Claims
- 1. A pressure sensor for a hydraulic control system comprising:
a cylindrical base portion having a circumferential groove formed therein, said base portion adapted to be inserted into a bore formed in a hydraulic valve body for the hydraulic control system; a ring of resilient material disposed within said circumferential groove, said resilient material adapted to form a seal between said base portion and a wall of said bore formed in said hydraulic valve body; and a pressure sensing device mounted upon said base portion.
- 2. A sensor according to claim 2 wherein said circumferential groove is a first groove and said base portion has a second circumferential groove formed therein, said second circumferential groove having a spring ring disposed therein, said spring ring adapted to cooperate with a complementary groove formed in said hydraulic valve body bore to retain the sensor in said valve body bore.
- 3. A sensor according to claim 2 further including an axial electrical connector mounted upon said base portion.
- 4. A sensor according to claim 3 wherein said electrical connector includes a plurality of electrical connectors.
- 5. A sensor according to claim 3 wherein said base portion has an axial bore formed therein which terminates in a diaphragm, said diaphragm carrying said pressure sensing device and said bore being adapted to receive pressurized hydraulic fluid.
- 6. A sensor according to claim 5 wherein the sensor is mounted in a hydraulic control system valve body adjacent to a plurality of solenoid valves and further wherein the sensor is enclosed by a removable housing, said housing forming a hermetic seal with said valve body, said housing also carrying solenoid coils for the solenoid valves.
- 7. A sensor according to claim 6 wherein said electrical connector is a male connector and said housing carries a female connector which cooperates with said male connector to form an electrical connection for said pressure sensing device.
- 8. A sensor according to claim 5 further including a cylindrical insert disposed within said axial bore formed in said sensor base portion, said insert having an axial bore formed therethrough.
- 9. A sensor according to claim 8 wherein said base portion has a stepped exterior shape and further wherein said valve body bore also is stepped with said valve body bore step cooperating with said base portion step to limit the insertion distance of the sensor into said valve body bore.
- 10. A sensor according to claim 5 further including a signal conditioning circuit carried by said sensor base portion.
- 11. A sensor according to claim 10 wherein said signal conditioning circuit performs diagnostic tests upon said pressure sensing device and, upon detecting a non-operable pressure sensor, generates an error signal.
- 12. A sensor according to claim 11 wherein said diagnostic test is performed upon initial power up of the sensor.
- 13. A sensor according to claim 11 wherein said signal conditioning circuit is connected to a microprocessor included in an anti-lock brake system, said signal conditioning circuit being responsive to a signal from said microprocessor to transmit pressure data to said microprocessor.
- 14. A sensor according to claim 13 further including a temperature sensor, said signal conditioning circuit being operable to transmit temperature data to said microprocessor.
- 15. A sensor according to claim 14 wherein said data is transmitted with a pulse modulated wave with a frequency being a function of the temperature data and a duty cycle being a function of the pressure data.
- 16. A sensor according to claim 14 wherein said data is transmitted with a pulse modulated wave with a frequency being a function of the pressure data and a duty cycle being a function of the temperature data.
- 17. A sensor according to claim 1 wherein said sensor base portion has a second circumferential groove formed therein, said second circumferential groove having a second ring of resilient material disposed therein, said resilient material also adapted to form a seal between said base portion and said valve body bore, and further wherein said valve body has a fluid supply passageway formed therein which communicates with said valve body bore between said first and second resilient rings, said fluid supply passageway adapted to supply pressurized hydraulic fluid to said valve body bore whereby the axial pressures exerted upon the sensor are balanced.
- 18. A sensor according to claim 17 wherein said sensor base portion further includes a pressure sensing port formed therein between said rings of resilient material.
- 19. A pressure sensor according to claim 18 further including a third circumferential groove formed in said sensor base portion, said third circumferential groove having a spring ring disposed therein, said spring ring adapted to cooperate with a complementary groove formed in said hydraulic valve body bore to retain the sensor in said valve body bore.
- 20. A pressure sensor according to claim 5 wherein the pressure sensor is included in traction control system.
- 21. A pressure sensor according to claim 5 wherein the pressure sensor is included in a vehicle stability system.
- 22. A method for installing a pressure sensor into a hydraulic valve body comprising the steps of:
(a) providing a pressure sensor having a cylindrical base portion which carries a spring ring in a first circumferential groove formed therein and a ring of resilient material carried in a second circumferential groove formed therein; (b) inserting the pressure sensor partially into a bore in a valve block for a hydraulic control system until the ring of resilient material forms a seal with the wall of the valve block bore; (c) connecting the pressure sensor to pressure monitoring equipment; (d) pressurizing the valve block bore; (e) observing the monitoring equipment to confirm operation of the pressure sensor; and (f) inserting the pressure sensor fully into the valve body bore upon obtaining readings to indicate satisfactory operation of the pressure sensor, the spring ring engaging a circumferential groove formed in the wall of the valve body bore and cooperating therewith to retain the sensor within the valve body bore.
- 23. A method according to claim 22 further including the steps of:
(g) removing the monitoring equipment; and (h) attaching a housing to the valve body, the housing enclosing the pressure sensor and forming a hermetic seal with the valve body.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 16 087.2 |
Apr 1999 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a Continuation of U.S. patent application Ser. No. 09/473,236, filed on Dec. 27, 1999, and claims the benefit of U.S. Provisional Application Nos. 60/113,984, filed Dec. 28, 1998, and 60/115,341, filed on Jan. 11, 1999 am and German Patent Application No. 199 16 087.2 filed on Apr. 9, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60113984 |
Dec 1998 |
US |
|
60115341 |
Jan 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09473236 |
Dec 1999 |
US |
Child |
10116743 |
Apr 2002 |
US |