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The Ghost Howls"},{"title":"Quantum Health Recognizes Clients for Excellence in Healthcare Innovation and Member Experience at Quantum Health Connect 2026 - Yahoo Finance","url":"https://news.google.com/rss/articles/CBMiswFBVV95cUxNSkNBNFA0QWtGMjB3bWlsQzVSelkxNVRkSmJBbDdCNVFLUVV3YzhVakZaYlNiVEsySEp1bFR0VndUREZfQ3EwNUhISXNES09GalNMV0dHOUtaWDR5MDh1eWdCV3dFalpqekRObjY5MzhOQUdtV3pXSE9NTDF3Uk9fbG9HTHBIMXJMeWdHR0VYWXc3T1I4bjIzYVVQVnFNaTREbURIRmFwdUNmS0s5aldmVzNlUQ?oc=5","publisher":"Yahoo Finance","date":"2026-05-19","snippet":"Quantum Health Recognizes Clients for Excellence in Healthcare Innovation and Member Experience at Quantum Health Connect 2026 Yahoo Finance"},{"title":"The long game behind Miami’s tech boom - WLRN","url":"https://news.google.com/rss/articles/CBMikgFBVV95cUxQZjhSNkxvWFZ1TGphakdGejhwakhEYUNiY2xCMFZ1dXBnUVk1VlpZS1c2NFprQVJTOFZjeF8xZk5iY0kyYVAxcEFieTRnMW5ZOWd5WGNPUkQwMUZHWWZHSEVPaDBobVI3dVMwdmdHWlBDTlNZYnlDSkF5NUh1OWppbmhXYjAzV0VQTUY1Y2stakpydw?oc=5","publisher":"WLRN","date":"2026-05-18","snippet":"The long game behind Miami’s tech boom WLRN"},{"title":"Samsung Reportedly to Debut First Smart Glasses at Galaxy Unpacked on July 22nd - Road to VR","url":"https://news.google.com/rss/articles/CBMihgFBVV95cUxNdlZkMUgyUndxbDNSQkI3YjNlNVdWQ1FwSjNrMTZUR0M3LWJMaXNRa3g3SzloQmJQR3pXeVNsa0JDbHk4RHY3VEN6Z0ZJeC1sTXNMWTlWNkdYTUVyUTBkMGhFQmdtWmpZdDgtWlFOWVVoNVh1dTEteVRyZkRLeVNVZzZVSm1PQQ?oc=5","publisher":"Road to VR","date":"2026-05-12","snippet":"Samsung Reportedly to Debut First Smart Glasses at Galaxy Unpacked on July 22nd Road to VR"}],"search_interest_index":null,"search_interest_trend":null,"wikipedia_monthly_views":null,"hn_mention_count":null,"hn_top_stories":[],"wayback_first_year":null,"sec_incorporation_state":null,"sec_latest_filing_type":null,"sec_latest_filing_date":null,"sec_filings":[],"research_papers_count":null,"research_citations_count":null,"research_h_index":null,"research_topics":[],"is_federal_contractor":null,"earnings_calendar":[],"industry_canonical":null,"enrichment_sources":[],"last_enriched_at":null},"hiring":{"total_jobs":10,"categories":[{"category":"engineering","count":10}],"experience_levels":[{"level":"senior","count":7},{"level":"staff","count":3}],"work_arrangements":[{"arrangement":"onsite","count":10}],"top_titles":[{"title":"Sr. Manager, Process Engineering","count":2},{"title":"Staff R&D Process Engineer, Laser Singulation","count":1},{"title":"Staff Process Engineer, Wafer Lithography","count":1},{"title":"Staff Process Engineer, Plasma Etch","count":1},{"title":"Sr. Manager, Equipment Engineering","count":1},{"title":"Sr Process Engineer","count":1},{"title":"Sr Mechanical Engineer, Capital Equipment Design","count":1},{"title":"Senior Industrial Engineer - Semiconductor","count":1},{"title":"Senior Equipment Engineering Technician - Etch","count":1}],"locations":[{"location":"austin, tx","count":6},{"location":"plantation, fl","count":3},{"location":"austin, texas","count":1}],"skills":[{"skill":"SPC","required":4,"preferred":0,"total":4},{"skill":"DOE","required":4,"preferred":0,"total":4},{"skill":"Yield Improvement","required":4,"preferred":0,"total":4},{"skill":"Process Engineering","required":3,"preferred":0,"total":3},{"skill":"Nanofabrication","required":3,"preferred":0,"total":3},{"skill":"Process Development","required":3,"preferred":0,"total":3},{"skill":"CPK","required":2,"preferred":0,"total":2},{"skill":"Vacuum Systems","required":2,"preferred":0,"total":2},{"skill":"Manufacturing Processes","required":2,"preferred":0,"total":2},{"skill":"Manufacturing Process Development","required":2,"preferred":0,"total":2},{"skill":"Cross-functional Collaboration","required":2,"preferred":0,"total":2},{"skill":"Semiconductor Processing","required":2,"preferred":0,"total":2},{"skill":"Statistical Analysis","required":2,"preferred":0,"total":2},{"skill":"Automation","required":2,"preferred":0,"total":2},{"skill":"Recipe Optimization","required":2,"preferred":0,"total":2},{"skill":"Plasma Physics","required":2,"preferred":0,"total":2},{"skill":"Plasma-surface Interactions","required":2,"preferred":0,"total":2},{"skill":"Process Capability Analysis","required":2,"preferred":0,"total":2},{"skill":"Structured Root Cause Methodologies","required":2,"preferred":0,"total":2},{"skill":"Six Sigma","required":2,"preferred":0,"total":2}],"salary_stats":{"count":3,"min":130000,"q1":130000,"median":147500,"q3":147500,"max":147500},"job_types":[{"type":"full-time","count":10}],"latest_jobs":[{"id":"job_46ec3197-aa1","title":"Sr. Manager, Process Engineering","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7967972","location":"Austin, Texas","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices, and services. It has developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>The Senior Manager of Process Engineering will be a critical leader responsible for developing and scaling robust manufacturing processes that enable consistent product performance, yield, and reliability.</p>\n<p>This role demands a strategic leader with deep experience in translating complex technologies into stable, high-performing production processes who can effectively bridge the gap between development and high-volume manufacturing.</p>\n<p>The leader will build and lead a high-performing team of process engineers, driving process capability, reducing variation, and advancing continuous improvement across critical manufacturing workflows.</p>\n<p>Success in this role requires strong technical depth, structured problem-solving skills, and the ability to influence across organisational boundaries to accelerate learning cycles and improve manufacturing readiness.</p>\n<p>Key Responsibilities:</p>\n<ul>\n<li>Build and lead a high-performing process engineering team supporting critical manufacturing processes and product performance requirements.</li>\n</ul>\n<ul>\n<li>Serve as the primary technical and operational point of contact for process-related readiness, capability, and performance across development and manufacturing environments.</li>\n</ul>\n<ul>\n<li>Establish clear, quantifiable manufacturing readiness expectations for process capability, yield performance, variation reduction, and process stability.</li>\n</ul>\n<ul>\n<li>Provide direct management and strategic guidance to the core team of process engineers, enabling strong technical execution and talent development.