This application claims priority to Chinese Patent Application No. 201510063445.9, filed Feb. 5, 2015, the entire contents of which are incorporated by reference.
Aspects of the present invention generally relate to a ring binder mechanism for retaining loose-leaf pages. More particularly, aspects of the present invention relate to a ring binder mechanism with ring members having interlocking formations for securing the ring members in a closed position.
Ring binder mechanisms having rings for selectively retaining loose-leaf pages are well known. These mechanisms are commonly fastened to other structures such as notebook covers, files, clipboards, and the like to enable the rings to retain loose-leaf pages. The rings of ring binder mechanisms typically include two ring members that are selectively movable between an open position for receiving loose-leaf pages and a closed position for retaining loose- leaf pages. Conventionally, the ring members are hingedly connected to a base for pivoting movement relative the base. When the ring binder mechanism retains loose-leaf pages in the closed position, it is preferable for the rings to remain secured in the closed position. For certain types of ring binder mechanisms, when the rings are in the closed position, the rings are biased by a spring force towards the closed position to prevent unintended opening of the rings. The ring members of these and other types of ring binder mechanisms can also include interlocking formations that secure the ring in the closed position. However, known interlocking formations can be prone to disengagement in response to forces urging the ring members to pivot toward their open position. For example, if a ring binder loaded with paper is dropped, the ring members can be subject to lateral forces in the same direction as the ring member naturally opens. Some interlocking formations may be inadequate to resist such forces.
In one aspect, a ring binder for use in holding loose-leaf pages comprises an elongate base. Rings for retaining loose leaf pages include first and second ring members movable relative to one another between a closed position in which the first and second ring members together form a substantially continuous closed loop and an open position in which the first and second ring members form a discontinuous open loop. At least one of the first and second ring members are hingedly connected to the elongate base for selective pivoting movement toward the open and closed positions. A retaining system is configured to selectively and releasably hold the first and second ring members in the closed position. The retaining system comprises first and second interlocking formations adjacent ends of the first and second ring members, respectively. The first and second interlocking formations are selectively movable relative to one another between a retaining position in which the retaining system holds the first and second ring members in the closed position and a non-retaining position in which the retaining system does not hold the first and second ring members in the closed position. The first interlocking formation comprises a projection having a free end. The free end has a void configured and arranged to permit resilient bending of portions of the free end of the projection in a first direction as they engage the second interlocking formation when the interlocking formations are moved from the non-retaining position to the retaining position. Said portions of the free end of the projection are arranged relative the void so that in the retaining position said portions are substantially inhibited from bending in a second direction in response to the pivoting movement of said at least one of the ring members.
In another aspect, a ring binder for use in holding loose-leaf pages comprises an elongate base having a length and opposite longitudinal sides and rings for retaining loose leaf pages. Each ring includes first and second ring members movable between a closed position in which the first and second ring members form a continuous closed loop and an open position in which the first and second ring members form a discontinuous open loop. Each ring member includes a proximal end connected to the base and an opposite distal end. The first ring member comprises a first interlocking portion adjacent the distal end thereof and the second ring member comprises a second interlocking portion adjacent the distal end thereof. The first interlocking portion comprises a first interlocking formation, and the second interlocking portion comprises a second interlocking formation. The interlocking formations are configured to selectively and releasably engage one another for holding the ring members in the closed position. The interlocking formations are selectively movable relative to one another between a retaining position in which the interlocking formations engage one another to hold the first and second ring members in the closed position and a non-retaining position in which the interlocking formations do not engage one another to hold the first and second ring members in the closed position. The first interlocking formation comprises a projection extending along an axis generally lengthwise of the elongate base and having a free end. The free end of the projection comprises a single elongate slot having opposite sides and extending transverse to the axis of the projection and between the opposite longitudinal sides of the elongate base in the retaining position. The projection comprises a finger adjacent each of the opposite sides of the elongate slot. The fingers are adapted to engage the second interlocking formation and resiliently bend inward toward the slot as the interlocking formations are moved from the non-retaining position to the retaining position and configured to resist bending in a transverse direction between the opposite longitudinal sides of the elongate base in the retaining position.
