Elliptical and stationary bicycle apparatus including row functionality

Information

  • Patent Grant
  • 10625114
  • Patent Number
    10,625,114
  • Date Filed
    Wednesday, October 18, 2017
    6 years ago
  • Date Issued
    Tuesday, April 21, 2020
    4 years ago
Abstract
An exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat track of the frame, at least one resistance mechanism connected to the frame, a pull cable in communication with the resistance mechanism, a crank assembly in communication with the resistance mechanism, a first swing arm connected to the frame, and a second swing arm connected to the frame.
Description
BACKGROUND

Aerobic exercise is a popular form of exercise that improves one's cardiovascular health by reducing blood pressure and providing other benefits to the human body. Aerobic exercise generally involves low intensity physical exertion over a long duration of time. Generally, the human body can adequately supply enough oxygen to meet the body's demands at the intensity levels involved with aerobic exercise. Popular forms of aerobic exercise include running, jogging, swimming, and cycling, among others activities. In contrast, anaerobic exercise often involves high intensity exercises over a short duration of time. Popular forms of anaerobic exercise include strength training and short distance running.


Many people choose to perform aerobic exercises indoors, such as in a gym or their home. Often, a user will use an aerobic exercise machine to have an aerobic workout indoors. One such type of aerobic exercise machine is an elliptical exercise machine, which often includes foot supports that move in fixed reciprocating directions when moved by the feet of a user. Often, the foot supports are mechanically linked to arm levers that can be held by the user during the workout. The arm levers and foot supports move together and collectively provide resistance against the user's motion during the user's workout. Other popular exercise machines that allow a user to perform aerobic exercises indoors include treadmills, rowing machines, and stepper machines, to name a few.


Another popular form of aerobic exercise is cycling. Cycling is typically done on stationary bikes indoors or on moving bikes outside that travel off road or on streets. With a traditional upright bicycle, the user rests his or her body weight entirely on a small portion of the bike's seat, handles, and pedals. With an upright bike, the user typically leans forward as he or she pedals. Another form of cycling is recumbent cycling. With a recumbent bicycle, the user is often reclined in a seat with a back support which distributes the user's weight over a larger area, including the user's back.


One system for cycling is disclosed in U.S. Pat. No. 6,071,215 issued to David M. Raffo, et al. In this reference, a multi-mode exercise machine has a re-configurable arm member operable in alternate upstanding and recumbent configurations that allows the machine to be used, when the re-configurable arm member is configured in its upright configuration, to provide a first mode of exercise where the user is supported in such an upright position as to be able to exercise at least his/her lower body, and that allows the machine to be used, when the re-configurable arm member is configured in its recumbent configuration, to provide a second mode of exercise, where the user is supported in such a recumbent position as to allow the user to exercise at least his/her upper body. According to Raffo, the re-configurable arm member includes a pivotally mounted and self-locking arm member movable between a first, upright position and a second, recumbent position. The first and second exercise modes include cycling and rowing exercise modes. Other types of cycling devices are disclosed in U.S. Pat. No. 6,497,426 issued to James L. Vanpelt; U.S. Pat. No. 6,648,353 to Pedro Pablo Cabal; and U.S. Patent Publication No. 2013/0260964 issued to Benjamin Chia.


SUMMARY

In one embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a first flywheel connected to the frame, a second flywheel connected to the frame, a pull cable in communication with the first flywheel, a crank assembly in communication with the second flywheel, a first swing arm connected to the frame, and a second swing arm connected to the frame.


The exercise machine may include a first magnetic resistance mechanism that resists movement of the first flywheel.


The exercise machine may include a second magnetic resistance mechanism that resists movement of the second flywheel.


The crank assembly may include a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm.


The crank assembly may a crank wheel connected to the crank axle.


The exercise machine may include a transmission medium that transmits torque from the crank wheel to the second flywheel when the crank axle rotates.


The first crank pedal and the second crank pedal may travel in a generally circular path when the crank axle rotates.


The exercise machine may include a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, and a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base.


The base may include a first longitudinal track and a second longitudinal track aligned with the first longitudinal track. The first movable linkage connects in the first longitudinal track, and the second movable linkage connects in the second longitudinal track.


The first swing arm may be pivotally connected to the first movable linkage, and the second swing arm may be pivotally connected to the second movable linkage.


The exercise machine may include a first linkage pedal connected to a first mid-region of the first movable linkage and a second linkage pedal connected to a second mid-region of the second movable linkage.


The first linkage pedal and the second linkage pedal may travel in a generally oblong path when the crank axle rotates.


The first longitudinal track and the second longitudinal track may be aligned with the seat track.


The exercise machine may include a handle attached to a first cable end of the pull cable and a cable axle in communication with a second cable end.


The exercise machine may include a transmission medium connecting the cable axle to the first flywheel.


In an embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a first flywheel connected to the frame, a second flywheel connected to the frame, a pull cable in communication with the first flywheel, a crank assembly in communication with the second flywheel. The crank assembly includes a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm, a first swing arm connected to the frame, a second swing arm connected to the frame, a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base. The exercise machine further includes a first longitudinal track, a second longitudinal track aligned with the first longitudinal track, a first linkage pedal connected to a first mid-region of the first movable linkage, and a second linkage pedal connected to a second mid-region of the second movable linkage. The first movable linkage connects in the first longitudinal track, and the second movable linkage connects in the second longitudinal track. The first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage. The first longitudinal track and the second longitudinal track are aligned with the seat track.


The first linkage pedal and the second linkage pedal may travel in a generally oblong path when the crank axle rotates.


The exercise machine may include a handle attached to a first cable end of the pull cable and a cable axle in communication with a second cable end.


The exercise machine may include a transmission medium connecting the cable axle to the first flywheel.


In an embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a first flywheel connected to the frame, a second flywheel connected to the frame, a pull cable in communication with the first flywheel, a crank assembly in communication with the second flywheel. The crank assembly includes a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm. The exercise machine includes a crank transmission medium that transmits torque from the crank assembly to the second flywheel when the crank axle rotates, a first swing arm connected to the frame, a second swing arm connected to the frame, a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, and a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base, a first longitudinal track, a second longitudinal track aligned with the first longitudinal track, a first linkage pedal connected to a first mid-region of the first movable linkage, a second linkage pedal connected to a second mid-region of the second movable linkage, a handle attached to a first cable end of the pull cable, a cable axle in communication with a second cable end, and a pull transmission medium connecting the cable axle to the first flywheel. The first movable linkage connects in the first longitudinal track, and the second movable linkage connects in the second longitudinal track. The first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage. The first longitudinal track and the second longitudinal track are aligned with the seat track. The first linkage pedal and the second linkage pedal travel in a generally oblong path when the crank axle rotates and the first crank pedal and the second crank pedal travel in a generally circular path when the crank axle rotates.


In one embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a flywheel connected to the frame, a pull cable in communication with the flywheel, a crank assembly in communication with the flywheel, a first swing arm connected to the frame, and a second swing arm connected to the frame.


The crank assembly may include a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm.


The crank assembly may include a crank wheel connected to the crank axle.


The exercise machine may include a transmission medium that transmits torque from the crank wheel to the flywheel when the crank axle rotates.


The exercise machine may include a magnetic resistance mechanism that resists movement of the flywheel.


The first crank pedal and the second crank pedal may travel in a generally circular path when the crank axle rotates.


The exercise machine may include a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, and a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base.


The base may include a first longitudinal track and a second longitudinal track aligned with the first longitudinal track. The first movable linkage may connect in the first longitudinal track, and the second movable linkage may connect in the second longitudinal track.


The first swing arm may be pivotally connected to the first movable linkage, and the second swing arm may be pivotally connected to the second movable linkage.


The exercise machine may include a first linkage pedal connected to a first mid-region of the first movable linkage and a second linkage pedal connected to a second mid-region of the second movable linkage.


The first linkage pedal and the second linkage pedal may travel in a generally oblong path when the crank axle rotates.


The first longitudinal track and the second longitudinal track may be aligned with the seat track.


The exercise machine may include a handle attached to a first cable end of the pull cable and a cable axle in communication with a second cable end.


The exercise machine may include a transmission medium connecting the cable axle to the flywheel.


In one embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a flywheel connected to the frame, a pull cable in communication with the flywheel, and a crank assembly in communication with the flywheel. The crank assembly includes a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm. The exercise machine includes a first swing arm connected to the frame, a second swing arm connected to the frame, a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, and a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base, a first longitudinal track, a second longitudinal track aligned with the first longitudinal track, a first linkage pedal connected to a first mid-region of the first movable linkage, and a second linkage pedal connected to a second mid-region of the second movable linkage. The first movable linkage connects in the first longitudinal track, and the second movable linkage connects in the second longitudinal track. The first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage. The first longitudinal track and the second longitudinal track are aligned with the seat track.


The exercise machine may include a transmission medium that transmits torque from the crank assembly to the flywheel when the crank axle rotates.


The first linkage pedal and the second linkage pedal may travel in a generally oblong path when the crank axle rotates.


The exercise machine may include a handle attached to a first cable end of the pull cable and a cable axle in communication with a second cable end.


The exercise machine may include a transmission medium connecting the cable axle to the flywheel.


In one embodiment, an exercise machine includes a frame, a seat track of the frame, a seat movably attached to the seat of the frame, a flywheel connected to the frame, a pull cable in communication with the flywheel, and a crank assembly in communication with the flywheel. The crank assembly includes a crank axle, a first crank arm connected to a first side of the crank axle, a second crank arm connected to a second side of the crank axle, a first crank pedal connected to the first crank arm, and a second crank pedal connected to the second crank arm. The exercise machine includes a crank transmission medium that transmits torque from the crank assembly to the flywheel when the crank axle rotates, a first swing arm connected to the frame, a second swing arm connected to the frame, a base connected to the frame, a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base, a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base, a first longitudinal track, a second longitudinal track aligned with the first longitudinal track, a first linkage pedal connected to a first mid-region of the first movable linkage, a second linkage pedal connected to a second mid-region of the second movable linkage, a handle attached to a first cable end of the pull cable, a cable axle in communication with a second cable end, and a pull transmission medium connecting the cable axle to the flywheel. The first movable linkage connects in the first longitudinal track, and the second movable linkage connects in the second longitudinal track. The first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage. The first longitudinal track and the second longitudinal track are aligned with the seat track. The first linkage pedal and the second linkage pedal travel in a generally oblong path when the crank axle rotates and the first crank pedal and the second crank pedal travel in a generally circular path when the crank axle rotates.





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 side view of an example of an exercise machine in accordance with the present disclosure.



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



FIG. 3 illustrates a side view of an example of a user performing an exercise with an exercise machine in accordance with the present disclosure.



FIG. 4 illustrates a side view of an example of a user performing an exercise with an exercise machine in accordance with the present disclosure.



FIG. 5 illustrates a side view of an example of a user performing an exercise with an exercise machine in accordance with the present disclosure.



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



FIG. 7 illustrates a side view of an example of a resistance mechanism in an exercise machine 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. Often, the width of an object is transverse the object's length.



FIGS. 1 and 2 depict an example of an exercise machine 100 with a frame 102. The frame 102 may include an upright portion 104 and a base 106. The upright portion 104 of the frame 102 can be connected to a seat track 108 that extends horizontally away from the upright portion 104. A leg 110 may extend from the base 106 and support a distal end 112 of the seat track 108. A seat 114 may be movably attached to the seat track 108 so that the seat 114 can slide along a length of the seat track 108.


The upright portion 104 may support a pull cable 116. A first end of the pull cable 116 may be attached to a handle 120, and a second end of the pull cable 116 may be attached to a resistance mechanism (not shown). In some examples, the resistance mechanism is contained within a housing 126 that is connected to the upright portion 104 of the frame 102. In those circumstances when the pull cable 116 is pulled, the resistance mechanism resists the longitudinal movement of the pull cable 116. The housing, the upright portion, or another portion of the exercise machine may include a push pad 128. A user may sit on the seat 114, and place his or her feet against the push pads 128. The user may slide along the length of the seat track 108 by extending his or her legs and/or bending his or her knees. As the user's seat 114 slides away from the upright portion 104 of the frame 102, the user may lean back and pull the pull cable 116 as part of a rowing exercise. As the user travels towards the upright portion 104 of the frame 102, the pull cable 116 may longitudinally move to return to its original position.


The base 106 may include at least one structural member 130 that is transverse the upright portion 104. In some examples, the base includes multiple structural members that are aligned with each other and also transverse the upright portion. The base 106 may include a first linkage track 132 and a second linkage track 200. In some cases, the first linkage track 132 is formed on a first side of the base 106, and the second linkage track 200 may be formed on a second side of the base 106. In other examples, the first and second linkage tracks 132, 200 are incorporated into the base 106 on a top side. The first linkage track 132 and the second linkage track 200 can be aligned with the seat track 108.


A crank assembly 134 may be included in the exercise machine 100. In some examples, the crank assembly 134 is supported by the base 106. In other examples, the crank assembly 134 is supported by a section of the upright portion 104. The crank assembly 134 may include a crank axle 136, a first crank arm 138 connected to the crank axle 136, and a second crank arm 202 connected to the crank axle 136. A first crank pedal 140 may be attached to the first crank arm 138, and a second crank pedal 204 may be attached to a second crank arm 202. When the crank axle 136 is rotated, the first crank pedal 140 and the second crank pedal 204 may travel in a generally circular path.


A first swing arm 142 may be pivotally attached to a first side of the upright portion 104, and a second swing arm 144 may be pivotally attached to a second side of the upright portion 104. A first swing handle 145 may be attached to an upper portion of the first swing arm 142, and a second swing handle 148 may be attached to an upper portion of the second swing arm 144. A bottom portion of the first swing arm 142 may be connected to a first movable linkage 146, and a bottom portion of the second swing arm 144 may be connected to a second movable linkage 206. The first movable linkage 146 may have an end 150 that slides along the length of the first linkage track 132 of the base 106, and the second movable linkage 206 may have an end 152 that slides along the length of the second linkage track 200 of the base 106. The other end 154 of the first movable linkage 146 may be connected to the first crank arm 138, and the other end 156 of the second movable linkage 206 may be connected to the second crank arm 202. A first linkage pedal 158 may be incorporated into a first mid-region 160 of the first movable linkage 146, and a second linkage pedal 208 may be incorporated into a second mid-region 210 of the second movable linkage 206. The first and second linkage pedals 158, 206 may travel in an oblong path when the crank axle 136 rotates.



FIG. 3 depicts an example of a user 300 performing a cycling exercise. In this example, the user has his feet on the crank pedals 302 and the user is seated in the seat 304. As the user pushes on the crank pedals 302, the crank axle 306 moves causing the crank pedals 302 to move in a generally circular path. In this example, the seat 304 can be locked in place. Multiple openings 308 may be formed in the underside of the seat track 310. A pin 312 may be secured through one of the openings 308 to prevent the seat from sliding along the seat track 310. As the crank axle 306 is rotated, the movable linkages 314 and linkage pedals 316 move accordingly.



FIG. 4 depicts an example of a user 400 performing an elliptical training exercise with the exercise machine 402. In this example, the user is standing with his feet on the linkage pedals 404. The user may optionally support himself by holding onto the swing arms 406. As the user moves the linkage pedals 404, the linkage pedals 404 travel in an oblong path 407. In this example, as the crank axle 408 rotates, the crank pedals 410 and the crank arms 412 move accordingly.



