sSDR Achieves X-Band Operation up to 11 GHz
sSDR development reaches X-band operation with upgraded RF matching, PCIe Gen3 x4, and UltraScale+ FPGA architecture.
All newsWe design and build advanced SDR, DSP and embedded systems — delivering integrated hardware and software platforms for telecom, sensing, and real-time RF applications.
Used by engineering teams developing next-generation wireless, RF sensing, and signal intelligence systems.
Wavelet Lab is an engineering company specializing in digital signal processing (DSP), software-defined radio (SDR) and embedded systems for demanding RF environments.
We combine RF design, FPGA acceleration, embedded software, and real-time signal processing into tightly integrated hardware and software platforms.
From concept and system architecture to manufacturing and deployment, we deliver complete end-to-end solutions.

Wavelet Lab develops scalable SDR systems for distributed RF sensing, spectrum monitoring, and real-time signal analysis — from embedded edge nodes to synchronized multi-device deployments.
Embedded hardware scaling from a single node to distributed multi-SDR arrays — same stack, any aperture.
Networks of synchronized SDR nodes for distributed spectrum monitoring and RF event detection.
Intuitive WebSDR platform to build RF and SIGINT pipelines from predefined processing blocks — no recompile, no downtime.
AI-assisted workflow creation and agents for anomaly detection and deep signal analysis using OoB data and recorded context.
Rapidly deployable, adaptive SIGINT and RF sensing systems.
One coherent stack across software, FPGA, and system performance — shared across every Wavelet Lab SDR.
Product launches, platform updates and research milestones from across the team.
sSDR development reaches X-band operation with upgraded RF matching, PCIe Gen3 x4, and UltraScale+ FPGA architecture.
All newsA scalable SDR ecosystem spanning embedded, wideband, and distributed RF platforms — unified by shared FPGA and software Platform.

uSDR is designed for embedded RF systems where size, power, and integration matter. It combines RF front-end, FPGA processing, and high-speed interfaces in a compact M.2 form factor — enabling direct integration into compute platforms, edge devices, and custom hardware.

xSDR is a compact embedded SDR platform integrating dual RX/TX channels, FPGA-based processing, and high-speed interfaces into an M.2 form factor. Designed for multi-channel RF systems, wireless Platform, and advanced signal processing applications.

sSDR is a compact wideband SDR platform combining extended RF coverage, FPGA acceleration, and high-speed host interfaces in an embedded M.2 form factor. Designed for advanced wireless Platform, spectrum monitoring, radar research, and distributed RF systems. From embedded wireless Platform to high-performance RF sensing systems.

dSDR is a direct-sampling embedded SDR platform for high-channel-count, phase-coherent RF systems. Its architecture minimizes LO leakage and IQ imbalance while improving linearity, phase noise, and integration flexibility. Designed for massive MIMO, wideband RF acquisition, and Platform-grade signal processing deployments.

xMASS combines synchronized SDR nodes, FPGA-accelerated processing, and deterministic timing infrastructure into a scalable RF platform for coherent acquisition, beamforming, and distributed wireless experimentation. The modular architecture enables compact synchronized SDR deployment while supporting scalable MIMO workflows, distributed sensing systems, and real-time RF experimentation.

dMASS extends the dSDR platform into scalable distributed RF infrastructure with synchronized multi-node acquisition, high-throughput transport, and phase-coherent operation for geolocation, massive MIMO, and distributed sensing systems. The architecture enables deterministic synchronization across M.2 2242 SDR nodes while supporting scalable RF acquisition, FPGA-accelerated processing, and real-time infrastructure deployment.
Explore the full SDR platform catalog and accessories.
From wideband acquisition to geolocation, synchronized SDR systems and FPGA-accelerated DSP enable real-time RF sensing and signal analysis.
Continuous wideband acquisition and analysis across HF through Ku-band environments.
Time- and frequency-difference of arrival across distributed nodes synchronized via White Rabbit timing.
Real-time modulation recognition and emitter fingerprinting with ML-assisted classifiers running on FPGA.
Continuous wideband sweep from HF to Ku-band edge — capture, decode and persist for forensic analysis.
Advanced SDR and signal processing platforms for research, prototyping, and mission-critical RF systems.
Advanced SDR and signal processing platforms for research, prototyping, and mission-critical RF systems.
Robust wireless links and sensor fabrics for plant floors.
Passive monitoring, geolocation, EW research tools.
Custom SDR/DSP platforms for advanced programs.
Deployable SDR infrastructure for Open RAN, private cellular systems, and next-generation wireless network development.
End-to-end private 5G platform integrating RU, DU, synchronization, and SDR infrastructure with support for srsRAN, Amarisoft, and high-bandwidth wireless experimentation.
TDOA , FDOA Geolocation, and Direction Finding across synchronized Multi-Node SDR networks and Coherent SDR Arrays.
Integrated engineering across RF, FPGA, embedded systems, and real-time signal processing.
Integrated SDR systems spanning RF front-end design, FPGA processing, embedded compute, and deployment-ready hardware.
Coherent timing and synchronization for distributed SDR arrays and multi-node RF systems.
High-throughput pipelines on Xilinx and Intel — deterministic, low-latency.
Linux, Yocto, FreeRTOS, drivers and production firmware delivery.
Wideband RF architectures including filtering, amplification, synchronization, and signal conditioning.
Coherent timing and synchronization systems for distributed and multi-node SDR architectures.
Integration of RF, FPGA, networking, and embedded systems into deployment-ready platforms.
Design-for-manufacturing workflows, validation Platform, production transition, and deployment-ready system preparation.
Direct access to the engineers designing and deploying the systems.
Unified SDR platform family · WebSDR + FPGA acceleration · Wireless and RF sensing systems
contact@wavelet-lab.com
Wavelet Lab
Boston, MA
US · GMT-4