Tapered optical adapter increases acceptance angle for directional free-space optical communication.
Orbital angular momentum modulators apply predetermined twists to input optical beams for high-bandwidth data transmission.
An optical combiner merges two polarized beams into a single output stream using reflective surfaces to adjust polarization states.
A bidirectional optical circulator aligns transmit and receive paths, reducing cross-talk and blind-spots for accurate spatial profile estimation.
Cross-phase modulation transfers ultraviolet temporal data onto a strong pump laser, amplifying weak signals from insensitive Radsensors.
FSO transmitter emits orthogonally encoded overlapping beacons detected by a receiver sensor to determine position and orientation.
A common-mode adjustment circuit tunes input current to maintain signal quality in optoelectronic receivers.
Two-dimensional photodiode array at the focal plane sums photocurrents to expand detection area.
A universal transmission algorithm handles cross-technology compatibility while segmentation manages the resulting structural complexity.
A VCSEL transmitter controller adjusts bias current and modulation depth based on temperature sensing to maintain optimal operating conditions.
An image sensor captures target surface figures to guide a deflector, eliminating slow light intensity monitoring for faster alignment.
Modulating illumination light with data signals enables bidirectional communication among multiple ToF cameras, reducing interference without adding hardware.
Shared baseband processing modulates both radio and optical signals, eliminating separate hardware to maintain communication reliability during path failures.
Adaptive data rate processor monitors optical signal power levels and dynamically adjusts modem sensitivity.
A transmitter module sends optical pulses with varying magnitudes to a receiver module containing optical signal detectors.
Image sensors detect optical beacons to guide beam sweeping, reducing latency and computing resources during initial acquisition.
A femtosecond laser optical comb generates coherent frequencies to pre-distort transmitted light signals.
Transmits authentication credentials through light emission control signals to bypass complex Bluetooth pairing processes.
Concentric circular element placement eliminates grating lobes and reduces device area while maintaining high performance.
Active metasurfaces replace bulky free-space optics, reducing device weight while maintaining retroreflection reliability.
A ball lens focuses spatial optical signals onto a light receiving element array with integrated amplifier circuits for efficient signal capture.
A scintillation generator uses two deformable mirrors to simulate aero-optical turbulence in a laboratory setting.
Offset incidence angles on tunable metasurfaces suppress sidelobes, boosting signal-to-noise ratio in lidar systems.
An optical delay line interferometer modulates signals to high frequencies using block coding and filtering techniques.
A phase-modulation spatial light modulator uses alternating transmittable and pause intervals to control signal light direction without mechanical gimbals.
A frequency gradient metasurface generates stable optical beams via phase control.
Tilt mirrors couple collimated light to optical collimators, eliminating complex fiber routing and reducing device complexity.
An imaging transmitter uses pixel controllers to select light sources and project collimated beams into desired directions.
A single-polarization receiver decodes pulse position modulation symbols to recover independent data streams.
Dynamic alignment control compensates for mechanical vibrations and thermal shifts in free-space optical transmission.
An optical weighting receiver uses upstream pulse shaping to reject noise and improve detection sensitivity.
Transmitter embeds dynamical state into sub-codes, enabling receiver to determine range without direct communication links.
Electronic beam steering via a digital micromirror array eliminates heavy mechanical gimbals, reducing system weight while maintaining imaging stability.
Annular reflectors redirect modulated light through a diffusion transmitter, enabling large beam diameter expansion in any horizontal direction.
A photonic integrated circuit uses controllable arms with electro-optic modulators to correct optical signal timing.
A modulated retro reflector sends feedback by reflecting and modulating an incoming optical beam without a dedicated transmitter.
A photonic channelization system uses spectral phase masking and optical phase-sensitive amplification to convert wideband radio frequency signals into narrowband channels.