Abstract:
Electron source with micropoint emissive cathodes and display means by cathodoluminescence excited by field emission and using said source. Each cathode (5) comprises an electrically conductive layer (22) and micropoints (12) and, according to the invention, a continuous resistive layer (24) is provided between the conductive layer and the micropoints. The display means comprises a cathodoluminescent anode (16) facing the source.
Abstract:
Electrolytic display cell comprising, between two electrodes of appropriate shapes, a liquid electrolyte containing metal ions, wherein said electrolyte comprises ions of a first metal and ions of a second metal, said first and second metals having similar redox potentials.Process for increasing the storage life of the display in a liquid electrolyte cell containing ions of a first metal, wherein ions of a second metal are added, the first and second metals having similar redox potentials.
Abstract:
The easy direction of magnetization of an amorphous magnetic film is brought in the plane of the film by annealing this film in an oxygen-free atmosphere composed of a gas selected from the group comprising argon, neon, krypton and xenon at a temperature below the temperature of crystallization of the alloy which constitutes the film. The depth of penetration of the rare gas into the film is adjusted by modifying the parameters of annealing temperature and time in order to modify the easy direction of magnetization to a greater or lesser depth within the film.
Abstract:
A linear digital readout assembly for milling machines and the like and structure for mounting the same to the machine, comprising a preassembled, prealigned scale and reading head assembly, with the scale and reading head, respectively, carried by adjacent, relatively movable parts of the machine and operatively connected to a digital display unit to give a visual digital indication of relative movement between said movable parts of the machine, and unique mounting structure securing the scale to one of said movable parts and securing the reading head to the other of said movable parts, said mounting structure enabling said scale and reading head to be secured to the respective parts of the machine with a minimum amount of effort and in a minimum amount of time and resulting in a durable, accurate and economical digital indicator for relative movements between the parts of the machine.
Abstract:
A system comprises a compartment, a fan, and a dual-pivot hinge. The compartment comprises an interior region and an access opening in communication with the interior region. The dual-pivot hinge mounts the fan to the compartment.
Abstract:
Systems and methods with the ability to raise the set point temperature immediately after a temperature increase due to radiation exposure, thereby reducing T-dot (rate of change in temperature) errors when trying to cool the inertial system back to its original set point temperature. An example system includes an inertial instrument, a sensor that senses if an increased temperature event has been experienced by the inertial instrument, and a controller device that will increase the set point temperature of the inertial instrument based on the determined increase in temperature. The controller device will also maintain the inertial instrument at a temperature associated with at least one of the sensed increased temperature event or the increased set point temperature.
Abstract:
A system comprises a compartment, a fan, and a dual-pivot hinge. The compartment comprises an interior region and an access opening in communication with the interior region. The dual-pivot hinge mounts the fan to the compartment.
Abstract:
A battery for use in a power tool, including a battery housing, at least one battery cell in the battery housing, a pivoting member at least partially enclosed within the battery housing which moves between a latched position and an unlatched position, and a biasing device associated with the pivoting member for urging the pivoting member towards the latched position.
Abstract:
A method for manufacturing a triode type cathode structure including depositing and etching: a cathode layer as cathode conductors; a grid layer as grid conductors; an electrical insulation layer and the grid conductors until reaching a resistive layer to provide cavities; and the cathode conductors to have a perforated structure at the intersection of the cathode conductors and grid conductors. Etching the grid conductors and the electrical insulation layer includes: a) depositing a resin layer on the grid layer, b) lithography and development of the resin layer according to a pattern that will form emissive pads, c) etching the grid layer according to the pattern, d) etching the insulation layer subjacent to the grid layer by extending the etching beyond emissive pad patterns, e) etching the grid layer at zones exposed by etching the insulation layer until reaching the resin layer, f) depositing a catalyst layer in openings of the resin layer to form emissive pads at the bottom of the cavities, and g) eliminating the resin layer.
Abstract:
A triode type cathode structure of an FED screen arranged in rows and columns, including a first lower metallization level forming cathodes, an electrical insulating layer, a second higher metallization level forming extraction grids, openings formed in the second metallization level and in the electrical insulating layer, and lines of electron emission arranged in the openings, which lines are parallel to the direction of the rows of the screen.