Other objects and features will be in part apparent and in part pointed out hereinafter.
Corresponding reference characters indicate corresponding parts throughout the drawings.
Referring to
With further reference to
Referring to
A curved arm portion 68 extends between the proximal and distal ends of each of the ring members 32, 34. The curved arm portion 68 of each ring member 32, 34 has a substantially circular cross sectional shape. When the ring members 32, 34 are in the closed position, the curved arm portions 68 form a loop having a generally circular shape (
Referring again to
The ring binder mechanism 10 does not bias the ring members 32, 34 toward either of the open or closed positions. Without the retaining system 40, the ring members 32, 34 would be substantially free to pivot in the opening direction D1 from the closed position. As discussed in greater detail below, the retaining system 40 secures the ring members 32, 34 in the closed position to prevent unintended opening of the rings 30 during use, particularly in response to forces urging movement of the ring members in the opening and closing directions D1, D2. Though ring members 32, 34 are not biased toward either of the open or closed positions, it is contemplated that the ring members could be biased toward the open and closed positions as is well known in the art without departing from the scope of the invention.
Referring to
When the ring 30 is closed, the interlocking portions 82, 84 of the first and second ring members 32, 34 overlap one another. As shown in
Referring to
Referring to
The projection 92 includes radially spaced apart top and bottom fingers 100, 102 that collectively form an axially extending post. Each finger 100, 102 has opposite lateral sides 96, which are respectively spaced apart from one another along an axis oriented generally parallel to the lateral axis A2 in the closed position. The radially outward surface of each finger 100, 102 also defines a radial end 98 of the projection 92. The radial ends 98 of the projection 92 are vertically spaced apart from one another (i.e., along an axis that extends transverse to the longitudinal and lateral axes A1, A2) in the closed position. When the ring 30 is closed, the top finger 100 is positioned above the bottom finger 102 relative the base 20 (i.e., the top finger 100 is spaced apart from the base 20 a greater distance than the bottom finger 102). The first and second fingers 100, 102 define the entire radial extent of the free end of the projection 92. The two fingers 100, 102 are connected at their bases to the first interlocking portion 82 of the first ring member 32 and remain separate from one another along the entire axial extent of the projection 92. The fingers could also be separate from one another at the free end of the projection and together at the base of the projection without departing from the scope of the invention.
Each of the fingers 100, 102 has an arcuate radially outer surface and a substantially planar radially inner surface that extend axially between the base and free end of the finger. When the ring 30 is closed, the substantially planar radially inner surface of each of the fingers 100, 102 is positioned in a respective plane oriented generally parallel to by the longitudinal axis A1 and lateral axis A2 of the base 20. The radially outer surface of each of the fingers 100, 102 forms a radially outwardly extending lip 104 at the free end of the respective finger. As discussed in greater detail below, the lip 104 is configured to engage an opposed surface of the second interlocking portion 84 when the ring members 32, 34 are closed to inhibit the projection 92 from sliding out of the opening 94 in response to forces causing the first interlocking portion 82 to move away from the second interlocking portion in a direction parallel to the projection axis A4.
A single elongate slot 110 (broadly, a void) of generally rectilinear cross-sectional shape is formed in the free end of the projection 92. The slot 110 is configured and arranged to permit resilient bending of the free ends of the fingers 100, 102 radially inwardly in a bending direction D3 along bending axes A5, A6 into the slot. The bending direction D3 is a vertical direction oriented transverse to the longitudinal and lateral axes A1 and A2 in the closed position. The bending axis A5, A6 of each finger 100, 102 is generally parallel to the lateral axis A2 of the elongate base 20 in the retaining position. Moreover, the slot 110 is configured and arranged relative the fingers 100, 102 to substantially inhibit the fingers from bending in a direction transverse to the bending direction D3 when the ring members 32, 34 pivot in the opening and closing directions D1, D2 from the retaining position. As explained below, in the retaining position, the retaining system 40 thus provides robust interlocking engagement against the pivoting movement of the ring members 32, 34 in the opening and closing directions D1, D2.
