Locking device with passage

Information

  • Patent Grant
  • 7730751
  • Patent Number
    7,730,751
  • Date Filed
    Wednesday, January 28, 2009
    15 years ago
  • Date Issued
    Tuesday, June 8, 2010
    14 years ago
Abstract
A lock device for use with a key is disclosed. The lock device includes a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle, and a driver structure including a plurality of driver structure bores. An interface between the driver structure and the locking spindle forms a shear line. The lock device also includes a plurality of combination pins in the plurality of locking spindle bores, and a plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins.
Description
BACKGROUND OF THE INVENTION

Recent news reports indicate that the plastic barrel of a certain type of pen can be used to open a certain type of tubular lock that is present on bicycle locks. According to the news reports, the plastic barrel can be inserted into the keyway of the tubular lock, and after some effort, the lock can be opened. The insertion of the plastic barrel into the keyway of a tubular lock can mold the plastic barrel to the shape of a key, and the molded barrel could be potentially used to turn the lock.


Improvements to deter this type of lock picking would be desirable.


BRIEF SUMMARY OF THE INVENTION

Embodiment of the invention are directed to lock devices, locking apparatuses, locking systems, and methods for using the same.


One embodiment of the invention is directed to a lock device for use with a key with an extended portion, the lock device comprising: a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle; a driver structure including a plurality of driver structure bores, wherein an interface between the driver structure and the locking spindle forms a shear line; a plurality of combination pins in the plurality of locking spindle bores; and a plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins, wherein the passage is configured to receive the extended portion of the key, and wherein the extended portion extends to the shear line when the key is used to turn the locking spindle.


Another embodiment of the invention is directed to a locking apparatus comprising: a lock device comprising a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle, a driver structure including a plurality of driver structure bores, wherein an interface between the driver structure and the locking spindle forms a shear line, a plurality of combination pins in the plurality of locking spindle bores, and a plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins; and a key including a coded portion and an extended portion, wherein the extended portion is configured to fit in the passage and extends to the shear line.


Another embodiment of the invention is directed to a method for using a lock device, the method comprising: inserting a key into a keyway of a lock device, wherein the key includes an extended portion that passes through a passage in a locking spindle in the lock device and to a shear line between the locking spindle and a driver structure; and turning the key.


Other embodiments of the invention are described in further detail below.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 discloses a cross-sectional perspective view of a lock assembly according to an embodiment of the invention.



FIG. 2 discloses a side view of a key according to an embodiment of the invention.



FIG. 3 shows a front, cross-sectional view of a lock device along the line 3-3 in FIG. 1.



FIG. 4 shows a front, cross-sectional view of a lock device along the line 4-4 in FIG. 1.



FIG. 5 shows a front view of a lock device according to an embodiment of the invention.



FIG. 6 is a perspective view of a lock device with a portion of the lock device being removed.



FIG. 7 shows a schematic view showing how a lock assembly according to an embodiment of the invention would work with a key having an extended alignment structure.



FIG. 8 shows a schematic view showing how the lock device would function if one tries to turn the locking spindle with an unauthorized tubular structure.



FIG. 9 shows a perspective view of another lock device according to another embodiment of the invention.



FIG. 10 shows pins and a locking member when they are present within a security slot in a housing of a portable electronic device.





DETAILED DESCRIPTION

One embodiment of the invention is directed to a lock device for use with a key with an extended portion. The lock device may be a cylinder lock. In one embodiment, the lock device comprises a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle, and a driver structure including a plurality of driver structure bores. (As used herein, “along an axial length” includes a passage that extends at least partially along a portion of the locking spindle.) An interface between the driver structure and the locking spindle forms a shear line. The lock device also includes a plurality of combination pins in the plurality of locking spindle bores, and a plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins. The extended portion of the key can extend exactly or approximately to the shear line to provide a temporary solid interface portion for the locking spindle. As a result, the driver pins in the driver structure stay on one side of the shear line when an authorized key is used to lock and/or unlock the lock device.


The lock devices according to embodiments of the invention can be used to secure or prevent the theft of any suitable types of articles. Such articles include bicycles, furniture, etc. However, the articles that can be secured by the lock devices according to embodiments of the invention are preferably portable electronic devices. Examples of portable electronic devices include portable computers (e.g., laptop computers), wireless phones, portable music players, DVRs (digital video recorders), flat panel displays and television sets, etc.



FIG. 1 shows a locking apparatus 100 according to an embodiment of the invention. The locking apparatus 100 includes a key 20 and a lock device 102. These components, alone or in conjunction with other components, can form a locking apparatus according to an embodiment of the invention.


