14: A Compact, Solid-State Inertial Sensor The KQRS14 is an inertial sensor that is compact and ruggedly built. Specifically, it is designed to measure angular rotation rates. One of its standout features is its monolithic quartz sensing element. Additionally, it is equipped with internal power regulation and is capable of either DC input or high-level DC output operation. When selecting the KQRS14, there are two versions to choose from. The first

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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

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

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Quartz MEMS Gyroscope -40°C To 85°C Temperature Range For Robotics Applications Full Scale Output ±5 Vdc

Product Description: The KQRS14 is a powerful inertial sensor commonly used for measuring angular rotation rates. The device is compact and rugged, making it suitable for harsh industrial environments. Its monolithic quartz sensing element provides unparalleled accuracy, while its internal power regulation ensures stable and reliable operation. The KQRS14 is available in two versions, making it a versatile solution for a range of applications. The +12Vdc version is designed

Price: Negotiable MOQ: 1pcs Delivery Time: 5-8 working days
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