IP Library Granted Patent US 9,777,685
Granted Patent B2
US 9,777,685 · App. 14/653,375 · Granted Oct 3, 2017

Electromagnetic actuator assembly for a fluid injection valve and method for operating a fluid injection valve

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Quick Facts
Patent No.
US 9,777,685
App. No.
14/653,375
Granted
Oct 3, 2017
Kind
B2
Abstract

An electromagnetic actuator assembly for a fluid injection valve includes a first coil and a second coil, which are configured for moving an armature, and an electrical connection circuit for connecting the first and second coils to a power supply. The electrical connection circuit is configured to energize the first coil without energizing the second coil in a first operating mode of the actuator assembly and to energize both the first coil and the second coil in a second operating mode of the actuator assembly.

Claims (40)

1. An electromagnetic actuator assembly for a fluid injection valve comprising:

a first coil and a second coil concentrically mounted in a housing and configured to move an armature,

an electrical connection circuit configured to connect the first and second coils to a power supply, and

a first external electrical connection and a second external electrical connection configured to connect the electrical connection circuit to the power supply,

wherein the actuator assembly is switchable between:

a first operating mode in which a direct current flows from the first to the second external electrical connection, and

a second operating mode in which a direct current flows from the second to the first external electrical connection, and

wherein the electrical connection circuit is configured to:

energize the first coil without energizing the second coil in the first operating mode of the actuator assembly, and

energize both the first coil and the second coil in the second operating mode of the actuator assembly.

2. The electromagnetic actuator assembly of claim 1 , wherein the electrical connection circuit comprises a switching component configured to reduce a current flow through the second coil or for short-circuiting the second coil when the actuator assembly is in the first operating mode.

3. The electromagnetic actuator assembly of claim 2 , wherein the switching component comprises a diode.

4. The electromagnetic actuator assembly of claim 2 , wherein either:

the first coil and the second coil are electrically connected in series by the electrical connection circuit, and the switching component is electrically connected in parallel to the second coil, or

the second coil and the switching component are electrically connected in series and, together, are electrically connected in parallel to the first coil.

5. A method for operating a fluid injection valve including a valve needles closing an injection nozzle in a closing position, an armature mechanically coupled to the valve needle, an electromagnetic actuator assembly having a first coil and a second coil configured to move the armature and thereby move the valve needle away from the closing position for dispensing a fluid, and an electrical connection circuit connecting the first and second coils to a power supply, and a first external electrical connection and a second external electrical connection connecting the electrical connection circuit to the power supply, wherein the electrical connection circuit energizes the first coil without energizing the second coil when a direct current flows from the first external connection to the second external connection and energizes both the first coil and the second coil when a direct current flows from the second external electrical connection to the first external electrical connection, the method comprising:

determining a property of a fluid to be dispensed by the fluid injection valve,

comparing the determined fluid property with a predetermined threshold,

based on the results of the comparison, switching an operation of the fluid injection valve between a first operating mode and a second operating mode to generate a magnetic force on the armature and thereby move the valve to dispense the fluid from the fluid injection valve, wherein switching the operating mode comprises:

when the determined fluid property is smaller than the predetermined threshold according to the comparison, operating the fluid injection valve in the first operating mode by feeding the operating current to the electrical connection circuit via the first and second external electrical connections such that the operating current flows from the first to the second external electrical connection to generate the magnetic force on the armature solely using the first coil, and

when the determined fluid property is larger than the predetermined threshold according to the comparison, operating the fluid injection valve in the second operating mode by feeding the operating current to the electrical connection circuit via the first and second external electrical connections such that the operating current flows from the second to the first external electrical connection to generate the magnetic force on the armature using both the first coil and the second coil.

6. The method of claim 5 , wherein the determined fluid property is a fluid quantity to be dispensed by the fluid injection valve or a fluid pressure.

7. A fluid injection valve, comprising:

an armature;

a valve needle mechanically coupled to the armature; and

an electromagnetic actuator assembly comprising:

a first coil and a second coil concentrically mounted in a housing and configured to move the armature to thereby move the valve needle,

an electrical connection circuit configured to connects the first and second coils to a power supply, and

a first external electrical connection and a second external electrical connection that are configured to connect the electrical connection circuit to the power supply,

wherein the actuator assembly is switchable between:

a first operating mode in which a direct current flows from the first to the second external electrical connection, and

a second operating mode in which a direct current flows from the second to the first external electrical connection, and

wherein the electrical connection circuit is configured to:

energize the first coil without energizing the second coil in the first operating mode of the actuator assembly, and

energize both the first coil and the second coil in the second operating mode of the actuator assembly.

8. The fluid injection valve of claim 7 , wherein the electrical connection circuit of the electromagnetic actuator assembly comprises a switching component configured to reduce a current flow through the second coil or for short-circuiting the second coil when the actuator assembly is in the first operating mode.

9. The fluid injection valve of claim 8 , wherein the switching component comprises a diode.

10. The fluid injection valve of claim 8 , wherein either:

the first coil and the second coil are electrically connected in series by the electrical connection circuit, and the switching component is electrically connected in parallel to the second coil, or

the second coil and the switching component are electrically connected in series and, together, are electrically connected in parallel to the first coil.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2020
From: CONTINENTAL AUTOMOTIVE GMBH
To: VITESCO TECHNOLOGIES GMBH
Reel/Frame 053283/0056 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2015
From: MARAGLIULO, MARCO
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 035901/0963 →