Collapsible strength exercise machine

Abstract
An exercise machine includes a standing platform, a pivot connection incorporated into the standing platform, an upright structure attached to the standing platform at the pivot connection, and a movable element connected to the upright structure where the movable element is movable during the performance of an exercise. The upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode.
Description
BACKGROUND

While there are numerous exercise activities that one may participate in, exercise may be broadly broken into the categories of aerobic exercise and anaerobic exercise. Aerobic exercise generally refers to activities that substantially increase the heart rate and respiration of the exerciser for an extended period of time. This type of exercise is generally directed to enhancing cardiovascular performance. Such exercise usually includes low or moderate resistance to the movement of the individual. For example, aerobic exercise includes activities such as walking, running, jogging, swimming or bicycling for extended distances and extended periods of time.


Anaerobic exercise generally refers to exercise that strengthens skeletal muscles and usually involves the flexing or contraction of targeted muscles through significant exertion during a relatively short period of time and/or through a relatively small number of repetitions. For example, anaerobic exercise includes activities such as weight training, push-ups, sit-ups, pull-ups, or a series of short sprints.


To build skeletal muscle, a muscle group is contracted against resistance. The contraction of some muscle groups produces a pushing motion, while the contraction of other muscle groups produces a pulling motion. A cable machine is a popular piece of exercise equipment for building those muscle groups that produce pulling motions. A cable machine often includes a cable with a handle connected to a first end and a resistance mechanism connected to a second end. Generally, the resistance mechanism is a selectable set of weights. A midsection of the cable is supported with at least one pulley. To move the cable, a user pulls on the handle with a force sufficient to overcome the force of the resistance mechanism. As the cable moves, the pulley or pulleys direct the movement of the cable and carry a portion of the resistance mechanism's load.


One type of cable exercise machine is disclosed in WIPO Patent Publication No. WO/2007/015096 issued to Andrew Loach. In this reference, an exercise apparatus allows the user to perform a variety of aerobic and strength training exercises. A user input means allows the user to apply torque to an input shaft of a resistance unit. A control means adjusts the resistance provided by a resistance means coupled to the input shaft according to the output of a number of sensors. In a preferred embodiment, the resistance unit is able to simulate at the input shaft the dynamic response of a damped flywheel or the dynamic response of an object driven through a viscous medium, or to maintain the resistance at a constant level that is set by the user. The resistance unit includes a battery or an electric generator device and can be operated without connection to an external power source. Other types of cable exercise machines are described in U.S. Patent Publication Nos. 2012/0065034 issued to Andrew Loach and 2006/0148622 issued to Ping Chen.


SUMMARY

In one embodiment, an exercise machine includes a standing platform, a pivot connection incorporated into the standing platform, an upright structure attached to the standing platform at the pivot connection, and a movable element connected to the upright structure where the movable element is movable during the performance of an exercise. The upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode.


The upright structure may include an arm assembly.


The arm assembly may include an arm, an arm distal end of the arm, and a distal pulley connected to the arm distal end.


The arm assembly may include an arm proximal end of the arm, a pin opening defined proximate the arm proximal end, a retracted pin partially disposed within the pin opening, a proximal axle connected to the arm proximal end, and a locking plate with multiple locking openings defined therein. The arm may be pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings.


The movable element may be a cable, and the may be cable directed with the distal pulley.


The exercise machine may include a cable distal end of the cable and a handle attached to the cable distal end.


The exercise machine may include a resistance mechanism incorporated into the exercise machine and a proximal end of the cable is attached to the resistance mechanism.


The exercise machine may include a proximal pulley located near the proximal end of the arm. The cable may be directed with the proximal pulley and the distal pulley.


The exercise machine may include a passage defined within a length of the arm. A section of the cable between the proximal pulley and the distal pulley may reside within the passage.


The standing platform may include a rail and a floor section connected to the rail.


The exercise machine may include a locking mechanism incorporated into the floor section. The floor section may selectively move along a length of the rail and selectively lock into a stationary position with the rail with the locking mechanism.


In one embodiment, an exercise machine includes a standing platform. The standing platform may include a rail, a floor section connected to the rail, and a locking mechanism incorporated into the floor section. The floor section is selectively movable along a length of the rail and selectively lockable into a stationary position with the rail with the locking mechanism. The exercise machine also includes a pivot connection incorporated into the standing platform, an upright structure attached to the standing platform at the pivot connection, and an arm assembly attached to the upright structure. The arm assembly includes an arm, an arm distal end of the arm, and a distal pulley connected to the arm distal end. The exercise machine also includes a cable connected to the arm assembly where the cable is movable during the performance of an exercise. The upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode.


The arm assembly may include an arm proximal end of the arm, a pin opening defined proximate the arm proximal end, a retracted pin partially disposed within the pin opening, a proximal axle connected to the arm proximal end, and a locking plate with multiple locking openings defined therein. The arm may be pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings.


The movable element may be a cable, and the cable may be directed with the distal pulley.


The exercise machine may include a cable distal end of the cable and a handle attached to the cable distal end.


The exercise machine may include a resistance mechanism incorporated into the exercise machine and a proximal end of the cable may be attached to the resistance mechanism.


The exercise machine may include a proximal pulley located near the proximal end of the arm. The cable may be directed with the proximal pulley and the distal pulley.


The exercise machine may include a locking mechanism incorporated into the floor section. The floor section may be selectively movable along a length of the rail and selectively lockable into a stationary position with the rail with the locking mechanism.


The pivot connection may include a tube of the standing platform, a tube face of the tube, at least one tube section of the upright structure, an interlocking face of the tube section that complements the tube face, a pivot rod resides within a bore collectively defined by the tube and the at least one tube section, a knob threaded to an end of the pivot rod, anti-rotating features formed in the tube face and the interlocking face. When the knob is rotated in a first direction, the tube face and the interlocking face may come together so that anti-rotation features interlock.


The pivot connection may include an anti-rotation feature.


In one embodiment, an exercise machine includes a standing platform. The standing platform includes a rail, a floor section connected to the rail, and a locking mechanism incorporated into the floor section. The floor section is selectively movable along a length of the rail and selectively lockable into a stationary position with the rail with the locking mechanism. The exercise machine includes a pivot connection incorporated into the standing platform, an upright structure attached to the standing platform at the pivot connection, and an arm assembly attached to the upright structure. The arm assembly includes an arm, an arm distal end of the arm, a distal pulley connected to the arm distal end, an arm proximal end of the arm, a proximal pulley located near the proximal end of the arm, a pin opening defined proximate the arm proximal end, a retracted pin partially disposed within the pin opening, a proximal axle connected to the arm proximal end, a passage defined within a length of the arm, and a locking plate with multiple locking openings defined therein. The arm is pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings. The exercise machine also includes a resistance mechanism incorporated into the exercise machine and a cable connected to the arm assembly where the cable is movable during the performance of an exercise. The cable includes a cable distal end of the cable, a handle attached to the cable distal end, and a proximal end of the cable is attached to the resistance mechanism. The cable is directed with the proximal pulley and the distal pulley and a section of the cable between the proximal pulley and the distal pulley resides within the passage defined in the arm. The upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode.





BRIEF DESCRIPTION OF THE DRAWINGS

The accompanying drawings illustrate various embodiments of the present apparatus and are a part of the specification. The illustrated embodiments are merely examples of the present apparatus and do not limit the scope thereof.



FIG. 1 illustrates a perspective view of an example of an exercise machine in accordance with the present disclosure.



FIG. 2 illustrates a perspective view of an example of an exercise machine in accordance with the present disclosure.



FIG. 3 illustrates a cross section view of an example of an arm of an exercise machine in accordance with the present disclosure.



FIG. 4 illustrates a perspective view of an example of a floor sections of an exercise machine in accordance with the present disclosure.



FIG. 5 illustrates a perspective diagram of an example of a proximal end of an arm of an exercise machine in accordance with the present disclosure.



FIG. 6 illustrates a perspective view of an example of an exercise machine in accordance with the present disclosure.



FIG. 7 illustrates a side view of an example of an exercise machine in an operational mode in accordance with the present disclosure.



FIG. 8 illustrates a side view of an example of an exercise machine in a storage mode in accordance with the present disclosure





Throughout the drawings, identical reference numbers designate similar, but not necessarily identical, elements.


DETAILED DESCRIPTION

For purposes of this disclosure, the term “aligned” means parallel, substantially parallel, or forming an angle of less than 35.0 degrees. For purposes of this disclosure, the term “transverse” means perpendicular, substantially perpendicular, or forming an angle between 55.0 and 125.0 degrees. Also, for purposes of this disclosure, the term “length” means the longest dimension of an object. Also, for purposes of this disclosure, the term “width” means the dimension of an object from side to side. For the purposes of this disclosure, the term “above” generally means superjacent, substantially superjacent, or higher than another object although not directly overlying the object. Further, for purposes of this disclosure, the term “mechanical communication” generally refers to components being in direct physical contact with each other or being in indirect physical contact with each other where movement of one component affect the position of the other.



FIG. 1 depicts an example of an exercise machine 100. In this example, the exercise machine 100 includes a standing platform 102 connected to an upright structure 104 at a pivot connection 106.


The upright structure includes a first arm assembly 108 and a second arm assembly 110. In this example, each of the arm assemblies 108, 110 include an arm 112, a distal end 114, and a distal pulley 116 connected to the distal end 114. Further, in this example, each of the first and second arm assemblies 108, 110 include a proximal end 118, a pin opening 120 defined proximate the proximal end 118, a retracted pin 122 partially disposed within the pin opening 120, a proximal axle connected to the proximal end 118, and a locking plate 126 with multiple locking openings 128 defined therein. The arm 112 can be pivoted about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings 128.


The arm 112 supports a movable cable 130. A distal end 132 of the cable 130 is connected to a handle 134. The exercise machine 100 may also include a resistance mechanism (not shown) and a proximal end (not shown) of the cable 130 is attached to the resistance mechanism. A proximal pulley is located near the proximal end 118 of the arm 112, and the cable 130 is directed with the proximal pulley and the distal pulley 116. Thus, when the user pulls the handle 134, the cable moves along its length. As the cable moves along its length, the cable is routed by the proximal and distal pulleys so that the resistance mechanism is moved by the movement of the cable's proximal end. Thus, the user feels the resistance load of the resistance mechanism as he or she pulls on the cable's handle.


In the example of FIG. 1, the standing platform's rails 138 are joined at the pivot connection 106 with a tube 140. A pivot rod may be inserted through the inside diameter of the tube 140. The pivot rod is longer than the length of the tube 140 and extends out of the tube 140 at both of the tube's ends. The bottom of the upright structure's beams 142 also include tubular sections 144 that have openings defined therein, but are transverse the length of the beams 142. The beams' tubular sections 144 complement the platform's tube 140 to form a collective tube in which the pivot rod resides. The pivot rod connects the upright structure 104 and the standing platform 102 through collective tube. The interface between the platform's tube 140 and the beams' tube sections 144 can include preset features, such as anti-rotation features. In one example, the face of the platform's tube includes a recess, and the complementing face of the corresponding tube section includes a protrusion sized to snugly fit within the recess. Thus, when the recess of the tube's face is lined up with the protrusion in the tube section's face, the protrusion and recess interlock preventing the beam from rotating with respect to the standing platform.


The pivot connection 106 may include a knob 146 at one end that is threaded onto a thread form of the pivot rod. The knob 146 may be accessible to the outside collective tube, and when the knob 146 is rotated in a first direction, the interfaces between the tube and tube sections come closer together. In a tightened position, the knob 146 applies a force strong enough to hold the tube 140 close to the tube sections 144 which forcibly causes the anti-rotation features of the tube 140 and tube sections 144 to interlock. When the knob 146 is rotated in a second direction that is opposite the first direction, the force between the tube 140 and the tube sections 144 is reduced. When the knob 146 is rotated far enough in the second direction, the beam's tube sections 144 can be separated from the platform's tube 140 enough that the anti-rotation features can unlock allowing the beams 142 to pivot about the pivot rod. Thus, with the knob 146 loosened enough, the upright structure 104 can rotate into a new position with respect to the standing platform 102.



FIG. 2 depicts an example of an exercise machine 200. In this example, the exercise machine 200 includes a first arm assembly 202 and a second arm assembly 204. In FIG. 2, the first arm assembly 202 is rotated and locked into a downward angular orientation 206 so that the length of the arm is aligned with the length of the upright structure 208. The first arm assembly 202 may be rotated into the aligned orientation 206 when the exercise machine 200 is in an operational mode.


The second arm assembly 204 is rotated and locked into another angular orientation 210 that positions the handle 212 of the cable 214 in a location desired by a user for performing a pull exercise. The second arm assembly 204 may be rotated into any orientation, especially orientations that are transverse the orientation of the upright structure or are at least misaligned with the orientation of the upright structure.



FIG. 3 depicts a cross sectional view of a portion of an exercise machine 300. In this example, the arm assembly 302 include an arm 304 with a proximal end 306 and a distal end 308. The proximal pulley 310 is associated with the proximal end 306 of the arm 304, and a pair of distal pulleys 312 is associated with the arm's distal end 308. A passage 314 is defined in the arm 304 and connects the proximal end 306 and the distal end 308 along the arm's length. The cable 316 is routed within the arm's length and is directed by the proximal pulley 310 and the pair of distal pulleys 312. A handle 318 and a stopper 320 is secured at the cable's distal end. A gap between the pair of distal pulleys 312 is smaller than the cross sectional thickness of the stopper 320. Thus, the stopper 320 prevents the handle 318 and/or the proximal end 306 from being pulled into the passage 314.



FIG. 4 depicts an example of an exercise machine 400. In this example, the exercise machine 400 includes a standing platform 402 on which the user stands during the performance of a pull exercise. The user stands on the standing platform 402 while grasping the handle 404 connected to the cable and pulling on the handle 404. The user's own body weight assists in stabilizing the exercise machine 400 during the exercise. Thus, the user's feet remain stationary with respect to the standing platform during the performance of the pull exercise. Further, the standing platform 402 remains stationary during the performance of the pull exercise.


When the user is not executing a pull exercise while standing on the standing platform 402, the standing platform 402 may be adjusted to the user's arm length, height, preferences, or combinations thereof. In the example of FIG. 4, the standing platform 402 includes a rail 406 and a floor section 408 connected to the rail 406. The floor section 408 may slide along the rail 406. A locking mechanism 410 may be incorporated into the floor section 408 and may be used to selectively lock the floor section 408 in place along the length of the rail 406. In the example of FIG. 4, the rail 406 is a substantially straight rail.



FIG. 5 depicts an example of an exercise machine 500. In this example, the arm 502 is supported about a proximal axle 504 connected to the arm's proximal end 506 and the arm 502 is capable of rotating about the proximal axle 504. A locking plate 508 is attached to the upright structure 510, and the locking plate 508 include multiple locking openings 512 adjacent the plate's perimeter 514. The arm includes a pin opening 516 that can align with any one of the multiple locking openings 512 of the plate 508 depending on the angular orientation of the arm 502. When a pin 518 is inserted through both one of the locking openings of the plate 508 and the pin opening 516 of the arm 502, the arm 502 is locked in the angular orientation. As the user desires to change the arm's orientation, the pin can be removed to free the arm 502 to rotate about the proximal axle 504. When the arm 502 is lined up to the desired orientation, the pin 518 can be reinserted so that the arm 502 is angularly locked with the plate 508.



FIG. 6 depicts an example of the exercise machine 600 in an operational mode. In this example, the upright structure 602 is orientated in a transverse orientation to the standing platform 604. The cable is routed from the arm assemblies 606 down along the upright structure's length. Near the pivot connection, the cable is routed by a pulley 608. In this situation, the pulley 608 directs the cable underneath the floor section 610. In this example, the resistance mechanism may be incorporated into the standing platform. In one type of example, the resistance mechanism includes a flywheel and a magnetic unit that resists the rotations of the flywheel where both the flywheel and the magnetic unit are incorporated into the standing platform. But, in alternative examples, the resistance mechanism may be located in the upright structure. The resistance mechanism may include, at least in part, the elastic resistance of the cable.



FIG. 7 depicts an example of the exercise machine 700 in an operational mode. In this example, the upright structure 702 is orientated in a transverse orientation to the standing platform 704. In this mode, the user can stand on the standing platform 704 and orient the arm assemblies so that the arm assemblies position the cable end's handles within a convenient arm's reach to execute a pull exercise while the user is standing on the standing platform 704.



FIG. 8 depicts an example of the exercise machine 800 in storage mode. In this example, the upright structure 802 is orientated in an aligned orientation to the standing platform 804. In this mode, the arm assemblies are oriented to be aligned with the upright structure 802, and the upright structure 802 is folded down to be aligned with the standing platform 804. As shown in FIG. 8, the upright structure 802 may include a bend.


GENERAL DESCRIPTION

In general, the invention disclosed herein may provide users with a collapsible exercise machine. The exercise machine may be a strength exercise machine that includes a pulley cable attached to a resistance mechanism. The user can pull the pull cable against the resistance of the resistance mechanism to build muscle.


In one example, the exercise machine includes a standing platform that is pivotally connected to an upright structure. The upright structure may include an arm assembly that includes at least one arm that supports and directs a pull cable. The pull cable is connected to a resistance mechanism that is attached to another portion of the exercise machine. The user may stand on the standing platform while pulling the distal end of the pull cable. In this manner, the user's body weight can provide stability to the exercise machine as the user pulls against the resistance mechanism's load.


The standing platform may be pivotally connected to the upright structure so that the upright structure can be in an upright orientation that is traverse the length of the standing platform when the exercise machine is in an operational mode. The user can perform an intended exercise while standing on the standing platform when the exercise machine is in the operational mode. The upright structure can rotate about the pivot connection so that the upright structure can rotate downward over the standing platform and be in an aligned orientation with the standing platform when the exercise machine is in a storage mode. In the storage mode, the exercise machine is compact to take up less space. For example, according to one embodiment, the final folded height of the exercise machine in the storage mode is 6 inches or less, measured from the floor, tangentially, to the top of the upright structure 802. In additional embodiments, the final folded height of the exercise machine in the storage mode is 4 inches or less. In some examples, a set of wheels is attached to a standing platform so that one end of the compacted exercise machine can be wheel to another location for storage. This may occur when the user lifts up another end of the exercise machine, and the weight of the exercise machine is loaded into the support floor at the wheels thereby reducing friction against the floor. In other examples, an end of the standing platform may include a low friction interface with the floor so that the user can more easily move the exercise machine in storage mode.


The pivot connection may include a pivot rod that is attached to both the upright structure and the standing platform. A frame of the upright structure may include a first beam on a first side of the upright structure and a second beam on a second side of the upright structure. Each of the first beam and the second beam may include a pivot opening defined in the beams near a connection end of the beams to receive the pivot rod. Similarly, the standing platform may include a first rail on a first side of the platform and a second rail on a second side of the platform. Each of the first rail and the second rail may include pivot openings defined in the rails near a connection end of the rails to receive the pivot rod. The upright structure may pivot about the pivot rod when both the upright structure and the standing platform are connected to the pivot rod.


In some cases, the upright structure may lock in a preset operational angular position about the pivot rod in the operational mode. Locking into an operational angular position may appropriately orient the upright structure during the performance of the user's exercise. Also, locking into an operational angular position may also prevent the upright structure from rotating about the pivot rod when the user pulls on the pull cable during the performance of the exercise thereby preventing the exercise machine from collapsing while the machine is in use.


The preset operational angular position may include anti-rotation features incorporated into the upright structure and the standing platform. In one example, the platform's rails are joined at the pivot connection with the tube. The pivot rod may be inserted through the inside diameter of the tube. In some cases, the pivot rod is longer than the length of the tube and extends out of the tube at both of the tube's ends. The bottom of the upright structure's beams may also include tubular sections that include openings defined therein, but are transverse the length of the beams. The beams' tubular sections may complement the platform's tube to form a collective tube in which the pivot rod can reside. In this example, the pivot rod connects the upright structure and the standing platform through the collective tube. The interface between the platform's tube and the beams' tube sections may include preset features, such as anti-rotation features. In one example, the face of the platform's tube includes a recess, and the complementing face of the corresponding tube section includes a protrusion sized to snugly fit within the recess. Thus, when the recess of the tube's face is lined up with the protrusion in the tube section's face, the protrusion and recess interlock preventing the beam from rotating with respect to the standing platform.


