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Remote Fpga Trading Jobs in Virginia (NOW HIRING)

Senior FPGA Engineer

Herndon, VA · On-site +1

$91K - $159K/yr

This position is based out of our Herndon, VA location with the option of a remote work schedule ... Ability to plan/perform analysis, studies/trade-offs in support of subsystem specification and ...

Senior FPGA Engineer

Herndon, VA · On-site +1

$91K - $159K/yr

This position is based out of our Herndon, VA location with the option of a remote work schedule ... Ability to plan/perform analysis, studies/trade-offs in support of subsystem specification and ...

Remote Fpga Trading information

What is a remote FPGA trading?

A Remote FPGA Trading job involves designing, developing, and maintaining FPGA (Field Programmable Gate Array) hardware systems to accelerate trading strategies for financial firms. Professionals in this role work remotely to create low-latency, high-frequency trading solutions that can process and execute trades faster than traditional software-based systems. They collaborate with traders and software engineers to optimize algorithms and ensure the trading infrastructure remains competitive and reliable. This position requires expertise in hardware description languages, electronic engineering, and an understanding of financial markets.

What are the key skills and qualifications needed to thrive as a remote FPGA trading engineer?

To thrive as a Remote FPGA Trading Engineer, you need expertise in FPGA design, digital logic, and high-frequency trading concepts, typically supported by a degree in electrical engineering or computer science. Familiarity with tools like Verilog/VHDL, Xilinx or Altera toolchains, and network protocols is essential, along with experience in low-latency systems. Outstanding problem-solving skills, attention to detail, and effective remote communication set standout professionals apart in this field. These skills are critical for optimizing trading algorithms, ensuring system reliability, and maintaining a competitive edge in fast-paced financial markets.

How do remote FPGA trading professionals typically collaborate with quantitative analysts and software developers?

Remote FPGA Trading professionals often work closely with quantitative analysts to understand trading strategies and translate them into efficient hardware solutions. Collaboration usually involves regular virtual meetings, code reviews, and shared documentation to ensure alignment on project goals. FPGA engineers also interact with software developers to integrate hardware modules with trading platforms, requiring clear communication and version control practices. This multidisciplinary teamwork is essential for creating low-latency, reliable trading systems in a remote environment.

What is the difference between Remote Fpga Trading vs Remote Quantitative Trading?

AspectRemote Fpga TradingRemote Quantitative Trading
Required CredentialsEngineering degree, FPGA/Hardware knowledgeMathematics, Statistics, Programming skills
Work EnvironmentHardware development, FPGA programming, low-latency systemsData analysis, algorithm development, software tools
Employer & Industry UsageFinancial firms, trading firms focusing on hardware accelerationHedge funds, trading firms using algorithms and data models

Remote Fpga Trading involves hardware engineering and FPGA programming to optimize trading systems, while Remote Quantitative Trading focuses on developing algorithms and data models for trading decisions. Both roles are integral to high-frequency trading but differ in technical focus and skill sets.

What cities in Virginia are hiring for Remote Fpga Trading jobs?

Cities in Virginia with the most Remote Fpga Trading job openings:

Senior FPGA Engineer

iDirect GOVERNMENT

Herndon, VA • On-site, Remote

$91K - $159K/yr

Full-time

Re-posted 10 days ago


Job description

Overview

iDirectGov's hubs, satellite routers and network management software address the growing complexity of deploying and managing global IP networks. iDirect Government's specialized technology includes transmission security (TRANSEC), Communication Signal Interference Removal (CSIR) anti-jam technology and Open Antenna Modem Interface Protocol (OpenAMIP). We bring innovation, integration and intelligence to satellite-based IP communications that government and military organizations trust. By providing quality certifications with the most bandwidth-efficient, scalable and highly secure platform, we have rapidly become the technology provider of choice for military and government-driven mission-critical applications. 

Responsibilities

We are seeking a team player with solid technical skills to work with our team of smart, creative, and dedicated engineering team-members. This position is based out of our Herndon, VA location with the option of a remote work schedule.

