IP Library › Granted Patent US 9,568,095
Granted Patent B2
US 9,568,095 · App. 15/031,789 · Granted Feb 14, 2017

Controlling a hydraulic pressure of a fluid transmission

Inventors: Markus Eglinger (Diespeck, DE); Steffen Fueller (Nuremberg, DE); Fei Song (Nuremberg, DE)
Assignee: Conti Temic Microelectronic GmbH
F16H61/0251F16H61/0021F16H61/2807G05D16/2013F16H61/48F16H2059/683F16H2061/0078F16H2061/0255F16H2061/2853
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Quick Facts
Patent No.
US 9,568,095
App. No.
15/031,789
Granted
Feb 14, 2017
Kind
B2
Abstract

A control device for controlling a hydraulic pressure of a fluid transmission includes a pressure sensor for detecting actual pressure values of the hydraulic pressure, an electronic control unit for generating a control signal as a function of the actual pressure values detected by the pressure sensor and a reference pressure signal delivered to the control unit, a power switch controlled by the control signal and a solenoid valve actuated by the power switch for generating the hydraulic pressure. The control device is configured as a compact electromagnetic unit. The electronic control unit is respectively connected to the pressure sensor and to the power switch by a direct electrical connection. A method for controlling a hydraulic pressure of a fluid transmission is also provided.

Claims (44)

1. A control device for controlling a hydraulic pressure of a fluid transmission, the control device comprising:

a pressure sensor for detecting actual pressure values of the hydraulic pressure;

an electronic sensor circuit associated with said pressure sensor for controlling said pressure sensor and processing a pressure signal;

an electronic control unit having a direct electrical connection to said pressure sensor for generating a control signal as a function of the actual pressure values detected by said pressure sensor and of a reference pressure signal being fed to said control unit;

a power switch having a direct electrical connection to said electronic control unit and being controlled by said control signal;

a circuit board on which said electronic sensor circuit, said electronic control unit and said power switch are disposed; and

a solenoid valve being actuated by said power switch for generating the hydraulic pressure;

said pressure sensor, said electronic sensor circuit, said electronic control unit, said power switch and said solenoid valve being embodied as a compact electromagnetic unit with electrical connections for an electrical power supply and signal communication and hydraulic connections to the fluid transmission.

2. A control device for controlling a hydraulic pressure of a fluid transmission, the control device comprising:

a pressure sensor for detecting actual pressure values of the hydraulic pressure;

an electronic sensor circuit associated with said pressure sensor for controlling said pressure sensor and processing a pressure signal;

an electronic control unit having a direct electrical connection to said pressure sensor for generating a control signal as a function of the actual pressure values detected by said pressure sensor and of a reference pressure signal being fed to said control unit;

a power switch having a direct electrical connection to said electronic control unit and being controlled by said control signal; and

a solenoid valve being actuated by said power switch for generating the hydraulic pressure, said solenoid valve having a valve housing into which said pressure sensor, said electronic sensor circuit, said electronic control unit and said power switch are integrated;

said pressure sensor, said electronic sensor circuit, said electronic control unit, said power switch and said solenoid valve being embodied as a compact electromagnetic unit with electrical connections for an electrical power supply and signal communication and hydraulic connections to the fluid transmission.

3. A control device for controlling a hydraulic pressure of a fluid transmission, the control device comprising:

a pressure sensor for detecting actual pressure values of the hydraulic pressure;

an electronic sensor circuit associated with said pressure sensor for controlling said pressure sensor and processing a pressure signal;

an electronic control unit having a direct electrical connection to said pressure sensor for generating a control signal as a function of the actual pressure values detected by said pressure sensor and of a reference pressure signal being fed to said control unit;

a power switch having a direct electrical connection to said electronic control unit and being controlled by said control signal; and

a solenoid valve being actuated by said power switch for generating the hydraulic pressure, said solenoid valve being a quick-acting valve or a proportional valve;

said pressure sensor, said electronic sensor circuit, said electronic control unit, said power switch and said solenoid valve being embodied as a compact electromagnetic unit with electrical connections for an electrical power supply and signal communication and hydraulic connections to the fluid transmission.

