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High Frequency Trading Software Engineer Jobs in Michigan

Senior Software Engineer

Milford, MI · Hybrid

$107K - $142K/yr

Define a high-level architectural design for the software owned by the Agile Release Train (ART ... C/C++ programming language; Embedded controls, software architectures, and design trade offs;

Software Engineer

Ypsilanti, MI · On-site

$103K - $217K/yr

Software Engineer Job Category: Engineering Time Type: Full time Minimum Clearance Required to ... As a valued team member, you'll be part of a high-performing group dedicated to our customer ...

Software Engineer

Ypsilanti, MI · On-site

$86K - $181K/yr

Software Engineer Job Category: Engineering Time Type: Full time Minimum Clearance Required to ... As a valued team member, you'll be part of a high-performing group dedicated to our customer ...

Software Engineer #1061156 * Employees in this job function are responsible for designing ... Create high-level software architecture designs that outline the overall structure, components, and ...

By leveraging deep technical expertise and a collaborative mindset, you will deliver high-quality software solutions that improve engineering productivity, increase delivery velocity, and drive ...

Showing results 41-60

High Frequency Trading Software Engineer information

See Michigan salary details

$55.3K

$128.6K

$179.1K

How much do high frequency trading software engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for high frequency trading software engineer in Michigan is $128,581.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,600.00 and $150,800.00 per year, depending on experience, location, and employer.

What are the typical daily responsibilities of a high frequency trading software engineer?

A High Frequency Trading Software Engineer typically spends their day designing, coding, and optimizing low-latency trading algorithms and infrastructure. They work closely with quantitative analysts to implement and fine-tune trading strategies, as well as monitor system performance and troubleshoot issues in real-time. Collaboration with other engineers and traders is common to quickly adapt to market changes and deploy enhancements. This role often requires attention to detail and rapid problem-solving, as even microseconds of improvement can significantly impact trading results.

What is a high frequency trading software engineer?

A High Frequency Trading (HFT) Software Engineer designs, develops, and optimizes trading algorithms that execute transactions in financial markets within microseconds or milliseconds. They work with low-latency networks, high-performance computing, and programming languages like C++ or Python to improve trading speed and efficiency. The role requires deep knowledge of computer architecture, multi-threading, and real-time systems. Engineers collaborate with quantitative researchers and traders to implement and enhance strategies. Their main goal is to minimize latency and maximize profitability by continuously refining the trading infrastructure.

What are the key skills and qualifications needed to thrive as a high frequency trading software engineer?

To thrive as a High Frequency Trading Software Engineer, you need advanced proficiency in low-latency C++ or Java development, strong quantitative and analytical skills, and a background in computer science, mathematics, or a related discipline. Familiarity with trading platforms, financial markets, network programming, and performance profiling tools is highly valued, and some roles may prefer experience with Linux systems or certifications in finance or programming. Excellent problem-solving abilities, adaptability, and effective teamwork and communication skills set standout candidates apart. These competencies are vital to designing, optimizing, and maintaining the ultra-fast, reliable trading systems essential to competitive high frequency trading environments.

What are the most commonly searched types of High Frequency Trading Software Engineer jobs in Michigan? The most popular types of High Frequency Trading Software Engineer jobs in Michigan are:
What are popular job titles related to High Frequency Trading Software Engineer jobs in Michigan? For High Frequency Trading Software Engineer jobs in Michigan, the most frequently searched job titles are:
What job categories do people searching High Frequency Trading Software Engineer jobs in Michigan look for? The top searched job categories for High Frequency Trading Software Engineer jobs in Michigan are:
Infographic showing various High Frequency Trading Software Engineer job openings in Michigan as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $128,581 per year, or $61.8 per hour.

Research Engineer / Scientist

Optimal Inc.

Dearborn, MI

Contractor

Posted 10 days ago


Job description

Job Title:
Research Engineer / Scientist
Position Description:

