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Audio Engineering Jobs in Indiana (NOW HIRING)

This position works closely with production, engineering, quality, maintenance, and IT teams to ... Develop and maintain software for audio testing, including communication with audio analyzers ...

This position works closely with production, engineering, quality, maintenance, and IT teams to ... Develop and maintain software for audio testing, including communication with audio analyzers ...

This position works closely with production, engineering, quality, maintenance, and IT teams to ... Develop and maintain software for audio testing, including communication with audio analyzers ...

As directed by the Chief Media Engineer, the Assistant Media Engineer will work with faculty ... Audio boards * Video switchers and routers * Ability to: * Read waveform monitors and vectorscopes

... media across audio and display inventory, connecting retailer/RMN supply with demand-side ... Engineering context: ISM is an existing platform and team that now needs clearer execution ...

... audio and display inventory, connecting retailer/RMN supply with demand‑side advertisers ... Engineering context: ISM is an existing platform and team that now needs clearer execution ...

... media across audio and display inventory, connecting retailer/RMN supply with demand-side ... Engineering context: ISM is an existing platform and team that now needs clearer execution ...

... an audio, video and control platform. We focus on customer outcomes and drive growth and ... Job Summary The Engineering Changes Engineer leads the planning, evaluation, and implementation of ...

Showing results 41-60

Audio Engineering information

See Indiana salary details

$28.1K

$80.4K

$163.2K

How much do audio engineering jobs pay per year?

As of Sep 10, 2026, the average yearly pay for audio engineering in Indiana is $80,365.00, according to ZipRecruiter salary data. Most workers in this role earn between $47,600.00 and $107,500.00 per year, depending on experience, location, and employer.

What is audio engineering?

Audio engineering is the process of capturing, manipulating, mixing, and reproducing sound using both analog and digital equipment. Audio engineers work in various settings such as recording studios, live concerts, film production, and broadcasting. Their responsibilities include setting up microphones, operating mixing consoles, editing audio files, and ensuring the highest possible sound quality. Audio engineers often collaborate with musicians, producers, and other technical staff to achieve desired sonic results.

What are the key skills and qualifications needed to thrive as an audio engineer, and why are they important?

To thrive as an Audio Engineer, you need a solid understanding of sound theory, audio signal flow, and recording techniques, typically supported by a degree or certification in audio engineering or a related field. Proficiency with digital audio workstations (DAWs) like Pro Tools or Logic Pro, as well as familiarity with mixing consoles, microphones, and audio plugins, is essential. Strong attention to detail, problem-solving abilities, and effective communication skills help audio engineers collaborate with artists and troubleshoot technical issues. These skills and qualities ensure high-quality audio production and smooth workflow in both studio and live environments.

What are some common challenges audio engineers face during live events, and how can they prepare for them?

Audio engineers working live events often encounter unexpected technical issues such as equipment malfunctions, feedback, or changing acoustics due to audience size. Preparing for these challenges involves conducting thorough sound checks, creating backup plans for key equipment, and maintaining clear communication with performers and production teams. Adaptability and troubleshooting skills are essential, as quick decision-making ensures audio quality remains high throughout the event. Regularly updating technical knowledge and collaborating closely with stage crews can also help prevent and address issues efficiently.

What is the difference between Audio Engineering vs Sound Design?

AspectAudio EngineeringSound Design
CredentialsTypically requires a degree or certification in audio engineering or related fieldOften requires a background in audio production, music, or sound design courses
Work EnvironmentRecording studios, live venues, broadcasting, post-productionFilm, video games, theater, multimedia projects
Industry UsageUsed across music, broadcasting, live sound, and post-productionPrimarily in film, gaming, and multimedia industries

Audio engineering focuses on capturing, mixing, and producing sound recordings, while sound design involves creating and manipulating audio elements for various media. Both roles require technical skills, but their applications and environments differ significantly.

What can I do with an audio engineering degree?

An audio engineering degree prepares individuals for careers such as recording engineer, live sound technician, broadcast engineer, or audio post-production specialist. Graduates can work in recording studios, concert venues, film and TV production, or radio stations, often using skills in mixing, editing, and operating audio equipment. Certifications in digital audio workstations and experience with industry-standard tools can enhance job prospects.

