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Guidance Navigation Control Jobs in Indiana (NOW HIRING)

Senior Mach-TB Mission Engineer

Crane, IN · On-site

$104K - $143K/yr

The candidate must demonstrate expertise working with navigation solutions, telemetry format interpretation, and real-time GN&C (Guidance, Navigation & Control) data processing in demanding aerospace ...

Senior Mach-TB Mission Engineer

Crane, IN · On-site

$104K - $143K/yr

The candidate must demonstrate expertise working with navigation solutions, telemetry format interpretation, and real-time GN&C (Guidance, Navigation & Control) data processing in demanding aerospace ...

Senior Mach-TB Mission Engineer

Crane, IN · On-site

$104K - $143K/yr

The candidate must demonstrate expertise working with navigation solutions, telemetry format interpretation, and real-time GN&C (Guidance, Navigation & Control) data processing in demanding aerospace ...

For over 24 years we have been helping clients navigate technology and business change, while ... Control scope creep and gold plating. * Manage changes to scope, budget, or schedule via a change ...

For over 24 years we have been helping clients navigate technology and business change, while ... Control scope creep and gold plating. * Manage changes to scope, budget, or schedule via a change ...

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Guidance Navigation Control information

See Indiana salary details

$27

$51

$77

How much do guidance navigation control jobs pay per hour?

As of Aug 28, 2026, the average hourly pay for guidance navigation control in Indiana is $51.89, according to ZipRecruiter salary data. Most workers in this role earn between $40.48 and $59.04 per hour, depending on experience, location, and employer.

What is guidance, navigation, and control (GNC)?

Guidance, Navigation, and Control (GNC) refers to the engineering discipline focused on directing the movement of vehicles such as aircraft, spacecraft, missiles, and autonomous vehicles. Guidance determines the desired path or trajectory, navigation estimates the vehicle's current position and velocity, and control ensures the vehicle follows the desired path by adjusting its actuators. Together, GNC systems enable precise and safe operation of vehicles in complex environments. Professionals in this field work on designing algorithms, integrating sensors, and testing hardware to achieve reliable performance.

What are the key skills and qualifications needed to thrive as a guidance navigation control engineer?

To thrive as a Guidance Navigation Control Engineer, you need a solid background in aerospace engineering, control systems, and applied mathematics, usually backed by a relevant degree. Familiarity with simulation tools like MATLAB/Simulink, programming languages such as C++ or Python, and experience with embedded systems or flight software is typically required. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities help you excel in collaborative, multidisciplinary environments. These skills are crucial for designing reliable guidance and control systems that ensure the safety, accuracy, and performance of aerospace vehicles.

What are some common challenges faced by professionals in guidance, navigation, and control roles, and how can they be addressed?

Professionals in GNC roles often encounter challenges such as ensuring system reliability in dynamic environments, integrating complex hardware and software components, and maintaining accuracy under rapidly changing conditions. To address these, GNC engineers typically rely on rigorous simulation and testing, cross-functional collaboration with systems and software teams, and continuous learning to stay updated on emerging technologies. Proactive communication and agile problem-solving are essential to navigate the fast-paced and detail-oriented nature of this role.

What is the difference between Guidance Navigation Control vs Guidance Navigation Control?

AspectGuidance Navigation ControlGuidance Navigation Control
Required CertificationsOften requires aerospace or engineering certifications, such as FAA or industry-specific credentialsSame certifications typically needed, focusing on aerospace engineering credentials
Work EnvironmentPrimarily in aerospace, defense, or space industries, working on aircraft or spacecraft systemsSimilar environment, involving design, testing, and operation of navigation systems in aerospace projects
Employer & Industry UsageUsed by aerospace companies, defense contractors, and space agenciesSame industry usage, with focus on navigation system development and integration
Common Search & Comparison IntentOften compared with related roles like Guidance Navigation Control to clarify responsibilitiesSame comparison, emphasizing technical differences or overlaps

Guidance Navigation Control professionals focus on designing, testing, and maintaining navigation systems for aerospace applications. The role overlaps significantly with other aerospace engineering positions, making the comparison important for understanding specific responsibilities within the industry.

What are popular job titles related to Guidance Navigation Control jobs in Indiana?

For Guidance Navigation Control jobs in Indiana, the most frequently searched job titles are:

Infographic showing various Guidance Navigation Control job openings in Indiana as of August 2026, with employment types broken down into 1% As Needed, 78% Full Time, 18% Part Time, 2% Contract, and 1% Nights. Highlights an 94% Physical, 2% Hybrid, and 4% Remote job distribution, with an average salary of $107,931 per year, or $51.9 per hour.

