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Computer Hardware Engineer Jobs in Laredo, TX (NOW HIRING)

Medical Office Specialist

Laredo, TX

$13.75 - $17.50/hr

Knowledge of electronic equipment, computer hardware and software, including applications and programming. * Knowledge of principles and processes for providing customer and personal services. This ...

... equipment, hardware, software). * Acquire and/or develop and supervise production of new shows ... computer engineering, or digital arts * Expertise in digital technology including audio visual ...

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Computer Hardware Engineer information

See Laredo, TX salary details

$96.1K

$127.7K

$156.7K

How much do computer hardware engineer jobs pay per year?

As of Aug 3, 2026, the average yearly pay for computer hardware engineer in Laredo, TX is $127,720.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,300.00 and $150,100.00 per year, depending on experience, location, and employer.

What engineers make $200,000 a year?

Senior computer hardware engineers, especially those with extensive experience, specialized skills, and certifications, can earn $200,000 or more annually. High salaries are often associated with roles in large companies, management positions, or those working on advanced hardware design and development projects.

What does a computer hardware engineer make?

A computer hardware engineer typically earns a median annual salary of around $128,000, though this can vary based on experience, location, and industry. They design, develop, and test computer components such as circuit boards, processors, and memory devices, often working with specialized tools and certifications in electronics and engineering. Salaries can range from approximately $80,000 to over $180,000 depending on factors like seniority and employer.

What engineer makes $500,000 a year?

Computer hardware engineers typically do not earn $500,000 annually; such high salaries are more common in executive or specialized roles within the tech industry. Senior engineers with extensive experience, leadership positions, or those working in high-cost regions may approach these figures, especially with bonuses and stock options included.

What are some common challenges faced by computer hardware engineers in collaborative projects with software teams?

Computer hardware engineers often collaborate closely with software developers to ensure seamless integration between hardware components and software applications. A frequent challenge is aligning timelines and technical requirements, as hardware development cycles can differ from software schedules. Effective communication and a strong understanding of both disciplines are essential to address compatibility issues and meet project deadlines. Building strong cross-functional relationships helps resolve these challenges and leads to successful product development.

What Do Computer Hardware Engineers Do?

Computer hardware engineers design and test new computer hardware components, such as screens, motherboards, and memory. They may also work with products that include a computer system, such as cars, home entertainment components, and appliances that connect to the internet. Your responsibilities include creating design drawings and collaborating with manufacturers to ensure the devices are produced to specifications. You may also work with software developers to ensure compatibility. You must be able to read and design technical drawings and be able to communicate effectively with all participants in the project.

What does a computer hardware engineer do?

A computer hardware engineer designs, develops, tests, and improves computer components such as processors, circuit boards, memory devices, and peripherals. They often work with schematic diagrams, use CAD software, and need knowledge of electronics and programming. Their work environment typically includes labs and offices, and they may require certifications in electronics or computer engineering.

What are computer hardware engineers?

Computer hardware engineers are professionals who design, develop, and test computer systems and components such as processors, circuit boards, memory devices, networks, and routers. They work to ensure that computer hardware functions efficiently and integrates seamlessly with software. These engineers are often involved in research, prototyping, and overseeing the manufacturing of hardware equipment. Their work is crucial in advancing technology and improving the performance of computer systems.

What are the key skills and qualifications needed to thrive as a Computer Hardware Engineer, and why are they important?

To thrive as a Computer Hardware Engineer, you need a solid background in electrical engineering, computer architecture, and circuit design, typically supported by a bachelor’s degree in computer or electrical engineering. Familiarity with hardware description languages (such as VHDL or Verilog), CAD software, and industry certifications like CompTIA or Cisco is often important. Strong problem-solving abilities, teamwork, and effective communication skills help engineers collaborate and innovate within multidisciplinary teams. These competencies ensure the effective design, testing, and optimization of reliable hardware systems that meet modern computing needs.

What is the difference between Computer Hardware Engineer vs Computer Network Architect?

AspectComputer Hardware EngineerComputer Network Architect
Required CredentialsBachelor's in Computer Engineering or related field; certifications like Cisco CCNA are commonBachelor's in Computer Science, Information Technology, or related; certifications like Cisco CCNP are typical
Work EnvironmentDesigning, testing, and developing computer hardware; labs and engineering facilitiesDesigning and implementing network systems; offices and data centers
Employer & Industry UsageTech companies, hardware manufacturing, research labsTelecommunications, large enterprises, data centers

Computer Hardware Engineers focus on designing and developing physical computer components, while Computer Network Architects plan and build data communication networks. Both roles require technical certifications and often work in technology-driven environments, but their core responsibilities differ significantly in scope and focus.