What does an audio engineering do?

An audio engineer is responsible for recording, mixing, and mastering sound for music, film, television, or live events. They operate equipment such as mixing consoles, digital audio workstations, and microphones, and often require technical skills and certifications. Their work ensures high-quality sound production tailored to the project's needs.

What jobs can an audio engineer do?

An audio engineer can work in various roles such as recording engineer, live sound technician, mixing engineer, mastering engineer, broadcast engineer, and sound designer. They typically operate audio equipment, use digital audio workstations, and may work in studios, concert venues, film production, or broadcasting environments.

What are the most commonly searched types of Audio Engineering jobs in Indiana?

The most popular types of Audio Engineering jobs in Indiana are:

What are popular job titles related to Audio Engineering jobs in Indiana?

For Audio Engineering jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Audio Engineering jobs in Indiana look for?

The top searched job categories for Audio Engineering jobs in Indiana are:

What cities in Indiana are hiring for Audio Engineering jobs?

Cities in Indiana with the most Audio Engineering job openings:

Infographic showing various Audio Engineering job openings in Indiana as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 87% Full Time, 8% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 3% Hybrid, and 12% Remote job distribution, with an average salary of $80,365 per year, or $38.6 per hour.

Manufacturing Software Developer

Columbus, IN • On-site

Full-time

Posted 21 days ago


Key responsibilities

  • Design, develop, and maintain manufacturing software applications.

  • Integrate manufacturing equipment and industrial devices with business applications.

  • Troubleshoot software, network, communication, and production test issues affecting manufacturing operations.


Job description

SUMMARY: The Manufacturing Software Developer designs, develops, implements, and supports software applications that improve manufacturing operations, production efficiency, quality, and data collection. This position works closely with production, engineering, quality, maintenance, and IT teams to develop solutions that integrate manufacturing equipment, business systems, and industrial automation technologies. The ideal candidate has experience developing software for manufacturing environments and enjoys solving complex technical challenges while supporting continuous improvement initiatives.

 

DUTIES AND RESPONSIBILITIES:

  • Design, develop, and maintain manufacturing software applications using modern programming languages and development tools.
  • Develop desktop, web, and service applications that support production, quality assurance, inventory management, and equipment monitoring.
  • Integrate manufacturing equipment, PLCs, barcode scanners, torque controllers, audio test systems, vision systems, printers, and other industrial devices with business applications.
  • Develop automated production test applications for validating product functionality, including audio performance, electrical testing, and functional verification.
  • Develop and maintain software for audio testing, including communication with audio analyzers, microphones, speakers, amplifiers, and digital signal processing (DSP) equipment.
  • Design and optimize SQL databases, stored procedures, queries, and reports.
  • Troubleshoot software, network, communication, and production test issues affecting manufacturing operations.
  • Develop software that collects, stores, and analyzes production, quality, and test data.
  • Support manufacturing traceability, product genealogy, and process control systems.
  • Participate in software testing, validation, deployment, and documentation.
  • Collaborate with production personnel to identify opportunities for process automation and operational improvements.
  • Maintain software source control, version management, and technical documentation.
  • Provide technical support for manufacturing applications and assist with issue resolution during production.
  • Participate in continuous improvement initiatives that increase equipment reliability, productivity, and product quality.
  • Performs other related duties as assigned by management.

 

SUPERVISORY RESPONSIBILITIES:

  • This job has no supervisory responsibilities.


 

SKILLS/QUALIFICATIONS:

  • Bachelor's Degree (BA) from four-year college or university, or one to two years of related experience and/or training, or equivalent combination of education and experience.


