FI (list display)

  • G01D5/00
  • Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable (G01D 3/00takes precedence;specially adapted for apparatus giving results other than momentary value of variable G01D 1/00) HB CC 2F077
  • G01D5/02
  • .using mechanical means HB CC 2F077
  • G01D5/04
  • ..using levers; using cams; using gearing HB CC 2F077
  • G01D5/04@A
  • using levers HB CC 2F077
  • G01D5/04@B
  • Using of cams HB CC 2F077
  • G01D5/04@C
  • Using of gearing HB CC 2F077
  • G01D5/04@Z
  • Other means HB CC 2F077
  • G01D5/06
  • ..acting through a wall or enclosure, e.g. by bellows, by magnetic coupling HB CC 2F077
  • G01D5/08
  • ..Reducing the effects of friction, e.g. by applying vibrations HB CC 2F077
  • G01D5/10
  • ..Applying external forces to increase force available for operation of indicating or recording part HB CC 2F077
  • G01D5/12
  • .using electric or magnetic means (G01D 5/06 takes precedence) [3] HB CC 2F077
  • G01D5/12@G
  • regarding the detection of position and angle HB CC 2F077
  • G01D5/12@B
  • .ragarding the conversion units of input device HB CC 2F077
  • G01D5/12@H
  • using magnetic means for detection HB CC 2F077
  • G01D5/12@R
  • usung electric means for detection HB CC 2F077
  • G01D5/12@N
  • regarding compensation, adjustment and anomaly detection HB CC 2F077
  • G01D5/12@K
  • .regarding anomaly detection HB CC 2F077
  • G01D5/12@C
  • Related to circuits HB CC 2F077
  • G01D5/12@A
  • Related to structures HB CC 2F077
  • G01D5/12@Q
  • .regarding the structure of supporting and installation HB CC 2F077
  • G01D5/12@Z
  • Others HB CC 2F077
  • G01D5/14
  • ..influencing the magnitude of a current or voltage HB CC 2F077
  • G01D5/14@D
  • detecting electric field HB CC 2F077
  • G01D5/14@E
  • using elements for sensing magnetic field HB CC 2F077
  • G01D5/14@H
  • .using Hall element HB CC 2F077
  • G01D5/14@F
  • .regarding magnetic circuit HB CC 2F077
  • G01D5/14@P
  • using piezo-electric element HB CC 2F077
  • G01D5/14@Z
  • Others HB CC 2F077
  • G01D5/16
  • ...by varying resistance HB CC 2F077
  • G01D5/16@E
  • converting magnetic to electric resistance HB CC 2F077
  • G01D5/16@M
  • .of the structure of magneto-resistive sensors (MR sensors) HB CC 2F077
  • G01D5/16@G
  • ..of the structure of giant magneto-resistive sensors (GMR sensors) HB CC 2F077
  • G01D5/16@U
  • utilizing the conversion between distortion and electrical resistance HB CC 2F077
  • G01D5/16@S
  • .regarding the structure of conversion units HB CC 2F077
  • G01D5/16@V
  • .regarding the structure of processing units HB CC 2F077
  • G01D5/16@Z
  • Others HB CC 2F077
  • G01D5/165
  • ....by relative movement of a point of contact and a resistive track [6] HB CC 2F077
  • G01D5/165@A
  • of the structure of the conversion units HB CC 2F077
  • G01D5/165@B
  • of processing units HB CC 2F077
  • G01D5/165@Z
  • others HB CC 2F077
  • G01D5/18
  • ...by varying effective impedance of discharge tubes or semiconductor devices HB CC 2F077
  • G01D5/18@D
  • utilizing the conversion between distortion and impedance HB CC 2F077
  • G01D5/18@E
  • utilizing the conversion between magnetic field and impedance HB CC 2F077
  • G01D5/18@Z
  • Others HB CC 2F077
  • G01D5/20
  • ...by varying inductance, e.g. by a movable armature HB CC 2F077
  • G01D5/20@J
  • ragarding the structure of units detecting inductance or its variation. HB CC 2F077
  • G01D5/20@A
  • .Detecting coil and magnetic material, being under relative displacement HB CC 2F077
