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Tcad Device Engineer Jobs (NOW HIRING)

Quantum PDK Engineer

Essex Junction, VT · On-site

$98K - $176K/yr

The engineer will work on compact modeling, device libraries, test chip development, and EDA ... Support compact model development, parameter extraction, and correlation across TCAD, silicon data ...

The engineer will work on compact modeling, device libraries, test chip development, and EDA ... Support compact model development, parameter extraction, and correlation across TCAD, silicon data ...

Quantum PDK Engineer

New York, NY · On-site

$98K - $176K/yr

The engineer will work on compact modeling, device libraries, test chip development, and EDA ... Support compact model development, parameter extraction, and correlation across TCAD, silicon data ...

CLAWS III-N Power Integration Engineer

Raleigh, NC · On-site

$101K - $136K/yr

Utilize TCAD simulation (e.g., Synopsys, Silvaco, etc.) for process and device modeling, electrical ... Work with process engineers and R&D partners to drive technology improvements. * Collaborate with ...

Quantum PDK Engineer

Malta, NY · On-site

$98K - $176K/yr

The engineer will work on compact modeling, device libraries, test chip development, and EDA ... Support compact model development, parameter extraction, and correlation across TCAD, silicon data ...

The engineer will work on compact modeling, device libraries, test chip development, and EDA ... Support compact model development, parameter extraction, and correlation across TCAD, silicon data ...

As a Pathfinding Device Integration Engineer, you will work at the intersection of device physics ... Familiarity with TCAD, physics-based modeling, and statistical analysis tools. * Background working ...

Pathfinding Device Integration Engineer

Boise, ID · On-site

$99K - $133K/yr

As a Pathfinding Device Integration Engineer, you will own the definition and advancement of next ... Working knowledge of semiconductor build, architecture, and TCAD modeling. * Direct experience with ...

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Tcad Device Engineer information

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

To thrive as a TCAD Device Engineer, you need a solid background in semiconductor physics, device modeling, and a relevant engineering degree such as electrical or materials engineering. Proficiency in Technology Computer-Aided Design (TCAD) simulation tools like Synopsys Sentaurus, Silvaco, or similar platforms is typically required. Strong analytical thinking, problem-solving abilities, and effective communication are vital soft skills for collaborating with cross-functional teams and presenting simulation results. These skills ensure accurate device modeling, efficient process optimization, and successful integration of new technologies into semiconductor manufacturing.

What is the difference between Tcad Device Engineer vs Tcad Design Engineer?

AspectTcad Device EngineerTcad Design Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, VLSI, or related fieldsBachelor's or Master's in Electrical Engineering, VLSI, or related fields
Work EnvironmentSemiconductor companies, R&D labs, design teamsSemiconductor companies, design teams, R&D labs
Industry UsageFocuses on device modeling, characterization, and verificationFocuses on circuit and chip design, layout, and architecture

While both Tcad Device Engineers and Tcad Design Engineers work within the semiconductor industry and often share similar educational backgrounds, their roles differ. Tcad Device Engineers primarily focus on device modeling, characterization, and verification, ensuring the accuracy of semiconductor devices. Tcad Design Engineers concentrate on designing circuits and chips, utilizing device models to develop functional integrated circuits. Understanding these distinctions helps clarify career paths and job expectations in the semiconductor field.

What are some of the typical challenges faced by TCAD Device Engineers when simulating advanced semiconductor devices?

TCAD Device Engineers often encounter challenges related to accurately modeling complex physical phenomena in advanced semiconductor devices, such as quantum effects, short-channel effects, and variability at nanometer scales. Keeping simulation results aligned with experimental data can require careful calibration and iterative tweaking of models. Additionally, working with large-scale simulations demands strong computational skills and efficient use of resources. Engineers typically collaborate closely with process integration and characterization teams to ensure simulations reflect real-world manufacturing conditions.

What are TCAD Device Engineers?

TCAD Device Engineers are professionals who use Technology Computer-Aided Design (TCAD) tools to simulate, model, and analyze semiconductor devices and processes. Their work helps predict device behavior, optimize fabrication processes, and improve performance prior to actual manufacturing. TCAD Device Engineers collaborate closely with design, process, and manufacturing teams to develop and refine new semiconductor technologies, ensuring devices meet performance and reliability standards. They play a critical role in reducing development costs and time-to-market by identifying issues early through simulation.
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Infographic showing various Tcad Device Engineer job openings in the United States as of July 2026, with employment types broken down into 75% Full Time, 18% Part Time, and 7% Contract. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution.
Quantum PDK Engineer

Quantum PDK Engineer

Globalfoundries

Essex Junction, VT • On-site

$98K - $176K/yr

Full-time

Re-posted 9 days ago


GlobalFoundries rating

8.3

Company rating: 8.3 out of 10

Based on 35 frontline employees who took The Breakroom Quiz

66th of 527 rated manufacturers


Job description

Quantum PDK design enablement.