The pivot rod may include a knob at one end that is threaded onto a thread form of the pivot rod. The knob may be accessible to the outside of the collective tube and when the knob is rotated in a first direction, the interfaces between the tube and tube sections come closer together. In a tightened position, the knob applies a force strong enough to hold the tube close to the tube sections which forcibly causes the anti-rotation features of the tube and tube sections to interlock. When the knob is rotated in a second direction that is opposite the first direction, the force between the tube and the tube sections is reduced. When the knob is rotated far enough in the second direction, the beam's tube sections can be separated from the platform's tube enough that the anti-rotation features can unlock allowing the beams to pivot about the pivot rod with respect to the platform's tube. Thus, with the knob loosened enough, the upright structure can rotate into a new position with respect to the standing platform.


Further, in some examples, the upright structure may lock into a preset storage angular position in the storage mode. This angular locking mechanism may include any appropriate type of locking mechanism. In one example, the angular locking mechanism includes a retractable pin incorporated into either of the upright structure or the standing platform that can be inserted into the other. Locking into an angular storage position may prevent the upright structure from unintentional rotating about the pivot rod when the exercise machine is in the storage position, especially in those circumstances when the exercise machine is leaned up against a wall or other structure during storage.


While the pivot connection above has been described with reference to a specific type of pivot connection that includes a pivot rod, any appropriate type of pivot connection may be used in accordance with the principles described in the present disclosure. For example, a non-exhaustive list of movable features that may be incorporated into the pivot connection include a hinge joint, a ball and socket joint, a rotary actuator, a gear mechanism, a screw mechanism, a condyloid joint, a saddle joint, another type of joint, or combinations thereof.


Further, while the examples above have been described with the standing platform including multiple rails, any number of rails or other types of frame members may be used to connect to the pivot connection. Also, while the examples above have been described with an upright structure that has multiple beams, any number of beams or other types of frame members may be used to connect to the pivot connection.


In some embodiments, the standing platform may include a floor section that is connected to the rails or another type of frame member. In some cases, the floor section is movable along the length of the rails. For example, the underside of the floor section may include a feature that interlocks with a track defined in the rails. Thus, the floor section may be confined to travel along the length of the rails.


A locking mechanism may also be incorporated into the floor section to lock the floor section at a distance along the rails with respect to the upright structure and prevent the floor section from moving during the performance of the exercise.


At least one of the rails may include an opening, a catch, a recess, or another type of feature that can interlock with a locking feature of the floor section. For example, the floor section's locking feature may include a retractable pin that can interlock with the rails at the preset locations of the rails. In these examples, the user can move the floor section to the preset locations can lock the floor section in place. In other examples, the locking feature can lock the position the floor section at any desirable location along the length of the rails. In one type of example, the locking mechanism includes a brake that can apply a compressive force to any location along the length of the rails. In other examples, the floor section is moved along the rails with a mechanism that involves a gear set, and the locking mechanism causes the gear set to be locked into place.


The movable floor section allows the user to adjust the distance that the user is from the upright structure during the performance of a pulling and/or pushing exercise. The distance away that the user is from the upright structure may affect the angle at which the user pulls the cable which can affect the muscles targeted during the pull exercise. Thus, the user can adjust the floor section's location to target specific muscles and/or muscle groups. Further, some users may have different arm lengths and/or preferences that affect how far away the user is during the exercise. Thus, an adjustable floor section provides the user with an ability to make adjustments while still using the user's body weight to provide stability to the exercise machine when performing the exercise. In some alternative embodiments, the floor section is stationary with the respect to the rails and cannot move along the rails' length.


While the examples above have been described with reference to specific features of the standing platform and the locking mechanism of the standing platform, any appropriate features may be used to lock the floor section in place, move floor section along the rails' length, or to form the floor section in accordance with the principles described in the present disclosure.


The upright structure may include at least one arm assembly. In some embodiments, the upright structure includes a first arm assembly on a first side of the upright structure and a second arm assembly on a second side of the upright structure. Each of the arm assemblies may include an arm, a distal end of the arm, and a pulley connected to the distal end of the arm.


In some examples, the arm assembly also includes a proximal end of the arm and a proximal axle connected to the proximal end. The axle may be aligned in the direction of the standing platform's rails or another direction that is traverse the vertical orientation of the upright structure. The arms may be pivoted about the proximal axis so that the arms can change the position of the distal pulley with respect to the location of the user. For example, the arms can rotate so that the arms can extend away from the upright structure when the exercise machine is in the operational mode. Also, the arms may rotate downwards so that the arms are aligned with the vertical orientation of the upright structure in the storage mode.


In an example where the upright structure includes a first arm and a second arm on the first and second sides of the upright structure, at least one of the aims may form any appropriate angle between zero and 180 degrees with respect to the upright structure from the view of a user standing on the standing platform. In this example, the arm may rotate downward into the upright structure and be aligned with the upright structure at a zero degree angle or another small angle. The arm may be rotated outward to form a 45 degree angle, a 90 degree angle, or a 135 degree angle with the respect to the upright structure or any angle therein between. In another example, the arm may be rotated upward so that the arm is aligned with the upright structure, but positioned away from the upright structure. At each of these angles, the arms may be preset to lock into place. In another example, the arms can lock into place at any appropriate angle without a preset feature. In this type of example, the arm assembly may include a mechanism that applies a magnetic force, a compressive force, or another type of force that locks the arm into place.


In one example where the arm can be rotated into preset positions, the arm assembly includes a plate that is adjacent to the proximal end of the arm. Multiple locking openings are defined in the plate around the plate's circumference. The proximal end of the arm may include a pin opening defined therein. A retractable pin may reside in the pin opening and may be spring loaded to insert into one of the multiple locking openings of the plate.


In some cases, the arms in each of the first arm assembly and the second arm assembly are movable independently of each other. In an alternative embodiment, the upright structure includes a single arm that can rotate about a larger range that a 180 degrees. In such an example, the user can use a single arm to work out both of his or her arms from different sides of the exercise machine at different times. In examples where the exercise machine includes two arms on different sides of the upright structure, the user can work out both of his or her arms simultaneously.


The proximal end of the arm may also include a proximal pulley. In some examples, a channel is defined in the arm from the location of the proximal pulley to the distal pulley. The cable may include a section that resides in the channel.


The cable may have an end that is attached to a resistance mechanism. From the resistance mechanism, the cable may be directed by a group of pulleys to distribute the resistance mechanism's loads. At the proximal end of the arm, the proximal pulley can provide a fulcrum that changes the cable's direction into the channel. At the distal end of the arm, the distal pulley can provide a fulcrum that also changes the direction of the cable. The distal end of the cable may include a handle that the user can grasp during the performance of strength exercises. The distal pulley may include a swivel that allows the distal pulley's body to rotate in an additional degree of freedom and allows the user to pull the cable from different angles.


The handle may be any appropriate type of connector for allowing the user to grasp the end of the cable. In some examples, at least one of the handles includes a loop. The loop may be made of a metal, a rope, a strap, or another type of material. The handle may be a replaceable handle so that the user can change the type of grip or move the handle to a different one of the handle connectors.


The exercise machine may use any appropriate type of resistance mechanism to resist the axial movement along the cable's length as the user performs dynamic pulls or pushes during the performance of the exercise. In one example, the resistance mechanism may include a flywheel. The flywheel may be located in any appropriate location of the exercise machine. In one example, the flywheel is located underneath the standing platform. In another example, the flywheel is located in the upright structure. The pulleys may orient the direction of the cable at different points along the cable's length to direct the resistance load from the resistance mechanism's location to the cable's distal end.


The flywheel may be incorporated into a magnetic resistance mechanism that applies a load of resistance to the movement of the pull cable. The level of resistance applied by the magnetic resistance mechanism may be controlled electronically. For example, an electrical input into an electromagnetic unit may produce an output of resistance that can resist the forces exerted by the user through the cable. In other examples, the distance between a magnetic unit and the flywheel can be changed so that the amount of magnetic resistance on the flywheel changes. For example, as the magnetic unit is applying a consistent a magnetic flux to the flywheel and is moved away from the flywheel, the magnetic resistance felt by the flywheel is reduced. Conversely, as the magnetic unit is moved towards the flywheel, the magnetic resistance felt at the flywheel increases. The inputs or outputs of these and other types of adjustable resistance mechanisms can be tracked and stored. As the flywheel rotates, the sensor may track the rotation of the flywheel. In some embodiments, the sensor causes a counter to be incremented up one for each rotation of the flywheel. In other embodiments, the sensor can track partial revolutions of the flywheel.


In some cases, the amount of resistance is tracked. The amount of resistance can be determined by the position of the magnetic unit and it's the magnetic field strength. As changes to the field strength and/or the distance from the flywheel occur, the resistance level changes. Thus, the exercise machine may recognize the changes in the tracked resistance level when these parameters change. The tracked level of resistance can be sent to a calorie tracker to determine the amount of calories burned by the user. Also, a sensor that tracks the position of the flywheel can also send position information to the calorie tracker as an input. The calorie tracker can determine the amount of calories burned during each pull and/or collectively during the course of the entire workout based on the inputs about the flywheel's position and the resistance level experienced by the flywheel.


In some examples, a single flywheel resists the movement of multiple resistance cables. But, in other examples, the exercise machine uses a single cable and the flywheel resists just the movement of a single cable.


In some examples where a single flywheel is used to resist the movement of multiple cables, the flywheel can be attached to a central shaft with multiple spools coaxially mounted around the central shaft. The spools can contain attachments to at least one of the cables. As one of the pull cables is moved in a first direction, the spools are rotated in a first direction. The torque generated by rotating the spools is transferred to the flywheel, and the flywheel rotates in the first direction with the spools. But, when the pull cable is returned, the force that caused the spools to rotated in the first direction ceases. At least one return mechanism is connected to the flywheel that, in the absence of the force imposed on the pull cable, causes the spools to rotate back in the opposite direction to their original orientation before the pull cable force was imposed. But, the arrangement between the flywheel, shaft, and spools does not transfer the torque generated in the second direction to the flywheel.


Thus, in this example, the flywheel rotates in a single direction regardless of the direction that the pull cable is moving. Further, in this example, the flywheel is just rotating when a pull force is exerted by the user, thus the position of the flywheel represents just the work done as part of the workout. In other words, the return movement of the cable does not affect the calorie count. Further, the calorie counting calculations of the cable exercise machine are simplified because the sensor is insulated from at least the return forces that may skew the calorie counting calculations. Consequently, the tracked calories represents just those calories that are consumed during the course of the workout.


The flywheel may be constructed of multiple parts. For example, the flywheel may include a magnetically conductive rim. In other embodiments, the flywheel includes another type of magnetically conductive component that interacts with the magnetic flux imparted by the arm. As the magnetic flux increases, more energy is used to rotate the flywheel. Thus, a user must impart a greater amount of energy as he or she pulls on the pull cable to rotate the flywheel. As a result of the increased resistance, the user will consume more calories. Likewise, as the magnetic flux decreases, less energy is used to rotate the flywheel. Thus, a user can impart a lower amount of energy as he or she pulls on the pull cable to rotate the flywheel.


While this example has been described with specific reference to an arm producing a magnetic flux that pivots to and away from the flywheel to achieve a desired amount of resistance to the rotation of the flywheel, any appropriate mechanism for applying a resistance to the rotation of the flywheel may be used in accordance with the principles described herein. For example, the arm may remain at a fixed distance from the flywheel. In this example, the magnetic flux may be altered by providing a greater electrical input to achieve a greater magnetic output. Further, in lieu of pivoting the arm to and away from the flywheel, a magnetic unit may be moved towards or away from the flywheel with a linear actuator or another type of actuator.


The cable exercise machine may further includes a control panel which may be incorporated into the upright structure or some other convenient location. The control panel may include various input devices (e.g., buttons, switches or dials) and output devices (e.g., LED lights, displays, alarms). The control panel may further include connections for communication with other devices. These input devices may be used to instruct the flywheel assembly to change a level of magnetic resistance, track calories, set a timer, play music, play an audiovisual program, provide other forms of entertainment, execute a pre-programmed workout, perform another type of task, or combinations thereof. A display can indicate the feedback to the user about his or her performance, the resistance level at which the resistance mechanism is set, the number of calories consumed during the workout, other types of information, or combinations thereof.


While this example has been described with specific reference to the flywheel rotating in just a single direction, in other examples, the flywheel rotates in multiple directions. Further, while this example has been described with reference to a specific arrangement of cables and pulleys, these components of the cable exercise machine may be arranged in other configurations.


A sensor tracks the rotational position of the flywheel. As the flywheel rotates from the movement of the pull cables, the sensor can track the revolutions that the flywheel rotates. In some examples, the sensor may track half revolutions, quarter revolutions, other fractional revolutions, or combinations thereof.


The sensor may be any appropriate type of sensor that can determine the rotational position of the flywheel. Further, the sensor may determine the flywheel's position based on features incorporated into the flywheel body, the magnetically conductive rim, or the central shaft of the flywheel. For example, the sensor may be a mechanical rotary sensor, an optical rotary sensor, a magnetic rotary sensor, a capacitive rotary sensor, a geared multi-turn sensor, an incremental rotary sensor, another type of sensor, or combinations thereof. In some examples, a visual code may be depicted on the flywheel body, and the sensor may read the orientation of the visual code to determine the number of revolutions or partial revolutions. In other examples, the flywheel body includes at least one feature that is counted as the features rotate with the flywheel body. In some examples, a feature is a magnetic feature, a recess, a protrusion, an optical feature, another type of feature, or combinations thereof.


The sensor can feed the number of revolutions and/or partial revolutions to a processor as an input. The processor can also receive as an input the level of resistance that was applied to the flywheel when the revolutions occurred. As a result, the processor can cause the amount of energy or number of calories consumed to be determined. In some examples, other information, other than just the calorie count, is determined using the revolution count. For example, the processor may also determine the expected remaining life of the cable exercise machine based on use. The expected remaining life may be based, at least in part, on the number of flywheel revolutions. Further, the processor may also use the revolution count to track when maintenance should occur on the machine, and send a message to the user indicating that maintenance should be performed on the machine based on usage.


In some examples, the sensor is accompanied with an accelerometer. The combination of the inputs from the accelerometer and the sensor can at least aid the processor is determining the force exerted by the user during each pull. The processor may also track the force per pull, the average force over the course of the workout, the trends of force over the course of the workout, and so forth. For example, the processor may cause a graph of force per pull to be displayed to the user. In this type of graph, the amount of force exerted by the user at the beginning of the workout verses the end of the workout may be depicted. This information may be useful to the user and/or a trainer in customizing a workout for the user.


The number of calories per pull may be presented to the user in a display of the cable exercise machine. In some examples, the calories for an entire workout are tracked and presented to the user. In some examples, the calorie count is presented to the user through the display, through an audible mechanism, through a tactile mechanism, through another type of sensory mechanism, or combinations thereof.

Claims
  • 1. An exercise machine, comprising: a rail;a standing platform including a floor section connected to the rail;a pivot connection incorporated into the standing platform, wherein the pivot connection is located closer to a floor than the floor section of the standing platform;an upright structure attached to the standing platform at the pivot connection, the upright structure having a bend;a movable element connected to the upright structure where the movable element is movable during a performance of an exercise;wherein the upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode; anda locking mechanism incorporated into the floor section;wherein the floor section is selectively movable along a length of the rail and selectively lockable into a stationary position with the rail with the locking mechanism.
  • 2. The exercise machine of claim 1, wherein the upright structure includes an arm assembly.
  • 3. The exercise machine of claim 2, wherein the arm assembly includes: an arm;an arm distal end of the arm; anda distal pulley connected to the arm distal end.
  • 4. The exercise machine of claim 3, wherein the arm assembly further includes: an arm proximal end of the arm;a pin opening defined proximate the arm proximal end;a retracted pin partially disposed within the pin opening;a proximal axle connected to the arm proximal end; anda locking plate with multiple locking openings defined therein;wherein the arm is pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings.
  • 5. The exercise machine of claim 1, wherein the exercise machine has a final folded height of 4 inches or less in the storage mode, measured tangentially from the floor to the top of the upright structure.
  • 6. The exercise machine of claim 3, wherein the arm assembly includes an arm proximal end of the arm, and in the storage mode, the arm proximal end is adjacent to the standing platform and the arm distal end is adjacent to the pivot connection.
  • 7. An exercise machine, comprising: a standing platform, the standing platform including: a rail;a floor section connected to the rail; anda locking mechanism incorporated into the floor section;wherein the floor section is selectively movable along a length of the rail and selectively lockable into a stationary position with the rail with the locking mechanism;a pivot connection incorporated into the standing platform;an upright structure attached to the standing platform at the pivot connection, the upright structure including a first beam on a first side of the rail and a second beam on a second side of the rail;an arm assembly attached to the upright structure, the arm assembly including: an arm;an arm distal end of the arm; anda distal pulley connected to the arm distal end;a cable connected to the arm assembly where the cable is movable during a performance of an exercise;wherein the upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode; andwherein the exercise machine has a final folded height of 6 inches or less in the storage mode, measured tangentially from the floor to the top of the upright structure.
  • 8. The exercise machine of claim 7, wherein the arm assembly further includes: an arm proximal end of the arm;a pin opening defined proximate the arm proximal end;a retracted pin partially disposed within the pin opening;a proximal axle connected to the arm proximal end; anda locking plate with multiple locking openings defined therein;wherein the arm is pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings.
  • 9. The exercise machine of claim 8, wherein the cable is directed with the distal pulley.
  • 10. The exercise machine of claim 9, further including: a cable distal end of the cable; anda handle attached to the cable distal end.
  • 11. The exercise machine of claim 10, further including: a resistance mechanism incorporated into the exercise machine; anda proximal end of the cable is attached to the resistance mechanism.
  • 12. The exercise machine of claim 11, further including: a proximal pulley located near the proximal end of the arm;wherein the cable is directed with the proximal pulley and the distal pulley.
  • 13. The exercise machine of claim 7, wherein the pivot connection includes an anti-rotation feature that interlocks the upright structure with the standing platform.
  • 14. An exercise machine comprising: a standing platform;a pivot connection incorporated into the standing platform;an upright structure attached to the standing platform at the pivot connection, the upright structure including an arm assembly, wherein the arm assembly includes: an arm;an arm distal end of the arm and an arm proximal end of the arm;a distal pulley connected to the arm distal end; anda proximal pulley connected to the arm proximal end;a platform pulley located at the standing platform; anda cable connected to the upright structure, wherein the cable is movable during a performance of an exercise and directed by the distal pulley, the proximal pulley, and the platform pulley, and wherein the upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode.
  • 15. The exercise machine of claim 14, further including: a cable distal end of the cable; anda handle attached to the cable distal end.
  • 16. The exercise machine of claim 14, further including: a resistance mechanism incorporated into the exercise machine; anda proximal end of the cable is attached to the resistance mechanism.
  • 17. The exercise machine of claim 14, further including: a passage defined within a length of the arm;wherein a section of the cable between the proximal pulley and the distal pulley resides within the passage.
  • 18. The exercise machine of claim 16, wherein the resistance mechanism is located underneath the standing platform.
  • 19. An exercise machine, comprising: a standing platform;a pivot connection incorporated into the standing platform, wherein the pivot connection is located closer to a floor than a floor section of the standing platform;an upright structure attached to the standing platform at the pivot connection, the upright structure having a bend, wherein the upright structure includes an arm assembly;a movable element connected to the upright structure where the movable element is movable during a performance of an exercise;wherein the upright structure is rotated about the pivot connection in a transverse orientation to the standing platform when the exercise machine is in an operational mode and the upright structure is rotated about the pivot connection in an aligned orientation with the standing platform when the exercise machine is in a storage mode;an arm;an arm distal end of the arm;a distal pulley connected to the arm distal end;an arm proximal end of the arm;a pin opening defined proximate the arm proximal end;a retracted pin partially disposed within the pin opening;a proximal axle connected to the arm proximal end; anda locking plate with multiple locking openings defined therein;wherein the arm is pivotal about the proximal axle and lockable in an angular position that corresponds to one of the multiple locking openings.
RELATED APPLICATIONS

This application claims priority to U.S. Patent Application Ser. No. 62/310,467 titled “Collapsible Strength Exercise Machine” and filed on Mar. 18, 2016, which application is herein incorporated by reference for all that it discloses.

