EP0202789A2

Control mechanism for engine throttle position.

Abstract

A pair of coupling elements (38,44) connected between an electric stepper motor (56) and an engine throttle (12) are selectively engaged and disengaged by a lever mechanism (72) which effects a relative movement between the coupling elements in response to an mechanical input from a solenoid actuator (98). The lever mechanism includes integral elements for calibrating the relative movement between the coupling elements for a given mechanical input from the solenoid actuator so as to compensate for manufacturing and assembly tolerances of the various components.

EP0202789A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 24 April 2006, 20.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

4 claims: 1 independent, 3 dependent

  1. 1
    A control mechanism (10) for engine throttle position comprising a lever mechanism (72) for engaging a pair of coupling elements (38,44) through which motion is transmitted to operate the engine throttle (12), the lever mechanism comprising first and second arms (92,94) extending transverse of an axis (86) to define a relative displacement angle in respect to the axis as measured between an input location (96) on the first arm and an output location (100) on the second arm;input means (98) co-acting at the input location on the first arm for displacing the first arm to a first angular position in respect to the axis as measured from the input location when it is desired to engage the coupling elements;and output means (42) co-acting at the output location on the second arm for engaging the coupling elements when the second arm is displaced to a second angular position in respect to the axis as measured from the output location;characterised in that the lever mechanism comprises a first member (76) mounted for angular displacement about the axis (86);a second member (78) mounted to the first member for angular displacement therewith, the second member defining the first and second arms (92,94);and adjusting means (80) for adjusting the mounting of the second member in relation to the first member so as to shift the position of the second member at least radially in respect to the axis thereby altering said relative displacement angle of the first and second arms in relation to the axis such that the second arm attains the second angular position when the first arm attains the first angular position whereby the lever mechanism is calibrated to compensate for manufacturing and assembly tolerances.
  2. 2
    A control mechanism as claimed in Claim 1, characterised by an electric motor (56), the output of which is transmitted by the coupling elements (38,44);a pin (74) defining the axis (86);and an electrically actuated solenoid (98) defining the input means.
  3. 3
    A control mechanism as claimed in Claim 2, characterised in that the first member (76) of the lever mechanism (72) includes a pair of laterally spaced extensions (83,84) joined at one end thereof and rotatably mounted on the pin (74) at the other end thereof;the second member (78) of the lever mechanism includes a stem (90) extending radially in respect to the axis (86) of the pin at least partly into,the space separating the laterally spaced extensions of the first member;and the adjusting means comprises threaded fastener means (80), the second member being mounted to the first member with the threaded fastener means seated in the one end of the first member and threaded radially in respect to the axis into the stem of the second member, whereby the mounting of the second member in relation to the first member is adjusted by affecting an adjustment of the threaded fastener means.
  4. 4
    A control mechanism as claimed in Claim 3, characterised by resilient means (102) disposed about the threaded fastener means (80) between the one end of the first member (76) and the stem (90) of the second member (78), thereby to maintain the relative mounting of the first and second members defined by the adjustment of the threaded fastener means.