FI (list display)

  • F15B11/00
  • system of air-liquid pressure combination [6] HB CC 3H089
  • F15B11/00@A
  • Energy saving circuits HB CC 3H089
  • F15B11/00@E
  • .Circuits controlling pump drive means HB CC 3H089
  • F15B11/00@F
  • ..Pumps of the variable discharge volume type HB CC 3H089
  • F15B11/00@G
  • ..Characterized by the way that pumps are stopped HB CC 3H089
  • F15B11/00@H
  • .Unload circuits HB CC 3H089
  • F15B11/00@B
  • .Using variable discharge volume pumps (F15B11/00F takes precedence) HB CC 3H089
  • F15B11/00@L
  • ..Capacity being kept constantly HB CC 3H089
  • F15B11/00@M
  • ...Characterised by the way to be applied to multiple actuators HB CC 3H089
  • F15B11/00@N
  • ...Characterised by having multiple pumps, e.g. pilot pumps HB CC 3H089
  • F15B11/00@P
  • ..Controlling pumps interlocking with directional control valves HB CC 3H089
  • F15B11/00@Q
  • ...Directional control valves being the center bypass type HB CC 3H089
  • F15B11/00@C
  • Buffer circuits HB CC 3H089
  • F15B11/00@R
  • .Using brake valves HB CC 3H089
  • F15B11/00@S
  • ..with counter balance valves HB CC 3H089
  • F15B11/00@T
  • .Buffering at the time of starting and stopping (F15B11/00R and F15B11/00S take precedence) HB CC 3H089
  • F15B11/00@U
  • .Buffering at the time of starting (F15B11/00R to F15B11/00T take precedence) HB CC 3H089
  • F15B11/00@V
  • .Buffering at the time of stopping (F15B11/00R to F15B11/00T take precedence) HB CC 3H089
  • F15B11/00@W
  • .Buffering at the time of controlling directions HB CC 3H089
  • F15B11/00@X
  • .Decompressing HB CC 3H089
  • F15B11/00@Y
  • .Characterized by being applied to single-acting cylinders HB CC 3H089
  • F15B11/00@D
  • Unitization of fluid pressure circuits (F15B11/00A to F15B11/00C and F15B11/00E to F15B11/00Y take precedence) HB CC 3H089
  • F15B11/00@Z
  • Others HB CC 3H089
  • F15B11/02
  • .Systems essentially incorporating special features for controlling the actuating force or speed of an output member HB CC 3H089
  • F15B11/02@A
  • Mainly by pumps HB CC 3H089
  • F15B11/02@B
  • .by multiple pumps HB CC 3H089
  • F15B11/02@M
  • ..Pump discharge fluids being merged by way of directional control valves HB CC 3H089
  • F15B11/02@N
  • ..Serial connection of pumps HB CC 3H089
  • F15B11/02@C
  • .by variable discharge volume pumps (F15B11/02B, F15B11/02M and F15B11/02N take precedence) HB CC 3H089
  • F15B11/02@D
  • Mainly by motors HB CC 3H089
  • F15B11/02@E
  • .by variable discharge volume motors HB CC 3H089
  • F15B11/02@F
  • Mainly by fluid pressure circuits between pumps and actuators HB CC 3H089
  • F15B11/02@J
  • .Balance circuits HB CC 3H089
  • F15B11/02@R
  • ..Circuits with double counter balance valves HB CC 3H089
  • F15B11/02@V
  • .Accumulating circuits HB CC 3H089
  • F15B11/02@W
  • .Circuits for preventing cavitation HB CC 3H089
  • F15B11/02@Z
  • Others HB CC 3H089
  • F15B11/024
  • ..by means of differential connection of the servomotor lines, e.g. regenerative circuits [6] HB CC 3H089
  • F15B11/024@A
  • Differential circuits HB CC 3H089
  • F15B11/024@B
  • .Circuits which can cancel differential conditions HB CC 3H089
  • F15B11/024@C
  • ..Circuits which can automatically cancel differential conditions HB CC 3H089
  • F15B11/024@Z
  • Others HB CC 3H089
  • F15B11/028
