IP Library Patent Application 11819590
Patent Application
App. No. 11/819,590

Semiconductor acceleration sensor

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Quick Facts
Patent No.
US None
App. No.
11/819,590
Abstract

A semiconductor acceleration sensor includes an outer frame portion; a weight portion; a pair of X-axis flexible portions; a pair of Y-axis flexible portions; first to fourth X-axis resistor elements; first to fourth Y-axis resistor elements; and first to fourth Z-axis resistor elements. The first to fourth X-axis resistor elements are disposed on the X-axis flexible portions, and the first to fourth Y-axis resistor elements are disposed on the Y-axis flexible portions. The first to fourth Z-axis resistor elements are disposed on ones of the X-axis flexible portions and the Y-axis flexible portions. Further, the first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with a center point of the weight portion as a symmetrical point.

Claims (51)

1 . A semiconductor acceleration sensor, comprising:

an outer frame portion;

a weight portion disposed at a center portion of the outer frame portion, and having an X-axis and a Y-axis crossing the X-axis perpendicularly at a center point of the weight portion;

first to fourth X-axis resistor elements for detecting an acceleration component in an X-axis direction;

first to fourth Y-axis resistor elements for detecting an acceleration component in a Y-axis direction;

first to fourth Z-axis resistor elements for detecting an acceleration component in a Z-axis direction perpendicularly crossing the X-axis direction and the Y-axis direction;

a pair of X-axis flexible portions having a first centerline in a width direction thereof along the X-axis for connecting the weight portion and the outer frame portion; and

a pair of Y-axis flexible portions having a second centerline in a width direction thereof along the Y-axis for connecting the weight portion and the outer frame portion,

wherein the first X-axis resistor element is disposed on one of the X-axis flexible portions on a side of the outer frame portion; the second X-axis resistor element is disposed on the one of the X-axis flexible portions on a side of the weight portion; the third X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the weight portion; and the fourth X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the outer frame portion,

wherein the first Y-axis resistor element is disposed on one of the Y-axis flexible portions on a side of the outer frame portion; the second Y-axis resistor element is disposed on the one of the Y-axis flexible portions on a side of the weight portion; the third Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the weight portion; and the fourth Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the outer frame portion,

wherein the first to fourth Z-axis resistor elements are disposed on ones of the X-axis flexible portions and the Y-axis flexible portions; the first to fourth Z-axis resistor elements are arranged oppositely with respect to ones of the first to fourth X-axis resistor elements and the first to fourth Y-axis resistor elements in the width direction of the ones of the X-axis flexible portions and the Y-axis flexible portions with one of the first centerline and the second centerline inbetween; and the first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with the center point of the weight portion as a symmetrical point.

2 . A semiconductor acceleration sensor, comprising:

an outer frame portion;

a weight portion disposed at a center portion of the outer frame portion, and having an X-axis and a Y-axis crossing the X-axis perpendicularly at a center point of the weight portion;

first to fourth X-axis resistor elements for detecting an acceleration component in an X-axis direction;

first to fourth Y-axis resistor elements for detecting an acceleration component in a Y-axis direction;

first to fourth Z-axis resistor elements for detecting an acceleration component in a Z-axis direction perpendicularly crossing the X-axis direction and the Y-axis direction;

a pair of X-axis flexible portions having a first centerline in a width direction thereof along the X-axis for connecting the weight portion and the outer frame portion; and

a pair of Y-axis flexible portions having a second centerline in a width direction thereof along the Y-axis for connecting the weight portion and the outer frame portion,

wherein the first X-axis resistor element is disposed on one of the X-axis flexible portions on a side of the outer frame portion; the second X-axis resistor element is disposed on the one of the X-axis flexible portions on a side of the weight portion; the third X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the weight portion; and the fourth X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the outer frame portion,

wherein the first Y-axis resistor element is disposed on one of the Y-axis flexible portions on a side of the outer frame portion; the second Y-axis resistor element is disposed on the one of the Y-axis flexible portions on a side of the weight portion; the third Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the weight portion; and the fourth Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the outer frame portion,

wherein the first and second Z-axis resistor elements are arranged alternately with respect to ones of the first and second X-axis resistor elements and the first and second Y-axis resistor elements oppositely in the width direction of ones of the X-axis flexible portions and the Y-axis flexible portions with one of the first centerline and the second centerline inbetween; and the third and fourth Z-axis resistor elements are arranged alternately with respect to ones of the third and fourth X-axis resistor elements and the third and fourth Y-axis resistor elements oppositely in the width direction of the ones of the X-axis flexible portions and the Y-axis flexible portions with the one of the first centerline and the second centerline inbetween.

3 . The semiconductor acceleration sensor according to claim 2 , wherein said first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with one of the X-axis and the Y-axis perpendicularly crossing the one of the first centerline and the second centerline as a symmetrical axis.

