This application is entitled to the benefit of and incorporates by reference essential subject matter disclosed in International Patent Application No. PCT/JP2009/055490 filed on Mar. 19, 2009 and Japanese Patent Application No. 2008-071765 filed Mar. 19, 2008.
The present invention relates to an automatic opening and closing apparatus for vehicle which automatically opens and closes an opening and closing member provided to a vehicle.
Throughout a vehicle such as an automobile, opening and closing members such as window glasses to be mounted to doors and a tailgate (back door) to be mounted to the rear end of the auto body are mounted. Also, to ease opening and closing operations of these opening and closing members, vehicles mounting automatic opening and closing apparatuses such as a power window apparatus and a power tailgate apparatus have been developed.
As such an automatic opening and closing apparatus, for example, like a power window apparatus including a regulator of an X-arm type, an arm-driving type automatic opening and closing apparatus has been known, in which an opening and closing member is coupled to a tip of a drive arm swingably supported to an auto body or a door by a support shaft so that the opening and closing member is opened and closed by driving the drive arm to swing by an electric motor. In this case, a gear case which houses a worm gear mechanism is attached to the electric motor, and a drive gear fixed to an output shaft is disposed to an outer surface of the gear case, and a driven gear provided to a base end of the drive arm is meshed with the drive gear. In this manner, when the electric motor is activated, rotation of the electric motor is transmitted from the drive gear to the driven gear and the drive arm is swung together with the driven gear.
Meanwhile, as such an automatic opening and closing apparatus, one in which a bracket is fixed to a gear case and a support shaft is supported by this bracket to keep a mesh pitch of a drive gear and a driven gear has been known. However, even in such a configuration, when load is applied from an opening and closing body to a drive arm in a direction inclined with respect to the support shaft, the mesh accuracy is degraded as the driven gear is inclined with respect to the drive gear, and thus there have been abnormal noise generated from the meshing portion and a lowering of activation efficiency of the automatic opening and closing apparatus.
Therefore, for example, in the automatic opening and closing apparatus described in Japanese Patent Application Laid-Open Publication No. 2001-90796, by using a part of a bracket, a pressing portion which abuts a side surface of the driven gear to presses the driven gear to the gear case side so that an inclination of the driven gear is suppressed by the pressing portion and meshing between the drive gear and driven gear is maintained.
An automatic opening and closing apparatus for vehicle of the present invention is an automatic opening and closing apparatus for vehicle which automatically opens and closes an opening and closing body mounted on a vehicle, the automatic opening and closing apparatus for vehicle including: an electric motor having a rotating shaft; a gear case attached to the electric motor; a worm gear mechanism which reduces speed of rotation of the rotating shaft and outputs the same from an output shaft; a drive gear provided to the output shaft and rotated together with the output shaft, as being arranged outside the gear case; a driven gear having a groove portion in a circular arc shape about a shaft center and engaged to the drive gear, as being swingably supported by a support shaft integrally provided with the gear case; a drive arm integrally provided with the driven gear and coupled to the opening and closing body at its tip so as to be swung together with the driven gear so that the opening and closing body is opened and closed; and a gear cover fixed to the gear case by a first fastening member penetrating the groove portion and a second fastening member arranged on an outer periphery side of the driven gear, the gear cover covering a mesh portion of the drive gear and the driven gear and abutting a side surface of the driven gear.
In the automatic opening and closing apparatus for vehicle of the present invention, the drive arm and the driven gear are separately formed and a base end of the drive arm is fixed to the driven gear and swingably supported by the support shaft.
In the automatic opening and closing apparatus for vehicle of the present invention, a pressing portion extended in a circular arc shape about the support shaft and protruding toward the driven gear is provided to the gear cover, and the pressing portion is abutted with the side surface of the driven gear.
In the automatic opening and closing apparatus for vehicle of the present invention, a tip of the support shaft is supported by the gear cover.
In the automatic opening and closing apparatus of the present invention, the first and second fastening members are bolts disposed on the gear cover side and screw-coupled to nuts disposed on the gear cover side, and tips of the bolts are fixing portions to the vehicle, as penetrating the nuts.
In the automatic opening and closing apparatus for vehicle of the present invention, a bracket is integrally fixed to the gear case, and the driven gear is pivotally supported by a support shaft provided to the bracket, and also, the gear cover is fixed to the bracket by the first fastening member.