</li>\n</ul>\n<ul>\n<li>Ensure alignment across Product Development, Equipment Engineering, Quality, Supply Chain, and Operations to drive design-for-manufacturability and scalable process integration.</li>\n</ul>\n<ul>\n<li>Develop and execute process strategies that enable predictable yield, throughput, and product performance, including CTF / CTQ, consistency.</li>\n</ul>\n<ul>\n<li>Define and drive process capability metrics, including Cp, Cpk, defectivity, and process variation improvement.</li>\n</ul>\n<ul>\n<li>Lead structured root cause investigations to resolve yield excursions, reliability risks, and process performance gaps.</li>\n</ul>\n<ul>\n<li>Establish robust process control strategies, including SPC, DOE, DFSS, FMEA, and monitoring frameworks that enable rapid learning cycles.</li>\n</ul>\n<ul>\n<li>Drive continuous improvement initiatives that improve process capability, cycle time, cost efficiency, and manufacturability.</li>\n</ul>\n<p>Requirements:</p>\n<ul>\n<li>10+ years of experience in process engineering within advanced technology manufacturing environments such as semiconductor, photonics, optics, display, and related industries.</li>\n</ul>\n<ul>\n<li>Demonstrated expertise in developing, characterising, and optimising complex manufacturing processes, including variation reduction, yield improvement, and process capability enhancement.</li>\n</ul>\n<ul>\n<li>Proven ability to manage and lead high-performing technical teams of process engineers, fostering strong execution, accountability, and continuous improvement.</li>\n</ul>\n<ul>\n<li>Excellent communication, problem-solving, and cross-functional collaboration skills, capable of setting expectations with both internal stakeholders and external partners.</li>\n</ul>\n<ul>\n<li>BS/MS in Engineering (Mechanical, Electrical, Industrial, or equivalent).</li>\n</ul>\n<p>It&#39;s exciting if you also have:</p>\n<ul>\n<li>Strong experience applying data-driven methodologies, including DOE, DFSS, SPC, FMEA, and statistical analysis to improve process stability and performance.</li>\n</ul>\n<ul>\n<li>Demonstrated success driving root cause investigations and implementing corrective actions to resolve yield excursions and reliability risks.</li>\n</ul>\n<ul>\n<li>Ability to translate complex technical challenges into actionable plans that improve manufacturability, cycle time, and cost efficiency.</li>\n</ul>","enriched_at":1780135351982},{"id":"job_c33032a3-855","title":"Sr. Manager, Equipment Engineering","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7967962","location":"Austin, TX","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>We are seeking a Sr. Manager, Equipment Engineering to join our team. As a critical leader, you will be responsible for multiple fabrication equipment modules and will play a key role in scaling manufacturing capability to support next-generation products.</p>\n<p>This role demands a strategic leader with deep experience in semiconductor equipment improvement who can effectively bridge the gap between process and yield. You will ensure that fabrication equipment is available, producing high-quality products, and used efficiently.</p>\n<p>Responsibilities:</p>\n<ul>\n<li>Develop and lead a world-class fabrication equipment team</li>\n<li>Influence design-for-manufacturability decisions in partnership with the development site and strategic sourcing/procurement</li>\n<li>Serve as the escalation point of contact/trade-off decision maker for all equipment-related issues</li>\n<li>Establish clear, quantifiable expectations for the systematic improvement in equipment performance KPIs related to yield, equipment availability, cycle time, and cost of ownership.</li>\n<li>Provide direct management and strategic guidance to the core team of equipment engineers</li>\n<li>Ensure alignment across fabrication modules, in particular, process and yield engineering</li>\n<li>Oversee the successful execution of the scale-up and ramp of fabrication capacity &amp; capability</li>\n</ul>\n<p>Requirements:</p>\n<ul>\n<li>10+ years of experience in FEOL semiconductor fabrication in equipment-focused roles</li>\n<li>Demonstrated deep expertise in one or more major FEOL modules such as Litho, Etch, Metals, Cleans, and related metrology, with demonstrated leadership across multi-module environments</li>\n<li>Proven ability to manage and lead technical teams of engineers and maintenance technicians</li>\n<li>Excellent communication, structured problem-solving, and team development skills, capable of setting expectations with both internal stakeholders and external partners.</li>\n<li>BS/MS in Engineering (Mechanical, Electrical, Industrial, or equivalent).</li>\n</ul>\n<p>It’s exciting if you also have:</p>\n<ul>\n<li>Management of Vendor and related eco-systems, installation and quality new capacity, escalation SLAs, spare parts BOMs, total productive maintenance, reducing mean time to repair / failure</li>\n<li>Proficiency in SPC (Statistical Process Control) and a deep understanding of how hardware variables (e.g., vacuum pressure, RF power, gas flow) directly impact Wafer Yield or optical performance.</li>\n</ul>","enriched_at":1780135340856},{"id":"job_3bf544cf-e70","title":"Staff Process Engineer, Wafer Lithography","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7909231","location":"Austin, TX","job_type":"full-time","experience_level":"staff","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>At Magic Leap, you can explore innovative solutions and use your talents to solve real-world problems. Working alongside industry experts, you can grow your skills while helping make our technology available to millions of people as a partner in the AR ecosystem.</p>\n<p>The opportunity</p>\n<p>As a Staff Lithography Engineer on our Optical Process Engineering team, you will help develop and scale advanced lithography processes used in next-generation optical waveguide manufacturing for smart glasses. You’ll work cross-functionally with R&amp;D, Equipment Engineering, Manufacturing, Metrology, and Quality teams to transition new technologies into high-volume production environments.</p>\n<p>This is a highly visible, hands-on role focused on process development, yield improvement, process transfer, and manufacturing scale-up within a cleanroom semiconductor-style environment.