  • G01D5/20@D
  • .Detecting coil and magnet, being under relative displacement HB CC 2F077
  • G01D5/20@G
  • .utilizing magnetic saturation HB CC 2F077
  • G01D5/20@K
  • .Detecting coil and non-magnetic conductor, being under relative displacement HB CC 2F077
  • G01D5/20@H
  • ..using short-circuit ring HB CC 2F077
  • G01D5/20@Q
  • regarding the processing units HB CC 2F077
  • G01D5/20@Z
  • Others HB CC 2F077
  • G01D5/20,110
  • ....by varying mutual inductance HB CC 2F077
  • G01D5/20,110@A
  • of the objects to be detected HB CC 2F077
  • G01D5/20,110@B
  • .of the objects to be detected being magnetic material HB CC 2F077
  • G01D5/20,110@C
  • .of the objects to be detected being magnet HB CC 2F077
  • G01D5/20,110@D
  • .of the objects to be detected with coils HB CC 2F077
  • G01D5/20,110@E
  • ..relative movements of exiting coils and detecting coils HB CC 2F077
  • G01D5/20,110@F
  • .of the objects to be detected being non-magnetic conductors HB CC 2F077
  • G01D5/20,110@H
  • of detectors HB CC 2F077
  • G01D5/20,110@Q
  • of processing units HB CC 2F077
  • G01D5/20,110@X
  • of other structures HB CC 2F077
  • G01D5/20,110@Z
  • others HB CC 2F077
  • G01D5/22
  • ....differentially influencing two coils HB CC 2F077
  • G01D5/22@C
  • using differential transformer HB CC 2F077
  • G01D5/22@A
  • .regarding the structure of conversion units HB CC 2F077
  • G01D5/22@B
  • .regarding processing units HB CC 2F077
  • G01D5/22@Z
  • Others HB CC 2F077
  • G01D5/24
  • ...by varying capacitance HB CC 2F077
  • G01D5/24@A
  • regarding the structure of conversion units HB CC 2F077
  • G01D5/24@S
  • .dielectric between detection electrodes, being under change HB CC 2F077
  • G01D5/24@D
  • regarding processing units HB CC 2F077
  • G01D5/24@Z
  • Others HB CC 2F077
  • G01D5/241
  • ....by relative movement of capacitor electrodes [6] HB CC 2F077
  • G01D5/241@A
  • of the structure of the conversion units HB CC 2F077
  • G01D5/241@B
  • .of varying opposed areas between detecting electrodes HB CC 2F077
  • G01D5/241@C
  • .of varying distances between detecting electrodes HB CC 2F077
  • G01D5/241@D
  • of processing units HB CC 2F077
  • G01D5/241@Z
  • others HB CC 2F077
  • G01D5/242
  • ...by varying output of an electrodynamic device, e.g. of a tachodynamo HB CC 2F077
  • G01D5/242@A
  • regarding the structure of conversion units HB CC 2F077
  • G01D5/242@B
  • regarding processing units HB CC 2F077
  • G01D5/242@Z
  • Others HB CC 2F077
  • G01D5/243
  • ..influencing the phase or frequency of ac HB CC 2F077
  • G01D5/243@A
  • regarding phase variation of AC signal HB CC 2F077
  • G01D5/243@B
  • .depending on the variation of inductance HB CC 2F077
  • G01D5/243@C
  • .by varying capacitance HB CC 2F077
  • G01D5/243@F
  • regarding on the frequency variation of AC signal HB CC 2F077
  • G01D5/243@G
  • .by varying inductance HB CC 2F077
  • G01D5/243@H
  • .by varying capacitance HB CC 2F077
  • G01D5/243@Z
  • Others HB CC 2F077
  • G01D5/244
  • ..influencing characteristics of pulses or pulse trains; generating pulses or pulse trains [6] HB CC 2F077
  • G01D5/244@A
  • regarding detection of reference position and starting point HB CC 2F077
  • G01D5/244@C
  • detecting the move direction HB CC 2F077
  • G01D5/244@B
  • regarding compensation, adjustment and anomaly detection HB CC 2F077
  • G01D5/244@D
  • .regarding compensation of temperature HB CC 2F077
  • G01D5/244@E
