Abstract:
A frame member of a back lighting module includes a housing and a plastic frame. The housing defines a basic plate and a plurality of lateral plates bending from the basic plate. At least one lateral plate is warped to form a buckling portion with a concave-convex shape. The plastic frame is integrally bonded to the housing. The plastic frame has a plurality of sidewalls attached to insides of the corresponding lateral plates. At least one of the sidewalls has a mating portion integrally engaged with the buckling portion for fastening the housing and the plastic frame tightly.
Abstract:
A frame member of a back lighting module includes a housing and a plastic frame. The housing defines a basic plate and a plurality of lateral plates bending from the basic plate. At least one lateral plate is warped to form a buckling portion with a concave-convex shape. The plastic frame is integrally bonded to the housing. The plastic frame has a plurality of sidewalls attached to insides of the corresponding lateral plates. At least one of the sidewalls has a mating portion integrally engaged with the buckling portion for fastening the housing and the plastic frame tightly.
Abstract:
A frame for back light module is disclosed that includes a chassis and an insulating housing integrally formed with the chassis. The chassis has a bottom wall and plural sidewalls extending from the bottom wall. At least one sidewall defines at least one locking structure on a free end surface thereof. The insulating housing has plural sideboards respectively integrally formed with inner surfaces of the sidewalls of the chassis. At least one sideboard defines at least one mating structure integrally engaged with the locking structure of the chassis.
Abstract:
An illumination apparatus includes a light guide plate, a first light source module, and a second light source module. The light guide plate has a first incident surface and a second incident surface opposite to the first incident surface. The first and the second light source modules provide light beams into the first and the second incident surfaces, respectively. The first light source module includes at least one first white light emitting diode (LED) and at least one second white LED neighboring with each other. The first and the second white LEDs have different color temperatures. The second light source module includes at least one third white LED and at least one forth white LED neighboring with each other. The third and the forth white LEDs have different color temperatures. The third and the forth white LEDs are located corresponding to the second and the first white LEDs, respectively.
Abstract:
A display device is disclosed that includes a frame assembly. A first screen panel and a second screen panel are assembled together with the frame assembly and electrically coupled with each other. A main circuit board electrically connected with both the first and second screen panels defines a receiving opening upon which an underside of the second screen panel is rested. A gap is defined between the second screen panel and the main circuit board when the underside of the second screen panel is rested upon the receiving opening of the main circuit board. Wherein the frame assembly has at least one positioning member configured to be inserted into the gap for restraining the second screen panel in place.
Abstract:
An ionomeric particulate composition made by suspension polymerization is provided. The composition comprises at least one vinyl monomer; an acid monomer; a metal oxide; at least two surfactants, one of which is a monomer surfactant; and polyacrylamide. The particulates' size can be controlled by use of the polyacrylainide and various surfactants, and not through the conventional means of homogenization. Particle size in the range of less than 10 micrometers can be made. The ionomeric particulate is made in the absence of a chain transfer agent and thus can have high molecular weight.
Abstract:
The present invention provides:A core-shell insert latex composition comprising latex particles, each latex particle comprising:(a) a core comprising a (co)polymer comprising (meth)acrylate ester;(b) a shell, surrounding the core, comprising a copolymer, wherein the copolymer comprises:(i) a nitrogen-bearing ethylenically-unsaturated free-radically polymerizable monomer;(ii) at least one (meth)acrylate ester of about a C.sub.1 to about a C.sub.14 alcohol; and(iii) an optional ethylenically-unsaturated free-radically polymerizable silane monomer; wherein the nitrogen-bearing ethylenically-unsaturated free-radically polymerizable monomer comprises from about 15 to about 60 percent by weight of the shell and further wherein the core comprises from about 40 to about 85 percent of the weight of the total core-shell latex particle.The invention also relates to the use of the core-shell latex composition as a binder or primer for coatings and adhesives.
Abstract:
A water-based pressure sensitive adhesive dispersion is provided. The dispersion is a reaction product of a monomer solution and an aqueous phase. The monomer solution contains from about 40 to 70 parts water-insoluble monomer selected from the group consisting of alkyl acrylate, methacrylate, vinyl ester, and combinations thereof and from about 0.01 to 0.2 parts monomer soluble free radical initiator. The aqueous phase includes from about 1 to 20 parts latex binder, from about 0.1 to 2 parts surfactant, from about 0.02 to 1 parts polymeric suspension stabilizer, and water as a remaining balance. All parts are given as parts by weight per 100 parts of the dispersion. The dispersion has a solid phase of at least 60 weight percent, a viscosity of less than about 300 centipoise, measured at about 23° C., and a bimodal particle size distribution.
Abstract:
Adhesives containing inter-crosslinked polymeric microparticles are described. The polymeric microparticles include an acrylic polymer. The present disclosure also relates to water-based emulsions containing polymeric microparticles and a suitable inter-crosslinking agent as well as methods of making adhesives from such water-based emulsions.
Abstract:
A portable electronic apparatus with automatic backlight adjustability and an adjusting method thereof are provided. The portable electronic apparatus comprises a display unit, a storage unit, an image capture unit, a processing unit and a backlight driver. The storage unit is used for storing a backlight parameter table. The image capture unit is used for capturing an image. The processing unit calculates a corresponding exposure value according to the image to obtain a backlight parameter corresponding to the backlight parameter table, and outputs a backlight setting according to the backlight parameter. The backlight driver adjusts the display unit according to the backlight setting to achieve target backlight brightness.