</p>\n<p>Location:</p>\n<p>This position requires being fully onsite at our Austin, TX facility to support hands-on collaboration and daily operations. Relocation assistance is available for non-local candidates.</p>\n<h3>Responsibilities</h3>\n<ul>\n<li>Lead lithography process development, optimization, and sustainment for wafer-based manufacturing processes</li>\n<li>Drive process control, yield improvement, and tool performance using DOE, SPC, data analysis, and structured root cause methodologies</li>\n<li>Support transfer of processes from R&amp;D/NPI into manufacturing, including process qualification activities such as IQ, OQ, PQ, and capability studies</li>\n<li>Partner cross-functionally with Operations, Quality, Equipment Engineering, and vendors to troubleshoot issues and improve process stability</li>\n<li>Develop manufacturing documentation including SOPs, work instructions, process standards, and control plans</li>\n<li>Analyze process and metrology data to improve optical quality, throughput, OEE, and defect reduction</li>\n<li>Lead root cause investigations using structured problem-solving methodologies such as Six Sigma and DMAIC</li>\n<li>Support implementation of advanced process analytics, automation, SPC strategies, OCAPs, and PFMEA activities</li>\n<li>Collaborate with distributed R&amp;D and manufacturing teams, including support for process transfer activities between facilities</li>\n<li>Mentor engineers and technicians while helping scale robust, production-ready manufacturing processes</li>\n</ul>\n<h3>Qualifications</h3>\n<ul>\n<li>8+ years of experience in nanofabrication, wafer lithography, semiconductor processing, or related microfabrication environments</li>\n<li>Bachelor’s degree or higher in Chemical Engineering, Mechanical Engineering, Materials Science, or a related technical field</li>\n<li>Hands-on cleanroom wafer processing experience within semiconductor or optical device manufacturing</li>\n<li>Experience with process development, recipe optimization, yield improvement, and manufacturing scale-up</li>\n<li>Strong understanding of SPC, DOE, process capability analysis, and structured root cause methodologies</li>\n<li>Experience troubleshooting complex process and equipment issues in high-volume manufacturing environments</li>\n<li>Solid foundation in plasma physics and plasma-surface interactions related to etch or lithography processes</li>\n</ul>\n<h3>It&#39;s exciting if you also have</h3>\n<ul>\n<li>M.S. or Ph.D. in a related engineering discipline</li>\n<li>Experience with wafer-level optics, photonics, or advanced optical manufacturing</li>\n<li>Familiarity with JMP, statistical analysis tools, FDC, or process automation systems</li>\n<li>Metrology experience using SEM, TEM, or related characterization tools</li>\n<li>Six Sigma certification</li>\n<li>Experience supporting new tool installs, vendor qualifications, or manufacturing scale-up initiatives</li>\n<li>Experience working in fast-paced or evolving manufacturing environments</li>\n</ul>\n<h3>Additional Requirements</h3>\n<ul>\n<li>Occasional travel, including trips to Plantation, FL for cross-site collaboration</li>\n<li>Approximately 10% travel required</li>\n</ul>","enriched_at":1778716980010},{"id":"job_879e5551-c3a","title":"Staff Process Engineer, Plasma Etch","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7909261","location":"Austin, TX","job_type":"full-time","experience_level":"staff","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices, services, prototyping, and manufacturing capabilities. We are known for our unmatched optics stack and have developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>With more than a decade of experience in AR innovation, we have made groundbreaking advancements in text legibility, color fidelity, and rich digital content visuals while continually expanding the field of view to create engaging, immersive AR experiences.</p>\n<p>Magic Leap could be your place if you want to be part of a united team where everyone is empowered and trusted to make an impact. At Magic Leap, you can explore innovative solutions and use your talents to solve real-world problems. Working alongside industry experts, you can grow your skills while helping make our technology available to millions of people as a partner in the AR ecosystem.</p>\n<p>We know that successful change and progress accelerates diverse perspectives. As we shape our future, everyone&#39;s voice matters. Together, we can reimagine the world of work and, with our bold partners, make the impossible possible.</p>\n<p>The opportunity</p>\n<p>As a Staff Process Engineer within our Optical Process Engineering team, you will directly contribute to our light-field technology by developing and deploying advanced dry etch processes into our eyepiece manufacturing flow. You will work cross-functionally with R&amp;D, Equipment Engineering, Manufacturing, Metrology, and Quality teams to ensure process readiness for high-volume waveguide manufacturing.</p>\n<p>This is a highly visible, hands-on role focused on process development, yield improvement, process transfer, and manufacturing scale-up within a cleanroom semiconductor-style environment.</p>\n<p>Location:</p>\n<p>This position requires being fully onsite at our Austin, TX facility to support hands-on collaboration and daily operations. Relocation assistance is available for non-local candidates.