  • Designing and testing complex, high speed, FPGA designs
  • Designing and supporting top-level simulations
  • Translating requirements into FPGA architectures
  • Implementing and documenting FPGA designs using HDL (System Verilog, VHDL, etc.)
  • Supporting system integration and Test Engineering to produce functional design
  • Implementing and contributing to the architecture of next generation satellite communication systems such as DVB-S2X, LPI/LPD, 5G-NR, etc.
  • Designing the implementations for further advances in adaptive TDMA, SCPC return channels, including modeling and design of algorithms for real time embedded system implementation and Anti-Jam technologies
  • Supporting integration of FDMA and TDMA waveforms
  • Creating test plans to assure integrated performance meets specification
  • Writing internal and external facing documents about iDirect Government physical layer FPGA technology
  • Producing simulations of and designs for communication channels enabling the study of both channel improvement measures, such as pre-distortion/pre-coding as well as overall satellite communication system efficiency
Qualifications
  • 8+ years of related experience
  • FPGA design experience using Verilog/System Verilog or VHDL languages targeting Xilinx/Altera FPGA's
  • FPGA design experience with physical synthesis, static timing analysis, formal verification, power analysis, and other DRC centric tools
  • Experience with ModelSim/QuestaSim simulation tools
  • Experience with Altera/Xilinx development tools
  • Demonstrated ability to verify digital logic designs with System Verilog
  • Demonstrated understanding in timing closure, clock domain crossings, etc.
  • Understanding of Software Defined Radio (SDR) in regards to abstracting hardware
  • Experience with HW PCB tools, and HW test equipment to find and debug interfaces at a physical level
  • Ability to plan/perform analysis, studies/trade-offs in support of subsystem specification and hardware, FPGA and software design recommendations
  • Comfort working closely with HW/RF engineering specialties on design and configuration for RF communication systems
  • Experience in writing low-level test software such as C/C++, LabView, Python, etc.
  • Experience in Digital Signal Processing on FPGAs and SDR waveform implementation
  • Experience in SoC multi-processor designs specifically: Xilinx Zynq MPSoC, Xilinx Versal, Altera SoC FPGA
  • Experience with JTAG, DAC/ADC functional and RF parametric test development
  • Experience with high-speed interfaces such as JESD-204C, 10/40G Ethernet, Aurora, etc.
  • Familiarity in RF chain design and considerations
  • RF measurement experience and use of RF test and measurement Equipment such as Spectrum Analyzers, Network Analyzers, signal generators, etc.
  • Experience with both Altera and Xilinx design and verification tools

Additional experience in the following areas is a plus:

  • Experience with various control loops
  • Experience with FPGA Direct Memory Access IP (i.e. Xilinx DMA Engine or similar)
  • Experience with IEEE 1588/PTP networking
  • Experience implementing DSP algorithms in RTL
  • Experience with modulators/demodulators, forward error correction, adaptive channels, anti-jam algorithms, etc.
  • Familiarity with Networking, TCP/IP, UDP, DHCP, etc.
  • Experience with Xilinx and/or Altera high level synthesis tools
  • Experience with Matlab/Simulink or equivalent for development of DSP algorithms implemented in FPGA's
  • Experience implementing DSP algorithms in System Generator or similar tools
  • Satellite Communication experience
  • Familiarity with Linux driver development or usage

Education: Bachelor's degree (BA/BS) in Electrical Engineering, Computer Engineering, or closely related field (must be from accredited college or university); MSEE/MSCE preferred

Clearance: Active DoD security clearance or ability to obtain a secret level DoD clearance.

Travel: 0-10%

Pay Range: $91,053 -$159,370

The iDirect Government salary range for this position is intended to provide a general guideline for compensation. Actual compensation may vary based on factors including, but not limited to, the duties and responsibilities of the role, education, experience, knowledge, skills, abilities, internal equity, market data, applicable collective bargaining agreements, and other business or legal considerations. The posted range is not a guarantee of compensation.

iDirect Government is an Equal Opportunity / Affirmative Action employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, disability, sexual orientation, gender identity, or protected veteran status. 

Employment Type: FULL_TIME