Claims
- 1. Apparatus for providing a force to a power booster of a brake system, comprising:
a first input push rod member having one end adapted to be operatively coupled to a brake pedal and an opposite free end; a second input push rod member having one end adapted to be operatively coupled to a power booster of a brake system for providing a force to the power booster upon an input force being applied to the brake pedal and an opposite free end; a housing member operatively supporting the free ends of the first and second input push rod members so that the first and second push rod members extend along a common axis; a biasing element mounted within the housing member and operable to bias the first and second input push rod members for movement relative to each other along the common axis in response to the applied input force, the biasing member having a free length and a fully compressed length along the common axis; and a shunt member mounted within the housing member and having a shunt body extending along the common axis, the shunt member being operable to shunt the applied input force at a position intermediate the free length and fully compressed length of the biasing element so that the input force is thereafter applied to the shunt body at the intermediate position to shunt further compression of the biasing element under the applied input force.
- 2. The apparatus of claim 1 further comprising a sensor responsive to relative movement between the first and second input push rod members to generate an electrical output having a magnitude that varies with the amount of input force applied to the first input push rod by the brake pedal.
- 3. The apparatus of claim 1, wherein the shunt body is disposed within the biasing element.
- 4. The apparatus of claim 1, wherein the shunt member comprises a tubular sleeve and an annular flange extending radially outwardly from the sleeve proximate one end thereof, the annular flange being operable to engage one end of the biasing element and the tubular sleeve being operable to shunt the applied input force at the intermediate position.
- 5. The apparatus of claim 1, wherein the biasing element comprises a Belleville washer.
- 6. Apparatus for shunting compression of a spring having a free length and a fully compressed length along a compression axis so that compression of the spring under a load applied along the compression axis is shunted at a position between the free length and the fully compressed length, comprising:
a shunt member having a shunt body extending along the compression axis and operable to shunt the load at a position intermediate the free length and fully compressed length of the spring so that the load is thereafter applied to the shunt body at the intermediate position to shunt further compression of the spring under the applied load.
- 7. The apparatus of claim 6, wherein the shunt body is adapted to be disposed within the spring.
- 8. The apparatus of claim 6, wherein the shunt member comprises a tubular sleeve and an annular flange extending radially outwardly from the sleeve proximate one end thereof, the annular flange being operable to engage one end of the spring and the tubular sleeve being operable to shunt the load at the intermediate position.
- 9. The apparatus of claim 6, wherein the spring comprises a Belleville washer.
- 10. A method of shunting compression of a spring having a free length and a fully compressed length along a compression axis, comprising:
applying a load to the spring along the compression axis to compress the spring; shunting the load at a position intermediate the free length and the fully compressed length of the spring to shunt further compression of the spring under the applied load.
CROSS-REFERENCE
[0001] The present application is related to commonly owned U.S. Serial No. ______, filed on even date herewith, entitled “Intelligent Input Push Rod Assembly” (Ref. No. DP-303122) and U.S. Serial No. ______, filed on even date herewith, entitled “Method Of Calibrating An Intelligent Input Push Rod Assembly” (Ref. No. DP-304459).