US Referenced Citations (2706)
Number Name Date Kind
9595 Moreland Feb 1853 A
9695 Hinsdale May 1853 A
34577 Jabden Mar 1862 A
104973 Man Jul 1870 A
115826 Creed Jun 1871 A
192338 Marshall Jun 1877 A
232022 Gifford Sep 1880 A
232579 Weeks Sep 1880 A
248121 Tuttle Oct 1881 A
321388 Ruebsam Jun 1885 A
325435 North Sep 1885 A
337942 Parley Mar 1886 A
353089 Smith Nov 1886 A
356219 Yeoman Jan 1887 A
359778 Pauber Mar 1887 A
372272 Murphy Oct 1887 A
374496 Reach Dec 1887 A
428912 Holmes May 1890 A
457400 Dowd Aug 1891 A
480271 Newton Aug 1892 A
484352 Ayton Oct 1892 A
588350 Perkins Aug 1897 A
603350 Towers May 1898 A
610716 Marshal Sep 1898 A
624995 Tellefsen May 1899 A
679784 Ryan Aug 1901 A
680556 Wray Aug 1901 A
682988 Carroll Sep 1901 A
685788 Mcfadden Nov 1901 A
689418 Ryan Dec 1901 A
722462 Smith Mar 1903 A
723625 Thonrley Mar 1903 A
754992 Grabner Mar 1904 A
760374 Belvoir May 1904 A
761504 Kleinbach May 1904 A
772906 Splading Oct 1904 A
776824 Reach Dec 1904 A
807670 Grabner Dec 1905 A
846389 Blackburn Mar 1907 A
852193 Mcmillan Apr 1907 A
943127 Van Boven Dec 1909 A
964745 Blakoe Jul 1910 A
979609 Vaughn Dec 1910 A
1019861 Titus Mar 1912 A
1082940 Smith Dec 1913 A
1115826 Johnson Nov 1914 A
1123272 Goodman Jan 1915 A
1144085 Abplanalp Jun 1915 A
1316683 Calvert Sep 1919 A
1422888 Reeves Jul 1922 A
1495278 Titus May 1924 A
1539214 Shockey May 1925 A
1576474 Walker Mar 1926 A
1585748 Wendelken May 1926 A
1672944 Jowett Jun 1928 A
1698831 Titus Jan 1929 A
1851843 Inman Mar 1932 A
1917566 Wood Jul 1933 A
1928089 Blickman Sep 1933 A
1982843 Traver Dec 1934 A
1982872 Newton Dec 1934 A
1991520 Postl Feb 1935 A
2129262 Rex Sep 1938 A
2145940 Marlowe Feb 1939 A
2153077 Clarke Apr 1939 A
2183345 Brandon Dec 1939 A
2209034 Rene Jul 1940 A
2219219 Boger Oct 1940 A
2274574 Zerne Feb 1942 A
2315485 Jones Le Roy Apr 1943 A
2346105 Haehnel Apr 1944 A
2379984 Nereaux Jul 1945 A
2436987 Bailleaux Mar 1948 A
2438548 Ehmann Mar 1948 A
2456017 Park Dec 1948 A
2470544 Bell May 1949 A
2472391 Albizu Jun 1949 A
2500299 Spitzkeit Mar 1950 A
2512417 Polite Jun 1950 A
2573351 Motis Oct 1951 A
2632645 Barkschat Mar 1953 A
2637319 Bruene May 1953 A
2640696 Lemieux Jun 1953 A
2641250 Brockman Jun 1953 A
2642288 Bell Jun 1953 A
2646282 Ringman Jul 1953 A
2648540 Hunter Aug 1953 A
2654135 Grizzard et al. Oct 1953 A
2695797 Mccarthy et al. Nov 1954 A
2714507 Goodrich Aug 1955 A
2740178 Kellems Apr 1956 A
2763156 Garigal Sep 1956 A
2843858 Bjorklund Jul 1958 A
2855200 Blickman Oct 1958 A
2924456 Miller Feb 1960 A
2927006 Brooks Mar 1960 A
2938695 Ciampa May 1960 A
2968337 Bartlett Jan 1961 A
2969060 Swanda Jan 1961 A
2977120 Morris Mar 1961 A
2978830 Killian Apr 1961 A
2985933 Peterson et al. May 1961 A
3000628 Kellogg Sep 1961 A
3057201 Erich Oct 1962 A
3068002 Balne Dec 1962 A
3090092 Szemplak May 1963 A
3099509 Duenke Jul 1963 A
3115332 Singleton Dec 1963 A
3118441 Prosser Jan 1964 A
3161395 Carter Dec 1964 A
3193287 Robinson Jul 1965 A
3194598 Goldfuss Jul 1965 A
3205888 Stroop Sep 1965 A
3246894 Salisbury Apr 1966 A
3256630 Spector Jun 1966 A
3270494 Holmes Sep 1966 A
3312466 Melchiona Apr 1967 A
3323367 Searle Jun 1967 A
3342485 Martin Sep 1967 A
3345067 Smith Oct 1967 A
3349621 Mullen Oct 1967 A
3370584 William Feb 1968 A
3373993 Oja et al. Mar 1968 A
3380737 Petros Apr 1968 A
3381958 Gulland May 1968 A
3384370 Eugene et al. May 1968 A
3390460 Brown Jul 1968 A
3411776 Holkesvick et al. Nov 1968 A
3428311 Mitchell Feb 1969 A
3428312 Machen Feb 1969 A
3432164 Deeks Mar 1969 A
3438627 La Lanne Apr 1969 A
3446503 Lawton May 1969 A
3456592 Nelson Jul 1969 A
3465592 Perrine Sep 1969 A
3482835 Dean Dec 1969 A
3488051 Scherer Jan 1970 A
3495824 Cuinier Feb 1970 A
3501140 Eichorn Mar 1970 A
3511500 Dunn May 1970 A
3540724 Hunter Nov 1970 A
3563541 Sanquist Feb 1971 A
3566861 Beacon Enterprises Inc Mar 1971 A
3567219 Foster Mar 1971 A
3572700 Mastropaolo Mar 1971 A
3588101 Jungreis Jun 1971 A
3589193 Thornton Jun 1971 A
3589720 Agamian Jun 1971 A
3598404 Bowman Aug 1971 A
3601398 Brochman Aug 1971 A
3606406 Keystone Consolidated Ind Inc Sep 1971 A
3614097 Blickman Oct 1971 A
3614108 Garten Oct 1971 A
3617056 Herbold Nov 1971 A
3638941 Kulkens Feb 1972 A
3640528 Proctor Feb 1972 A
3640530 Henson et al. Feb 1972 A
3643943 Erwin, Jr. et al. Feb 1972 A
3647209 La Lanne Mar 1972 A
3652085 Civalier Mar 1972 A
3658327 Thiede Apr 1972 A
3659845 Quinton May 1972 A
3664910 Hollie May 1972 A
3664916 Rhodiaceta May 1972 A
3672124 Pirotta Jun 1972 A
3679244 Reddy Jul 1972 A
3690655 Chapman Sep 1972 A
3708166 Paramount Health Equip Corp Jan 1973 A
3708167 Potgieter Jan 1973 A
3758109 Bender Sep 1973 A
3759511 Zinkin Sep 1973 A
3761083 Buchner Sep 1973 A
3767195 Dimick Oct 1973 A
3771785 Speyer Nov 1973 A
3784193 Simjian Jan 1974 A
3789467 Aratani et al. Feb 1974 A
3792860 Seines Feb 1974 A
3797624 Powell et al. Mar 1974 A
3802701 Good Apr 1974 A
3807728 Chillier Apr 1974 A
3809393 Jones May 1974 A
3814420 Encke Jun 1974 A
3815903 Blomqvist Jun 1974 A
3822599 Brentham Jul 1974 A
3825253 Speyer Jul 1974 A
3831942 Del Mar Aug 1974 A
3833216 Philbin Sep 1974 A
3834696 Spector Sep 1974 A
3840227 Chesemore Oct 1974 A
3848467 Flavell Nov 1974 A
3851874 Wilkin Dec 1974 A
3858873 Jones Jan 1975 A
3858874 Weider Jan 1975 A
3870297 Elder Mar 1975 A
3874375 Penner Apr 1975 A
3874657 Niebojewski Apr 1975 A
3884464 Evangelos May 1975 A
3891207 Helliwell Jun 1975 A
3892404 Martucci Jul 1975 A
3902480 Wilson Sep 1975 A
3902717 Kulkens Sep 1975 A
3913908 Speyer Oct 1975 A
3918710 Niebojewski Nov 1975 A
3920240 Ross Nov 1975 A
3926430 Good, Jr. Dec 1975 A
3938803 Wilmoth Feb 1976 A
3953025 Mazman Apr 1976 A
3957266 Rice May 1976 A
3958803 Geisselbrecht May 1976 A
3971555 Mahnke Jul 1976 A
3976058 Tidwell Aug 1976 A
3979931 Man Sep 1976 A
3981500 Ryan Sep 1976 A
3984666 Barron Oct 1976 A
3998454 Jones Dec 1976 A
4004801 Campanaro Jan 1977 A
4026545 Schonenberger May 1977 A
4026548 Birdwell May 1977 A
4029312 Wright Jun 1977 A
4042305 Vincent Aug 1977 A
4043552 Kerkonian Aug 1977 A
4059265 Wieder et al. Nov 1977 A
4060240 Dunston Nov 1977 A
4061257 St. Clair Dec 1977 A
4063727 Hall Dec 1977 A
4066868 Witkin et al. Jan 1978 A
4071235 Zent Jan 1978 A
4072309 Wilson Feb 1978 A
4073490 Feather Feb 1978 A
4074409 Smith Feb 1978 A
4074519 Garrett Feb 1978 A
4076236 Ionel Feb 1978 A
4076237 Dussia Feb 1978 A
4082267 Flavell Apr 1978 A
4093211 Hughes et al. Jun 1978 A
4098100 Wah Jul 1978 A
4101124 Mahnke Jul 1978 A
4122585 Sharp et al. Oct 1978 A
4131701 VanAuken Dec 1978 A
4140312 Buchmann Feb 1979 A
4154441 Gajda May 1979 A
4157181 Cecka Jun 1979 A
4157594 Raabe Jun 1979 A
4170351 Ozbey Oct 1979 A
4171805 Abbott Oct 1979 A
4176836 Coyle Dec 1979 A
4188030 Hooper Feb 1980 A
4193630 Steele Mar 1980 A
4198044 Holappa Apr 1980 A
4199139 Mahnke Apr 1980 A
4200279 Lambert, Jr. Apr 1980 A
4200280 Goodwin Apr 1980 A
4204673 Speer, Sr. May 1980 A
4207879 Safadago Jun 1980 A
4208049 Wilson Jun 1980 A
4227689 Keiser Oct 1980 A
4231568 Riley Nov 1980 A
4231569 Rae Nov 1980 A
4239092 Janson Dec 1980 A
4241915 Noble Dec 1980 A
4249773 Giambalvo Feb 1981 A
4252314 Ceppo Feb 1981 A
4253662 Podolak Mar 1981 A
4256302 Keiser et al. Mar 1981 A
4257590 Sullivan et al. Mar 1981 A
4258913 Brentham Mar 1981 A
4263897 Terayama Apr 1981 A
4274625 Gaetano Jun 1981 A
4275882 Grosser et al. Jun 1981 A
4278249 Forrest Jul 1981 A
4286782 Fuhrhop Sep 1981 A
4296924 Anzaldua et al. Oct 1981 A
4300760 Bobroff Nov 1981 A
4300761 Howard Nov 1981 A
4307880 Abram Dec 1981 A
4316609 Silberman Feb 1982 A
4316610 Hinds Feb 1982 A
4325548 Piccini Apr 1982 A
4327713 Okazaki et al. May 1982 A
4328964 Walls May 1982 A
4328965 Hatfield May 1982 A
4328968 Hacker May 1982 A
4334678 Doyel Jun 1982 A
4345756 Hoagland Aug 1982 A
4346888 Szabo Aug 1982 A
4349192 Lambert, Jr. et al. Sep 1982 A
4354675 Barclay et al. Oct 1982 A
4355061 Zeigler Oct 1982 A
4357010 Telle Nov 1982 A
4357011 Voris Nov 1982 A
4368735 Filmer Jan 1983 A
4369966 Silberman et al. Jan 1983 A
4371162 Hartzell Feb 1983 A
4372553 Hatfield Feb 1983 A
4373716 Pagani Feb 1983 A
4374588 Ruggles Feb 1983 A
4376533 Kolbel Mar 1983 A
4382596 Silberman May 1983 A
4383684 Schliep May 1983 A
4384715 Barrett, Jr. May 1983 A
4387893 Baldwin Jun 1983 A
4389047 Hall Jun 1983 A
4390179 Szkalak Jun 1983 A
4391440 Berger Jul 1983 A
4397462 Wilmarth Aug 1983 A
4398713 Ellis Aug 1983 A
4402504 Christian Sep 1983 A
4422636 de Angeli Dec 1983 A
4424693 Best et al. Jan 1984 A
4426077 Becker Jan 1984 A
4428577 Croom Jan 1984 A
4428578 Kirkpatrick Jan 1984 A
4431181 Baswell Feb 1984 A
4431184 Lew et al. Feb 1984 A
4441708 Brentham Apr 1984 A
4448434 Anderson May 1984 A
4452448 Ausherman Jun 1984 A
4456245 Baldwin Jun 1984 A
4456246 Szabo Jun 1984 A
4461473 Cole Jul 1984 A
4463948 Mohr Aug 1984 A
4465274 Davenport Aug 1984 A
4465276 Cox Aug 1984 A
4474370 Oman Oct 1984 A
4477071 Brown et al. Oct 1984 A
4478413 Siwula Oct 1984 A
4482152 Wolff Nov 1984 A
4489933 Fisher Dec 1984 A
4489936 Dal Monte Dec 1984 A
4492375 Connelly Jan 1985 A
4494662 Clymer Jan 1985 A
4502679 De Lorenzo Mar 1985 A
4502682 Miller Mar 1985 A
4505475 Olschansky et al. Mar 1985 A
4505495 Foss et al. Mar 1985 A
4511137 Jones Apr 1985 A
4512571 Hermelin Apr 1985 A
4515363 Schleffendorf May 1985 A
4521013 Dofel Jun 1985 A
4529194 Haaheim Jul 1985 A
4529196 Logan Jul 1985 A
4529197 Gogarty Jul 1985 A
4529198 Hettick, Jr. Jul 1985 A
4531727 Pitre Jul 1985 A
4531731 Law Jul 1985 A
4533136 Smith et al. Aug 1985 A
4537396 Hooper Aug 1985 A
4538805 Parviainen Sep 1985 A
4540171 Clark Sep 1985 A
4540173 Hopkins, Jr. Sep 1985 A
4542899 Hendricks Sep 1985 A
4546967 Kecala Oct 1985 A
4546970 Mahnke Oct 1985 A
4546971 Raasoch Oct 1985 A
4549433 Gneiss et al. Oct 1985 A
4549733 Salyer Oct 1985 A
4549734 Hibler, Jr. Oct 1985 A
4555109 Hartmann Nov 1985 A
4556216 Pitkanen Dec 1985 A
4563001 Terauds Jan 1986 A
4563003 Bugallo et al. Jan 1986 A
4564193 Stewart Jan 1986 A
4565369 Bedgood Jan 1986 A
4566689 Ogden Jan 1986 A
4566690 Schook Jan 1986 A
4569518 Fulks Feb 1986 A
4569519 Mattox et al. Feb 1986 A
4575074 Damratoski Mar 1986 A
4576377 Wolff Mar 1986 A
4577861 Bangerter et al. Mar 1986 A
4579360 Nishimura et al. Apr 1986 A
4582320 Shaw Apr 1986 A
4587695 Jensen May 1986 A
4591150 Mosher May 1986 A
4591151 Hensley May 1986 A
4592544 Smith et al. Jun 1986 A
4598908 Morgan Jul 1986 A
4600188 Bangerter et al. Jul 1986 A
4600189 Olschansky et al. Jul 1986 A
4600196 Jones Jul 1986 A
4603855 Sebelle Aug 1986 A
4603856 Fiore Aug 1986 A
4606540 Chin Sen Aug 1986 A
4606541 Kirkpatrick Aug 1986 A
4607840 Harper Aug 1986 A
4607841 Gala Aug 1986 A
4608969 Hamlin Sep 1986 A
4609174 Nakatani Sep 1986 A
4610448 Hill Sep 1986 A
4610449 Diercks, Jr. Sep 1986 A
4611805 Franklin et al. Sep 1986 A
4618139 Haaheim Oct 1986 A
4618140 Brown Oct 1986 A
4618144 Gibson Oct 1986 A
4620701 Mojden Nov 1986 A
4620704 Shifferaw Nov 1986 A
4621623 Wang Nov 1986 A
4621807 Stramer Nov 1986 A
4621810 Cummins Nov 1986 A
4624457 Silberman et al. Nov 1986 A
4625962 Street Dec 1986 A
4627614 De Angeli Dec 1986 A
4627615 Nurkowski Dec 1986 A
4627616 Kauffman Dec 1986 A
4627618 Schwartz Dec 1986 A
4632385 Geraci Dec 1986 A
4632388 Schleffendorf Dec 1986 A
4632390 Richey Dec 1986 A
4632393 Van Noord Dec 1986 A
4632414 Ellefson Dec 1986 A
4632421 Shamie Dec 1986 A
4634118 Jensen Jan 1987 A
4634127 Rockwell Jan 1987 A
4635926 Minkow Jan 1987 A
4638994 Gogarty Jan 1987 A
4641833 Trethewey Feb 1987 A
4643420 Riley Feb 1987 A
4645198 Levenston Feb 1987 A
4647037 Donohue Mar 1987 A
4647040 Ehrenfried Mar 1987 A
4648481 Lee Mar 1987 A
4648594 Schleffendorf Mar 1987 A
4650183 McIntyre Mar 1987 A
4650185 Cartwright Mar 1987 A
4651988 Sobel Mar 1987 A
4655448 Harder Apr 1987 A
4657246 Salyer Apr 1987 A
4659077 Stropkay Apr 1987 A
4660550 Bodine Apr 1987 A
4662629 Plovie May 1987 A
4666149 Olschansky et al. May 1987 A
4666151 Chillier May 1987 A
4673180 Rice Jun 1987 A
4678185 Mahnke Jul 1987 A
4679786 Rodgers Jul 1987 A
4679787 Guilbault Jul 1987 A
4684126 Dalebout et al. Aug 1987 A
4685670 Zinkin Aug 1987 A
4685671 Hagerman et al. Aug 1987 A
4697809 Rockwell Oct 1987 A
4700946 Breunig Oct 1987 A
4705267 Jackson Nov 1987 A
4706953 Graham Nov 1987 A
4709920 Schnell Dec 1987 A
4717146 Nohara Jan 1988 A
4720099 Carlson Jan 1988 A
4721301 Drake Jan 1988 A
4721303 Fitzpatrick Jan 1988 A
4722522 Lundgren Feb 1988 A
4725057 Shifferaw Feb 1988 A
4726581 Chang Feb 1988 A
4726582 Fulks Feb 1988 A
4728099 Pitre Mar 1988 A
4729558 Kuo Mar 1988 A
4729562 Pipasik Mar 1988 A
4730828 Lane Mar 1988 A
4730829 Carlson Mar 1988 A
4733860 Steffee Mar 1988 A
4733905 Buickerood Mar 1988 A
4741530 Wolf May 1988 A
4743010 Geraci May 1988 A
4743015 Marshall May 1988 A
4743017 Jaeger May 1988 A
4744559 Mahnke et al. May 1988 A
4746115 Lahman May 1988 A
4750736 Watterson Jun 1988 A
4750738 Dang Jun 1988 A
4753437 Lapcevic Jun 1988 A
4756527 Ledbetter Jul 1988 A
4763897 Yakata Aug 1988 A
4765610 Sidwell Aug 1988 A
4765613 Voris Aug 1988 A
4765616 Wolff Aug 1988 A
4768780 Hayes Sep 1988 A
4772015 Carlson et al. Sep 1988 A
4773640 Kolbel et al. Sep 1988 A
4775149 Wilson Oct 1988 A
4776581 Shepherdson Oct 1988 A
4776587 Carlson et al. Oct 1988 A
4778173 Joutras Oct 1988 A
