Brake operating device

5970817
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Inventors

Ichiba, Yasuaki

Application #

585102

Filed

Jan-16-1996

Published

Oct-26-1999

Current US Class

074/512
074/513
074/560

International Classes

G05G 001/14

Field of Search

74/512 74/513 74/514 74/560 74/575 192/111

Assignee

Toyota Jidosha Kabushiki Kaisha (Toyota, JP)

Examiners

Luong; Vinh T.

Attorney, Agent or Firm

Oliff & Berridge, PLC

US Patent References

4399901   Stroke self-adjustin...
4497395   Anti creep vehicle...
4779480   Multi ratio accelera...
4875385   Control pedal appa...
5010782   Position adjustable...
5078024   Control pedal appa...
5239891   Cam follower varia...
5327797   Vehicle parking br...
5460061   Adjustable control...

Referenced by:

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Citation

Cite This Patent

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Abstract
In a brake operating device, a lever ratio changing apparatus interconnects a brake pedal assembly that has a brake pedal lever pivotally connected to a support structure at one end with a brake pedal member connected at an opposite end and a brake booster device. The lever ratio changing apparatus includes a connecting member, a guide member and a pivot pin element. The connecting member is movably connected at a first end to the brake pedal lever between the pivotal connection and the brake pedal member and an opposite second end movably connected to the brake booster device. The guide member is fixedly connected to the support structure. The pivot pin element is connected to the connecting member and is slidably movable within the guide member. As the brake pedal assembly moves from a non-braking position to a braking position, a leverage ratio R/r varies wherein R is defined as a first distance measured between the pivotal connection and the brake pedal member and r is a second distance measured between the pivotal connection and the pivot pin element.
 
Claims
What is claimed is:

1. A brake operating device which transmits swinging of a brake pedal to a brake booster device wherein one end of the brake pedal is supported to be swingable and an opposite end of the brake pedal includes a pedal depression-pressure portion,

said brake operating device, comprising:

a link mechanism output member including a pair of rods pivotally connected to each other; and

a link guide member disposed separately and independently of the brake pedal which varies a specific position of the link mechanism output member with respect to a locus of swinging of the brake pedal,

wherein an input/output ratio of an amount of swinging of the brake pedal and a transmitted amount transmitted to the brake booster device is varied in accordance with swinging of the brake pedal.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to a brake operating device which operates a brake device for braking a vehicle.

2. Description of the Related Art

Generally, a brake operating device which operates a brake device of a vehicle includes a brake pedal and a push rod (output member) connecting the brake pedal with a brake booster device. In the brake operating device, when a driver depresses the brake pedal, the swinging of the brake pedal is transmitted to the brake booster device via the push rod so as to operate the brake device.

Among such brake operating devices, a brake operating device provided with a so-called pedal ratio changing device which can vary the pedal ratio of the brake pedal has been proposed (e.g., Japanese Patent Application Laid-Open No. 5-301565).

In the brake operating device disclosed in the aforementioned laid-open application, the pedal ratio changing device is provided between the brake pedal and the push rod. The pedal ratio changing device is structured by a link, which is supported at the brake pedal and connected to the push rod by a guide pin, an elongated hole, which is formed in the brake pedal and into which a guide pin is inserted, and a return spring which is connected to the guide pin. In this way, the pedal ratio is changed at the time of normal braking operation and at the time of sudden braking operation, so that optimal braking operation can be implemented.
 
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