  • ..for controlling the actuating force(F15B11/024 takes precedence) [6] HB CC 3H089
  • F15B11/028@A
  • Pressure regulating circuits HB CC 3H089
  • F15B11/028@B
  • .Circuits for changing pressures in accordance with actuators to be used HB CC 3H089
  • F15B11/028@C
  • .Circuits for changing pressures smoothly HB CC 3H089
  • F15B11/028@D
  • Decompression circuits HB CC 3H089
  • F15B11/028@E
  • Pressure intensifying circuits HB CC 3H089
  • F15B11/028@F
  • .circuit characterized by structure or combination of cylinder HB CC 3H089
  • F15B11/028@G
  • Circuits for detecting pressure and giving feedback HB CC 3H089
  • F15B11/028@H
  • Circuits for controlling pressure digitally HB CC 3H089
  • F15B11/028@Z
  • Others HB CC 3H089
  • F15B11/032
  • ...by means of fluid-pressure converters [2006.01] HB CC 3H089
  • F15B11/036
  • ...by means of servomotors having a plurality of working chambers [2006.01] HB CC 3H089
  • F15B11/04
  • ..for controlling the speed (F15B11/024 takes precedence) [6] HB CC 3H089
  • F15B11/04@A
  • Detecting speed and giving feedback HB CC 3H089
  • F15B11/04@B
  • Controlling speed mainly using pumps HB CC 3H089
  • F15B11/04@C
  • Controlling On/Off valves using pulse width modulation HB CC 3H089
  • F15B11/04@D
  • Controlling flow rate digitally HB CC 3H089
  • F15B11/04@E
  • Especially for the purpose of acceleration and deceleration HB CC 3H089
  • F15B11/04@F
  • .Deceleration by using deceleration valves HB CC 3H089
  • F15B11/04@G
  • Controlling the speed interlocking with switchover of actuators in the operational direction HB CC 3H089
  • F15B11/04@H
  • Preventing excessive speed HB CC 3H089
  • F15B11/04@J
  • Controlling the speed of single acting cylinders HB CC 3H089
  • F15B11/04@Z
  • Others HB CC 3H089
  • F15B11/042
  • ...by regulating means in feed line(F15B11/046, F15B11/05 take precedence) [6] HB CC 3H089
  • F15B11/044
  • ...by regulating means in return line(F15B11/046, F15B11/05 take precedence) [6] HB CC 3H089
  • F15B11/046
  • ...depending on the position of the working member [6] HB CC 3H089
  • F15B11/048
  • ....with deceleration control [6] HB CC 3H089
  • F15B11/05
  • ...specially adapted to maintain constant speed, e.g. pressure-compensated, load-responsive HB CC 3H089
  • F15B11/05@A
  • Placing the pressure compensation valve in the passage between the pump and the directional control valve HB CC 3H089
  • F15B11/05@B
  • .Pumps unloadable by using the pressure compensation valve HB CC 3H089
  • F15B11/05@Z
  • Others HB CC 3H089
  • F15B11/06
  • .involving features specific to the use of a compressible medium, e.g. air, steam HB CC 3H089
  • F15B11/06@A
  • Circuits using only compressed air as a working fluid HB CC 3H089
  • F15B11/06@B
  • .Circuits for controlling the force, pressure or speed HB CC 3H089
  • F15B11/06@C
  • ..Circuits for controlling mainly the force and pressure (F15B11/06G takes precedence) HB CC 3H089
  • F15B11/06@D
  • ..Circuits for controlling mainly the speed (F15B11/06G takes precedence) HB CC 3H089
  • F15B11/06@E
  • ...Circuits for smooth starting HB CC 3H089
  • F15B11/06@F
  • ...Circuits for smooth stopping HB CC 3H089
  • F15B11/06@G
  • ..Circuits for quick exhaust or for preventing back pressure HB CC 3H089
  • F15B11/06@H
  • .Circuits for positioning or keeping the stop position HB CC 3H089
