FPGA chip background
Development platforms

Silicon
Expertise

We focus on AMD/Xilinx's most advanced programmable platforms. Deep expertise in these architectures enables us to extract maximum performance for your application.

256+

Element phased arrays deployed

Gen 1-3

RFSoC generations supported

<1μs

Beam steering latency

24/7

Mission-critical deployments

Adaptive Compute Acceleration Platform

Xilinx Versal

The Versal architecture represents a paradigm shift in programmable devices, combining scalar processing engines, adaptable hardware, and intelligent engines in a single platform.

We leverage the Versal ACAP for applications requiring heterogeneous compute: AI inference alongside traditional DSP, high-speed networking with custom packet processing, or any workload demanding the combination of software flexibility and hardware performance.

Device Families We Support

Versal AI Core

Maximum AI Engine density for ML inference and advanced DSP

Versal Prime

Balanced architecture for general-purpose acceleration

Versal Premium

Highest I/O bandwidth for networking and data center

Key Architecture Features

AI Engine Array

VLIW/SIMD vector processors optimized for matrix math, FIR filtering, and FFT operations. Up to 400 AI Engines delivering 100+ INT8 TOPS.

Programmable Network-on-Chip

Deterministic, high-bandwidth interconnect between processing elements. QoS guarantees for real-time data movement.

Hardened Memory Controllers

Integrated DDR4/LPDDR4 and HBM controllers with ECC. Bandwidth exceeding 400 GB/s with HBM configurations.

PCIe Gen5 & CCIX

Native support for the latest high-speed interfaces. Cache-coherent interconnect for tight CPU-FPGA integration.

Common Applications

5G massive MIMO baseband processingReal-time AI inference at the edgeHigh-frequency trading accelerationVideo transcoding and analyticsGenomics sequence alignmentRadar and electronic warfare
Direct RF Integration

Zynq UltraScale+ RFSoC

Purpose-built for software-defined radio, the RFSoC integrates RF-class data converters directly into programmable logic, eliminating the need for external ADC/DAC chips and their associated complexity.

We specialize in RFSoC-based systems for defense, telecommunications, and scientific instrumentation. The integrated RF sampling architecture enables system designs that were previously impossible or impractical with discrete components.

Device Families We Support

RFSoC Gen 3

Latest generation with up to 16 ADC/DAC channels at 5+ GSPS

RFSoC DFE

Digital Front-End optimized for 5G radio units

RFSoC Gen 1/2

Proven platforms for cost-sensitive applications

Key Architecture Features

Integrated RF-ADC/DAC

Up to 14-bit ADCs sampling at 5 GSPS and 14-bit DACs at 10 GSPS. Direct RF sampling eliminates mixing stages.

SD-FEC Cores

Hardened LDPC and Turbo encoders/decoders for 5G NR and LTE. Line-rate processing without consuming PL resources.

Arm MPSoC Subsystem

Quad-core Cortex-A53 application processor plus dual Cortex-R5F real-time cores. Full Linux support with PYNQ compatibility.

Programmable Logic

UltraScale+ architecture PL with DSP48E2 slices, UltraRAM, and high-speed transceivers for custom signal processing.

Common Applications

Software-defined radio platformsPhased array radar systems5G/LTE small cells and radio unitsSpectrum monitoring and SIGINTTest and measurement equipmentQuantum computing control systems

Have a Versal or RFSoC project in mind?

Whether you are starting fresh or need help optimizing an existing design, our deep platform expertise can accelerate your development.

Discuss Your Project