The slot 110 extends laterally through the projection from one side 96 to the other. The slot 110 also extends axially through the projection 92 from the free end through the entire axial extent of the projection and further into the first interlocking portion 92 (see
As shown for example in
Referring further to
In the retaining position, the fingers 100, 102 are arranged relative the slot 110 to substantially inhibit bending in a direction transverse to the bending direction D3 (i.e., along an axis oriented transverse to the bending axes A5, A6) in response to the pivoting movement of either of the ring members 32, 34 in the opening and closing directions D1, D2. Furthermore, the projection 92 is configured to resist bending of any portion thereof in a direction substantially parallel to a direction in which the projection is urged to travel in response to forces tending to cause pivoting movement of the first and second ring members 30, 32 in the opening and closing directions D1, D2. The fingers 100, 102 substantially fill end portions of the opening 94 adjacent the radial ends 118 thereof. The fingers 100, 102 each extend laterally across the opening from one of the sides 116 to the other and have no voids formed between their opposite sides 96. As a result, the fingers 100, 102 are each a solid piece of material that is substantially inhibited from bending toward or away from the sides 116 of the opening 94 in response to relative movement of the first and second interlocking portions 82, 84 in a direction transverse to the bending direction D3. By comparison, the slot 110 forms a void in the projection 92 that separates the fingers 100, 102 between the radial ends 118 of the opening 94. The fingers 100, 102 are, therefore, substantially free to resiliently bend radially inward into the slot 110 along the bending axes A5, A6 and substantially inhibited from bending along axes oriented transverse to the bending axes.
In the retaining position, attempts to pivot the ring members 32, 34 in the opening and closing directions D1, D2 causes the first and second interlocking portions 82, 84 to try to move relative one another in a direction generally parallel to the lateral axis A2 and in the loop plane P. When either of the ring members 32, 34 tries to pivot in the opening or closing direction D1, D2, a side wall 96 of the projection 92 engages a side wall 116 of the opening 94. However, since the fingers 100, 102 fill the distal ends 118 of the opening 94 from one side 116 to the other, they do not bend radially inward toward or away from either side in response to the engagement with the sidewalls. Accordingly, the projection 92 and opening 94 are arranged and configured to substantially inhibit movement relative one another in response to attempts to pivot either of the ring members 32, 34 in the opening and closing directions D1, D2.
As shown in
As the ring members 32, 34 move from the non-retaining position to the retaining position, the radial ends 98 of the free end of the projection 92 engage the wall 120 defining the opening 94. The radial ends 118 of the opening 117 engage the radial ends 98 of the free ends of the fingers 100, 102 and apply a radially inwardly oriented force on the fingers in a direction parallel to the bending direction D3. As the interlocking portions 82, 84 are moved from the non-retaining position to the retaining position, the fingers 100, 102 resiliently bend radially inwardly toward the slot 110 in the bending direction D3. The fingers 100, 102 bend radially inwardly until the lips 104 are positioned radially inwardly of the lip 122. As the projection 92 is inserted further into the opening 94, the fingers 100, 102 resiliently return radially outwardly until the ring members 32, 34 reach the retaining position.
The arrangement of the fingers 100, 102 and the slot 110 substantially inhibits bending about an axis oriented transverse to the bending axes A5, A6 as the ring members 32, 34 move from the non-retaining position to the retaining position. As the ring members 32, 34 move from the non-retaining position to the retaining position, both sides 96 of the fingers 100, 102 engage the sides 116 of the opening 94. Since no voids are formed in the fingers 100, 102 between the opposite sides 96 thereof, the fingers do not bend inwardly in response to the engagement with the sides 116 of the opening. Moreover, since the fingers 100, 102 are sized to simultaneously engage both sides 116 of the opening 94 as they are inserted into it, they cannot bend side to side in a direction generally parallel to the lateral axis A2 within the opening.