</p>\n<p>What you&#39;ll do</p>\n<ul>\n<li>Be part of a high-performing New Product Introduction team developing next-generation optical waveguide technologies</li>\n</ul>\n<ul>\n<li>Develop, optimize, and sustain dry etch and plasma processes for wafer-based manufacturing applications</li>\n</ul>\n<ul>\n<li>Design experiments, analyze process data, and generate reports to improve process capability and manufacturing performance</li>\n</ul>\n<ul>\n<li>Drive process control, yield improvement, and defect reduction using DOE, SPC, CPK analysis, and structured root cause methodologies</li>\n</ul>\n<ul>\n<li>Troubleshoot complex process and equipment issues in partnership with manufacturing and equipment engineering teams</li>\n</ul>\n<ul>\n<li>Support transfer of R&amp;D processes into high-volume manufacturing, including process qualification and scale-up activities</li>\n</ul>\n<ul>\n<li>Collaborate cross-functionally with R&amp;D, manufacturing, metrology, and equipment teams to develop new processes and capabilities</li>\n</ul>\n<ul>\n<li>Develop and maintain SOPs, process documentation, training materials, and operational standards</li>\n</ul>\n<ul>\n<li>Lead PFMEA, OCAP, Kaizen, and continuous improvement initiatives focused on optical quality, throughput, OEE, and cost reduction</li>\n</ul>\n<ul>\n<li>Support implementation of process automation, advanced analytics, and data-driven process optimization strategies</li>\n</ul>\n<ul>\n<li>Mentor engineers and technicians while helping scale robust, production-ready manufacturing processes</li>\n</ul>\n<p>The experience you bring</p>\n<ul>\n<li>8+ years of experience in nanofabrication, semiconductor manufacturing, or related microfabrication environments</li>\n</ul>\n<ul>\n<li>Hands-on experience with dry etch/plasma processing equipment, vacuum systems, process development, recipe optimization, and yield improvement</li>\n</ul>\n<ul>\n<li>Bachelor&#39;s degree or higher in Electrical, Chemical, Mechanical, or Materials Science Engineering, or a related technical field</li>\n</ul>\n<ul>\n<li>Hands-on wafer processing experience in cleanroom semiconductor or optical manufacturing environments</li>\n</ul>\n<ul>\n<li>Strong understanding of plasma physics, plasma-surface interactions, and etching mechanisms</li>\n</ul>\n<ul>\n<li>Experience with SPC, DOE, process capability analysis, and structured root cause methodologies such as Six Sigma or DMAIC</li>\n</ul>\n<ul>\n<li>Ability to troubleshoot complex process and equipment issues in high-volume manufacturing environments</li>\n</ul>\n<p>It&#39;s exciting if you also have</p>\n<ul>\n<li>M.S. or Ph.D. in a related engineering discipline</li>\n</ul>\n<ul>\n<li>Experience with JMP or other statistical analysis tools</li>\n</ul>\n<ul>\n<li>Metrology experience using SEM, TEM, or related characterization techniques</li>\n</ul>\n<ul>\n<li>Familiarity with FDC, automated data collection, or process automation systems</li>\n</ul>\n<ul>\n<li>Experience supporting wafer-level optics, photonics, or advanced optical manufacturing environments</li>\n</ul>\n<p>Additional Requirements</p>\n<ul>\n<li>Occasional travel, including trips to Plantation, FL for cross-site collaboration</li>\n</ul>\n<ul>\n<li>Approximately 10% travel required</li>\n</ul>\n<p>Additional Information</p>\n<p>All your information will be kept confidential according to Equal Employment Opportunities guidelines. Please note that we do not accept any application documents via (e-)mail. Furthermore, we do not accept applications from recruitment agencies for this role. All legitimate Magic Leap email communications will end with @magicleap.com. Please carefully review all emails you receive, to ensure you only engage with legitimate representatives of Magic Leap. For the protection of your Personal Information, do not click any links, open any attachments, or further engage with any suspicious communications. In the event you receive an unexpected or suspicious communication claiming to come from Magic Leap, please reach out directly to TalentAcquisition@magicleap.com for assistance.</p>\n<p>Accommodations</p>\n<p>If you need an accommodation during the application, interviewing, or hiring process, you may request an accommodation by emailing ApplicantAccommodation@magicleap.com. Magic Leap will reasonably accommodate qualified individuals with disabilities to the extent required by applicable law.</p>","enriched_at":1778716966566},{"id":"job_1c6e78c2-ce9","title":"Sr Process Engineer","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7868463","location":"Austin, TX","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices, services, prototyping, and manufacturing capabilities. We are known for our unmatched optics stack and have developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>With more than a decade of experience in AR innovation, we have made groundbreaking advancements in text legibility, color fidelity, and rich digital content visuals while continually expanding the field of view to create engaging, immersive AR experiences.</p>\n<p>Magic Leap could be your place if you want to be part of a united team where everyone is empowered and trusted to make an impact. At Magic Leap, you can explore innovative solutions and use your talents to solve real-world problems. Working alongside industry experts, you can grow your skills while helping make our technology available to millions of people as a partner in the AR ecosystem.</p>\n<p>We know that successful change and progress accelerates diverse perspectives. As we shape our future, everyone&#39;s voice matters. Together, we can reimagine the world of work and, with our bold partners, make the impossible possible.</p>\n<h3>The Opportunity</h3>\n<p>As a Senior Process Engineer on the Eyepiece Process R&amp;D team, you will lead the development and optimization of nanoimprint lithography (JFIL) processes critical to next-generation augmented reality displays. You will own process development from early-stage experimentation through transfer into manufacturing, ensuring scalability, repeatability, and yield performance.</p>\n<p>This role is highly hands-on and sits at the intersection of R&amp;D and production. You will work with advanced lithography equipment, develop and qualify new processes, and collaborate cross-functionally to bring cutting-edge light-field technology into production.</p>\n<p>Success in this role requires deep process expertise, strong experimental rigor, and the ability to translate R&amp;D breakthroughs into robust manufacturing solutions.</p>\n<p>Location: This position requires being fully on-site at our Austin, TX facility, to ensure seamless collaboration and hands-on support for daily operations. Relocation assistance is available for non-local candidates.