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Semiconductor Reliability Engineer Jobs in Dallas, TX

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... engineers, and manufacturing teams to ensure designs meet functional, thermal, and reliability ... Experience in the semiconductor ATE industry or related fields (e.g., RF, mixed-signal, or high ...

RTL Design Engineer

Richardson, TX · On-site +1

$122K/yr

... semiconductor products, engineering services, and platform solutions to customers ranging from innovative startups to Fortune 50 companies. Our expertise spans high-reliability mixed-signal and ...

Reliability Lab Operator

Allen, TX

$19 - $25/hr

... on semiconductor devices. Working under direct supervision, you will follow strict standard ... and engineering team. * Basic Documentation: Accurate logging of start/stop times, batch numbers ...

Reliability Lab Operator

Allen, TX · On-site

$19 - $25/hr

Safely load and unload semiconductor devices into specialized test sockets and burn-in boards ... and engineering team. * Basic Documentation: Accurate logging of start/stop times, batch numbers ...

AMS Verification Engineer

Richardson, TX · On-site +1

$122K/yr

... semiconductor products, engineering services, and platform solutions to customers ranging from innovative startups to Fortune 50 companies. Our expertise spans high-reliability mixed-signal and ...

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... Engineering, or related field. * 15+ years of direct experience in semiconductor packaging or ... Experience with package reliability testing and qualification standards. * Deep understanding of ...

Showing results 41-60

Semiconductor Reliability Engineer information

See Dallas, TX salary details

$60.3K

$116.7K

$139.5K

How much do semiconductor reliability engineer jobs pay per year?

As of Aug 15, 2026, the average yearly pay for semiconductor reliability engineer in Dallas, TX is $116,703.00, according to ZipRecruiter salary data. Most workers in this role earn between $101,400.00 and $127,600.00 per year, depending on experience, location, and employer.

What are the typical challenges faced by semiconductor reliability engineers in their day-to-day work?

Semiconductor Reliability Engineers often face challenges such as identifying the root causes of device failures, balancing tight project timelines, and keeping up with evolving industry standards and technologies. The role requires meticulous attention to experiment design and data interpretation, as even small errors can impact the reliability assessment of products. Collaboration with cross-functional teams—including design, process, and test engineering—is also a key aspect, ensuring reliability considerations are integrated throughout development. Staying adaptable and proactive helps overcome these challenges, making the work both dynamic and rewarding.

What does a semiconductor reliability engineer do?

A Semiconductor Reliability Engineer ensures that semiconductor devices and components meet reliability and quality standards over their expected lifespan. They design stress tests, analyze failure mechanisms, and work on improvements to enhance product durability. Their role involves collaborating with design, manufacturing, and testing teams to identify potential weaknesses and implement solutions. By conducting reliability assessments and failure analysis, they help ensure product performance in various operating conditions.

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

To thrive as a Semiconductor Reliability Engineer, you need a strong background in materials science, semiconductor physics, and data analysis, usually supported by an engineering degree. Experience with reliability testing platforms, Failure Analysis tools (like SEM, TEM), and familiarity with industry standards such as JEDEC or ISO are typically required. Excellent problem-solving skills, attention to detail, and effective communication abilities set you apart in this role. These competencies are critical to ensuring product quality, identifying reliability risks, and delivering robust semiconductor devices in a highly collaborative, fast-paced environment.

What job categories do people searching Semiconductor Reliability Engineer jobs in Dallas, TX look for?

The top searched job categories for Semiconductor Reliability Engineer jobs in Dallas, TX are:

What cities near Dallas, TX are hiring for Semiconductor Reliability Engineer jobs?

Cities near Dallas, TX with the most Semiconductor Reliability Engineer job openings:

Infographic showing various Semiconductor Reliability Engineer job openings in Dallas, TX as of August 2026, with employment types broken down into 92% Full Time, 3% Part Time, and 5% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $116,703 per year, or $56.1 per hour.

Sr Staff Integration Engineer

FormFactor, Inc.