FIG. 5 depicts an example of a user 500 performing a rowing exercise with the exercise machine 502. In this example, the user has his feet secured against the push pads 504, holding the handle 506 of the pull cable 508, and sitting in the seat 510. As the user straightens his legs, the seat 510 slides along the seat track 512 and the pull cable 508 moves longitudinally against the resistance force of the resistance mechanism. On the return stroke, the user 500 bends his knees moving his body back towards the exercise machine's upright portion 514 and the pull cable 508 moves longitudinally to its original position. In some examples, the pull cable 508 is decoupled from the crank assembly so that the crank axle 516 and therefore the crank pedals 518 and linkage pedals 520 do not move based on the longitudinal movement of the pull cable 508.



FIG. 6 depicts an example of the resistance mechanism 600. In this example, the resistance mechanism 600 includes a crank wheel 602 concentrically connected to the crank axle 604. The crank axle 604 is supported by a beam 606 that is attached to a frame member 608 of the upright portion and a leg 612 connected to a base member 614 of the frame.


A first transmission medium 616, such as a drive belt, chain, loop, rope, cable, band, and so forth, is secured around the circumference 618 of the crank wheel. In other examples, the first transmission medium 616 can be secured around a portion of the crank axle's circumference. The first transmission medium 616 connects the crank wheel/crank axle to a first axle 620 of a first flywheel 622. A first magnetic unit 624 may be positioned adjacent the first flywheel 622 so that the first magnetic unit 624 resists the flywheel's movement. This resistance may be transmitted back through the first transmission medium 616, and the crank axle's rotational movement is resisted. As a result, the movement of the crank pedals and the linkage pedals is also resisted.


The pull cable 626 is also routed by the frame member 608 of the upright portion. A second end 628 of the pull cable 626 is connected to a pull cable axle 630 which is supported by the beam 606, but may be connected to another portion of the exercise machine in other examples. A second transmission medium 632 connects the pull cable axle 630 to a second axle 634 of a second flywheel 636. A second magnetic unit 638 may be positioned adjacent the second flywheel 636 so that the second magnetic unit 638 resists the flywheel's movement. This resistance may be transmitted back through the second transmission medium 632 to the pull cable axle and thereby resist the longitudinal movement of the pull cable 626. In this example, the movement of the crank axle 604 and the movement of the pull cable axle 630 are independent so that movement of the one of the these axles does not cause the rotation of the other. Thus, when the pull cable is moved, the crank pedals and the linkage pedals do not move accordingly. Likewise, when the crank pedals and/or linkage pedals are moved, no additional resistance is placed on the pull cable.



FIG. 7 depicts an example of a resistance mechanism 700. In this example, the crank wheel 702 and the pull cable axle 704 are connected to the same flywheel 706. In this example, the first transmission medium 708 and the second transmission medium 710 are connected to the flywheel's axle 712. The magnetic unit 714 resists movement of the flywheel 706. Thus, the movement of the pull cable and the movement of the crank pedals and linkage pedals are resisted with the same flywheel.


GENERAL DESCRIPTION

In general, the invention disclosed herein may provide users with an exercise machine that has several exercise modes. For example, the exercise machine may have a mode that allows the user to perform a rowing exercise, a cycling exercise, an elliptical exercise, another type of exercise, or combinations thereof.


In some examples, the exercise machine includes a frame. The frame may include an upright portion and a base portion. The upright portion of the frame can be connected to a seat track that extends horizontally away from the upright portion. A leg may extend vertically from the base and support a distal end of the seat track. A seat may be movably attached to the seat track so that the seat can slide along a length of the seat track.


The upright portion may support a pull cable. A first end of the pull cable may be attached to a handle, and a second end of the pull cable may be attached to a resistance mechanism. In some examples, the resistance mechanism is contained within a housing that is connected to the upright portion of the frame. In those circumstances when the pull cable is pulled, the resistance mechanism resists the longitudinal movement of the pull cable. The housing, the upright portion, or another portion of the exercise machine may include a push pad. A user may sit on the seat and place his or her feet against the push pads. The user may slide along the length of the seat track by extending his or her legs and/or bending her or her knees. As the user's seat slides away from the upright portion of the frame, the user may lean back and pull the pull cable as part of a rowing exercise. As the user travels towards the upright portion of the frame, the pull cable may longitudinally move to return to its original position.


The base may include at least one structural member that is transverse the upright portion. In some examples, the base includes multiple structural members that are aligned with each other and also transverse the upright portion. The base may include a first linkage track and a second linkage track. In some cases, the first linkage track is formed on a first side of the base, and the second linkage track may be formed on a second side of the base. In other examples, the first and second linkage tracks are incorporated into the base on a top side. The first linkage track and the second linkage track can be aligned with the seat track.


A crank assembly may be included in the exercise machine. In some examples, the crank assembly is supported by a section of the base. In other examples, the crank assembly is supported by a section of the upright portion. The crank assembly may include a crank axle, a first crank arm connected to the crank axle, and a second crank arm connected to the crank axle. A first crank pedal may be attached to the first crank arm, and a second crank pedal may be attached to a second crank arm. When the crank axle is rotated, the first crank pedal and the second crank pedal may travel in a generally circular path.


A first swing arm may be pivotally attached to a first side of the upright portion, and a second swing arm may be pivotally attached to a second side of the upright portion. A first swing handle may be attached to an upper portion of the first swing arm, and a second swing handle may be attached to an upper portion of the second swing arm. A bottom portion of the first swing arm may be connected to a first movable linkage, and a bottom portion of the second swing arm may be connected to a second movable linkage. The first movable linkage may have an end that slides along the length of the first linkage track of the base, and the second movable linkage may have an end that slides along the length of the second linkage track of the base. The other end of the first movable linkage may be connected to the first crank arm, and the other end of the second movable linkage may be connected to the second crank arm. A first linkage pedal may be incorporated into a first mid-region of the first movable linkage, and a second linkage pedal may be incorporated into a second mid-region of the second movable linkage. The first and second linkage pedals may travel in an oblong path when the crank axle rotates.


Thus, in one mode, the user may perform a rowing exercise by pulling on the pull cable while sliding his or her body along the length of the seat track in the seat. In a second mode, the user may perform an elliptical trainer exercise by standing on the linkage pedals and rotating the crank axle with the linkage pedals. In some examples, the user may hold onto the first and second swing handles during the performance of the elliptical trainer exercise. Also, the user may perform a cycling exercise by pushing the crank pedals with his or her feet. In some cases, the seat may be locked in place along the length of the seat track so that the seat cannot slide. When locked, the user may sit on the seat and move the crank pedals with his or her feet to perform the cycling exercise.


In some examples, the resistance mechanism includes a crank wheel concentrically connected to the crank axle. The crank axle may be supported by a beam that is attached to a frame member of the upright portion and a leg connected to a base member of the frame. While this example is described with the crank axle supported with a specific component of the exercise machine, the crank axle may be supported with any appropriate component of the exercise machine.


A first transmission medium, such as a drive belt, chain, loop, rope, cable, band, and so forth, may be secured around the circumference of the crank wheel. In other examples, the first transmission medium can be secured around a portion of the crank axle's circumference. The first transmission medium may connect the crank wheel/crank axle to a first axle of a first flywheel. A first magnetic unit may be positioned adjacent the first flywheel so that the first magnetic unit resists the flywheel's movement. This resistance may be transmitted back through the first transmission medium to the crank axle. Thus, the rotational movement of the crank axle is also resisted. As a result, the movement of the crank pedals and the linkage pedals is also resisted.


The pull cable may be routed by the frame member of the upright portion. A second end of the pull cable may be connected to a pull cable axle which is supported by the beam or another portion of the exercise machine in other examples. In some examples, a second transmission medium may connect the pull cable axle to a second axle of a second flywheel. In this example, a second magnetic unit may be positioned adjacent the second flywheel so that the second magnetic unit resists the flywheel's movement. This resistance may be transmitted back through the second transmission medium to the pull cable axle and thereby resist the longitudinal movement of the pull cable. In this example, the movement of the crank axle and the movement of the pull cable axle are independent, so that movement of one of the these axles does not cause the rotation of the other. Thus, when the pull cable is moved, the crank pedals and the linkage pedals do not move accordingly. Likewise, when the crank pedals and/or linkage pedals are moved, no additional resistance is placed on the pull cable.


The magnetic unit may resist the movement of its respective flywheel. In examples where the magnetic unit exhibits a consistent magnetic field, the amount of resistance applied to the flywheel may be changed by moving the magnetic unit towards or away from the flywheel. For example, the resistance applied to the flywheel may be increased by moving the magnetic unit closer to the flywheel. In other examples, the resistance applied to the flywheel may be decreased by moving the magnetic unit closer to the flywheel. In some cases, the magnetic unit may emit a variable amount of magnetic resistance by applying a varying amount of electrical power to the magnetic unit.


In other examples, the crank axle and the pull cable axle are connected to the same flywheel. In these types of examples, the first transmission medium and the second transmission medium are connected to the flywheel's axle. The magnetic unit resists movement of the flywheel. Thus, the movement of the pull cable and the movement of the crank pedals and linkage pedals are resisted with the same flywheel.


In some of these examples, longitudinal movement of the pull cable may also cause the crank pedals and the linkage pedals to travel along their respective paths. However, in other examples, the movement of the pull cable is still decoupled from the movement of the crank and linkage pedals. For example, a transmission medium connecting the crank axle to the flywheel axle may be connected with a spool assembly. The spool assembly may be connected to the flywheel axle so that when the spool assembly rotates in a first direction, the spool assembly causes the flywheel axle to rotate in the first direction. When the spool assembly rotates in a second direction with respect to the flywheel axle, the spool assembly rotates independent of the flywheel axle. As a result, when the flywheel axle rotates by a force other than the rotational force of the spool assembly, the spool assembly does not rotate. In this example, when the flywheel axle is caused to rotate by the transmission medium connected to the pull cable assembly, the spool assembly does not rotate. Likewise, the transmission medium connecting the pull cable axle to the flywheel axle can also be connected with a spool assembly so that movement of the pull cable is also independent of the crank axle's movement. In this manner, the movement of the pull cable axle and the crank axle are independent. Thus, pulling on the pull cable may not cause the crank and linkage pedals to move. Similarly, moving the crank pedals and/or linkage pedals may not apply a longitudinal force on the pull cable.


In some examples, the crank assembly does not include a crank wheel. In some of these examples, a transmission medium may connect the crank axle directly to the flywheel axle or to the circumference of the flywheel. In another example, the pull cable may be wrapped around a circumference of the flywheel so that as the handle of the pull handle is pulled, the flywheel is caused to rotate in a first direction. In other examples, a spring mechanism, a counterweight mechanism, or another type of mechanism causes the flywheel to return to its original orientation in the absence of a force from the user. In these examples, as the user reduces the pull force on the handles, the flywheel may return to its original position, ready to be rotated again in response to a pull force on the handles.


In other examples, the cable may be wrapped in a spool that is connected to the flywheel. In these examples, the spool may share a common rotational axis with the flywheel. The flywheel may rotate with the spool in a first direction when the user is pulling on the pull handle. However, the spool may rotate independent of the flywheel back to its original position as the user returns the pull handle to take up the slack in the cable. The spool may return to its original position due to a counterweight, a spring mechanism, another type of mechanism or combinations thereof. In these examples, the flywheel may remain in the orientation left by the user at the end of the user's pull. In this manner, the flywheel may rotate in just a single direction.


In some examples, the first flywheel and the second flywheel are positioned on the same rotational axle. In this example, the first and second flywheels can be positioned adjacent to one another. The first and second flywheels may be rotationally independent of each other and/or rotationally independent of the common axle. In this manner, the flywheels can rotate without affecting the momentum of the other flywheel. For example, at least one of the flywheels may be connected to the common axle with a rotational bearing that allows the flywheel to rotate independent of the common axle. In examples with a common axle, the common axle may be rotationally fixed with respect to the frame of the exercise machine.


In some cases, the seat track may include a fold joint so that the seat track may be moved upright to save space in a storage mode. The fold joint may occur at an end of the seat track proximate the upright portion of the frame, or the fold joint may be positioned in a mid-region of the seat track.


With the flywheel rotating in just a single direction, a sensor may track the number of revolutions performed by 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. Other sensors can track the magnetic resistance applied to the flywheel's rotation.


The tracked level of resistance and the revolution count can be sent to a processor within the exercise machine or remote of the exercise machine. Based on these inputs, the processor can be cause to determine the amount of calories burned during each pull and/or collectively during the course of the entire workout. Further, the force generated by each pull can be calculated as well. In some examples, a transmitter incorporated into the exercise machine may send the calorie count, the revolution count, a calculated force, a speed, a duration of the exercise, another type of information or combinations thereof to a remote device. This remote device may be a mobile device, a cloud based device, a networked device, another type of device, or combinations thereof. This information may be stored in a database. This database may be accessible to the user through the internet, a profile, a network or combinations thereof.


In some examples, other types of information can be determined using the revolution count. For example, the processor may also determine the expected remaining life of the exercise machine based on use. This number 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 exercise machine, and send a message to the user indicating that maintenance should be performed on the exercise 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 in determining the force exerted by the user during each pull, crank pedal rotation, and/or linkage pedal rotation. 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 burned by the user per pull and/or rotation may be presented to the user in a display incorporated into the exercise machine or the display of a remote device (e.g. mobile device, laptop, etc.). 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.


In some cases, a console is connected to the upright structure. The console may include a display, an input mechanism for controlling various features and/or operational controls of the exercise machine, an energy efficiency indicator, a speaker, a fan, another component of the exercise machine, or combinations thereof.


The console may locate the input mechanism within a convenient reach of the user to control the operating parameters of the exercise machine. For example, the control console may include controls to adjust the strength of the resistance mechanism, adjust a volume of a speaker integrated into the exercise machine, adjust an incline angle of the seat track, select an exercise setting, control a timer, change a view on a display of the control console, monitor the user's heart rate or other physiological parameters during the workout, perform other tasks, or combinations thereof. Buttons, levers, touch screens, voice commands, or other mechanisms may be incorporated into the console incorporated into the exercise machine and can be used to control the capabilities mentioned above. Information relating to these functions may be presented to the user through the display. For example, a calorie count, a timer, a distance, a selected program, an incline angle, a decline angle, a lateral tilt angle, another type of information, or combinations thereof may be presented to the user through the display.


The console assembly may further include a pair of handles that the user may grip during the performance of an exercise. For example, the user may grip the handles attached to the console assembly when the user is in the upright position. A pair of handles incorporated into the seat may be within a convenient arms reach for the user while performing an exercise in the cycling mode. While the examples above have described the handles/arm supports that the user can used during the performance of different exercises in the exercise machine's different exercise modes, the user may grip any of the handles/arm supports within a convenient reach of the user and/or desirable by the user.


In some cases, at least some of the information used to determine the calorie burn is based on a user profile that contains personal information about the user, such as height, weight, age, gender, health conditions, body composition, other types of personal information, or combinations thereof. The personal information may inputted into the console of the exercise machine. In other examples, the console may be in communication with a remote device that contains the user profile. For example, the console may be in wireless communication with a personal computer, a mobile device, a datacenter, a website, a network device, another type of device, or combinations thereof that contain at least one item of personal information about the user.


In some examples, the console may be in communication with a remote device that operates a fitness tracking program. In this example, some of the personal information may be received from the fitness tracking program. Also, in some cases, the console may send information about the user's workout to the fitness tracking program. This workout information may include the type and duration of the exercise, the resistance settings, the estimated number of calories burned, other types of information, or combinations thereof.


While the examples above have been described with reference to specific structures, the exercise machine may include any appropriate type of structure consistent with the principles described herein. For example, the specific linkage connection points and the swing arm arrangements may vary while still providing an exercise machine that includes modes for cycling, elliptical training, and/or rowing. Also, in some examples, the movable linkages are connected to the crank assembly at a different location than the crank arms. Additionally, the movable linkages may be connected to a rear crank mechanism rather than a linear track at the movable linkages' rear ends. Further, the linkage tracks may be located in a different location of the exercise machine than in the exercise machine's base. Further, the seat track may be positioned at any appropriate angle including a downward angle, an upward angle, a level angle, another type of angle, or combinations thereof.