  • .regarding power supply, measures against power failure and redution of power consumption HB CC 2F077
  • G01D5/244@F
  • .regarding shaping of waveform and pulse HB CC 2F077
  • G01D5/244@G
  • .regarding improvement and switching of resolution HB CC 2F077
  • G01D5/244@H
  • ..regarding improvement of resolution HB CC 2F077
  • G01D5/244@J
  • .characterized by the process to detect phase HB CC 2F077
  • G01D5/244@K
  • .regarding anomaly detection HB CC 2F077
  • G01D5/244@L
  • regarding modulation HB CC 2F077
  • G01D5/244@Z
  • Others HB CC 2F077
  • G01D5/245
  • ...using a variable number of pulses in a train HB CC 2F077
  • G01D5/245@A
  • Related to detection methods of detection elements HB CC 2F077
  • G01D5/245@C
  • .utilizing the variation of electrostatic capacity HB CC 2F077
  • G01D5/245@P
  • .using of piezo electric elements HB CC 2F077
  • G01D5/245@T
  • .using contact switch HB CC 2F077
  • G01D5/245@B
  • .Use of magnetic change HB CC 2F077
  • G01D5/245@F
  • ..regarding magnetic circuit HB CC 2F077
  • G01D5/245@H
  • ..using Hall element HB CC 2F077
  • G01D5/245@L
  • ..using of coils HB CC 2F077
  • G01D5/245@E
  • ...using exciting coil and detecting coil HB CC 2F077
  • G01D5/245@M
  • ..utilizing the effect of magneto-resistance HB CC 2F077
  • G01D5/245@R
  • ...using magneto-resistance effect elements (MR elements) HB CC 2F077
  • G01D5/245@N
  • ....using giant magneto-resistance effect elements (GMR elements) HB CC 2F077
  • G01D5/245@S
  • ..using reed switch HB CC 2F077
  • G01D5/245@W
  • ..using bistable magnetic property elements HB CC 2F077
  • G01D5/245@Z
  • Others HB CC 2F077
  • G01D5/245,110
  • ....structure and details of encoders HB CC 2F077
  • G01D5/245,110@A
  • of the structures of detectors HB CC 2F077
  • G01D5/245,110@B
  • .of the arrays of sensors HB CC 2F077
  • G01D5/245,110@C
  • .of the casing structures of detectors HB CC 2F077
  • G01D5/245,110@J
  • of the structures of the objects to be detected HB CC 2F077
  • G01D5/245,110@K
  • .of the objects to be detected being non-magnetisation magnetic substance HB CC 2F077
  • G01D5/245,110@L
  • .of the objects to be detected being magnetisation materials, magnets HB CC 2F077
  • G01D5/245,110@M
  • ..of the objects to be detected being multipole HB CC 2F077
  • G01D5/245,110@P
  • .of the objects to be detected having coils HB CC 2F077
  • G01D5/245,110@Q
  • ..of the objects to be detected having a number of coils HB CC 2F077
  • G01D5/245,110@R
  • .of the objects to be detected being non-magnetisation conductors HB CC 2F077
  • G01D5/245,110@W
  • of other structures HB CC 2F077
  • G01D5/245,110@X
  • .of the casing structures of encoders HB CC 2F077
  • G01D5/245,110@Z
  • others HB CC 2F077
  • G01D5/246
  • ...by varying the duration of individual pulses HB CC 2F077
  • G01D5/247
  • ...using time shifts of pulses HB CC 2F077
  • G01D5/248
  • ...by varying pulse repetition frequency HB CC 2F077
  • G01D5/249
  • ...using pulse code HB CC 2F077
  • G01D5/249@T
  • regarding the structure of conversion units HB CC 2F077
  • G01D5/249@C
  • .using magnetic or inductive measures HB CC 2F077
  • G01D5/249@K
  • ..Bit pattern being arrayed in series HB CC 2F077
  • G01D5/249@B
  • .using capacitive or electrostatic measures HB CC 2F077
  • G01D5/249@P
  • .Incremental method being under combined use HB CC 2F077
  • G01D5/249@Q
  • regarding processing units HB CC 2F077
  • G01D5/249@S