What are the most commonly searched types of Computer Hardware Engineer jobs in Laredo, TX? The most popular types of Computer Hardware Engineer jobs in Laredo, TX are:
What are popular job titles related to Computer Hardware Engineer jobs in Laredo, TX? For Computer Hardware Engineer jobs in Laredo, TX, the most frequently searched job titles are:
What cities near Laredo, TX are hiring for Computer Hardware Engineer jobs? Cities near Laredo, TX with the most Computer Hardware Engineer job openings:
Infographic showing various Computer Hardware Engineer job openings in Laredo, TX as of July 2026, with employment types broken down into 1% As Needed, 72% Full Time, 25% Part Time, and 2% Contract. Highlights an 92% Physical, 3% Hybrid, and 5% Remote job distribution, with an average salary of $127,720 per year, or $61.4 per hour.

Quantum Algorithm Scientist (non-US)

Zapata Quantum

Zapata, TX • On-site

Contractor

Re-posted 13 days ago


Job description

About the role
We are seeking a Quantum Algorithm Scientist to design, analyze, and benchmark quantum algorithms that deliver real-world advantage. The role sits at the intersection of theory and practice-translating problems from domains such as cryptography, chemistry, finance, materials discovery, and defense into concrete quantum circuits, and rigorously evaluating their resource requirements on both near-term and fault-tolerant hardware.
This position offers a high level of individual ownership and is well-suited to scientists who are comfortable working independently within a small, focused team. You will partner with quantum software engineers and domain experts to push the state of the art, with opportunities to publish, contribute to open-source quantum frameworks, and shape deliverables for government and commercial programs. This position is classified as exempt under applicable wage and hour laws.
What you'll do
  • Design, analyze, and optimize quantum algorithms for applications in cryptography, chemistry, finance, materials science, and defense
  • Perform end-to-end resource estimation for quantum workloads on both near-term (NISQ) and fault-tolerant hardware architectures
  • Develop and benchmark novel circuit compilation, error mitigation, and algorithmic primitives
  • Translate customer and domain-specific problems into well-posed quantum computational tasks
  • Contribute to technical reports, peer-reviewed publications, and government program deliverables
  • Work directly with customers to scope, develop, and deliver proof-of-concept engagements that demonstrate quantum value for their use cases
  • Partner with internal software engineers to improve the quality, correctness, and performance of product deliverables
  • Independently analyze complex scientific problems and communicate results clearly to both technical and non-technical audiences

Qualifications
  • PhD in Physics, Computer Science, Applied Mathematics, or a related field
  • Deep understanding of quantum computing fundamentals, including the circuit model, quantum error correction, and complexity theory
  • Broad familiarity with many types of quantum algorithms and primitives (e.g., QPE, VQE, QAOA, Hamiltonian simulation, amplitude amplification, block encoding)
  • Strong mathematical foundations in linear algebra, probability, and numerical methods
  • Track record of peer-reviewed publications, preprints, or equivalent technical output
  • Proficiency in some area of quantum-related programming (e.g., circuit simulation, compilation, resource estimation, or scientific computing)
  • Ability to work independently, scope open-ended problems, and manage deliverables with minimal oversight
  • Familiarity with modern AI tools and a drive to use them to make research and development systems more efficient

Preferred Experience
  • Demonstrated experience shipping software that leverages LLMs, AI agents, or other machine learning components
  • Experience building developer tools, scientific workflows, or research automation that leverages AI to speed up expert work
  • Strong communication skills and comfort collaborating across research and engineering teams

About Zapata Quantum
Zapata Quantum is shaping the future of quantum computing: setting the standards for what's viable, valuable, and worth building. The Company powers quantum applications across cryptography, pharmaceuticals, finance, materials discovery, defense, and beyond, translating cutting-edge research into real-world impact.
Zapata is the only organization to have contributed across every technical area of DARPA's Quantum Benchmarking program, giving it a uniquely comprehensive view of what it takes to make quantum computing work in practice. Now restructured and sharply focused, Zapata Quantum stands alone as the only publicly traded, pure-play quantum software company fully dedicated to unlocking quantum's commercial potential.
We're rebuilding at a pivotal moment for the industry-bringing together a team that will help define how quantum delivers value in the real world, with the opportunity for meaningful ownership as we shape the commercial path forward.