Claims
  • 1. An exercise machine, comprising: a frame;a seat track disposed on the frame;a seat movably attached to the seat track;a first flywheel connected to the frame at a front of the frame;a second flywheel connected to the frame at the front of the frame;a crank assembly in communication with the first flywheel;a first crank pedal connected to the crank assembly;a second crank pedal connected to the crank assembly;a pull cable in communication with the second flywheel;a handle attached to a first cable end of the pull cable;a cable axle in communication with a second cable end of the pull cable;a first linkage pedal;a second linkage pedal;a first swing arm connected to the frame and the first linkage pedal; anda second swing arm connected to the frame and the second linkage pedal.
  • 2. The exercise machine of claim 1, further comprising a first magnetic resistance mechanism associated with the first flywheel, wherein the first magnetic resistance mechanism is configured to resist movement of the first flywheel.
  • 3. The exercise machine of claim 2, further comprising a second magnetic resistance mechanism associated with the second flywheel, wherein the second magnetic resistance mechanism is configured to resist movement of the second flywheel.
  • 4. The exercise machine of claim 1, wherein the crank assembly comprises: a crank axle;a first crank arm connected to a first side of the crank axle;a second crank arm connected to a second side of the crank axle;the first crank pedal connected to the first crank arm; andthe second crank pedal connected to the second crank arm.
  • 5. The exercise machine of claim 4, wherein the crank assembly further comprises a crank wheel connected to the crank axle.
  • 6. The exercise machine of claim 5, further comprising a transmission medium configured to transmit torque from the crank wheel to the first flywheel when the crank axle rotates.
  • 7. The exercise machine of claim 4, wherein the first crank pedal and the second crank pedal travel in a generally circular path when the crank axle rotates.
  • 8. The exercise machine of claim 4, further comprising: a base connected to the frame;a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base; anda second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base.
  • 9. The exercise machine of claim 8, wherein the base comprises: a first linkage track; anda second linkage track aligned with the first linkage track;wherein the first movable linkage connects in the first linkage track, and the second movable linkage connects in the second linkage track.
  • 10. The exercise machine of claim 9, wherein the first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage.
  • 11. The exercise machine of claim 9, wherein the first linkage track and the second linkage track are aligned with the seat track.
  • 12. The exercise machine of claim 8, further comprising: the first linkage pedal connected to a mid-region of the first movable linkage; andthe second linkage pedal connected to a mid-region of the second movable linkage.
  • 13. The exercise machine of claim 12, wherein the first linkage pedal and the second linkage pedal travel in a generally oblong path when the crank axle rotates.
  • 14. The exercise machine of claim 1, further comprising a transmission medium connecting the cable axle to the second flywheel.
  • 15. An exercise machine, comprising: a frame including a housing at one side of the frame;a seat track disposed on the frame;a seat movably attached to the seat track of the frame;a first flywheel connected to the frame and contained within the housing;a second flywheel connected to the frame and contained within the housing;a crank assembly in communication with the first flywheel, the crank assembly including: a crank axle;a first crank arm connected to a first side of the crank axle;a second crank arm connected to a second side of the crank axle;a first crank pedal connected to the first crank arm; anda second crank pedal connected to the second crank arm;a pull cable in communication with the second flywheel;a first swing arm connected to the frame;a second swing arm connected to the frame;a base connected to the frame;a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base;a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base;a first linkage track;a second linkage track aligned with the first linkage track;a handle attached to a first cable end of the pull cable;a cable axle in communication with a second cable end of the pull cable;a first linkage pedal connected to a mid-region of the first movable linkage; anda second linkage pedal connected to a mid-region of the second movable linkage;wherein the first movable linkage connects in the first linkage track, and the second movable linkage connects in the second linkage track;wherein the first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage; andwherein the first linkage track and the second linkage track are aligned with the seat track.
  • 16. The exercise machine of claim 15, wherein the first linkage pedal and the second linkage pedal travel in a generally oblong path when the crank axle rotates.
  • 17. The exercise machine of claim 15, further comprising a transmission medium connecting the cable axle to the second flywheel.
  • 18. An exercise machine, comprising: a frame including an upright portion at a front of the frame and a base;a seat track disposed on the frame and extending horizontally away from the upright portion, wherein a distal end of the seat track is supported by a leg;a seat movably attached to the seat track of the frame;a first flywheel connected to the frame and connected to the upright portion;a second flywheel connected to the frame and connected to the upright portion;a crank assembly in communication with the first flywheel, wherein the crank assembly includes: a crank axle;a first crank arm connected to a first side of the crank axle;a second crank arm connected to a second side of the crank axle;a first crank pedal connected to the first crank arm;a second crank pedal connected to the second crank arm; anda crank transmission medium that transmits torque from the crank assembly to the first flywheel when the crank axle rotates;a pull cable in communication with the second flywheel and supported by the upright portion;a first swing arm connected to the frame;a second swing arm connected to the frame;the base connected to the frame;a first movable linkage pivotally connected to the first side of the crank axle and slidably connected to the base;a second movable linkage pivotally connected to the second side of the crank axle and slidably connected to the base;a first linkage track;a second linkage track aligned with the first linkage track;a first linkage pedal connected to a mid-region of the first movable linkage; anda second linkage pedal connected to a mid-region of the second movable linkage;a handle attached to a first cable end of the pull cable;a cable axle in communication with a second cable end of the pull cable;a pull transmission medium connecting the cable axle to the second flywheel;wherein the first movable linkage connects in the first linkage track, and the second movable linkage connects in the second linkage track;wherein the first swing arm is pivotally connected to the first movable linkage, and the second swing arm is pivotally connected to the second movable linkage; andwherein the first linkage track and the second linkage track are aligned with the seat track; andwherein the first linkage pedal and the second linkage pedal travel in a generally oblong path when the crank axle rotates and the first crank pedal and the second crank pedal travel in a generally circular path when the crank axle rotates.
RELATED APPLICATIONS

This application claims priority to U.S. patent application Ser. No. 62/416,030 titled “Elliptical and Stationary Bicycle Apparatus Including Row Functionality” and filed on 1 Nov. 2016, which application is herein incorporated by reference for all that it discloses.