The key 20 includes a handle 22, an extended portion 26 and a coded portion 24 between the extended portion 26 and the handle 22. These features are described in further detail below.


The lock device 102 includes a housing 90. In this example, the housing 90 may include a tubular or cylindrical structure. It may be made of a material such as stainless steel or any other hard material.


A cable 30 or the like may be attached to the housing 90. The cable 30 may be a stainless steel cable or the like. In some embodiments, a distal end of the cable 30 may include a loop. To secure an article to an immovable object (e.g., a desk), the cable 30 may be looped around a portion of an immovable object (e.g., a leg of a desk) and the head of the lock device may pass through the loop. The lock device 102 may be attached to the article using a locking member that is present in the lock device 102. In some cases, the article may include a slot through which the locking member is inserted. The locking member may then be configured to a locked position to secure the head of the lock device to the article, and consequently to the immovable object.


Various components may be inside of the housing 90 of the lock device 102. For example, as illustrated in FIG. 1, a locking spindle 42 is cooperatively engaged with a driver structure 44 inside of the housing 90. In embodiments of the invention, the locking spindle 42 may rotate with respect to the driver structure 44. A shear line S may be defined by an interface between the driver structure 44 and the locking spindle 42.


The locking spindle 42 has a proximate end 42(a) near the front of the lock device 102 and a distal end 42(b) near the rear of the lock device 102. As shown in FIG. 1, the distal end 42(b) of the locking spindle 42 passes through the center of the driver structure 44. The locking spindle 42 can turn or rotate (clockwise or counterclockwise) relative to the driver structure 44, when the combination pins and driver pins do not lie across the shear line S.


The proximate end 42(a) includes a cylindrical portion including a number of locking spindle bores 42(c). The locking spindle bores 42(c) extend axially through the cylindrical portion of the locking spindle 42 at the proximate end 42(a) of the locking spindle 42. A plurality of combination pins (not shown) may be respectively disposed within the locking spindle bores 42(c). The combination pins can have different lengths and may correspond to the notched portions of the coded portion 24 of the key 20. If desired, the driver pins may also have different lengths.


A passage 51 is in the locking spindle 42 and is configured to receive the extended portion 26 of the key 20. The passage 51 may also have any suitable cross-sectional shape (e.g., a circular shape). In embodiments of the invention, the passage 51 may be in the form of an open channel at a side of the locking spindle 42, or may be in the form of a closed channel in the locking spindle 42. In either case, the passage 51 is configured to receive an extended portion 26 of the key 20 when the key 20 is being used to change the lock device 102 from a locked configuration to an unlocked configuration, or vice-versa. A distal end of the extended portion 26 of the key 20 extends to the shear line S to fill the passage 51 and to temporarily provide a solid surface for the locking spindle 42 at the interface S. As will be explained in further detail below, this prevents driver pins in the driver spindle bores 44(a) in the driver structure 44 from lying over the shear line S.


As shown in FIG. 1, the driver structure 44 may include a plurality of driver spindle bores 44(a). The driver spindle bores 44(a) also extend axially through the driver structure 44. They may also be disposed in a circle around a central axis of the driver spindle 44. Driver pins (not shown) may be respectively disposed within the driver spindle bores 44(a). A plurality of springs 36 may also be respectively disposed within the driver structure bores 44(a). These springs 36 push the driver pins (not shown) toward the shear line S.


During normal operation, one or more of the forwardly biased driver pins cross the shear line S when the locking device 102 is in a locked configuration. This prevents the locking spindle 42 from rotating relative to the driver structure 44 and prevents a locking member attached to the locking spindle 42 from moving. When the locking device 102 is in an unlocked configuration, the driver pins may be pushed rearward by corresponding combination pins in the locking spindle bores 42. The coded portion 24 of the key has cutouts of different depths so that the combination pins are pushed rearwardly different distances. When the combination pins are pushed rearward, the driver pins are on one side of the shear line S, while the combination pins are on the other side of the shear line S. Since the combination pins and the driver pins are separated from each other at the shear line S, this allows the locking spindle 42 to turn relative to the driver structure 44.


The driver and combination pins may be formed of any suitable structure and may be made of any suitable material. For example, the pins may be in the form of a peg, post, straight cylinder, a cylinder with a head, etc.


The operation of the passage 51 and the extended portion 26 of the key 20 will now be described. When the lock device 102 is in an unlocked position, the driver pin 64 may be biased toward the front of the lock device 102, may pass into a corresponding locking spindle bore 42(c), and may lie over the shear line S. In order to turn the locking spindle 42 and a locking member (not shown) attached to the locking spindle 42 to put the lock device 102 into an unlocked configuration, the key 20 is inserted in the keyway of the lock device 102 and the extended portion 26 of the key extends into the passage 51. The extended portion fills the passage 51 and keeps the driver pin 64 on one side of the shear line S as the locking spindle 42 rotates relative to the driver structure 44.


