Teardrop variable wall earbud

Information

  • Patent Grant
  • 9584895
  • Patent Number
    9,584,895
  • Date Filed
    Wednesday, August 14, 2013
    11 years ago
  • Date Issued
    Tuesday, February 28, 2017
    8 years ago
Abstract
An ear tip is disclosed that comprises an annular flange having a first end tapering downwardly to a second end and having a teardrop curve lateral cross section running from approximately the upper end to the lower end. An inner body extends internally from the upper end within a hollow interior defined by the flange toward the lower end. An acoustic channel extends through the inner body. The flange at least partially occludes an ear canal from ambient noise and creates at least a partial air seal in the ear canal and the acoustic channel is configured to allow the passage of sound into the ear canal when the inner body is connected with a sound source.
Description
INTRODUCTION

The inventions disclosed and claimed herein are earbuds that come in contact with the ear canal wall, adapted for use with earphones, stethoscopes, perytympanic hearing instruments (hearing aids), headsets, and ear plugs for hearing protection, and more particularly “in ear” applications. The devices to which the ear tips can be operatively attached are generally known in the art, including earphones that can be positioned on the head or over the ear, in the ear and wires capable of operatively connecting the ear tip to an audio source such as an analog or digital audio player. Alternative uses include operative attachment to stethoscopes, hearing aids, headsets, and as ear plugs.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 shows a top view of one embodiment of an earbud.



FIG. 2. shows a side perspective view of the earbud shown in FIG. 1.



FIG. 3 shows a rear side perspective view of the earbud shown in FIG. 1.



FIG. 4 shows a bottom view of the earbud shown in FIG. 1.



FIG. 5 shows a cross-section view of the earbud shown in FIG. 4 along axis A-A of FIG. 4.



FIG. 6 shows a cross-section view of the earbud shown in FIG. 4 along axis B-B of FIG. 4.



FIG. 7 shows a cross-section view of the earbud shown in FIG. 4 along axis A-A of FIG. 4 having a sound source connected to the earbud.





DETAILED DESCRIPTION OF REPRESENTATIVE EMBODIMENTS

For the purpose of promoting an understanding of the principles of the invention, reference is now made to the embodiments illustrated in the drawings and specific language is used to describe the same. No limitation of the scope of the invention is intended. Alterations and modifications to the illustrated devices, and other applications of the principles of the invention as illustrated herein are contemplated as would normally occur to one skilled in the art to which the invention relates.


As shown in FIGS. 1 and 2, the earbud or ear tip 10 has an annular flange 20 having a first or upper end 30, a second or lower end 40, and a teardrop curve or pear shaped lateral cross section 50 (shown for example in FIGS. 4-6). Referring collectively to FIGS. 3-6, an inner body 60 extends from the first end 30 toward the second end 40 within a chamber 70 defined by the annular flange 20. An acoustic channel 80 extends through the inner body 60 to connect operatively a sound source or transducer 90 (see FIG. 7) to the ear drum once the earbud 10 is positioned in a human ear. In this form, the inner body 60 has a generally circular shape, but other shapes could be used in other forms. Although the inner body 60 is illustrated as extending within the chamber 70 to a point just before the lower end 40, it should be appreciated that the inner body 60 could extend to the lower end 40 or outside of the lower end 40 in other forms.


As illustrated in FIGS. 3-6, the inner body 60 is formed as part of the flange 20. The inner body 60 is positioned so that its longitudinal axis is generally concentric with a portion of a longitudinal axis of the flange 20 (as shown in FIGS. 4-6). The acoustic channel 80 extends through the inner body 60 from the first end 30. A transducer 90 (see FIG. 7) may be positioned within the chamber 70 such that a portion of the transducer 90 is positioned within the acoustic channel 80 defined by the inner body 60. In one form, the inner body 60 includes a horizontal locking member or portion 82 that is used to help secure the transducer 90 to the inner body 60 of the earbud 10. The inner body 60 may be formed integrally with the flange 20 or as a separate piece which is then attached to the flange 20.