  • F15B11/06@J
  • .Circuits for removing the residual pressure HB CC 3H089
  • F15B11/06@L
  • .Circuits for performing noise reduction, lubrication, drainage, dehumidification or dedusting HB CC 3H089
  • F15B11/06@M
  • .Circuits with safety means HB CC 3H089
  • F15B11/06@R
  • Circuits using the negative pressure HB CC 3H089
  • F15B11/06@Z
  • Others HB CC 3H089
  • F15B11/064
  • ..with devices for saving the compressible medium [6] HB CC 3H089
  • F15B11/068
  • ..with valves for gradually putting pneumatic systems under pressure [6] HB CC 3H089
  • F15B11/072
  • ..Combined pneumatic-hydraulic systems [6] HB CC 3H089
  • F15B11/076
  • ...with pneumatic drive or displacement and speed control or stopping by hydraulic braking [6] HB CC 3H089
  • F15B11/08
  • .with only one servomotor HB CC 3H089
  • F15B11/08@A
  • Valve pilot operations HB CC 3H089
  • F15B11/08@B
  • Locking brakes HB CC 3H089
  • F15B11/08@C
  • Volume control HB CC 3H089
  • F15B11/08@Z
  • Others HB CC 3H089
  • F15B11/10
  • ..in which the servomotor position is a function of the pressure HB CC 3H089
  • F15B11/12
  • ..providing distinct intermediate positions; with step-by-step action HB CC 3H089
  • F15B11/13
  • ...using chambers of predetermined volume [6] HB CC 3H089
  • F15B11/15
  • ..with special provision for automatic return HB CC 3H089
  • F15B11/16
  • .with two or more servomotors HB CC 3H089
  • F15B11/16@B
  • Flow dividing circuits HB CC 3H089
  • F15B11/16@Z
  • Others HB CC 3H089
  • F15B11/17
  • ..using two or more pumps [6] HB CC 3H089
  • F15B11/18
  • ..used in combination for obtaining stepwise operation of a single controlled member HB CC 3H089
  • F15B11/20
  • ..controlling several interacting or sequentially-operating members [2006.01] HB CC 3H089
  • F15B11/20@A
  • Sequence control HB CC 3H089
  • F15B11/20@B
  • .Pressure detection HB CC 3H089
  • F15B11/20@C
  • ..by sequence valves HB CC 3H089
  • F15B11/20@D
  • ..by pressure switches HB CC 3H089
  • F15B11/20@E
  • .Position detection HB CC 3H089
  • F15B11/20@F
  • ..by cam operations or detection cylinders HB CC 3H089
  • F15B11/20@G
  • .Flow rate detection HB CC 3H089
  • F15B11/20@H
  • .Time setting, e.g. program control HB CC 3H089
  • F15B11/20@Z
  • Others HB CC 3H089
  • F15B11/22
  • ..Synchronisation of the movement of two or more servomotors HB CC 3H089
  • F15B11/22@A
  • Open volume control HB CC 3H089
  • F15B11/22@B
  • .Volume method HB CC 3H089
  • F15B11/22@C
  • ..Parallel type HB CC 3H089
  • F15B11/22@D
  • ...Using auxiliary cylinders HB CC 3H089
  • F15B11/22@E
  • ...Using oil motors HB CC 3H089
  • F15B11/22@F
  • ..Serial type HB CC 3H089
  • F15B11/22@G
  • .Discharge method HB CC 3H089
  • F15B11/22@H
  • ..Flow separating/integrating type HB CC 3H089
  • F15B11/22@J
  • ..Parallel type HB CC 3H089
  • F15B11/22@K
  • .Machine connection method HB CC 3H089
  • F15B11/22@L
  • Feedback synchronous control HB CC 3H089
  • F15B11/22@M
  • .Pump control method HB CC 3H089
  • F15B11/22@N
  • .Valve control method HB CC 3H089
  • F15B11/22@P
  • ..Servo valve parallel type HB CC 3H089
  • F15B11/22@Q
  • ..Servo valve following type HB CC 3H089
  • F15B11/22@R
  • ..Servo valve tuning type HB CC 3H089
  • F15B11/22@Z
  • Others HB CC 3H089
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