4779867 Hinds Oct 1988 A
4784384 Deola Nov 1988 A
4786050 Geschwender Nov 1988 A
4789153 Brown Dec 1988 A
4790522 Drutchas Dec 1988 A
4790596 Shifferaw Dec 1988 A
4793608 Mahnke et al. Dec 1988 A
4798377 White Jan 1989 A
4799671 Hoggan et al. Jan 1989 A
4801139 Vanhoutte Jan 1989 A
4801140 Bergeron Jan 1989 A
4804178 Friedebach Feb 1989 A
4807874 Little Feb 1989 A
4807893 Huang Feb 1989 A
4809972 Rasmussen et al. Mar 1989 A
4809973 Johns Mar 1989 A
4809976 Berger Mar 1989 A
4813667 Weslo Inc Mar 1989 A
4822034 Shields Apr 1989 A
4822035 Jennings et al. Apr 1989 A
4822038 Maag Apr 1989 A
4826153 Schalip May 1989 A
4826157 Fitzpatrick May 1989 A
4826158 Fields, Jr. May 1989 A
4830363 Kennedy May 1989 A
4830365 March May 1989 A
4832332 Dumbser May 1989 A
4834365 Jones May 1989 A
4834396 Schnell May 1989 A
4836535 Pearson Jun 1989 A
4838180 Gutgsell Jun 1989 A
4838543 Armstrong et al. Jun 1989 A
4838544 Sasakawa et al. Jun 1989 A
4840373 Maag Jun 1989 A
4842268 Jenkins Jun 1989 A
4842274 Oosthuizen Jun 1989 A
4844448 Niznik Jul 1989 A
4844450 Rodgers, Jr. Jul 1989 A
4844453 Hestilow Jul 1989 A
4844456 Habing et al. Jul 1989 A
4846458 Potts Jul 1989 A
4848737 Ehrenfield Jul 1989 A
4852874 Sleichter, III et al. Aug 1989 A
4854578 Fulks Aug 1989 A
4856773 Deola Aug 1989 A
4856775 Colledge Aug 1989 A
4858912 Boyd Aug 1989 A
4858915 Szabo Aug 1989 A
4858918 Iams et al. Aug 1989 A
4861020 Soligny, Sr. Aug 1989 A
4861023 Wedman Aug 1989 A
4861025 Rockwell Aug 1989 A
4863161 Telle Sep 1989 A
4863163 Wehrell Sep 1989 A
4869493 Johnston Sep 1989 A
4872670 Nichols Oct 1989 A
4877239 Dela Rosa Oct 1989 A
4878662 Chern Nov 1989 A
4880227 Sowell Nov 1989 A
4880229 Broussard Nov 1989 A
4880230 Cook Nov 1989 A
4887929 Hale Dec 1989 A
4889458 Taylor Dec 1989 A
4893409 Poehlmann Jan 1990 A
4893810 Lee Jan 1990 A
4898381 Gordon Feb 1990 A
4900013 Rodgers, Jr. Feb 1990 A
4900016 Caruthers Feb 1990 A
4900018 Ish, III Feb 1990 A
4902006 Stallings, Jr. Feb 1990 A
4902007 Ferrari Feb 1990 A
4907795 Shaw et al. Mar 1990 A
4907797 Gezari et al. Mar 1990 A
4907798 Burchatz Mar 1990 A
4909505 Tee Mar 1990 A
4911436 Lighter Mar 1990 A
4911438 Van Straaten Mar 1990 A
4913419 McAuliffe Apr 1990 A
4913422 Elmore Apr 1990 A
4913423 Farran Apr 1990 A
4915377 Malnke et al. Apr 1990 A
4915379 Sapp Apr 1990 A
4919419 Houston Apr 1990 A
4921242 Watterson May 1990 A
4921245 Roberts May 1990 A
4925200 Jones May 1990 A
4927136 Leask May 1990 A
4927138 Ferrari May 1990 A
4928961 Madden May 1990 A
4930768 Lapcevic Jun 1990 A
4930769 Nenoff Jun 1990 A
4930770 Baker Jun 1990 A
4934690 Bull Jun 1990 A
4934692 Owens Jun 1990 A
4940233 Bull Jul 1990 A
4944511 Francis Jul 1990 A
4944518 Flynn Jul 1990 A
4948121 Haaheim et al. Aug 1990 A
4948123 Schook Aug 1990 A
4949951 Deola Aug 1990 A
4949954 Hix Aug 1990 A
4949958 Richey Aug 1990 A
4949959 Stevens Aug 1990 A
4958832 Kim Sep 1990 A
4964632 Rockwell Oct 1990 A
4971305 Rennex Nov 1990 A
4971316 Dalebout et al. Nov 1990 A
4973050 Santoro Nov 1990 A
4974836 Hirsch Dec 1990 A
4974838 Sollenberger Dec 1990 A
4976428 Ghazi Dec 1990 A
4978122 Dibowski Dec 1990 A
4982955 Heasley Jan 1991 A
4986689 Drutchas Jan 1991 A
4989860 Iams et al. Feb 1991 A
4990838 Kawato et al. Feb 1991 A
4992190 Shtarkman Feb 1991 A
4995777 Warmington Feb 1991 A
4998723 Santoro Mar 1991 A
5000440 Lynch Mar 1991 A
5000442 Dalebout Mar 1991 A
5000446 Sarno Mar 1991 A
5004224 Wang Apr 1991 A
5005832 Hoeven Apr 1991 A
5011139 Towley, III Apr 1991 A
5011142 Eckler Apr 1991 A
5015926 Casler May 1991 A
5018725 Cook May 1991 A
5022377 Stevens Jun 1991 A
5026049 Goodman Jun 1991 A
5029848 Sleamaker Jul 1991 A
5029849 Nurkowski Jul 1991 A
5029850 Van Straaten Jul 1991 A
5031905 Walsh Jul 1991 A
5032048 Walton et al. Jul 1991 A
5033740 Schwartz Jul 1991 A
5037090 Fitzpatrick Aug 1991 A
5039088 Shifferaw Aug 1991 A
5039089 Lapcevic Aug 1991 A
5039091 Johnson Aug 1991 A
5040785 Charnitski Aug 1991 A
5040787 Brotman Aug 1991 A
5040788 Randall Aug 1991 A
5042704 Izzo Aug 1991 A
5042799 Stanley Aug 1991 A
5044629 Ryan Sep 1991 A
5044631 Jones Sep 1991 A
5044632 Jones Sep 1991 A
5048825 Kelly Sep 1991 A
5048826 Ryan Sep 1991 A
5050872 Farenholtz Sep 1991 A
5050873 Jones Sep 1991 A
5051638 Pyles Sep 1991 A
5052684 Kosuge et al. Oct 1991 A
5056777 Capjon et al. Oct 1991 A
5058882 Dalebout et al. Oct 1991 A
5058884 Fuller, Sr. Oct 1991 A
5058888 Walker et al. Oct 1991 A
5062627 Bingham Nov 1991 A
5062630 Nelson Nov 1991 A
5062631 Dau et al. Nov 1991 A
5062633 Engel et al. Nov 1991 A
5064191 Johnson Nov 1991 A
5071115 Welch Dec 1991 A
5071119 Johnson Dec 1991 A
5074550 Sloan Dec 1991 A
5080353 Tench Jan 1992 A
5085430 Habing Feb 1992 A
5090694 Pauls et al. Feb 1992 A
5094449 Stearns Mar 1992 A
5100129 Illene Mar 1992 A
5102121 Solow et al. Apr 1992 A
5102122 Piane, Jr. Apr 1992 A
5102124 Diodati Apr 1992 A
5104120 Watterson et al. Apr 1992 A
5106079 Escobedo Apr 1992 A
5108090 Reed Apr 1992 A
5108093 Watterson Apr 1992 A
5110117 Fisher et al. May 1992 A
5110118 Winey May 1992 A
5110121 Foster May 1992 A
5112287 Brewer May 1992 A
5114391 Pitzen et al. May 1992 A
5116297 Stonecipher May 1992 A
5120289 Yu Jun 1992 A
5123885 Shields Jun 1992 A
5123886 Cook Jun 1992 A
5125647 Smith Jun 1992 A
5125884 Weber et al. Jun 1992 A
5129872 Dalton et al. Jul 1992 A
5131898 Panagos Jul 1992 A
5135216 Bingham et al. Aug 1992 A
5135445 Christensen Aug 1992 A
5135449 Jones Aug 1992 A
5135453 Sollenberger Aug 1992 A
5135458 Huang Aug 1992 A
5135459 Perry, Jr. Aug 1992 A
5137272 Wilkinson Aug 1992 A
5141478 Upper Aug 1992 A
5141483 Smith Aug 1992 A
5145481 Friedebach Sep 1992 A
5147266 Ricard Sep 1992 A
5149312 Croft et al. Sep 1992 A
5151071 Jain et al. Sep 1992 A
5156650 Bals Oct 1992 A
5158518 Pizzuto Oct 1992 A
5158520 Lemke et al. Oct 1992 A
5160305 Lin Nov 1992 A
5167850 Shtarkman Dec 1992 A
5169362 Schwartz Dec 1992 A
5169363 Campanaro Dec 1992 A
5171196 Lynch Dec 1992 A
5176601 Reynolds Jan 1993 A
5176602 Roberts Jan 1993 A
5178590 Stephens Jan 1993 A
5178599 Scott Jan 1993 A
5180352 Sreter Jan 1993 A
5181894 Shieng Jan 1993 A
5184991 Brangi Feb 1993 A
5184994 Morris Feb 1993 A
5190509 Davison, Jr. Mar 1993 A
5190513 Habing et al. Mar 1993 A
5192257 Panasewicz Mar 1993 A
5194059 Wu Mar 1993 A
5195937 Engel et al. Mar 1993 A
5199934 Lin Apr 1993 A
5199935 Gibson et al. Apr 1993 A
5201694 Zappel Apr 1993 A
5201772 Maxwell Apr 1993 A
5203126 Sorenson et al. Apr 1993 A
5205802 Swisher Apr 1993 A
5207621 Koch et al. May 1993 A
5207622 Wilkinson et al. May 1993 A
5209223 McGorry et al. May 1993 A
5209482 Hopfer May 1993 A
5209715 Walker et al. May 1993 A
5211614 Henes May 1993 A
5211617 Millen May 1993 A
5217422 Domzalski Jun 1993 A
5221240 Mann Jun 1993 A
5221245 Yeh Jun 1993 A
5222928 Yacullo Jun 1993 A
5224909 Hamilton Jul 1993 A
5226866 Engel et al. Jul 1993 A
5226868 Montgomery Jul 1993 A
5230680 Wu Jul 1993 A
5231752 Hereford Aug 1993 A
5232422 Bishop, Jr. Aug 1993 A
5234392 Clark Aug 1993 A
5234395 Miller et al. Aug 1993 A
5236406 Webber Aug 1993 A
5242340 Jerome Sep 1993 A
5242342 Silverman Sep 1993 A
5242344 Hundley Sep 1993 A
5242345 Mitchell Sep 1993 A
5242348 Bates Sep 1993 A
5242353 Cole et al. Sep 1993 A
5250013 Brangi Oct 1993 A
5254065 Pollock Oct 1993 A
5254066 Brown et al. Oct 1993 A
5254067 Habing et al. Oct 1993 A
5256117 Potts et al. Oct 1993 A
5256121 Brotman Oct 1993 A
5256126 Grotstein Oct 1993 A
5261865 Trainor Nov 1993 A
5263913 Boren Nov 1993 A
5263915 Habing Nov 1993 A
5263916 Bobich Nov 1993 A
5267929 Chen Dec 1993 A
5267930 Henes Dec 1993 A
5269736 Roberts Dec 1993 A
5269737 Sobotka Dec 1993 A
5269738 Boren Dec 1993 A
5271416 Lepley Dec 1993 A
5273505 Jones Dec 1993 A
5277683 Wilkins Jan 1994 A
5277684 Harris Jan 1994 A
5280936 Schmidlin Jan 1994 A
5281193 Colbo, Jr. Jan 1994 A
5282776 Dalebout Feb 1994 A
5284461 Wilkinson et al. Feb 1994 A
5284463 Shields Feb 1994 A
5286243 Lapcevic Feb 1994 A
5290214 Chen Mar 1994 A
5292297 Hsu Mar 1994 A
5298002 Lin Mar 1994 A
5299992 Wilkinson Apr 1994 A
5299993 Habing Apr 1994 A
5299997 Chen Apr 1994 A
5302161 Loubert et al. Apr 1994 A
5303885 Wade Apr 1994 A
5306218 Chen Apr 1994 A
5306221 Itaru Apr 1994 A
5308234 Nicke et al. May 1994 A
5308304 Habing May 1994 A
5310394 Kallios May 1994 A
5314390 Westing et al. May 1994 A
5316534 Dalebout et al. May 1994 A
5318490 Henderson et al. Jun 1994 A
5318495 Malynowsky Jun 1994 A
5320588 Wanzer et al. Jun 1994 A
5320591 Harmon et al. Jun 1994 A
5322489 Webb et al. Jun 1994 A
5328410 Amburgey et al. Jul 1994 A
5328428 Huang Jul 1994 A
5328429 Potash et al. Jul 1994 A
5328430 Vittone Jul 1994 A
5330404 Lopeteguy et al. Jul 1994 A
5330405 Habing et al. Jul 1994 A
5330408 Westmoreland, Jr. Jul 1994 A
5334120 Rasmussen Aug 1994 A
5336142 Dalebout et al. Aug 1994 A
5336143 Wu Aug 1994 A
5336148 Ish, III Aug 1994 A
5336151 Van Ballegooie Aug 1994 A
5338274 Jones Aug 1994 A
5338277 Yang Aug 1994 A
5342261 Johnston Aug 1994 A
5342269 Huang Aug 1994 A
5342271 Long Aug 1994 A
5344372 Hung Sep 1994 A
5344374 Telle Sep 1994 A
5344376 Bostic Sep 1994 A
5346447 Stearns Sep 1994 A
5348524 Grant Sep 1994 A
5350344 Kissel Sep 1994 A
5350345 Frey Sep 1994 A
5352171 Lin Oct 1994 A
5352174 Breg Inc Oct 1994 A
5354251 Sleamaker Oct 1994 A
5354252 Habing Oct 1994 A
5354253 Awbrey et al. Oct 1994 A
5356003 Gretz et al. Oct 1994 A
5356357 Wang et al. Oct 1994 A
5356358 Chen Oct 1994 A
5356360 Johns Oct 1994 A
5358462 Calderone Oct 1994 A
5362290 Huang Nov 1994 A
5362295 Nurge Nov 1994 A
5362296 Wang et al. Nov 1994 A
5364060 Donovan et al. Nov 1994 A
5366428 Liao Nov 1994 A
5366432 Habing et al. Nov 1994 A
5368042 O'Neal et al. Nov 1994 A
5368536 Stodgell Nov 1994 A
5370594 Grinblat Dec 1994 A
5372556 Ropp Dec 1994 A
5372564 Spirito Dec 1994 A
5374227 Webb Dec 1994 A
5374230 Bonnaime Dec 1994 A
5376053 Ponder Dec 1994 A
5378216 Ish, III et al. Jan 1995 A
5387170 Rawls et al. Feb 1995 A
5387171 Casey et al. Feb 1995 A
5391132 Greenwald Feb 1995 A
5392476 Williams Feb 1995 A
5397287 Lindfors Mar 1995 A
5403253 Gaylord Apr 1995 A
5403256 Squires Apr 1995 A
5407402 Brown et al. Apr 1995 A
5407403 Coleman Apr 1995 A
5407404 Killian et al. Apr 1995 A
5407405 Oren Apr 1995 A
5407411 Trainor Apr 1995 A
5407414 Bass Apr 1995 A
5409330 Naines et al. Apr 1995 A
5409435 Daniels Apr 1995 A
5413546 Basile May 1995 A
5413551 Wu May 1995 A
5415608 Bode May 1995 A
5417634 Habing May 1995 A
5419747 Piaget May 1995 A
5419749 Morgenstein May 1995 A
5419751 Byrd et al. May 1995 A
5421795 Chen Jun 1995 A
5421796 Jones et al. Jun 1995 A
5421798 Bond et al. Jun 1995 A
5421800 Mullen Jun 1995 A
5421801 Davies, III et al. Jun 1995 A
5423730 Hirsch Jun 1995 A
5423731 Chen Jun 1995 A
5429567 Gerschefske et al. Jul 1995 A
5429568 Chen Jul 1995 A
5429569 Gunnari Jul 1995 A
5433685 Winslow Jul 1995 A
5435798 Habing et al. Jul 1995 A
5435799 Lundin Jul 1995 A
5435801 Hung Jul 1995 A
5437589 Habing Aug 1995 A
5443435 Wilkinson Aug 1995 A
5447480 Fulks Sep 1995 A
5449332 Hervig Sep 1995 A
5451191 Beenken Sep 1995 A
5453066 Richter, Jr. Sep 1995 A
5456644 Hecox et al. Oct 1995 A
5458553 Wu Oct 1995 A
5460586 Wilkinson Oct 1995 A
5464378 Lee Nov 1995 A
5467874 Whitaker Nov 1995 A
5468205 McFall et al. Nov 1995 A
5472397 Ammoscato et al. Dec 1995 A
5472399 Szekely Dec 1995 A
5476428 Potash et al. Dec 1995 A
5478298 Chen Dec 1995 A
5480212 Marconet Jan 1996 A
5484358 Wang et al. Jan 1996 A
5484365 Jones et al. Jan 1996 A
5489249 Brewer et al. Feb 1996 A
5492518 Measom Feb 1996 A
5493127 Lloyd et al. Feb 1996 A
5496238 Taylor Mar 1996 A
5496244 Caruthers Mar 1996 A
5498222 Hur Mar 1996 A
5498223 Iams et al. Mar 1996 A
5499959 Holmes et al. Mar 1996 A
5499961 Mattox Mar 1996 A
5501647 Snyder Mar 1996 A
5501656 Homma et al. Mar 1996 A
5503608 Chang Apr 1996 A
5505677 Hinds Apr 1996 A
5507710 Chen Apr 1996 A
5514059 Romney May 1996 A
5518476 Mcleon May 1996 A
5518477 Simonson May 1996 A
5518483 Oswald May 1996 A
5518486 Sheeler May 1996 A
5520599 Chen May 1996 A
5522783 Gordon Jun 1996 A
5527245 Dalebout et al. Jun 1996 A
5527249 Harris Jun 1996 A
5527250 Chen Jun 1996 A
5527253 Wilkinson Jun 1996 A
5529554 Eschenbach Jun 1996 A
5529560 Dise Jun 1996 A
5533899 Young Jul 1996 A
5533952 Schaber Jul 1996 A
5540642 Sprague Jul 1996 A
5545114 Gvoich Aug 1996 A
5549530 Fulks Aug 1996 A
5549532 Kropp Aug 1996 A
5549533 Olson et al. Aug 1996 A
5554085 Dalebout Sep 1996 A
5554086 Habing et al. Sep 1996 A
5556362 Whipps Sep 1996 A
5556369 Roberts Sep 1996 A
5558608 Hall Sep 1996 A
5562577 Nichols, Sr. et al. Oct 1996 A
5569133 Vittone Oct 1996 A
5569138 Wang et al. Oct 1996 A
5571064 Holm Nov 1996 A
5573485 Geschwender Nov 1996 A
5575740 Piaget Nov 1996 A
5577985 Miller Nov 1996 A
5577987 Brown Nov 1996 A
5580340 Yu Dec 1996 A
5580341 Simonson Dec 1996 A
5582565 Soria Dec 1996 A
5586811 Tornero Dec 1996 A
5586962 Hallmark Dec 1996 A
5588938 Schneider et al. Dec 1996 A
5588942 Dillard Dec 1996 A
5595545 O'Brien Jan 1997 A
5595556 Dalebout et al. Jan 1997 A
5595559 Viel Jan 1997 A
5597362 Lee Jan 1997 A
5597375 Simonson Jan 1997 A
5599261 Easley et al. Feb 1997 A
5601518 Weintraub Feb 1997 A
5603678 Wilson Feb 1997 A
5605524 Husted Feb 1997 A
5607250 Tatterson et al. Mar 1997 A
5609278 Fresco Mar 1997 A