Referring to FIG. 7, an inner diameter 110 of the acoustic channel 80 is sized to secure an acoustic connection from a sound source or transducer 90. The acoustic channel 80 in one version has a diameter of about 1.26 millimeters. In another version, the acoustic channel 80 has a diameter of about 1.40 millimeters. Variations to the diameter of the acoustic channel 80 can be made without varying from the scope of the invention disclosed and claimed herein.


As illustrated in FIGS. 3-6, an exterior surface 25 of the flange 20 tapers upwardly from the lower end 40 to the upper end 30. In one form, the exterior surface 25 protrudes outwardly from the second end 40 such that the lateral cross-section is larger at portions as it tapers upwardly toward the first end 30. The arc of the taper can be constant or variable. In the illustrated form, the taper gets smaller as it approaches the upper end 30. Again, variations in the arc or radius of the taper can be made without varying from the scope of the invention disclosed and claimed herein.


Referring to FIG. 4, a bottom view of the earbud 10 is illustrated that shows that the lateral cross-section of the earbud 10 is generally formed in the shape of a teardrop curve. As the flange 20 transitions from the lower end 40 to the upper end 30, the earbud 10 has a lateral cross-section in the form of a teardrop curve. A teardrop curve is a plane curve given by the following parametric equations:

X=cos t
Y=sin t sinmt)

In other forms, the lateral cross-section shape of the curve could take the form of a Pearls of Sluze curve, which is a generalization of a teardrop curve.


Referring to FIGS. 4-6, at an apex portion 120 of the teardrop curve, a thickness of the flange 20 tapers to a narrower thickness from a larger thickness. This allows the apex portion 120 of the flange 20 to deform more readily when positioned within a human ear to conform more readily to the inner shape of a human ear. As illustrated best in FIGS. 4 and 5, this narrowing taper defines a notched out portion or hinge 130 in the interior of the flange 20 that begins at the lower end 40 of the flange and ends before reaching the upper portion 30 of the flange 20. The hinge 130 allows the earbud 10 to self-adjust or deform to fit the inner ear of the user.


Rigid, deformable, flexible, elastic or resilient materials provide flexibility in sizing the earbud, comfort, audio quality and durability. In one embodiment, the flange 20 is a polymer. In another embodiment, the flange 20 is an elastomeric polymer. In another form, the flange 20 is comprised of ABS plastic or polycarbonate plastic.


While the use of words such as preferable, preferably, preferred or more preferred utilized in the description indicate that the feature so described may be more desirable, such feature(s) may not be necessary. Embodiments lacking the same are within the scope of the invention as defined by the claims that follow. In reading the claims, it is intended that when words such as “a,” “an,” “at least one,” or “at least one portion” are used there is no intention to limit the claim to only one item unless specifically stated to the contrary in the claim. When the language “at least a portion” and/or “a portion” is used the item can include a portion and/or the entire item unless specifically stated to the contrary.

