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Armtronics

FPGA Design and Development

We design logic that has to run in hardware, not just in simulation — from architecture through to timing closure on real silicon. Every module is verified against its specification before it's synthesized, so what lands on the FPGA behaves the same way it did in simulation, without surprises appearing only after hardware bring-up.

Illustration of FPGA chips powering a solar and wind energy grid

Our FPGA Offer

From a block diagram to a bitstream that meets timing on real hardware.

  • RTL design (VHDL/Verilog)
  • Verification & simulation
  • Timing closure & optimization
  • IP core integration
  • FPGA-to-ASIC migration path
  • Hardware-software co-design

Our FPGA Design Process

A disciplined path from a block diagram to logic that closes timing on real hardware.

1

Requirements & architecture planning

We start from the timing, resource, and interface constraints of your board, then plan the FPGA architecture around them, not the other way around.

2

RTL design & module partitioning

Logic is broken into clear, testable modules in VHDL or Verilog, so each block can be verified on its own before it's integrated.

3

Simulation & verification

Every module is simulated against its specification before it ever touches real hardware, catching logic errors while they're still cheap to fix.

4

Synthesis & timing closure

We synthesize against the target device and iterate until timing actually closes, not just until the tool stops complaining.

5

Hardware bring-up & validation

The design is loaded onto real silicon and validated against the original requirements, with a logic analyzer on the signals that matter.

6

Documentation & handoff

You receive the RTL source, constraints, and test results — a design you can maintain yourself, not one locked behind us.

Robotic hand holding an Armtronics FPGA chip

Why Armtronics?

FPGA work only pays off if it's fast, transparent, and stays yours when the project is done.

  • One team for FPGA logic and the firmware around it — no interface guesswork between vendors.
  • Fast iteration on real hardware, not just simulation waveforms.
  • Full RTL source and documentation handed over — nothing locked in a proprietary toolchain.
  • Engineering since 2018 across automotive, medical, industrial, and IoT products.
  • Direct access to the engineers writing your RTL, not an account manager relay.

Types of FPGA We Work With

We pick the silicon based on your requirements, not around a single vendor we're locked into.

  • Xilinx / AMD (Artix, Kintex, Zynq)
  • Intel / Altera (Cyclone, Arria, Stratix)
  • Lattice (iCE40, ECP5)
  • Microchip / Microsemi (PolarFire)
  • SoC FPGAs (Zynq / Cyclone SoC)
  • Low-power & edge FPGAs