In the retaining position, the projection 92 extends axially into the opening 94 so that the radial sides and ends 96, 98 engage the opening wall 120 to inhibit movement of the projection 92 relative the opening 94. The radially inwardly extending lip 122 of the opening wall 120 engages the radially outwardly extending lips 104 of the fingers 100, 102 to resist movement of the first interlocking portion 82 away from the second interlocking portion 84 in a direction parallel to the projection axis A4. In addition, the fingers 100, 102 substantially fill the radial ends 118 of the opening 94 from one side 116 to the other. Though the fingers 100, 102 are relatively free to bend radially inwardly into the slot 110 in the bending direction D3, the fingers are substantially inhibited from bending in the loop plane P in a direction transverse to the bending direction. Moreover, as discussed above, in the retaining position, the fingers 100, 102 are substantially inhibited from bending in response to the pivoting movement of the ring members 32, 34 in the opening and closing directions D1, D2.
To open the rings 30, the ring members 32, 34 are moved away from one another in a direction generally parallel to the longitudinal axis A1 of the base 20 (and parallel to the projection axis A4) to remove the projection 92 from the opening 94. As the projection 92 is removed from the opening 94, the radial ends 98 of the projection 92 engage the wall 120 defining the opening and apply a radially inwardly oriented force on the fingers 100, 102. The fingers 100, 102 resiliently bend inward about their bending axes A5, A6 in response to the engagement until the radially outwardly extending lips 104 are disposed radially inwardly of the radially inwardly extending lip 122. The radially outwardly extending lips 104 pass over the radially inwardly extending lip 104 and the projection 92 is removed from the opening 94. Subsequently, the ring members 32, 34 can be pivoted in the opening direction D2 until they reach the open position.
It is preferable for a ring binder mechanism to have a retaining system that securely holds the rings in the closed position. In the illustrated embodiment, the ring members 32, 34 close by pivoting in the closing direction D2 and moving parallel to the projection axis A4 in an insertion direction. Accordingly, it is preferable for the retaining system 40 to substantially inhibit the ring members 3234 from unintended movements in directions opposite the closing direction D2 and insertion direction. The retaining system 40 provides interlocking lips 104, 122 on the projection 92 and opening 94, respectively, to inhibit movement of the ring members in a direction opposite the insertion direction. However, the interlocking lips 104 of the projection 92 extend radially outwardly beyond the radially inward end of the lips 122 of the opening 94. Accordingly, to enable insertion of the projection 92 into the opening 94, the lips 104, 122 must be radially deformable relative one another. Because the ring members 32, 34 are designed to pivot in the opening and closing directions D1, D2, it is preferable to enable the necessary deformation without adversely affecting the interlocking engagement provided by the retaining system 40 against the pivoting movement of the ring members. The illustrated retaining system 40 achieves the necessary radial deformation of the projection 92 relative the opening 94 without adversely affecting the strength of the interlocking engagement for inhibiting the pivoting movement of the ring members 32, 34 by arranging the slot 110 relative the fingers 100, 102 so that the fingers bend radially inwardly in the bending direction D3 and are substantially inhibited from bending in a direction transverse to the bending direction.
When introducing elements of the present invention or the preferred embodiment(s) thereof, the articles “a”, “an”, “the” and “said” are intended to mean that there are one or more of the elements. The terms “comprising”, “including” and “having” are intended to be inclusive and mean that there may be additional elements other than the listed elements.
As various changes could be made in the above apparatuses, systems, and methods without departing from the scope of the invention, it is intended that all matter contained in the above description and shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.