If one tries to insert an unauthorized tubular structure such as the barrel of a ballpoint pen into the keyway of the lock device 102, the molded barrel of the ballpoint pen cannot pass through the entire axial length of the passage 51. Even if the unauthorized user is successful in partially turning the locking spindle 42, the locking spindle 42 will still not be able to fully rotate. As the unauthorized user tries to turn the unauthorized tubular structure in the keyway of the lock device 102, the driver structure bore 44(a)-1 becomes aligned with the passage 51. Since there is no corresponding combination pin in the passage 51 and since the unauthorized tubular structure (not shown) does not fill the passage 51 to the shear line S, the driver pin 64 will be forward biased across the shear line S by the spring 36 when the passage 51 is aligned with the driver structure bore 44(a)-1. Consequently, the unauthorized user will not be able to completely turn the locking spindle 42 relative to the driver structure 44 and therefore cannot unlock the lock device 102.


In the preferred embodiment described above, the passage is configured to receive one of the driver pins if an unauthorized tubular structure is used to turn the locking spindle. However, a structure (e.g., a ball, cube, pyramid, etc.) other than a driver pin may be present in a driver spindle bore in other embodiments and may also prevent the use of an unauthorized tubular structure as a locking and/or unlocking device. In these alternative embodiments, the structure may lie in a driver spindle bore along with a biasing element such as a spring. The biasing element may bias the structure towards the shear line. If the key with the extended portion is inserted into the keyway of the lock device and if the extended portion extends to the shear line, the biased structure will remain on the driver spindle side of the shear line. If an unauthorized tubular structure is inserted into the keyway of the lock device, the unauthorized tubular structure cannot extend to the shear line. When the unauthorized tubular structure is used to turn the locking spindle, the driver spindle bore will become aligned with the passage. The biased structure will then pass into the passage and will lie over the shear line, thereby preventing further rotation of the locking spindle and preventing the authorized tubular structure from locking and/or unlocking the lock device.



FIG. 2 shows a key 20 according to an embodiment of the invention. The key 20 includes a handle 22, a coded portion 24 with notches 28 coupled to the handle 22, and an extended portion 26 extending from the coded portion 24. In this example, the coded portion 24 may be circular in shape.


The extended portion 26 may be an extended key alignment tab. The extended alignment tab can serve two functions. It can serve as an alignment guide for a user, so that the user can align the coded portion 28 of the key 20 with the keyway of the lock device 102. As indicated above, the alignment tab can also serve to fill the passage in the locking spindle down to the shear line in the lock device. This keeps the driver pins from entering the passage 51 in the locking spindle 42.



FIG. 3 shows a front, cross-sectional view of the lock device along the line 3-3 in FIG. 1. As shown in FIG. 3, a number of driver structure bores 44(a) are present in the driver structure 44, which is disposed within the housing 90. In this example, there are six driver structure bores 44(a) arranged in a circle. One driver pin 64 is shown in one of the bores 44(a) for clarity of illustration. Normally, there would be one driver pin in each of the driver structure bores 44(a).



FIG. 4 shows a front, cross-sectional view of the lock device along the line 4-4 in FIG. 1. As shown in FIG. 4, a number of locking spindle bores 42(c) are in the locking spindle 42. The locking spindle 42 is disposed in the housing 90. An alignment region 42(d) in the locking spindle 42 forms part of the previously described passage 51. The alignment region 42(d) is in the form of an open channel.



FIG. 5 shows a front view of a lock device 102 according of an embodiment of the invention. In FIG. 5, the alignment region 42(d) and the housing 90 are shown. The function of the alignment region and its corresponding passage are not immediately apparent to the end user or unauthorized user.



FIG. 6 shows a perspective, partial cut away view of a portion of the lock device. In this Figure, the combination pins 62 and driver pins 64 are more clearly illustrated. The combination pins 62 are within locking spindle bores 42(c) in the locking spindle 42. The driver pins 64 and corresponding springs 36 are within driver spindle bores 44(a) in the driver structure 44. An interface between the locking spindle 42 and the driver structure 44 forms a shear line S. As shown, when the driver pins 64 overlap with the shear line S, the locking spindle 42 cannot fully rotate with respect to the driver structure 44.



FIGS. 7 and 8 show how an authorized key and an unauthorized tubular structure may work in a lock device according to an embodiment of the invention. For clarity of illustration, pins are illustrated but their corresponding bores are not illustrated in these Figures.