Senior Mach-TB Mission Engineer

SAIC

Crane, IN • On-site

$104K - $143K/yr

Full-time

Posted 22 days ago


SAIC rating

7.9

Company rating: 7.9 out of 10

Based on 79 frontline employees who took The Breakroom Quiz

79th of 225 rated it services


Job description

Job ID: 2615309

Location: Crane, IN, US

Date Posted: 2026-08-05

Category: Engineering and Sciences

Subcategory: Aerospace 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: Top Secret

Potential for Remote Work: ORA_ON_SITE


Description

SAIC is seeking a highly motivated Sr. Engineer to serve as an Analysis Lead for the Mach-TB Program Office.  This individual will help lead pre- and post-mission analysis activities, overseeing  on-site processing of telemetry (TM) data related to the MACH-TB program. This role involves the generation of Best Estimate Trajectory (BET) and Quick-Look Brief (QLB) data products by processing Launch Vehicle (LV) and MACH-TB “owned” Test Vehicle telemetry data. Critical oversight ensures decrypted TM links and other telemetry data are utilized for precise trajectory and performance analysis. The candidate must demonstrate expertise working with navigation solutions, telemetry format interpretation, and real-time GN&C (Guidance, Navigation & Control) data processing in demanding aerospace or test environments.

Key Responsibilities:

  • Help lead end-to-end telemetry data processing efforts for the MACH-TB program, ensuring accurate and timely generation of BETs and QLBs.
  • Oversee data handling, including the decryption (if necessary) and best source selection of telemetry data streams, as well as processing individual TM antenna recordings.
  • Manage and operate TM rack equipment to receive decrypted telemetry links (data and clock) and IRIG-B timing signals from the Range or Vehicle provider.
  • Process telemetry inputs to generate the following:
    • 6DOF navigation solutions for instrumented objects including:
      • GPS: Time, Position, Velocity.
      • IMU (Inertial Measurement Unit) outputs: Time, delta angles, delta velocities, body-sensed accelerations, body orientation, and rates.
      • Blended GPS/IMU Navigation Solution (if available).
      • IMU-only Navigation Solution (if available).
      • Body-frame definitions.
  • Analyze telemetry format documents and ensure adequate documentation/access to:
    • Word locations
    • Frame locations
    • Sync patterns
    • Data rates
    • Scale factors
    • Bias/offset factors
    • Engineering units
  • Manage and validate data quality and integrity, ensuring a nominal trajectory file drives decrypted hardware-in-the-loop (HWIL) and software-in-the-loop (SIL) testing.
  • Analyze and interpret information from pre-launch through post-impact/loss-of-signal (LOS).
  • Ensure timely delivery and communication of analysis results to stakeholders.

Qualifications

Minimum Requirements:

  • Interim Secret Clearance required to start, with ability to obtain Top Secret Clearance
  • Bachelor’s degree in a relevant engineering discipline (e.g., Aerospace Engineering, Mechanical Engineering, Electrical Engineering, Computer Science) with 5 years’ experience or a Master’s Degree and 3 years’ experience. 
  • 2+ experience in telemetry data analysis or a related GN&C field.
  • Proficiency in handling the six degrees of freedom (6DOF) analysis and generation of navigation solutions.
  • Strong expertise in interpreting telemetry format data and creating corresponding data products.
  • Experience with decryption processes and handling decrypted telemetry stream data, CH10 format, and IRIG-B timing systems.
  • Demonstrated ability to lead a team in multidisciplinary environments to complete technically complex tasks under tight timelines.
  • Ability to work on-site and coordinate with external stakeholders (e.g., Range or Vehicle providers).

Preferred Qualifications:

  • Master’s degree in an engineering or technical field.
  • Familiarity with mobile telemetry systems, HWIL/SIL testing, and high-fidelity simulations of aerospace systems.
  • Experience in programming languages and data manipulation for telemetry applications (e.g., Python, MATLAB, or similar tools).

Key Competencies:

  • Analytical Skills: Strong attention to detail and capability to analyze large and complex datasets in telemetry, GN&C, and navigation.
  • Communication: Ability to effectively communicate technical concepts to diverse audiences, from engineers to non-technical stakeholders.
  • Technical Problem Solving: Expertise in troubleshooting telemetry and data reliability issues.


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