In the automatic opening and closing apparatus for vehicle of the present invention, the bracket is fixed to the gear case as the gear cover and the driven gear are being assembled and unitized.
In the automatic opening and closing apparatus for vehicle of the present invention, the opening and closing body is a window glass mounted to be openable and closable in a vertical direction to a door of the vehicle, the electric motor is arranged inside the door having an axis direction of the drive gear toward a thickness direction of the door, and the drive arm is swung in the vertical direction inside the door to open and close the window glass.
An automatic opening and closing apparatus for vehicle of the present invention is an automatic opening and closing apparatus for vehicle which automatically opens and closes an opening and closing body mounted on a vehicle, the automatic opening and closing apparatus for vehicle including: an electric motor having a rotating shaft; a gear case attached to the electric motor; a worm gear mechanism which reduces speed of rotation of the rotating shaft and outputs the same from an output shaft; a drive gear provided to the output shaft and rotated together with the output shaft, as being disposed outside the gear case; a driven gear having a groove portion in a circular arc shape about a shaft center and meshed to the drive gear, as being swingably supported by a support shaft integrally provided with the gear case; a drive arm integrally provided with the driven gear and coupled to the opening and closing body at its tip so as to be swung together with the driven gear so that the opening and closing body is opened and closed; and a gear cover locked to the gear case on an outer periphery side of the driven gear and also fixed to the gear case by a fastening member penetrating the groove portion, the gear cover supporting the support shaft and the output shaft, covering a mesh portion of the drive gear and the driven gear, and abutting a side surface of the driven gear.
In the automatic opening and closing apparatus for vehicle of the present invention, the gear cover abuts the side surface of the driven gear at a pressing portion on cover side protruding toward the driven gear, and a pressing portion on case side protruding toward the driven gear and abutting the side surface of the driven gear is provided to the gear case.
In the automatic opening and closing apparatus for vehicle of the present invention, the pressing portion on case side and the pressing portion on cover side oppose each other interposing the driven gear.
According to the present invention, the gear cover for suppressing an inclination of the driven gear is fixed to the gear case by the first fastening member penetrating the groove portion in a circular arc shape provided to the driven gear and the second fastening member disposed on the outer periphery side of the driven gear, and the gear cover is supported at its both sides to the gear case interposing the mesh portion between the drive gear and the driven gear, thereby surely preventing an inclination of the driven gear by the gear cover. In this manner, mesh accuracy of the drive gear and the driven gear are increased and generation of abnormal noise from the mesh portion is prevented, and also, activation efficiency of an automatic opening and closing apparatus can be increased. Also, the opening and closing body can be a tailgate mounted to a window glass provided to a door of a vehicle and/or a backend portion of the vehicle.
According to the present invention, the drive arm and the driven arm are separately formed and thus drive arms having different shapes can be used in accordance with specifications of the vehicle. In this manner, versatility of the automatic opening and closing apparatus can be increased.
According to the present invention, the driven gear is pressed by the pressing portion in a circular arc shape provided to the gear cover, and thus an inclination of the driven gear is surely suppressed and the mesh accuracy of the drive gear and the driven gear can be further increased.
According to the present invention, the tip of the support shaft is supported by the gear cover, and thus an inclination of the support shaft to the gear case is prevented and the mesh accuracy of the drive gear and the driven gear can be further increased.
According to the present invention, a bolt for fixing the gear cover to the gear case is used also as a bolt for fixing the gear case to the vehicle, and thus the number of parts of the automatic opening and closing apparatus is reduced and a cost of the parts can be reduced.
According to the present invention, the support shaft is provided to the bracket integrally fixed to the gear case and the gear cover is fixed to the bracket by the first fastening member, and thus it is compatible to specifications of the vehicle by changing the bracket and/or the drive arm etc. In this manner, the gear case is used together for each specification, and versatility of the automatic opening and closing apparatus can be increased.
According to the present invention, the bracket is fixed to the gear case as the gear cover and the driven gear are being assembled and unitized, thereby making assembly work of the automatic opening and closing apparatus easier.
According to the present invention, the gear cover suppressing an inclination of the driven gear is supported by both sides of the gear case interposing the mesh portion of the drive gear and the driven gear, and the output shaft and the support shaft are supported by the gear cover, and thus an inclination of the driven gear is surely prevented by the gear cover and the supporting rigidity of the support shaft supporting the driven gear and the output shaft, to which the drive gear is provided, is increased, and the mesh accuracy of the drive gear and the driven gear can be increased.
