TORSIONAL SENSING LOAD CELL WITH OVERLOAD PROTECTION
First Claim
Patent Images
1. A load cell for use as a force indicator comprising:
- a first arm;
a second arm in parallel relation to and proximate said first arm;
a joining section integrally connected to an end of said first arm and an end of said second arm, so that there is torsion in said joining section when torsion is transmitted between said first and second arms;
a force transducer connected to produce an electrical output signal representing torsion between said first and second arms; and
an electrical circuit connected to receive said electrical output signal, said first arm having a stop pin affixed thereto at an end distal to said joining section, said stop pin disposed in intersecting relation to said second arm, wherein deflection of said first arm relative to said second arm is limited by said stop pin.
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Accused Products
Abstract
A torsional sensing load cell, suitable for mounting at support locations of an automotive seat in order to determine weight and sitting position of an occupant of a motor vehicle. The load cell has the shape of a tuning fork, with one arm fixed to a foot attached to a chassis and a second parallel arm, not contacting the first arm, arranged to support a quadrant of a seat by means of a flange on the side of the second arm, causing torsion in the arm. A stop pin arrangement is provided in the load cell to prevent overloading the cell in a high force situation such as a collision.
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Citations
13 Claims
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1. A load cell for use as a force indicator comprising:
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a first arm;
a second arm in parallel relation to and proximate said first arm;
a joining section integrally connected to an end of said first arm and an end of said second arm, so that there is torsion in said joining section when torsion is transmitted between said first and second arms;
a force transducer connected to produce an electrical output signal representing torsion between said first and second arms; and
an electrical circuit connected to receive said electrical output signal, said first arm having a stop pin affixed thereto at an end distal to said joining section, said stop pin disposed in intersecting relation to said second arm, wherein deflection of said first arm relative to said second arm is limited by said stop pin. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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10. A load cell comprising:
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a generally U-shaped member having a main body portion and first and second extending portions extending away from said main body portion, said second extending portion in parallel relation to and proximate said first extending portion;
a first transducer coupled along said first extending portion and proximate said main body portion; and
a second transducer coupled along said second extending portion and proximate said main body portion, said first extending portion having a lateral member distal said main body portion, said second extending portion having an opening into which said lateral member is disposed, wherein deflection of said first extending portion relative to said second extending portion is limited by said lateral member contacting a side of said opening. - View Dependent Claims (11, 12)
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13. A load cell comprising:
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a first member;
a second member;
a third member integrally coupling together said first and second member in a shape of tuning fork so as to produce torsional stress in said first, second, and third members in response to a first force on said first member and a second force on said second member;
a first force transducer connected to said third member proximate said first member to detect torsional stress in said first member; and
a second force transducer connected to said third member proximate said second member to detect torsional stress in said second member, said first member having a stop pin fixedly attached thereto at an end distal said third member, said second member having an opening therethrough and disposed at an end distal said third member, said stop pin disposed within said opening.
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Specification