FIELD: precision instrumentation engineering; gyroscopic systems employing single-degree-of-freedom fluid-floated gyroscopes.
SUBSTANCE: proposed method of preparation of gyroscopic system for operation includes heating of fluid-floated gyroscope to working temperature at vibration of its float chamber relative to axis of gimbal and bringing the platform to preset spatial position upon completion of hating.
EFFECT: reduction of time of preparation of gyroscope for operation.
1 dwg
| Title | Year | Author | Number | 
|---|---|---|---|
| DOUBLE-STEPPED FLOAT GYROSCOPE | 2017 | 
									
  | 
                RU2641018C1 | 
| METHOD OF BALANCING OF GYROSCOPIC CHAMBER OF TWO-STAGE FLOAT-TYPE GYROSCOPE | 2016 | 
									
  | 
                RU2648023C1 | 
| METHOD TO DETERMINE ERROR OF DOUBLE-STAGE FLOAT GYROSCOPE | 2013 | 
									
  | 
                RU2526513C1 | 
| DEMONSTRATION GYROSTABILISER | 2009 | 
									
  | 
                RU2399960C1 | 
| TWO DEGREES OF FREEDOM FLOAT GYROSCOPE | 2015 | 
									
  | 
                RU2594628C1 | 
| 0 | 
									 | 
                SU355494A1 | |
| METHOD OF DETERMINING ERROR OF SINGLE-DEGREE OF-FREEDOM FLOATING GYROSCOPE WITH GAS-DYNAMIC ROTOR SUSPENSION OF GYROMOTOR | 2014 | 
									
  | 
                RU2570223C1 | 
| METHOD FOR DETERMINING ERROR OF TWO-STAGE GYRO UNIT | 2018 | 
									
  | 
                RU2688915C1 | 
| UNIAXIAL HORIZONTAL POWER GYROSTABILIZER | 2019 | 
									
  | 
                RU2716599C1 | 
| METHOD OF DETERMINATION OF TWO-STAGE GYRO UNIT ERROR | 2016 | 
									
  | 
                RU2637186C1 | 
Authors
Dates
2004-07-10—Published
2002-11-20—Filed