US Referenced Citations (1918)
Number Name Date Kind
105055 Dulij Jul 1870 A
1015071 Reach Jan 1912 A
1186283 Coddington Jun 1916 A
1205426 Barnhill Nov 1916 A
1577866 Mossberg Mar 1926 A
1969901 Pilates Aug 1934 A
2041445 Warren May 1936 A
2079594 Hall May 1937 A
2145940 Marlowe Feb 1939 A
2209034 Rene Jul 1940 A
2261155 Simon Nov 1941 A
2470544 Bell May 1949 A
2470816 Roosevelt May 1949 A
2544106 Ray Mar 1951 A
2553912 Gervais May 1951 A
2607816 Ryder Aug 1952 A
2642288 Bell Jun 1953 A
2685325 Webster Aug 1954 A
2714507 Goodrich Aug 1955 A
2771968 Mercier Nov 1956 A
2855200 Blickman Oct 1958 A
2924456 Miller Feb 1960 A
2986937 Chapman Jun 1961 A
3008265 Converse Nov 1961 A
3100640 Weitzel Aug 1963 A
3103357 Berne Sep 1963 A
3190675 Tang Jun 1965 A
3205888 Stroop Sep 1965 A
3227447 Baker Jan 1966 A
3312466 Melchiona Apr 1967 A
3316898 Brown May 1967 A
3323366 De Lorme et al. Jun 1967 A
3394934 Petros Jul 1968 A
3414260 Gust Dec 1968 A
3425523 Robinette Feb 1969 A
3430084 Hall Feb 1969 A
3432164 Deeks Mar 1969 A
3446503 Lawton May 1969 A
3465592 Perrine Sep 1969 A
3473843 Hart Oct 1969 A
3501140 Eichorn Mar 1970 A
3506311 Nobach Apr 1970 A
3511500 Dunn May 1970 A
3528653 Stuckenschneider et al. Sep 1970 A
3529474 Olson Sep 1970 A
3563541 Sanquist Feb 1971 A
3572758 Lee Mar 1971 A
3589193 Thornton Jun 1971 A
3621948 Dimick Nov 1971 A
3622179 Pfersick Nov 1971 A
3638941 Kulkens Feb 1972 A
3640530 Henson et al. Feb 1972 A
3647209 La Lanne Mar 1972 A
3664666 Lloyd May 1972 A
3677553 Moore Jul 1972 A
3686776 Dahl Aug 1972 A
3709487 Walker Jan 1973 A
3738661 Moller Jun 1973 A
3756595 Hague Sep 1973 A
3759511 Zinkin Sep 1973 A
3760905 Dower Sep 1973 A
3767195 Dimick Oct 1973 A
3770267 McCarthy Nov 1973 A
3802698 Burian et al. Apr 1974 A
3809393 Jones May 1974 A
3820617 Groff Jun 1974 A
3822599 Brentham Jul 1974 A
3824994 Soderberg, Sr. Jul 1974 A
3833216 Philbin Sep 1974 A
3834696 Spector Sep 1974 A
3851874 Wilkin Dec 1974 A
3858873 Jones Jan 1975 A
3863933 Tredway Feb 1975 A
3874657 Niebojewski Apr 1975 A
3892404 Martucci Jul 1975 A
3895825 Sink Jul 1975 A
3903613 Bisberg Sep 1975 A
3941377 Lie Mar 1976 A
3957266 Rice May 1976 A
3966201 Mester Jun 1976 A
3967503 Svensson Jul 1976 A
3970302 McFee Jul 1976 A
3976058 Tidwell Aug 1976 A
3990136 Hishida Nov 1976 A
3998454 Jones Dec 1976 A
4007927 Proctor Feb 1977 A
4020795 Marks May 1977 A
4023466 Strassheimer May 1977 A
4026545 Schonenberger May 1977 A
4027881 Hufenus Jun 1977 A
4043552 Kerkonian Aug 1977 A
4045096 Lidov Aug 1977 A
4049262 Cunningham, Jr. Sep 1977 A
4072309 Wilson Feb 1978 A
4077278 Combastet Mar 1978 A
4082267 Flavell Apr 1978 A
4093196 Bauer Jun 1978 A
4101124 Mahnke Jul 1978 A
4101143 Sieber Jul 1978 A
4114873 Jones Sep 1978 A
4131266 Carter Dec 1978 A
4138286 Chevrolat et al. Feb 1979 A
4140312 Buchmann Feb 1979 A
4148478 Moyski et al. Apr 1979 A
4151988 Nabinger May 1979 A
4157179 Ecklor, Jr. Jun 1979 A
4170351 Ozbey Oct 1979 A
4171805 Abbott Oct 1979 A
4176836 Coyle Dec 1979 A
4179121 Kelmanski Dec 1979 A
4188030 Hooper Feb 1980 A
4208921 Keyes Jun 1980 A
4222376 Praprotnik Sep 1980 A
4235437 Ruis et al. Nov 1980 A
4240627 Brentham Dec 1980 A
4258913 Brentham Mar 1981 A
4274631 Hayazaki Jun 1981 A
4278095 Lapeyre Jul 1981 A
4278249 Forrest Jul 1981 A
4286696 Szymski et al. Sep 1981 A
4290601 Mittelstadt Sep 1981 A
4291872 Brilando et al. Sep 1981 A
4300760 Bobroff Nov 1981 A
4302008 Lard Nov 1981 A
4316609 Silberman Feb 1982 A
4319747 Rogers Mar 1982 A
4340214 Schuetzer Jul 1982 A
4354675 Barclay et al. Oct 1982 A
4369966 Silberman et al. Jan 1983 A
4390177 Biran et al. Jun 1983 A
4411342 Katsumori et al. Oct 1983 A
4417574 Talonn et al. Nov 1983 A
4421307 Cunnington et al. Dec 1983 A
4452448 Ausherman Jun 1984 A
4462252 Smidt et al. Jul 1984 A
4477071 Brown et al. Oct 1984 A
4480832 Bulmash Nov 1984 A
4492375 Connelly Jan 1985 A
4496147 DeCloux et al. Jan 1985 A
4503925 Palmer et al. Mar 1985 A
4505473 Pro Mar 1985 A
4507120 Paradis Mar 1985 A
4509742 Cones Apr 1985 A
4511137 Jones Apr 1985 A
4512566 Bicocchi Apr 1985 A
4512567 Phillips Apr 1985 A
4519604 Arzounian May 1985 A
4521013 Dofel Jun 1985 A
4531729 Wrinkle Jul 1985 A
4531731 Law Jul 1985 A
4533136 Smith et al. Aug 1985 A
4549733 Salyer Oct 1985 A
4558696 Eiserman Dec 1985 A
4563001 Terauds Jan 1986 A
4564193 Stewart Jan 1986 A
4566692 Brentham Jan 1986 A
4571682 Silverman et al. Feb 1986 A
4572500 Weiss Feb 1986 A
4577860 Matias et al. Mar 1986 A
4582320 Shaw Apr 1986 A
4588232 Kim et al. May 1986 A
4589656 Baldwin May 1986 A
4600187 Schenker Jul 1986 A
4600188 Bangerter et al. Jul 1986 A
4600196 Jones Jul 1986 A
4602781 La Marsh et al. Jul 1986 A
4605220 Troxel Aug 1986 A
4607841 Gala Aug 1986 A
4609190 Brentham Sep 1986 A
4611807 Castillo Sep 1986 A
4618144 Gibson Oct 1986 A
4621623 Wang Nov 1986 A
4625962 Street Dec 1986 A
4627619 Rockwell et al. Dec 1986 A
4630817 Buckley Dec 1986 A
4632385 Geraci Dec 1986 A
4632386 Beech Dec 1986 A
4632393 Van Noord Dec 1986 A
4634121 Sasaki Jan 1987 A
4634127 Rockwell Jan 1987 A
4637605 Ritchie Jan 1987 A
4641833 Trethewey Feb 1987 A
4642769 Petrofsky Feb 1987 A
4645197 Mcfee Feb 1987 A
4645199 Bloemendaal Feb 1987 A
4645200 Hix Feb 1987 A
4655447 Dubrinsky et al. Apr 1987 A
4659074 Taitel et al. Apr 1987 A
4659077 Stropkay Apr 1987 A
4664371 Viander May 1987 A
4664373 Hait May 1987 A
4674740 Iams et al. Jun 1987 A
4674743 Hirano Jun 1987 A
4679787 Guilbault Jul 1987 A
4684126 Dalebout et al. Aug 1987 A
4685669 Decloux Aug 1987 A
4685670 Zinkin Aug 1987 A
4690398 Smith Sep 1987 A
4690406 Hufenus Sep 1987 A
4700962 Salmon Oct 1987 A
4702475 Elstein et al. Oct 1987 A
4705028 Melby Nov 1987 A
4705269 DeBoer et al. Nov 1987 A
4708338 Potts Nov 1987 A
4709917 Yang Dec 1987 A
4711447 Mansfield Dec 1987 A
4712790 Szymski Dec 1987 A
4720093 Del Mar Jan 1988 A
4720099 Carlson Jan 1988 A
4720789 Hector et al. Jan 1988 A
4723786 Buchanan Feb 1988 A
4726582 Fulks Feb 1988 A
4729562 Pipasik Mar 1988 A
4733858 Lan Mar 1988 A
4733860 Steffee Mar 1988 A
4736944 Johnson et al. Apr 1988 A
4741578 Viellard May 1988 A
4743009 Beale May 1988 A
4746112 Fayal May 1988 A
4746115 Lahman May 1988 A
4750735 Furgerson et al. Jun 1988 A
4750736 Watterson Jun 1988 A
4762317 Camfield et al. Aug 1988 A
4786069 Tang Nov 1988 A
4796881 Watterson Jan 1989 A
4809976 Berger Mar 1989 A
4813667 Watterson Mar 1989 A
4818234 Redington Apr 1989 A
4819935 Dirksing Apr 1989 A
4824102 Lo Apr 1989 A
4824104 Bloch Apr 1989 A
4824132 Moore Apr 1989 A
4826150 Minoura May 1989 A
4826152 Lo May 1989 A
4828257 Dyer et al. May 1989 A
4830362 Bull May 1989 A
4830363 Kennedy May 1989 A
4836543 Holzer Jun 1989 A
4838542 Wilkinson Jun 1989 A
4838543 Armstrong et al. Jun 1989 A
4842268 Jenkins Jun 1989 A
4844450 Rodgers, Jr. Jul 1989 A
4844456 Habing et al. Jul 1989 A
4850585 Dalebout Jul 1989 A
4852874 Sleichter, III et al. Aug 1989 A
4854578 Fulks Aug 1989 A
4867153 Lorenzen et al. Sep 1989 A
4867443 Jensen Sep 1989 A
4869494 Lambert, Sr. Sep 1989 A
4872668 McGillis et al. Oct 1989 A
4880225 Lucas et al. Nov 1989 A
4880230 Cook Nov 1989 A
4887967 Letovsky et al. Dec 1989 A
4898379 Shiba Feb 1990 A
4900013 Rodgers, Jr. Feb 1990 A
4900017 Bold, Jr. Feb 1990 A
4907798 Burchatz Mar 1990 A
4913396 Dalebout et al. Apr 1990 A
4917376 Lo Apr 1990 A
4917377 Chen Apr 1990 A
4919418 Miller Apr 1990 A
4921242 Watterson May 1990 A
4923193 Pitzen et al. May 1990 A
4925183 Kim May 1990 A
4927136 Leask May 1990 A
4929022 Geraci May 1990 A
4932651 Defaux Jun 1990 A
4938474 Sweeney et al. Jul 1990 A
4938475 Sargeant Jul 1990 A
4938477 Kuervers Jul 1990 A
4940233 Bull Jul 1990 A
4944518 Flynn Jul 1990 A
4949951 Deola Aug 1990 A
4949954 Hix Aug 1990 A
4949993 Stark et al. Aug 1990 A
4953855 Shields Sep 1990 A
4958832 Kim Sep 1990 A
4961569 Roberge Oct 1990 A
4962925 Chang Oct 1990 A
4968028 Wehrell Nov 1990 A
4971316 Dalebout et al. Nov 1990 A
4974831 Dunham Dec 1990 A
4977794 Metcalf Dec 1990 A
4981199 Tsai Jan 1991 A
4981294 Dalebout et al. Jan 1991 A
4984801 Deback Jan 1991 A
4986261 Iams et al. Jan 1991 A
4989858 Young et al. Feb 1991 A
5000440 Lynch Mar 1991 A
5000443 Dalebout et al. Mar 1991 A
5000444 Dalebout et al. Mar 1991 A
5002271 Gonzales Mar 1991 A
5004224 Wang Apr 1991 A
5004229 Lind Apr 1991 A
5007632 Wilkinson Apr 1991 A
5013031 Bull May 1991 A
5016870 Bulloch May 1991 A
5031901 Tunturipyora Jul 1991 A
5035418 Harabayashi Jul 1991 A
RE33662 Blair et al. Aug 1991 E
5037090 Fitzpatrick Aug 1991 A
5039088 Shifferaw Aug 1991 A
5040786 Jou Aug 1991 A
5044614 Rau Sep 1991 A
5048824 Chen Sep 1991 A
5048891 Yach Sep 1991 A
5050877 Wales Sep 1991 A
5056779 Webb Oct 1991 A
5058882 Dalebout et al. Oct 1991 A
5058888 Walker et al. Oct 1991 A
5058912 Harroun Oct 1991 A
5062627 Bingham Nov 1991 A
5071115 Welch Dec 1991 A
5072929 Peterson et al. Dec 1991 A
5078152 Bond et al. Jan 1992 A
5078389 Chen Jan 1992 A
5081991 Chance Jan 1992 A
5086385 Launey et al. Feb 1992 A
5087031 Hoff Feb 1992 A
5089960 Sweeney, Jr. Feb 1992 A
5090694 Pauls et al. Feb 1992 A
5094449 Stearns Mar 1992 A
5104119 Lynch Apr 1992 A
5104120 Watterson et al. Apr 1992 A
5108093 Watterson Apr 1992 A
5110117 Fisher et al. May 1992 A
5113427 Ryoichi et al. May 1992 A
5114388 Trulaske May 1992 A
5114391 Pitzen et al. May 1992 A
5129450 Hung Jul 1992 A
5129872 Dalton et al. Jul 1992 A
5129873 Henderson et al. Jul 1992 A
5131895 Rogers, Jr. Jul 1992 A
5135216 Bingham et al. Aug 1992 A
5135447 Robards, Jr. et al. Aug 1992 A
5137501 Mertesdorf Aug 1992 A
5139255 Sollami Aug 1992 A
5139261 Openiano Aug 1992 A
5139469 Hennessey et al. Aug 1992 A
5145479 Olschansky et al. Sep 1992 A
5147265 Pauls et al. Sep 1992 A
5149312 Croft et al. Sep 1992 A
5156650 Bals Oct 1992 A
5161652 Suzuki Nov 1992 A
5162029 Schine Nov 1992 A
5163888 Stearns Nov 1992 A
5167596 Ferber Dec 1992 A
5171196 Lynch Dec 1992 A
5178394 Tanampai Jan 1993 A
5178589 Wilson Jan 1993 A
5178593 Roberts Jan 1993 A
5178599 Scott Jan 1993 A
5179792 Brantingham Jan 1993 A
5180347 Chen Jan 1993 A
5180351 Ehrenfried Jan 1993 A
5180353 Snyderman Jan 1993 A
5183448 Wang Feb 1993 A
5183449 Decloux Feb 1993 A
5188577 Young Feb 1993 A
5190505 Dalebout et al. Mar 1993 A
5195664 Rhea Mar 1993 A
5195935 Fencel Mar 1993 A
5195937 Engel et al. Mar 1993 A
5199931 Easley et al. Apr 1993 A
5201333 Shalmon et al. Apr 1993 A
5201772 Maxwell Apr 1993 A
5205800 Grant Apr 1993 A
5209481 Deback May 1993 A
5209715 Walker et al. May 1993 A
5213555 Hood May 1993 A
5217422 Domzalski Jun 1993 A
5217486 Rice et al. Jun 1993 A
5222928 Yacullo Jun 1993 A
5224909 Hamilton Jul 1993 A
5226866 Engel et al. Jul 1993 A
5230672 Brown et al. Jul 1993 A
5230676 Terauds Jul 1993 A
5234392 Clark Aug 1993 A
5236407 Wang Aug 1993 A
5240417 Smithson et al. Aug 1993 A
5244444 Wostry Sep 1993 A
5250013 Brangi Oct 1993 A
5254059 Arthur et al. Oct 1993 A
5254063 House, Jr. Oct 1993 A
5254067 Habing et al. Oct 1993 A
5256117 Potts et al. Oct 1993 A
5256118 Chen Oct 1993 A
5261864 Fitzpatrick Nov 1993 A
5261867 Chen Nov 1993 A
5263910 Yang Nov 1993 A
5263914 Simonson et al. Nov 1993 A
5267922 Robinson Dec 1993 A
5267930 Henes Dec 1993 A
5277677 Terauds Jan 1994 A
5277678 Friedebach et al. Jan 1994 A
5277681 Holt Jan 1994 A
5277683 Wilkins Jan 1994 A
5279529 Eschenbach Jan 1994 A
5279531 Ju Jan 1994 A
5282776 Dalebout Feb 1994 A
5284458 Perry et al. Feb 1994 A
5284460 Miller et al. Feb 1994 A
5290204 Lee Mar 1994 A
5290205 Densmore et al. Mar 1994 A
