Abstract:
Devices, systems, and methods for producing ophthalmic lens molds and molded ophthalmic lenses are described. The present devices, systems, and methods provide venting of gases produced during injection molding of ophthalmic lens molds. With the present devices, systems, and methods, improvements in mold quality, lens quality, mold quality consistency, and lens quality consistency can be achieved compared to existing injection molding devices, systems, and methods. An optic power insert bushing is described and includes a venting system that directs gas from a first end of the bushing toward a second end of the bushing. The gas is directed between an optic power insert and an inner sidewall surface of a bushing bore in which the optic power insert is located. The bushing or bushings, and optic power inserts, can be provided as components of an ophthalmic lens mold injection system. Methods of making and using the vented bushings are also described.
Abstract:
Certain examples provide methods, systems and apparatus to facilitate heuristic content resolution to resolve ambiguity or conflict among available context variants for a content-based clinical application. An example method includes identifying a selected content item, the content item associated with a context input, the content item representing a parameterization of instructions to instruct a content-based application how to operate, the content item formulated according to one or more detailed clinical models. The example method includes identifying available context variants for the content item. The example method includes rejecting context variants conflicting with the context input of the content item. The example method includes rejecting context variants more specific than the context input of the content item. The example method includes selecting a most specific remaining context variant for the content item based on the context input.
Abstract:
A collision avoidance system for a machine is disclosed. The collision avoidance system has a first obstacle detection system. The first obstacle detection system is configured to detect a first obstacle and generate a corresponding first signal. Additionally, the collision avoidance system has an operator interface. The operator interface has a display configured to communicate visual information to an operator. In addition, the collision avoidance system has an interface module configured to detect a status of the machine and generate a corresponding second signal. The collision avoidance system also has a controller. The controller is in communication with the first obstacle detection system, the operator interface, and the interface module. The controller is configured to control the display to indicate a dangerous obstacle detection to the operator, based on the first and second signals. Additionally, the controller is configured to control the display to provide a dangerous obstacle warning to the operator, based on the first and second signals.
Abstract:
Some embodiments comprise a mechanical thickness regulator for a compression mold, or related systems and/or methods. A regulator can include a thickness regulator pin received by a recess in an extendable and retractable relation. The regulator pin can include a tip, or can be contacted with a tip, defining a predetermined distance from the pin to the end of the tip, the distance defining a gap of well known dimensions for receiving and molding polymer melt.
Abstract:
A gutter system for a vehicle storage compartment includes a bed floor for supporting cargo in a vehicle and a storage compartment having an opening defined in the bed floor. A gutter at least partially surrounds the opening. The gutter includes a main gutter channel disposed adjacent and along an inward side of the opening and lateral gutter channels disposed adjacent and along lateral sides of the opening. At least one discharge channel fluidly connects to the main gutter channel and extends laterally outwardly therefrom to facilitate drainage from the main gutter channel.
Abstract:
Use of xenon is described. Xenon is used as an organ and/or tissue and/or cell protectant in the manufacture of a pharmaceutical for the protection from injury of organs and/or tissue and/or cells that express HIF.
Abstract:
An apparatus for conducting heat from a computer component to a heat sink. The invention may include a thermal interface material (TIM). The invention may further include a seal or gasket that at least partially encloses the TIM. The gasket may facilitate retaining the TIM within its sidewall, and thus in place on or near a computer component. Generally, the gasket may be placed between the computer component (or a silicon board or other material upon which the computer component is located) and a heat sink. An insert may be placed within the gasket and define an aperture. The chip seats in the aperture and thus is spatially located with respect to the insert. The TIM abuts both the computer component and a heat sink. A desiccant may be located within the gasket and absorb any moisture diffusing or migrating through the gasket.
Abstract:
A ramp forms from three telescoping sections stored in a box secured to a tailgate of a pickup truck. The sections have an inverted U shape with the branches of the U extending downwards from the cargo bed. The sections extend telescopically with the upper section having the largest width and the lower section being the narrowest width. Each section has a stop the prevents detachment from the preceding section. In use, an all terrain vehicle climbs a pair of the ramps from the ground to the cargo bed, upon the sections, and over a storage box connected to each ramp. In the collapsed ramp, the sections are stored nested in a box clamped upon a tailgate. The ramps are approximately six feet long and collapse into a box approximately three feet high.
Abstract:
In a valve assembly (18) of the type having a housing, a pole piece (16) disposed within the housing, and an exhaust port (50), one embodiment of an exhaust port protective device (10) comprises a flow restrictor assembly coupled at least in part to the pole piece (16). The flow restrictor assembly provides fluid flow in a first direction and restricts fluid flow in a second direction.
Abstract:
A semiconductor module structure and a method of forming the semiconductor module structure are disclosed. The structure incorporates a die mounted on a substrate and covered by a lid. A thermal compound is disposed within a thermal gap between the die and the lid. A barrier around the periphery of the die extends between the lid and the substrate, contains the thermal compound, and flexes in response to expansion and contraction of both the substrate and the lid during cycling of the semiconductor module. More particularly, either the barrier is formed of a flexible material or has a flexible connection to the substrate and/or to the lid. The barrier effectively contains the thermal compound between the die and the lid and, thereby, provides acceptable and controlled coverage of the thermal compound over the die for heat removal.