FIG. 7 shows a schematic illustration of the how the driver and combination pins are positioned when an authorized key is used in the lock device. In this example, a key 20 is inserted into a keyway in a lock device. The coded portion 24 of the key 20 pushes the left pair of combination pins down, thereby pushing the driver pins 64 down under the shear line S. An extended portion 26 of the key 20 extends to the shear line S and passes through the passage 51. As a result, when the locking spindle 42 rotates with respect to the driver structure 44, each of the driver pins 64 stays below the shear line S.



FIG. 8 shows a schematic illustration of the how the driver and combination pins are positioned when an unauthorized tubular structure 120 is used in the lock device. As shown, when an unauthorized user tries to push the unauthorized tubular structure 120 into the keyway to turn the locking spindle 42, the deformed tubular structure 120 does not have a portion that extends all the way down to the shear line S. Consequently, when the unauthorized user tries to rotate the locking spindle 42, the driver pin 64(a) is biased upward into the passage 51, as shown by the arrows 12, and lies across the shear line S. This prevents the locking spindle 42 from rotating further with respect to the driver structure 44.



FIG. 9 shows a perspective view of a lock device according to another embodiment of the invention. The lock device includes a locking member 124 in the form of a cross-member or T-bar, and a pair of locking pins 130. The locking member 124 may be coupled to the previously described locking spindle so that it can rotate when the locking spindle rotates. As shown, the cross-bar portion of the locking member may be aligned with the pins 130. They may be inserted together into a security slot or the like.



FIG. 10 shows the pins and a locking member of a lock device extending through a security slot 72 in a housing 70 of a portable electronic device. As shown, after the cross-bar portion of the locking member is inserted into the slot with the pins, the locking member is turned so that the cross-bar is oriented perpendicular to the orientation of the slot 72. This secures the lock device to the housing 70. In embodiments of the invention, security slots that are generally rectangular and/or have dimensions of about 3 mm by about 7 mm are preferred. Small security slots do not significantly alter the aesthetic appearance of portable electronic devices, but can be used to deter theft. For example, if a thief tries to separate a lock device from a portable electronic device, the portable electronic device will be damaged, thereby impairing its value.


Other features that can be used in the lock devices according to embodiments of the invention are described in U.S. Pat. Nos. 6,006,557 and 5,502,989, which are herein incorporated by reference in their entirety for all purposes.


Embodiments of the invention provide for a number of advantages. For example, the presence of the elongated passage in the previously described locking spindle is not readily apparent to an unauthorized user. Thus, when the unauthorized user tries to pick the lock, the unauthorized user will not understand why the lock cannot be picked. In addition, embodiments of the invention are relatively easy to incorporate into a cylindrical lock and no elaborate modifications are needed.


The above description is illustrative and is not restrictive. Many variations of the invention will become apparent to those skilled in the art upon review of the disclosure. The scope of the invention should, therefore, be determined not with reference to the above description, but instead should be determined with reference to the pending claims along with their full scope or equivalents. Also, any one or more features of one embodiment may be combined with any one or more features of any other embodiment without departing from the spirit and the scope of the invention.


Any reference to positions such as “rear”, “forward”, “top”, “bottom”, “upper”, “lower”, etc. refer to the Figures and are used for convenience. They are not intended to refer to absolute positions.


A recitation of “a”, “an” or “the” is intended to mean “one or more” unless specifically indicated to the contrary.


All patents, patent applications, publications, and descriptions mentioned above are herein incorporated by reference in their entirety for all purposes. None is admitted to be prior art.

