Claims
- 1. A valve apparatus for controlling fluid flow, comprising:
- (a) a valve, including a substantially cylindrical valve casing having an inlet port and an outlet port for fluid and a shut-off piston slidable within said valve casing;
- (b) a cylindrical elongated armature capsule arranged in coaxial and in fluid-tight relation with said valve casing;
- (c) an electromagnetic drive element having an annular magnet coil surrounding said armature capsule in coaxial relation thereto;
- (d) an armature coaxially located on said magnet coils and axially slidable wig said armature capsule;
- (e) a controller element having an annular sensing coil coaxially arranged on said armature capsule adjacent said magnet coil, and an armature insert coaxially located in said sensing coil and being axially displaceable within said capsule relative to said sensing coil, to generate a signal therein dependent on the relative axial position of said armature insert;
- (f) a tappet slideably supported in said armature capsule and extending into said valve casing for cooperation with said shut-off piston, said magnet armature, said armature insert and said tappet being rigidly interconnected with each other, to slideably drive said shut-off piston via said drive element and to correspondingly displace said armature insert,
- whereby a signal for the position of said slidable shut-off piston is obtained by said controller element via a coaxial displacement of said armature insert with respect to the shut-off piston.
- 2. A valve apparatus according to claim 1, wherein said controller element is positioned on a side of said electromagnetic drive element opposite said valve.
- 3. A valve apparatus according to claim 1, wherein said shut-off piston includes:
- (a) a main shut-off device for controlling fluid flow from said inlet to said outlet;
- (b) and a pilot valve for said main shut-off device having a fluid passage and a shut-off element axially movable within said main shut-off device to control said fluid passage, and wherein said tappet being arranged to cooperate with said shut-off piston and with said pilot valve shut-off element to thereby obtain via said sensing coil of said controller element a signal indicative of both the positions of said main shut-off device and of said pilot valve shut-off element.
- 4. A valve apparatus according to claim 3, wherein said pilot valve includes a seat for receiving said shut-off element and spring means for maintaining said shut-off element in cooperation with said tappet when removed from said seat.
- 5. A valve apparatus according to claim 1, and including a casing for enclosing both said magnet coil and said sensing coil.
Priority Claims (1)
Number |
Date |
Country |
Kind |
01961/94 |
Jun 1994 |
CHX |
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Parent Case Info
This application is a 1.62 file-wrapper continuation application of U.S. Ser. No. 08/346,691 filed Nov. 30, 1994 now abandoned.
US Referenced Citations (11)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0006416 |
Jan 1979 |
EPX |
0156962 |
Nov 1984 |
EPX |
Non-Patent Literature Citations (3)
Entry |
Thermostatische Expansionsventile; Acal Auriema. |
"Evaporator Pressure Regulating Valves" Apr. 1995/Bulletin 90-20-1; pp. 1 and 2. |
"Danfoss pilotgesteuerte modulierende Regler Qualitat . Flexibilitat Zuverlassigkeit"; PM Pilotgesteuerte Hauptventile; Refrigeration Controls. |
Continuations (1)
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Number |
Date |
Country |
Parent |
346691 |
Nov 1994 |
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