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Dangerous Engineering Jobs in Texas (NOW HIRING)

Engineering Inspector

Victoria, TX ยท On-site

$21.10 - $25.57/hr

Engineering Opening Date: 07/21/2026 JOB SUMMARY Under general supervision, the Engineering ... potentially dangerous tools, equipment, and machinery. May be required to climb ladders and ...

Engineering Inspector

Victoria, TX

$48K - $65K/yr

JOB SUMMARY Under general supervision, the Engineering Inspector manages, oversees, and inspects ... potentially dangerous tools, equipment, and machinery. May be required to climb ladders and ...

Controls Engineer

The Woodlands, TX ยท On-site

$76K - $98K/yr

Provides direction of Electrical Engineering Designers on the design and drawing of controls ... The jobholder will occasionally be exposed to extreme weather conditions, dirt and dust, dangerous ...

ZAP is a full-service engineering, design, and construction management firm servicing the oil & gas ... equipment, dangerous chemical substances, and interruptions requiring the employee to answer ...

... more dangerous as markets become increasingly global and interconnected. Backed by $40M from ... engineering team works; you've woven them deeply into your workflow and know how to get real ...

Controls Engineer

The Woodlands, TX ยท On-site

$76K - $98K/yr

Provides direction of Electrical Engineering Designers on the design and drawing of controls ... The jobholder will occasionally be exposed to extreme weather conditions, dirt and dust, dangerous ...

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Dangerous Engineering information

See Texas salary details

$35.9K

$81.4K

$145.3K

How much do dangerous engineering jobs pay per year?

As of Aug 9, 2026, the average yearly pay for dangerous engineering in Texas is $81,374.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,000.00 and $88,500.00 per year, depending on experience, location, and employer.

What is dangerous engineering?

Dangerous engineering refers to the design, development, or maintenance of systems, structures, or equipment that involve significant risk to human safety or the environment if not handled properly. This can include working with hazardous materials, high-pressure systems, explosives, or in extreme environments such as oil rigs or nuclear plants. Professionals in this field must follow strict safety protocols and regulations to minimize risks and protect both workers and the public. Dangerous engineering plays a crucial role in industries like construction, energy, and manufacturing, where safety is a top priority.

What safety protocols are typically in place for dangerous engineering roles, and how does the team ensure adherence to them?

Dangerous engineering roles often involve working with hazardous materials, high-risk machinery, or in extreme environments. To ensure safety, teams follow strict protocols such as comprehensive risk assessments, mandatory use of personal protective equipment (PPE), regular safety drills, and thorough incident reporting processes. Collaboration with safety officers and ongoing training are integral, and adherence is monitored through audits and peer reviews. This safety-first culture not only protects employees but also ensures project continuity and regulatory compliance.

What is the difference between Dangerous Engineering vs Mechanical Engineering?

AspectDangerous EngineeringMechanical Engineering
Required CredentialsEngineering degree, safety certifications, specialized trainingEngineering degree, mechanical certifications, technical training
Work EnvironmentHigh-risk sites, construction zones, industrial plantsFactories, design labs, manufacturing facilities
Industry UsageConstruction, oil & gas, chemical plantsAutomotive, aerospace, manufacturing

Dangerous Engineering involves working in high-risk environments requiring safety certifications and specialized skills, focusing on hazardous industries. Mechanical Engineering covers designing, analyzing, and manufacturing mechanical systems in safer, controlled settings. Both roles require engineering credentials but differ significantly in work environment and industry focus.

What are the key skills and qualifications needed to thrive as a dangerous engineer?

To thrive as a Dangerous Engineer (such as those specializing in hazardous environments or high-risk projects), you need a solid background in engineering principles, safety standards, and risk assessment, typically supported by a relevant engineering degree and professional certification (e.g., PE, CSP). Familiarity with safety regulations, specialized hazard analysis software, and equipment for monitoring and mitigating risks is crucial. Strong problem-solving, attention to detail, and effective communication skills are essential for managing complex projects and ensuring team safety. These competencies are vital to minimize hazards, comply with regulations, and achieve successful project outcomes in challenging environments.
What job categories do people searching Dangerous Engineering jobs in Texas look for? The top searched job categories for Dangerous Engineering jobs in Texas are:
What cities in Texas are hiring for Dangerous Engineering jobs? Cities in Texas with the most Dangerous Engineering job openings:
Infographic showing various Dangerous Engineering job openings in Texas as of August 2026, with employment types broken down into 75% Full Time, and 25% Part Time. Highlights an 100% In-person job distribution, with an average salary of $81,374 per year, or $39.1 per hour.

