IP Library › Granted Patent US 8,903,118
Granted Patent B2
US 8,903,118 · App. 12/675,750 · Granted Dec 2, 2014

Diaphragm and speaker

Inventors: Takeshi Fujita (Kobe, JP); Hiroshi Kubota (Kobe, JP)
Assignee: TOA Corporation
H04R7/14
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Quick Facts
Patent No.
US 8,903,118
App. No.
12/675,750
Granted
Dec 2, 2014
Kind
B2
Abstract

The present invention provides a dome diaphragm having high strength wholly and uniformly while maintaining a small thickness of a dome portion. A diaphragm 1 according to the present invention is a dome diaphragm including a dome portion 2 . The dome portion 2 is divided into a plurality of small portions 4 , and a ridge portion 7 is formed at a boundary of the small portions 4 . In accordance with this configuration, the ridge portions 7 exist over the entire dome portion 2 , and the ridge portions 7 can serve as frames for reinforcing the dome portion 2.

Claims (44)

1. A dome diaphragm, comprising:

a dome portion;

a top portion located on a top of the dome portion;

an edge portion located at an outer peripheral portion of the dome portion;

the dome portion consisting of a plurality of polygonal planar small portions with the entire surface of the dome portion being divided into the plurality of polygonal planar small portions;

the plurality of polygonal planar small portions connecting to one another to form a plurality of layers from the top portion to the edge portion, each layer surrounding the top portion,

wherein a number of the polygonal planar small portions forming a layer closer to the edge portion is greater than a number of the polygonal planar small portions forming a layer closest to the top portion, and wherein an outer edge of a layer closer to the edge portion is a polygon having more sides than an outer edge of the layer closest to the top portion, the outer edge of the layer closer to the edge portion forming a polygon that has a number of sides that is a multiple of the number of sides of the polygon forming the layer closest to the top portion; and

every two adjacent polygonal planar small portions contact one another to form a plurality of linear ridge portions in each layer and across the layers so that the plurality of linear ridge portions are over the entire dome portion.

2. A dome diaphragm according to claim 1 , further comprising:

a plurality of arch portions each of which is formed by at least some of the linear ridge portions connecting to one another across the layers, so as for each of the arch portions to extend from the top portion to the edge portion.

3. A dome diaphragm according to claim 1 , wherein:

the polygons of the polygonal planar small portions closer to the edge portion are more similar to a circle.

4. A dome diaphragm according to claim 1 , wherein:

the polygons of the polygonal planar small portions gradually increase in size from a vicinity of the top portion to the edge portion.

5. A dome diaphragm according to claim 1 , further comprising:

a plurality of plural-sided pyramids each of which is formed by bending a predetermined number of adjacent polygonal planar small portions to constitute its surfaces wherein a remaining surface other than the predetermined number of the adjacent polygonal planar small portions is an opening open to outside.

6. A dome diaphragm according to claim 1 , wherein:

the polygonal planar small portions are one of planar triangles, planar quadrangles, and planar hexagons.

7. A dome diaphragm according to claim 5 , wherein:

each of the plural-sided pyramids are one of triangular pyramids consisting of three adjacent polygonal planar small portions, four-sided pyramids consisting of four adjacent polygonal planar small portions, and six-sided pyramids consisting of six adjacent polygonal planar small portions.

8. A speaker comprising the diaphragm according to claim 1 .

9. A dome diaphragm according to claim 1 , wherein the polygon forming the outer edge of the layer closest to the top portion has six sides and the polygon forming the outer edge of the layer closer to the edge portion has a number of sides that is at least one multiple of six greater than the number of sides of the polygon forming the layer closest to the top portion.

10. A dome diaphragm according to claim 9 , wherein the dome portion comprises at least three layers.

11. A dome diaphragm according to claim 10 , wherein a first layer has an outer edge forming a six-sided polygon, a second layer has an outer edge forming a twelve-sided polygon, and a third layer has an outer edge forming an eighteen-sided polygon.

12. A dome diaphragm according to claim 11 , wherein a first layer has an outer edge forming a six-sided polygon, a second layer has an outer edge forming a twelve-sided polygon, a third layer has an outer edge forming an eighteen-sided polygon, and a fourth layer has an outer edge forming a twenty four-sided polygon.

13. A dome diaphragm comprising:

a dome portion;

a top portion located on a top of the dome portion;

an edge portion located at an outer peripheral portion of the dome portion;

the dome portion consisting of a plurality of polygonal planar small portions with the entire surface of the dome portion being divided into the plurality of planar small portions;

the plurality of polygonal planar small portions connecting to one another to form a plurality of layers from the top portion to the edge portion, each layer surrounding the top portion,

wherein a number of the polygonal planar small portions forming a layer closer to the edge portion is greater than a number of the polygonal planar small portions forming a layer closer to the top portion, and

wherein an outer edge of a layer closer to the edge portion is a polygon having more sides than an outer edge of a layer closer to the top portion;

every predetermined number of adjacent polygonal planar small portions being bended and connected to one another in a valley shape to form a plurality of plural-sided pyramids with an opening to outside in each layer; and

every two adjacent polygonal planar small portions across two adjacent plural-sided pyramid contacts one another in a mountain shape to form a plurality of linear ridge portions in each layer and across the layers so that the plurality of linear ridge portions are over the entire dome surface.

14. A dome diaphragm comprising:

a dome portion;

a top portion located on a top of the dome portion;

an edge portion located at an outer peripheral portion of the dome portion;

the dome portion consisting of a plurality of plural-sided pyramids with the entire surface of the dome portion being divided into the plurality of plural-sided pyramids;

each plural-sided pyramid comprising a predetermined number of polygonal planar small portions bended and connected to one another in a valley shape and an opening to the outside;

the polygonal planar small portions connecting to one another in a mountain shape across the plural-sided pyramids to form a plurality of layers from the top portion to the edge portion, each layer surrounding the top portion, wherein a number of the polygonal planar small portions form a layer closer to the edge portion is greater than an number of the polygonal planar small portions forming a layer closer to the top portion, and wherein an outer edge of a layer closer to the edge portion is a polygon having more sides than an outer edge of a layer closer to the top portion;

every two adjacent polygonal planar small portions across two adjacent plural-sided pyramids contacts one another in a mountain shape to form a plurality of linear ridge portions in each layer and across the layers so that the plurality of linear ridge portions are over the entire dome portion.

15. A dome diaphragm according to claim 9 , wherein the dome portion comprises at least four layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2010
From: FUJITA, TAKESHI; KUBOTA, HIROSHI
To: TOA CORPORATION
Reel/Frame 024816/0587 →
Priority Claims (1)
JP 2007-222621 · Aug 29, 2007 · national
Continuity (1)
Related Publication 20100296687A1 · Nov 25, 2010