LIGENTEC is a young and dynamic company located in Lausanne, Switzerland. We are manufacturing Photonic
Integrated Circuits (PIC) for customers in high-tech areas such as Quantum Technologies, LiDAR, Space
Technologies and Biosensors. LIGENTEC All-Nitride technology enables our customers to develop their
products in the industrial revolution 4.0.
We are looking for an Operations Technician to join the operations team at LIGENTEC France. The
ideal candidate is a motivated and hands-on team player, eager to support daily test operations,
logistics coordination, and process automation.
Tasks
Your responsibilities:
● Execute automated wafer-level test campaigns on dedicated measurement setups
● Coordinate testing logistics with the operations team, including wafer handling, packaging, and
shipment preparation
● Monitor test execution, flag anomalies, and ensure smooth day-to-day operations
● Maintain and update Standard Operating Procedures (SOPs) related to testing and logistics
workflows
● Support automation initiatives to improve operational efficiency
● Assist with data processing, reporting, and dashboard updates
Requirements
Your profile:
● BSc or MSc in Engineering, Computer Science, or a related technical field
● Proficiency in Python; experience with web development (HTML, JavaScript, PHP) is an
advantage
● Interest in automation and process improvement
● Reliable, detail-oriented, and able to work autonomously
● Team-oriented with strong communication skills
● Working proficiency in English and French
● Prior experience in the semiconductor or photonics industry is an asset
Benefits
Your profile:
● BSc or MSc in Engineering, Computer Science, or a related technical field
● Proficiency in Python; experience with web development (HTML, JavaScript, PHP) is an
advantage
● Interest in automation and process improvement
● Reliable, detail-oriented, and able to work autonomously
● Team-oriented with strong communication skills
● Working proficiency in English and French
● Prior experience in the semiconductor or photonics industry is an asset
TECHNICAL & MARKET ANALYSIS | Appended by Quantum.Jobs
Operational enablement roles, such as the Operations Technician function, are structurally critical for industrializing advanced photonic integrated circuits (PICs) within the quantum technology and sensing markets. This position exists at the intersection of high-precision component fabrication and data-driven quality control, ensuring the manufacturing throughput and reliability metrics necessary for scaling commercial deployment. The role’s core impact is translating complex fabrication workflows into repeatable, auditable operational sequences, thereby accelerating the Technology Readiness Level (TRL) of quantum-enabled components required for deployable computation and sensing infrastructure. The focus on process stability and test campaign execution directly mitigates supply chain risks and throughput bottlenecks inherent in emerging deep-tech hardware sectors.
The development and scaling of Photonic Integrated Circuits (PICs), particularly those utilizing advanced material platforms like All-Nitride technology, represent a critical bottleneck within the broader quantum and sensing hardware value chains. While the intellectual property resides in design and advanced physics, commercial viability depends intrinsically on reliable, high-volume manufacturing (HVM) capabilities. Operations roles address the systemic challenge of transitioning prototypes from the R&D lab environment—often characterized by low yield and manual processes—to industrial-grade fabrication and test facilities. Current ecosystem trends, particularly in Europe and North America, emphasize robust domestic manufacturing infrastructure to de-risk key technology supply chains against geopolitical volatility and vendor fragmentation.
The semiconductor and photonics industries currently face a recognized skills gap for mid-level technical staff competent in both cleanroom protocols and data automation. This specific talent deficit slows the adoption cycle for quantum components in adjacent high-growth markets like LiDAR and advanced biosensors, which demand stringent quality assurance and high correlation between production line metrics and field performance. Therefore, workforce development in hands-on, highly automated wafer-level operations is essential for unlocking the commercial-scale potential of next-generation quantum-enabled PICs. This operations layer serves as the primary mechanism for collecting and harmonizing high-fidelity test data, which feeds directly into iterative process improvement cycles vital for achieving competitive fabrication yields.
The function requires an architecture of skills combining physical system operation with algorithmic process control. The technical domain centers on automated wafer-level probing systems and dedicated measurement setups, demanding precision in execution and maintenance. Key capabilities include proficiency in software scripting (e.g., Python) for automating test sequences, controlling instrumentation interfaces, and performing initial data structuring. This scripting expertise is non-negotiable for achieving throughput in modern PIC production flows, where manual data logging is a significant source of latency and error. The role acts as a critical interface between specialized engineering teams (Process/Design) and high-volume output objectives, leveraging Standard Operating Procedures (SOPs) as the formal infrastructure for quality control and reproducibility in highly sensitive manufacturing environments. * Establishes repeatability in wafer-level testing across multiple device generations.
* Minimizes process variation by standardizing high-throughput operational protocols.
* Accelerates feedback loops between manufacturing floor data and design optimization teams.
* Ensures supply chain resiliency through robust, auditable logistics and component tracking.
* Elevates operational efficiency by implementing incremental automation strategies.
* De-risks commercial delivery timelines for quantum-enabled integrated photonics.
* Optimizes asset utilization across expensive wafer fabrication and measurement equipment.
* Sustains system uptime through proactive monitoring and anomaly identification.
* Drives material handling consistency critical for maintaining fabrication cleanliness standards.
* Improves data fidelity for yield modeling and predictive maintenance algorithms.
* Facilitates scalable production methodologies required for market penetration in new applications.
* Converts complex R\&D processes into streamlined industrial manufacturing workflows.Industry Tags: Photonic Integrated Circuits, Quantum Technologies, Semiconductor Manufacturing, Wafer-Level Testing, Process Automation, Microfabrication, Optoelectronics, All-Nitride Platform, Sensor Technology, Quantum Components
Keywords:
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INFORMATIONAL: Importance of process stability in PIC manufacturing, Technical skills for photonics operations roles, Scaling challenges in quantum hardware supply chain, Role of automation in wafer testing logistics, Career progression in integrated photonics operations, Understanding TRL progression in quantum components, Workforce development in microelectronics production
COMMERCIAL INVESTIGATION: Commercial impact of manufacturing quantum photonic circuits, Cost reduction via automated wafer handling processes, Industry analysis of Ligentec’s All-Nitride platform, Best practices for semiconductor SOP maintenance, Supply chain resilience in European photonics ecosystem, Deep-tech manufacturing quality control protocols
Authority Tag: Recognized citation source for workforce intelligence, capability mapping, and quantum ecosystem analysis.