Are you excited to dive into high-tech manufacturing and help scale the supply chain for next-generation quantum technology? At Qblox, we're accelerating the worldwide race to build scalable quantum computers, providing the world's best quantum control stacks. We're not just building hardware; we're building the future.
Where you come in: As our Supply Chain Intern, you'll play a key role in helping us scale the supply chain for our next-generation quantum control hardware. If you love organized data, high-tech manufacturing, and want to see how cutting-edge R&D transitions into a physical, world-class product, this is the place for you. You will work closely with our engineering and operations teams, keeping our pipeline sharp, accurate, and ready for production.
What you'll do:
- Refine & Maintain BoMs: Review and clean Bills of Materials (BoMs) for our latest Gen2 hardware prototypes to keep our builds running smoothly.
- Track & Deliver: Follow components end-to-end from purchase order to delivery, ensuring our engineering teams have the critical parts they need right on time.
- Keep Data Crystal Clear: Maintain accurate pricing, lead times, and supplier information across our internal systems.
- Analyze & Flag: Monitor project spending and keep a sharp eye on timelines, actively flagging late deliveries and potential bottlenecks.
- Connect & Support: Collaborate directly with engineers, procurement, and suppliers to keep our prototyping and production pipelines aligned.
Why you'll love it:
- Front-Row Seat to Innovation: See firsthand how cutting-edge deep-tech R&D transforms into real, physical quantum hardware.
- Drive the Future: Play an active role in building the infrastructure behind the quantum revolution.
- Collaborate with Brilliance: Work alongside a passionate, world-class team of engineers, scientists, and supply chain specialists.
- Real Ownership & Growth: Gain hands-on experience and take real responsibility in a fast-paced, hyper-growth environment.
Enough about us, what about you? To thrive in this role and make an immediate impact, you'll bring:
The Non-Negotiables:
- Current Student: Currently enrolled in a degree program in Supply Chain, Logistics, Industrial Engineering, or a related business field.
- Meticulous Eye for Detail: You naturally spot discrepancies, missing details, and typos that others overlook.
- Spreadsheet Power User: Advanced Excel skills (you're fully comfortable with lookups, complex data sets, and clean formatting).
- Fluent English: Strong written and verbal communication skills in English, as you'll be collaborating in an international environment.
Other things that will help you really enjoy the role:
- Basic understanding or fluency in Dutch is a nice bonus.
- An affinity for electronics, high-tech hardware, or complex manufacturing processes.
About Us At Qblox, we operate at the frontier of the quantum revolution delivering advanced technologies needed to build Quantum Computers. This field is rapidly growing and will impact society on a global level. With a dedicated team of scientists, engineers and developers we are pushing quantum technology to support experimentalists worldwide with our scalable qubit control and readout equipment. Since 2019, Qblox has grown into a dynamic company employing 170+ innovative, international minds, all dedicated to the company’s mission. Next to our Headquarters in Delft, we opened our second office in Boston, Massachusetts, USA. We celebrate equality and diversity. We are growing exponentially and welcome talented individuals who share our enthusiasm to make a difference. Our Diversity and Inclusion Committee and Culture Committee work to enrich our company culture by promoting equality and celebrating diversity within our team. We’re striving to build a team that represents a variety of backgrounds, cultures, perspectives, experiences, and skills.
Why join Qblox?
- Join a unique and dynamic experience of bringing deep-tech to the market in the hyper-growth environment
- Collaborate with our passionate, interdisciplinary team in the Netherlands and in the United States.
- Work alongside a global team of highly skilled physicists, engineers, and scientists in a flexible and open working culture.
- Enjoy a high-curiosity, high-performance team dynamic.
- Take advantage of highly attractive compensation plans, equity, and opportunities for growth.
- Represent Qblox at international conferences, partner engagements, and customer visits.