4. A method for controlling a hydraulic pressure of a fluid transmission, the method comprising the following steps:

providing a control device including a pressure sensor for detecting actual pressure values of the hydraulic pressure, an electronic sensor circuit associated with the pressure sensor for controlling the pressure sensor and processing a pressure signal, an electronic control unit having a direct electrical connection to the pressure sensor for generating a control signal as a function of the actual pressure values detected by the pressure sensor and of a reference pressure signal being fed to the control unit, a power switch having a direct electrical connection to the electronic control unit and being controlled by the control signal, and a solenoid valve being actuated by the power switch for generating the hydraulic pressure, the pressure sensor, the electronic sensor circuit, the electronic control unit, the power switch and the solenoid valve being embodied as a compact electromagnetic unit with electrical connections for an electrical power supply and signal communication and hydraulic connections to the fluid transmission;

predefining a maximum pressure deviation;

feeding a setpoint pressure value to the control device by using the reference pressure signal;

using the electronic control unit to generate a first actuation signal as a function of the setpoint pressure value and to feed the first actuation signal to the power switch;

using the power switch for actuating the solenoid valve to generate a hydraulic pressure as a function of the first control signal;

implementing a control loop in which an actual pressure value of the hydraulic pressure is detected by the pressure sensor and fed to the electronic control unit, a control difference between the setpoint pressure value and the actual pressure value is determined by the electronic control unit and is compared with the predefined maximum pressure deviation, and in the event of the maximum pressure deviation being exceeded by the control difference the electronic control unit generating a second control signal to reduce a control difference and feed the control difference to the power switch, and using the power switch to actuate the solenoid valve to generate a hydraulic pressure as a function of the second control signal; and

repeating the control loop upon the maximum pressure deviation being exceeded by the control difference and otherwise aborting the control loop.

5. The method according to claim 4 , which further comprises predefining a pause time period, starting a time measurement after each abort of the control loop, and implementing the control loop again if a time period having passed after the aborting of the control loop reaches the pause time period or if a changed setpoint pressure value is fed to the control device by the reference pressure signal.

6. The method according to claim 4 , which further comprises using the control unit to generate a pulse width modulation signal as a control signal, and using the power switch to control the solenoid valve by the generated pulse width modulation signal.

7. The method according to claim 4 , which further comprises carrying out the method for controlling a hydraulic pressure in an automatic transmission of a vehicle drive.

8. An automatic transmission of a vehicle drive, the automatic transmission comprising:

a control device for controlling a hydraulic pressure of the automatic transmission, said control device including:

a pressure sensor for detecting actual pressure values of the hydraulic pressure;

an electronic sensor circuit associated with said pressure sensor for controlling said pressure sensor and processing a pressure signal;

an electronic control unit having a direct electrical connection to said pressure sensor for generating a control signal as a function of the actual pressure values detected by said pressure sensor and of a reference pressure signal being fed to said control unit;

a power switch having a direct electrical connection to said electronic control unit and being controlled by said control signal; and

a solenoid valve being actuated by said power switch for generating the hydraulic pressure;

said pressure sensor, said electronic sensor circuit, said electronic control unit, said power switch and said solenoid valve being embodied as a compact electromagnetic unit with electrical connections for an electrical power supply and signal communication and hydraulic connections to the fluid transmission.

9. The automatic transmission according to claim 8 , which further comprises a transmission control unit feeing the reference pressure signal to the control device.

10. The automatic transmission according to claim 9 , which further comprises a bus system over which the reference pressure signal is fed to the control device by said transmission control unit.

11. The automatic transmission according to claim 8 , which further comprises a clutch, and an actuating valve controlling said clutch, the hydraulic pressure generated by said solenoid valve being used to actuate said actuating valve.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE SPELLING OF THE ASSIGNEE NAME FROM VITESCO TEHNOLOGIES GERMANY GMBH TO VITESCO TECHNOLOGIES GERMANY GMBH PREVIOUSLY RECORDED ON REEL 053100 FRAME 0385. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNOR'S INTEREST. Recorded Sep 23, 2020
From: CONTI TEMIC MICROELECTRONIC GMBH
To: VITESCO TECHNOLOGIES GERMANY GMBH
Reel/Frame 053859/0329 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT THE SPELLING OF THE ASSIGNEE FROM VITESCO TEHNOLOGIES GERMANY GMBH TO VITESCO TECHNOLOGIES GERMANY GMBH PREVIOUSLY RECORDED ON REEL 053100 FRAME 0385. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNORS INTEREST. Recorded Aug 14, 2020
From: CONTI TEMIC MICROELECTRONIC GMBH
To: VITESCO TECHNOLOGIES GERMANY GMBH
Reel/Frame 054523/0456 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2020
From: CONTI TEMIC MICROELECTRONIC GMBH
To: VITESCO TEHNOLOGIES GERMANY GMBH
Reel/Frame 053100/0385 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2016
From: EGLINGER, MARKUS; FUELLER, STEFFEN; SONG, FEI
To: CONTI TEMIC MICROELECTRONIC GMBH
Reel/Frame 039287/0144 →
Priority Claims (1)
DE 10 2013 221 453 · Oct 23, 2013 · national
Continuity (1)
Related Publication 20160245398A1 · Aug 25, 2016