Claims
  • 1. A lock device for use with a key with an extended portion, the lock device comprising: a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle;a driver structure including a plurality of driver structure bores, wherein an interface between the driver structure and the locking spindle forms a shear line;a locking member coupled to a distal end of the locking spindle;a plurality of combination pins in the plurality of locking spindle bores; anda plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins,wherein the passage extends to the shear line and the extended portion of the key extends to the shear line when the key is used to turn the locking spindle.
  • 2. The lock device of claim 1 wherein the extended portion is configured to temporarily provide a solid surface for the locking spindle at the shear line, when the key is used to turn the locking spindle.
  • 3. The lock device of claim 1 wherein the lock device is a cylinder lock.
  • 4. The lock device of claim 1 wherein the locking member is in the form of a T-bar.
  • 5. The lock apparatus of claim 1 wherein the extended portion is configured to keep a driver pin from entering the passage when the key is used to turn the locking spindle.
  • 6. The lock device of claim 1 wherein the passage coincides with an alignment tab region of the lock device.
  • 7. The lock device of claim 1 further comprising a plurality of springs in the driver structure bores in the driver structure.
  • 8. A locking apparatus comprising: the lock device of claim 1; anda key comprising a handle, an extended portion, and a coded portion between the handle and the extended portion,wherein the extended portion extends to the shear line when the key is used to lock or unlock the lock device.
  • 9. The locking apparatus of claim 8 wherein the coded portion is circular.
  • 10. The locking apparatus of claim 8 wherein the lock device further comprises a housing disposed around the locking spindle and the driver structure, and a pair of parallel pins coupled to the housing.
  • 11. A security system comprising the locking apparatus of claim 8; anda portable electronic device, wherein the locking apparatus is used to secure the portable electronic device to an object other than the locking apparatus.
  • 12. A locking apparatus comprising: a lock device comprising a locking spindle including a plurality of locking spindle bores and a passage extending axially along an axial length of the locking spindle, a locking member coupled to a distal end of the locking spindle, a driver structure including a plurality of driver structure bores, wherein an interface between the driver structure and the locking spindle forms a shear line and the passage extends through the locking spindle to the shear line, a plurality of combination pins in the plurality of locking spindle bores, and a plurality of driver pins in the driver structure bores in the driver structure, the plurality of driver pins being respectively associated with the plurality of combination pins, further wherein the passage does not contain a combination pin; anda key including a coded portion and an extended portion, wherein the extended portion is configured to fit in the passage and extend to about the shear line.
  • 13. The locking apparatus of claim 12 wherein the lock device further comprises a housing disposed around the locking spindle and the driver structure.
  • 14. The locking apparatus of claim 12 wherein the extended portion is configured to temporarily provide a solid surface for the locking spindle at the shear line, when the key is used to turn the locking spindle.
  • 15. A method for using a lock device, the method comprising: inserting a key into a keyway of a lock device, wherein the key includes an extended portion that passes through a passage in a locking spindle in the lock device and to a shear line between the locking spindle and a driver structure, wherein the extended portion serves to temporarily provide a solid surface for the locking spindle at the shear line while the key is inserted into the keyway;turning the key; andattaching the lock device to a portable electronic device.
  • 16. The method of claim 15 wherein the lock device is a cylinder lock.
  • 17. The method of claim 15 wherein the passage is an open passage.
  • 18. The method of claim 15 wherein the passage does not contain a combination pin.
CROSS-REFERENCES TO RELATED APPLICATIONS

This application is a continuation of U.S. patent application Ser. No. 11/283,322 filed on Nov. 18, 2005, which is herein incorporated by reference in its entirety for all purposes.