5290211 Stearns Mar 1994 A
5290212 Metcalf Mar 1994 A
5290214 Chen Mar 1994 A
5292293 Schumacher Mar 1994 A
5295928 Rennex Mar 1994 A
5295931 Dreibelbis et al. Mar 1994 A
5299810 Pierce et al. Apr 1994 A
5299994 Chen Apr 1994 A
5299997 Chen Apr 1994 A
5302161 Loubert et al. Apr 1994 A
5306218 Huang Chen Apr 1994 A
5308296 Eckstein May 1994 A
5316534 Dalebout et al. May 1994 A
5318490 Henderson et al. Jun 1994 A
5320588 Wanzer et al. Jun 1994 A
5322491 Wanzer et al. Jun 1994 A
5324060 Van Vooren et al. Jun 1994 A
5324242 Lo Jun 1994 A
5328420 Allen Jul 1994 A
5328421 Stanalajczo Jul 1994 A
5330404 Lopeteguy et al. Jul 1994 A
5334118 Dantolan Aug 1994 A
5336141 Vittone Aug 1994 A
5336142 Dalebout et al. Aug 1994 A
5338277 Yang Aug 1994 A
5342269 Huang Aug 1994 A
RE34728 Hall-Tipping Sep 1994 E
5346445 Chang Sep 1994 A
5352167 Ulicny Oct 1994 A
5352169 Eschenbach Oct 1994 A
5354248 Rawls et al. Oct 1994 A
5356357 Wang et al. Oct 1994 A
5358461 Bailey, Jr. Oct 1994 A
5362069 Hall-Tipping Nov 1994 A
5366428 Liao Nov 1994 A
5370592 Chang Dec 1994 A
5370594 Grinblat Dec 1994 A
5372564 Spirito Dec 1994 A
5374227 Webb Dec 1994 A
5382209 Pasier Jan 1995 A
5383715 Homma et al. Jan 1995 A
5383829 Miller Jan 1995 A
5385519 Hsu Jan 1995 A
5385520 Lepine et al. Jan 1995 A
5387164 Brown, Jr. Feb 1995 A
5391130 Green Feb 1995 A
5399133 Haber et al. Mar 1995 A
5401226 Stearns Mar 1995 A
5403252 Leon et al. Apr 1995 A
5403254 Lundin et al. Apr 1995 A
5403255 Johnston Apr 1995 A
5407402 Brown et al. Apr 1995 A
5407409 Tang Apr 1995 A
5409435 Daniels Apr 1995 A
5410471 Alyfuku et al. Apr 1995 A
5410472 Anderson Apr 1995 A
5415607 Carpenter May 1995 A
5417643 Taylor May 1995 A
5419619 Lew May 1995 A
5419747 Piaget May 1995 A
5419751 Byrd et al. May 1995 A
5421795 Chen Jun 1995 A
5423728 Goldberg Jun 1995 A
5423729 Eschenbach Jun 1995 A
5423731 Chen Jun 1995 A
5429568 Chen Jul 1995 A
5431612 Holden Jul 1995 A
5433687 Hinzman et al. Jul 1995 A
5435798 Habing et al. Jul 1995 A
5435799 Lundin Jul 1995 A
5435801 Hung Jul 1995 A
5439225 Gvoich et al. Aug 1995 A
5443434 Buchanan et al. Aug 1995 A
5443435 Wilkinson Aug 1995 A
5451070 Lindsay Sep 1995 A
5453065 Lien et al. Sep 1995 A
5453066 Richter, Jr. Sep 1995 A
5454550 Christopherson Oct 1995 A
5454773 Blanchard et al. Oct 1995 A
5456644 Hecox et al. Oct 1995 A
5458553 Wu Oct 1995 A
5460378 Getts Oct 1995 A
5464378 Lee Nov 1995 A
5466200 Ulrich et al. Nov 1995 A
5472392 Haan et al. Dec 1995 A
5478298 Chen Dec 1995 A
5484151 Tholkes Jan 1996 A
5484363 Creelman Jan 1996 A
5484389 Stark Jan 1996 A
5486150 Randolph Jan 1996 A
5489249 Brewer et al. Feb 1996 A
5490825 Wilkinson Feb 1996 A
5492520 Brown Feb 1996 A
5496235 Stevens Mar 1996 A
5499956 Habing et al. Mar 1996 A
5499958 Hess Mar 1996 A
5503043 Freudenberg Apr 1996 A
5503608 Chang Apr 1996 A
5505678 Johnston Apr 1996 A
5507709 Wu Apr 1996 A
5507710 Chen Apr 1996 A
5509879 Lanzagorta Apr 1996 A
5512025 Dalebout et al. Apr 1996 A
5512029 Barnard Apr 1996 A
5513586 Neely et al. May 1996 A
5518470 Piaget et al. May 1996 A
5518473 Miller May 1996 A
5518481 Darkwah May 1996 A
5520599 Chen May 1996 A
5527243 Chen Jun 1996 A
5527245 Dalebout et al. Jun 1996 A
5527246 Rodgers, Jr. Jun 1996 A
5527249 Harris Jun 1996 A
5529555 Rodgers, Jr. Jun 1996 A
5531658 L. S. C. Jul 1996 A
5533951 Chang Jul 1996 A
5536225 Neuberg et al. Jul 1996 A
5538299 Nemeckay Jul 1996 A
5540637 Rodgers, Jr. Jul 1996 A
5542503 Dunn et al. Aug 1996 A
5545114 Gvoich Aug 1996 A
5549526 Rodgers, Jr. Aug 1996 A
5554089 Jones Sep 1996 A
5562574 Miller Oct 1996 A
5562577 Nichols, Sr. et al. Oct 1996 A
5573480 Rodgers, Jr. Nov 1996 A
5575745 Lin Nov 1996 A
5577985 Miller Nov 1996 A
5580249 Jacobsen et al. Dec 1996 A
5580340 Yu Dec 1996 A
5584700 Feldman et al. Dec 1996 A
5584779 Knecht Dec 1996 A
5584780 Lin Dec 1996 A
5584781 Chen Dec 1996 A
5586957 Wilkinson Dec 1996 A
5586961 Quint Dec 1996 A
5591104 Andrus et al. Jan 1997 A
5591105 Dalebout et al. Jan 1997 A
5591107 Rodgers, Jr. Jan 1997 A
5593371 Rodgers, Jr. Jan 1997 A
5593372 Rodgers, Jr. Jan 1997 A
5595553 Rodgers, Jr. Jan 1997 A
5595554 Maresh Jan 1997 A
5595556 Dalebout et al. Jan 1997 A
5598849 Browne Feb 1997 A
5599261 Easley et al. Feb 1997 A
5600310 Whipple, III et al. Feb 1997 A
5601301 Liu Feb 1997 A
5603281 Harvey et al. Feb 1997 A
5603675 Wu Feb 1997 A
5605149 Warters Feb 1997 A
5605336 Gaoiran Feb 1997 A
5605521 Hsieh Feb 1997 A
5611756 Miller Mar 1997 A
5611757 Rodgers, Jr. Mar 1997 A
5611758 Rodgers, Jr. Mar 1997 A
5616103 Lee Apr 1997 A
5619412 Hapka Apr 1997 A
5619991 Sloane Apr 1997 A
5620400 Foster Apr 1997 A
5622527 Watterson et al. Apr 1997 A
5624353 Naidus Apr 1997 A
5626401 Terry, Sr. et al. May 1997 A
5626542 Dalebout et al. May 1997 A
5628713 Wilkinson May 1997 A
5632711 Hwang May 1997 A
5643147 Huang Jul 1997 A
5643162 Landers et al. Jul 1997 A
5651754 Chen Jul 1997 A
5653662 Rodgers, Jr. Aug 1997 A
5656001 Baatz Aug 1997 A
5660167 Ryder Aug 1997 A
5662555 Cloutier Sep 1997 A
5662556 Gangloff Sep 1997 A
5665031 Hsieh Sep 1997 A
5665032 Chen Sep 1997 A
5665033 Palmer Sep 1997 A
5667459 Su Sep 1997 A
5667464 Simonson Sep 1997 A
5669624 Eichhorn Sep 1997 A
5669833 Stone Sep 1997 A
5669865 Gordon Sep 1997 A
5672140 Watterson et al. Sep 1997 A
5672142 Wu Sep 1997 A
5674161 Lin Oct 1997 A
5674165 Cohen et al. Oct 1997 A
5679100 Charnitski Oct 1997 A
5681250 Hoover et al. Oct 1997 A
5685804 Whan-Tong et al. Nov 1997 A
5690582 Ulrich et al. Nov 1997 A
5690589 Rodgers, Jr. Nov 1997 A
5692994 Eschenbach Dec 1997 A
5695434 Dalebout et al. Dec 1997 A
5695435 Dalebout et al. Dec 1997 A
5702334 Lee Dec 1997 A
5704875 Tanabe Jan 1998 A
5707320 Yu Jan 1998 A
5707321 Maresh Jan 1998 A
5707322 Dreissigacker et al. Jan 1998 A
5708355 Schrey Jan 1998 A
5709631 Kleinsasser Jan 1998 A
5709632 Socwell Jan 1998 A
5709633 Sokol Jan 1998 A
5711749 Miller Jan 1998 A
5716308 Lee Feb 1998 A
5718660 Chen Feb 1998 A
5720698 Dalebout et al. Feb 1998 A
5720771 Snell Feb 1998 A
5722418 Bro Mar 1998 A
5722917 Olschansky et al. Mar 1998 A
5722918 Lee Mar 1998 A
5722921 Simonson Mar 1998 A
5722922 Watterson et al. Mar 1998 A
5725457 Maresh Mar 1998 A
5733227 Lee Mar 1998 A
5733229 Dalebout et al. Mar 1998 A
5733233 Webber Mar 1998 A
5735773 Vittone Apr 1998 A
5735774 Maresh Apr 1998 A
5738611 Ehrenfried Apr 1998 A
5738612 Tsuda Apr 1998 A
5738614 Rodgers, Jr. Apr 1998 A
5741205 Doll et al. Apr 1998 A
5743830 Ho Apr 1998 A
5743832 Sands et al. Apr 1998 A
5743833 Watterson et al. Apr 1998 A
5743834 Rodgers, Jr. Apr 1998 A
5746681 Bull May 1998 A
5746683 Lee May 1998 A
5746688 Prager May 1998 A
5749807 Webb May 1998 A
5749809 Lin May 1998 A
5752897 Skowronski et al. May 1998 A
5755642 Miller May 1998 A
5755643 Sands May 1998 A
5755651 Homyonfer May 1998 A
5759136 Chen Jun 1998 A
5762587 Dalebout et al. Jun 1998 A
5762588 Chen Jun 1998 A
5766113 Rodgers, Jr. Jun 1998 A
5769757 Fulks Jun 1998 A
5769760 Lin Jun 1998 A
5769766 Huang Jun 1998 A
5772522 Nesbit Jun 1998 A
5776006 Gruber Jul 1998 A
5779598 Lee Jul 1998 A
5779599 Chen Jul 1998 A
5779607 Harris Jul 1998 A
5782639 Beal Jul 1998 A
5782722 Sands Jul 1998 A
5785630 Bobick et al. Jul 1998 A
5788608 Wilkinson Aug 1998 A
5788609 Miller Aug 1998 A
5788610 Eschenbach Aug 1998 A
5788617 Paris Aug 1998 A
5792026 Maresh Aug 1998 A
5792027 Gvoich Aug 1998 A
5792028 Jarvie Aug 1998 A
5792029 Gordon Aug 1998 A
5795268 Husted Aug 1998 A
5800323 Ansel Sep 1998 A
5803871 Stearns et al. Sep 1998 A
5810696 Webb Sep 1998 A
5813949 Rodgers, Jr. Sep 1998 A
5823917 Chen Oct 1998 A
5826575 Lall Oct 1998 A
5826898 Fortier et al. Oct 1998 A
5827158 Drecksel Oct 1998 A
5830107 Brigliadoro Nov 1998 A
5830113 Coody et al. Nov 1998 A
5830114 Halfen et al. Nov 1998 A
5833582 Chen Nov 1998 A
5833583 Chuang Nov 1998 A
5833584 Piaget et al. Nov 1998 A
5836854 Kuo Nov 1998 A
5836855 Eschenbach Nov 1998 A
5836856 Mattoo Nov 1998 A
5836858 Sharff Nov 1998 A
5839990 Virkkala Nov 1998 A
5846166 Kuo Dec 1998 A
5848954 Stearns et al. Dec 1998 A
5855538 Argabright Jan 1999 A
5857939 Kaufman Jan 1999 A
5857941 Maresh Jan 1999 A
5860893 Watterson et al. Jan 1999 A
5860895 Lee Jan 1999 A
5862892 Conley Jan 1999 A
5865711 Chen Feb 1999 A
5865714 Marlowe Feb 1999 A
5865733 Malinouskas et al. Feb 1999 A
5868108 Schmitz et al. Feb 1999 A
5868333 Nayak Feb 1999 A
5871421 Trulaske et al. Feb 1999 A
5871425 Gvoich Feb 1999 A
5873369 Laniado et al. Feb 1999 A
5873608 Tharp Feb 1999 A
5876307 Stearns Mar 1999 A
5876308 Jarvie Mar 1999 A
5878479 Dickerson et al. Mar 1999 A
5879271 Stearns et al. Mar 1999 A
5880677 Lestician Mar 1999 A
5884735 Eckel et al. Mar 1999 A
5888172 Andrus et al. Mar 1999 A
5890906 Macri Apr 1999 A
5890995 Bobick et al. Apr 1999 A
5890997 Roth Apr 1999 A
5891003 Deac et al. Apr 1999 A
5893820 Maresh et al. Apr 1999 A
5895339 Maresh Apr 1999 A
5897460 McBride et al. Apr 1999 A
5899834 Dalebout et al. May 1999 A
5904636 Chen May 1999 A
5904637 Kuo May 1999 A
5904641 Huang May 1999 A
5910072 Rawls et al. Jun 1999 A
5911649 Miller Jun 1999 A
5913751 Eschenbach Jun 1999 A
5913752 Bolf Jun 1999 A
5916063 Alessandri Jun 1999 A
5916065 McBride et al. Jun 1999 A
5916069 Wang Jun 1999 A
5917692 Schmitz et al. Jun 1999 A
5919118 Stearns Jul 1999 A
5919174 Hanson Jul 1999 A
5921894 Eschenbach Jul 1999 A
5921896 Boland Jul 1999 A
5924962 Rodgers, Jr. Jul 1999 A
5924963 Maresh Jul 1999 A
5938551 Warner Aug 1999 A
5938568 Maresh Aug 1999 A
5938571 Stevens Aug 1999 A
5944638 Maresh Aug 1999 A
5947824 Minami et al. Sep 1999 A
5947869 Shea Sep 1999 A
5947872 Ryan et al. Sep 1999 A
5951449 Oppriecht Sep 1999 A
5957814 Eschenbach Sep 1999 A
5961423 Sellers Oct 1999 A
5961430 Zuckerman et al. Oct 1999 A
5964684 Sokol Oct 1999 A
5967944 Vittone et al. Oct 1999 A
5971902 Robertson et al. Oct 1999 A
5984839 Corkum Nov 1999 A
5989159 Chen Nov 1999 A
5989161 Wang et al. Nov 1999 A
5989163 Rodgers, Jr. Nov 1999 A
5991143 Wright et al. Nov 1999 A
5993358 Gureghian et al. Nov 1999 A
5993359 Eschenbach Nov 1999 A
5997445 Maresh Dec 1999 A
5997446 Stearns Dec 1999 A
6001046 Chang Dec 1999 A
6003481 Pischinger et al. Dec 1999 A
6004244 Simonson Dec 1999 A
6007462 Chen Dec 1999 A
6010451 Clawson Jan 2000 A
6013007 Root et al. Jan 2000 A
6013011 Moore et al. Jan 2000 A
6014432 Modney Jan 2000 A
6014913 Masahiro Jan 2000 A
6017294 Eschenbach Jan 2000 A
6017295 Eschenbach Jan 2000 A
6019710 Dalebout et al. Feb 2000 A
6022296 Yu Feb 2000 A
6024676 Eschenbach Feb 2000 A
6027430 Stearns et al. Feb 2000 A
6027431 Stearns Feb 2000 A
6030319 Wu Feb 2000 A
6030320 Stearns Feb 2000 A
6033344 Trulaske et al. Mar 2000 A
6036622 Gordon Mar 2000 A
6039676 Clive Mar 2000 A
6042510 Miller Mar 2000 A
6042512 Eschenbach Mar 2000 A
6042519 Shea Mar 2000 A
6045487 Miller Apr 2000 A
6045488 Eschenbach Apr 2000 A
6050822 Faughn Apr 2000 A
6050920 Ehrenfried Apr 2000 A
6050924 Shea Apr 2000 A
6050942 Rust et al. Apr 2000 A
6053737 Babbitt et al. Apr 2000 A
6053844 Clem Apr 2000 A
6053847 Stearns et al. Apr 2000 A
6053848 Eschenbach Apr 2000 A
6056678 Giannelli et al. May 2000 A
6063008 McBride May 2000 A
6063009 Stearns May 2000 A
6063013 Vathappallil May 2000 A
6071215 Raffo Jun 2000 A
6074328 Johnson Jun 2000 A
6075525 Hsieh Jun 2000 A
6077196 Eschenbach Jun 2000 A
6077198 Eschenbach Jun 2000 A
6077202 Gray Jun 2000 A
6090013 Eschenbach Jul 2000 A
6090014 Eschenbach Jul 2000 A
6092822 Salmon Jul 2000 A
6099439 Ryan et al. Aug 2000 A
6102832 Tani Aug 2000 A
6106439 Boland Aug 2000 A
