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1
US2019162913A1
Publication/Patent Number: US2019162913A1
Publication date: 2019-05-30
Application number: 16/263,591
Filing date: 2019-01-31
Assignee: US Conec, Ltd
Abstract: A multi-fiber ferrule has lenses that have different prescriptions to disperse the light emitted from the multi-fiber ferrule. Alternatively, the lens for each individual optical fiber can be moved relative to the optical fiber or the optical fiber opening in the multi-fiber ferrule to cause the laser beam exiting the multi-fiber ferrule to be redirected into a structure that absorbs or blocks the laser. A multi-fiber ferrule has lenses that have different prescriptions to disperse the light emitted from the multi-fiber ferrule. Alternatively, the lens for each individual optical fiber can be moved relative to the optical fiber or the optical fiber opening in the multi-fiber ...more ...less
2
EP2596201B1
Publication/Patent Number: EP2596201B1
Publication date: 2019-07-17
Application number: 11748781.9
Filing date: 2011-07-22
3
US10197743B2
Publication/Patent Number: US10197743B2
Publication date: 2019-02-05
Application number: 15/162,089
Filing date: 2016-05-23
Assignee: US Conec, LTD
Abstract: A multi-fiber ferrule has lenses that have different prescriptions to disperse the light emitted from the multi-fiber ferrule. Alternatively, the lens for each individual optical fiber can be moved relative to the optical fiber or the optical fiber opening in the multi-fiber ferrule to cause the laser beam exiting the multi-fiber ferrule to be redirected into a structure that absorbs or blocks the laser. A multi-fiber ferrule has lenses that have different prescriptions to disperse the light emitted from the multi-fiber ferrule. Alternatively, the lens for each individual optical fiber can be moved relative to the optical fiber or the optical fiber opening in the multi-fiber ...more ...less
4
EP3505654A1
Publication/Patent Number: EP3505654A1
Publication date: 2019-07-03
Application number: 19151046.0
Filing date: 2016-05-13
Abstract: A method of fabricating a PCD cutter element including a diamond table including a plurality of coated diamond particles fabricated using an atomic layer deposition (ALD) process. The method for fabricating a PCD cutter element, comprises: (a) coating, by atomic layer deposition (ALD), a plurality of diamond particles by directly depositing the coating on an outer surface of each diamond particle of the plurality of diamond particles to form a plurality of coated diamond particles; (b) removing oxides from the plurality of coated diamond particles after (a); and (c) forming a PCD cutter element using the coated diamond particles after (b), such that the PCD cutter element has an outermost layer of uncoated diamond particles and the plurality of coated diamond particles are disposed within the outer most layer of uncoated diamond particles. A method of fabricating a PCD cutter element including a diamond table including a plurality of coated diamond particles fabricated using an atomic layer deposition (ALD) process. The method for fabricating a PCD cutter element, comprises: (a) coating, by atomic layer deposition ...more ...less
5
US10215932B2
Publication/Patent Number: US10215932B2
Publication date: 2019-02-26
Application number: 15/810,292
Filing date: 2017-11-13
Assignee: US Conec, Ltd
Abstract: A fiber optic ferrule with rear holes and a guide pin clamp allows for changing guide pins in the field. The guide pin clamp has a forward clamp portion to engage the rear face of the fiber optic ferrule, a rearward clamp portion configured to engage the biasing spring, and a guide pin retaining plate. The guide pin retaining plate is movable from a first position to a second position to allow for the removal or insertion of guide pins. A fiber optic ferrule with rear holes and a guide pin clamp allows for changing guide pins in the field. The guide pin clamp has a forward clamp portion to engage the rear face of the fiber optic ferrule, a rearward clamp portion configured to engage the biasing spring, and a ...more ...less
6
US10214812B2
Publication/Patent Number: US10214812B2
Publication date: 2019-02-26
Application number: 15/568,406
Filing date: 2016-05-13
Abstract: A method of fabricating a PCD cutter element including a diamond table including a plurality of coated diamond particles fabricated using an atomic layer deposition (ALD) process.
7
US10323347B2
Publication/Patent Number: US10323347B2
Publication date: 2019-06-18
Application number: 15/509,096
Filing date: 2016-02-10
Assignee: NIKE, Inc.