Claims
  • 1. An ear tip, comprising: a flange having an upper end and a lower end, wherein said flange has a teardrop curve lateral cross section running from approximately the upper end to the lower end, an inner body extending internally from the upper end within a hollow interior formed by the flange toward the lower end, wherein a thickness associated with said flange begins to narrow toward an apex portion of said teardrop curve, and an acoustic channel extending through the inner body, wherein the flange at least partially occludes an ear canal from ambient noise and creates at least a partial air seal in the ear canal and the acoustic channel is configured to allow the passage of sound into the ear canal when the inner body is connected with a sound source, wherein said narrowing thickness at said apex portion of said teardrop curve forms a hinge in said flange that allows said flange to self-adjust to fit an inner ear of a user.
  • 2. The ear tip of claim 1 wherein said flange tapers to the lower end from the upper end.
  • 3. The ear tip of claim 1 wherein said flange tapers outwardly from the lower end and then back inwardly to the upper end from the lower end.
  • 4. The ear tip of claim 1 wherein said hinge begins at said lower end and ends prior to reaching said upper end and is located on an interior surface of said flange.
  • 5. The ear tip of claim 1 wherein the flange comprises a substantially rigid material.
  • 6. The ear tip of claim 1 wherein the flange comprises a flexible material.
  • 7. The ear tip of claim 1 wherein the flange comprises a deformable material.
  • 8. The ear tip of claim 1 wherein the flange comprises an elastic material.
  • 9. The ear tip of claim 1 wherein the flange comprises a resilient material.
  • 10. An ear tip, comprising: a flange having an upper end tapering downwardly to a lower end and having a non-circular lateral cross-section, wherein a thickness associated with said flange narrows towards an apex portion of said flange thereby forming a narrowing taper, wherein said narrowing taper at said apex portion of said flange forms a notched out portion in an interior of said flange, an inner body extending internally from the upper end within a hollow interior formed by the flange toward the lower end, and an acoustic channel extending through the inner body, where the flange at least partially occludes an ear canal from ambient noise and creates at least a partial air seal in the ear canal and the acoustic channel is configured to allow the passage of sound into the ear canal when the inner body is connected with a sound source.
  • 11. The ear tip of claim 10 wherein said non-circular lateral cross-section comprises a teardrop curve.
  • 12. The ear tip of claim 10 wherein said non-circular lateral cross-section comprises a Pearls of Sluze curve.
  • 13. The ear tip of claim 10 wherein said notched out portion begins at said lower end and ends prior to reaching said upper end and is located on an interior surface of said flange.
US Referenced Citations (117)
Number Name Date Kind
177253 Keats May 1876 A
789876 Pape May 1905 A
1556775 Fensky Oct 1925 A
2246737 Knudsen Jun 1941 A
2430229 Kelsey Nov 1947 A
2487038 Baum Nov 1949 A
2521414 Schier Sep 1950 A
2719523 Von Glerke Oct 1955 A
2987584 Webber Jun 1961 A
3061689 McCarrell et al. Oct 1962 A
3080011 Henderson Mar 1963 A
D207216 Geib Mar 1967 S
RE26258 Martin Aug 1967 E
3414685 Geib et al. Dec 1968 A
3415246 Hill Dec 1968 A
3548118 Hutchings Dec 1970 A