</p>\n<h3>Responsibilities</h3>\n<ul>\n<li>Own the development and optimization of nanoimprint lithography (JFIL) processes for eyepiece fabrication</li>\n<li>Design and execute experiments (DOE) to improve process performance, yield, and defectivity</li>\n<li>Operate, maintain, and troubleshoot advanced lithography and metrology equipment in a cleanroom environment</li>\n<li>Develop characterization methods and workflows to evaluate thickness, roughness, feature dimensions, transmission, and defectivity</li>\n<li>Analyze process data and build diagnostic frameworks (JMP, Python, or similar) to monitor process health and drive improvements</li>\n<li>Improve defect inspection and imaging systems through internal development and vendor collaboration</li>\n<li>Partner with manufacturing teams to transfer processes into high-volume production and support ramp</li>\n<li>Evaluate, select, and bring up new tools, materials, and process technologies</li>\n<li>Create and maintain process documentation, specifications, and technical reports</li>\n<li>Collaborate cross-functionally with R&amp;D, manufacturing, and external partners in a fast-paced environment</li>\n</ul>\n<h3>Experience</h3>\n<ul>\n<li>5+ years of relevant industry experience in nanoimprint lithography, semiconductor processing, nanofabrication, or related field</li>\n<li>BS or MS in physics, chemistry, engineering, or related field, or PhD in a relevant discipline</li>\n<li>Experience owning process development and optimization in an R&amp;D and/or manufacturing environment</li>\n<li>Hands-on experience designing and executing DOEs and driving yield improvement</li>\n<li>Experience working with complex process and metrology equipment in a cleanroom environment</li>\n<li>Strong data analysis skills and experience with statistical tools (JMP, Python, or similar)</li>\n<li>Working knowledge of nanofabrication processes (lithography, etching, deposition, bonding, cleaning)</li>\n<li>Ability to translate experimental results into actionable process improvements</li>\n<li>Strong problem-solving skills and ability to operate in a fast-paced, ambiguous environment</li>\n</ul>\n<p>It&#39;s exciting if you also have:</p>\n<ul>\n<li>Direct experience with nanoimprint lithography (JFIL or NIL)</li>\n<li>Experience scaling processes from R&amp;D to high-volume manufacturing</li>\n<li>Experience with optical or photonic device fabrication, including waveguides</li>\n<li>Familiarity with advanced metrology techniques (SEM, TEM, optical inspection, profilometry, ellipsometry)</li>\n<li>Experience with process control systems (FDC), automation, or data pipelines</li>\n<li>Background in semiconductor, optics, AR/VR, or advanced consumer hardware manufacturing</li>\n</ul>\n<h3>Additional Requirements</h3>\n<ul>\n<li>Occasional travel required, including two trips to Plantation, FL per year</li>\n<li>Approximately 5% total travel for business needs</li>\n</ul>\n<h3>Additional Information</h3>\n<p>All your information will be kept confidential according to Equal Employment Opportunities guidelines. Please note that we do not accept any application documents via (e-)mail. Furthermore, we do not accept applications from recruitment agencies for this role. All legitimate Magic Leap email communications will end with @magicleap.com. Please carefully review all emails you receive, to ensure you only engage with legitimate representatives of Magic Leap. For the protection of your Personal Information, do not click any links, open any attachments, or further engage with any suspicious communications. In the event you receive an unexpected or suspicious communication claiming to come from Magic Leap, please reach out directly to TalentAcquisition@magicleap.com for assistance.</p>\n<h3>Accommodations</h3>\n<p>If you need an accommodation during the application, interviewing, or hiring process, you may request an accommodation by emailing ApplicantAccommodation@magicleap.com. Magic Leap will reasonably accommodate qualified individuals with disabilities to the extent required by applicable law.</p>","enriched_at":1778364097808},{"id":"job_003f5d45-768","title":"Staff R&D Process Engineer, Laser Singulation","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7868312","location":"Austin, TX","job_type":"full-time","experience_level":"staff","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices services, prototyping and manufacturing capabilities. We are known for our unmatched optics stack and have developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>With more than a decade of experience in AR innovation, we have made groundbreaking advancements in text legibility, color fidelity and rich digital content visuals while continually expanding the field of view to create engaging, immersive AR experiences.</p>\n<p>The opportunity</p>\n<p>The Staff R&amp;D Process Engineer will play a critical role in developing and scaling advanced manufacturing processes for next-generation AR eyepiece technologies, with a primary focus on laser processing and singulation of glass and glass-like substrates.</p>\n<p>This position sits at the intersection of research and development and high-volume manufacturing. You will own process development from early-stage exploration through production ramp, solving complex challenges in precision, yield, and scalability.</p>\n<p>What you’ll do</p>\n<ul>\n<li>Own the development of laser-based processes for cutting, shaping, and finishing glass and glass-like substrates used in AR waveguides.</li>\n</ul>\n<ul>\n<li>Design and execute experiments (DOEs) to solve process challenges related to edge strength, yield, and dimensional precision.</li>\n</ul>\n<ul>\n<li>Program, set up, and operate laser and precision fabrication tools to produce high-quality prototypes.</li>\n</ul>\n<ul>\n<li>Develop metrology methods, fixtures, and validation workflows to ensure process performance and repeatability.</li>\n</ul>\n<ul>\n<li>Troubleshoot and optimize processes to improve yield, throughput, and consistency.</li>\n</ul>\n<ul>\n<li>Partner with manufacturing teams to transfer processes into high-volume production and support ramp.</li>\n</ul>\n<ul>\n<li>Evaluate, select, and bring up new tools and technologies, including next-generation laser systems.</li>\n</ul>\n<ul>\n<li>Create and maintain process documentation, specifications, and reports.</li>\n</ul>\n<ul>\n<li>Collaborate cross-functionally with R&amp;D, manufacturing, and external partners in a fast-paced environment.</li>\n</ul>\n<p>The experience you bring</p>\n<ul>\n<li>8+ years of relevant industry experience in process engineering, advanced manufacturing, or related fields.</li>\n</ul>\n<ul>\n<li>BS or MS in engineering (mechanical, materials, optical, manufacturing, or related field), or PhD in a relevant discipline.