Job Description
Do you want to work with cutting-edge quantum technology? Do you have a solid technical background and do you work with a lot of perseverance and accuracy? Do you want be part of a diverse and dynamic scale-up company? Then we invite you to read on and apply!
IN SHORT
Single Quantum (singlequantum.com) makes the world's fastest and most-sensitive light-detection systems limited only by the laws of physics!
As a scale- up company, we are growing steadily in both size and presence worldwide. We are looking for a new Assembly Technican to join our Mounting and Bonding team to strengthen our growing organisation, based at our headquarters in Delft.
WHAT YOU WILL BE DOING
As our Assembly Technician, you will be the first point of contact for our detectors after the fabrication process.
Your main tasks include:
- Performing the handover of incoming detectors from the nanofabrication team;
- Preparing printed circuit boards (PCBs);
- Providing support to the Detector Testing and Nanofabrication teams;
- Optical assembling of detectors;
- Assembling fiber-coupled and flood-illumination detectors onto printed circuit boards (PCBs);
- Making electrical connections using the bonding machine;
- Ensuring the delivery of high-quality detectors to the Production and R&D teams;
- Ensuring the availability and proper organisation of tools and consumables;
- Maintaining and handling laboratory equipment responsibly;
- Working in accordance with SOPs (standard operating procedures);
- Contributing to the creation and updating of SOPs.
The work is largely done individually, but you work closely with the Mounting & Bonding team and with the Nanofabrication, Detector Testing and R&D teams.
With the ongoing improvement and growth of our single-photon detectors, you are also closely involved in new developments!
The detectors are the beating heart of our products; they are the light-sensitive components that make the world's fastest and most sensitive light detection possible. In the Mounting & Bonding team, you couple and connect these detectors with the highest possible precision – from assembling fibre-coupled detectors into a sleeve to bonding them onto printed circuit boards. That is why the highest possible quality is required. Ultimately, you deliver a physical product for both commercial and research purposes.
Your profile and requirements
We are looking for someone who has...
- Has a keen eye for detail;
- Can perform repetitive tasks consistently and accurately;
- Works patiently and precisely on fine, manual tasks;
- Has strong communication skills;
- Is comfortable working under a microscope for extended periods;
- Is administratively skilled and well-organised;
- Is team-oriented and enjoys collaborating;
- Is proficient in both English and Dutch.
In addition, you preferably bring the following:
- Basic knowledge of electronics;
- Basic knowledge of microscopy;
- Familiarity with SNSPDs (Superconducting Nanowire Single Photon Detectors);
- Experience with administration in Airtable;
- Proficiency with Microsoft Office;
- Practical soldering skills.
What we offer
- A collaborative, international team working at the forefront of high-tech innovation, with colleagues from various (and international) background.
- Salary in accordance to the CAO (Collective Labour Agreement) Metalelektro, complemented by secondary benefits.
- Comfortable workplace perks, including coffee, fresh fruit, and weekly catered lunches.
- A solid retirement plan to support your future (provided by PME).
- Up to 40 vacation days per year (based on full-time employment).
- Plenty of space to share your ideas and take initiative—your voice matters from day one.
- A company culture that genuinely supports personal growth and professional development.
- Comprehensive social security benefits in accordance with the Metalelektro Collective Labor Agreement (CAO Metalelektro).
Equal Opportunity Employer
At Single Quantum, we celebrate diversity and are committed to creating an inclusive environment for all employees. We are proud to be an equal opportunity workplace. Therefore, we strongly encourage female candidates to apply for this position.
How to apply
If the job description and Single Quantum excites you, we encourage you to submit your CV as well as a motivation or cover letter explaining why you think you're a good fit for the position, along with what attracts you to the position.