Abstract: A pallet drive system is provided that is operable for use on a sewing system. The pallet drive system has a pallet that is configured to hold a work-piece in position. A pair of alignment posts is coupled to the pallet. In exemplary aspects, each alignment post has a shape with surfaces extending in three dimensions along x, y and z axes. A corresponding pair of gripping fingers is coupled to a sewing machine, corresponding to each alignment post, that are moveable between an open position, allowing the alignment post to be positioned between the gripping fingers, and a closed position where the gripping fingers surround the alignment post. The gripping fingers define a cavity in the closed position to surround the alignment post in the x, y and z axes. A pallet drive system is provided that is operable for use on a sewing system. The pallet drive system has a pallet that is configured to hold a work-piece in position. A pair of alignment posts is coupled to the pallet. In exemplary aspects, each alignment post has a shape with ...more ...less
8
US2019136374A1
Publication/Patent Number: US2019136374A1
Publication date: 2019-05-09
Application number: 16/240,431
Filing date: 2019-01-04
Abstract: A method of fabricating a PCD cutter element including a diamond table including a plurality of coated diamond particles fabricated using an atomic layer deposition (ALD) process.
9
US2019002416A1
Publication/Patent Number: US2019002416A1
Publication date: 2019-01-03
Application number: 16/125,991
Filing date: 2018-09-10
Abstract: In one aspect, the invention relates to a crystalline form of the structure: or a pharmaceutically acceptable salt thereof, having neprilysin inhibition activity. In another aspect, the invention relates to pharmaceutical compositions comprising this crystalline form; methods of using this crystalline form and its soluble form (I); and processes for preparing soluble (I) and crystalline (I′) forms. In one aspect, the invention relates to a crystalline form of the structure: or a pharmaceutically acceptable salt thereof, having neprilysin inhibition activity. In another aspect, the invention relates to pharmaceutical compositions comprising this crystalline form; ...more ...less
10
US2019271669A1
Publication/Patent Number: US2019271669A1
Publication date: 2019-09-05
Application number: 16/288,673
Filing date: 2019-02-28
Abstract: Methods, systems, and non-transitory computer-readable storage media having programs are described for monitoring an ultrasonic bonding operation via acoustic and/or vibration measurements and analyzing the measurements in order to predict and/or characterize the quality of a weld resulting from the bonding operation. The measurements are non-destructively acquired and the characterization is expressed as a bond quality index value. Methods, systems, and non-transitory computer-readable storage media having programs are described for monitoring an ultrasonic bonding operation via acoustic and/or vibration measurements and analyzing the measurements in order to predict and/or characterize the quality of a ...more ...less
11
US2019022759A1
Publication/Patent Number: US2019022759A1
Publication date: 2019-01-24
Application number: 16/064,450
Filing date: 2017-01-27
Abstract: Discussed herein are systems and methods of forming hardfacing coatings and films containing Q-carbon diamond particles for use in downhole drilling tooling and other tools where wear-resistant coating is desirable. The Q-carbon diamond-containing layers may be coated with matrix material and/or disposed in a matrix to form the coating, or the Q-carbon diamond layer may be formed directly from a diamond-like-carbon on a substrate. Discussed herein are systems and methods of forming hardfacing coatings and films containing Q-carbon diamond particles for use in downhole drilling tooling and other tools where wear-resistant coating is desirable. The Q-carbon diamond-containing layers may be coated with ...more ...less
13
US2019038425A1
Publication/Patent Number: US2019038425A1
Publication date: 2019-02-07
Application number: 16/157,463
Filing date: 2018-10-11
Abstract: Knee prostheses that more faithfully replicate the structure and function of the human knee joint in order to provide, among other benefits: greater flexion of the knee in a more natural way by promoting or accommodating internal tibial rotation, replication of the natural screw home mechanism, and controlled articulation of the tibia and femur respective to each other in a natural way. Such prostheses may include an insert component disposed between a femoral component and a tibial component, the insert component featuring, among other things, a reversely contoured posterolateral bearing surface that helps impart internal rotation to the tibia as the knee flexes. Other surfaces can be shaped using iterative automated techniques that allow testing and iterative design taking into account a manageable set of major forces acting on the knee during normal functioning, together with information that is known about natural knee joint kinetics and kinematics. Knee prostheses that more faithfully replicate the structure and function of the human knee joint in order to provide, among other benefits: greater flexion of the knee in a more natural way by promoting or accommodating internal tibial rotation, replication of the natural screw ...more ...less