F21S4/24

LED flexible strip lamp and manufacturing method thereof
11578843 · 2023-02-14 · ·

An LED flexible strip lamp has a strip lamp holder, a conductive flexible strip, an LED flexible strip and a lamp cap, the LED flexible strip includes a first bonding pad disposed at its end, the conductive flexible strip includes a flexible insulating sheet, a conductive metal foil, a second bonding pad; the lamp cap includes an internal connector, and the internal connector includes an elastic conductive member abutting against the conductive metal foil. a conductive member with the bonding pad is arranged to be welded to the LED flexible strip so as to be matched with the lamp holder in an inserted mode, automation can be achieved conveniently, and the problem that an original LED flexible strip lamp is low in production efficiency due to the fact that the lamp holder needs to be installed manually is solved.

LED flexible strip lamp and manufacturing method thereof
11578843 · 2023-02-14 · ·

An LED flexible strip lamp has a strip lamp holder, a conductive flexible strip, an LED flexible strip and a lamp cap, the LED flexible strip includes a first bonding pad disposed at its end, the conductive flexible strip includes a flexible insulating sheet, a conductive metal foil, a second bonding pad; the lamp cap includes an internal connector, and the internal connector includes an elastic conductive member abutting against the conductive metal foil. a conductive member with the bonding pad is arranged to be welded to the LED flexible strip so as to be matched with the lamp holder in an inserted mode, automation can be achieved conveniently, and the problem that an original LED flexible strip lamp is low in production efficiency due to the fact that the lamp holder needs to be installed manually is solved.

Continuous encapsulated linear lighting produced in segments
11592171 · 2023-02-28 · ·

A method for making continuous encapsulated linear lighting is disclosed. In this method, a PCB is placed within a channel, and the channel is dammed by one or more stoppers. The dammed segment is filled and then caused or allowed to cure. The stoppers are then removed from their initial positions and moved along the channel. If one runs out of channel before the desired length of linear lighting is achieved, a second piece of channel is abutted to the previous segment of channel, the PCB is laid into it, and a segment is dammed, filled, and cured. The process continues iteratively until the desired length is achieved or more channel is required. The PCB may initially be cut to the full desired length and applied to the channel piecewise as needed.

LIGHT EMITTING DEVICE
20180006201 · 2018-01-04 ·

A light emitting device includes a flexible substrate, at least one light emitting element, a sealing resin, an adhesion layer and a support member. The flexible substrate includes a flexible base member and a plurality of wiring portions disposed on one surface of the base member. At least one light emitting element is arranged on a first surface of the flexible substrate and electrically connected to the wiring portions. The sealing resin seals the at least one light emitting element. The adhesion layer and the support member are arranged in this order on a second surface of the flexible substrate different from the first surface of the flexible substrate. The support member has a recess in a region corresponding at least to a region on the first surface where the at least one light emitting element is arranged.

LIGHT EMITTING DEVICE
20180006201 · 2018-01-04 ·

A light emitting device includes a flexible substrate, at least one light emitting element, a sealing resin, an adhesion layer and a support member. The flexible substrate includes a flexible base member and a plurality of wiring portions disposed on one surface of the base member. At least one light emitting element is arranged on a first surface of the flexible substrate and electrically connected to the wiring portions. The sealing resin seals the at least one light emitting element. The adhesion layer and the support member are arranged in this order on a second surface of the flexible substrate different from the first surface of the flexible substrate. The support member has a recess in a region corresponding at least to a region on the first surface where the at least one light emitting element is arranged.

CUTTABLE FLEXIBLE LIGHT ENGINES
20180010745 · 2018-01-11 ·

Flexible light engines capable of being cut, and methods thereof, are provided. A cuttable flexible light engine includes a flexible strip and strings of solid state light sources coupled in parallel. A voltage balancer establishes a desired current flow through the strings of solid state light sources when the flexible strip is cut to a desired length, and may be part of a connector placed where the strip is cut. The strings may be provided in a first set of strings coupled in parallel between a first conductive path and an intermediate conductive path and a second set of strings coupled in parallel between the intermediated conductive path and a second conductive path. A cuttable flexible light engine may also include test points positioned within the strings.

Multi-configuration lighting device

A lighting device includes a housing that supports a flexible light assembly and can be operated in multiple configurations. The housing includes a cup-shaped opaque stator and light transmissive rotor that rotates relative to the stator. The rotor includes a spool upon which the flexible light assembly can be wound. The light source is configurable between a retracted configuration in which the flexible light assembly resides in the housing and light emitted by the flexible light assembly is transmitted through the rotor, and an extended configuration in which a portion of the flexible light assembly resides outside the housing. In the extended configuration, a portion of light emitted from the flexible light assembly is transmitted through the rotor and another portion of light emitted from the flexible light assembly originates outside the housing.

Multi-configuration lighting device

A lighting device includes a housing that supports a flexible light assembly and can be operated in multiple configurations. The housing includes a cup-shaped opaque stator and light transmissive rotor that rotates relative to the stator. The rotor includes a spool upon which the flexible light assembly can be wound. The light source is configurable between a retracted configuration in which the flexible light assembly resides in the housing and light emitted by the flexible light assembly is transmitted through the rotor, and an extended configuration in which a portion of the flexible light assembly resides outside the housing. In the extended configuration, a portion of light emitted from the flexible light assembly is transmitted through the rotor and another portion of light emitted from the flexible light assembly originates outside the housing.

LED BASE MODULE, LED MODULE, AND LED LIGHTING STRIP

An LED base module includes an LED lighting base and a supporting base. The LED lighting base includes an insulation housing and multiple conductive terminals fixed in the insulation housing. Each of the conductive terminals includes a chip fixing portion electrically connected to the chip assembly and a pin portion exposed outside the insulation housing. The supporting base includes multiple conductive portions and one or more avoidance through-holes. Each of the conductive portions includes a first terminal portion and a second terminal portion which are respectively exposed at two opposite surfaces of the supporting base. The first terminal portion is electrically connected to the pin portion, and the second terminal portion is electrically connected to a conductive line. The avoidance through-hole is provided for avoidance of stamp-cutting of one of the conductive lines.

LED BASE MODULE, LED MODULE, AND LED LIGHTING STRIP

An LED base module includes an LED lighting base and a supporting base. The LED lighting base includes an insulation housing and multiple conductive terminals fixed in the insulation housing. Each of the conductive terminals includes a chip fixing portion electrically connected to the chip assembly and a pin portion exposed outside the insulation housing. The supporting base includes multiple conductive portions and one or more avoidance through-holes. Each of the conductive portions includes a first terminal portion and a second terminal portion which are respectively exposed at two opposite surfaces of the supporting base. The first terminal portion is electrically connected to the pin portion, and the second terminal portion is electrically connected to a conductive line. The avoidance through-hole is provided for avoidance of stamp-cutting of one of the conductive lines.