Number | Date | Country | Kind |
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2015 1 0063445 | Feb 2015 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
470050 | Jewell | Mar 1892 | A |
683019 | Buchanan | Sep 1901 | A |
692584 | Adams et al. | Feb 1902 | A |
724849 | Gresham | Apr 1903 | A |
763176 | Gresham et al. | Jun 1904 | A |
778992 | Nelson | Jan 1905 | A |
792389 | Boehner | Jun 1905 | A |
812397 | Boehner | Feb 1906 | A |
840949 | Mendenhall | Jan 1907 | A |
842851 | Boden | Feb 1907 | A |
857377 | Baker | Jun 1907 | A |
901076 | Dawson | Oct 1908 | A |
904618 | Kellner, Jr. | Nov 1908 | A |
936448 | Hamacher | Oct 1909 | A |
959182 | Trussell | May 1910 | A |
968657 | Hamacher et al. | Aug 1910 | A |
974831 | Scherzinger | Nov 1910 | A |
1020561 | Krumming | Mar 1912 | A |
1025170 | Trussell | May 1912 | A |
1105196 | Hanke | Jul 1914 | A |
1163179 | Schade, Jr. | Dec 1915 | A |
1165766 | Elder | Dec 1915 | A |
1231816 | Vesterling | Jul 1917 | A |
1331226 | Adams | Feb 1920 | A |
1398034 | Mero | Nov 1921 | A |
1398388 | Murphy | Nov 1921 | A |
1398540 | Day | Nov 1921 | A |
1402018 | Schade | Jan 1922 | A |
1473354 | Nachtrieb | Nov 1923 | A |
1548748 | Riley | Aug 1925 | A |
1610985 | Vea | Dec 1926 | A |
1733548 | Martin | Oct 1929 | A |
1733894 | Martin | Oct 1929 | A |
1765353 | Myers | Jun 1930 | A |
1787957 | Schade | Jan 1931 | A |
1797447 | Savidge | Mar 1931 | A |
1816021 | Meyerson | Jul 1931 | A |
1919784 | Frieberg | Jul 1933 | A |
1932874 | Adams et al. | Oct 1933 | A |
1991362 | Krag | Feb 1935 | A |
1996463 | Dawson et al. | Apr 1935 | A |
2013416 | McClure | Sep 1935 | A |
2020129 | Wedge | Nov 1935 | A |
2024461 | Lotter | Dec 1935 | A |
2030473 | Schade | Feb 1936 | A |
2075766 | Rand | Mar 1937 | A |
2077677 | Dawson et al. | Apr 1937 | A |
2088431 | Newman | Jul 1937 | A |
2089211 | Krag | Aug 1937 | A |
2096944 | Unger et al. | Oct 1937 | A |
2104046 | Krag | Jan 1938 | A |
2105235 | Schade | Jan 1938 | A |
2119639 | Lotter | Jun 1938 | A |
2158056 | Cruzan | May 1939 | A |
2179627 | Handler | Nov 1939 | A |
2204918 | Trussell | Jun 1940 | A |
2218105 | Griffin | Oct 1940 | A |
2236321 | Ostrander | Mar 1941 | A |
2239121 | St. Louis et al. | Apr 1941 | A |
2252422 | Unger | Aug 1941 | A |
2260929 | Bloore | Oct 1941 | A |
2268431 | Slonneger | Dec 1941 | A |
2288189 | Guinane | Jun 1942 | A |
2304716 | Supin | Dec 1942 | A |
2311492 | Unger | Feb 1943 | A |
2311620 | Murphy | Feb 1943 | A |
2322595 | Schade | Jun 1943 | A |
2363848 | Emmer | Nov 1944 | A |
2389115 | Anderson | Nov 1945 | A |
2421799 | Martin | Jun 1947 | A |
2460718 | Stevens | Feb 1949 | A |
2528866 | Dawson, Jr. | Nov 1950 | A |
2543866 | Panfil, Sr. | Mar 1951 | A |
2548618 | Purvis | Apr 1951 | A |
2612169 | Segal | Sep 1952 | A |
2645227 | Segal | Jul 1953 | A |
2664897 | Derringer | Jan 1954 | A |
2711555 | Hanson | Jun 1955 | A |