US Referenced Citations (332)
Number Name Date Kind
87045 Holmes Feb 1869 A
95509 Petre Oct 1869 A
285074 Rhoades et al. Sep 1883 A
505299 Schneider Sep 1893 A
606734 Olmstead Jul 1898 A
611646 Parker Oct 1898 A
786842 Robeson Apr 1905 A
881364 Wheeler Mar 1908 A
934928 Michel Sep 1909 A
942537 Batdorf Dec 1909 A
952411 Billy Mar 1910 A
989484 Campbell Apr 1911 A
1004333 Alsterberg Sep 1911 A
1050276 Johnson Jan 1913 A
1101450 Kerry Jun 1914 A
1213992 Wright Jan 1917 A
1387442 Lee Aug 1921 A
1432546 Gillom Oct 1922 A
1452471 Kline Apr 1923 A
1470937 Schou Oct 1923 A
1534936 Fishchbach Apr 1925 A
1672333 Miller Jun 1928 A
1786511 Warren Dec 1930 A
1978935 Douglas Jan 1934 A
2001354 Smith May 1935 A
2102583 Alberg Dec 1937 A
2109109 Finch Feb 1938 A
2130216 Zaninovich Sep 1938 A
2172208 Kutrzon Sep 1939 A
2190661 Hauer Feb 1940 A
2383397 Lofquist Aug 1945 A
2405400 Butterfiled Aug 1946 A
2435876 De Swart Feb 1948 A
2469874 Fetsko, Jr. May 1949 A
2480662 McKinzie Aug 1949 A
2530560 Young Nov 1950 A
2577956 Elsberg Dec 1951 A
2594012 Griffin Apr 1952 A
2660084 Newman Nov 1953 A
2677261 Jacobi May 1954 A
2729418 Maynard Jan 1956 A
2800090 Reid Jul 1957 A
2963310 Abolins Dec 1960 A
3091011 Campbell May 1963 A
3101695 Honeyman, Jr. Aug 1963 A
3130571 Neumann Apr 1964 A
3136017 Preziosi Jun 1964 A
3171182 Danehy Mar 1965 A
3174384 Vanni Mar 1965 A
3200694 Rapata Aug 1965 A
3211408 Schaefer Oct 1965 A
3213745 Dwyer Oct 1965 A
3220077 Newcomer, Jr., et al. Nov 1965 A
3276835 Hall Oct 1966 A
3380268 Perrill Apr 1968 A
3469874 Mercurio Sep 1969 A
3486158 Soltysik et al. Dec 1969 A
3521845 Sweda et al. Jul 1970 A
3590608 Smyth et al. Jul 1971 A
3596285 Garland Jul 1971 A
3625031 Alley III Dec 1971 A
3634963 Hermann Jan 1972 A
3664163 Foote May 1972 A
3722239 Mestre Mar 1973 A
3727934 Averbook et al. Apr 1973 A
3737135 Bertolini Jun 1973 A
3754420 Oellerich Aug 1973 A
3765197 Foote Oct 1973 A
3771338 Raskin Nov 1973 A
3772645 Odenz et al. Nov 1973 A
3782146 Franke Jan 1974 A
3785183 Sander Jan 1974 A
3798934 Wright et al. Mar 1974 A
3826510 Halter Jul 1974 A
D232416 Gazda et al. Aug 1974 S
3836704 Coules Sep 1974 A
3859826 Singer et al. Jan 1975 A
3866873 Bohli Feb 1975 A
3875645 Tucker et al. Apr 1975 A
3898641 Banner Aug 1975 A
3905570 Nieuwveld Sep 1975 A
3910079 Gassaway Oct 1975 A
3910081 Pender Oct 1975 A
3939752 Koscik Feb 1976 A
3986780 Nivet Oct 1976 A
3990276 Shontz Nov 1976 A
3999410 Hall Dec 1976 A
4003228 Lievens et al. Jan 1977 A
4004440 Dreyer Jan 1977 A
4007613 Gassaway Feb 1977 A
4018339 Pritz Apr 1977 A
4028913 Falk Jun 1977 A
4028916 Pender Jun 1977 A
4047748 Whaley et al. Sep 1977 A
4055973 Best Nov 1977 A
4057984 Avaiusini Nov 1977 A
4065083 Gassaway Dec 1977 A
4066195 Dickler Jan 1978 A
4066231 Bahner Jan 1978 A
4104951 Leitner Aug 1978 A
4112820 Conger et al. Sep 1978 A
4114409 Scire Sep 1978 A
4118902 Saxton Oct 1978 A
4123922 Kuenstler Nov 1978 A
4131001 Gotto Dec 1978 A
4212175 Zakow Jul 1980 A
4223542 Basseches Sep 1980 A
4252007 Kerley Feb 1981 A
4263833 Loudin Apr 1981 A
4300371 Herwick et al. Nov 1981 A
4311883 Kidney Jan 1982 A
4337462 Lemelson Jun 1982 A
4391110 Nielson Jul 1983 A
4394101 Richer Jul 1983 A
4418550 Hamilton Dec 1983 A
4419034 DiMartino Dec 1983 A
4442571 Davis et al. Apr 1984 A
4448049 Murray May 1984 A
4462233 Horetzke Jul 1984 A
4466259 Osgood Aug 1984 A
4471980 Hickman Sep 1984 A
4478545 Mizusawa Oct 1984 A
4501460 Sisler Feb 1985 A
4502305 Bakker Mar 1985 A
