Abstract:
A firearm can have a backbone, a barrel, a swinging wedge, and a barrel latch, in accordance with one or more embodiments. The barrel latch can be in mechanical communication with the swinging wedge. The barrel latch can have a first position and a second position and the swinging wedge can be configured to maintain attachment of the barrel to the backbone when the barrel latch is in the first position and is configured to release the barrel from the backbone when the barrel latch is in the second position. Thus, the firearm can provide quick barrel changes. Other features enhance the reliability and utility of the firearm.
Abstract:
A retaining wall system formed from a wire facing unit having an upstanding face section and a rearwardly extending floor section the rear end of which is provided with aligned, transversely extending, openings defined by upstanding U-shaped protuberances. The apertures in the forward portion of a geogrid can be seated over the protuberances and a connector strut interconnects the face section and floor section for providing support therebetween and for securing the geogrid to the floor section. The connector strut includes an elongated rigid rod having a curved first end that extends to a substantially right-angled bend, and a connector rod portion extends from the bend to a second end to secure the geogrid to the floor section.
Abstract:
A hopper loader is provided for supplying particulate material to a processing machine. The hopper loader includes a receiver with latching members configured for coupling to a hopper assembly. The hopper assembly includes a hopper which preferably has translucent side walls to permit visual inspection of the contents of the chamber within the hopper, and a filter element positioned atop the receiver which is configured so that particulate material trapped by the filter element will periodically fall back into the chamber for processing without operator intervention.
Abstract:
A recovery system for a computer operating system and applications is described which uses selectable and configurable snapshots. In one example, a start-up sequence of the computer system is initiated, a plurality of snapshots in a hidden section of a mass storage device are identified before loading an operating system for the computer system, each snapshot containing an operating system, applications, and computer system configuration settings. One of the plurality of snapshots is booted including loading the operating system and applications of the one snapshot, and the start-up sequence is completed.
Abstract:
The present invention relates to arborescent polymers and to a process for making same. In one embodiment, the present invention relates to arborescent polymers formed from at least one inimer and at least one isoolefin that have been end-functionalized with a polymer or copolymer having a low glass transition temperature (Tg), and to a process for making such arborescent polymers. In another embodiment, the present invention relates to arborescent polymers formed from at least one inimer and at least one isoolefin that have been end-functionalized with less than about 5 weight percent end blocks derived from a polymer or copolymer having a high glass transition temperature (Tg), and to a process for making such arborescent polymers.
Abstract:
A bracket for coupling a component to a vehicle including a mounting structure defining an aperture is disclosed. The bracket has a first portion including at least one mounting structure clip configured to engage the mounting structure about a periphery of the aperture. The bracket also has a second portion including a component clip configured to engage the component.
Abstract:
A recovery system for a computer operating system and applications is described which uses selectable and configurable snapshots. In one example, a start-up sequence of the computer system is initiated, a plurality of snapshots in a hidden section of a mass storage device are identified before loading an operating system for the computer system, each snapshot containing an operating system, applications, and computer system configuration settings. One of the plurality of snapshots is booted including loading the operating system and applications of the one snapshot, and the start-up sequence is completed.
Abstract:
A cathode ray tube (CRT) having a glass envelope is disclosed. The glass envelope is formed of a rectangular faceplate panel and a tubular neck connected thereto by a funnel. An electron gun is positioned in the neck for directing electron beams toward the faceplate panel. A yoke is positioned in the neighborhood of the funnel-to-neck junction. The yoke has windings configured to apply a horizontal deflection yoke field and a vertical deflection yoke field to the beams. At least one magnetic field sensor is located near the glass envelope for sensing an ambient magnetic field environment of the CRT. A controller receives a signal from the magnetic field sensor. Register correction coils are mounted in the vicinity of the neck and are dynamically controlled by the controller to shift the beams. Quadrupole coils are applied to the neck and have adjacent poles of alternating polarity such that the resultant magnetic field being dynamically controlled by the controller based on the magnetic field sensor signal moves outer ones of the beams to correct the misconvergence caused by the register correction.
Abstract:
The CRT (10) according to the invention has an envelop (11) including a panel (12) attached to a funnel (15), the funnel having a neck (14) and an electron gun (26) for generating at least one electron beam (28) contained in the neck. A mask (25) is contained in the envelop near the panel. A region of the mask has columns (30) of apertures (31) of predetermined heights and predetermined pitches. The at least one electron beam has a spot size range and spot shape selected such that the moiré transformation function for the CRT in the region is less than about 0.02, wherein the moiré transformation function is a quotient having a numerator being the difference between a maximum value and a minimum value of mask transmission and a denominator being the sum of the maximum and the minimum values. The mask transmission is the percentage of electrons of a spatially uniform electron beam incident on the mask that can propagate therethrough the apertures averaged over a plurality of adjacent mask aperture columns and the regions containing the maximum and minimum values are adjacent to each other.