</li>\n</ul>\n<ul>\n<li>Experience developing or running laser-based processes (e.g., laser cutting, dicing, micromachining).</li>\n</ul>\n<ul>\n<li>Hands-on experience working with precision materials, ideally glass or brittle substrates (ceramics or similar materials also relevant).</li>\n</ul>\n<ul>\n<li>Strong background in process development within an R&amp;D environment, including designing and executing DOEs.</li>\n</ul>\n<ul>\n<li>Experience operating and or programming fabrication tools and equipment (manual, semi-automated, or automated).</li>\n</ul>\n<ul>\n<li>Working knowledge of CAD tools (2D or 3D; Creo, SolidWorks, AutoCAD, etc.).</li>\n</ul>\n<ul>\n<li>Ability to analyze data and make data-driven process decisions.</li>\n</ul>\n<ul>\n<li>Adaptability and comfort working in a dynamic, fast-changing environment.</li>\n</ul>\n<p>It’s exciting if you also have</p>\n<ul>\n<li>Direct experience with laser singulation or dicing of glass or glass-like materials.</li>\n</ul>\n<ul>\n<li>Deep understanding of laser-material interactions, especially with glass and glass-like materials.</li>\n</ul>\n<ul>\n<li>Experience scaling processes from prototype to high-volume manufacturing.</li>\n</ul>\n<ul>\n<li>Experience working in cleanroom environments and handling precision components.</li>\n</ul>\n<ul>\n<li>Familiarity with metrology tools (CMM, optical microscopy, interferometry, etc.).</li>\n</ul>\n<ul>\n<li>CNC programming and machining experience.</li>\n</ul>\n<ul>\n<li>Experience with statistical analysis tools (e.g., JMP or similar).</li>\n</ul>\n<ul>\n<li>Background in semiconductor, optics, AR/VR, or advanced consumer hardware manufacturing.</li>\n</ul>","enriched_at":1778277718164},{"id":"job_31a947b0-ece","title":"Sr Mechanical Engineer, Capital Equipment Design","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7905486","location":"Austin, TX","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a commuting platform that enables users to interact with virtual objects in their physical space. Our team is responsible for designing and developing advanced, automated clean room manufacturing equipment for diffractive optics used in smart glasses.</p>\n<p>As a Sr Mechanical Engineer within our Hardware Equipment Team, you&#39;ll play a pivotal role in designing and developing precision mechanical systems, including robotics, linear motors, encoders, air bearings, and exact constraint mechanisms, to achieve micron-level accuracy in manufacturing equipment.</p>\n<p>Key Responsibilities:</p>\n<ul>\n<li>Design and integrate precision mechanical systems, including robotics, linear motors, encoders, air bearings, and exact constraint mechanisms, to achieve micron-level accuracy in manufacturing equipment.</li>\n</ul>\n<ul>\n<li>Collaborate on the development of machine vision systems integration, pneumatic actuators, valving, system controls and sensor integration and electrical panels for automated process equipment.</li>\n</ul>\n<ul>\n<li>Lead the mechanical design of dispensing and curing systems, optical positioners, and metrology tools to ensure reliable performance in clean room environments.</li>\n</ul>\n<ul>\n<li>Perform design analysis, simulations, and bench-top prototyping to validate equipment functionality under varying priorities and constraints.</li>\n</ul>\n<ul>\n<li>Optimise machine frames and precision mechanisms for stability, repeatability, and ease of assembly.</li>\n</ul>\n<ul>\n<li>Troubleshoot and iterate on designs based on testing feedback, balancing scrappy resourcefulness with rigorous process adherence.</li>\n</ul>\n<ul>\n<li>Work cross-functionally with electrical, software, and manufacturing teams to integrate components into complete systems.</li>\n</ul>\n<ul>\n<li>Also work with OEM’s and contract manufacturers to create multiple instances of your system designs.</li>\n</ul>\n<ul>\n<li>Document designs through specifications, drawings, manuals, and testing procedures to support scalable production.</li>\n</ul>\n<p>Requirements:</p>\n<ul>\n<li>5+ years of professional experience in mechanical design for precision manufacturing equipment or automation systems.</li>\n</ul>\n<ul>\n<li>Bachelor&#39;s degree in Mechanical Engineering.</li>\n</ul>\n<ul>\n<li>Proven expertise in designing systems with micron-level precision, such as stages, actuators, or optical alignment tools.</li>\n</ul>\n<ul>\n<li>Hands-on experience with CAD software (CREO for modeling complex assemblies preferred).</li>\n</ul>\n<ul>\n<li>Familiarity with pneumatic and electromechanical components, including valves, linear motors, and encoders.</li>\n</ul>\n<ul>\n<li>Knowledge of clean room standards and manufacturing processes like dispensing, curing, and metrology.</li>\n</ul>\n<ul>\n<li>Ability to conduct design analysis, including FEA, tolerance stack-ups, and failure mode assessments.</li>\n</ul>\n<ul>\n<li>Experience in prototyping, testing, and iterating on mechanical designs in a resource-constrained environment.</li>\n</ul>\n<ul>\n<li>Strong problem-solving skills with a track record of adapting to changing priorities while maintaining rigor in critical areas.</li>\n</ul>\n<p>Preferred Qualifications:</p>\n<ul>\n<li>Master’s degree in Mechanical Engineering.</li>\n</ul>\n<ul>\n<li>Experience with machine vision cameras or optical systems in precision applications.</li>\n</ul>\n<ul>\n<li>Familiarity with air bearings or advanced constraint design principles.</li>\n</ul>\n<ul>\n<li>Background in optics manufacturing, machine vision, robotics, or complex capital equipment.</li>\n</ul>\n<ul>\n<li>Proficiency in simulation tools like ANSYS or MATLAB for mechanical optimisation.</li>\n</ul>","enriched_at":1778277701918},{"id":"job_d9d10021-6cf","title":"Sr. Manager, Process Engineering","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7838579","location":"Plantation, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices services, prototyping and manufacturing capabilities. We are known for our unmatched optics stack and have developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>With more than a decade of experience in AR innovation, we have made groundbreaking advancements in text legibility, color fidelity and rich digital content visuals while continually expanding the field of view to create engaging, immersive AR experiences.