Contact
If you have any questions before applying or would like to have a general conversation about Single Quantum, you can contact our HR Officer, Jacqerina Jarad on +31 (0) 850 400 902 or email to career@singlequantum.com
TECHNICAL & MARKET ANALYSIS | Appended by Quantum.Jobs
The industrialization of quantum hardware depends fundamentally on bridging the gap between micro-fabrication and scalable system assembly. Assembly Technicians operating in the single-photon detection domain serve as critical integration points within the deep-tech manufacturing value chain. As quantum sensing, communication, and computing architectures transition from controlled laboratory environments to commercial deployments, the physical packaging of fragile optical and cryogenic components becomes a major determinant of yield and reliability. Industry analyses indicate that physical packaging bottlenecks and yield losses during final hardware assembly represent significant barriers to scaling quantum components. Technicians executing precision mounting, wire bonding, and optical coupling directly de-risk the transition from prototype designs to repeatable manufacturing pipelines. Consequently, this role type provides essential stabilization to hardware supply chains across the global quantum technology landscape.
As the global quantum ecosystem matures, the structural bottleneck in hardware commercialization has progressively shifted from fundamental physics discovery to precision manufacturing and component packaging. Within the quantum value chain, high-efficiency single-photon detectors represent pivotal enabling infrastructure for quantum key distribution, photonic quantum computing, and advanced biomedical imaging. Commercializing these systems requires translating delicate nanofabricated chips into ruggedized, fully integrated optical modules capable of operating under strict environmental constraints.
A key macro constraint facing hardware manufacturers, including scale-ups like Single Quantum, is the severe shortage of specialized technical talent skilled in precision micro-assembly. Unlike classical electronics assembly, quantum hardware manufacturing demands an intersection of micro-optical alignment, fine-pitch wire bonding, and specialized handling of cryogenic-compatible printed circuit boards. The lack of standardized vocational pipelines for quantum hardware production creates an operational dependency on internal training frameworks, slowing output velocity across the sector.
Furthermore, supply chain vulnerabilities and component variability complicate the transition through Technology Readiness Levels (TRLs). Achieving high manufacturing yields requires stringent quality control protocols at the interface between cleanroom nanofabrication and physical assembly. Sector-wide efforts continue to address talent and integration challenges in quantum systems. Ensuring consistency across individual detection modules allows downstream system integrators to build scalable architectures without compounding performance degradation.
The capability architecture for assembly technicians in the quantum hardware domain spans precise electromechanical integration, micro-optical coupling, and rigorous procedural compliance. At the primary execution layer, competency relies on fine-manual dexterity required for high-density wire bonding, fiber-to-chip alignment, and microscopic component positioning. These physical processes determine the electrical continuity and optical collection efficiency of the final detector module.
Beyond manual assembly, capability is anchored in structured adherence to Standard Operating Procedures (SOPs) and laboratory asset management. Technicians interact directly with yield tracking systems and enterprise resource tools to maintain traceability across the component lifecycle. This operational feedback loop directly links front-line assembly quality to nanofabrication and R&D refinement cycles. Furthermore, intermediate proficiency in electronics troubleshooting and basic microscopy enables early detection of structural defects before modules undergo resource-intensive cryogenic testing. - Accelerates the physical integration timeline of high-performance single-photon detection modules across commercial supply chains
- Reduces yield loss during the post-fabrication assembly phase through standardized packaging protocols
- Mitigates hardware failure risks in downstream quantum key distribution and quantum computing deployments
- Facilitates predictable scaling from laboratory-grade prototypes to high-volume commercial production runs
- Strengthens feedback mechanisms between front-line hardware assembly teams and nanofabrication research units
- Optimizes the operational throughput of specialized cleanroom and micro-assembly laboratory facilities
- Enhances the structural durability of delicate photonic and superconducting hardware components under operational stress
- Supports standardized quality assurance verification across global deep-tech component distribution channels
- Stabilizes the physical supply chain for critical quantum-enabling hardware and single-photon counting systems
- Decreases iteration cycles in custom detector packaging through structured standard operating procedure updates
- Protects capital investments in nanofabrication by maximizing usable chip yields during wire bonding and housing
- Orchestrates cross-functional handovers between nanofabrication, assembly testing, and systems integration divisionsIndustry Tags: Quantum Hardware, Single-Photon Detection, Superconducting Nanowire Single Photon Detectors, Micro-Assembly, Optical Coupling, Wire Bonding, Cleanroom Manufacturing, Quantum Supply Chain, Deep Tech Packaging
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