6106441 Chen Aug 2000 A
6110076 Hurt Aug 2000 A
6113518 Maresh Sep 2000 A
6117055 Boland Sep 2000 A
6120385 Nemeckay Sep 2000 A
6120421 Kuo Sep 2000 A
6123649 Lee Sep 2000 A
6123650 Birrell Sep 2000 A
6126573 Eschenbach Oct 2000 A
6126574 Stearns et al. Oct 2000 A
6135923 Stearns Oct 2000 A
6135926 Lee Oct 2000 A
6135927 Lo Oct 2000 A
6142870 Wada et al. Nov 2000 A
6142913 Ewert Nov 2000 A
6146313 Whan-Tong et al. Nov 2000 A
6146314 Lee Nov 2000 A
6149551 Pyles et al. Nov 2000 A
6149552 Chen Nov 2000 A
6152856 Studor et al. Nov 2000 A
6152859 Stearns Nov 2000 A
6152866 Kuo Nov 2000 A
6162153 Perez, Jr. Dec 2000 A
6164423 Dickerson Dec 2000 A
6165107 Birrell Dec 2000 A
6168552 Eschenbach Jan 2001 B1
6171186 Kurosawa et al. Jan 2001 B1
6171216 Wang Jan 2001 B1
6171217 Cutler Jan 2001 B1
6176814 Ryan et al. Jan 2001 B1
6182531 Gallagher et al. Feb 2001 B1
6183397 Stearns et al. Feb 2001 B1
6183398 Rufino et al. Feb 2001 B1
6186290 Carlson Feb 2001 B1
6186926 Ellis Feb 2001 B1
6190289 Pyles et al. Feb 2001 B1
6193631 Hickman Feb 2001 B1
6196948 Stearns Mar 2001 B1
6196954 Chen Mar 2001 B1
6206804 Maresh Mar 2001 B1
6206806 Chu Mar 2001 B1
6210305 Eschenbach Apr 2001 B1
6211451 Tohgi et al. Apr 2001 B1
6213962 Shimizu Apr 2001 B1
6217483 Kallassy Apr 2001 B1
6217486 Rosenow Apr 2001 B1
6220990 Crivello Apr 2001 B1
6220991 Sellers Apr 2001 B1
6224080 Ross May 2001 B1
6227200 Crump et al. May 2001 B1
6230047 McHugh May 2001 B1
6234935 Chu May 2001 B1
6234938 Chen May 2001 B1
6238321 Arnold et al. May 2001 B1
6244988 Delman Jun 2001 B1
6244992 James Jun 2001 B1
6248044 Stearns et al. Jun 2001 B1
6248045 Stearns et al. Jun 2001 B1
6251047 Stearns et al. Jun 2001 B1
6251048 Kaufman Jun 2001 B1
6254514 Maresh et al. Jul 2001 B1
6254516 Giannelli et al. Jul 2001 B1
6261209 Coody Jul 2001 B1
6264588 Ellis Jul 2001 B1
6273843 Lo Aug 2001 B1
6277055 Birrell et al. Aug 2001 B1
6280361 Harvey et al. Aug 2001 B1
6280362 Dalebout et al. Aug 2001 B1
6287239 Hernandez Sep 2001 B1
6302830 Stearns Oct 2001 B1
6302833 Ellis et al. Oct 2001 B1
6311999 Kueschall Nov 2001 B1
6312363 Watterson et al. Nov 2001 B1
6315702 Ikonomopoulos Nov 2001 B1
6328325 Greenwood Dec 2001 B1
6338698 Stearns et al. Jan 2002 B1
6340340 Stearns Jan 2002 B1
6356856 Damen et al. Mar 2002 B1
6358187 Smith Mar 2002 B1
6361477 Kolda Mar 2002 B1
6368252 Stearns Apr 2002 B1
6368254 Wall Apr 2002 B1
6371850 Sonoda Apr 2002 B1
6371895 Endelman et al. Apr 2002 B1
6375580 Schmidt Apr 2002 B1
6379289 Gossie Apr 2002 B1
6387015 Watson May 2002 B1
6390953 Maresh May 2002 B1
6397797 Kolmanovsky et al. Jun 2002 B1
6398695 Miller Jun 2002 B2
6409632 Eschenbach Jun 2002 B1
6416442 Stearns et al. Jul 2002 B1
6419611 Levine et al. Jul 2002 B1
6422957 Winter et al. Jul 2002 B1
6422977 Eschenbach Jul 2002 B1
6428449 Apseloff Aug 2002 B1
6432004 Nemeckay Aug 2002 B1
6436007 Eschenbach Aug 2002 B1
6440042 Eschenbach Aug 2002 B2
6447424 Ashby et al. Sep 2002 B1
6450922 Henderson et al. Sep 2002 B1
6450923 Vatti Sep 2002 B1
6450925 Kuo Sep 2002 B1
6454679 Radow Sep 2002 B1
6454682 Kuo Sep 2002 B1
6458060 Watterson et al. Oct 2002 B1
6461279 Kuo Oct 2002 B1
6468184 Lee Oct 2002 B1
6468188 Koenig Oct 2002 B1
6471622 Hammer et al. Oct 2002 B1
6482130 Pasero et al. Nov 2002 B1
6482139 Haag Nov 2002 B1
6485041 Janssen Nov 2002 B1
6485395 Stearns Nov 2002 B1
6488612 Sechrest et al. Dec 2002 B2
6491609 Webber Dec 2002 B2
6494817 Lake Dec 2002 B2
6497426 Vanpelt Dec 2002 B2
6500096 Farney Dec 2002 B1
6500099 Eschenbach Dec 2002 B1
6500106 Fulks Dec 2002 B1
6503173 Clem Jan 2003 B2
6505503 Teresi et al. Jan 2003 B1
6505845 Fong Jan 2003 B1
6506142 Itoh et al. Jan 2003 B2
6511402 Shu et al. Jan 2003 B2
6513532 Mault et al. Feb 2003 B2
6514180 Rawls Feb 2003 B1
6520891 Stephens, Jr. Feb 2003 B1
6527674 Chem Mar 2003 B1
6527677 Maresh Mar 2003 B2
6527685 Endelman et al. Mar 2003 B2
6530864 Parks Mar 2003 B1
6540646 Stearns Apr 2003 B2
6544146 Stearns et al. Apr 2003 B1
6544147 Wang Apr 2003 B1
6544154 Forcillo Apr 2003 B2
6547701 Eschenbach Apr 2003 B1
6547702 Heidecke Apr 2003 B1
6551217 Kaganovsky Apr 2003 B2
6551218 Goh Apr 2003 B2
6554750 Stearns et al. Apr 2003 B2
6563489 Latypov et al. May 2003 B1
6565486 Stearns May 2003 B2
6569061 Stearns et al. May 2003 B2
6572511 Volpe Jun 2003 B1
6572512 Anderson et al. Jun 2003 B2
6575877 Rufino et al. Jun 2003 B2
6575884 Eazor Jun 2003 B1
6579210 Stearns et al. Jun 2003 B1
6582342 Kaufman Jun 2003 B2
6582343 Lin Jun 2003 B2
6582344 Tang Jun 2003 B2
6585647 Winder Jul 2003 B1
6589139 Butterworth Jul 2003 B1
6592136 Becker et al. Jul 2003 B2
6592502 Phillips Jul 2003 B1
6595905 McBride Jul 2003 B2
6599201 Grant Jul 2003 B1
6604008 Chudley et al. Aug 2003 B2
6605020 Huang Aug 2003 B1
6605024 Stearns Aug 2003 B2
6606994 Clark Aug 2003 B1
6612936 Matias Sep 2003 B1
6620079 Kuo Sep 2003 B2
6620080 Gray Sep 2003 B1
6626802 Rodgers, Jr. Sep 2003 B1
6645125 Stearns et al. Nov 2003 B1
6647826 Okajima et al. Nov 2003 B2
6648353 Cabal Nov 2003 B1
6648798 Yoo Nov 2003 B2
6648801 Stearns et al. Nov 2003 B2
6652426 Carter Nov 2003 B2
6659916 Shea Dec 2003 B1
6659918 Schiessl Dec 2003 B2
6669609 Gerschefske et al. Dec 2003 B2
6672991 O'Malley Jan 2004 B2
6672992 Lo et al. Jan 2004 B1
6672994 Stearns et al. Jan 2004 B1
6675041 Dickinson Jan 2004 B2
6676569 Radow Jan 2004 B1
6679813 Gray Jan 2004 B1
6681728 Haghgooie Jan 2004 B2
6682462 Lee Jan 2004 B1
6685607 Olson Feb 2004 B1
6687535 Hautala et al. Feb 2004 B2
6688624 Christensen et al. Feb 2004 B2
6689020 Stearns Feb 2004 B2
6689057 Shinsel et al. Feb 2004 B1
6692412 Chen et al. Feb 2004 B2
6692414 Gelbart Feb 2004 B1
6692416 Davis Feb 2004 B1
6692417 Burrell Feb 2004 B2
6695694 Ishikawa et al. Feb 2004 B2
6695749 Kuo Feb 2004 B2
6695751 Hsu Feb 2004 B1
6702719 Brown et al. Mar 2004 B1
6702723 Landfair Mar 2004 B2
6709368 Chue Mar 2004 B1
6712737 Nusbaum Mar 2004 B1
6715779 Eschenbach Apr 2004 B2
6716144 Shifferaw Apr 2004 B1
6719665 Lai Apr 2004 B1
6726600 Miller Apr 2004 B2
6726606 Jacobsen Apr 2004 B2
6729342 Serhan May 2004 B2
6730002 Hald et al. May 2004 B2
6739989 Liberatore May 2004 B2
6743153 Watterson et al. Jun 2004 B2
6743155 Pan Jun 2004 B2
6743158 Giannelli et al. Jun 2004 B2
6749540 Pasero et al. Jun 2004 B1
6749546 Yang Jun 2004 B2
6752744 Arnold et al. Jun 2004 B2
6758790 Ellis Jul 2004 B1
6758792 Chang Jul 2004 B1
6761665 Nguyen Jul 2004 B2
6761667 Cutler et al. Jul 2004 B1
6764088 Hung Jul 2004 B2
6764431 Yoss Jul 2004 B2
6770015 Simonson Aug 2004 B2
6773022 Janssen Aug 2004 B2
6781314 Shon et al. Aug 2004 B2
6783481 Stearns Aug 2004 B2
6783482 Oglesby et al. Aug 2004 B2
6786669 Tsui et al. Sep 2004 B2
6786821 Nobe et al. Sep 2004 B2
6786848 Yamashita et al. Sep 2004 B2
6790162 Ellis et al. Sep 2004 B1
6793609 Fan Sep 2004 B1
6796927 Toyama Sep 2004 B2
6796928 Christopher Sep 2004 B1
6811517 Eschenbach Nov 2004 B1
6817968 Galbraith et al. Nov 2004 B2
6821232 Wang Nov 2004 B1
6824502 Huang Nov 2004 B1
6830538 Eschenbach Dec 2004 B2
6830542 Ball Dec 2004 B2
6835166 Stearns et al. Dec 2004 B1
6837503 Chen et al. Jan 2005 B2
6837829 Eschenbach Jan 2005 B2
6840892 Wu Jan 2005 B1
6846272 Rosenow et al. Jan 2005 B2
6849034 Eschenbach Feb 2005 B2
6855093 Anderson et al. Feb 2005 B2
6860836 Wu Mar 2005 B1
6863641 Brown et al. Mar 2005 B1
6865969 Stevens Mar 2005 B2
6875160 Watterson et al. Apr 2005 B2
6878102 Commisso Apr 2005 B1
6881176 Oishi et al. Apr 2005 B2
6884227 Talish Apr 2005 B2
6887190 Azari May 2005 B1
6895834 Baatz May 2005 B1
6902513 Mcclure Jun 2005 B1
6902515 Howell et al. Jun 2005 B2
6908416 Mercado et al. Jun 2005 B2
6908417 Jackson Jun 2005 B2
6910991 Matsumoto Jun 2005 B2
6910992 Arguilez Jun 2005 B2
6916278 Webber Jul 2005 B2
6918859 Yeh Jul 2005 B1
6918860 Nusbaum Jul 2005 B1
6921355 Campanaro et al. Jul 2005 B2
6923749 Smith Aug 2005 B1
6926645 Stearns Aug 2005 B1
6926646 Nguyen Aug 2005 B1
6926647 Johnson Aug 2005 B1
6932308 Talish Aug 2005 B2
6939271 Whan-Tong et al. Sep 2005 B1
6945912 Levi Sep 2005 B2
6945917 Baatz Sep 2005 B1
6949036 Ciesar et al. Sep 2005 B2
6949053 Stearns Sep 2005 B1
6949054 Stearns Sep 2005 B1
6954261 McClurg Oct 2005 B2
6955610 Czaja et al. Oct 2005 B1
6966082 Bloemer et al. Nov 2005 B2
6966872 Eschenbach Nov 2005 B2
6971976 Endelman et al. Dec 2005 B2
6979283 Pan Dec 2005 B2
6981932 Huang et al. Jan 2006 B1
6991586 Lapcevic Jan 2006 B2
6994656 Liao et al. Feb 2006 B2
6994657 Eschenbach Feb 2006 B1
6997852 Watterson et al. Feb 2006 B2
7003122 Chen Feb 2006 B2
7004888 Weng Feb 2006 B1
7008173 Gabrys et al. Mar 2006 B2
7009613 Goden Mar 2006 B2
7011607 Kolda et al. Mar 2006 B2
7022047 Cohen et al. Apr 2006 B2
7022048 Fernandez Apr 2006 B1
7022049 Ryan et al. Apr 2006 B2
7025710 Corbalis et al. Apr 2006 B2
7025711 Eschenbach Apr 2006 B2
7033176 Feldman Apr 2006 B2
7033269 Namba et al. Apr 2006 B2
7033305 Stearns Apr 2006 B1
7033306 Graber Apr 2006 B2
7037241 Kuo May 2006 B2
7041034 Stearns et al. May 2006 B1
7044891 Rivera May 2006 B1
7048640 Light May 2006 B2
7052438 Eschenbach May 2006 B2
7052440 Pyles et al. May 2006 B2
7052444 Webber May 2006 B2
7052446 Morris et al. May 2006 B2
7056224 Keyes Jun 2006 B1
7056265 Shea Jun 2006 B1
7060005 Carlsen et al. Jun 2006 B2
7060006 Watterson et al. Jun 2006 B1
7077420 Santoski Jul 2006 B1
7083546 Zillig Aug 2006 B2
7083549 Fan Aug 2006 B1
7086993 Maresh Aug 2006 B1
7086999 Jeneve et al. Aug 2006 B2
7087001 Ihli Aug 2006 B1
7090622 Hetrick Aug 2006 B2
7090623 Stewart et al. Aug 2006 B2
7094185 Greenland Aug 2006 B2
7097591 Moon Aug 2006 B2
7097592 Wang Aug 2006 B2
7097593 Chang Aug 2006 B2
7097598 Lee Aug 2006 B2
7097600 Gray Aug 2006 B2
7101330 Elbaz et al. Sep 2006 B2
7104929 Eschenbach Sep 2006 B1
7104937 Arbuckle Sep 2006 B2
7108644 Clark, III Sep 2006 B2
7108663 Talish Sep 2006 B2
7112161 Maresh Sep 2006 B2
7115073 Nizamuddin Oct 2006 B2
7137934 Parmater Nov 2006 B2
7137938 Gottlieb Nov 2006 B2
7140626 Keay Nov 2006 B1
7141008 Krull et al. Nov 2006 B2
7153238 Anderson et al. Dec 2006 B2
7156776 Maser Jan 2007 B2
7163490 Chen Jan 2007 B2
7163491 Rufino Jan 2007 B2
7166062 Watterson et al. Jan 2007 B1
7166064 Watterson et al. Jan 2007 B2
7166067 Talish et al. Jan 2007 B2
7169087 Ercanbrack et al. Jan 2007 B2
7169088 Rodgers, Jr. Jan 2007 B2
7169089 Rodgers, Jr. Jan 2007 B2
7169090 Maresh Jan 2007 B1
7172531 Rodgers, Jr. Feb 2007 B2
7179205 Schmidt Feb 2007 B2
7179207 Gerschefske Feb 2007 B2
7182714 Moon Feb 2007 B2
7186270 Elkins Mar 2007 B2
7191383 Lin et al. Mar 2007 B2
7192388 Dalebout et al. Mar 2007 B2
7198590 Nicholas Apr 2007 B1
7201705 Rodgers, Jr. Apr 2007 B2
7201706 Lee Apr 2007 B1
7201707 Moon Apr 2007 B1
7204041 Bailey, Sr. et al. Apr 2007 B1
7207925 Laturell et al. Apr 2007 B2
7211029 Kau May 2007 B2
7214167 Stearns May 2007 B2
7214168 Rodgers, Jr. May 2007 B2
7217224 Thomas May 2007 B2
7223209 Lee May 2007 B2
7226394 Johnson Jun 2007 B2
7226399 Lanoue Jun 2007 B2
7238146 Chen Jul 2007 B1
7244217 Rodgers, Jr. Jul 2007 B2
7244220 Carney Jul 2007 B2
7252624 Wu Aug 2007 B2
7252627 Carter Aug 2007 B2
7255665 Ish, III Aug 2007 B2
7264576 Gerschefske et al. Sep 2007 B2
7267637 Mercado Sep 2007 B2
7267638 Wang Sep 2007 B2
7270625 Miller Sep 2007 B2
RE39904 Lee Oct 2007 E
7276017 Lin Oct 2007 B2
7278955 Giannelli et al. Oct 2007 B2
7278958 Morgan Oct 2007 B2
7285075 Cutler et al. Oct 2007 B2
7292151 Ferguson Nov 2007 B2
7300387 Wang Nov 2007 B2
7303508 Toyama et al. Dec 2007 B2
7303510 Gebhardt Dec 2007 B2