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
The power window apparatus 21 includes a window regulator 22 and a drive unit 23, and the structure is such that the window regulator 22 is activated by the drive unit 23 so that the window glass 12 is opened and closed.
The window regulator 22 is an X-arm type and includes a lift arm 24 as a drive arm and an equalizer arm 25. The lift arm 24 is formed of a steel plate and supported by the drive unit 23 at a base end portion of the lift arm 24 and is swingable in the vertical direction inside the door 11. Meanwhile, the equalizer arm 25 is formed of a steel plate and pivotally supported to a substantially center portion in a longitudinal direction of the lift arm 24 by a coupling shaft 26 at a substantially center portion in a longitudinal direction of the equalizer arm 25. A roller not illustrated is attached to a tip portion of the lift arm 24 and a tip portion of the equalizer arm 25, respectively, and these rollers are movably attached to a roller guide 27 fixed to a bottom end of the window glass 12. Also, a roller not illustrated is also attached to the base end portion of the equalizer arm 25 and the roller is movably attached to a roller guide 28 fixed to the door 11. The drive unit 23 drives the lift arm 24 to swing the same, and, when the lift arm 24 is driven to swing by the drive unit 23, the lift arm 24 and the equalizer arm 25 are operated to swing about the coupling shaft 26 and the window glass 12 is opened and closed in a vertical direction in
Next, structure of the drive unit 23 will be described.
The drive unit 23 includes an electric motor 31, and a speed reducer 32 is installed to the electric motor 31 as one unit. The speed reducer 32 includes a gear case 33 made of a resin installed to the electric motor 31, and a worm gear mechanism 34 is embedded inside a main body portion 33a formed in a column shape of the gear case 33.
As illustrated in
A connector 36 is integrally provided to the gear case 33 and the electric motor 31 is connected to a control apparatus not illustrated to be mounted on the vehicle via the connector 36. And, activation of the electric motor 31 is controlled by the control apparatus based on instruction signals of a power window switch etc.
A tip of the output shaft 35 protrudes outside the gear case 33 and a pinion 37 as a drive gear is fixed to the tip of the output shaft protruding outside the gear case 33 as illustrated in
To the gear case 33, a base portion 33b, which protrudes from the main body portion 33a in a diametrical direction of the main body portion 33a, is integrally provided, and a supporting hole 38 is formed to a tip side of the base portion 33b. A shaft bearing 43 is inserted into the supporting hole 38 to pivotally support a large-diameter portion 41c of a support shaft 41, and a sector gear 42 as a driven gear is swingably supported to the base portion 33b by the support shaft 41 integrally supported to the base portion 33b.
The sector gear 42 is formed of a steel plate in a fan-like shape and an attaching hole 42a is provided to a shaft center of the sector gear 42. Also, a gear portion 42b is provided to an outer periphery portion in a circular arc shape of the sector gear 42, and a groove portion 42c in a circular arc shape about the shaft center, i.e., the attaching hole 42a is formed between the gear portion 42b and the attaching hole 42a. The sector gear 42 is swingably supported by the support shaft 41 as the support shaft 41 is inserted into the attaching hole 42a, and the gear portion 42b is meshed with the pinion 37. In this manner, the sector gear 42 is driven by the pinion 37, i.e., the electric motor 31 when the electric motor 31 is activated, and is swung in a predetermined angle range about the support shaft 41 as a center.
Herein, in the power window apparatus 21, as described above, the pinion 37 is supported to the gear case 33 by the output shaft 35, and the sector gear 42 to be meshed with the pinion 37 is supported to the base portion 33b of the gear case 33 by the support shaft 41. In this manner, a mesh pitch of the pinion 37 and the sector gear 42 can be maintained at good accuracy by the gear case 33, and thus the mesh accuracy of the pinion 37 and the sector gear 42 is ensured and activation efficiency of the drive unit 23 can be increased.
