Abstract:
A flash lens and a flash module employing the same. The flash lens includes a lens unit including an incident surface, a reflecting surface, and a light-emitting surface; and a lens seating portion disposed at a lower portion of an edge of the light-emitting surface, extending and protruding from the reflecting surface, and including a pattern formed in a lower surface thereof. In addition, the flash module according to an embodiment of the present invention may include the flash lens and a light emitting diode (LED) chip integrally formed with the flash lens.
Abstract:
An illumination device for illuminating a camera's field of view, including a light source, and a reflector unit having reflecting sections is provided. Each reflecting section is associated with a light distribution, wherein the light distributions for different reflecting sections are different. The reflector unit is arranged such that light emitted by the light source is deflected by one of said reflecting sections being selected based on the camera's field of view. A method for illuminating a camera's field of view is also provided.
Abstract:
A reflective lighting system for illuminating a subject includes a diffusion panel and a reflector. The diffusion panel is arranged and configured to be illuminated by a light source. The reflector is arranged and configured to receive light from the diffusion panel and redirect the light toward the subject.
Abstract:
A stroboscopic device includes a light emitter disposed in a light-emitter casing, a light controller member disposed in an opening of the light-emitter casing, and a prism member disposed at a position near the light emitter where an opening of a reflector is not covered. The light emitter includes a flash discharge tube and a reflector for reflecting the light rays from the flash discharge tube in an irradiation direction. The light controller member controls the light rays from the light emitter. The prism member bends the light rays emitted from the flash discharge tube into an optical axis direction.
Abstract:
A small light-emitting device is provided. A light-emitting device which is less likely to produce a shadow is provided. A structure including a switching circuit for supplying a pulsed constant current and a light-emitting panel supplied with the pulsed constant current has been conceived.
Abstract:
A device for detachably coupling with a camera. The device includes a mount configured to detachably couple with a hot shoe of the camera. The mount includes a resilient retaining feature protruding from a bottom surface of the mount and configured to physically contact a bottom surface of the hot shoe such that the mount is pushed upwards within the hot shoe to securely retain the mount within the hot shoe.
Abstract:
A light source and lighting system for video communication are provided. A base capable of being removably attached to a video communication device is provided. A fill light attached to the base and a key light connected to the base are also provided.
Abstract:
A flash lens and a flash module employing the same. The flash lens includes a lens unit including an incident surface, a reflecting surface, and a light-emitting surface; and a lens seating portion disposed at a lower portion of an edge of the light-emitting surface, extending and protruding from the reflecting surface, and including a pattern formed in a lower surface thereof. In addition, the flash module according to an embodiment of the present invention may include the flash lens and a light emitting diode (LED) chip integrally formed with the flash lens.
Abstract:
A strobe device having small variations in the amount of light includes the following components: a flash discharge tube having an anode on one side and a cathode on the other side, the cathode having a metal sintered body at an end thereof; a conductive reflector composing an external trigger electrode, and storing a part of the flash discharge tube; and a trigger coil having a primary winding and a secondary winding around a hollow core. A portion of the cathode of the flash discharge tube not including the metal sintered body is inserted into the core of the trigger coil. The reflector, which is connected to the secondary winding of the trigger coil, has a bottom in contact with the outer peripheral surface of the flash discharge tube in such a manner as to cover at least the region extending from the anode to the cathode and the metal sintered body.
Abstract:
An optical image capturing module and an alignment method and an observation method for an upper substrate and a lower substrate using the optical image capturing module are provided. The upper substrate and the lower substrate are disposed opposite. The alignment method includes the following steps of: emitting a light ray; filtering the light ray and dividing the light ray into a light ray at first wavelength and a light ray at second wavelength, whereby the light ray at first wavelength irradiates a pattern on the upper substrate, and the light ray at second wavelength irradiates a pattern on the lower substrate; reflecting the pattern on the upper substrate to an image capturing device; reflecting the pattern on the lower substrate to the image capturing device; and determining the positions of the pattern on the upper substrate and the pattern on the lower substrate on the image capturing device.