Prognostics Research Engineer: Own the process for prognostic feature development from conceptual to feature deployment to our production vehicles. Pioneer Physics-Informed Machine Learning (PIML): Fuse first-principles physics modeling with advanced machine learning to develop hybrid, high-fidelity prognostic models that capture complex degradation behaviors across both EV and ICE powertrains. Architect Prognostics & RUL Frameworks: Design and deploy state-of-the-art prognostics models to accurately estimate the Remaining Useful Life (RUL) of critical vehicle subsystems, transforming noisy fleet data into actionable maintenance alerts. Deploy Edge Models in C++: Translate complex predictive models into highly optimized, low-latency C++ code, bridging the gap between cloud-based data science and resource-constrained on-board vehicle electronic control units (ECUs). Harness High-Frequency Signal Processing: Architect custom Digital Signal Processing (DSP) pipelines and time-series analytics to extract clean, high-frequency physical signatures from multi-sensor vehicle networks, isolating early-stage wear patterns before they manifest as failures. Design Multi-Sensor Fault Detection & Isolation (FDI): Develop and validate intelligent, multi-sensor anomaly detection frameworks capable of real-time Fault Detection and Isolation (FDI) to ensure vehicle safety, system redundancy, and fault-tolerant control. Apply Statistical Causal Inference: Leverage advanced statistical methods (including causal inference, multivariate analysis, ANOVA, and PCA) to differentiate between mere correlation and true physical root causes of component degradation across massive, connected vehicle fleets. Own the End-to-End Pipeline (HIL to Production): Direct the entire prognostic lifecycle-moving seamlessly from mathematical conceptualization and simulation in MATLAB/Simulink to physical validation on Hardware-in-the-Loop (HIL) benches, prototype vehicles, and ultimately to production vehicle deployment. Synthesize Deep Subsystem Domain Knowledge: Partner closely with EV and ICE component subject matter experts to translate deep physical domain knowledge (thermal, mechanical, chemical, and electrical) into robust on-board and off-board diagnostics. Build Scale with Big Data & Calibration Tools: Ingest and process large-scale telemetry data using Python, SQL, Spark, and Hadoop, while leveraging industry-standard calibration tools (such as ATI and ETAS) to fine-tune algorithms for real-world driving environments. Interact with subject matter experts to understand component/system functions, leverage existing connected vehicle data to model on-board and off-board prognostics algorithms. Operate cross-functionally to ensure successful code implementation on production vehicles.

Skills Required:
C++, ALGORITHMS, Data Science, Google Cloud Platform, Python, SQL, MATLAB modeling the ideal candidate would have leveraged the tools like SQL, data science methods and tools like python on our cloud platform (GCP) or any cloud platform to do modeling.

Experience Required:
Master's in Mechanical, Electrical, Computer Science, Computer engineering, Physics, Mathematics or related fields or a combination of education and equivalent experience
4+ years of experience of practicing statistical methods and their accurate application e.g. ANOVA, principal component analysis, correspondence analysis, k-means clustering, factor analysis, multi-variate analysis, Neural Networks, causal inference, Gaussian regression, etc.
3+ Experience with Python (and related modules), SQL Experience with embedded controls, onboard Diagnostic, Sensor Processing, General First Principles Physics Modeling and simulation using numerical computational tool (e.g. MATLAB, ATI, Simulink)
Experience with Digital Signal Processing (DSP) data structures, algorithms, and software engineering principles Self-motivated, strong analytical, excellent interpersonal and communication skills required

Experience Preferred:
PhD in Mechanical, Electrical, Computer Science, Computer engineering, Physics, Mathematics or related fields or a combination of education and equivalent experience
Experience in Dynamic Systems, Control, Robotics, Prognostics and Health Management Familiarity working with Automotive prognostics feature development using connected vehicle data.
2+ Experience in application of statistical and machine learning methods e.g., ANOVA, PCA, clustering methods, causal inference, time series forecasting, random forest, multi-variate analysis, neural networks, etc.
Expertise in open-source data science technologies such as Python, R, Spark, Hadoop, etc. acquired through college course work, online training and certification or project development.
Experience in software development for automotive controls with hands on experience using MATLAB for large scale data and understanding of programming fundamentals and experience with C++ programming in embedded environments.
ATI and ETAS calibration tool familiarity
Excellent verbal and written skills.
Highly credible in organizational, time management, decision making, and problem-solving skills.

Education Required:
Master's Degree

Education Preferred:
Doctorate

Additional Safety Training/Licensing/Personal Protection Requirements:
Additional Information :
***HYBRID / 4 days per week in the office*** Are you passionate about leveraging modern day data science methodologies/tools to study and predict the degradation or occurrence of a problem in a vehicle component/system? Would you love to accelerate our efforts to build amazing experiences and software products in the Connected Vehicles space - with data? We are seeking top-tier Applied Data Science professionals who are data driven, self - motivated and detail oriented to help develop and deliver breakthrough Prognostic Features.