2715906 | Lucchesi | Aug 1955 | A |
2865377 | Schroer et al. | Dec 1958 | A |
2871711 | Stark | Feb 1959 | A |
2891553 | Acton | Jun 1959 | A |
3077888 | Thieme | Feb 1963 | A |
3098489 | Vernon | Jul 1963 | A |
3098490 | Wance | Jul 1963 | A |
3104667 | Mintz | Sep 1963 | A |
3105494 | Duncan | Oct 1963 | A |
3135266 | Bouhier | Jun 1964 | A |
3149636 | Rankin | Sep 1964 | A |
3153417 | Newman | Oct 1964 | A |
3190293 | Schneider et al. | Jun 1965 | A |
3205894 | Rankin | Sep 1965 | A |
3205895 | Johnson | Sep 1965 | A |
3246653 | Sexton | Apr 1966 | A |
3251364 | Goldman | May 1966 | A |
3253842 | Rabe | May 1966 | A |
3255759 | Dennis | Jun 1966 | A |
3270749 | O'Connell | Sep 1966 | A |
3275005 | Cott | Sep 1966 | A |
3313304 | Beyer | Apr 1967 | A |
3331373 | Lohmeier | Jul 1967 | A |
3348550 | Wolf et al. | Oct 1967 | A |
3718402 | Schade | Feb 1973 | A |
3728036 | Cott | Apr 1973 | A |
3748051 | Frank | Jul 1973 | A |
3827111 | O'Connell | Aug 1974 | A |
3833308 | Seaborn | Sep 1974 | A |
3884586 | Michaelis et al. | May 1975 | A |
3954343 | Thomsen | May 1976 | A |
3993374 | Schudy et al. | Nov 1976 | A |
3995961 | Dorfman et al. | Dec 1976 | A |
4127340 | Almgren | Nov 1978 | A |
4130368 | Jacoby et al. | Dec 1978 | A |
4308637 | Kucera | Jan 1982 | A |
4352582 | Eliasson | Oct 1982 | A |
4415290 | Ohminato | Nov 1983 | A |
4486112 | Cummins | Dec 1984 | A |
4522526 | Lozfau et al. | Jun 1985 | A |
4551118 | Spisz | Nov 1985 | A |
4566817 | Barrett, Jr. | Jan 1986 | A |
4571108 | Vogl | Feb 1986 | A |
4577985 | Beyer | Mar 1986 | A |
4607970 | Heusinkveld | Aug 1986 | A |
4624595 | Ohminato | Nov 1986 | A |
4678357 | Kissel et al. | Jul 1987 | A |
4690580 | Kissel | Sep 1987 | A |
4693624 | Moosmuller | Sep 1987 | A |
4696595 | Pinkney | Sep 1987 | A |
4798491 | Lassle | Jan 1989 | A |
4813803 | Gross | Mar 1989 | A |
4815882 | Ohminato | Mar 1989 | A |
4886390 | Silence et al. | Dec 1989 | A |
4904103 | Im | Feb 1990 | A |
4919557 | Podosek | Apr 1990 | A |
D317177 | Wandemberg-Boschetti | May 1991 | S |
5018896 | Vanni | May 1991 | A |
5116157 | Gillum et al. | May 1992 | A |
5180247 | Yu | Jan 1993 | A |
5201101 | Rouser et al. | Apr 1993 | A |
5255991 | Sparkes | Oct 1993 | A |
5286128 | Gillum | Feb 1994 | A |
5354142 | Yu | Oct 1994 | A |
5367742 | Bindman | Nov 1994 | A |
5368407 | Law | Nov 1994 | A |
5392848 | Bottcher et al. | Feb 1995 | A |
5393156 | Mullin et al. | Feb 1995 | A |
5476335 | Whaley | Dec 1995 | A |
5618122 | Constantine | Apr 1997 | A |
5642954 | Hudspith | Jul 1997 | A |
5660490 | Warrington | Aug 1997 | A |
5692847 | Zane et al. | Dec 1997 | A |
5692848 | Wada | Dec 1997 | A |
5697722 | Hladik et al. | Dec 1997 | A |
5718529 | Chan | Feb 1998 | A |
5765956 | Lanzarin | Jun 1998 | A |
5782569 | Mullin et al. | Jul 1998 | A |
5807006 | Cheung | Sep 1998 | A |
5810499 | Law | Sep 1998 | A |
5816729 | Whaley | Oct 1998 | A |