5613924 Lee Mar 1997 A
5613928 Laudone Mar 1997 A
5616106 Abelbeck Apr 1997 A
5616107 Simonson Apr 1997 A
5616111 Randolph Apr 1997 A
5618250 Butz Apr 1997 A
5620403 Lundin Apr 1997 A
5622527 Watterson et al. Apr 1997 A
5624353 Naidus Apr 1997 A
5624360 Wilkins Apr 1997 A
5624361 Lai Apr 1997 A
5626546 Little May 1997 A
5626548 Coyle May 1997 A
5628715 Simonson May 1997 A
5628716 Brice May 1997 A
5632711 Hwang May 1997 A
5634870 Wilkinson Jun 1997 A
5637064 Olson et al. Jun 1997 A
5643162 Landers et al. Jul 1997 A
5645510 Wilkinson Jul 1997 A
5653669 Cheng Aug 1997 A
5655997 Greenberg et al. Aug 1997 A
5656001 Baatz Aug 1997 A
5658227 Stearns Aug 1997 A
5662557 Watterson et al. Sep 1997 A
5665031 Hsieh Sep 1997 A
5665041 Hsieh Sep 1997 A
5667465 McCollum et al. Sep 1997 A
5669455 Dietrich Sep 1997 A
5669857 Watterson et al. Sep 1997 A
5669862 Sayman Sep 1997 A
5669865 Gordon Sep 1997 A
5672140 Watterson et al. Sep 1997 A
5674156 Watterson et al. Oct 1997 A
5674167 Piaget et al. Oct 1997 A
5674453 Watterson et al. Oct 1997 A
5676624 Watterson et al. Oct 1997 A
5679100 Charnitski Oct 1997 A
5681247 Webber Oct 1997 A
5681249 Endelman Oct 1997 A
5683332 Watterson et al. Nov 1997 A
5683334 Webber Nov 1997 A
5685804 Whan-Tong et al. Nov 1997 A
5685810 Chung Nov 1997 A
5688196 O'neil Nov 1997 A
5688210 Chou Nov 1997 A
5688212 Walker Nov 1997 A
5692996 Widerman Dec 1997 A
5692997 Stearns Dec 1997 A
5693004 Carlson et al. Dec 1997 A
5695434 Dalebout et al. Dec 1997 A
5707168 Sharon Jan 1998 A
5709428 Hugghins Jan 1998 A
5709633 Sokol Jan 1998 A
5709634 Pointer Jan 1998 A
5709636 Vallone Jan 1998 A
5709638 Mackert et al. Jan 1998 A
5711746 Carlson Jan 1998 A
5711749 Miller Jan 1998 A
5716308 Lee Feb 1998 A
5718660 Chen Feb 1998 A
5720702 Lee Feb 1998 A
5722917 Olschansky et al. Mar 1998 A
5722921 Simonson Mar 1998 A
5722922 Watterson et al. Mar 1998 A
5725459 Rexach Mar 1998 A
5725463 Colonello et al. Mar 1998 A
5733227 Lee Mar 1998 A
5733229 Dalebout et al. Mar 1998 A
5733232 Hsu Mar 1998 A
5735773 Vittone Apr 1998 A
5738616 Robertson Apr 1998 A
5743833 Watterson et al. Apr 1998 A
5746687 Vial et al. May 1998 A
5746688 Prager May 1998 A
5749668 Mcilvain May 1998 A
5749807 Webb May 1998 A
5749809 Lin May 1998 A
5749813 Domzalski May 1998 A
5752879 Berdut May 1998 A
5752901 Lee May 1998 A
5755645 Miller et al. May 1998 A
5755646 Chu May 1998 A
5755823 Cleary May 1998 A
5759139 Wright Jun 1998 A
5762584 Daniels Jun 1998 A
5762587 Dalebout et al. Jun 1998 A
5766118 Conner Jun 1998 A
5769759 Alter Jun 1998 A
5769762 Towley, III et al. Jun 1998 A
5772563 Lin Jun 1998 A
5776040 Webb et al. Jul 1998 A
5779604 Towley, III et al. Jul 1998 A
5779607 Harris Jul 1998 A
5785632 Greenberg et al. Jul 1998 A
5788616 Polidi Aug 1998 A
5788618 Joutras Aug 1998 A
5792027 Gvoich Aug 1998 A
5792028 Jarvie Aug 1998 A
5792029 Gordon Aug 1998 A
5792034 Kozlovsky Aug 1998 A
5795274 Kasbohm Aug 1998 A
5797639 Zorzenon Aug 1998 A
5800310 Jones Sep 1998 A
5800321 Webber Sep 1998 A
5800323 Ansel Sep 1998 A
5803874 Wilkinson Sep 1998 A
5803877 Franey Sep 1998 A
5803882 Habing et al. Sep 1998 A
5807214 Riazi Sep 1998 A
5810696 Webb Sep 1998 A
5810698 Hullett et al. Sep 1998 A
5810702 Wilkinson Sep 1998 A
5816372 Carlson et al. Oct 1998 A
5816983 Dawes et al. Oct 1998 A
5820478 Wood et al. Oct 1998 A
5820529 Weintraub Oct 1998 A
5820532 Oliver Oct 1998 A
5825983 Park et al. Oct 1998 A
5827158 Drecksel Oct 1998 A
5829771 Hsu Nov 1998 A
5830107 Brigliadoro Nov 1998 A
5830113 Coody et al. Nov 1998 A
5833577 Hurt Nov 1998 A
5833582 Chen Nov 1998 A
5833587 Strong et al. Nov 1998 A
5836854 Kuo Nov 1998 A
5836858 Sharff Nov 1998 A
5839997 Roth et al. Nov 1998 A
5842956 Strachan Dec 1998 A
5848954 Stearns et al. Dec 1998 A
5855537 Coody et al. Jan 1999 A
5857940 Husted Jan 1999 A
5857942 Moon et al. Jan 1999 A
5857943 Murray Jan 1999 A
5860190 Cano Jan 1999 A
5860893 Watterson et al. Jan 1999 A
5860894 Dalebout et al. Jan 1999 A
5860899 Rassman Jan 1999 A
5865714 Marlowe Feb 1999 A
5868648 Coody et al. Feb 1999 A
5868653 Klasen Feb 1999 A
5871424 Conner Feb 1999 A
5876310 Mackey et al. Mar 1999 A
5876313 Krull Mar 1999 A
5879247 Winter et al. Mar 1999 A
5879271 Stearns et al. Mar 1999 A
5879276 Miller Mar 1999 A
5885196 Gvoich Mar 1999 A
5885197 Barton Mar 1999 A
5891004 Berry Apr 1999 A
5891042 Sham et al. Apr 1999 A
5895342 Solland Apr 1999 A
5897459 Habing et al. Apr 1999 A
5897463 Maresh Apr 1999 A
5897467 Habing et al. Apr 1999 A
5897469 Yalch Apr 1999 A
5897472 Thulasingam Apr 1999 A
5897474 Romero Apr 1999 A
5899834 Dalebout et al. May 1999 A
5904638 Habing et al. May 1999 A
5906564 Jacobsen May 1999 A
5906566 Whitcomb May 1999 A
5908373 Pitre Jun 1999 A
5910070 Henry et al. Jun 1999 A
5910073 Conner Jun 1999 A
5911649 Miller Jun 1999 A
5919118 Stearns Jul 1999 A
5921892 Easton Jul 1999 A
5921901 Palacios Jul 1999 A
5924966 Havlovic Jul 1999 A
5927780 Chandler Jul 1999 A
5928116 Chiang Jul 1999 A
5931767 Morales Aug 1999 A
5935048 Krull Aug 1999 A
5938551 Warner Aug 1999 A
5938571 Stevens Aug 1999 A
5938574 Webber Aug 1999 A
5941800 Laconis Aug 1999 A
5941803 Chamberlain Aug 1999 A
5941807 Cassidy Aug 1999 A
5944641 Habing Aug 1999 A
5944642 Krull Aug 1999 A
5951444 Webber Sep 1999 A
5954106 Huang Sep 1999 A
5954621 Joutras et al. Sep 1999 A
5957819 Cortesi Sep 1999 A
5961423 Sellers Oct 1999 A
5961428 Webber Oct 1999 A
5967948 Carr Oct 1999 A
5967950 Hsu Oct 1999 A
5967954 Habing Oct 1999 A
5971892 Lee Oct 1999 A
5971895 Habing Oct 1999 A
5984836 Casali Nov 1999 A
5989164 Kullman et al. Nov 1999 A
5989165 Giannelli et al. Nov 1999 A
5989166 Capizzo et al. Nov 1999 A
5993358 Gureghian et al. Nov 1999 A
5997447 Giannelli et al. Dec 1999 A
5998897 Bosten et al. Dec 1999 A
6003294 Fitzgerald et al. Dec 1999 A
6004246 Sencil Dec 1999 A
6004247 Webber Dec 1999 A
6007268 Whittington et al. Dec 1999 A
6010432 Vawter Jan 2000 A
6011134 Marks et al. Jan 2000 A
6015367 Scaramucci Jan 2000 A
6015371 Davitt Jan 2000 A
6017293 Pfefferle Jan 2000 A
6019403 Corbett Feb 2000 A
6022300 Hightower Feb 2000 A
6022302 McBride Feb 2000 A
6024677 Siwertz Feb 2000 A
6027429 Daniels Feb 2000 A
6027433 Flynn Feb 2000 A
6030320 Stearns Feb 2000 A
6033347 Dalebout et al. Mar 2000 A
6033350 Krull Mar 2000 A
6036622 Gordon Mar 2000 A
6036625 Woodruff Mar 2000 A
6039677 Spletzer Mar 2000 A
6039678 Dawson Mar 2000 A
6042516 Norton Mar 2000 A
6042523 Graham Mar 2000 A
6045487 Miller Apr 2000 A
6045491 McNergney Apr 2000 A
6050920 Ehrenfried Apr 2000 A
6050921 Wang Apr 2000 A
6053816 Immel Apr 2000 A
6053853 Hinds Apr 2000 A
6056678 Giannelli et al. May 2000 A
6059695 Hung May 2000 A
6059698 Mazor May 2000 A
6059701 George et al. May 2000 A
6065572 Schober et al. May 2000 A
6066077 Horst May 2000 A
6071216 Giannelli et al. Jun 2000 A
6071217 Barnett Jun 2000 A
6074328 Johnson Jun 2000 A
6077199 Hsu Jun 2000 A
6077200 Lin Jun 2000 A
6079915 Bosten et al. Jun 2000 A
6080091 Habing et al. Jun 2000 A
6082346 Andrews et al. Jul 2000 A
6083144 Towley, III et al. Jul 2000 A
6086520 Rodriquez Jul 2000 A
6086521 Solland Jul 2000 A
6090016 Kuo Jul 2000 A
6090020 Webber Jul 2000 A
6095954 Svanberg Aug 2000 A
6099442 Krull Aug 2000 A
6099444 Domenge Aug 2000 A
6101684 Ginocchio Aug 2000 A
6102836 Person Aug 2000 A
6102837 Hubbard Aug 2000 A
6106437 Brooks Aug 2000 A
6106439 Boland Aug 2000 A
6110075 Woodruff Aug 2000 A
6110076 Hurt Aug 2000 A
6110081 Barrett Aug 2000 A
6112624 Chen Sep 2000 A
6113323 Bosten et al. Sep 2000 A
6113518 Maresh Sep 2000 A
6113522 Montgomery Sep 2000 A
6113564 McGuire Sep 2000 A
6117049 Lowe Sep 2000 A
6120424 Arline Sep 2000 A
6123649 Lee Sep 2000 A
6123650 Birrell Sep 2000 A
6126577 Chang Oct 2000 A
6128981 Bondhus et al. Oct 2000 A
6129651 Denaro Oct 2000 A
6132347 Alessandri Oct 2000 A
6135926 Lee Oct 2000 A
6135927 Lo Oct 2000 A
6149551 Pyles et al. Nov 2000 A
6149556 Jordan Nov 2000 A
6149558 Chen Nov 2000 A
6149559 Mackey Nov 2000 A
6152864 Giannelli et al. Nov 2000 A
6162153 Perez, Jr. Dec 2000 A
6165107 Birrell Dec 2000 A
6165110 Gajda Dec 2000 A
6168557 Liao Jan 2001 B1
6172178 Koning et al. Jan 2001 B1
6174265 Alessandri Jan 2001 B1
6174268 Novak Jan 2001 B1
6175994 Nicoletti Jan 2001 B1
6179748 Barr Jan 2001 B1
6183397 Stearns et al. Feb 2001 B1
6183400 Pope Feb 2001 B1
6183401 Krull Feb 2001 B1
6183403 Dunn Feb 2001 B1
6186290 Carlson Feb 2001 B1
6186926 Ellis Feb 2001 B1
6186927 Krull Feb 2001 B1
6186928 Chen Feb 2001 B1
6186929 Endelman et al. Feb 2001 B1
6190289 Pyles et al. Feb 2001 B1
6193635 Webber et al. Feb 2001 B1
6196952 Chen Mar 2001 B1
6196954 Chen Mar 2001 B1
6199732 Swetish Mar 2001 B1
6203473 Atwood Mar 2001 B1
6203474 Jones Mar 2001 B1
6206804 Maresh Mar 2001 B1
6213923 Cameron et al. Apr 2001 B1
6217483 Kallassy Apr 2001 B1
6217493 Spletzer Apr 2001 B1
6217495 Yalch Apr 2001 B1
6220990 Crivello Apr 2001 B1
6220992 Shafik Apr 2001 B1
6224519 Doolittle May 2001 B1
6228003 Hald et al. May 2001 B1
6231489 McBride et al. May 2001 B1
6234941 Chu May 2001 B1
6238322 Hsu May 2001 B1
6238323 Simonson May 2001 B1
6241553 Hsia Jun 2001 B1
6244995 Prsala Jun 2001 B1
6245001 Siaperas Jun 2001 B1
6251048 Kaufman Jun 2001 B1
6251052 Simonson Jun 2001 B1
6254516 Giannelli et al. Jul 2001 B1
6261022 Dalebout et al. Jul 2001 B1
6264272 Jones et al. Jul 2001 B1
6264588 Ellis Jul 2001 B1
6267711 Hinds Jul 2001 B1
6280361 Harvey et al. Aug 2001 B1
6280362 Dalebout et al. Aug 2001 B1
6283859 Carlson et al. Sep 2001 B1
6287240 Trabbic Sep 2001 B1
6287241 Ellis Sep 2001 B1
6290630 Boland Sep 2001 B1
6293892 Slawinski et al. Sep 2001 B1
6302830 Stearns Oct 2001 B1
6302833 Ellis et al. Oct 2001 B1
6309331 Raymond Oct 2001 B1
6312366 Prusick Nov 2001 B1
6315702 Ikonomopoulos Nov 2001 B1
6319176 Landfair Nov 2001 B1
6319178 Webber Nov 2001 B1
6319179 Hinds Nov 2001 B1
6322481 Krull Nov 2001 B1
6322483 Rotella Nov 2001 B1
6328325 Greenwood Dec 2001 B1
6334624 Giglio Jan 2002 B1
6335100 Tominaga et al. Jan 2002 B1
6338701 Webber Jan 2002 B1
6340340 Stearns Jan 2002 B1
6342028 De Sane Jan 2002 B1
6347731 Burger Feb 2002 B1
6350218 Dalebout et al. Feb 2002 B1
6350219 Hobson Feb 2002 B1
6350221 Krull Feb 2002 B1
6358187 Smith Mar 2002 B1
6360408 Dykstra et al. Mar 2002 B1
6368251 Casler Apr 2002 B1
6368254 Wall Apr 2002 B1
6379287 Slawinski et al. Apr 2002 B1
6387018 Krull May 2002 B1
6387019 Krull May 2002 B1
6387022 Smith May 2002 B1
6387024 Monti et al. May 2002 B1
6390927 Cleveland, III May 2002 B1
6394935 Lake May 2002 B1
6394936 Voris May 2002 B1
6394938 Tornabene May 2002 B1
6402666 Krull Jun 2002 B2
6413196 Crowson Jul 2002 B1
6413197 McKechnie et al. Jul 2002 B2
6416446 Krull Jul 2002 B1
6416447 Harmon Jul 2002 B1
6422979 Krull Jul 2002 B1
6422980 Simonson Jul 2002 B1
6422981 Riser Jul 2002 B1
6422983 Weck Jul 2002 B1
6427805 Gibson et al. Aug 2002 B1
6428450 Ho Aug 2002 B1
6436013 Krull Aug 2002 B1
6440045 Gaston Aug 2002 B1
6443521 Nye et al. Sep 2002 B1
6443877 Hoecht Sep 2002 B1
6443878 Webber Sep 2002 B1
6447424 Ashby et al. Sep 2002 B1
6447430 Webb et al. Sep 2002 B1
6447432 Krull Sep 2002 B1
6450923 Vatti Sep 2002 B1
6450928 Larkins, Jr. Sep 2002 B1
6454050 Gibson et al. Sep 2002 B2
6454679 Radow Sep 2002 B1
6458061 Simonson Oct 2002 B2
6461284 Francavilla Oct 2002 B1
6468189 Alessandri Oct 2002 B2
6471622 Hammer et al. Oct 2002 B1
6471624 Voris Oct 2002 B1
6474193 Farney Nov 2002 B1
6475122 Wu Nov 2002 B2
6478721 Hunter Nov 2002 B1
6482134 Rasmussen Nov 2002 B1
6482139 Haag Nov 2002 B1
6488599 Nye Dec 2002 B2
6488612 Sechrest et al. Dec 2002 B2
6491268 Channer et al. Dec 2002 B1
6491609 Webber Dec 2002 B2
6491610 Henn Dec 2002 B1
6494817 Lake Dec 2002 B2
6500101 Chen Dec 2002 B1
6500102 Domenge Dec 2002 B1
6506142 Itoh et al. Jan 2003 B2
6510760 Matsuo Jan 2003 B2
6514180 Rawls Feb 2003 B1
6515182 Hosokawa et al. Feb 2003 B2
6520531 Gien Feb 2003 B1
6524226 Kushner Feb 2003 B2
6527678 Wang Mar 2003 B1
6527683 Tolles Mar 2003 B2
6537185 Hur Mar 2003 B1
6540650 Krull Apr 2003 B1
6540651 Aberton et al. Apr 2003 B1
6551217 Kaganovsky Apr 2003 B2
6551220 Schroeder Apr 2003 B1
6551223 Cheng Apr 2003 B2
6551226 Webber et al. Apr 2003 B1
6558300 Deola May 2003 B2
6558301 Jackson May 2003 B1
6558302 Cluff May 2003 B2
6561955 Dreissigacker et al. May 2003 B1
6561956 Allison May 2003 B1
6561960 Webber May 2003 B2
6575882 Chen Jun 2003 B2
6575885 Weck et al. Jun 2003 B1
6579213 Webber et al. Jun 2003 B1
6579214 Crump Jun 2003 B2
6582342 Kaufman Jun 2003 B2
6582345 Roy Jun 2003 B2
6585626 McBride Jul 2003 B2
6592498 Trainor Jul 2003 B1
6592499 Parker Jul 2003 B2
6595905 McBride Jul 2003 B2
6599223 Wang Jul 2003 B2
6601358 Panatta Aug 2003 B2
6605024 Stearns Aug 2003 B2
6607472 Toole Aug 2003 B2
6612170 Brown Sep 2003 B2
6623407 Novak Sep 2003 B2
6629908 Hamady Oct 2003 B2
6629910 Krull Oct 2003 B1
6632160 LaFond et al. Oct 2003 B2
6632161 Nir Oct 2003 B1
6634996 Jacobsen Oct 2003 B2
6634997 Breibart et al. Oct 2003 B2
6634998 Siaperas Oct 2003 B2
6645129 Eschenbach Nov 2003 B2
6645130 Webber Nov 2003 B2
6652419 Rota Nov 2003 B1
6652424 Dalebout Nov 2003 B2
6652426 Carter Nov 2003 B2
6652429 Bushnell Nov 2003 B2
6652431 Mattox Nov 2003 B1
6652432 Smith Nov 2003 B2
6656093 Chen Dec 2003 B2
6662651 Roth Dec 2003 B1
