Abstract:
The present invention relates to a lighting assembly (100), comprising at least one light source (402), a heat sink (102) for dissipating heat generated during operation of the at least one light source (402), a lamp foot for connecting the at least one light source to a power supply, a control unit for controlling the at least one light source, and a first antenna arrangement (204) connected to the control unit and being electrically insulated from the heat sink (102) and the lamp foot (104), wherein the heat sink (102) and the lamp foot (104) form a second antenna arrangement (108), and the first antenna arrangement (204) is arranged in close vicinity of the second antenna arrangement (108) for allowing near-field coupling of a radio frequency signal provided to control the at least one light source (402).
Abstract:
There is provided a lighting device including: a light emitting module having at least one light emitting device outputting light and a light emitting device board on which the at least one light emitting device is disposed; a housing installed on one side of a ring in a central axis direction relatively to the light emitting device board; and a resin globe installed to cover the light emitting module, wherein the globe has a plurality of protrusions formed by retaining at least a portion of a gate unit used in molding the globe, and the light emitting device board may have notch portions combined with the protrusions.
Abstract:
The present disclosure relates generally to a light emitting diode (LED) luminaire. In one embodiment, the LED luminaire includes a base, a heat sink coupled to the base, a power supply coupled to an interior volume of the heat sink, one or more LEDs coupled to the power supply, wherein the one or more LEDs are coupled to a circuit configured to provide a constant input impedance and a lens coupled to the heat sink and enclosing the one or more LEDs.
Abstract:
The present invention relates to a inductive illumination apparatus. The inductive illumination apparatus includes a lamp body, a light emitting module, and a sensor and driver module. The light emitting module is disposed on the lamp body and electrically connected to the light emitting module. The light emitting module includes a first circuit board disposed with a plurality of light emitting components. The sensor and driver module includes a second circuit board disposed with a sensor device. The first circuit board has an opening. The second circuit board is disposed through the opening of the first circuit board so that the sensor device is surrounded by the light emitting components.
Abstract:
The present invention relates to a combination type illumination apparatus that includes a lamp body, a lamp cap module and a LED light emitting module. The LED light emitting module is disposed on the lamp body. The lamp body has an accommodation hole and a center sleeve stored in the accommodation hole. The center sleeve includes a first joggle structure. The lamp cap module includes a second joggle structure. The second joggle structure of the lamp cap module is assembled to the first joggle structure of the center sleeve. With such structure configuration, manufacturers may assemble the combination type illumination apparatus in a joggling way instead of in a screwing or gluing method.
Abstract:
A lighting device is provided in which a problem caused by heat generation by an LED is resolved, and further size reduction is achieved. The lighting device includes: a heat radiating part 2 provided with a cavity that accommodates a part of a plurality of drive circuit components 31, 31, 31,... driving a light source module 1; and a base part 5 provided with a cavity 51 that accommodates another part (e.g., a transistor T) of the drive circuit components 31, 31, 31,.... Then, the drive circuit components 31, 31, 31,... are accommodated in the cavity of the heat radiating part 2 and the cavity 51 of the base part 5.
Abstract:
According to one embodiment, a lighting device (1, 11) includes: a body section (2); a light source (3); a globe (5); and a reflecting section (9, 19). The light source (3) is provided on one end portion (2a) of the body section (2) and has a light emitting element (3b). The globe (5) is provided so as to cover the light source (3). The reflecting section (9, 19) is provided opposite to the light source (3). A surface of the reflecting section (9, 19) on opposite side from the light source side is exposed from the globe (5).