Farmers Branch, TX • On-site

$120 - $160/hr

Other

Re-posted 14 days ago


FormFactor rating

6.7

Company rating: 6.7 out of 10

Based on 8 frontline employees who took The Breakroom Quiz


Job description

Overview

Forming Our Future together. FormFactor, Inc. (NASDAQ: FORM), is a leading provider of essential test and measurement technologies along the full semiconductor product lifecycle—from characterization, modeling, reliability, and design de‑bug, to qualification and production test. Semiconductor companies rely on FormFactor’s products and services to accelerate profitability by optimizing device performance and advancing yield knowledge. The company serves customers through its network of facilities in Asia, Europe, and North America.

Shift

The regular hours for this position are day shift.

Job Description

The Sr. Staff Integration Engineer is responsible for defining, optimizing, and sustaining end‑to‑end process integration flows for probe card manufacturing in a high‑volume semiconductor environment. This role serves as a senior technical authority, integrating complex unit processes across wafer‑level fabrication, MEMS, precision assembly, interconnect, and electrical test. The position drives yield performance, manufacturability, and scalability by aligning cross‑functional engineering, operations, and product teams. The role operates with significant autonomy, leading cross‑module problem solving, technology transfer, and continuous improvement initiatives, while mentoring engineers and influencing integration strategy across sites.

Key Responsibilities
  • Process Integration Ownership – Define, own, and continuously improve end‑to‑end process integration flows for probe card manufacturing; ensure alignment of unit process performance to product‑level electrical, mechanical, and reliability targets; identify and manage integration risks, interactions, and trade‑offs across modules.
  • Yield & Performance Optimization – Lead integration‑level yield improvement initiatives using data‑driven analysis and structured problem solving; investigate complex yield excursions, defect mechanisms, and cross‑process interactions; drive defect reduction, process capability improvements, and cycle time reduction.
  • New Product Introduction (NPI) & Technology Transfer – Lead integration activities for NPI, pilot builds, and ramp to high‑volume manufacturing; own integration readiness criteria including process stability, control plans, and manufacturability; support cross‑site technology transfer and process replication with strong change control discipline.
  • Process Flow Development & Control – Develop and maintain integrated process flows, specifications, and control strategies; define critical process parameters, control points, and monitoring strategies (SPC/FDC); ensure robust process window characterization and documentation.
  • Cross‑Functional Technical Leadership – Act as the technical integration interface across Process, Equipment, Product, Yield, Quality, and Manufacturing teams; influence design for manufacturability (DfM) and design for reliability (DfR); partner with operations on process stability, tool readiness, and production performance.
  • Data Analysis & Problem Solving – Analyze inline, electrical test, metrology, and defect data to identify integration gaps; design and execute complex DOEs to resolve multi‑variable process interactions; utilize structured methodologies (DMAIC, 8D) for root cause analysis.
  • Change Management & Governance – Evaluate, approve, and implement changes to processes, materials, equipment, and flows; ensure compliance with change control processes, qualification standards, and documentation requirements; maintain traceability and configuration control across process changes.
  • Mentorship & Technical Influence – Mentor and guide junior and senior engineers on integration practices and problem solving; provide technical leadership on cross‑functional and multi‑site initiatives; influence long‑term integration strategy and technology roadmap.
Skills
  • Probe Cards
  • Process Integration
  • Process Operations
  • Product IntegrationSemiconductor Device Fabrication
  • Semiconductor Fabrication
  • Semiconductor Industry
  • Semiconductor Manufacturing
Education & Experience

Minimum of 12 years of related experience with a Bachelor’s degree; or 8 years and a Master’s degree; or a PhD with 5 years experience; or equivalent experience.

Equal Employment Opportunity Statement

FormFactor is an equal opportunity employer. FormFactor complies with all national, state, and local laws that seek to promote equal opportunities for any applicant or employee without regard to age, race, color, gender, gender identity/expression, national origin, sexual orientation, religion, disability, marital status, pregnancy or related condition, military service, or any other legally protected characteristics. These protections apply to all aspects of employment, including but not limited to recruitment, hiring, training, promotions, and compensation.

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