4527405 Renick et al. Jul 1985 A
4546629 Hwang Oct 1985 A
4570465 Bennett Feb 1986 A
4579492 Kazino Apr 1986 A
4584856 Petersdorff et al. Apr 1986 A
4586843 Henge et al. May 1986 A
4593273 Narcisse Jun 1986 A
4598272 Cox Jul 1986 A
4603829 Koike et al. Aug 1986 A
4610587 Wollar Sep 1986 A
4616490 Robbins Oct 1986 A
4620182 Keifer Oct 1986 A
4640106 Derman Feb 1987 A
4651544 Hungerford Mar 1987 A
4653297 Moorhouse Mar 1987 A
4654640 Carll et al. Mar 1987 A
4655057 Derman Apr 1987 A
4656848 Rose Apr 1987 A
4667491 Lokken et al. May 1987 A
4676080 Schwarz Jun 1987 A
4680949 Stewart Jul 1987 A
4685312 Lakoski et al. Aug 1987 A
4691891 Dionne Sep 1987 A
4692968 Girard Sep 1987 A
4704881 Sloop, Sr. Nov 1987 A
4733840 D'Amore Mar 1988 A
4738428 Themistos et al. Apr 1988 A
4741185 Weinert et al. May 1988 A
4768361 Derman Sep 1988 A
4770583 Lindberg Sep 1988 A
4779434 Derman Oct 1988 A
4785291 Hawthorne Nov 1988 A
4801232 Hempel Jan 1989 A
4804943 Soleimani Feb 1989 A
4805426 Dimmick et al. Feb 1989 A
4813252 Ray Mar 1989 A
4826193 Davis May 1989 A
4834600 Lemke May 1989 A
4842912 Hutter, III Jun 1989 A
4843848 Igelmund Jul 1989 A
4856304 Derman Aug 1989 A
4856305 Adams Aug 1989 A
4858455 Kuo Aug 1989 A
4862716 Derman Sep 1989 A
4869082 Appelbaum Sep 1989 A
4870840 Klein Oct 1989 A
4878045 Tanaka et al. Oct 1989 A
4893488 Klein Jan 1990 A
4896140 Biever Jan 1990 A
4907111 Derman Mar 1990 A
4907716 Wankel et al. Mar 1990 A
4918952 Lakoski et al. Apr 1990 A
4924683 Derman May 1990 A
4924693 College May 1990 A
4938040 Humphreys, Jr. Jul 1990 A
4959635 Wilson Sep 1990 A
4959979 Filipow et al. Oct 1990 A
4964285 Lakoski Oct 1990 A
4966511 Lee Oct 1990 A
4969342 Marchiori Nov 1990 A
4978265 DeWan Dec 1990 A
4979382 Perry Dec 1990 A
4985695 Wilkinson et al. Jan 1991 A
4986097 Derman Jan 1991 A
4993244 Osman Feb 1991 A
5001460 Basson Mar 1991 A
5001854 Derman Mar 1991 A
5010748 Derman Apr 1991 A
5022242 Povilaitis Jun 1991 A
5024072 Lee Jun 1991 A
5027627 Derman Jul 1991 A
5050836 Makous Sep 1991 A
5052199 Derman Oct 1991 A
5063763 Johnson Nov 1991 A
5066942 Matsuo Nov 1991 A
5067151 Inagaki Nov 1991 A
5076079 Monoson Dec 1991 A
5082232 Wilson Jan 1992 A
5082233 Ayers et al. Jan 1992 A
5099663 Dearstine Mar 1992 A
5117661 Carl et al. Jun 1992 A
5119649 Spence Jun 1992 A
5135197 Kelley et al. Aug 1992 A
5138785 Paterson Aug 1992 A
5146769 Smith Sep 1992 A
5154456 Moore Oct 1992 A
5184798 Wilson Feb 1993 A
5197706 Braithwaite et al. Mar 1993 A
5223815 Rosenthal et al. Jun 1993 A
D337040 Carl Jul 1993 S
5228319 Holley et al. Jul 1993 A
5279136 Perry Jan 1994 A
5317304 Choi May 1994 A
5327752 Myers et al. Jul 1994 A
D350473 Simon Sep 1994 S
5349834 Davidge Sep 1994 A
5349835 Liao Sep 1994 A
5351507 Derman Oct 1994 A
5351508 Kelley Oct 1994 A
5361610 Sanders Nov 1994 A
5370488 Sykes Dec 1994 A
5377512 Kelley Jan 1995 A
5381685 Carl et al. Jan 1995 A
5390514 Harmon Feb 1995 A
5390977 Miller Feb 1995 A
5394713 Harmon Mar 1995 A
5397176 Allen et al. Mar 1995 A
5398530 Derman Mar 1995 A
5400622 Harmon Mar 1995 A
5406809 Igelmund Apr 1995 A
5412959 Bentley May 1995 A
5421667 Leyden et al. Jun 1995 A
5447049 Shien Sep 1995 A
5466022 Derman Nov 1995 A
5473917 Say Dec 1995 A
5489173 Hofle Feb 1996 A
5493878 Murray et al. Feb 1996 A
5502989 Murray et al. Apr 1996 A
5520031 Davidge May 1996 A
D370473 Derman Jun 1996 S
5548981 Kirk Aug 1996 A
5570080 Inoue et al. Oct 1996 A
5579657 Makous Dec 1996 A
5593878 Knopf et al. Jan 1997 A