Meanwhile, a locking piece 24a is integrally formed to the base end of the lift arm 24. The locking piece 24a is disposed to overlap with the sector gear 42 between the sector gear 42 and the base portion 33b, and the support shaft 41 is inserted into a through-hole 24b of the locking piece 24a. Around the through-hole 24b of the locking piece 24a, three fixing holes 24c are concentrically formed next to each other at constant spacing. Meanwhile, around the attaching hole 42a of the sector gear 42, three fixing bosses 42e are concentrically formed next to each other on the lift arm 24 side by forming concave portions 42d on the gear cover 51 side by repousse or the like, and the fixing holes 24c and the fixing bosses 42e are engagable with each other. That is, the lift arm 24 and the sector gear 42 are separately formed and the lift arm 24 is integrally engaged with the sector gear 42 at the base end of the lift arm 24 and is swingably supported to the support shaft 41 together with the sector gear 42.
Note that, as illustrated in
To the gear case 33, to cover the mesh portion of the pinion 37 and the sector gear 42 and to suppress an inclination of the sector gear 42 to the shaft direction of the support shaft 41, a gear cover 51 is fixed.
To the cylindrical portion 51a of the gear cover 51, a pair of cover side fixing legs 52 are integrally formed protruding in opposite sides to each other in a perpendicular direction with respect to the extending direction of the extension portion 51b, respectively, and a bolt hole 52a is provided to each of the cover side fixing legs 52. Meanwhile, a pair of case side fixing legs 53 corresponding to the cover side fixing legs 52 are provided to the main body portion 33a of the gear case 33, and an inserting hole 53a is provided to each of the case side fixing legs 53.
A bolt 54 as the second fastening member is inserted into the bolt hole 52a of each of the cover side fixing legs 52 from an opposite side of the gear case 33, and a nut 55 in a sleeve shape having a flange is inserted into the inserting hole 53a of each of the case side fixing legs 53 from an opposite side of the gear cover 51; and each of the bolts 54 is screw-coupled to a corresponding one of the nuts 55 so that the gear cover 51 is fixed to the gear case 33.
Herein, the cover side fixing legs 52 and the case side fixing legs 53 are arranged on an outer periphery side of the sector gear 42, i.e., outside a moving range of the sector gear 42. In this manner, the gear cover 51 is fixed to the gear case 33 by the bolts 54 and nuts 55 on the outer periphery side of the sector gear 42.
As illustrated in
As illustrated in
Meanwhile, as illustrated in
In this manner, in the power window apparatus 21, the gear cover 51 covering the mesh portion of the pinion 37 and the sector gear 41 presses the sector gear 42 to the gear case 33 so that an inclination of the sector gear 42 taking the support shaft 41 as a point of support is suppressed, and thus mesh accuracy of the pinion 37 and the sector gear 42 is ensured and generation of abnormal noise from the mesh portion is prevented, and also activation efficiency of the drive unit 23 can be increased. In addition, the case side pressing portions 62a and 62b in a circular arc shape provided to the gear case 33 and the cover side pressing portions 61a and 61b in a circular arc shape provided to the gear cover 51 press the sector gear 42, and thus each of the pressing portions 61a, 61b, 62a, and 62b is always abutted in a predetermined range to the sector gear 42 swung in a predetermined range, thereby surely suppressing an inclination of the sector gear 42.
Also, as described above, in the power window apparatus 21, the gear cover 51 suppressing an inclination of the sector gear 42 is fixed by the bolt 58 penetrating the groove portion 42c provided to the sector gear 42 and the bolt 54 disposed in the outer periphery of the sector gear 42, and thus the gear cover 51 can be supported by its both sides to the gear case 33 interposing the mesh portion of the pinion 37 and the sector gear 42. In this manner, load from the sector gear 42 is surely supported by the gear cover 51 and thus an inclination of the sector gear 42 about the support shaft 41 can be surely prevented.
Further, in the power window apparatus 21, the lift arm 24 and the sector gear 42 are separately formed, and thus the lift arm 24 having a different shape corresponding to specifications of the vehicle can be used while the drive unit 23 is unchanged. In this manner, the drive unit 23 is used together for each specification, and thus versatility of the drive unit 23, that is, the power window apparatus 21 can be increased.
As illustrated in
In this manner, in the power window apparatus 21, the tip portions of the bolts 54 and 58 for fixing the gear cover 51 to the gear case 33 are used as fixing portions to the vehicle, and also used as bolts for fixing the gear case 33, i.e., the drive unit 23 to the door panel 11a, and thus another bolt for fixing the drive unit 23 to the door panel 11a is unnecessary. In this manner, the number of parts of the power window apparatus 21 is reduced and thus the cost can be reduced.
