Patent classifications
H01S5/0231
HEADER FOR SEMICONDUCTOR PACKAGE AND SEMICONDUCTOR PACKAGE
A header for a semiconductor package includes: an eyelet having an upper surface and a lower surface; a first metal block molded integrally with the eyelet, protruding at the upper surface, and having a substantially U shape; a first lead sealed in a first through hole penetrating the eyelet; a first substrate having a front surface formed with a first signal pattern electrically connected to the first lead and having a back surface fixed to a first end surface of the first metal block; a second lead sealed in a second through hole penetrating the eyelet; and a second substrate having a front surface formed with a second signal pattern electrically connected to the second lead and having a back surface fixed to a second end surface of the first metal block.
Pointing devices, apparatus, systems and methods for high shock environments
Devices, apparatus, systems and methods for providing accurate linear and angular positioning with a payload mounted to a beam having freely moveable ends. The payload can be a laser pointer mounted on a firearm, which maintains the initial precise pointing during and after exposure in high G shock and vibration environments. Vertical and lateral adjustment controls can adjust minute changes in beam orientation. Precision adjustments can be performed in a zero G, one G, or high G environment and maintains the adjustment daring and after being exposed to a high G shock or vibration environment.
Pointing devices, apparatus, systems and methods for high shock environments
Devices, apparatus, systems and methods for providing accurate linear and angular positioning with a payload mounted to a beam having freely moveable ends. The payload can be a laser pointer mounted on a firearm, which maintains the initial precise pointing during and after exposure in high G shock and vibration environments. Vertical and lateral adjustment controls can adjust minute changes in beam orientation. Precision adjustments can be performed in a zero G, one G, or high G environment and maintains the adjustment daring and after being exposed to a high G shock or vibration environment.
OPTICAL MODULE
An optical module includes: a stem including a first surface and a second surface opposite to the first surface; a thermoelectric cooler including a heat-releasing substrate fixed to the first surface; a semiconductor laser element attached to the thermoelectric cooler; a cap fixed to the first surface and covering the thermoelectric cooler and the semiconductor laser element; a lens fixed to the cap; and a restriction body fixed to the second surface. The linear thermal expansion coefficients of the heat-releasing substrate and the restriction body are smaller than the linear thermal expansion coefficient of the stem.
SEMICONDUCTOR LASER DEVICE
A semiconductor laser device includes a semiconductor laser chip that emits laser light, a plate-like base, and a block protruding from the base and supporting the semiconductor laser chip. The block has a supporting surface and a wire bonding surface. The supporting surface faces a first side in a first direction perpendicular to the laser light emitting direction, and supports the semiconductor laser chip. The wire bonding surface is a surface to which a wire connected to the semiconductor laser chip is connected. The wire bonding surface is shifted in a second direction perpendicular to the emitting direction and the first direction with respect to the supporting surface. The wire bonding surface is inclined relative to the supporting surface, such that the wire bonding surface is more offset to a second side in the first direction with increasing distance from the supporting surface in the second direction.
HEADER AND PACKAGE WITH INTEGRATED COOLER FOR ELECTRONIC COMPONENTS
A header for an electronic component including a base body, a thermoelectric cooler, a carrier and first and second conductor track arrangements. The thermoelectric cooler is thermally attached to the base body. The carrier is coupled to the thermoelectric cooler and is cooled thereby. The first and second conductor track arrangements each have a signal conductor, at least one grounding conductor and an end. The second conductor track arrangement is on the carrier and connected to the electronic component. The first and second conductor track arrangements are separated by a gap that is bridged by bonding wire connections electrically connecting the first and second signal conductors and electrically connecting the two grounding conductors, the ends facing each other across the gap, at least one of the ends having a capacitive structural feature that increases the capacitance of the first and/or the second conductor track arrangement.
SEMICONDUCTOR LIGHT-EMITTING APPARATUS AND METHOD OF FABRICATING SEMICONDUCTOR LIGHT-EMITTING APPARATUS
Semiconductor light-emitting apparatus includes substrate, submount above substrate, and semiconductor laser above submount. Semiconductor laser and submount are bonded to each other with first bonding material. Substrate and submount are bonded to each other with second bonding material. Submount has first region and second region near substrate, first region being a region on which spacer is disposed, and second region being a region without spacer. Submount is bonded to substrate by covering at least a portion of second region with second bonding material.
SEMICONDUCTOR LIGHT-EMITTING APPARATUS AND METHOD OF FABRICATING SEMICONDUCTOR LIGHT-EMITTING APPARATUS
Semiconductor light-emitting apparatus includes substrate, submount above substrate, and semiconductor laser above submount. Semiconductor laser and submount are bonded to each other with first bonding material. Substrate and submount are bonded to each other with second bonding material. Submount has first region and second region near substrate, first region being a region on which spacer is disposed, and second region being a region without spacer. Submount is bonded to substrate by covering at least a portion of second region with second bonding material.
OPTOELECTRONIC MODULES HAVING FLUID PERMEABLE CHANNELS AND METHODS FOR MANUFACTURING THE SAME
An optoelectronic module includes a spacer with an optical component mounting surface, a fluid permeable channel, and a module mounting surface. The fluid permeable channel and module mounting surface allow the channels to be sealed to foreign matter during certain manufacturing steps and to remain free from blockages, such as solidified flux, during certain manufacturing steps. Further, the channels can permit heat to escape from the optoelectronic module during operation.
Laser diode surface mounting structure
A laser diode surface mounting structure, having at least one edge-emitting laser diode chip, including two electrodes; a heat-dissipating plate for carrying one of the two electrodes of the at least one edge-emitting laser diode chip, which has a top conductive layer, a bottom conductive layer, and at least one conductive through hole extending from the top conductive layer to the bottom conductive layer for electrically conducting; two or more metal plates spaced apart from each other and located on a plane, wherein a first metal plate is located under the heat-dissipating plate and in contact with the bottom conductive layer of the heat-dissipating plate, and a second metal plate is located adjacent to and separated from the first metal plate; and an insulating frame having an opening and being disposed above the two or more metal plates for holding the two or more metal plates.