4 . The semiconductor acceleration sensor according to claim 2 , wherein said first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with the center point of the weight portion as a symmetrical point.

5 . A semiconductor acceleration sensor, comprising:

an outer frame portion;

a weight portion disposed at a center portion of the outer frame portion, and having an X-axis and a Y-axis crossing the X-axis perpendicularly at a center point of the weight portion;

first to fourth X-axis resistor elements for detecting an acceleration component in an X-axis direction;

first to fourth Y-axis resistor elements for detecting an acceleration component in a Y-axis direction;

first to fourth Z-axis resistor elements for detecting an acceleration component in a Z-axis direction perpendicularly crossing the X-axis direction and the Y-axis direction;

a pair of X-axis flexible portions having a first centerline in a width direction thereof along the X-axis for connecting the weight portion and the outer frame portion; and

a pair of Y-axis flexible portions having a second centerline in a width direction thereof along the Y-axis for connecting the weight portion and the outer frame portion,

wherein the first X-axis resistor element is disposed on one of the X-axis flexible portions on a side of the outer frame portion; the second X-axis resistor element is disposed on the one of the X-axis flexible portions on a side of the weight portion; the third X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the weight portion; and the fourth X-axis resistor element is disposed on the other of the X-axis flexible portions on a side of the outer frame portion,

wherein the first Y-axis resistor element is disposed on one of the Y-axis flexible portions on a side of the outer frame portion; the second Y-axis resistor element is disposed on the one of the Y-axis flexible portions on a side of the weight portion; the third Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the weight portion; and the fourth Y-axis resistor element is disposed on the other of the Y-axis flexible portions on a side of the outer frame portion,

wherein the first to fourth Z-axis resistor elements are disposed on ones of the X-axis flexible portions and the Y-axis flexible portions; the first to fourth Z-axis resistor elements are arranged oppositely with respect to ones of the first to fourth X-axis resistor elements and the first to fourth Y-axis resistor elements in the width direction of the ones of the X-axis flexible portions and the Y-axis flexible portions; and the first to fourth Z-axis resistor elements are arranged in a row on one of the first centerline and the second centerline.

6 . The semiconductor acceleration sensor according to claim 5 , wherein said first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with one of the X-axis and the Y-axis perpendicularly crossing the one of the first centerline and the second centerline as a symmetrical axis.

7 . The semiconductor acceleration sensor according to claim 5 , wherein said first and second Z-axis resistor elements are arranged symmetrically with respect to the third and fourth Z-axis resistor elements with the center point of the weight portion as a symmetrical point.

8 . A semiconductor acceleration sensor, comprising:

an outer frame portion;

a weight portion disposed at a center portion of the outer frame portion, and having a center point;

a pair of flexible portions for connecting the weight portion and the outer frame portion, one of said flexible portions extending between the weight portion and the outer frame portion in a first direction, the other of said flexible portions extending between the weight portion and the outer frame portion in the first direction;

a plurality of first resistor elements for detecting an acceleration component in a first direction, said first resistor elements being arranged symmetrically on the flexible portions with the center point as a symmetrical point; and

a plurality of second resistor elements for detecting an acceleration component in a second direction crossing the first direction perpendicularly, said second resistor elements being disposed in a number same as that of the first resistor elements.

9 . The semiconductor acceleration sensor according to claim 8 , wherein said second resistor elements are arranged symmetrically on the flexible portions with the center point as a symmetrical point.

10 . A semiconductor acceleration sensor, comprising:

an outer frame portion;

a weight portion disposed at a center portion of the outer frame portion, and having a center point;

a pair of flexible portions for connecting the weight portion and the outer frame portion, one of said flexible portions extending between the weight portion and the outer frame portion in a first direction, the other of said flexible portions extending between the weight portion and the outer frame portion in the first direction;

a plurality of first resistor elements for detecting an acceleration component in a first direction, said first resistor elements being arranged symmetrically on the flexible portions with the center point as a symmetrical line; and

a plurality of second resistor elements for detecting an acceleration component in a second direction crossing the first direction perpendicularly, said second resistor elements being disposed in a number same as that of the first resistor elements.

11 . The semiconductor acceleration sensor according to claim 10 , wherein said second resistor elements are arranged symmetrically on the flexible portions with the center point as a symmetrical line.

Assignments (2)
CHANGE OF NAME Recorded Jan 22, 2009
From: OKI ELECTRIC INDUSTRY CO., LTD.
To: OKI SEMICONDUCTOR CO., LTD.
Reel/Frame 022162/0669 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2007
From: KATOU, KENJI
To: OKI ELECTRIC INDUSTRY CO., LTD.
Reel/Frame 019534/0750 →