7316632 Rodgers Jan 2008 B2
7316633 Liao et al. Jan 2008 B2
7319457 Lin et al. Jan 2008 B2
7322907 Bowser Jan 2008 B2
7331911 Webber et al. Feb 2008 B2
7335135 Wang Feb 2008 B2
7335140 Webber et al. Feb 2008 B2
7341542 Ohrt et al. Mar 2008 B2
7347806 Nakano et al. Mar 2008 B2
7350787 Voss Apr 2008 B2
7352365 Trachte Apr 2008 B2
7354380 Volpe, Jr. Apr 2008 B2
7357756 Demas Apr 2008 B2
7361122 Porth Apr 2008 B2
7361125 Webber et al. Apr 2008 B2
7367925 Hsu May 2008 B2
7369121 Lane May 2008 B2
7373510 Lamberton et al. May 2008 B2
7374522 Arnold May 2008 B2
7375450 Tanaka et al. May 2008 B2
7377879 Lin May 2008 B1
7377881 Moon May 2008 B2
7381164 Smith et al. Jun 2008 B2
7393308 Huang Jul 2008 B1
7402145 Woggon Jul 2008 B1
7410449 Yeh Aug 2008 B2
7422548 Teng Sep 2008 B1
7425188 Ercanbrack Sep 2008 B2
7435202 Daly et al. Oct 2008 B2
7435204 Wu et al. Oct 2008 B2
7438670 Gray et al. Oct 2008 B2
7438673 Jones Oct 2008 B1
7451848 Flowers et al. Nov 2008 B2
7455624 Liao Lai Nov 2008 B2
7455626 Trevino et al. Nov 2008 B2
7462134 Lull et al. Dec 2008 B2
7462135 Lo Dec 2008 B2
7468021 Moon Dec 2008 B2
7479093 Immordino et al. Jan 2009 B1
7485072 Chuang Feb 2009 B2
7491154 Yonehana et al. Feb 2009 B2
7494447 Eschenbach Feb 2009 B2
7494448 Eschenbach Feb 2009 B2
7494449 Eschenbach Feb 2009 B2
7494450 Solomon Feb 2009 B2
7507184 Rodgers, Jr. Mar 2009 B2
7507186 Stearns Mar 2009 B2
7507188 Nurre Mar 2009 B2
7510508 Santomassimo et al. Mar 2009 B2
7513853 Russ Apr 2009 B1
7513854 Stearns Apr 2009 B1
7513855 Yeh Apr 2009 B1
7517303 Crawford et al. Apr 2009 B2
7520839 Rodgers, Jr. Apr 2009 B2
7530926 Rodgers, Jr. May 2009 B2
7530932 Lofgren et al. May 2009 B2
7547267 Wang Jun 2009 B1
7549947 Hickman et al. Jun 2009 B2
7549949 Webber et al. Jun 2009 B2
7553260 Piaget et al. Jun 2009 B2
7556591 Chuang Jul 2009 B2
7559879 Anderson et al. Jul 2009 B2
7563203 Dalebout et al. Jul 2009 B2
7563209 Webber et al. Jul 2009 B2
7569004 Kolomeir Aug 2009 B2
7572205 Cribar Aug 2009 B1
7575537 Ellis Aug 2009 B2
7578770 Kuivala Aug 2009 B2
7585258 Watson et al. Sep 2009 B2
7585263 Brown et al. Sep 2009 B2
7591761 Ellis Sep 2009 B1
7594877 Anderson et al. Sep 2009 B2
7594878 Joannou Sep 2009 B1
7594879 Johnson Sep 2009 B2
7594880 Webber Sep 2009 B2
7601082 Dizazzo Oct 2009 B2
7601187 Webber Oct 2009 B2
7604573 Dalebout et al. Oct 2009 B2
7608018 Chuang Oct 2009 B2
7608019 Stearns Oct 2009 B1
7611445 Brown et al. Nov 2009 B2
7611446 Chuang Nov 2009 B2
7618328 Davenport Nov 2009 B2
7618350 Dalebout et al. Nov 2009 B2
7618351 Kwon Nov 2009 B2
7621850 Piaget et al. Nov 2009 B2
7625314 Ungari Dec 2009 B2
7625320 Wehrell Dec 2009 B2
7625323 Lin Dec 2009 B1
7632220 Nelson et al. Dec 2009 B2
7641598 Rodgers, Jr. Jan 2010 B2
7645213 Watterson Jan 2010 B2
7645214 Lull Jan 2010 B2
7645215 Gordon Jan 2010 B2
7648446 Chiles et al. Jan 2010 B2
7651450 Wehrell Jan 2010 B2
7654938 Webber et al. Feb 2010 B2
7654940 Webber et al. Feb 2010 B2
7658698 Pacheco et al. Feb 2010 B2
7662069 Maresh Feb 2010 B2
7665388 Lin Feb 2010 B2
7670266 Cornejo Mar 2010 B2
7670269 Webber et al. Mar 2010 B2
7674205 Dalebout et al. Mar 2010 B2
7678025 Rodgers, Jr. Mar 2010 B2
7682286 Badarneh et al. Mar 2010 B2
7682287 Hsieh Mar 2010 B1
7682288 Stearns Mar 2010 B1
7682289 Chen Mar 2010 B2
7682290 Liao et al. Mar 2010 B2
7686750 Tuller Mar 2010 B2
7691031 Toyama et al. Apr 2010 B2
7691034 May et al. Apr 2010 B2
7695406 Waters Apr 2010 B2
7704191 Hsieh Apr 2010 B2
7704192 Dyer et al. Apr 2010 B2
7706547 Luo Apr 2010 B2
7708669 Rodgers, Jr. May 2010 B2
7708670 Bowser May 2010 B2
7713171 Hickman May 2010 B1
7717446 Pate 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
7722505 Liao et al. May 2010 B2
7727120 Smith Jun 2010 B2
7727122 Kuo Jun 2010 B2
7727125 Day Jun 2010 B2
7731634 Stewart et al. Jun 2010 B2
7731635 Dyer Jun 2010 B2
7736272 Martens Jun 2010 B2
7736278 Lull et al. Jun 2010 B2
7736279 Dalebout et al. Jun 2010 B2
7736281 Corbalis et al. Jun 2010 B2
7736286 Panaiotov Jun 2010 B2
7740563 Dalebout et al. Jun 2010 B2
7741975 Shum et al. Jun 2010 B2
7745716 Murphy Jun 2010 B1
7749137 Watt et al. Jul 2010 B2
7753824 Wang Jul 2010 B2
7758469 Dyer et al. Jul 2010 B2
7764990 Martikka et al. Jul 2010 B2
7766797 Dalebout Aug 2010 B2
7766802 Webber et al. Aug 2010 B2
7771325 Baker Aug 2010 B2
7775940 Dalebout et al. Aug 2010 B2
7775947 Towley, III et al. Aug 2010 B2
7780577 Arnold Aug 2010 B2
7780583 Brown Aug 2010 B2
7785235 Towley, III et al. Aug 2010 B2
7789800 Watterson et al. Sep 2010 B1
7789806 Yang Sep 2010 B2
7789841 Huckle Sep 2010 B2
7794361 Wang Sep 2010 B2
7794362 Miller Sep 2010 B2
7794371 Webber et al. Sep 2010 B2
7798910 Leadbetter Sep 2010 B2
7803096 Mehta Sep 2010 B2
7805186 Pulkkinen et al. Sep 2010 B2
7806805 Barufka et al. Oct 2010 B2
7806807 Genua Oct 2010 B2
7811206 Chuang Oct 2010 B2
7811207 Stearns Oct 2010 B2
7811211 Habing Oct 2010 B2
7815549 Crawford et al. Oct 2010 B2
7815550 Watterson et al. Oct 2010 B2
7824314 Maresh Nov 2010 B2
7825319 Turner Nov 2010 B2
7828698 Rodgers, Jr. Nov 2010 B2
7828703 Boesch Nov 2010 B1
7837595 Rice Nov 2010 B2
7841964 Radow Nov 2010 B2
7841968 Eschenbach Nov 2010 B1
7846070 Oglesby et al. Dec 2010 B2
7846071 Fenster et al. Dec 2010 B2
7850537 Stern Dec 2010 B2
7854691 Long et al. Dec 2010 B2
7857731 Jacobs et al. Dec 2010 B2
7862476 Radow Jan 2011 B2
7862478 Watterson et al. Jan 2011 B2
7862483 Watterson et al. Jan 2011 B2
7862484 Coffey Jan 2011 B1
7867146 Ge et al. Jan 2011 B2
7871355 Yeh Jan 2011 B2
7871356 Smith Jan 2011 B2
7874963 Grind Jan 2011 B2
7878951 Roman et al. Feb 2011 B2
7878953 Webber et al. Feb 2011 B2
7883448 Wang Feb 2011 B2
7883451 Hand Feb 2011 B2
7887465 Uffelman Feb 2011 B2
7901330 Dalebout et al. Mar 2011 B2
7901335 Webber et al. Mar 2011 B2
7901338 Gerschefske Mar 2011 B2
7909739 Kwon et al. Mar 2011 B2
7909740 Dalebout et al. Mar 2011 B2
7918766 Lu et al. Apr 2011 B2
7918768 Rogozinski Apr 2011 B2
7918773 Brennan Apr 2011 B2
7922625 Lu et al. Apr 2011 B2
7922632 Chou Apr 2011 B2
7926834 Willis Apr 2011 B2
7927257 Patel Apr 2011 B2
7935027 Graber May 2011 B2
7938754 Eschenbach May 2011 B2
7938760 Webber et al. May 2011 B1
7942787 Ohrt et al. May 2011 B2
7946959 Shum et al. May 2011 B2
7946962 Long May 2011 B2
7951048 Hsiung May 2011 B1
7955225 James Jun 2011 B1
7955234 Pursley Jun 2011 B1
7963889 Badarneh et al. Jun 2011 B2
7967709 Emura Jun 2011 B2
7967736 D'Silva et al. Jun 2011 B2
7972245 Temple et al. Jul 2011 B2
7972248 Liao Jul 2011 B2
7976440 Webber et al. Jul 2011 B2
7978081 Shears et al. Jul 2011 B2
7981010 Webber et al. Jul 2011 B1
7981015 Reed Jul 2011 B2
7985164 Reed Jul 2011 B2
7985165 Lin et al. Jul 2011 B1
7985191 Trandafir Jul 2011 B2
7988600 Rodgers, Jr. Aug 2011 B2
7993251 Webber et al. Aug 2011 B1
8001472 Gilley et al. Aug 2011 B2
8002674 Piaget et al. Aug 2011 B2
8002684 Laurent Aug 2011 B2
8007422 Zaccherini Aug 2011 B2
RE42698 Kuo et al. Sep 2011 E
8012003 Sterchi et al. Sep 2011 B2
8012067 Joannou Sep 2011 B2
8021275 Rodgers, Jr. Sep 2011 B2
8025609 Giannelli et al. Sep 2011 B2
8025610 Chang Sep 2011 B2
8029415 Ashby et al. Oct 2011 B2
8033961 Kuo Oct 2011 B2
8047965 Shea Nov 2011 B2
8047968 Stewart Nov 2011 B2
8051359 Lin et al. Nov 2011 B2
8057366 Schippers Nov 2011 B2
8062187 Lull et al. Nov 2011 B2
8062190 Pyles et al. Nov 2011 B2
8063776 Ruha Nov 2011 B2
8079937 Bedell Dec 2011 B2
8088044 Tchao et al. Jan 2012 B2
8103517 Hinnebusch Jan 2012 B2
8105213 Stewart et al. Jan 2012 B2
8109858 Redmann Feb 2012 B2
8113990 Kolman et al. Feb 2012 B2
8113995 Hsu Feb 2012 B1
8123527 Holljes Feb 2012 B2
8133159 Eschenbach Mar 2012 B2
8137247 Gerschefske et al. Mar 2012 B2
8147385 Crawford et al. Apr 2012 B2
8162804 Tagliabue Apr 2012 B2
8167734 Boldin May 2012 B2
8177692 Deppen May 2012 B2
8177693 Webber et al. May 2012 B2
8187124 Ciesar May 2012 B2
8200323 Dibenedetto et al. Jun 2012 B2
8202204 Celone Jun 2012 B2
8206266 Hall Jun 2012 B2
8206272 Greene Jun 2012 B2
8210993 Lee et al. Jul 2012 B2
8210997 Thomas Jul 2012 B2
8215027 Kang Jul 2012 B2
8221290 Vincent et al. Jul 2012 B2
8235724 Gilley et al. Aug 2012 B2
8235873 Stearns Aug 2012 B1
8241182 Julskjaer et al. Aug 2012 B2
8241186 Brodess et al. Aug 2012 B2
8251874 Ashby et al. Aug 2012 B2
8257228 Quatrochi et al. Sep 2012 B2
8257230 Chen et al. Sep 2012 B2
8260858 Belz et al. Sep 2012 B2
8272996 Weier Sep 2012 B2
8287434 Zavadsky et al. Oct 2012 B2
8306635 Pryor Nov 2012 B2
8317663 Stewart et al. Nov 2012 B2
8320578 Kahn et al. Nov 2012 B2
8323155 Ohrt et al. Dec 2012 B2
8333681 Schmidt Dec 2012 B2
8343016 Astilean Jan 2013 B1
8360904 Oleson et al. Jan 2013 B2
8376913 Lee et al. Feb 2013 B2
8403815 Liao et al. Mar 2013 B2
8403818 Wilkinson et al. Mar 2013 B1
8409058 Gordon et al. Apr 2013 B2
8419598 Dyer et al. Apr 2013 B2
8429223 Gilley et al. Apr 2013 B2
8435129 Miller May 2013 B2
8439810 Baudhuin May 2013 B2
8469861 McFee Jun 2013 B1
8485945 Leonhard Jul 2013 B2
8487759 Hill Jul 2013 B2
8533620 Hoffman et al. Sep 2013 B2
8540584 Sorenson Sep 2013 B1
8550962 Piaget et al. Oct 2013 B2
8552859 Pakula et al. Oct 2013 B2
8556779 Grind Oct 2013 B2
8556780 Chen Oct 2013 B2
8562489 Burton et al. Oct 2013 B2
8562491 Merli Oct 2013 B2
8562496 Webber et al. Oct 2013 B2
8585561 Watt et al. Nov 2013 B2
8597093 Engelberg et al. Dec 2013 B2
8603017 Trandafir et al. Dec 2013 B2
8647239 Sokolovas Feb 2014 B1
8647240 Heidecke Feb 2014 B2
8647241 Walton Feb 2014 B2
8655004 Prest et al. Feb 2014 B2
8663070 Long Mar 2014 B2
8668627 Eschenbach Mar 2014 B2
8702430 Dibenedetto et al. Apr 2014 B2
8724037 Massey May 2014 B1
8727947 Tagliabue May 2014 B2
8734157 Hummel, III May 2014 B1
8734298 Murray May 2014 B2
8734304 Webber et al. May 2014 B2
8738321 Yuen et al. May 2014 B2
8740754 Miller Jun 2014 B2
8771151 Larsson Jul 2014 B2
8786575 Miller Jul 2014 B2
8795139 Zhang et al. Aug 2014 B2
8795210 Talish et al. Aug 2014 B2
8801578 Corbalis et al. Aug 2014 B2
8801580 Maresh Aug 2014 B1
8801582 Huang et al. Aug 2014 B2
8814757 Eschenbach Aug 2014 B2
8821354 Tabahi Sep 2014 B1
8824697 Christoph Sep 2014 B2
8827879 Nicholas Sep 2014 B2
8834323 Chen Sep 2014 B2
8845493 Watterson et al. Sep 2014 B2
8847988 Geisner et al. Sep 2014 B2
8864092 Newville Oct 2014 B2
8864608 Rockhill Oct 2014 B2
8864627 Bayerlein et al. Oct 2014 B2
8864631 Stearns Oct 2014 B1
8876669 Vujicic Nov 2014 B2
8892999 Nims et al. Nov 2014 B2
8893698 Boehner Nov 2014 B2
8894549 Colledge Nov 2014 B2
8926478 Abuelsaad et al. Jan 2015 B2
8939831 Dugan Jan 2015 B2
8951168 Baudhuin Feb 2015 B2
8956290 Gilley et al. Feb 2015 B2
8974352 Eschenbach Mar 2015 B2
8979713 Huang et al. Mar 2015 B2
8986165 Ashby Mar 2015 B2
8990732 Farrenkopf et al. Mar 2015 B2
8992364 Law et al. Mar 2015 B2
8996978 Richstein et al. Mar 2015 B2
9005224 Euteneuer et al. Apr 2015 B2
9011291 Birrell Apr 2015 B2
9017223 Eschenbach Apr 2015 B2
9039577 Peng May 2015 B2
9039578 Dalebout May 2015 B2
9039581 Chia et al. May 2015 B2
9044635 Lull Jun 2015 B2
9050485 Huang et al. Jun 2015 B2
9050486 Reed Jun 2015 B2
9050491 Gordon et al. Jun 2015 B2
9050498 Lu et al. Jun 2015 B2
9061175 Miller et al. Jun 2015 B1
9072936 Miller et al. Jul 2015 B1
9081534 Yuen et al. Jul 2015 B2
9084565 Mason et al. Jul 2015 B2
9088450 Jung et al. Jul 2015 B2
9108081 Giannelli et al. Aug 2015 B2
9114275 Lu et al. Aug 2015 B2
9114276 Bayerlein et al. Aug 2015 B2
9132330 Brendle Sep 2015 B2
9138614 Lu et al. Sep 2015 B2
9148077 Henderson Sep 2015 B2
9162106 Scheiman Oct 2015 B1
