Abstract:
Apparatus and methods for nanoplasma switches are disclosed. In certain embodiments, a nanoplasma switching system includes a nanoplasma radio frequency (RF) switch that receives an RF signal, and a nanoplasma DC switch that receives a DC bias voltage. The nanoplasma DC switch is positioned adjacent to but spaced apart from the nanoplasma RF switch. The nanoplasma DC switch induces a nanoplasma through the nanoplasma RF switch when the DC bias voltage is set to a first voltage level. By implementing the nanoplasma switching system in this manner, DC bias to turn on or off the nanoplasma RF switch can be realized without needing to use passive components such as DC blocking capacitors, choke inductors, or baluns for isolation.
Abstract:
A high-voltage pulse generator based on a spiral pulse generator, wherein the spiral pulse generator is implemented as an LTCC component and is wound from at least two ceramic and at least two metal-containing layers, and the high-voltage pulse generator can be introduced into a cylindrical volume V=d2*π*3*d whose length is three times as long as the diameter of the volume, and the volume of the high-voltage pulse generator is greater than one-third of the cylindrical volume. Also disclosed is a high-pressure discharge lamp having a tubular outer piston, wherein the outer piston of the high-pressure discharge lamp has an aforesaid high-voltage pulse generator.
Abstract:
A gas filled detector shell with attached antenna for the detection of high energy transmissions, including microwaves, lasers, electromagnetic signals, RF waves, radiation, and/or other transmissions emitted by a source including a weapon system. The shell may also be used as a safety device to warn and alert personnel working around high energy devices of electromagnetic leaks.
Abstract:
A lamp is provided having terminal pins mounted on and extending outwardly along a longitudinal axis of an end cap of the lamp. The pins are offset relative to one another along the longitudinal axis. The end cap has semi-circular, parallel surfaces with an asymmetrical section or recess at one end, and the pins extend outwardly from the respective semi-circular, parallel surfaces. A barrier wall extends substantially perpendicularly between the semi-circular surfaces.
Abstract:
A gas discharge tube 100 including a sealed container 1 in which a gas is sealed, an anode disposed within the sealed container, a cathode 7 which is spaced from the anode 4 in the sealed container 1 and generates discharge between the cathode 7 and the anode 4, a conductive part 6 restricting a discharge path, the conductive part 6 being disposed between the anode 4 and the cathode 7 and narrowing the discharge path, wherein by providing a cathode cover 8 which is made of ceramics, encloses the cathode 7, and has an opening 8d at least on an electron emission side, the cathode cover 8 increases the heat retaining effect of the cathode 7, makes it easy to keep the temperature of the cathode 7, and reduces power consumption.
Abstract:
An electric lamp has a lamp vessel accommodating an electric element. The element is connected to current conductors including molybdenum portions which have a coating of material chosen from the group of chromium-manganese, chromium-cobalt, chromium-iron and chromium-boron alloys as a protection against oxidation.
Abstract:
A plasma display panel is provided. The plasma display panel includes a first substrate, a second substrate facing the first substrate, and a pair of discharge electrodes disposed between the first substrate and the second substrate. The pair of discharge electrodes include a first discharge electrode having a plurality of first discharge sub-electrodes, and a second discharge electrode facing the first discharge electrode and having a plurality of second discharge sub-electrodes. Widths of the first discharge electrode and the second discharge electrode in a non-display area are greater than or equal to widths of the first discharge electrode and the second discharge electrode in a display area.
Abstract:
A plasma display panel that includes a first substrate; a second substrate facing the first substrate; barrier ribs disposed between the first substrate and the second substrate and partitioning discharge spaces; pairs of discharge electrodes disposed between the first substrate and the second substrate in perpendicular to a direction in which the first substrate and the second substrate are disposed; dielectric layers disposed between the pairs of discharge electrodes in discharge spaces; and phosphor layers coated in the discharge spaces. The pairs of discharge electrodes perform a surface discharge perpendicularly so that the discharge easily spreads to overall regions of respective discharge cells.
Abstract:
A plasma display module including a chassis base having a grounding area, a plasma display panel attached to the chassis base, a circuit board configured to supply driving signals to the plasma display panel, a first driving cable connecting the circuit board to the plasma display panel, and a second driving cable having a first end connected to the plasma display panel and a second end connected to a rear surface of the plasma display panel, the second driving cable forms a substantially round curve between the first end and the second end, and the substantially round curve contacts and is grounded to the grounding area of the chassis base.
Abstract:
A surface light source device includes a lamp body, a space dividing member, a discharge gas supplying member and a voltage applying part. The lamp body includes a flat shaped space and a fluorescent layer disposed in the flat shaped space to convert an invisible light into a visible light. The space dividing member divides the flat shaped space into a plurality of discharge spaces. The discharge gas supplying member is disposed to pass through the space dividing member and is fixed to the space dividing member, and supplies the discharge spaces with a discharge gas that generates the invisible light. The voltage applying part applies a discharge voltage to the discharge gas. Therefore, the lifetime of the surface light source device generating a planar light is increased, and the luminance of the light becomes uniform so that the display quality of an image is improved.