Senior Silicon Photonics Process Engineer - Heterogeneous Integration
Location: Dallas, TX, or Lehi, UT
Group: Kilby Labs
We can't predict what the future holds, but we know Texas Instruments will have a part in shaping it.
Kilby Labs is the advanced R&D and product development support organization within TI chartered to define and develop new and innovative technologies and solutions in collaboration with business units and customers.
As a member of Kilby Labs you’ll have the chance to interact with many product groups and functions, work with an interdisciplinary team, and bridge from lab to fab to develop technologies to enable new markets.
About the Position
Kilby Labs is seeking a highly motivated and experienced Silicon Photonics Process Engineer to lead the development and implementation of heterogeneous integration (HI) of non-Si modulator materials into high-volume silicon photonics. This role is responsible for the initial process development through volume scaling of all aspects of the HI process module including layer transfer and post transfer processing. The role requires working extensively across other internal teams including advanced process technology development, fab operations, chip design and test, and product engineering, to make innovative, high performance and cost-effective silicon photonics solutions, while also requiring a focus on high-yield, reliable, and cost-efficient manufacturing. For this role we are seeking a creative problem-solver who can develop unique, breakthrough technologies.
Responsibilities may include, but are not limited to:
- Lead the process development, execution, and optimization of volume die-to-wafer (D2W) bonding and post-bond device processing of non-Si material chiplets, integrated in silicon photonics.
- Owning part or all the non-Si material chiplet integration process module in the cleanroom; including the processes of dicing, grinding, die-to-wafer bonding, and waveguide etching.
- Drive the scaling of the heterogeneous integration processes from initial R&D and prototyping phases up to high volume manufacturing.
- Provide necessary expertise to bridge the internal fab operations, advanced process development, and Kilby R&D design teams to align HI processes with device performance requirements and fab capabilities.
- Work with tool vendors and IP partners to reduce process development time leveraging external IP.
- Work closely with photonic design, architecture, and packaging teams to translate design, layout, and product requirements into cost and yield optimized manufacturing solutions.
- Establish robust process controls, root-cause failure analysis, and yield enhancement strategies to drive cost and power improvements, ensure high manufacturing yield and long-term device reliability.
- Develop process characterization and troubleshooting procedures, including development of process monitors, test structures, critical to quality parameter specifications, metrology and inspection procedures, and correlations with device performance data.
- Develop and maintain process reporting and documentation, including process flow descriptions, quality specifications, goal plotting, and yield reports.
- Research and develop differentiating process techniques beyond the state of the art.
Minimum Requirements:
- Master’s/Ph.D. degree in Electrical Engineering, Physics, Applied Physics, or Material Science.
- 3+ years of industry experience with one or more of the following processing steps for integration of non-Si high-speed modulator materials onto silicon photonics in a high volume silicon photonics fab environment: planarization and pre-bond surface preparation, die-to-wafer bonding, wafer-to-wafer bonding, post-bond waveguide etching and processing, and metallization.
- Experience with material physics and process-related effects on device performance for materials such as Lithium Niobate, Lithium Tantalate, Barium Titanate, or Indium Phosphide.
- Track record of delivering high yield process modules for high speed silicon photonics fab processes involving heterogeneous integration of non-materials in high volume manufacturing.
- Strong expertise in statistical process control (SPC), design of experiments (DOE), and utilizing advanced material characterization techniques applied to Cpk optimization for silicon photonics with HI of non-SI materials.
- Ability to work independently and lead cross-functional collaboration between process, fab, and design teams.
Preferred Qualifications:
- Understanding of the mechanisms of direct bonding methods (i.e. fusion bonding) and surface chemistry of bonding
- Hands-on cleanroom experience with dicer, grinder and bonder (die-to-wafer or wafer-to-wafer).
- Knowledge of high-speed photonic modulator device physics, device design, and important device performance metrics
- Understanding of characterization and testing of high-speed modulators and silicon photonic devices
- Experience with volume manufacturing of high speed integrated photonic devices for state-of-the-art data communications products.
- Experience using process monitor and test data analysis tools and statistical analysis tools such as JMP or statistical libraries (e.g. Matlab, Python).
- Strong verbal and written communication skills.
- Ideal candidates must also excel at promoting new ideas, building collaborative relationships, working across organizations.
- Engineer your future. We empower our employees to truly own their career and development. Come collaborate with some of the smartest people in the world to shape the future of electronics.
- We're different by design. Diverse backgrounds and perspectives are what push innovation forward and what make TI stronger. We value each and every voice, and look forward to hearing yours. Meet the people of TI
- Benefits that benefit you. We offer competitive pay and benefits designed to help you and your family live your best life. Your well-being is important to us. Please find our country-specific benefits here
Skills Required
- Master's or Ph.D. degree in Electrical Engineering, Physics, Applied Physics, or Materials Science
- At least 3 years of industry experience with non-silicon material integration processes for silicon photonics in a high-volume fab environment
- Experience with planarization, pre-bond surface preparation, die-to-wafer bonding, wafer-to-wafer bonding, post-bond waveguide processing, or metallization
- Experience with material physics and process effects on device performance for materials such as lithium niobate, lithium tantalate, barium titanate, or indium phosphide
- Track record of delivering high-yield process modules for heterogeneous integration in high-volume manufacturing
- Strong expertise in statistical process control, design of experiments, advanced material characterization, and Cpk optimization
- Ability to work independently and lead cross-functional collaboration among process, fab, and design teams
- Understanding of direct bonding mechanisms, including fusion bonding, and bonding surface chemistry
- Hands-on cleanroom experience using dicing, grinding, and bonding equipment
- Knowledge of high-speed photonic modulator physics, device design, and performance metrics
- Understanding of characterization and testing for high-speed modulators and silicon photonic devices
- Experience with volume manufacturing of high-speed integrated photonic devices for data communications
- Experience using process monitor and test data analysis tools, JMP, MATLAB, Python, or statistical libraries
- Strong verbal and written communication skills
- Ability to promote new ideas and build collaborative relationships across organizations
Texas Instruments Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Texas Instruments and has not been reviewed or approved by Texas Instruments.
-
Strong & Reliable Incentives — Profit sharing and annual bonuses are portrayed as a meaningful, formula-linked upside that can materially lift total earnings in strong years. An employee stock purchase plan with a discount further reinforces recurring, wealth-building incentives.
-
Retirement Support — A 401(k) match is described as a stable core benefit, with some references to additional legacy employer contributions and even pension-like elements for certain cohorts. This framing positions long-term savings support as a notable part of the overall rewards package.
-
Healthcare Strength — Medical coverage is depicted as broadly comprehensive, with preventive care and access to HSA/FSA features cited as value-adds. Company-seeded HSA contributions are repeatedly characterized as an important offset to the plan design for those enrolled.
Texas Instruments Insights
What We Do
Texas Instruments develops semiconductor and computer technology for cellular handsets, digital signal processors and analog semiconductors. Texas Instruments has been making progress possible for decades. We are a global semiconductor company that designs, manufactures, tests and sells analog and embedded processing chips. Our more than 80,000 products help over 100,000 customers efficiently manage power, accurately sense and transmit data and provide the core control or processing in their designs, going into markets such as industrial, automotive, personal electronics, communications equipment and enterprise systems. Our passion to create a better world by making electronics more affordable through semiconductors is alive today as each generation of innovation builds upon the last to make our technology smaller, more efficient, more reliable and more affordable – opening new markets and making it possible for semiconductors to go into electronics everywhere. We think of this as Engineering Progress. It’s what we do and have been doing for decades. Learn more https://news.ti.com/index.cfm