  • regarding the conversion in which relative displacement between detection unit and non-detection unit is not used HB CC 2F077
  • G01D5/249@Z
  • Others HB CC 2F077
  • G01D5/25
  • ..Selecting one or more conductors or channels from a plurality of conductors or channels, e.g. by closing contacts HB CC 2F077
  • G01D5/251
  • ...one conductor or channel HB CC 2F077
  • G01D5/252
  • ...a combination of conductors or channels HB CC 2F077
  • G01D5/252@A
  • of pulse coding encoders HB CC 2F077
  • G01D5/252@B
  • .of arrays of bit pattern in series direction HB CC 2F077
  • G01D5/252@Z
  • others HB CC 2F077
  • G01D5/26
  • .using optical means, i.e. using infra-red, visible or ultra-violet light HB CC 2F103
  • G01D5/26@A
  • regarding the measures of direction HB CC 2F103
  • G01D5/26@C
  • regarding the structure of conversion units HB CC 2F103
  • G01D5/26@S
  • .of the structures of receivers and transmitters HB CC 2F103
  • G01D5/26@D
  • ..using light guide HB CC 2F103
  • G01D5/26@J
  • .using the change in optical characteristics induced by force, temperature and magnetic field [Utilization of the change in optical characteristics of optical fiber G01D5/353] HB CC 2F103
  • G01D5/26@F
  • ..utilizing diffraction and interference [G01D5/353, 5/38 take precedence] HB CC 2F103
  • G01D5/26@K
  • .using photographing measures HB CC 2F103
  • G01D5/26@G
  • regarding processing units HB CC 2F103
  • G01D5/26@L
  • .regarding compensation, adjustment and anomaly detection HB CC 2F103
  • G01D5/26@M
  • ..regarding compensation and adjustment of intensity of light HB CC 2F103
  • G01D5/26@N
  • ..regarding compensation of temperature HB CC 2F103
  • G01D5/26@Z
  • Others HB CC 2F103
  • G01D5/28
  • ..with deflection of beams of light, e.g. for direct optical indication (G01D 5/40 takes precedence) HB CC 2F103
  • G01D5/28@A
  • being directed by the polarization of optical beams HB CC 2F103
  • G01D5/28@D
  • .Characterised by reflectors HB CC 2F103
  • G01D5/28@Z
  • Others HB CC 2F103
  • G01D5/30
  • ...the beams of light being detected by photocells HB CC 2F103
  • G01D5/30@A
  • regarding the structure of conversion units HB CC 2F103
  • G01D5/30@Z
  • Others HB CC 2F103
  • G01D5/32
  • ..with attenuation or whole or partial obturation of beams of light (G01D 5/40 takes precedence) HB CC 2F103
  • G01D5/32@A
  • directing by the shielding of light HB CC 2F103
  • G01D5/32@Z
  • Others HB CC 2F103
  • G01D5/34
  • ...the beams of light being detected by photocells HB CC 2F103
  • G01D5/34@R
  • ragarding the structure of conversion units [G01D5/347-5/38 take precedence] HB CC 2F103
  • G01D5/34@Z
  • Others HB CC 2F103
  • G01D5/347
  • ....using displacement encoding scales [6] HB CC 2F103
  • G01D5/347@A
  • of analogous change HB CC 2F103
  • G01D5/347@B
  • of pulse code HB CC 2F103
  • G01D5/347@C
  • .of arrays of bit pattern in series direction HB CC 2F103
  • G01D5/347@D
  • of incremental HB CC 2F103
  • G01D5/347@E
  • .of combination with different encoding method HB CC 2F103
  • G01D5/347@Z
  • others HB CC 2F103
  • G01D5/347,110
  • .....structures and details of encoders HB CC 2F103
  • G01D5/347,110@A
  • of the structures of encoder board [5/38 takes precedence] HB CC 2F103
  • G01D5/347,110@B
  • .of the reference mark and origin HB CC 2F103
  • G01D5/347,110@C
  • .of the structures of reflecting areas HB CC 2F103
  • G01D5/347,110@D
  • .of detecting two-dimensional and three-dimensional displacement HB CC 2F103
  • G01D5/347,110@E
  • .using three gratings HB CC 2F103
