Fiber-optic bus, ring, or daisy-chain routing cuts cable clutter and noise while easing assembly of multi-standard wireless electronics.
Integrated RJ-45 and fiber-optic connectors shift signal conversion outside the IED to avoid wire noise, surge risk, and added meter complexity.
Plastic optical fiber and plug-in support boxes simplify home automation control while enabling finger-touch wearable hearing aid operation.
A multiplexer and link-analysis chip switch optical fiber channels between DP and USB modes, improving USB-C cable compatibility across use scenarios.
Optoelectronic co-packaged modules on a fiber optic bus cut wiring weight and EMI while avoiding attenuation at signal nodes.
Channel flags and absolute or relative update values cut serial data load for multi-channel dimming setting updates.
Pulsed laser signaling and impedance matching enable PCIe receiver detection and electrical idle states across isolated optical fiber links.
Modular optical interfaces unite aircraft sensors and actuators in one photonic network, reducing integration complexity, cabling weight, and SWaP.
This case uses visible light, multicore fibre, lens arrays, and simple modulation for parallel, lower-cost data transmission.
A Type-C active optical cable analyzes link information to select optical channels and switch between DP and USB modes.
Micro-LED arrays, analogue encoding, and optical filtering support longer-distance data transmission through multicore fibre.
A dispersive filter and CMOS photodetector array support parallel visible-light channels while reducing chromatic dispersion.
This case uses a single-axis lens with visible-light arrays to align parallel channels in multicore fibre while reducing cost.
A moving body communication system uses optical fibers to transfer data directly between internal and external networks without signal conversion.
A photoelectric conversion unit transforms unmultiplexed optical signals into electric power for reuse within the network.
A single-fiber bidirectional optical CAN bus replaces copper wiring with plastic optical fibers and a passive reflective star to reduce aircraft assembly weight.
Shaper control logic dynamically adjusts rates across access modules to resolve bandwidth allocation fairness disparities under varying load conditions.