In the case illustrated in
In contrast, in the modification example illustrated in
In this manner, one end (base end) of the support shaft 41 is supported by the supporting hole 38 of the gear case 33, and also, the other end (tip) of the support shaft 41 is supported by the supporting hole 65 of the gear cover 51, thereby increasing the supporting rigidity of the support shaft 41, and thus an inclination of the sector gear 42 supported by the support shaft 41 can be more surely prevented.
A power tailgate apparatus 71 as an automatic opening and closing apparatus described in the present embodiment automatically opens and closes a tailgate 73 as an opening and closing body provided to a vehicle 72, and the drive unit 23 of the power tailgate apparatus 71 is disposed to a rear pillar 74a of a vehicle body 74.
The tail gate 73 is attached to a rear end portion of a roof portion 74b of the vehicle body 74 via a hinge 75, and the tailgate 73 is openable and closable in the vertical direction of the vehicle 72 between a full-close position illustrated in
As illustrated in
Also, the support shaft 41 is provided between the bracket 76 and the extension portion 51b of the gear cover 51, and the sector gear 42 is swingably supported by the bracket 76 via the support shaft 41. That is, the sector gear 42 is swingably supported to the gear case 33 by the support shaft 41 provided to the bracket 76. Also, the gear cover 51 is also fixed to the bracket 76 by the bolts 54 and 58. In this manner, also in the present embodiment, the support shaft 41 is supported at its both ends by the bracket 76 and the gear cover 51 interposing the sector gear 42, thereby increasing the supporting rigidity.
As illustrated in
In this manner, the bracket 76 is fixed to the gear case 33 as the bracket 76 has been previously unitized as the sector gear 42 and the gear cover 51, etc. have been assembled, and thus assembling work of the power tailgate apparatus 71 can be made easier.
Also, in the power tailgate apparatus 71, the bracket 76, which is unitized with having the sector gear 42 and the gear cover 51 etc. are assembled, is fixed to the gear case 33, and thus it is possible to accommodate to specification changes of the vehicle 72 side by changing the bracket 76 while the gear case 33 is also used together. In this manner, the versatility of the gear case 33, i.e., the power tailgate apparatus 71 can be increased.
In the present embodiment, the lift arm 24 is integrally formed with the sector gear 42, and a tip of the lift arm 24 is coupled to the tailgate 73 via a drive rod 81. And, the lift arm 24 is swung in the vertical direction of the vehicle 72 together with the sector gear 42, so that the tailgate 73 is opened and closed.
Note that the reference numeral 82 denotes a gas stay for subserving opening and closing of the tailgate 73.
In the drive unit 23 illustrated in
As illustrated in
Meanwhile, a locking block 93 is provided to the main body portion 33a of the gear case 33 of the drive unit 91 corresponding to the locking piece 92a of the gear cover 92. The locking block 93 is integrally formed with the main body 33a, and disposed on the outer surface of the main body portion 33a to be adjacent to the pinion 37 in a direction to be away from the output shaft 35 on an extended line connecting the output shaft 35 and the support shaft 41. That is, the locking block 93 is disposed on an outer periphery side of the sector gear 42 on the main body 33a of the gear case 33. A fixing hole 93a extended along a diametrical direction of the output shaft 35 is provided to the locking block 93 as illustrated in
A bolt 94 as a fastening member is inserted into the bolt hole 92a provided at the middle portion of the gear cover 92. As illustrated in
In this manner, in the drive unit 93, in the same manner as the gear cover 51 of the drive unit 23 illustrated in
As illustrated in
A supporting-shaft supporting hole 92e is provided to the other end of the gear cover 92, that is, an end portion in a longitudinal direction on a side being opposite to the side where the locking piece 92a is provided. A tip portion 47a, which is a tip of the shaft 47 inserted to the spouted portion of the support shaft 41 supporting the sector gear 42, is inserted into the supporting-shaft supporting hole 92e. Also, a tip portion 47a that is a tip of the shaft 47 is locked to the gear cover 92 by caulking not to drop out of the supporting hole 92e. In this manner, in the drive unit 91, an end of the support shaft 41 is supported by the base portion 33b of the gear case 33, and also the other end (tip) protruding from the base portion 33b is supported by the gear cover 92. In this manner, the support shaft 41 is supported at its both sides in the shaft direction interposing the sector gear 42, and thus the supporting rigidity is increased. Therefore, an inclination of the sector gear 42 around the support shaft 41 of the sector gear is suppressed, and the mesh accuracy of the sector gear 42 and the pinion 37 is increased.
