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Hpc Engineer Jobs in Indiana (NOW HIRING)

Familiarity with HPC computing, MIL-STD communication protocols, V&V and Systems Engineering processes SAIC is a premier technology integrator providing full life cycle services and solutions in the ...

Familiarity with HPC computing, MIL-STD communication protocols, V&V and Systems Engineering processes Overview SAIC accepts applications on an ongoing basis and there is no deadline. SAIC ® is a ...

Manufacturing Engineer

Indianapolis, IN · On-site

$73K - $118K/yr

... areas using HPC and Production systems concepts and as needed with yield enhancement and to ... In lieu of an Engineering degree, 5 or more years of relevant experience in a manufacturing ...

Manufacturing Engineer

Indianapolis, IN · On-site

$69K - $89K/yr

... areas using HPC and Production systems concepts and as needed with yield enhancement and to ... In lieu of an Engineering degree, 5 or more years of relevant experience in a manufacturing ...

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Hpc Engineer information

See Indiana salary details

$22.8K

$102.7K

$163.7K

How much do hpc engineer jobs pay per year?

As of Aug 23, 2026, the average yearly pay for hpc engineer in Indiana is $102,727.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,500.00 and $127,000.00 per year, depending on experience, location, and employer.

What does an HPC engineer do?

An HPC (High-Performance Computing) Engineer designs, deploys, and optimizes high-performance computing systems used for intensive computational tasks. They work with parallel computing, cluster management, and performance tuning to ensure efficient processing of large-scale simulations, data analysis, and scientific research. Their role often involves configuring hardware, optimizing software, and troubleshooting issues to maximize system performance.

What are the key skills and qualifications needed to thrive as an HPC engineer?

To thrive as an HPC Engineer, you need a solid background in computer science, mathematics, or a related field, with expertise in parallel computing, Linux systems, and high-performance cluster management. Proficiency with job schedulers (like SLURM or PBS), programming languages such as C/C++ or Python, and experience with distributed file systems are highly valuable, and certifications in relevant areas can enhance your qualifications. Strong problem-solving, collaboration, and communication skills help you work efficiently within technical teams and explain complex concepts to non-experts. These skills and qualities are essential for ensuring high performance, reliability, and scalability of computing systems in scientific and enterprise settings.

What are some of the common challenges faced by HPC engineers in their day-to-day work?

HPC Engineers often encounter challenges such as optimizing performance for complex workloads, troubleshooting system failures, and efficiently managing large-scale infrastructures. You may be required to balance the needs of multiple users and projects, quickly address hardware or software issues, and stay ahead of evolving technologies. Collaboration with researchers, IT staff, and software developers is key to designing robust solutions. Overcoming these challenges helps improve computational efficiency and supports critical research and business objectives.

Are HPC engineers in demand?

HPC (High-Performance Computing) engineers are in high demand due to the increasing need for advanced computing in fields like scientific research, data analysis, and artificial intelligence. Employers seek professionals skilled in parallel programming, cluster management, and tools such as Linux and MPI, often requiring relevant certifications and experience with large-scale systems.

How much do HPC engineers make in the US?

HPC (High-Performance Computing) engineers in the US typically earn between $80,000 and $150,000 annually, depending on experience, education, and location. Senior roles or those with specialized skills in parallel computing, cluster management, or specific tools like MPI or CUDA can earn higher salaries.

What are the most commonly searched types of Hpc Engineer jobs in Indiana?

The most popular types of Hpc Engineer jobs in Indiana are:

What job categories do people searching Hpc Engineer jobs in Indiana look for?

The top searched job categories for Hpc Engineer jobs in Indiana are:

Infographic showing various Hpc Engineer job openings in Indiana as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, and 4% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $102,727 per year, or $49.4 per hour.

Full-time

Re-posted 7 days ago


SAIC rating

7.9

Company rating: 7.9 out of 10

Based on 79 frontline employees who took The Breakroom Quiz

80th of 225 rated it services


Job description

Job ID: 2615457

Location: Crane, IN, US

Date Posted: 2026-08-10

Category: Engineering and Sciences

Subcategory: Electrical Engr

Schedule: Full-Time

Shift: Day Job

Travel: Yes - 10% of the time

Minimum Clearance Required: Interim_Secret

Clearance Level Must Be Able to Obtain: Secret

Potential for Remote Work: ORA_ON_SITE


Description

SAIC is seeking a Senior Electrical Engineer with deep experience troubleshooting and supporting Hardware‑in‑the‑Loop (HWIL) test environments. The selected candidate will play a crucial role in the development, integration, and test of a next‑generation Hypersonic Missile System, supporting real‑time test operations, electrical diagnostics, and weapon‑system‑level performance verification.

This position requires on‑site support at NSWC Crane to enable hands‑on work with lab hardware, missile subsystem interfaces, and high‑fidelity real‑time simulation equipment.

Key Responsibilities:

HWIL System Troubleshooting & Diagnostics

  • Diagnose and resolve issues within complex HWIL testbeds involving sensors, avionics, embedded computing, and closed‑loop weapon‑system interfaces
  • Identify root causes related to component failures, degraded signals, hardware performance, or timing anomalies
  • Conduct detailed fault isolation across interconnected hardware, simulation nodes, and networked weapon‑system components

Electrical Checkout & Hardware Validation

  • Perform electrical verification tasks including: 
    • Identification of loose or intermittent connections
    • Troubleshooting faulty or damaged wiring/cabling
    • Evaluating line integrity, grounding, shielding, and signal quality
  • Support integration of new missile subsystems, instrumentation, and test rack hardware

Network Analysis & Weapon‑System Communication Troubleshooting

  • Analyze and verify complex system networks to ensure correct signal transmission, data routing, and message integrity across real‑time simulation components
  • Develop an operational understanding of weapon‑system networking architectures, including component interfaces, comms pathways, and timing requirements
  • Support protocols commonly used in real‑time missile and DoD systems (e.g., Ethernet, deterministic real‑time protocols, serial interfaces, MIL‑STD data links, etc.)

Real‑Time Execution Performance Analysis

  • Diagnose causes of simulation overruns, delayed model execution, and desynchronization between hardware devices, sensors, and real‑time compute nodes
  • Monitor and analyze real‑time model execution timelines
  • Resolve timing issues affecting weapon‑system‑level closed‑loop simulations

Documentation, Collaboration & Lab Support

  • Document troubleshooting steps, root causes, and corrective actions
  • Collaborate closely with system engineers, software developers, real‑time modelers, and test operators
  • Support test readiness reviews, lab configuration updates, and integration events for the hypersonic program

Qualifications

Required Education and Experience:

  • Bachelor’s degree in Electrical Engineering or related hardware electrical engineering discipline and 2 or more years of experience. 
  • Experience working with HWIL environments, tactical hardware, or real‑time test systems
  • Demonstrated experience diagnosing electrical and hardware failures in complex integrated systems
  • Strong understanding of system networks, message flows, signal routing, and communication protocols
  • Experience with real‑time simulation/test frameworks (e.g., iHawk, Speedgoat, RT Linux, or similar)
  • Interim secret clearance required to start with the ability to obtain a secret clearance. SAIC will sponsor the clearance process
  • Ability to work 100% on‑site at NSWC Crane

Desired Experience:

  • Network+ or equivalent certification (Security+, CCNA, etc.)
  • Experience reviewing or modifying wiring diagrams, harness documentation, and system schematics
  • Knowledge of avionics interfaces, deterministic timing systems, or secure DoD network architectures
  • Familiarity with HPC computing, MIL‑STD communication protocols, V&V and Systems Engineering processes


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