</p>\n<p>The opportunity</p>\n<p>The Senior Manager of Process Engineering will be a critical leader responsible for developing and scaling robust manufacturing processes that enable consistent product performance, yield, and reliability.</p>\n<p>This role demands a strategic leader with deep experience in translating complex technologies into stable, high-performing production processes who can effectively bridge the gap between development and high-volume manufacturing.</p>\n<p>Responsibilities</p>\n<ul>\n<li>Build and lead a high-performing process engineering team supporting critical manufacturing processes and product performance requirements.</li>\n</ul>\n<ul>\n<li>Serve as the primary technical and operational point of contact for process-related readiness, capability, and performance across development and manufacturing environments.</li>\n</ul>\n<ul>\n<li>Establish clear, quantifiable manufacturing readiness expectations for process capability, yield performance, variation reduction, and process stability</li>\n</ul>\n<ul>\n<li>Provide direct management and strategic guidance to the core team of process engineers, enabling strong technical execution and talent development.</li>\n</ul>\n<ul>\n<li>Ensure alignment across Product Development, Equipment Engineering, Quality, Supply Chain, and Operations to drive design-for-manufacturability and scalable process integration.</li>\n</ul>\n<ul>\n<li>Develop and execute process strategies that enable predictable yield, throughput, and product performance, including CTF / CTQ, consistency.</li>\n</ul>\n<ul>\n<li>Define and drive process capability metrics, including Cp, Cpk, defectivity, and process variation improvement.</li>\n</ul>\n<ul>\n<li>Lead structured root cause investigations to resolve yield excursions, reliability risks, and process performance gaps.</li>\n</ul>\n<ul>\n<li>Establish robust process control strategies, including SPC, DOE, DFSS, FMEA, and monitoring frameworks that enable rapid learning cycles.</li>\n</ul>\n<ul>\n<li>Drive continuous improvement initiatives that improve process capability, cycle time, cost efficiency, and manufacturability.</li>\n</ul>\n<p>What you&#39;ll bring</p>\n<ul>\n<li>10+ years of experience in process engineering within advanced technology manufacturing environments such as semiconductor, photonics, optics, display, and related industries</li>\n</ul>\n<ul>\n<li>Demonstrated expertise in developing, characterizing, and optimizing complex manufacturing processes, including variation reduction, yield improvement, and process capability enhancement.</li>\n</ul>\n<ul>\n<li>Proven ability to manage and lead high-performing technical teams of process engineers, fostering strong execution, accountability, and continuous improvement.</li>\n</ul>\n<ul>\n<li>Excellent communication, problem-solving, and cross-functional collaboration skills, capable of setting expectations with both internal stakeholders and external partners.</li>\n</ul>\n<ul>\n<li>BS/MS in Engineering (Mechanical, Electrical, Industrial, or equivalent).</li>\n</ul>\n<p>It&#39;s exciting if you also have</p>\n<ul>\n<li>Strong experience applying data-driven methodologies, including DOE, DFSS, SPC, FMEA, and statistical analysis to improve process stability and performance</li>\n</ul>\n<ul>\n<li>Demonstrated success driving root cause investigations and implementing corrective actions to resolve yield excursions and reliability risks</li>\n</ul>\n<ul>\n<li>Ability to translate complex technical challenges into actionable plans that improve manufacturability, cycle time, and cost efficiency</li>\n</ul>","enriched_at":1777046705113},{"id":"job_12110cd2-973","title":"Senior Equipment Engineering Technician - Etch","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7838919","location":"Plantation, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>A new paradigm of computing</p>\n<p>Magic Leap is a pioneer in Augmented Reality (AR) optics, display systems, platforms, devices services, prototyping and manufacturing capabilities.</p>\n<p>We are known for our unmatched optics stack and have developed ultra-lightweight waveguides and display systems that advance what is possible in AR.</p>\n<p>With more than a decade of experience in AR innovation, we have made groundbreaking advancements in text legibility, color fidelity and rich digital content visuals while continually expanding the field of view to create engaging, immersive AR experiences.</p>\n<p>The opportunity</p>\n<p>As a Senior Equipment Engineering Technician (Etch) within our Manufacturing Engineering team, you will play a critical role in maintaining and optimizing plasma etch systems that are essential to our waveguide manufacturing process.</p>\n<p>This is a highly hands-on role focused on maximizing tool uptime, resolving complex failures, and driving performance improvements in a cleanroom environment.</p>\n<p>You will partner closely with Equipment Engineering, Process Engineering, and Operations teams to support high-volume manufacturing and ensure stable, repeatable tool performance.</p>\n<p>What you’ll do</p>\n<p>Perform advanced troubleshooting, repair, and maintenance on plasma etch systems (Plasma-Therm or similar dry etch tools)</p>\n<p>Diagnose and resolve issues across vacuum systems, RF power delivery, gas flow systems, and plasma processes</p>\n<p>Troubleshoot electrical, mechanical, and pneumatic subsystems, including motors, pumps, valves, sensors, and PLC-controlled systems</p>\n<p>Support tool recovery and uptime efforts, minimizing downtime in a high-volume manufacturing environment</p>\n<p>Execute and continuously improve preventive and corrective maintenance procedures</p>\n<p>Partner with Process and Equipment Engineers on tool optimization, experiments, and process stability improvements</p>\n<p>Analyse equipment performance data to identify root cause and recurring failure modes</p>\n<p>Support vendor interactions and escalations, including remote diagnostics and onsite service coordination</p>\n<p>Train and mentor junior technicians; develop SOPs and technical documentation</p>\n<p>Ensure compliance with cleanroom and safety protocols</p>\n<p>What you’ll bring</p>\n<p>5+ years of hands-on experience supporting semiconductor manufacturing equipment, with a strong preference for etch tools</p>\n<p>Direct