IP Library Granted Patent US 8,188,608
Granted Patent B2
US 8,188,608 · App. 12/522,346 · Granted May 29, 2012

Ejector device

Assignee: Xerex AB
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Quick Facts
Patent No.
US 8,188,608
App. No.
12/522,346
Granted
May 29, 2012
Kind
B2
Abstract

An ejector device effective to generate a negative pressure by element of compressed air fed to an ejector of the device via a compressed-air duct includes an air suction duct, a pressure sensor and an electrically activatable valve member arranged in the compressed-air duct for regulating the flow of compressed air to the ejector, as well as electrically supplied control electronics ( 6 ) adapted to actuate the valve member in response to the pressure in the air suction duct detected by the sensor. The device includes an accumulator by which the control electronics are supplied with electricity, and a generator, which via a charging air duct ( 9 ), is in flow communication with the compressed-air duct and is driven by compressed air for generating electrical energy, which is brought into the accumulator for charging the same.

Claims (12)

1. Ejector device effective to generate a negative pressure by means of compressed air that is fed to an ejector ( 1 ) included in the device via a compressed-air duct ( 2 ), furthermore comprising an air suction duct ( 3 ), a pressure sensor ( 18 ) arranged in the air suction duct as well as an electrically activatable valve member ( 5 ) arranged in the compressed-air duct and effective for the regulation of the flow of compressed air to the ejector, as well as electrically supplied control electronics ( 6 ) which at least is adapted to actuate the valve member in response to the pressure in the air suction duct detected by the sensor, furthermore comprising an energy-storing member ( 7 ) in the form of an accumulator by which the control electronics is supplied with electricity, characterized in that, in addition to the compressed-air duct ( 2 ) and the air suction duct ( 3 ), the device also comprises a charging air duct ( 9 ), which in a first end connects to the compressed-air duct and with another end opens at a generator ( 8 ) that, via the charging air duct ( 9 ), is in flow communication with the compressed-air duct ( 2 ) and is driven by compressed air for the generation of electrical energy, which is brought into the accumulator ( 7 ) for charging the same,

and in that the first end of the charging air duct ( 9 ) connects to the compressed-air duct ( 2 ) downstream of the valve member ( 5 ), and in that the generator is driven in synchronization with a work cycle of the ejector for generating negative pressure.

2. Ejector device according to claim 1 , characterized in that the generator comprises a stator ( 21 ′) and a linearly movable body ( 23 ), the movable body being biased by a spring member ( 24 ) and alternatingly actuated by the spring member and by compressed air in order to be brought into a reciprocating motion in relation to the stator.

3. Ejector device according to claim 1 , characterized in that the generator ( 8 ) comprises a stator ( 21 ) and a rotor ( 20 ; 20 ′), which are adapted to be driven in relative rotation by means of an impeller or turbine wheel ( 22 ; 22 ′) actuated by compressed air.

4. Ejector device according to claim 3 , characterized by a ring-shaped rotor ( 20 ′) rotatably supported in relation to a stator ( 21 ) and arranged externally of the stator, which rotor, in a through central duct, has vanes, blades or the corresponding formations ( 22 ′) that by a through flow of compressed air brings the rotor into rotation in relation to the stator.

5. Ejector device according to claim 1 , characterized in that the accumulator ( 7 ) consists of a lithium-ion accumulator.

6. Ejector device according to claim 1 comprising a housing ( 10 ) supporting the ejector, which housing has a compressed-air duct ( 2 ) that on the outside of the housing has an accessible connection for an external source of compressed air and an air suction duct ( 3 ) that on the outside of the housing has an accessible connection for a gripping member, characterized by a charging air duct ( 9 ) formed in the housing and that connects the compressed-air duct ( 2 ) with a generator ( 8 ) supported by the housing.

7. Ejector device according to claim 2 , characterized in that the generator ( 8 ) comprises a stator ( 21 ) and a rotor ( 20 ; 20 ′), which are adapted to be driven in relative rotation by means of an impeller or turbine wheel ( 22 ; 22 ′) actuated by compressed air.

8. Ejector device according to claim 7 , characterized by a ring-shaped rotor ( 20 ′) rotatably supported in relation to a stator ( 21 ) and arranged externally of the stator, which rotor, in a through central duct, has vanes, blades or the corresponding formations ( 22 ′) that by a through flow of compressed air brings the rotor into rotation in relation to the stator.

9. Ejector device according to claim 2 , characterized in that the first end of the charging air duct ( 9 ) connects to the compressed-air duct ( 2 ) downstream the valve member ( 5 ), and in that the generator is driven in synchronization with work cycle of the ejector for generating negative pressure.

10. Ejector device according to claim 2 , characterized in that the accumulator ( 7 ) consists of a lithium-ion accumulator.

11. Ejector device according to claim 2 comprising a housing ( 10 ) supporting the ejector, which housing has a compressed-air duct ( 2 ) that on the outside of the housing has an accessible connection for an external source of compressed air and an air suction duct ( 3 ) that on the outside of the housing has an accessible connection for a gripping member, characterized by a charging air duct ( 9 ) formed in the housing and that connects the compressed-air duct ( 2 ) with a generator ( 8 ) supported by the housing.

Assignments (2)
MERGER Recorded Feb 21, 2019
From: XEREX AB
To: PIAB AKTIEBOLAG
Reel/Frame 048391/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2009
From: TELL, PETER
To: XEREX AB
Reel/Frame 022932/0233 →
Priority Claims (1)
SE 0700034 · Jan 10, 2007 · national
Continuity (1)
Related Publication 20090295170A1 · Dec 3, 2009