Processing electronics combine ultrasound channel data using arithmetic means and adaptive weighting coefficients to remove common mode noise before beamforming.
An opto-mechanical system uses a segmented housing to separate the electronic control board from the mainboard for independent thermal and electromagnetic management.
Segmented thread engagement between the nut member and adapter base eliminates tool requirements while maintaining secure connection stability.
A processing system filters circulating contrast agents from ultrasound images using minimum intensity projection to isolate immobilized targets.
Synchronizes RF sensing with video frame periodicity to eliminate resource interference and reduce power consumption.
Integrating phase modulation and optical amplification into one quantum dot device reduces component count while maintaining high-speed beam steering.
Hierarchical partitioning algorithms classify radar pulses by frequency and arrival time distributions to separate overlapping signals.
Segments scanning lines by beamforming parameters into homogeneous sub-frames, preventing strict artifacts caused by inconsistent line properties.
A MEMS mirror array uses hybrid electromagnetic actuation to rotate mirrors across two orthogonal axes.
Beam splitters divide reflected light into separate optical paths to support high and low intensity targets simultaneously.
Segmenting a stacked image sensor with a metal mesh light pipe resolves the trade-off between device complexity and spectral response capability.
A portable monitor uses hybrid location techniques to track survey participants for media exposure analysis.
Sliding an optical diffuser into the beam path reduces laser intensity, resolving eye safety risks without permanent structural complexity.