About GlobalFoundries

GlobalFoundries is a leading full-service semiconductor foundry providing a unique combination of design, development, and fabrication services to some of the world's most inspired technology companies. With a global manufacturing footprint spanning three continents, GlobalFoundries makes possible the technologies and systems that transform industries and give customers the power to shape their markets. For more information, visit www.gf.com.

Introduction

The Quantum PDK Design Enablement (MTS) role is a technical contributor within the Quantum Technology Solutions organization focused on enabling scalable quantum computing platforms. This position supports development of Process Design Kits (PDKs), compact models, and design enablement infrastructure that bridge advanced quantum device physics with semiconductor manufacturing and circuit design, including cryogenic control and readout ICs. This role operates at the intersection of device physics, modeling, and EDA, translating emerging quantum device technologies into usable, manufacturable, and customer-ready design environments.

Summary of Role

As a Member of Technical Staff, this role contributes to the development, deployment, and support of PDKs for quantum device platforms and associated cryogenic electronics. The engineer will work on compact modeling, device libraries, test chip development, and EDA integration, ensuring accurate, validated, and production-ready design collateral. The position emphasizes hands-on technical execution, automation, and strong cross-functional collaboration across device engineering, process integration, modeling, and design teams to enable scalable and high-performance quantum systems.

Essential Responsibilities

  • Develop, deploy, and maintain PDKs (tech files, model files, rule decks, runtime code) for quantum devices and cryogenic control/readout ICs
  • Create device libraries and parameterized cells (PCells), translating process design rules and SPICE/model specifications into design-ready implementations
  • Support compact model development, parameter extraction, and correlation across TCAD, silicon data, and cryogenic characterization
  • Integrate and validate PDKs within EDA environments (e.g., LVS/DRC, simulation flows), including development of automation tools representing fab processes
  • Design test structures and test chips, and develop validation plans to ensure model accuracy and silicon correlation
  • Develop and execute QA workflows, including DRC/LVS test cases and release validation, to ensure high-quality customer deliveries
  • Analyze device and circuit data to identify variability, reliability risks, and performance trends; support yield-learning and root-cause analysis
  • Create and maintain PDK documentation (release notes, application notes, known issues) and communicate usage guidance to users
  • Collaborate cross-functionally with device, process, integration, and EDA teams to align design enablement with technology capabilities
  • Contribute innovative ideas that may lead to intellectual property, patents, or advanced design enablement methodologies

Other Responsibilities:

  • Perform all activities in a safe and responsible manner and support all Environmental, Health, Safety & Security requirements and programs.

Required Qualifications

  • BS (MS preferred) in Electrical Engineering, Microelectronics, Physics, Computer Science, or related field
  • ~5-6+ years of experience in semiconductor design enablement, PDK development, or EDA
  • Strong knowledge of semiconductor device physics and electronic devices
  • Experience with EDA tools (e.g., Cadence Virtuoso or similar) and design flows
  • Experience with device modeling, test structures, or silicon validation
  • Familiarity with scripting (e.g., Python, Tcl, Perl) and Unix/Linux environments
  • Strong analytical, debugging, and problem-solving skills
  • Effective communication and teamwork skills; detail-oriented and self-motivated

Preferred Qualifications

  • Experience with Cadence SKILL, PCell development, and PDK architectures
  • Background in TCAD simulation and compact model correlation
  • Familiarity with variability modeling, SPC, or statistical analysis methods
  • Experience with cryogenic electronics or low-temperature device behavior
  • Exposure to quantum devices, superconducting systems, or quantum computing hardware
  • Experience working with EDA vendors or enabling custom design flows
  • Knowledge of ML/AI techniques applied to modeling or EDA workflows

Expected Salary Range

$98,000.00 - $176,000.00

The exact Salary will be determined based on qualifications, experience and location.

If you need a reasonable accommodation for any part of the employment process, please contact us by email at usaccommodations@gf.com and let us know the nature of your request and your contact information. Requests for accommodation will be considered on a case-by-case basis. Please note that only inquiries concerning a request for reasonable accommodation will be responded to from this email address.

An offer with GlobalFoundries is conditioned upon the successful completion of pre-employment conditions, as applicable, and subject to applicable laws and regulations.

GlobalFoundries is fully committed to equal opportunity in the workplace and believes that cultural diversity within the company enhances its business potential. GlobalFoundries goal of excellence in business necessitates the attraction and retention of highly qualified people. Artificial barriers and stereotypic biases detract from this objective and may be illegally discriminatory.

All policies and processes which pertain to employees including recruitment, selection, training, utilization, promotion, compensation, benefits, extracurricular programs, and termination are created and implemented without regard to age, ethnicity, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, sexual orientation, gender identity or expression, veteran status, or any other characteristic or category specified by local, state or federal law


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