6663127 Miller Dec 2003 B2
6666796 MacCready, Jr. Dec 2003 B1
6666800 Krull Dec 2003 B2
6666801 Michalow Dec 2003 B1
6669600 Warner Dec 2003 B2
6669606 Krull Dec 2003 B2
6669607 Slawinski et al. Dec 2003 B2
6669609 Gerschefske et al. Dec 2003 B2
6672992 Lo et al. Jan 2004 B1
6676573 Abelbeck et al. Jan 2004 B2
6676577 Stearns Jan 2004 B2
6679816 Krull Jan 2004 B1
6685600 Ullman Feb 2004 B1
6685601 Knapp Feb 2004 B1
6685602 Colosky, Jr. et al. Feb 2004 B2
6685607 Olson Feb 2004 B1
6689023 Baumler Feb 2004 B2
6689025 Emick Feb 2004 B2
6691839 El-Kassouf Feb 2004 B1
6692415 Winston Feb 2004 B1
6692417 Burrell Feb 2004 B2
6695620 Huang Feb 2004 B1
6699146 Winter et al. Mar 2004 B1
6699161 Speas Mar 2004 B1
6702723 Landfair Mar 2004 B2
6702726 Lin Mar 2004 B2
6705974 Tardif Mar 2004 B1
6705976 Piane, Jr. Mar 2004 B1
6711789 Ping Mar 2004 B2
6712740 Simonson Mar 2004 B2
6719667 Wong et al. Apr 2004 B2
6719672 Ellis et al. Apr 2004 B1
6719674 Krull Apr 2004 B2
6726601 Beutel Apr 2004 B1
6733424 Krull May 2004 B2
6736759 Stubbs et al. May 2004 B1
6736765 Wallace et al. May 2004 B2
6736766 Gallant May 2004 B1
6746370 Fleming et al. Jun 2004 B1
6746371 Brown et al. Jun 2004 B1
6746380 Lien et al. Jun 2004 B2
6746381 Krull Jun 2004 B2
6749537 Hickman Jun 2004 B1
6749547 Krull Jun 2004 B2
6752745 Davis Jun 2004 B1
6755770 Martens Jun 2004 B2
6761667 Cutler et al. Jul 2004 B1
6761672 Williams Jul 2004 B1
6764431 Yoss Jul 2004 B2
6764432 Hippensteel Jul 2004 B2
6770014 Amore Aug 2004 B2
6770015 Simonson Aug 2004 B2
6783482 Oglesby et al. Aug 2004 B2
6786847 Morgan et al. Sep 2004 B1
6790163 Van De Laarschot Sep 2004 B1
6793607 Neil Sep 2004 B2
6796925 Martinez et al. Sep 2004 B2
6802800 Hobson Oct 2004 B1
6811520 Wu Nov 2004 B2
6821230 Dalebout et al. Nov 2004 B2
6827822 Tao et al. Dec 2004 B2
6830540 Watterson Dec 2004 B2
6830542 Ball Dec 2004 B2
6846270 Etnyre Jan 2005 B1
6852068 Ogawa Feb 2005 B2
6855097 Krull Feb 2005 B2
6857993 Yeh Feb 2005 B2
6860131 Armstrong et al. Mar 2005 B2
6860836 Wu Mar 2005 B1
6860841 Mortorano Mar 2005 B1
6872173 Krull Mar 2005 B2
6872175 Lin Mar 2005 B2
6875160 Watterson et al. Apr 2005 B2
6878101 Colley Apr 2005 B2
6886645 Bise et al. May 2005 B2
6893381 Slawinski May 2005 B2
6896342 Cheng May 2005 B1
6896645 Krull May 2005 B1
6899657 Chuang May 2005 B2
6899661 Krull May 2005 B1
6902515 Howell et al. Jun 2005 B2
6902516 Krull Jun 2005 B2
6905446 Greenland Jun 2005 B2
6908418 Saure Jun 2005 B2
6910992 Arguilez Jun 2005 B2
6913562 Chen Jul 2005 B2
6916278 Webber Jul 2005 B2
6918859 Yeh Jul 2005 B1
6918861 Liao et al. Jul 2005 B2
6921354 Shifferaw Jul 2005 B1
6921355 Campanaro et al. Jul 2005 B2
6923748 Mauz Aug 2005 B1
6923749 Smith Aug 2005 B1
6926649 Slawinski Aug 2005 B2
6929589 Bruggemann et al. Aug 2005 B1
6932745 Ellis Aug 2005 B1
6932748 Huang Aug 2005 B2
6941620 Hinds Sep 2005 B1
6945916 Schroeder Sep 2005 B2
6945917 Baatz Sep 2005 B1
6949052 Millington Sep 2005 B2
6960156 Smith Nov 2005 B2
6964633 Kolda Nov 2005 B2
6971974 Bowman Dec 2005 B2
6971975 Croft Dec 2005 B2
6971978 Hyder Dec 2005 B2
6974404 Watterson et al. Dec 2005 B1
6974405 Krull Dec 2005 B2
6976941 Britt Dec 2005 B2
6976943 Hsiung Dec 2005 B1
6979283 Pan Dec 2005 B2
6994683 Starr Feb 2006 B1
6997856 Krull Feb 2006 B1
7003122 Chen Feb 2006 B2
7004887 Pan et al. Feb 2006 B2
7008356 Hung Mar 2006 B2
7008359 Fan et al. Mar 2006 B2
7011326 Schroeder et al. Mar 2006 B1
7011607 Kolda et al. Mar 2006 B2
7011609 Kuo Mar 2006 B1
7011610 Wawrzyniak Mar 2006 B2
7011611 Ripley Mar 2006 B1
7014598 Fenelon et al. Mar 2006 B2
7014599 Ashley Mar 2006 B2
7025713 Dalebout Apr 2006 B2
7029425 Krull Apr 2006 B2
7037246 Kim May 2006 B2
7041041 Evans May 2006 B1
7044066 Miller May 2006 B1
7044897 Myers et al. May 2006 B2
7048638 Novotny May 2006 B2
7048677 Mackert May 2006 B2
7052444 Webber May 2006 B2
7052446 Morris et al. May 2006 B2
7060011 Krull Jun 2006 B1
7060012 Howell et al. Jun 2006 B2
7066867 Krull Jun 2006 B2
7070542 Reyes et al. Jul 2006 B2
7070545 Lull et al. Jul 2006 B2
7073417 Beauchamp Jul 2006 B2
7077791 Krull Jul 2006 B2
7083536 Lu et al. Aug 2006 B2
7083549 Fan Aug 2006 B1
7083554 Lo Presti Aug 2006 B1
7087000 Walker Aug 2006 B1
7087003 Katterjohn Aug 2006 B1
7087005 Rouillard Aug 2006 B2
7090625 Chermack Aug 2006 B2
7094183 Hsieh Aug 2006 B2
7094184 Chen et al. Aug 2006 B1
7094185 Greenland Aug 2006 B2
7097593 Chang Aug 2006 B2
7097601 Ronnow Aug 2006 B1
7101124 Keightley Sep 2006 B2
7101322 Carle Sep 2006 B2
7108636 Garcia Sep 2006 B1
7108641 Pertegaz-Esteban Sep 2006 B2
7111526 Flojo Sep 2006 B1
7112163 Krull Sep 2006 B2
7113166 Rosenberg et al. Sep 2006 B1
7115078 Kalember et al. Oct 2006 B1
7115080 Cockrill, Jr. et al. Oct 2006 B2
7118517 Hale Oct 2006 B1
7121980 Chen Oct 2006 B2
7121988 Walkerdine Oct 2006 B2
7125371 Henderson Oct 2006 B2
7125373 Garza Oct 2006 B1
7128696 Krull Oct 2006 B1
7128697 Krull Oct 2006 B1
7128701 Ketcham Oct 2006 B1
7132939 Tyndall et al. Nov 2006 B2
7134987 Goldstein Nov 2006 B2
7137644 Kimberley Nov 2006 B2
7137931 Liu Nov 2006 B2
7137932 Doudiet Nov 2006 B2
7137935 Clarke Nov 2006 B2
7137936 Shaw Nov 2006 B1
7141003 Wu Nov 2006 B2
7141008 Krull et al. Nov 2006 B2
7150168 Kuo Dec 2006 B1
7153244 Towley Dec 2006 B2
7153248 Chen Dec 2006 B2
7156782 Krull Jan 2007 B1
7156783 Chen Jan 2007 B2
7163488 Anders Jan 2007 B2
7163500 Endelman et al. Jan 2007 B2
7166062 Watterson et al. Jan 2007 B1
7166066 Webber Jan 2007 B2
7166067 Talish et al. Jan 2007 B2
7169093 Simonson et al. Jan 2007 B2
7172536 Liu Feb 2007 B2
7172538 Keiser Feb 2007 B2
7178637 Asano et al. Feb 2007 B2
7179208 Nalley Feb 2007 B1
7179209 Sechrest et al. Feb 2007 B2
7179212 Hsiung et al. Feb 2007 B2
7189190 Lamar et al. Mar 2007 B2
7189791 Solan Mar 2007 B2
7192387 Mendel Mar 2007 B2
7192388 Dalebout et al. Mar 2007 B2
7192389 Allison Mar 2007 B2
7197029 Osterhout et al. Mar 2007 B1
7201712 Tiahrt Apr 2007 B2
7204790 Sleamaker Apr 2007 B2
7207929 Hamilton Apr 2007 B2
7207930 Bonutti Apr 2007 B2
7211030 Cao May 2007 B1
7214170 Sumners May 2007 B2
7220220 Stubbs May 2007 B2
7220221 Mosimann et al. May 2007 B2
7223213 Golesh May 2007 B2
7223214 Chen May 2007 B2
7223215 Bastyr May 2007 B2
7223216 McBride May 2007 B1
7226402 Joya Jun 2007 B1
7228601 Thompson Jun 2007 B2
7229391 Francis Jun 2007 B2
7232404 Nelson Jun 2007 B2
7238143 Sokolovos Jul 2007 B1
7238147 Mills et al. Jul 2007 B2
7244217 Rodgers, Jr. Jul 2007 B2
7247128 Oga Jul 2007 B2
7249540 Hacker et al. Jul 2007 B1
7250021 Leight Jul 2007 B2
7250022 Dalebout Jul 2007 B2
7255665 Ish, III Aug 2007 B2
7255666 Cardenas Aug 2007 B2
7261678 Crawford et al. Aug 2007 B2
7264554 Bentley Sep 2007 B2
7264578 Krull Sep 2007 B1
7270628 Campanaro Sep 2007 B2
7276017 Lin Oct 2007 B2
7276018 Studdard Oct 2007 B2
7278958 Morgan Oct 2007 B2
7278966 Hjelt et al. Oct 2007 B2
7282016 Simonson Oct 2007 B2
7284466 Ho Oct 2007 B1
7288053 Endelman et al. Oct 2007 B2
7290760 Lindsay Nov 2007 B1
7291096 Ho Nov 2007 B2
7291098 Krull Nov 2007 B1
7294095 Charnitski Nov 2007 B2
7294100 Bull Nov 2007 B2
7299720 Schultz et al. Nov 2007 B1
7300390 Krull Nov 2007 B1
7300392 Curran Nov 2007 B1
7309303 Proctor Dec 2007 B1
7311640 Baatz Dec 2007 B2
7311644 Hale Dec 2007 B2
7314438 Clark et al. Jan 2008 B1
7318810 Benson Jan 2008 B1
7322219 Armstrong et al. Jan 2008 B2
7322906 Webber Jan 2008 B2
7322907 Bowser Jan 2008 B2
7322909 Loccarini Jan 2008 B1
7329212 Roque Feb 2008 B2
7331908 Olsen Feb 2008 B2
7331911 Webber et al. Feb 2008 B2
7335139 Bartholomew et al. Feb 2008 B2
7335140 Webber et al. Feb 2008 B2
7335141 Piane, Jr. Feb 2008 B2
7335142 Towley, III et al. Feb 2008 B2
7341545 Cao Mar 2008 B2
7344481 Watterson et al. Mar 2008 B2
7344488 Weck et al. Mar 2008 B2
7351187 Seliber Apr 2008 B2
7357758 Polk, III Apr 2008 B2
7359121 French et al. Apr 2008 B2
7361123 Krull Apr 2008 B1
7361125 Webber et al. Apr 2008 B2
7361127 Tremayne Apr 2008 B2
7364538 Aucamp Apr 2008 B2
7367926 Clark May 2008 B2
7367927 Krull May 2008 B2
7370498 Miao May 2008 B1
7374519 Naidus May 2008 B2
7374522 Arnold May 2008 B2
7377886 Wu May 2008 B2
7381161 Ellis Jun 2008 B2
7381167 Duhamel Jun 2008 B2
7384013 Yen Jun 2008 B2
7384209 Muders et al. Jun 2008 B2
7384381 Webber et al. Jun 2008 B2
7387597 Krull Jun 2008 B2
7387867 Hasegawa et al. Jun 2008 B2
7396319 Ellis Jul 2008 B1
7413056 Gonzi et al. Aug 2008 B2
7413065 Gauthier Aug 2008 B2
7413530 Warner et al. Aug 2008 B2
7413532 Monsrud et al. Aug 2008 B1
7413533 Lin Aug 2008 B2
7429235 Lin Sep 2008 B2
7429236 Dalebout et al. Sep 2008 B2
7435202 Daly et al. Oct 2008 B2
7438673 Jones Oct 2008 B1
7448823 Silva Nov 2008 B2
7455621 Anthony Nov 2008 B1
7455626 Trevino et al. Nov 2008 B2
7455633 Brown et al. Nov 2008 B2
7462135 Lo Dec 2008 B2
7462141 Raboin et al. Dec 2008 B1
7468025 Hauser et al. Dec 2008 B2
7473211 Lee Jan 2009 B2
7475641 Jin Jan 2009 B2
7475900 Cheng Jan 2009 B2
7476182 Denisco Jan 2009 B2
7476186 Steffee Jan 2009 B1
7478794 Gohlke et al. Jan 2009 B1
7482050 Olson Jan 2009 B2
7485076 Lee Feb 2009 B2
7485077 Chen Feb 2009 B2
7485079 Brown et al. Feb 2009 B2
7488277 Knapp Feb 2009 B1
7491155 Fenelon et al. Feb 2009 B2
7491157 Lin Feb 2009 B1
7491159 Patterson Feb 2009 B2
7494450 Solomon Feb 2009 B2
7497814 Krull Mar 2009 B1
7503883 Madden Mar 2009 B2
7507186 Stearns Mar 2009 B2
7507189 Krull Mar 2009 B2
7510508 Santomassimo et al. Mar 2009 B2
7517303 Crawford et al. Apr 2009 B2
7517304 Swanson et al. Apr 2009 B1
7520845 Towley, III et al. Apr 2009 B2
7524272 Bruck et al. Apr 2009 B2
7534200 Martinez May 2009 B1
7537546 Watterson et al. May 2009 B2
7537549 Nelson et al. May 2009 B2
7537550 Krull May 2009 B1
7537551 Steffee May 2009 B2
7537552 Dalebout et al. May 2009 B2
7540828 Watterson et al. Jun 2009 B2
7540829 Chen Jun 2009 B1
7540832 Krull Jun 2009 B2
7549949 Webber et al. Jun 2009 B2
7553260 Piaget et al. Jun 2009 B2
7553262 Piane, Jr. Jun 2009 B2
7553264 Carter Jun 2009 B2
7553267 Hauser Jun 2009 B1
7559879 Anderson et al. Jul 2009 B2
7563203 Dalebout et al. Jul 2009 B2
7563208 Chen Jul 2009 B1
7563209 Webber et al. Jul 2009 B2
7563213 Grant Jul 2009 B2
7563214 Webber et al. Jul 2009 B2
7569004 Kolomeir Aug 2009 B2
7569005 Geeting Aug 2009 B2
7571517 Smith et al. Aug 2009 B2
7575537 Ellis Aug 2009 B2
7575538 Clark Aug 2009 B1
7578771 Towley, III et al. Aug 2009 B1
7578772 Lippitt Aug 2009 B2
7584673 Shimizu Sep 2009 B2
7585251 Doody, Jr. et al. Sep 2009 B2
7585254 Vittone Sep 2009 B1
7585262 Vayntraub Sep 2009 B1
7585263 Brown et al. Sep 2009 B2
7588520 Nalley Sep 2009 B2
7591763 Fucci Sep 2009 B1
7591773 Weir Sep 2009 B2
7594873 Terao et al. Sep 2009 B2
7594880 Webber Sep 2009 B2
7594881 Shifferaw Sep 2009 B2
7597656 Trees Oct 2009 B2
7601101 Jackson et al. Oct 2009 B2
7601105 Gipson, III et al. Oct 2009 B1
7601187 Webber Oct 2009 B2
7604572 Stanford Oct 2009 B2
7604576 Drechsler Oct 2009 B2
7604577 Lin Oct 2009 B2
7604578 Liu Oct 2009 B2
7608020 Mason Oct 2009 B2
7608021 Nalley Oct 2009 B1
7608023 Casagrande Oct 2009 B2
7608024 Sechrest et al. Oct 2009 B2
7608028 Pertegaz-Esteban Oct 2009 B2
7611445 Brown et al. Nov 2009 B2
7611448 Schiff Nov 2009 B2
7611450 Mancini Nov 2009 B2
7614981 Cao Nov 2009 B2
7614984 Krull Nov 2009 B1
7618346 Crawford et al. Nov 2009 B2
7618350 Dalebout et al. Nov 2009 B2
7621847 Lamle Nov 2009 B2
7621850 Piaget et al. Nov 2009 B2
7621855 Krull Nov 2009 B1
7621856 Keith Nov 2009 B1
7621858 Sheron Nov 2009 B2
7624956 Steigert et al. Dec 2009 B2
7624967 Doebler et al. Dec 2009 B1
7625033 Michelau et al. Dec 2009 B2
7625314 Ungari Dec 2009 B2
7625319 Kang et al. Dec 2009 B2
7625321 Simonson et al. Dec 2009 B2
7625322 Krull Dec 2009 B1
7625323 Lin Dec 2009 B1
7628730 Watterson et al. Dec 2009 B1
7628737 Kowallis et al. Dec 2009 B2
7628743 Flentye et al. Dec 2009 B1
7632221 Kolander Dec 2009 B1
7637847 Hickman Dec 2009 B1
7637855 Bizzell Dec 2009 B2
7641598 Rodgers, Jr. Jan 2010 B2
7645212 Ashby et al. Jan 2010 B2
7645215 Gordon Jan 2010 B2
7645216 Edeker Jan 2010 B2
7645218 Potok et al. Jan 2010 B2
7645221 Curry Jan 2010 B1
7648446 Chiles et al. Jan 2010 B2
7651442 Carlson Jan 2010 B2
7651450 Wehrell Jan 2010 B2
7654940 Webber et al. Feb 2010 B2
7654941 Lacher Feb 2010 B2
7658698 Pacheco et al. Feb 2010 B2
7662075 Isom Feb 2010 B2
7666123 Giannelli Feb 2010 B2
7670269 Webber et al. Mar 2010 B2
7670270 Alessandri et al. Mar 2010 B2
7674185 Omidi Mar 2010 B2
7674205 Dalebout et al. Mar 2010 B2
7674216 Bolling Mar 2010 B1
7678033 Tyree Mar 2010 B2
7682287 Hsieh Mar 2010 B1
7691033 Rolli Apr 2010 B2
7691041 Abdo Apr 2010 B2
7691042 Pandozy Apr 2010 B2
7695409 Decathlon Apr 2010 B2
7695414 Tiahrt Apr 2010 B2
7704195 Alessandri et al. Apr 2010 B2
7704197 Yu Apr 2010 B2
7708668 Rodgers, Jr. May 2010 B2
7708672 Gibson et al. May 2010 B2
7717827 Kurunmäki et al. May 2010 B2
7717828 Simonson et al. May 2010 B2
7717832 Webber et al. May 2010 B2
7717833 Nelson et al. May 2010 B1
7722509 Eder May 2010 B2
7722513 Habing May 2010 B2
7730588 Bernier Jun 2010 B1
7736279 Dalebout et al. Jun 2010 B2
7736283 Webb Jun 2010 B2
7736286 Panaiotov Jun 2010 B2
7740563 Dalebout et al. Jun 2010 B2
7740568 Webb Jun 2010 B2
7740570 Winston Jun 2010 B2
7749140 Lindemeier et al. Jul 2010 B1
7758469 Dyer et al. Jul 2010 B2