  • G01D5/347,110@F
  • .of forming moire fringes HB CC 2F103
  • G01D5/347,110@L
  • of the processing units HB CC 2F103
  • G01D5/347,110@M
  • .of compensations, arrangements, and detection of abnormal conditions HB CC 2F103
  • G01D5/347,110@N
  • ..of compensations and arrangements of quantity of light HB CC 2F103
  • G01D5/347,110@P
  • ..of compensations of temperature HB CC 2F103
  • G01D5/347,110@Q
  • .using modulated light HB CC 2F103
  • G01D5/347,110@S
  • of the structures of receivers and transmitters HB CC 2F103
  • G01D5/347,110@T
  • .of arrays of a number of light receiving devices HB CC 2F103
  • G01D5/347,110@U
  • .of optical systems HB CC 2F103
  • G01D5/347,110@V
  • ..using light guides HB CC 2F103
  • G01D5/347,110@X
  • of other structures HB CC 2F103
  • G01D5/347,110@Z
  • others HB CC 2F103
  • G01D5/353
  • ....influencing the transmission properties of an optical fibre [6] HB CC 2F103
  • G01D5/353@A
  • using optical fibre HB CC 2F103
  • G01D5/353@B
  • .using scattering HB CC 2F103
  • G01D5/353@C
  • .by diffraction gratings HB CC 2F103
  • G01D5/353@Z
  • others HB CC 2F103
  • G01D5/36
  • ....Forming the light into pulses HB CC 2F103
  • G01D5/36@G
  • regarding processing units HB CC 2F103
  • G01D5/36@Q
  • .improving resolution HB CC 2F103
  • G01D5/36@W
  • .regarding compensation, adjustment and anomaly detection HB CC 2F103
  • G01D5/36@U
  • ..regarding compensation and adjustment of intensity of light HB CC 2F103
  • G01D5/36@Y
  • ..regarding compensation of temperature HB CC 2F103
  • G01D5/36@X
  • .regarding detection of reference position and starting point HB CC 2F103
  • G01D5/36@F
  • .detecting the move direction HB CC 2F103
  • G01D5/36@R
  • .using modulated light HB CC 2F103
  • G01D5/36@Z
  • Others HB CC 2F103
  • G01D5/38
  • .....by diffraction gratings HB CC 2F103
  • G01D5/38@A
  • regarding conversion units HB CC 2F103
  • G01D5/38@G
  • .of diffraction gratings HB CC 2F103
  • G01D5/38@B
  • regarding processing units HB CC 2F103
  • G01D5/38@Z
  • Others HB CC 2F103
  • G01D5/39
  • ..Scanning a visible indication of the measured value and reproducing this indication at a remote place, e.g. on the screen of a cathode-ray tube HB CC 2F077
  • G01D5/40
  • ..specially adapted for use with infra-red light HB CC 2F077
  • G01D5/42
  • .using fluid means HB CC 2F077
  • G01D5/42@D
  • regarding electro-pneumatic and pneumatic-electro conversions HB CC 2F077
  • G01D5/42@Z
  • Others HB CC 2F077
  • G01D5/44
  • ..using jets of fluid HB CC 2F077
  • G01D5/46
  • ...by deflecting or throttling the flow HB CC 2F077
  • G01D5/48
  • .using wave or particle radiation means (G01D 5/26 takes precedence) HB CC 2F077
  • G01D5/48@B
  • using oscillatory wave HB CC 2F077
  • G01D5/48@A
  • .using magnetostrictive vibration HB CC 2F077
  • G01D5/48@Z
  • Other means HB CC 2F077
  • G01D5/50
  • ..derived from a radioactive source HB CC 2F077
  • G01D5/52
  • ...detected by a counter tube HB CC 2F077
  • G01D5/54
  • .using means specified in two or more of groups ; G01D 5/02, G01D 5/12, G01D 5/26, G01D 5/42, and G01D 5/48 HB CC 2F077
  • G01D5/56
  • ..using electric or magnetic means HB CC 2F077
  • G01D5/58
  • ..using optical means, i.e. using infra-red, visible or ultra-violet light HB CC 2F077
  • G01D5/60
  • ..using fluid means HB CC 2F077
  • G01D5/62
  • ..using wave or particle radiation means not covered by group G01D 5/58 HB CC 2F077
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