5603416 Richardson et al. Feb 1997 A
5608605 Siow et al. Mar 1997 A
5610587 Fujiuchi et al. Mar 1997 A
5611223 Spitzer Mar 1997 A
5622064 Gluskoter et al. Apr 1997 A
5687592 Penniman Nov 1997 A
5692400 Bliven et al. Dec 1997 A
5709110 Greenfield et al. Jan 1998 A
5722268 Choi Mar 1998 A
5787739 Derman Aug 1998 A
5791171 Kelley Aug 1998 A
5794463 McDaid Aug 1998 A
5799520 Laabs et al. Sep 1998 A
5836183 Derman Nov 1998 A
5870281 Kim Feb 1999 A
5875657 Kelley Mar 1999 A
5889463 Judd et al. Mar 1999 A
5913907 Lee Jun 1999 A
5960651 Tanisawa Oct 1999 A
5963131 D'Angelo et al. Oct 1999 A
5983679 Reyes Nov 1999 A
6000251 Murray et al. Dec 1999 A
6000252 Murray et al. Dec 1999 A
6006557 Carl et al. Dec 1999 A
6038891 Zeren et al. Mar 2000 A
6058744 Ling May 2000 A
6081974 McDaid Jul 2000 A
6087939 Leyden et al. Jul 2000 A
6112561 Carl Sep 2000 A
6112562 Murray, Jr. et al. Sep 2000 A
6125669 McDaid et al. Oct 2000 A
6133830 D'Angelo et al. Oct 2000 A
6150940 Chappman et al. Nov 2000 A
6155088 Murray, Jr. et al. Dec 2000 A
6170364 Johnson Jan 2001 B1
6173591 Derman Jan 2001 B1
6199413 McDaid et al. Mar 2001 B1
6205824 Miao Mar 2001 B1
6212918 Kravtin Apr 2001 B1
6227017 Inglemund May 2001 B1
6244080 Sakurai Jun 2001 B1
6244082 Avganim Jun 2001 B1
6257029 Liao Jul 2001 B1
6262664 Maloney Jul 2001 B1
6265974 D'Angelo et al. Jul 2001 B1
6300874 Rand Oct 2001 B1
6301940 Derman et al. Oct 2001 B1
6317936 McDaid et al. Nov 2001 B1
6360405 McDaid et al. Mar 2002 B1
6389853 Pate et al. May 2002 B1
6389854 Huang May 2002 B1
6401502 Yang Jun 2002 B1
6427499 Derman Aug 2002 B1
6449992 Yu Sep 2002 B1
6513350 Hurd et al. Feb 2003 B1
6553794 Murray, Jr. et al. Apr 2003 B1
6588241 Murray, Jr. et al. Jul 2003 B1
6591642 Kuo Jul 2003 B1
6598433 Malvasio Jul 2003 B1
6619080 Yu Sep 2003 B1
6619081 Yu Sep 2003 B1
6621415 Willis Sep 2003 B1
6735990 Murray, Jr. et al. May 2004 B1
6758069 Derman Jul 2004 B2
6763688 Syu Jul 2004 B1
6763690 Galant Jul 2004 B2
6886376 Kuo May 2005 B2
6933847 Feibelman Aug 2005 B2
6973809 Chang Dec 2005 B2
7028513 Avganim Apr 2006 B2
7121125 Murray et al. Oct 2006 B2
7143614 Murray et al. Dec 2006 B1
7150168 Kuo Dec 2006 B1
7441431 Weber et al. Oct 2008 B2
7500371 Andres et al. Mar 2009 B2
20020134119 Derman Sep 2002 A1
20030101778 Carl et al. Jun 2003 A1
20040040350 Derman Mar 2004 A1
20040206138 Murray et al. Oct 2004 A1
20050150262 Murray et al. Jul 2005 A1
20050150263 Murray et al. Jul 2005 A1
20050178173 Kuo Aug 2005 A1
20060117816 Lee Jun 2006 A1
20070033975 Liu Feb 2007 A1
Foreign Referenced Citations (36)
Number Date Country
454901 Mar 1949 CA
791364 Aug 1968 CA
987121 Apr 1976 CA
329934 Dec 1920 DE
335741 Apr 1921 DE
361068 Apr 1923 DE
456219 Feb 1928 DE
577757 Aug 1932 DE
3202700 Aug 1983 DE
3407723 Sep 1985 DE
3824393 Jul 1989 DE
455740 Aug 1913 FR
877220 Dec 1942 FR
1026519 Apr 1953 FR
1085107 Jan 1955 FR
2308006 Nov 1976 FR
2636686 Mar 1990 FR
447091 May 1936 GB
1256295 Dec 1971 GB
1376011 Dec 1974 GB
2109109 May 1983 GB
2234856 Feb 1991 GB
P0000398 Jun 2000 HU
224329 Jun 2003 HU
451949 Oct 1949 IT
37-7592 Apr 1937 JP
49-91096 Nov 1947 JP
52-36813 Mar 1977 JP
57-25092 Feb 1982 JP
57-179618 Nov 1982 JP
2000-140948 May 2005 JP
14095 May 1905 NO
WO 9510680 Apr 1985 WO
WO 8600396 Jan 1986 WO
WO 9315295 Aug 1993 WO
WO 9607002 Mar 1996 WO
Related Publications (1)
Number Date Country
20090139280 A1 Jun 2009 US
Continuations (1)
Number Date Country
Parent 11283322 Nov 2005 US
Child 12361147 US