In an optical device such as, e.g., an optical communications coupler or an optical gyroscope, a substrate-supported waveguide is aligned with a device component such as, e.g., an optical fiber or a photodetector. Optical alignment of such component (61) relative to the waveguide (64) is facilitated as the component is located in a preferentially etched groove (31) in the substrate supporting the waveguide (11). In the case of an optical fiber connection, optical coupling is facilitated by a ledge structure (41) overhanging a sloping etched wall of a groove holding the fiber (14). In the case of a photodetector, an etched groove may be essentially perpendicular to the direction of light propagation.Published versio
Vertically coupled microrings in an all-pass filter configuration are fabricated with a range of wav...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
The authors have realised vertically tapered and antireflection-coated waveguides in InP/InGaAsP wit...
In an optical device such as, e.g., an optical communications coupler or an optical gyroscope, a sub...
An optical assembly is disclosed which utilizes a pair of separate members to support an optical dev...
A laser (24) is mounted in predetermined alignment with a monocrystalline mounting member (11) by de...
Source: US2015010270A [EN] An arrangement of a substrate with at least one optical waveguide and wit...
DE 102008050766 A1 UPAB: 20100430 NOVELTY - The arrangement has a substrate (1) e.g. silicon wafer, ...
Optoelectronic chips, such as Group III-V compound lasers and photodiodes, are mounted on a single-c...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
\u3cp\u3eWe designed and realized two different mechanical devices for aligning standard lensed tele...
A subassembly for use in packaging an optoelectronic device (e.g., LED or photodiode) includes a sem...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
Vertically coupled microrings in an all-pass filter configuration are fabricated with a range of wav...
Vertically coupled microrings in an all-pass filter configuration are fabricated with a range of wav...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
The authors have realised vertically tapered and antireflection-coated waveguides in InP/InGaAsP wit...
In an optical device such as, e.g., an optical communications coupler or an optical gyroscope, a sub...
An optical assembly is disclosed which utilizes a pair of separate members to support an optical dev...
A laser (24) is mounted in predetermined alignment with a monocrystalline mounting member (11) by de...
Source: US2015010270A [EN] An arrangement of a substrate with at least one optical waveguide and wit...
DE 102008050766 A1 UPAB: 20100430 NOVELTY - The arrangement has a substrate (1) e.g. silicon wafer, ...
Optoelectronic chips, such as Group III-V compound lasers and photodiodes, are mounted on a single-c...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
\u3cp\u3eWe designed and realized two different mechanical devices for aligning standard lensed tele...
A subassembly for use in packaging an optoelectronic device (e.g., LED or photodiode) includes a sem...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
Vertically coupled microrings in an all-pass filter configuration are fabricated with a range of wav...
Vertically coupled microrings in an all-pass filter configuration are fabricated with a range of wav...
We designed and realized two different mechanical devices for aligning standard lensed telecom fiber...
The authors have realised vertically tapered and antireflection-coated waveguides in InP/InGaAsP wit...