  • Certificates, licenses and registrations required:      
  • Computer skills required: Development Software; Project Management Software; Microsoft Office Suite.
  • Other skills required: 
    • Experience developing software using C#, .NET, or similar object-oriented programming languages.
    • Experience working with Microsoft SQL Server, database design, and SQL query development.
    • Experience integrating PLCs, HMI systems, robotic systems, barcode scanners, printers, torque controllers, and other industrial controllers.
    • Experience communicating with industrial equipment using Ethernet/IP, Modbus TCP, OPC UA, serial communications, or TCP/IP socket communications.
    • Familiarity with manufacturing execution systems (MES), enterprise resource planning (ERP), and warehouse management systems (WMS).
    • Experience using Git, TortoiseSVN, Azure DevOps, or other version control and project management tools.
    • Experience with audio testing and measurement equipment, including audio analyzers, microphones, speakers, amplifiers, signal generators, and data acquisition hardware.
    • Understanding of manufacturing quality systems, traceability, statistical process control (SPC), and production reporting.

 

COMPETENCIES:

  • Diversity - Demonstrates knowledge of EEO policy; Shows respect and sensitivity for cultural differences; Educates others on the value of diversity; Promotes a harassment-free environment; Builds a diverse workforce.
  • Ethics - Treats people with respect; Keeps commitments; Inspires the trust of others; Works with integrity and ethically; Upholds organizational values.
  • Analytical - Synthesizes complex or diverse information; Collects and researches data; Uses intuition and experience to complement data; Designs workflows and procedures.
  • Dependability - Follows instructions, responds to management direction; Takes responsibility for own actions; Keeps commitments; Commits to long hours of work when necessary to reach goals; Completes tasks on time or notifies appropriate person with an alternate plan.
  • Communication – Writes and speaks clearly and informatively; Edits work for spelling and grammar; Able to read and interpret written information; Listens and gets clarification; Responds well to questions.
  • Problem Solving - Identifies and resolves problems in a timely manner; Gathers and analyzes information skillfully; Develops alternative solutions; Works well in group problem solving situations; Uses reason even when dealing with emotional topics.
  • Quality - Demonstrates accuracy and thoroughness; Looks for ways to improve and promote quality; Applies feedback to improve performance; Monitors own work to ensure quality.
  • Teamwork - Balances team and individual responsibilities; Exhibits objectivity and openness to others' views; Gives and welcomes feedback; Contributes to building a positive team spirit; Puts success of team above own interests; Able to build morale and group commitments to goals and objectives; Supports everyone's efforts to succeed.
  • Technical Skills - Assesses own strengths and weaknesses; Pursues training and development opportunities; Strives to continuously build knowledge and skills; Shares expertise with others.



 

PHYSICAL DEMANDS AND WORK ENVIRONMENT:

  • Occasionally required to stand, walk, and bend for extended periods of time on the production floor.
  • Occasionally required to reach with arms and hands, and stoop.
  • Frequently required to utilize hand and finger dexterity.
  • Continually required to sit at a desk or workstation and operate a computer, keyboard, and mouse.
  • Continually required to view a computer monitor and read printed and electronic materials; requires close vision and the ability to adjust focus.
  • Frequently required to talk and hear, in person, by telephone, and in virtual meetings.
  • Occasionally required to climb, kneel, crouch, or crawl to access equipment, control panels, network hardware, and cabling.
  • Occasionally work near moving mechanical parts. 
  • Usually work indoors. These sites may not be temperature controlled. 
  • Occasionally exposed to moderate to loud noise levels while working on the production floor.
  • Occasionally exposed to fumes, airborne particles, dust, and vibration in manufacturing and warehouse areas.
  • Occasionally works near electrical equipment, control panels, and energized industrial systems.
  • Required to wear personal protective equipment, including safety glasses, hearing protection, and safety-toe footwear, when in production, warehouse, and dock areas.
  • Occasionally required to travel between company facilities or to customer and supplier locations.
  • Occasionally required to work extended hours, evenings, or weekends, or to be available on call, to support production issues, system deployments, and equipment downtime.
  • The employee must occasionally lift and/or move up to 25 pounds and frequently lift and/or move up to 10 pounds.
  • Specialized equipment, machines, or vehicles used: PLCs, HMIs, barcode scanners, torque controllers, printers, vision systems, and audio test equipment (audio analyzers, microphones, speakers, amplifiers, and DSP hardware).