Patent classifications
F21V1/26
METHOD FOR MAKING LIGHT-BLOCKING DECORATIVE ARTICLES
Laminated light-blocking decorative articles are prepared by applying an aqueous foamed opacifying composition to a decorative fabric, drying, laminating a non-woven fabric to the resulting dry foamed opacifying layer, and densifying that layer to have a thickness that is at least 20% less than before densifying. This operation can be carried out so that non-woven fabric, decorative fabric, and aqueous foamed opacifying composition are supplied in a single-pass, in-line operation to make any quantity of laminated light-blocking decorative article. The applied aqueous foamed opacifying composition has 35%-70% solids and a foam density of 0.1-0.5 g/cm.sup.3. It is composed of (a) porous particles, (b) a binder material, (c) two or more additives comprising at least one foaming surfactant and at least one foam stabilizer, (d) an aqueous medium, and (e) at least 0.0001 weight % of an opacifying colorant that absorbs electromagnetic radiation having a wavelength of 380-800 nm.
DECORATIVE LIGHT SOURCE SHIELDING
A body (10) is disclosed for obscuring a light source arrangement (3). The body comprises a surface (20) including a plurality of optically reflective relief structures (30, 30, 30), each relief structure comprising a first portion (31) and a second portion (33) adjacent to said first portion extending from said surface, wherein the first portion has a different optical reflectivity to the second portion and neighboring optically reflective relief structures are separated by an optically transparent medium contacting said neighboring optically reflective relief structures. Also disclosed is a luminaire comprising such a body and a method of manufacturing such a body.
DECORATIVE LIGHT SOURCE SHIELDING
A body (10) is disclosed for obscuring a light source arrangement (3). The body comprises a surface (20) including a plurality of optically reflective relief structures (30, 30, 30), each relief structure comprising a first portion (31) and a second portion (33) adjacent to said first portion extending from said surface, wherein the first portion has a different optical reflectivity to the second portion and neighboring optically reflective relief structures are separated by an optically transparent medium contacting said neighboring optically reflective relief structures. Also disclosed is a luminaire comprising such a body and a method of manufacturing such a body.
Lampshade fitting and assembly
The disclosure relates to an interchangeable lampshade system. A lampshade system includes an outer shade having a first frame disposed about a first perimeter of the outer shade and a second frame disposed about a second perimeter of the outer shade. The outer shade further comprises a structural side comprising a first side attached to the first frame and a second side attached to the second frame. The lampshade system includes an inner shade configured to be disposed about an interior surface of the structural side of the outer shade. The lampshade system includes a socket component configured to attach the outer shade to a lamp socket, wherein the socket component is attached to one or more of the first frame of the outer shade or the second frame of the outer shade.
Screen printed lens
A shield for a lighting fixture includes a panel that is optically transparent and a screen attached to the panel. The screen has opaque segments, where the opaque segments have gaps therebetween. The screen is screen printed onto the panel. The opaque segments are distributed on the panel in a pattern.
Screen printed lens
A shield for a lighting fixture includes a panel that is optically transparent and a screen attached to the panel. The screen has opaque segments, where the opaque segments have gaps therebetween. The screen is screen printed onto the panel. The opaque segments are distributed on the panel in a pattern.
Solar powered collapsible light
In some embodiments, an apparatus may include a collapsible shade formed from a semitransparent material and a housing. The housing may have a substantially cylindrical shape including a first end and a second end, and the collapsible shade may be coupled to a first end of the housing. The housing may include a light-emitting diode (LED) circuit including an LED coupled to the second end of the housing. Further, a user-selectable button may be coupled to the housing. The apparatus may also include a control circuit within the housing and coupled to the user-selectable button and to the LED circuit. The control circuit may be configured to control the LED to emit light having a selected wavelength and a selected brightness in response to selection of the user-selectable button.
Solar powered collapsible light
In some embodiments, an apparatus may include a collapsible shade formed from a semitransparent material and a housing. The housing may have a substantially cylindrical shape including a first end and a second end, and the collapsible shade may be coupled to a first end of the housing. The housing may include a light-emitting diode (LED) circuit including an LED coupled to the second end of the housing. Further, a user-selectable button may be coupled to the housing. The apparatus may also include a control circuit within the housing and coupled to the user-selectable button and to the LED circuit. The control circuit may be configured to control the LED to emit light having a selected wavelength and a selected brightness in response to selection of the user-selectable button.
Lamp fitting and assembly
The disclosure relates to a lamp fitting apparatus system. A system includes a polygonal socket connector comprising a first tapered fitting, wherein the polygonal socket connector is configured to connect with a lamp socket. The system includes a polygonal bracket comprising a second tapered fitting, wherein the polygonal bracket is configured to attach to a lampshade. The system is such that the second tapered fitting of the polygonal bracket corresponds with the first tapered fitting of the polygonal socket connector, such that the polygonal bracket and the polygonal socket connector form a compressing fitting configured to connect the lampshade to the lamp socket.
DEVICE, SYSTEM, AND METHOD OF PROVIDING A LAMPSHADE INSERT FOR APPLYING AN ARTISTIC MEDIUM
An insert device for receiving an artistic medium thereon for use with a lampshade. The device may include an insert configured to be used in association with a lampshade. The insert may include a first side and a second side. A design may be located on the first side of the insert, where the insert with the design is configured to be drawn on using an artistic implement. The insert may be made from a translucent material that is capable of receiving and retaining an artistic medium thereon. The artistic medium can be erased or otherwise removed from the translucent material. The design on the insert may be used in association with a lampshade such that it is exposed for viewing in association with the lampshade when the insert is in a three-dimensional shape.