experience with plasma etch systems (Plasma-Therm, Lam, Applied Materials, or similar)</p>\n<p>Strong understanding of vacuum systems, RF / plasma systems, gas delivery, and process tool integration</p>\n<p>Proven ability to troubleshoot complex systems across electrical, mechanical, and pneumatic domains</p>\n<p>Experience with PLC systems, sensors, alarms, and system-level diagnostics</p>\n<p>Comfortable working independently in a fast-paced, high-urgency manufacturing environment</p>\n<p>Familiarity with cleanroom operations and protocols</p>\n<p>Experience documenting maintenance and work orders in systems such as CMMS or equivalent</p>\n<p>It’s exciting if you also have</p>\n<p>Experience specifically with Plasma-Therm etch tools</p>\n<p>Prior support of high-volume semiconductor or advanced manufacturing environments</p>\n<p>Experience with RF matching networks, mass flow controllers (MFCs), and vacuum pumps (turbo/roughing)</p>\n<p>Exposure to process troubleshooting alongside engineering teams</p>","enriched_at":1777046691550},{"id":"job_0778756a-75d","title":"Senior Industrial Engineer - Semiconductor","source_url":"https://job-boards.greenhouse.io/magicleap/jobs/7657829","location":"Plantation, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>We are seeking a highly skilled Senior Industrial Engineer with a strong background in semiconductor factory automation and advanced manufacturing systems. This role is ideal for an experienced engineer who can bridge the gap between equipment, process, and data to drive highly efficient, automated production environments.</p>\n<p>The ideal candidate has hands-on experience in semiconductor fabrication along with proficiency in Automated Material Handling Systems (AMHS), such as Overhead Hoist Vehicles (OHV) and Automated Guided Vehicles (AGV), as well as simulation and layout tools like FlexSim, AutoCAD, or equivalent.</p>\n<p>This position is onsite in our Plantation, FL office. Relocation support may be available for qualified candidates. Up to 25% domestic and international travel may be required to support cross-site collaboration, vendor engagement, and project execution.</p>\n<p>Responsibilities:</p>\n<ul>\n<li>Optimize equipment utilization, WIP flow, and capacity planning.</li>\n</ul>\n<ul>\n<li>Partner with R&amp;D, Quality, and Production teams to transition new processes into high-volume manufacturing.</li>\n</ul>\n<ul>\n<li>Support Kaizen activities, standard work documentation (SOPs, work instructions), and GMP compliance.</li>\n</ul>\n<ul>\n<li>Conduct time studies, value stream mapping, and OEE analysis to identify inefficiencies and drive improvements.</li>\n</ul>\n<ul>\n<li>Perform root-cause investigations and troubleshoot complex manufacturing and automation issues.</li>\n</ul>\n<ul>\n<li>Work directly with equipment vendors and contractors to implement solutions and support tool performance.</li>\n</ul>\n<ul>\n<li>Translate complex technical data into clear, executive-ready summaries and presentations.</li>\n</ul>\n<p>Experience:</p>\n<ul>\n<li>B.S. in Industrial Engineering or related field.</li>\n</ul>\n<ul>\n<li>7+ years of experience in semiconductor or optics manufacturing, including automation projects.</li>\n</ul>\n<ul>\n<li>Proven experience with AMHS / OHV / AGV systems or related semiconductor automation technologies.</li>\n</ul>\n<ul>\n<li>Proficiency in AutoCAD for layout and space optimization.</li>\n</ul>\n<ul>\n<li>Experience with FlexSim, Siemens Plant Simulation, or other discrete event simulation tools.</li>\n</ul>\n<ul>\n<li>Strong knowledge of SPC, MSA, CPK, OEE, and DOE methodologies.</li>\n</ul>\n<ul>\n<li>Six Sigma Green Belt certification or higher.</li>\n</ul>\n<ul>\n<li>Skilled in data analysis tools such as JMP, Minitab, or Python for process modeling and statistical analysis.</li>\n</ul>\n<ul>\n<li>Hands-on cleanroom experience in semiconductor or optics environments.</li>\n</ul>\n<ul>\n<li>Familiarity with wet cleans, lithography, etching, or vacuum process tools.</li>\n</ul>\n<ul>\n<li>Experience developing automation layouts and data-driven process control strategies.</li>\n</ul>\n<ul>\n<li>Excellent communication and cross-functional collaboration skills.</li>\n</ul>\n<p>It&#39;s exciting if you also have:</p>\n<ul>\n<li>Strong analytical and systems-level problem-solving skills.</li>\n</ul>\n<ul>\n<li>Project coordination abilities in fast-paced technical environments.</li>\n</ul>\n<ul>\n<li>Deep understanding of lean manufacturing and continuous improvement principles.</li>\n</ul>\n<ul>\n<li>High level of initiative, ownership, and comfort navigating ambiguity.</li>\n</ul>\n<ul>\n<li>Experience working in high-tech, multicultural, and cleanroom environments.</li>\n</ul>","enriched_at":1776527817493}],"category_normalised":[{"category":"engineering","count":10}],"velocity":{"weeks":[{"week_start":"2026-04-13","count":1},{"week_start":"2026-04-20","count":2},{"week_start":"2026-05-04","count":3},{"week_start":"2026-05-11","count":2},{"week_start":"2026-05-25","count":2}],"trend":"stable","wow_pct":0},"momentum":{"recent_14d":2,"prior_14d":2,"growth_pct":0,"classification":"stable"},"salary_vs_industry":{"company_median":147500,"industry_median":null,"percentile":null,"sample_size":2,"by_region":[{"region":"United States","company_median":147500,"industry_median":null,"sample":2}],"transparency_pct":20,"industry_transparency_pct":0,"transparency_warning":false},"market_share":{"company_jobs":10,"industry_total":10,"share_pct":100,"rank":1,"peer_count":1},"ai_exposure":{"occupation_weighted_score":0.093,"skill_weighted_score":0.12,"top_exposed_titles":[],"top_exposed_skills":[{"skill":"Yield Improvement","count":3,"score":0.133},{"skill":"Nanofabrication","count":3,"score":0.133},{"skill":"Process Development","count":3,"score":0.133},{"skill":"SPC","count":3,"score":0.101},{"skill":"DOE","count":3,"score":0.101}]},"peer_set":[],"skills_lq":[],"geographic_shift":{"current":[{"region":"United States","count":10,"share_pct":100}],"emerging":[{"region":"United States","recent_30d":7,"prior_30d":3,"growth_pct":133}],"shrinking":[]},"seniority_anomalies":{"exec_recent_30d":0,"exec_prior_90d_avg":0,"exec_growth_pct":0,"notable_exec_hires":[]},"posting_dynamics":{"median_days_open":null,"industry_median_days_open":null,"long_open_count":0,"closure_rate_pct":17}}}}