Master wireless and RF protocol implementation in silicon - WiFi, Bluetooth, cellular baseband, and RF transceiver design.
IEEE 802.11 a/b/g/n/ac/ax MAC layer implementation, OFDM modulation, and WiFi chip design.
Bluetooth Low Energy (BLE), classic Bluetooth baseband processing, and RF protocol stacks.
LTE/5G baseband processors, modem design, and cellular protocol implementation in silicon.
Digital front-end design, ADC/DAC interfaces, and RF transceiver control logic implementation.
Digital signal processing for wireless, FFT/IFFT engines, and baseband signal processing chains.
Hardware-software partitioning, protocol accelerators, and baseband-to-application interfaces.
Multiple antenna systems, spatial diversity, and beamforming algorithm implementation.
Wireless security protocols, hardware encryption engines, and secure wireless communication.
Phase-locked loops (PLLs), clock recovery circuits, and timing synchronization in wireless systems.
RF power control, dynamic voltage scaling, and power-efficient wireless transceiver design.
Built-in self-test for RF, calibration algorithms, and production test interfaces.
Machine learning for wireless optimization, intelligent beamforming, and adaptive protocols.
Wireless subsystem integration, coexistence management, and multi-radio SoC design.
RF front-end interfaces, antenna tuning, and impedance matching in silicon.
UVM testbenches for wireless protocols, RF simulation models, and system-level verification.
IEEE 802.11, Bluetooth SIG, 3GPP compliance, and wireless certification requirements.
Forward error correction, turbo codes, LDPC implementation, and channel coding hardware.
Multi-band operation, carrier aggregation implementation, and wideband transceiver design.
Large-scale antenna arrays, spatial multiplexing, and massive MIMO baseband processing.
Millimeter-wave transceivers, 60GHz systems, and high-frequency wireless implementations.
Wireless-to-Ethernet bridges, protocol conversion, and wireless interface adaptation.
Proprietary wireless protocols, custom modulation schemes, and application-specific wireless design.
Wireless mesh protocols, multi-hop communication, and distributed wireless architectures.
Low-latency wireless systems, deterministic protocols, and time-critical wireless applications.