This is a {Advertised Permanent / Temporary}, {Advertised Full Time / Part Time} vacancy that will close in {x} days at {xx:xx} BST.
The Vacancy
About the Role
Seeking a Principal Process Development Engineer with deep expertise in process development, strong analytical and problem-solving skills, hands-on experience with advanced fabrication and characterisation techniques, and a proven ability to lead cross-functional R&D initiatives.
Join a fast-growing Process Development team pushing the boundaries of innovation in MicroLED and Optical Computing. Around 60% of your time will be spent in a state-of-the-art cleanroom advancing process development, and the other 40% on planning, analysing data, and presenting insights to management.
Key Responsibilities
Lead the development and optimisation of fabrication processes for MicroLED and Optical Computing devices
You will work on all stages of process development, defining process architecture, developing process modules, working with process development tool owners to develop and optimise pixel performance
Constantly seek out and implement opportunities for innovation and improvement in the products and processes
Participate in risk assessments and design reviews
Identify the requirements for new tooling to support the MicroLED and Optical Computing development roadmap, including defining process recipe specifications and aligning with the process tool owner
Leverage your R&D and process development experience to drive progress within a high-performing, results-oriented team
Experience & Attributes
A PhD degree in either of Physics, Electrical/Electronic Engineering, Material science or any relevant subject covering the field of III-V semiconductor devices
3+ years of extensive experience in process development within semiconductor, display, or related high-tech industries
Expert knowledge of MicroLED or Photonics and/or Optical compute technologies
Hands on experience of developing and optimising III- V, ideally III – N, semiconductor device fabrication processes in clean room environment
Knowledge of semiconductor device physics
Broad experience in semiconductor process techniques, including but not limited to lithography (stepper and mask aligner), etch (RIE, ICP and wet etch), CVD, PVD, Evaporation, ALD, IBD
Design of Experiments and statistical analysis techniques
Expert experience of LED performance matrix and its measurement techniques such as IV response, Electroluminescence, EQE will be advantageous
Working knowledge of CAM systems and SPC
Ability to communicate clearly, design decisions to cross-functional teams
Experience of risk analysis and design review processes
Advantage
Track record of innovation, process optimisation, and scaling new technologies
Experience with JMP or Python for data analysis
The Company
Plessey is working with world leaders in consumer technology, who are paving the way with innovative next-generation Augmented Reality and wearable applications, based on advanced microLED display solutions.
Challenging existing display technologies, microLEDs are propelling forward a vast, yet stagnated market, changing the way we interact with our devices, both for information and entertainment.
Drawing on over a decade of semiconductor and optoelectronics expertise, Plessey has developed an award-winning, unique, and proprietary GaN-on-Silicon platform and monolithic process at its state-of-the-art manufacturing facility.
"Working with Plessey has opened many learning opportunities for me especially in R&D side of things. Most of my working experience has been with the manufacturing and product transfers. Here at Plessey, I get to be involved in the actual development of new technologies. Also, I am learning not just Lithography, but the whole process itself. It's been a great experience so far."
Ross, Device Engineer
"Working for Plessey allows me to continually deepen my understanding of phenomena and characterisation techniques that are not just specific to uLED displays, but apply to various applications within the semiconductor industry. With Plessey having a FAB on site, there are a large range of amicable colleagues within reach who specialise in fields across the process, starting from MOCVD specialists for GaN to experts in device testing and solid-state physics."
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