A front-end module calculates intermodulation distortion using duty cycling and digital signal analysis.
A multi-dimensional symbol constellation combines quadrature amplitude modulation with transpositional signals to expand data capacity.
A signal equalizing receiver processes OFDM symbols with pseudo-extensions to form overlapped compound blocks.
A User Equipment detects interference signals using pre-configured transmission parameters to apply Network Assisted Interference Cancellation and Suppression technology.
Segmented resource units with dynamic subcarrier allocations reduce interference in high-density deployments while maintaining legacy hardware compatibility.
Variable impedance coupled with a delta-sigma modulator controls antenna reflection to transmit arbitrary signals and eliminate data collisions in RFID systems.
Dynamic waveform selection resolves the trade-off between peak-to-average power ratio and spectral efficiency by analyzing scheduling grant parameters.
A Bluetooth terminal controller detects connected device configuration parameters to select optimal transmission modes and packet types for audio data.
A 60 GHz wireless device selects single-carrier or OFDM modulation based on power availability to conserve energy.
A hardware configurator automatically determines optimal configuration settings for wireless devices by executing subroutines based on user-defined parameters.
A terminal adapts uplink and downlink slot patterns using a reference subcarrier spacing for Faster-Than-Nyquist modulation.
A hybrid transmitter chain combines deep neural networks with static algorithm modules to generate modulated signals from encoded bits.
Baseband capability parameters scale modulation orders to signal 1024QAM support, reducing signaling overhead in carrier aggregation.
A supplemental modulator injects timing signals into carrier waves via controlled distortion, enabling synchronization without violating protocol compliance.
Non-CAZAC pilot sequences improve receiver identification by minimizing correlation, reducing power consumption in M2M networks.
Segmented EHT preambles resolve legacy compatibility trade-offs by enabling dynamic resource unit allocation for efficient multi-device scheduling.
A medical device communication interface translates patient parameters across diverse formats using dynamic configuration adjustments.
Hybrid modulation coding scheme tables allow user equipment to switch waveforms implicitly, reducing reconfiguration latency and preventing link interruptions.
A wireless transmission device arranges in-phase and quadrature spreading chips across separate domains to combine signals for improved reception.
Combining MU-MIMO spatial streams with OFDMA sub-channels in one packet increases throughput while reducing traffic volume between access points and terminals.
A variable length header identifies changed waveform parameters, resolving synchronization loss during type transitions.
Configures user equipment to support 64 QAM via capability signaling, resolving spectral efficiency limits in coverage enhanced modes.
Micro execution slots divide processing tasks to resolve the trade-off between hardware speed and adaptability across multiple demodulation standards.
Modifying MIMO channel matrices via modulation schemes enables accurate magnitude and phase extraction without increasing processing complexity.
Terminals select CP-OFDM or DFT-s-OFDM via preset rules to resolve selection complexity.