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                  GJN-20A Quartz Flexible Accelerometer
                  GJN-20A Quartz Flexible Accelerometer
                  A Quartz Flexible Accelerometer is provided for detecting acceleration which employs an amorphous quartz proof-mass structure clamped at raised points between upper and lower portions of a magnet structure. As the accelerometer is accelerated, the proof-mass structure is displaced thus changing the capacitance. An acceleration-proportional output current is developed providing both static and dynamic acceleration measurements. By use of a customer supplied output load resistor, appropriately scaled for the acceleration range of the application, the output current can be converted into a voltage.
                  Introduction

                  A Quartz Flexible Accelerometer is provided for detecting acceleration which employs an amorphous quartz proof-mass structure clamped at raised points between upper and lower portions of a magnet structure. As the accelerometer is accelerated, the proof-mass structure is displaced thus changing the capacitance.An acceleration-proportional output current is developed providing both static and dynamic acceleration measurements. By use of a customer supplied output load resistor, appropriately scaled for the acceleration range of the application, the output current can be converted into a voltage.
                  The entire GJN family of accelerometer produced by ASIT has over ten members,which are widely served in aerospace, aviation, ships, weapons, petroleum and geotechnical engineering. As with the GJN family of accelerometer, the GJN-06A-1 features the highest inertial navigation-grade performance available in today's market, and the GJN-06K, used in petroleum drilling, is environmentally rugged and low cost.

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                  Characteristic

                  Compact size (Φ18.8mm) and light weight;
                  High precision;
                  Field-adjustable range;
                  Four fastener precision mounting flange;
                  Application in Unmanned Aircraft.

                  Parameter

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