Gas Detection Systems Engineer / Supervisor

DOOTA INDUSTRIAL AMERICA LLC

Taylor, TX โ€ข On-site

Full-time

Re-posted 21 days ago


Job description

Description:

Gas Detection Systems Engineer / Supervisor

(Toxic Gas Monitoring, Gas Detection & Life Safety Systems)

Location: Samsung Taylor Campus, Taylor, Texas

Schedule: Onsite – 5 Days per Week


Position Summary

Doota Industrial America is seeking an experienced Dangerous Gas Systems Engineer / Supervisor to support the operation, maintenance, commissioning, troubleshooting, and technical oversight of hazardous gas detection and monitoring systems within a semiconductor manufacturing environment. This role will be assigned to the SEVA Project and will serve as a critical technical resource responsible for ensuring the integrity, reliability, and compliance of toxic gas monitoring systems (TGMS), gas detection systems (GDS), and life safety monitoring infrastructure.

The successful candidate will provide leadership for field technicians and contractors while coordinating with Facilities, EHS, Operations, Construction, and System Integrators to ensure continuous protection against hazardous gas releases and compliance with site safety requirements.


Key Responsibilities

  • Lead installation, startup, commissioning, testing, and maintenance activities for dangerous gas detection and monitoring systems.
  • Supervise field personnel performing calibration, bump testing, sensor replacement, and preventative maintenance.
  • Ensure compliance with semiconductor industry standards, customer requirements, and environmental health and safety regulations.
  • Oversee operation of Toxic Gas Monitoring Systems (TGMS), Gas Detection Systems (GDS), combustible gas monitoring systems, and specialty gas detection networks.
  • Perform root cause analysis and troubleshooting of detector failures, communication issues, alarm conditions, and system malfunctions.
  • Review and approve calibration records, maintenance logs, service reports, and corrective action documentation.
  • Coordinate alarm verification, interlock testing, relay verification, analog signal validation, and system acceptance testing.
  • Serve as the primary technical liaison between customers, EHS personnel, vendors, subcontractors, and project management teams.
  • Support emergency response activities related to gas detection alarms and hazardous gas incidents.
  • Ensure compliance with permit-to-work procedures, lockout/tagout requirements, JSA/JHA processes, and PPE standards.
  • Provide leadership for continuous improvement initiatives involving gas safety systems and reliability programs.
  • Participate in system upgrades, expansions, and future facility commissioning projects.
  • Support 24/7 on-call technical response as required.
Requirements:


  • Bachelor's degree in Engineering, Engineering Technology, Instrumentation, Electrical Engineering, Chemical Engineering, or related technical field (or equivalent industry experience).
  • 5+ years of experience supporting hazardous gas monitoring, gas detection systems, industrial instrumentation, semiconductor facilities, or process safety systems.
  • Experience supervising field technicians, contractors, or maintenance teams.
  • Strong knowledge of toxic gas monitoring systems, combustible gas detection systems, and life safety monitoring infrastructure.
  • Experience with detector calibration, sensor validation, response testing, and alarm verification.
  • Ability to interpret P&IDs, electrical drawings, loop diagrams, control schematics, and system architecture documentation.
  • Knowledge of semiconductor facility safety practices and hazardous gas handling requirements.
  • Strong troubleshooting and technical problem-solving skills.
  • Excellent documentation, reporting, and stakeholder communication abilities.

Preferred Qualifications

  • Semiconductor FAB experience.
  • Experience with Samsung, Intel, TSMC, Micron, or other semiconductor manufacturing facilities.
  • Familiarity with Gastron, Honeywell, MSA, Dräger, RKI, ChemLogic, DOD Technologies, RAE Systems, or similar platforms.
  • Knowledge of toxic, corrosive, pyrophoric, flammable, and specialty gas systems.
  • Experience with PLCs, SCADA, BMS, or facility monitoring systems.
  • OSHA 30, NFPA, or Process Safety Management (PSM) experience.
  • Factory certification or manufacturer training on gas detection equipment.