9174085 Foley Nov 2015 B2
9198622 Kaleal et al. Dec 2015 B2
9199115 Yim et al. Dec 2015 B2
9227103 Yang Jan 2016 B2
9248071 Benda et al. Feb 2016 B1
9248338 Lo Feb 2016 B2
9254413 Chen et al. Feb 2016 B2
9254414 Liu et al. Feb 2016 B2
9259610 Huang et al. Feb 2016 B2
9272180 Eschenbach Mar 2016 B2
9275504 Cooper Mar 2016 B1
9278249 Watterson Mar 2016 B2
9278250 Buchanan Mar 2016 B2
9289648 Watterson Mar 2016 B2
9295765 Muri et al. Mar 2016 B2
9302148 Vujicic et al. Apr 2016 B1
9308415 Crawford et al. Apr 2016 B2
9330544 Levesque et al. May 2016 B2
9358422 Brontman Jun 2016 B2
9364708 Luger et al. Jun 2016 B2
9367668 Flynt et al. Jun 2016 B2
9375606 Maresh Jun 2016 B1
9378336 Ohnemus et al. Jun 2016 B2
9381394 Mortensen et al. Jul 2016 B2
9387387 Mortensen et al. Jul 2016 B2
9389718 Letourneur Jul 2016 B1
9392941 Powch et al. Jul 2016 B2
9411940 Burroughs et al. Aug 2016 B2
9421416 Mortensen et al. Aug 2016 B2
9452320 Yang Sep 2016 B2
9457222 Dalebout Oct 2016 B2
9457223 Eschenbach Oct 2016 B2
9457224 Giannelli et al. Oct 2016 B2
9457256 Aragones et al. Oct 2016 B2
9468797 Miller Oct 2016 B1
9474925 Hsiung Oct 2016 B1
9492704 Mortensen et al. Nov 2016 B2
9498700 Henrie et al. Nov 2016 B2
9511253 Miller Dec 2016 B1
9517812 Tetsuka Dec 2016 B2
9539458 Ross Jan 2017 B1
9545540 Moschel Jan 2017 B1
9566469 Rector Feb 2017 B1
9579534 Sutkowski et al. Feb 2017 B2
9586085 Arnold et al. Mar 2017 B2
9586086 Dalebout et al. Mar 2017 B2
9586087 Lin Mar 2017 B1
9597540 Arnold Mar 2017 B2
9604099 Taylor Mar 2017 B2
9610475 DeKnock et al. Apr 2017 B1
9610490 Tambornino et al. Apr 2017 B2
9623286 Chen Apr 2017 B1
9625091 Massey Apr 2017 B1
9636540 Mueller et al. May 2017 B2
9636541 Hsu May 2017 B1
9649524 Giunchi May 2017 B2
9649529 Miller May 2017 B1
9682306 Lin et al. Jun 2017 B2
9700780 Riley et al. Jul 2017 B2
9707439 Lee et al. Jul 2017 B2
9707443 Warren Jul 2017 B2
9707447 Lopez Babodilla Jul 2017 B1
9750343 McBride et al. Sep 2017 B2
9757605 Olson et al. Sep 2017 B2
9757611 Colburn Sep 2017 B1
9757614 Giannelli et al. Sep 2017 B1
9782625 Blum et al. Oct 2017 B1
9808667 Liao et al. Nov 2017 B2
9808673 Robinson Nov 2017 B2
9827458 Dalton Nov 2017 B2
9839808 McNeil Dec 2017 B1
9845133 Craven et al. Dec 2017 B2
9878201 Moschel Jan 2018 B1
9886458 Jung et al. Feb 2018 B2
9889334 Ashby et al. Feb 2018 B2
9901772 Crowley et al. Feb 2018 B2
9901774 Miller et al. Feb 2018 B2
9901780 DeLuca et al. Feb 2018 B2
9919183 Moschel Mar 2018 B1
9925411 Huang et al. Mar 2018 B2
9937376 McInelly et al. Apr 2018 B2
9937377 McInelly et al. Apr 2018 B2
9937378 Dalebout et al. Apr 2018 B2
9937380 Giannelli et al. Apr 2018 B2
9950204 Eisenblaetter Apr 2018 B2
9950209 Yim et al. Apr 2018 B2
9968821 Finlayson et al. May 2018 B2
9981153 Chou May 2018 B2
9987513 Yim et al. Jun 2018 B2
9990126 Chanyontpatanakul Jun 2018 B2
9993680 Gordon Jun 2018 B2
9993683 Moschel Jun 2018 B2
9993684 Lin et al. Jun 2018 B2
9999818 Hawkins, III et al. Jun 2018 B2
10004945 Sauter Jun 2018 B2
10029143 Milstein Jul 2018 B1
10039951 Chang Aug 2018 B2
10039970 Lee et al. Aug 2018 B2
10046202 Butler, Jr. et al. Aug 2018 B2
10080918 Dalmia Sep 2018 B2
20010001303 Ohsuga et al. May 2001 A1
20010016542 Yoshimura Aug 2001 A1
20020004439 Galbraith et al. Jan 2002 A1
20020055422 Airmet May 2002 A1
20020077221 Dalebout et al. Jun 2002 A1
20020086779 Wilkinson Jul 2002 A1
20020173412 Stearns Nov 2002 A1
20030073545 Liu Apr 2003 A1
20030083177 Tung May 2003 A1
20030092532 Giannelli et al. May 2003 A1
20030148853 Alessandri Aug 2003 A1
20030171189 Kaufman Sep 2003 A1
20030171190 Rice Sep 2003 A1
20030197110 Cui Oct 2003 A1
20040023726 Ritson Feb 2004 A1
20040023736 Cardinale Feb 2004 A1
20040043871 Chang Mar 2004 A1
20040058784 Roberts Mar 2004 A1
20040063519 Liberatore Apr 2004 A1
20040067822 Sher Apr 2004 A1
20040077463 Rodgers Apr 2004 A1
20040147375 Stevens Jul 2004 A1
20040157706 Miller Aug 2004 A1
20040162194 Habing Aug 2004 A1
20040180719 Feldman Sep 2004 A1
20040204294 Wilkinson Oct 2004 A2
20040224740 Ball et al. Nov 2004 A1
20050009668 Savettiere Jan 2005 A1
20050049117 Rodgers Mar 2005 A1
20050054254 Erickson et al. Mar 2005 A1
20050054459 Oldenburg Mar 2005 A1
20050075217 Stevens Apr 2005 A1
20050085352 Baxter Apr 2005 A1
20050101445 Chen May 2005 A1
20050101463 Chen May 2005 A1
20050143226 Heidecke Jun 2005 A1
20050172311 Hjelt et al. Aug 2005 A1
20050181347 Barnes et al. Aug 2005 A1
20050209050 Bartels Sep 2005 A1
20050245370 Boland Nov 2005 A1
20050264112 Tanaka et al. Dec 2005 A1
20050272562 Alessandri et al. Dec 2005 A1
20050272568 Wang Dec 2005 A1
20050272577 Olson Dec 2005 A1
20060003869 Huang et al. Jan 2006 A1
20060019802 Caird Jan 2006 A1
20060019804 Young Jan 2006 A1
20060025246 Forney Feb 2006 A1
20060040810 Chu Feb 2006 A1
20060052727 Palestrant Mar 2006 A1
20060063644 Yang Mar 2006 A1
20060106424 Bachem May 2006 A1
20060122035 Felix Jun 2006 A1
20060128533 Ma Jun 2006 A1
20060166791 Liao Jul 2006 A1
20060172862 Badarneh et al. Aug 2006 A1
20060183606 Parmater Aug 2006 A1
20060189446 Rogus Aug 2006 A1
20060194679 Hatcher Aug 2006 A1
20060205568 Huang Sep 2006 A1
20060211549 Nohejl Sep 2006 A1
20060217240 White Sep 2006 A1
20060223678 Maclean Oct 2006 A1
20060240947 Qu Oct 2006 A1
20060264286 Hodjat Nov 2006 A1
20060281604 Stewart et al. Dec 2006 A1
20060287089 Addington et al. Dec 2006 A1
20060288846 Logan Dec 2006 A1
20060293153 Porth Dec 2006 A1
20070004562 Pan et al. Jan 2007 A1
20070015633 Gerschefske et al. Jan 2007 A1
20070021276 Kuo Jan 2007 A1
20070034625 Pacheco Feb 2007 A1
20070038137 Arand et al. Feb 2007 A1
20070042868 Fisher Feb 2007 A1
20070049467 Lin Mar 2007 A1
20070060449 Lo Mar 2007 A1
20070072156 Kaufman et al. Mar 2007 A1
20070087906 Rodgers, Jr. Apr 2007 A1
20070087907 Rodgers, Jr. Apr 2007 A1
20070099764 Eschenbach May 2007 A1
20070111858 Dugan May 2007 A1
20070117683 Ercanbrack et al. May 2007 A1
20070123390 Mathis May 2007 A1
20070135268 Wang Jun 2007 A1
20070135269 Wang Jun 2007 A1
20070142175 Morgan Jun 2007 A1
20070142183 Chang Jun 2007 A1
20070155277 Amitai et al. Jul 2007 A1
20070161467 Lee Jul 2007 A1
20070190508 Dalton Aug 2007 A1
20070197355 Brown Aug 2007 A1
20070202994 Alessandri Aug 2007 A1
20070208280 Talish Sep 2007 A1
20070225119 Schenk Sep 2007 A1
20070227409 Chu Oct 2007 A1
20070232467 Puzey Oct 2007 A1
20070238580 Wang Oct 2007 A1
20070238582 Lee Oct 2007 A1
20070238584 Lee Oct 2007 A1
20070270667 Coppi et al. Nov 2007 A1
20070270726 Chou Nov 2007 A1
20070271116 Wysocki et al. Nov 2007 A1
20070281828 Rice Dec 2007 A1
20070293336 Ferguson Dec 2007 A1
20070298935 Badarneh Dec 2007 A1
20070298937 Shah Dec 2007 A1
20080004163 Husted Jan 2008 A1
20080020907 Lin Jan 2008 A1
20080026838 Dunstan et al. Jan 2008 A1
20080032864 Hakki Feb 2008 A1
20080046246 Hakki Feb 2008 A1
20080051256 Ashby et al. Feb 2008 A1
20080064571 Lee Mar 2008 A1
20080064572 Nardone Mar 2008 A1
20080070755 Mckee Mar 2008 A1
20080076639 Fon Mar 2008 A1
20080076972 Dorogusker et al. Mar 2008 A1
20080085819 Yang et al. Apr 2008 A1
20080103024 Habing May 2008 A1
20080108457 Hansen May 2008 A1
20080108917 Joutras et al. May 2008 A1
20080119333 Bowser May 2008 A1
20080139370 Charnitski Jun 2008 A1
20080155077 James Jun 2008 A1
20080161163 Stewart et al. Jul 2008 A1
20080161166 Lo Jul 2008 A1
20080191864 Wolfson Aug 2008 A1
20080207407 Yeh Aug 2008 A1
20080214971 Talish Sep 2008 A1
20080220945 Chen Sep 2008 A1
20080242511 Munoz et al. Oct 2008 A1
20080261778 Chuang Oct 2008 A1
20080269024 Lin Oct 2008 A1
20080279896 Heinen et al. Nov 2008 A1
20080280733 Dickie et al. Nov 2008 A1
20080280734 Dickie et al. Nov 2008 A1
20080280735 Dickie et al. Nov 2008 A1
20080293488 Cheng et al. Nov 2008 A1
20080318738 Chen Dec 2008 A1
20090029831 Weier Jan 2009 A1
20090048493 James et al. Feb 2009 A1
20090062080 Guy Mar 2009 A1
20090069159 Wang Mar 2009 A1
20090093346 Nelson et al. Apr 2009 A1
20090093347 Wang Apr 2009 A1
20090098981 Del Giorno Apr 2009 A1
20090105548 Bart Apr 2009 A1
20090111663 Kuo Apr 2009 A1
20090111670 Williams Apr 2009 A1
20090118098 Yeh May 2009 A1
20090124463 Lin May 2009 A1
20090124465 Wang May 2009 A1
20090128516 Rimon et al. May 2009 A1
20090144080 Gray et al. Jun 2009 A1
20090170671 Faktenmark Jul 2009 A1
20090180646 Vulfson et al. Jul 2009 A1
20090181831 Kuo Jul 2009 A1
20090221405 Wang Sep 2009 A1
20090221407 Hauk Sep 2009 A1
20090239714 Sellers Sep 2009 A1
20090253559 Maresh Oct 2009 A1
20090269728 Verstegen et al. Oct 2009 A1
20100022354 Fisher Jan 2010 A1
20100035726 Fisher et al. Feb 2010 A1
20100064255 Rottler et al. Mar 2010 A1
20100077564 Saier et al. Apr 2010 A1
20100081548 Labedz Apr 2010 A1
20100156760 Cheswick Jun 2010 A1
20100167881 Day Jul 2010 A1
20100210418 Park Aug 2010 A1
20100240458 Gaiba et al. Sep 2010 A1
20100242246 Dalebout et al. Sep 2010 A1
20100263476 Peschmann Oct 2010 A1
20100279822 Ford Nov 2010 A1
20100311552 Sumners Dec 2010 A1
20110017168 Gilpatrick Jan 2011 A1
20110021325 Summers Jan 2011 A1
20110087137 Hanoun Apr 2011 A1
20110092343 Habing Apr 2011 A1
20110093100 Ramsay Apr 2011 A1
20110130256 Evans Jun 2011 A1
20110131005 Ueshima et al. Jun 2011 A1
20110143769 Jones et al. Jun 2011 A1
20110152696 Ryan Jun 2011 A1
20110273552 Wang et al. Nov 2011 A1
20120010053 Bayerlein et al. Jan 2012 A1
20120071301 Kaylor et al. Mar 2012 A1
20120088640 Wissink Apr 2012 A1
20120108397 Tsai May 2012 A1
20120108402 Rodgers, Jr. May 2012 A1
20120184417 Yablonowski Jul 2012 A1
20120196726 Larsson Aug 2012 A1
20120230504 Kuroda Sep 2012 A1
20120242774 Numano et al. Sep 2012 A1
20120253489 Dugan Oct 2012 A1
20120258433 Hope et al. Oct 2012 A1
20120322623 Lai Dec 2012 A1
20120322625 Park Dec 2012 A1
20130059697 Chuang Mar 2013 A1
20130061714 Hsiung Mar 2013 A1
20130143717 Wang Jun 2013 A1
20130172151 Wang Jul 2013 A1
20130225377 Lee et al. Aug 2013 A1
20130228063 Turner Sep 2013 A1
20130237383 Chen Sep 2013 A1
20130303297 Mackie Nov 2013 A1
20130346043 Mewes et al. Dec 2013 A1
20140017963 Lazarovits Jan 2014 A1
20140024499 Watterson Jan 2014 A1
20140051552 Habing et al. Feb 2014 A1
20140056461 Afshar Feb 2014 A1
20140073488 Wu Mar 2014 A1
20140085077 Luna et al. Mar 2014 A1
20140123325 Jung et al. May 2014 A1
20140141939 Wu May 2014 A1
20140194260 Campanaro et al. Jul 2014 A1
20140221165 Chuang Aug 2014 A1
20140274564 Greenbaum Sep 2014 A1
20140274574 Shorten Sep 2014 A1
20140309086 Chuang Oct 2014 A1
20140371036 Ellis Dec 2014 A1
20150003621 Trammell Jan 2015 A1
20150004579 Shelton Jan 2015 A1
20150016623 Trammell Jan 2015 A1
20150069738 Knight Mar 2015 A1
20150111706 Broadhurst Apr 2015 A1
20150177083 Redmond Jun 2015 A1
20150182781 Watterson Jul 2015 A1
20150182787 Liu et al. Jul 2015 A1
20150209617 Hsiao Jul 2015 A1
20150375030 Yang et al. Dec 2015 A1
20160263426 Mueller et al. Sep 2016 A1
20160339288 Li Nov 2016 A1
20160346595 Dalebout et al. Dec 2016 A1
20160346599 Dalebout et al. Dec 2016 A1
20170036053 Smith et al. Feb 2017 A1
20170056709 Ercanbrack et al. Mar 2017 A1
20170056711 Dalebout et al. Mar 2017 A1
20170216660 Lernihan Aug 2017 A1
20170259111 Hsieh Sep 2017 A1
20170266532 Watterson Sep 2017 A1
20170266533 Dalebout Sep 2017 A1
20170312580 Chang Nov 2017 A1
20170319906 Chang et al. Nov 2017 A1
20170368442 Baudhuin Dec 2017 A1
20180056105 Ho Mar 2018 A1
20180117393 Ercanbrack May 2018 A1
Related Publications (1)
Number Date Country
20180117393 A1 May 2018 US
Provisional Applications (1)
Number Date Country
62416030 Nov 2016 US