3610841 Hutchings Oct 1971 A
3618697 Littmann Nov 1971 A
3692958 Dymoke Sep 1972 A
3865998 Weiss et al. Feb 1975 A
3993879 Larkin Nov 1976 A
4006321 Carlson Feb 1977 A
D245202 Asker Jul 1977 S
4039765 Tichy et al. Aug 1977 A
4122841 Rock et al. Oct 1978 A
4261432 Gunterman Apr 1981 A
D259279 Takeda May 1981 S
4325453 Moussette Apr 1982 A
4335281 Scott et al. Jun 1982 A
4347911 Bertagna et al. Sep 1982 A
4548082 Engebretson et al. Oct 1985 A
4677675 Killion et al. Jun 1987 A
4764168 Suh Aug 1988 A
D298356 Falco Nov 1988 S
4867149 Falco Sep 1989 A
4870688 Voroba et al. Sep 1989 A
4875233 Derhaag et al. Oct 1989 A
4913259 Packard Apr 1990 A
4936411 Leonard Jun 1990 A
5031219 Ward et al. Jul 1991 A
D330761 Falco Nov 1992 S
5188123 Gardner, Jr. Feb 1993 A
5201007 Ward et al. Apr 1993 A
5288953 Peart Feb 1994 A
5295193 Ono Mar 1994 A
5298692 Ikeda et al. Mar 1994 A
D353379 Nakamura et al. Dec 1994 S
5487012 Topholm et al. Jan 1996 A
5692059 Kruger Nov 1997 A
5712453 Bungardt et al. Jan 1998 A
5781638 Hosaka et al. Jul 1998 A
5824968 Packard et al. Oct 1998 A
D402752 Falco Dec 1998 S
5917918 Callahan Jun 1999 A
5957136 Magidson et al. Sep 1999 A
5979589 Aceti Nov 1999 A
D427304 Magidson et al. Jun 2000 S
6175633 Morrill et al. Jan 2001 B1
6205227 Mahoney et al. Mar 2001 B1
6253871 Aceti Jul 2001 B1
6258043 Raviv et al. Jul 2001 B1
6359993 Brimhall Mar 2002 B2
D468299 Boesen Jan 2003 S
D468721 Nguyen Jan 2003 S
6513621 Deslauriers et al. Feb 2003 B1
6532295 Brimhall et al. Mar 2003 B1
D473652 Darley et al. Apr 2003 S
6574345 Huang Jun 2003 B1
6643378 Schumaier Nov 2003 B2
6648813 Zilberman et al. Nov 2003 B2
6688421 Dyer et al. Feb 2004 B2
6695093 Falco Feb 2004 B1
6751327 Urso et al. Jun 2004 B1
D499397 Hlas et al. Dec 2004 S
6920228 Redmer et al. Jul 2005 B2
6920229 Boesen Jul 2005 B2
6940988 Shennib et al. Sep 2005 B1
D517054 Yang Mar 2006 S
7010137 Leedom et al. Mar 2006 B1
7072476 White et al. Jul 2006 B2
7079662 Niederdrānk Jul 2006 B2
7082206 Mahoney et al. Jul 2006 B2
7092543 Mahoney et al. Aug 2006 B1
7107993 Magidson Sep 2006 B2
7123733 Borowsky et al. Oct 2006 B1
D535644 Drambarean et al. Jan 2007 S
7185655 Redon Mar 2007 B1
D542773 Drambarean et al. May 2007 S
7221768 Sjursen et al. May 2007 B2
D549222 Huang Aug 2007 S
D550201 Drambarean et al. Sep 2007 S
D550567 Söderström Sep 2007 S
D550655 Falco Sep 2007 S
7314047 Falco Jan 2008 B2
D563945 Johns et al. Mar 2008 S
D565022 Belliveau et al. Mar 2008 S
D567217 Kamo et al. Apr 2008 S
D569842 Yang May 2008 S
D575767 Lee Aug 2008 S
D575773 Yanai Aug 2008 S
D579006 Kim et al. Oct 2008 S
20020058881 Raviv et al. May 2002 A1
20020076057 Voix Jun 2002 A1
20030159878 Hakansson et al. Aug 2003 A1
20030172938 Falco Sep 2003 A1
20040047481 Bauman Mar 2004 A1
20040240691 Grafenberg Dec 2004 A1
20050018838 Meunier et al. Jan 2005 A1
20050111687 Lederer May 2005 A1
20050165460 Erfan Jul 2005 A1
20060050912 Kidd et al. Mar 2006 A1
20060050916 Wehner Mar 2006 A1
20060147072 Sodoma et al. Jul 2006 A1
20060159297 Wirola et al. Jul 2006 A1
20080187159 Blanchard Aug 2008 A1
20100098281 Urso et al. Apr 2010 A1
20110268308 Vasquez Nov 2011 A1
Foreign Referenced Citations (12)
Number Date Country
0959773 Dec 2003 EP
1578168 Sep 2005 EP
1681904 Jul 2006 EP
10023578 Jan 1998 JP
2000210327 Aug 2000 JP
9737593 Oct 1997 WO
9904601 Jan 1999 WO
0108443 Feb 2001 WO
2004077924 Sep 2004 WO
2005025268 Mar 2005 WO
2005112503 Nov 2005 WO
2006068772 Jun 2006 WO
Related Publications (1)
Number Date Country
20150049897 A1 Feb 2015 US