7758477 Prenatt Jul 2010 B2
7758478 Golesh et al. Jul 2010 B2
7762932 Hetrick Jul 2010 B2
7762934 Munson, Jr. et al. Jul 2010 B1
7762935 Doble Jul 2010 B2
7764641 Pelton et al. Jul 2010 B2
7766793 Hashimoto Aug 2010 B2
7766797 Dalebout Aug 2010 B2
7766802 Webber et al. Aug 2010 B2
7771319 Spoeth, Jr. et al. Aug 2010 B1
7771320 Riley et al. Aug 2010 B2
7771325 Baker Aug 2010 B2
7771329 Dalebout et al. Aug 2010 B2
7771330 Towley Aug 2010 B2
7775936 Wilkinson Aug 2010 B2
7775943 Vittone Aug 2010 B2
7775945 Smith Aug 2010 B2
7775949 Bowser Aug 2010 B2
7775952 Curran et al. Aug 2010 B1
7775953 Wang Aug 2010 B2
7780578 Packham Aug 2010 B2
7780583 Brown Aug 2010 B2
7780585 Rivas Aug 2010 B1
7789806 Yang Sep 2010 B2
7789816 Krietzman Sep 2010 B2
7794371 Webber et al. Sep 2010 B2
7798946 Dalebout et al. Sep 2010 B2
7803096 Mehta Sep 2010 B2
7806815 Fernandez Oct 2010 B2
7811202 Planke Oct 2010 B2
7811213 Chen Oct 2010 B2
7815548 Barre et al. Oct 2010 B2
7815549 Crawford et al. Oct 2010 B2
7815552 Dibble et al. Oct 2010 B2
7815554 Gibson et al. Oct 2010 B2
7819784 Caswell et al. Oct 2010 B1
7819785 Maiaro et al. Oct 2010 B2
7828703 Boesch Nov 2010 B1
7833135 Radow Nov 2010 B2
7833138 Fulks Nov 2010 B1
7833141 Kulka Nov 2010 B2
7837598 Boozel, Jr. Nov 2010 B1
7837602 Drybread Nov 2010 B1
7837603 Carnell, Sr. Nov 2010 B1
7841971 Smith Nov 2010 B2
7841973 Trancart Nov 2010 B2
7842038 Haddock et al. Nov 2010 B2
7850584 Uygan Dec 2010 B2
7857736 Merrithew et al. Dec 2010 B2
7862483 Hendrickson et al. Jan 2011 B2
7862486 Watson Jan 2011 B1
7862487 Olson Jan 2011 B2
7862489 Sav{hacek over (s)}ek et al. Jan 2011 B2
7867153 Roman Jan 2011 B2
7871355 Yeh Jan 2011 B2
7871357 Gibson et al. Jan 2011 B2
7874957 Hurwitz et al. Jan 2011 B2
7874961 McKee et al. Jan 2011 B2
7874971 Reyes Jan 2011 B2
7878950 Bastian Feb 2011 B1
7878953 Webber et al. Feb 2011 B2
7883445 Olrik et al. Feb 2011 B2
7887468 Ross et al. Feb 2011 B2
7887469 Chen Feb 2011 B1
7887470 Chen Feb 2011 B2
7887471 McSorley Feb 2011 B2
7892149 Wu Feb 2011 B2
7892150 Colley Feb 2011 B1
7892155 Pearson et al. Feb 2011 B2
7892159 McVay et al. Feb 2011 B2
7896782 Tamari Mar 2011 B2
7900324 Ginocchio Mar 2011 B2
7901324 Kodama Mar 2011 B2
7901335 Webber et al. Mar 2011 B2
7905819 Alessandri et al. Mar 2011 B2
7909741 Kim et al. Mar 2011 B2
7909742 Ish, III et al. Mar 2011 B2
7909743 Webber Mar 2011 B1
7909745 Mills et al. Mar 2011 B2
7918769 Lamarque Apr 2011 B2
7922621 Hamada et al. Apr 2011 B1
7922631 Ish, III Apr 2011 B2
7922632 Chou Apr 2011 B2
7922633 Januszek Apr 2011 B2
7922635 Lull et al. Apr 2011 B2
7927257 Patel Apr 2011 B2
7931563 Shaw et al. Apr 2011 B2
7931570 Hoffman Apr 2011 B2
7935026 McSorley May 2011 B2
7935032 Jackson May 2011 B1
7935038 Tyree May 2011 B2
7938760 Webber et al. May 2011 B1
7938761 Simonson May 2011 B2
7942788 Wu May 2011 B2
7942793 Mills et al. May 2011 B2
7946968 Kjellberg May 2011 B2
7955235 Keiser Jun 2011 B2
7963890 Webber et al. Jun 2011 B2
7963892 Poblete Castro et al. Jun 2011 B2
7967734 Damian Jun 2011 B1
7976440 Webber et al. Jul 2011 B2
7976443 Krull Jul 2011 B2
7976445 Lalaoua Jul 2011 B2
7980996 Hickman Jul 2011 B2
7981010 Webber et al. Jul 2011 B1
7981011 Batca Jul 2011 B1
7981012 Krull Jul 2011 B1
7981013 Krull Jul 2011 B2
7985167 Nizam Jul 2011 B2
7988598 Trzecieski Aug 2011 B2
7988600 Rodgers, Jr. Aug 2011 B2
7988604 Barnett Aug 2011 B2
7988605 Wyeroski Aug 2011 B1
7993251 Webber et al. Aug 2011 B1
7998036 Ish, III Aug 2011 B2
7998038 Keiser Aug 2011 B2
7998042 Bowser et al. Aug 2011 B2
8001472 Gilley et al. Aug 2011 B2
8002678 Krull Aug 2011 B1
8006711 Pietrzak et al. Aug 2011 B2
8007409 Elllis Aug 2011 B2
8007413 Wu Aug 2011 B1
8007415 Lundquist Aug 2011 B1
8007416 Arlie Aug 2011 B2
8007422 Zaccherini Aug 2011 B2
8012071 Grisdale Sep 2011 B2
8012073 Barnett Sep 2011 B2
8021277 Baudhuin Sep 2011 B2
8021285 Kushnir Sep 2011 B2
8025608 Popescu Sep 2011 B2
8025613 Wang Sep 2011 B1
8029415 Ashby et al. Oct 2011 B2
8029425 Bronston et al. Oct 2011 B2
8033960 Dalebout et al. Oct 2011 B1
8033965 Krull Oct 2011 B1
8033967 Canali Oct 2011 B2
8043198 Zhou Oct 2011 B2
8047970 Nalley Nov 2011 B2
8052584 Keiser Nov 2011 B2
8056687 Golden et al. Nov 2011 B2
8057361 McBride et al. Nov 2011 B2
8057367 Giannelli et al. Nov 2011 B2
8057368 Lyszczarz Nov 2011 B1
8070657 Loach Dec 2011 B2
8070658 Giannelli et al. Dec 2011 B2
8072902 Moon Dec 2011 B2
8075453 Wilkinson Dec 2011 B1
8079273 Svenberg Dec 2011 B2
8079941 Nortje Dec 2011 B2
8092351 Rodgers, Jr. Jan 2012 B1
8096926 Batca Jan 2012 B1
8103379 Biba et al. Jan 2012 B2
8104987 Johnson Jan 2012 B2
8106563 Ritchey Jan 2012 B2
8109864 Tseng Feb 2012 B2
8111166 Flexer et al. Feb 2012 B2
8113994 Piaget et al. Feb 2012 B2
8128537 Signorile et al. Mar 2012 B2
8142370 Weinberg et al. Mar 2012 B2
8147386 Farnsworth et al. Apr 2012 B2
8152702 Pacheco Apr 2012 B2
8167899 Justis et al. May 2012 B2
8172729 Ellis May 2012 B2
8173087 Wei et al. May 2012 B2
8177693 Webber et al. May 2012 B2
8182399 Davis et al. May 2012 B2
8192332 Baker et al. Jun 2012 B2
8192337 Birch Jun 2012 B2
8197392 Silverman et al. Jun 2012 B2
8200323 Dibenedetto et al. Jun 2012 B2
8206274 Svenberg et al. Jun 2012 B2
8210995 Reyes Jul 2012 B2
8212445 Ritchey Jul 2012 B2
8215886 Campbell Jul 2012 B2
8221295 Wilkins Jul 2012 B2
8235724 Gilley et al. Aug 2012 B2
8235876 Reyes Aug 2012 B2
8241187 Moon et al. Aug 2012 B2
8249714 Hartman et al. Aug 2012 B1
8251877 Rasmussen et al. Aug 2012 B2
8262546 Lashinske Sep 2012 B1
8272996 Weier Sep 2012 B2
8286954 Zheng Oct 2012 B2
8287434 Zavadsky et al. Oct 2012 B2
8298125 Colledge et al. Oct 2012 B2
8303472 Bowser Nov 2012 B2
8308620 Lyszczarz Nov 2012 B2
8309870 Peterson et al. Nov 2012 B2
8315636 Moon et al. Nov 2012 B2
8317659 Woodson Nov 2012 B2
8323156 Ozawa et al. Dec 2012 B2
8323157 Campanaro et al. Dec 2012 B2
8323159 Perry Dec 2012 B2
8348811 Kamins Jan 2013 B2
8359954 Johnson et al. Jan 2013 B2
8360935 Olsen et al. Jan 2013 B2
8376911 Ogg et al. Feb 2013 B2
8394004 Towley, III Mar 2013 B2
8398529 Ellis Mar 2013 B2
8429223 Gilley et al. Apr 2013 B2
8444537 Santoro May 2013 B1
8454437 Dugan Jun 2013 B2
8454483 Bradley et al. Jun 2013 B1
8470190 Jeanne et al. Jun 2013 B2
8475338 Greenhill et al. Jul 2013 B2
8485576 Melville et al. Jul 2013 B2
8485946 Ross et al. Jul 2013 B2
8485947 Nizam Jul 2013 B2
8485950 Adams Jul 2013 B2
8485953 Chou Jul 2013 B2
8485996 Bluman Jul 2013 B2
8500607 Vittone Aug 2013 B2
8500608 Bonomi Aug 2013 B1
8506370 Homsi Aug 2013 B2
8506459 Cassidy et al. Aug 2013 B2
8512212 Ish, III Aug 2013 B2
8517895 Shalev Aug 2013 B2
8517899 Zhou Aug 2013 B2
8523743 Miles et al. Sep 2013 B1
8523789 Keiser Sep 2013 B2
8529414 Hobson Sep 2013 B2
8529415 Svenberg Sep 2013 B2
8535204 Stacey Sep 2013 B2
8540560 Crowley et al. Sep 2013 B2
8540607 Kissel et al. Sep 2013 B2
8550964 Ish, III et al. Oct 2013 B2
8556216 Bandera Oct 2013 B2
8556780 Chen Oct 2013 B2
8562496 Webber et al. Oct 2013 B2
8568279 Golesh Oct 2013 B2
8568280 Mendoza Oct 2013 B2
8568281 Beaulieu et al. Oct 2013 B2
8572764 Thellmann Nov 2013 B2
8572820 Richards Nov 2013 B2
8573572 Bowen et al. Nov 2013 B2
8585561 Watt et al. Nov 2013 B2
8588476 Spicola, Jr. Nov 2013 B1
8590120 Sakai Nov 2013 B2
8591386 Meyer Nov 2013 B2
8591387 Fife Nov 2013 B2
8602951 Morris Dec 2013 B2
8607562 Browne Dec 2013 B2
8613689 Dyer et al. Dec 2013 B2
8631544 Shotey et al. Jan 2014 B1
8647239 Sokolovas Feb 2014 B1
8668630 Towley, III Mar 2014 B2
8678897 Englert et al. Mar 2014 B2
8690578 Nusbaum et al. Apr 2014 B1
8690735 Watterson et al. Apr 2014 B2
8690740 Yu Apr 2014 B2
8696527 Wu Apr 2014 B2
8702574 Abranchess Apr 2014 B2
8708870 Nalley Apr 2014 B2
8708872 Giannelli et al. Apr 2014 B2
8715140 Gertz May 2014 B1
8715143 Svenberg May 2014 B2
8721507 Blancher May 2014 B2
8734302 Hsieh May 2014 B2
8734304 Webber et al. May 2014 B2
8734308 Joslin May 2014 B1
8740753 Olson et al. Jun 2014 B2
8758201 Ashby et al. Jun 2014 B2
8764609 Elahmadie Jul 2014 B1
8771153 Dalebout et al. Jul 2014 B2
8771154 Fedriga Jul 2014 B2
8777820 Lo Jul 2014 B2
8777822 Agostini Jul 2014 B2
8784275 Mikan et al. Jul 2014 B2
8784286 Reyes Jul 2014 B2
8801581 Lai et al. Aug 2014 B2
8814754 Weast et al. Aug 2014 B2
8815189 Arnold et al. Aug 2014 B2
8821354 Tabahi Sep 2014 B1
8821359 Kassel Sep 2014 B1
8821870 Robinson et al. Sep 2014 B2
8827874 Nishimura Sep 2014 B2
8827879 Nicholas Sep 2014 B2
8840075 Olson Sep 2014 B2
8840569 Flaction et al. Sep 2014 B2
8845497 Turner Sep 2014 B2
8845498 Webb Sep 2014 B2
8845499 Boatwright Sep 2014 B1
8858397 Ishii Oct 2014 B2
8858409 Trees Oct 2014 B2
8870720 Webber et al. Oct 2014 B1
8870726 Watterson et al. Oct 2014 B2
8876131 Gomes Nov 2014 B1
8876674 Webb et al. Nov 2014 B2
8888660 Oteman Nov 2014 B1
8917273 Hoebel Dec 2014 B2
8920291 Chen et al. Dec 2014 B2
8926479 Chen et al. Jan 2015 B2
8932188 Svenberg Jan 2015 B2
8939831 Dugan Jan 2015 B2
8956290 Gilley et al. Feb 2015 B2
8968155 Bird Mar 2015 B2
8968162 Jaguan Mar 2015 B2
8968164 Giannelli Mar 2015 B2
8979709 Toback et al. Mar 2015 B2
8990045 Zhu et al. Mar 2015 B2
8992392 Giannelli et al. Mar 2015 B2
8992393 Reyes Mar 2015 B2
9008973 French Apr 2015 B2
9010222 Peirce Apr 2015 B2
9011156 Hallmark Apr 2015 B2
9011291 Birrell Apr 2015 B2
9011299 Lien Apr 2015 B2
9011301 Balandis Apr 2015 B2
9017230 Pitts Apr 2015 B1
9022906 Nelson May 2015 B1
9022907 Wang May 2015 B2
9028368 Ashby et al. May 2015 B2
9028381 Mestemaker May 2015 B2
9038218 Heil et al. May 2015 B1
9038549 Zebarjad May 2015 B1
9044635 Lull Jun 2015 B2
9050497 Reyes Jun 2015 B2
9050498 Lu et al. Jun 2015 B2
9072930 Ashby et al. Jul 2015 B2
9078708 Haas Jul 2015 B2
9079068 Muehl Jul 2015 B2
9114273 Kehoe Aug 2015 B2
9114275 Lu et al. Aug 2015 B2
9125620 Walke Sep 2015 B2
9126072 Watterson Sep 2015 B2
9126076 Liang Sep 2015 B2
9132051 Heil Sep 2015 B2
9132330 Brendle Sep 2015 B2
9135347 Damman et al. Sep 2015 B2
9138607 Miranda Sep 2015 B2
9138612 Breaux Sep 2015 B2
9138614 Lu et al. Sep 2015 B2
9138615 Olson et al. Sep 2015 B2
9144703 Dalebout et al. Sep 2015 B2
9144709 Reich Sep 2015 B2
9162102 Eder et al. Oct 2015 B1
9162104 Lee Oct 2015 B1
9168414 Liu et al. Oct 2015 B2
9174085 Foley Nov 2015 B2
9186552 Deal Nov 2015 B1
9192800 Meyer et al. Nov 2015 B1
9211431 Hornback et al. Dec 2015 B2
9227101 Maguire Jan 2016 B2
9248329 Heideman Feb 2016 B2
9254409 Dalebout et al. Feb 2016 B2
9259633 Meyers Feb 2016 B2
9265984 Huber Feb 2016 B2
9272186 Reich Mar 2016 B2
9283429 Aragones et al. Mar 2016 B2
9289644 Carson Mar 2016 B2
9292935 Koduri et al. Mar 2016 B2
9295302 Reed et al. Mar 2016 B1
9298886 Homsi Mar 2016 B2
9302139 Habing et al. Apr 2016 B2
9308409 Beaver Apr 2016 B2
9308410 Beaver Apr 2016 B2
9308417 Grundy Apr 2016 B2
9314658 Kaye Apr 2016 B2
9314659 Gvoich Apr 2016 B2
9314666 Canavan et al. Apr 2016 B2
9320457 Flaction et al. Apr 2016 B2
9320935 Paris Apr 2016 B1
9320938 Belmore Apr 2016 B1
9320940 Rainey Apr 2016 B2
9327159 Medina May 2016 B1
9333388 Lee et al. May 2016 B2
9339681 Nalley May 2016 B1
9339682 Braier et al. May 2016 B2
9339692 Hashish May 2016 B2
9352181 O'Neil May 2016 B2
9358414 Dephouse Jun 2016 B2
9358426 Aragones et al. Jun 2016 B2
9364703 Kuka Jun 2016 B1
9364706 Lo Jun 2016 B2
9364712 Wu Jun 2016 B2
9364714 Koduri et al. Jun 2016 B2
9375602 Krull Jun 2016 B2
9378336 Ohnemus et al. Jun 2016 B2
9387355 Joya Jul 2016 B1
9387357 Mueller Jul 2016 B2
9393453 Watterson Jul 2016 B2
9403047 Olson Aug 2016 B2
9403048 Balandis Aug 2016 B2
9409047 Kamenskikh Aug 2016 B2
9409050 Mintz Aug 2016 B2
9415257 Habing Aug 2016 B2
9427611 Balentine Aug 2016 B1
9457219 Smith Oct 2016 B2
9457220 Olson Oct 2016 B2
9463345 Simonetti Oct 2016 B2
9468792 Simonetti Oct 2016 B2
9468793 Salmon Oct 2016 B2
9474666 Smith Oct 2016 B1
9498128 Eslami et al. Nov 2016 B2
9498666 Pryor et al. Nov 2016 B1
9498668 Muller et al. Nov 2016 B2
9506528 Tucker et al. Nov 2016 B2
9506529 Tucker et al. Nov 2016 B2
9511254 Netter Dec 2016 B2
9521901 Dalebout Dec 2016 B2
9526937 Uygan Dec 2016 B2
9539458 Ross Jan 2017 B1
9539461 Ercanbrack Jan 2017 B2
9545540 Moschel Jan 2017 B1
9550091 Emerson Jan 2017 B2
9555278 Kaye et al. Jan 2017 B2
9555280 Kaye et al. Jan 2017 B2
9593992 Wu Mar 2017 B2
9604089 Cervone et al. Mar 2017 B2
9604092 Krull Mar 2017 B2
9610475 Deknock et al. Apr 2017 B1
9616274 Wehrell Apr 2017 B2
9616284 Aganyan Apr 2017 B1
9616292 Orfield Apr 2017 B2
9623285 Ruiz Apr 2017 B1
9630048 Kaye et al. Apr 2017 B2
9636539 Brumit May 2017 B1
9636540 Mueller et al. May 2017 B2
9643042 Madden May 2017 B2
9649524 Giunchi May 2017 B2
9656115 Young May 2017 B2
9656144 Jafarifesharaki May 2017 B2
9656591 Dumenigo May 2017 B1
9665046 Aoto et al. May 2017 B2
9669261 Eder Jun 2017 B2
9675836 Babon Jun 2017 B2
9682267 Kaye et al. Jun 2017 B2
9682307 Dalebout Jun 2017 B2
9687689 Lin Jun 2017 B2
9692276 Oteman et al. Jun 2017 B2
9700752 Powers Jul 2017 B1
9700753 Boatwright Jul 2017 B1
9707435 Ferlito et al. Jul 2017 B1
9720912 Morimoto et al. Aug 2017 B2
9723381 Swanson Aug 2017 B2
9724553 Kaye et al. Aug 2017 B2
9724563 Schmidt Aug 2017 B2
9731157 Loach Aug 2017 B2
9731158 Lo Aug 2017 B1
9734477 Weast et al. Aug 2017 B2
9750454 Walke et al. Sep 2017 B2
9757605 Olson et al. Sep 2017 B2
9757611 Colburn Sep 2017 B1