As illustrated in
As illustrated in
In the drive unit 23 illustrated in
The main body portion 33a and the base portion 33b are assembled to each other at parts of themselves in a thickness direction (the shaft direction of the bolt 94). And, the main body portion 33a and the base portion 33b are fastened to each other by the bolt 94 for fixing the gear cover 92 to the gear case 33 as the main body portion 33a and the base portion 33b are being assembled to each other. That is, as illustrated in
In addition, in the drive unit 23 illustrated in
In contrast, in the drive unit 91 illustrated in
The gear cover 92 illustrated in
Note that, in
It is needless to say that the present invention is not limited to the foregoing embodiments and various modifications and alterations can be made within the scope of the present invention. For example, while descriptions have been made about the present invention applied to the power window apparatus 21 and the power tailgate 71 of a vehicle in the present embodiment, it is not limited to this and the present invention may be applied to another automatic opening and closing apparatus for vehicle as long as the present invention is applied to an automatic opening and closing apparatus for vehicle which automatically opens and closes an opening and closing body provided to a vehicle.
In addition, while the driven gear has been described as the sector gear 42 in a fan shape, it is not limited to this and a gear in a circular shape having a gear portion in the whole periphery may be used.
While the present invention has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this invention may be made without departing from the spirit and scope of the present.
Number | Date | Country | Kind |
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2008-071765 | Mar 2008 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2009/055490 | 3/19/2009 | WO | 00 | 9/17/2010 |
Publishing Document | Publishing Date | Country | Kind |
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WO2009/116640 | 9/24/2009 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3900965 | Mummert | Aug 1975 | A |
4000581 | Fukumoto et al. | Jan 1977 | A |
4905413 | Kuki et al. | Mar 1990 | A |
4986029 | Richter | Jan 1991 | A |
5085004 | Beauprez | Feb 1992 | A |
5101596 | Moore | Apr 1992 | A |
5111620 | Lau et al. | May 1992 | A |
5513468 | Diestelmeier | May 1996 | A |
5595025 | MacPhail-Fausey | Jan 1997 | A |
5653144 | Fenelon | Aug 1997 | A |
5715630 | Szerdahelyi et al. | Feb 1998 | A |
6075298 | Maue et al. | Jun 2000 | A |
6114820 | Nishigaya | Sep 2000 | A |
6320335 | Saitou | Nov 2001 | B1 |
6530175 | Sato et al. | Mar 2003 | B2 |
7810281 | Warren et al. | Oct 2010 | B2 |
7849634 | Subinas | Dec 2010 | B2 |
8061083 | Shirai et al. | Nov 2011 | B2 |
20030167695 | Regnier et al. | Sep 2003 | A1 |
20050198903 | Isomura et al. | Sep 2005 | A1 |
20080127563 | Tooker | Jun 2008 | A1 |
20080168714 | Watanabe et al. | Jul 2008 | A1 |
20100107502 | Okada et al. | May 2010 | A1 |
20100242364 | Magro | Sep 2010 | A1 |
20110023368 | Mizutani et al. | Feb 2011 | A1 |
20110314739 | Kaburaki | Dec 2011 | A1 |
20110314740 | Mori et al. | Dec 2011 | A1 |
20120017512 | Lee et al. | Jan 2012 | A1 |
Number | Date | Country |
---|---|---|
1928307 | Mar 2007 | CN |
416285 | Feb 1992 | JP |
11036698 | Feb 1999 | JP |
11062378 | Mar 1999 | JP |
11336420 | Dec 1999 | JP |
2001090796 | Apr 2001 | JP |
Entry |
---|
The International Search Report from corresponding International Application No. PCT/JP2009/055490 dated Apr. 28, 2009 (4 pages). |
Office Action and English Translation received in corresponding Chinese Patent Application No. 200980109811.2 dated Sep. 29, 2012. |
Number | Date | Country | |
---|---|---|---|
20110023369 A1 | Feb 2011 | US |