FPGA Engineer | Low Latency Trading

Westren Capital

Greater London

Hybrid

GBP 32,000 - 52,000

Full time

14 days+

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Job summary

Westren Capital is a London-based trading firm seeking penultimate or final-year students or graduates to join the FPGA team. You will design and optimise ultra-low-latency FPGA pipelines, using SystemVerilog and high-performance languages to ship real market-facing code.

We value curiosity, practical software and hardware work, and the ability to work across hardware and software in production environments. London-based, with exposure to cutting-edge trading technology.

Qualifications

  • Penultimate or final-year student pursuing a Bachelor’s, Master’s, or PhD in Engineering, Computer Science, Electrical Engineering, or a related field, on track for a 2:1 or above from a leading institution.
  • Demonstrated interest in technology through real work or side projects.
  • Exposure to HDL such as SystemVerilog, Verilog, or VHDL.
  • Programming ability in C++ and/or Python that goes beyond syntax.

Responsibilities

  • Work on live FPGA pipelines and low-latency systems used in trading.
  • Design and optimise FPGA pipelines where latency is measured and reduced.
  • Use SystemVerilog, C++, and Python to build and validate high-performance systems.
  • Collaborate with quants and software engineers to integrate hardware with trading software.
  • Debug, profile, and refine systems to meet timing and resource constraints.
  • Work with state-of-the-art FPGA hardware and toolchains.
  • Contribute to ongoing R&D toward pushing physical limits of execution.

Education

Engineering
Computer Science
Electrical Engineering

Tools

Xilinx Vivado
Intel Quartus

Job description

Westren Capital is a London-based proprietary trading firm specialising in digital asset markets. We develop trading technology in-house, and this role sits on the low-latency execution path. We hire from Mathematics, Physics, Computer Science and related fields, not for credentials, but for the ability to reason clearly under uncertainty and build things that work in production. Our work sits at the intersection of statistical modelling, market microstructure, and engineering. The aim is straightforward, if not easy: extract durable signals from noisy data and convert them into scalable, risk-aware strategies. That requires intellectual honesty, a tolerance for ambiguity, and a willingness to discard ideas that do not survive contact with reality. We operate in small, highly collaborative teams where research, engineering, and trading are tightly coupled. Outcomes matter. Not narratives, not backtests that look good in isolation, but strategies that hold up live. Compensation and progression reflect that directly. Beyond trading, we invest in building internal tools, data infrastructure, and research workflows that compound over time. The edge is rarely a single idea; it is the system that produces and evolves ideas faster than others.

Throughout the recruitment process, we don’t shuffle you into teams like pieces on a board. We map your edge. Skills, instincts, tolerance for pressure. Then place you where that edge compounds. The FPGA team at Westren builds the layer where time actually matters. Not in theory, not in backtests, but in nanoseconds that decide whether you trade or watch someone else take it. We design ultra-low-latency hardware systems that sit directly in the critical path of our trading stack. Custom logic on cutting-edge FPGA devices, tuned until there’s nothing left to remove. This is not “hardware vs software.” It’s both, collapsed into one surface. SystemVerilog where cycles are carved out, C++ and Python where control, testing, and orchestration live. The outcome is simple: market data in, decisions out, faster than the rest of the street. As an intern or graduate in the FPGA team, you will:

Responsibilities
  • Work on live trading systems. Not toy problems. Code that ships, signals that route, decisions that execute.
  • Design and optimise FPGA pipelines where latency is measured, hunted, and reduced relentlessly.
  • Use SystemVerilog, C++, and Python to build and validate high-performance systems under real market conditions.
  • Implement and verify features that directly improve market data handling and order execution speed.
  • Collaborate tightly with quants and software engineers, because speed without strategy is just noise.
  • Debug, profile, and refine systems where inefficiency is not tolerated, only removed.
  • Work with state-of-the-art FPGA hardware and toolchains used in modern HFT environments.
  • Contribute to ongoing R&D as we push closer to physical limits of execution.
Requirements
  • Penultimate or final-year student pursuing a Bachelor’s, Master’s, or PhD in Engineering, Computer Science, Electrical Engineering, or a related field, on track for a 2:1 or above from a leading institution. We don’t fetishise grades, but they tend to signal you can handle non-trivial systems without falling apart.
  • Demonstrated interest in technology through real work. Software builds, hardware tinkering, side projects that went wrong before they went right. Formal Computer Science training is optional. Evidence of curiosity is not.
  • Exposure to HDL such as SystemVerilog, Verilog, or VHDL, with a working sense of how designs translate into actual hardware behaviour.
  • Programming ability in C++ and/or Python that goes beyond syntax. You should be able to build, test, and iterate without hand-holding.
  • Understanding of digital logic design, computer architecture, and the practical challenges of high-speed data movement. At some point, theory has to meet timing constraints.
  • Familiarity with FPGA toolchains like Xilinx Vivado or Intel Quartus is useful. If you haven’t used them, you’ll be expected to get productive quickly.
  • Strong analytical and problem-solving ability. You debug methodically, optimise deliberately, and treat latency, resource usage, and power as real constraints, not academic concepts.
  • Proactive and curious mindset. You ask questions early, challenge assumptions when needed, and close knowledge gaps without waiting to be told.
  • Entrepreneurial, self-motivated, and results-driven. You take ownership, push work forward, and care about whether the system performs, not whether the process looked neat on paper.
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