5827004 | Kim | Oct 1998 | A |
5868513 | Law | Feb 1999 | A |
5895164 | Wu | Apr 1999 | A |
5938365 | Grewe et al. | Aug 1999 | A |
5975784 | Whaley | Nov 1999 | A |
5975785 | Chan | Nov 1999 | A |
6036394 | Cheng | Mar 2000 | A |
D430204 | Berracasa | Aug 2000 | S |
6109813 | To et al. | Aug 2000 | A |
6155737 | Whaley | Dec 2000 | A |
6179507 | Lam | Jan 2001 | B1 |
6179508 | Coerver | Jan 2001 | B1 |
6203229 | Coerver | Mar 2001 | B1 |
6206601 | Ko | Mar 2001 | B1 |
6217247 | Ng | Apr 2001 | B1 |
6270279 | Whaley | Aug 2001 | B1 |
6270280 | Baumann | Aug 2001 | B1 |
6276862 | Snyder et al. | Aug 2001 | B1 |
6293722 | Holbrook et al. | Sep 2001 | B1 |
6328497 | To | Dec 2001 | B1 |
6364558 | To | Apr 2002 | B1 |
6467984 | To | Oct 2002 | B1 |
6514000 | Youngs et al. | Feb 2003 | B2 |
6749357 | Cheng | Jun 2004 | B2 |
6761497 | Kaneda | Jul 2004 | B2 |
6840695 | Horn | Jan 2005 | B2 |
D533588 | Cheng | Dec 2006 | S |
7223040 | Koike et al. | May 2007 | B2 |
7275886 | Cheng | Oct 2007 | B2 |
7293932 | Wong | Nov 2007 | B2 |
7296946 | Cheng et al. | Nov 2007 | B2 |
7360962 | To | Apr 2008 | B2 |
7478963 | Tanaka et al. | Jan 2009 | B2 |
7549817 | Cheng et al. | Jun 2009 | B2 |
7600939 | Liu et al. | Oct 2009 | B2 |
8002488 | Cheng | Aug 2011 | B2 |
20030044221 | To et al. | Mar 2003 | A1 |
20030103798 | Cheng et al. | Jun 2003 | A1 |
20030123923 | Koike et al. | Jul 2003 | A1 |
20040086323 | Taneka et al. | May 2004 | A1 |
20050013654 | Cheng et al. | Jan 2005 | A1 |
20050201818 | Cheng | Sep 2005 | A1 |
20050207826 | Cheng et al. | Sep 2005 | A1 |
20050271459 | To et al. | Dec 2005 | A1 |
20060024124 | Cheng | Feb 2006 | A1 |
20060153628 | Tanaka et al. | Jul 2006 | A1 |
20060153630 | Cheng | Jul 2006 | A1 |
20080080925 | Cheng | Apr 2008 | A1 |
20080080926 | Liu et al. | Apr 2008 | A1 |
20090110470 | To et al. | Apr 2009 | A1 |
20100003070 | Cheng | Jan 2010 | A1 |
20100150642 | Lee | Jun 2010 | A1 |
20110305500 | To | Dec 2011 | A1 |
Number | Date | Country |
---|---|---|
867999 | Dec 1978 | BE |
1084809 | Apr 1994 | CN |
2254407 | May 1997 | CN |
2740416 | Nov 2005 | CN |
2790771 | Jun 2006 | CN |
201613729 | Oct 2010 | CN |
202071539 | Dec 2011 | CN |
2540340 | Apr 1977 | DE |
1681157 | Jul 2006 | EP |
2002990 | Dec 2008 | EP |
1336765 | Sep 1963 | FR |
1346864 | Dec 1963 | FR |
2221924 | Oct 1974 | FR |
2238332 | Feb 1975 | FR |
868724 | May 1961 | GB |
906279 | Sep 1962 | GB |
952536 | Mar 1964 | GB |
1101760 | Jan 1968 | GB |
1452738 | Oct 1976 | GB |
2292343 | Feb 1996 | GB |
2387815 | Oct 2003 | GB |
5979379 | May 1984 | JP |
6118880 | Feb 1986 | JP |
1299095 | Dec 1989 | JP |
2034289 | Mar 1990 | JP |
4120085 | Oct 1992 | JP |
3042732 | Oct 1997 | JP |
2007050684 | Mar 2007 | JP |
0018585 | Apr 2000 | WO |
0074950 | Dec 2000 | WO |
2005035265 | Apr 2005 | WO |
2011153950 | Dec 2011 | WO |
Number | Date | Country | |
---|---|---|---|
20160229216 A1 | Aug 2016 | US |