9764188 Aganyan Sep 2017 B1
9776032 Moran et al. Oct 2017 B2
9795818 Powell Oct 2017 B2
9795819 Wehrell Oct 2017 B2
9795822 Smith et al. Oct 2017 B2
9795827 Wiener et al. Oct 2017 B2
9795855 Jafarifesharaki Oct 2017 B2
9802072 Wehrell Oct 2017 B2
9802075 Gvoich Oct 2017 B2
9814920 Monterrey Nov 2017 B1
9814922 Moran et al. Nov 2017 B2
9814930 Manzke et al. Nov 2017 B2
9833654 Gant Dec 2017 B1
9839804 Werner Dec 2017 B2
9841077 Modrezejewski et al. Dec 2017 B2
9868006 Epler Jan 2018 B1
9873012 Huppee et al. Jan 2018 B2
9878201 Moschel Jan 2018 B1
9884224 Spoeth et al. Feb 2018 B2
9885575 Collin Feb 2018 B2
9895567 Lee Feb 2018 B2
9895570 Shah Feb 2018 B2
9895571 Wang Feb 2018 B2
9901766 Ross Feb 2018 B2
9901772 Crowley et al. Feb 2018 B2
9907396 Labrosse et al. Mar 2018 B1
9919183 Moschel Mar 2018 B1
9921726 Sculley et al. Mar 2018 B1
9943719 Smith et al. Apr 2018 B2
9950205 Simonetti Apr 2018 B2
9951904 Perez et al. Apr 2018 B2
9968816 Olson et al. May 2018 B2
9968821 Finlayson et al. May 2018 B2
9993683 Moschel Jun 2018 B2
10004934 Pennington Jun 2018 B2
10010745 Brumit Jul 2018 B1
10016646 Butler Jul 2018 B2
10022583 Wang Jul 2018 B2
10038952 Labrosse et al. Jul 2018 B2
10065064 Smith et al. Sep 2018 B2
10071285 Smith et al. Sep 2018 B2
10076437 Plath Sep 2018 B2
20020052268 Morcillo-Quintero May 2002 A1
20020072436 Liu Jun 2002 A1
20020086779 Wilkinson Jul 2002 A1
20020091043 Rexach Jul 2002 A1
20020101880 Kim Aug 2002 A1
20020128127 Chen Sep 2002 A1
20020160891 Gallagher Oct 2002 A1
20020193213 Batca Dec 2002 A1
20030008731 Anderson et al. Jan 2003 A1
20030017918 Webb et al. Jan 2003 A1
20030022765 Wu Jan 2003 A1
20030022770 Lee Jan 2003 A1
20030045406 Stone Mar 2003 A1
20030060344 David Mar 2003 A1
20030060345 Piane Mar 2003 A1
20030069108 Rubinstein Apr 2003 A1
20030092532 Giannelli et al. May 2003 A1
20030100413 Huang May 2003 A1
20030100415 Augustine et al. May 2003 A1
20030114276 Schiff Jun 2003 A1
20030122384 Swanson et al. Jul 2003 A1
20030148862 Chen Aug 2003 A1
20030166434 Lopez-Santillana et al. Sep 2003 A1
20030171189 Kaufman Sep 2003 A1
20030176261 Simonson Sep 2003 A1
20030186792 Keeler Oct 2003 A1
20030211916 Capuano Nov 2003 A1
20030216230 Wang Nov 2003 A1
20040005961 Iund Jan 2004 A1
20040005965 Panatta Jan 2004 A1
20040009856 Hammer Jan 2004 A1
20040014571 Haynes Jan 2004 A1
20040021046 Hutchison Feb 2004 A1
20040023761 Emery Feb 2004 A1
20040023766 Slone Feb 2004 A1
20040025993 Russell Feb 2004 A1
20040033866 Shapiro Feb 2004 A1
20040033868 Van Straaten Feb 2004 A1
20040043873 Wilkinson et al. Mar 2004 A1
20040053752 Yang Mar 2004 A1
20040072662 Landfair Apr 2004 A1
20040077468 Myles Apr 2004 A1
20040087420 Montesquieux May 2004 A1
20040097353 Mencis May 2004 A1
20040138032 Van Straaten Jul 2004 A1
20040142799 Yeo Jul 2004 A1
20040142801 Lin Jul 2004 A1
20040162194 Habing Aug 2004 A1
20040162196 Degroot Aug 2004 A1
20040171464 Ashby et al. Sep 2004 A1
20040171465 Hald Sep 2004 A1
20040176227 Endelman Sep 2004 A1
20040185988 Hsiung Sep 2004 A1
20040198569 Sanford-Schwentke Oct 2004 A1
20040204294 Wilkinson Oct 2004 A2
20040208943 Miketin Oct 2004 A1
20040242388 Kusminsky Dec 2004 A1
20040266591 Alessandri et al. Dec 2004 A1
20050003931 Mills et al. Jan 2005 A1
20050037904 Chang Feb 2005 A1
20050044984 Jones Mar 2005 A1
20050049117 Rodgers Mar 2005 A1
20050049123 Dalebout et al. Mar 2005 A1
20050054492 Neff Mar 2005 A1
20050061587 Tsai Mar 2005 A1
20050065003 Klotzki Mar 2005 A1
20050085348 Kiefer Apr 2005 A1
20050085352 Baxter Apr 2005 A1
20050101463 Chen May 2005 A1
20050107226 Monda May 2005 A1
20050113223 Dovner et al. May 2005 A1
20050130814 Nitta Jun 2005 A1
20050148440 Denton Jul 2005 A1
20050148442 Watterson Jul 2005 A1
20050159278 Mcvay Jul 2005 A1
20050164839 Watterson Jul 2005 A1
20050170937 van Straaten Aug 2005 A1
20050181347 Barnes et al. Aug 2005 A1
20050181916 Frost et al. Aug 2005 A1
20050187075 Bellamy Aug 2005 A1
20050233873 Chen Oct 2005 A1
20050248713 Hirosue et al. Nov 2005 A1
20050250619 Daikeler et al. Nov 2005 A1
20050272564 Pyles et al. Dec 2005 A1
20050272575 Melegati Dec 2005 A1
20050272577 Olson Dec 2005 A1
20050283051 Chen Dec 2005 A1
20060003877 Harmon Jan 2006 A1
20060019806 Mikulski Jan 2006 A1
20060021155 Lang et al. Feb 2006 A1
20060030465 Johnson Feb 2006 A1
20060033392 Ritchey Feb 2006 A1
20060035772 Golesh et al. Feb 2006 A1
20060040810 Chu Feb 2006 A1
20060084422 Huang et al. Apr 2006 A1
20060084556 Payne Apr 2006 A1
20060116253 Nizam Jun 2006 A1
20060128540 Engle Jun 2006 A1
20060135322 Rocker Jun 2006 A1
20060148622 Chen Jul 2006 A1
20060160677 Piane, Jr. Jul 2006 A1
20060189452 Chou Aug 2006 A1
20060217240 White Sep 2006 A1
20060217242 Karpachev Sep 2006 A1
20060240955 Pu Oct 2006 A1
20060240959 Huang Oct 2006 A1
20060247107 Carter Nov 2006 A1
20060251638 Guenzler-Pukall Nov 2006 A1
20060252602 Brown Nov 2006 A1
20060252612 Sofun Nov 2006 A1
20060252613 Barnes Nov 2006 A1
20060258519 Ardito, III et al. Nov 2006 A1
20060281608 Tumminello Dec 2006 A1
20070004569 Cao Jan 2007 A1
20070013655 Rosenberg et al. Jan 2007 A1
20070017025 Myer Jan 2007 A1
20070018465 Vassilakos Jan 2007 A1
20070021280 Tyree Jan 2007 A1
20070042878 Lundquist Feb 2007 A1
20070057001 Wang Mar 2007 A1
20070066448 Pan et al. Mar 2007 A1
20070087920 Dachraoui et al. Apr 2007 A1
20070093369 Bocchicchio Apr 2007 A1
20070111858 Dugan May 2007 A1
20070123390 Mathis May 2007 A1
20070123396 Ellis May 2007 A1
20070135264 Rosenberg Jun 2007 A1
20070135272 Stuckey Jun 2007 A1
20070135279 Purdy et al. Jun 2007 A1
20070141871 Scherer et al. Jun 2007 A1
20070155600 Cunningham et al. Jul 2007 A1
20070161468 Yanagisawa et al. Jul 2007 A1
20070161470 Berryman Jul 2007 A1
20070161472 Drechsler Jul 2007 A1
20070176035 Campbell Aug 2007 A1
20070179030 Slawinski Aug 2007 A1
20070184944 Huang Aug 2007 A1
20070190508 Dalton Aug 2007 A1
20070197345 Wallace et al. Aug 2007 A1
20070197353 Hundley Aug 2007 A1
20070202992 Grasshoff Aug 2007 A1
20070232455 Hanoun Oct 2007 A1
20070232461 Jenkins et al. Oct 2007 A1
20070232463 Wu Oct 2007 A1
20070243975 Gearon Oct 2007 A1
20070259759 Sumners et al. Nov 2007 A1
20070259763 McKeown et al. Nov 2007 A1
20070270284 Lin Nov 2007 A1
20070281836 Gearon Dec 2007 A1
20070287606 Mac Millan Dec 2007 A1
20070298941 Egger Dec 2007 A1
20070298945 Mehta Dec 2007 A1
20070298947 Eksteen Dec 2007 A1
20080020898 Pyles et al. Jan 2008 A1
20080020911 Castello Neto Jan 2008 A1
20080051256 Ashby Feb 2008 A1
20080070755 Mckee Mar 2008 A1
20080085820 Majkrzak Apr 2008 A1
20080090703 Rosenberg Apr 2008 A1
20080096735 Grider Apr 2008 A1
20080103034 Mihara et al. May 2008 A1
20080119337 Wilkins May 2008 A1
20080139370 Charnitski Jun 2008 A1
20080146418 Summers Jun 2008 A1
20080153676 Krietzman Jun 2008 A1
20080161168 Hsiao Jul 2008 A1
20080161170 Lumpee Jul 2008 A1
20080161653 Lin et al. Jul 2008 A1
20080182731 Vittone Jul 2008 A1
20080188362 Chen Aug 2008 A1
20080200853 Tielve Aug 2008 A1
20080204225 Kitchen Aug 2008 A1
20080207407 Yeh Aug 2008 A1
20080207415 Tsai Aug 2008 A1
20080214971 Talish Sep 2008 A1
20080228110 Berme Sep 2008 A1
20080242520 Hubbard Oct 2008 A1
20080261785 Albanese Oct 2008 A1
20080279896 Heinen et al. Nov 2008 A1
20080280734 Dickie et al. Nov 2008 A1
20080300118 Wehrell Dec 2008 A1
20080318738 Chen Dec 2008 A1
20080318744 Barra Dec 2008 A1
20090042698 Wang Feb 2009 A1
20090075784 Hoggan Mar 2009 A1
20090075793 Trainor Mar 2009 A1
20090105052 Dalebout et al. Apr 2009 A1
20090111658 Juan Apr 2009 A1
20090118098 Yeh May 2009 A1
20090131230 Cole May 2009 A1
20090149302 Thuma Jun 2009 A1
20090181830 Wu Jul 2009 A1
20090186748 Golesh et al. Jul 2009 A1
20090196417 Beaver et al. Aug 2009 A1
20090305852 Svenberg Dec 2009 A1
20100004104 Gustafson Jan 2010 A1
20100005624 Swearingen Jan 2010 A1
20100031803 Lozada et al. Feb 2010 A1
20100048368 Donofrio Feb 2010 A1
20100056345 Liu Mar 2010 A1
20100063426 Planke Mar 2010 A1
20100093493 Eldridge Apr 2010 A1
20100105530 Inaizumi Apr 2010 A1
20100130337 Stewart May 2010 A1
20100156760 Cheswick Jun 2010 A1
20100178981 Holcomb Jul 2010 A1
20100179035 Carnahan Jul 2010 A1
20100184570 Cheng Jul 2010 A1
20100197462 Piane, Jr. Aug 2010 A1
20100197465 Stevenson Aug 2010 A1
20100210418 Park Aug 2010 A1
20100216600 Noffsinger Aug 2010 A1
20100216610 Gedeon-Janvier Aug 2010 A1
20100233664 Wroclawsky Sep 2010 A1
20100234184 Le Page Sep 2010 A1
20100234193 Friedman Sep 2010 A1
20100240493 Wang Sep 2010 A1
20100255965 Chen Oct 2010 A1
20100285933 Nalley Nov 2010 A1
20100304938 Olson Dec 2010 A1
20100304940 Svenberg Dec 2010 A1
20100311552 Sumners Dec 2010 A1
20100317488 Cartaya Dec 2010 A1
20100323852 Locsin Dec 2010 A1
20100327603 Suaan Dec 2010 A1
20110028282 Sbragia Feb 2011 A1
20110082013 Bastian Apr 2011 A1
20110082015 Dreissigacker et al. Apr 2011 A1
20110087137 Hanoun Apr 2011 A1
20110131005 Ueshima et al. Jun 2011 A1
20110165995 Paulus Jul 2011 A1
20110165996 Paulus Jul 2011 A1
20110165997 Reich Jul 2011 A1
20110172058 Deaconu Jul 2011 A1
20110172068 Tyson, III Jul 2011 A1
20110185309 Challinor et al. Jul 2011 A1
20110188980 Pumroy Aug 2011 A1
20110190096 Clarke Aug 2011 A1
20110195819 Shaw Aug 2011 A1
20110195825 Liester Aug 2011 A1
20110237407 Kaleal Sep 2011 A1
20110240403 Meillet Oct 2011 A1
20110281249 Gammell et al. Nov 2011 A1
20110281691 Ellis Nov 2011 A1
20110287905 Reyes Nov 2011 A1
20120004074 Schelzig Jan 2012 A1
20120015787 Crawley Jan 2012 A2
20120021876 Hsiung Jan 2012 A1
20120021877 Lundquist et al. Jan 2012 A1
20120035024 Price Feb 2012 A1
20120083396 Aquino Apr 2012 A1
20120115691 Munroe May 2012 A1
20120142503 Sevadjian Jun 2012 A1
20120158238 Daley Jun 2012 A1
20120225758 Shaw Sep 2012 A1
20120238411 Mcbride et al. Sep 2012 A1
20120258433 Hope et al. Oct 2012 A1
20120277070 Sienna Nov 2012 A1
20120283074 Hutchins Nov 2012 A1
20120295774 Dalebout et al. Nov 2012 A1
20120322625 Park Dec 2012 A1
20120322629 Webb Dec 2012 A1
20120329615 Jeong Dec 2012 A1
20130018494 Amini Jan 2013 A1
20130035219 Williams Feb 2013 A1
20130053220 Monaco Feb 2013 A1
20130065732 Hopp Mar 2013 A1
20130090212 Wang Apr 2013 A1
20130090216 Jackson Apr 2013 A1
20130102443 Lundquist et al. Apr 2013 A1
20130123083 Sip May 2013 A1
20130178338 Ross Jul 2013 A1
20130178346 Lin Jul 2013 A1
20130193655 Kaye et al. Aug 2013 A1
20130196821 Watterson et al. Aug 2013 A1
20130225373 Poat Aug 2013 A1
20130225377 Lee et al. Aug 2013 A1
20130231226 Bonutti Sep 2013 A1
20130237383 Chen Sep 2013 A1
20130274067 Watterson et al. Oct 2013 A1
20130274074 Ghandour Oct 2013 A1
20130303334 Adhami Nov 2013 A1
20130310230 Norris Nov 2013 A1
20130337974 Yanev et al. Dec 2013 A1
20130337980 Himmelrick et al. Dec 2013 A1
20140073488 Wu Mar 2014 A1
20140080678 Wu Mar 2014 A1
20140106943 Simonetti Apr 2014 A1
20140106948 Agostini Apr 2014 A1
20140121071 Strom et al. May 2014 A1
20140162856 Kramer Jun 2014 A1
20140187389 Berg Jul 2014 A1
20140221175 Liu Aug 2014 A1
20140221881 Schlauder et al. Aug 2014 A1
20140228175 Lemos et al. Aug 2014 A1
20140287886 Patti Sep 2014 A1
20140309092 De Michele Oct 2014 A1
20140357457 Boekerna Dec 2014 A1
20140371035 Mortensen Dec 2014 A1
20150038300 Forhan Feb 2015 A1
20150069738 Knight Mar 2015 A1
20150072842 Segal Mar 2015 A1
20150126348 Kaye et al. May 2015 A1
20150148204 Sleppy May 2015 A1
20150165270 Allos Jun 2015 A1
20150202487 Wu Jul 2015 A1
20150209610 Dalebout et al. Jul 2015 A1
20150238801 Meredith Aug 2015 A1
20150251055 Ashby Sep 2015 A1
20150273267 Manzke Oct 2015 A1
20150283420 Chang Oct 2015 A1
20150283421 Gaylord Oct 2015 A1
20150352396 Dalebout Dec 2015 A1
20150360073 Moran et al. Dec 2015 A1
20160001123 Parrish, Jr. Jan 2016 A1
20160008650 Jue et al. Jan 2016 A1
20160051857 Rasner Feb 2016 A1
20160074691 Pearce et al. Mar 2016 A1
20160096064 Gatti Apr 2016 A1
20160101311 Workman Apr 2016 A1
20160121156 Bach May 2016 A1
20160199683 Shamlin Jul 2016 A1
20160206248 Sartor et al. Jul 2016 A1
20160256728 Tang Sep 2016 A1
20160278487 Postolek Sep 2016 A1
20160319850 Kamen et al. Nov 2016 A1
20160321075 Catherwood et al. Nov 2016 A1
20160346586 Pullins et al. Dec 2016 A1
20160346617 Sprugo Dec 2016 A1
20170021218 Peritz Jan 2017 A1
20170050069 Ky Feb 2017 A1
20170050074 Olson Feb 2017 A1
20170056711 Dalebout et al. Mar 2017 A1
20170056712 Johnson Mar 2017 A1
20170056715 Dalebout et al. Mar 2017 A1
20170056726 Dalebout et al. Mar 2017 A1
20170065852 Cygan et al. Mar 2017 A1
20170106227 Lalaoua Apr 2017 A1
20170106240 Chuang Apr 2017 A1
20170165552 Martin Jun 2017 A1
20170173394 Rider Jun 2017 A1
20170197103 Rau et al. Jul 2017 A1
20170197106 Dalebout et al. Jul 2017 A1
20170239509 Wang Aug 2017 A1
20170266481 Dalebout Sep 2017 A1
20170266503 Watterson et al. Sep 2017 A1
20170274237 Chang Sep 2017 A1
20170312580 Chang Nov 2017 A1
20170319906 Chang et al. Nov 2017 A1
20170326411 Watterson Nov 2017 A1
20170367480 Dickerson et al. Dec 2017 A1
20180036572 Hsu Feb 2018 A1
20180085622 Ivan Mar 2018 A1
20180117385 Watterson et al. May 2018 A1
20180140886 Hetrick et al. May 2018 A1
20180154205 Watterson Jun 2018 A1
20180256933 Olson Sep 2018 A1
Related Publications (1)
Number Date Country
20170266481 A1 Sep 2017 US
Provisional Applications (1)
Number Date Country
62310467 Mar 2016 US