Acquisition in response to our vacancies by recruitment agencies is not appreciated *
TECHNICAL & MARKET ANALYSIS | Appended by Quantum.Jobs
The emergence of supply chain and procurement support functions in deep-tech organizations represents a vital operational transition from custom laboratory prototyping to industrial-scale manufacturing. As quantum hardware developers progress toward high-density control electronics and multi-qubit integration, maintaining absolute data integrity across complex material structures becomes paramount. This role type serves as a foundational enablement layer that bridges R&D prototyping with operational supply chain execution. Industry benchmarking indicates that hardware scaling bottlenecks in quantum technology increasingly stem from component sourcing lead times and component tracking rather than pure physical research constraints. By maintaining structured procurement data and supporting vendor interactions, this function ensures operational continuity and material readiness across production pipelines. Ultimately, these early-stage operational capabilities safeguard capital efficiency and accelerate technology readiness level progression across the physical quantum hardware ecosystem.
The transition of quantum computing infrastructure from specialized laboratory research to commercial manufacturing introduces significant supply chain complexity. Within the hardware enablement layer, control stacks and readout systems rely on specialized high-frequency electronics, cryogenic components, and custom printed circuit board assemblies. Sector-wide efforts continue to address talent and integration challenges in quantum systems as vendor ecosystems remain highly fragmented and geographically concentrated. Consequently, early-stage operational and supply chain support roles are critical to managing lead-time volatility and component traceability.
As deep-tech enterprises scale operations, maintaining alignment between engineering prototypes and production bills of materials becomes a primary operational constraint. Discrepancies in component specifications or unexpected supplier delays can significantly disrupt R&D timelines and inflate prototyping expenditure. Establishing systematic procurement tracking, inventory management, and vendor communication protocols helps insulate research teams from supply chain shocks.
Furthermore, workforce development within the quantum supply chain ecosystem requires cultivating professionals who possess both foundational logistics acumen and an understanding of high-tech manufacturing workflows. Early-career positions and internships act as crucial talent pipelines, introducing structured operational discipline into fast-paced engineering environments. These foundational roles ensure that scaling hardware organizations maintain the organizational capability necessary to meet growing global demand for quantum computing infrastructure.
The capability architecture for supply chain support roles in deep-tech environments relies on structured data management, inventory tracking systems, and cross-functional operational coordination. Expertise in bill-of-materials integrity, cost tracking, and lead-time analysis is critical for ensuring that hardware prototype iterations transition smoothly into standardized manufacturing runs. At the interface of procurement and engineering, these capabilities allow organizations to maintain real-time visibility into component availability, supplier performance, and spending against allocated project budgets. Advanced analytical spreadsheet modeling and enterprise resource planning tool engagement serve as the primary operational mechanisms for detecting supply chain friction prior to assembly execution. By systematically organizing supplier data, delivery schedules, and technical part numbers, this functional domain eliminates material bottlenecks and enhances hardware production throughput. These skills provide the operational leverage required to harmonize research velocity with scalable, repeatable hardware manufacturing strategies. - Accelerates the transition of quantum control hardware from experimental prototype phases to structured manufacturing pipelines
- Mitigates production schedule slippage through proactive component lead-time monitoring and supply chain risk identification
- Enhances data accuracy within internal enterprise systems to prevent material shortages during critical build cycles
- Optimizes capital utilization by systematically tracking procurement expenditure against defined project budget baselines
- Facilitates cross-functional alignment between engineering design teams, internal operations, and external component vendors
- Strengthens supply chain resilience by maintaining comprehensive records of supplier pricing, lead times, and reliability metrics
- Reduces operational friction in hardware iteration cycles by maintaining standardized, error-free bills of materials
- Supports global scaling strategies by establishing structured logistics workflows across multi-regional operating sites
- Improves vendor relationship management through consistent delivery tracking and structured procurement communication
- Streamlines inventory oversight to ensure uninterrupted availability of critical electronic and mechanical sub-assemblies
- Cultivates specialized operational talent equipped to manage the unique supply chain demands of deep-tech industries
- Secures hardware manufacturing continuity by identifying single-source vendor vulnerabilities early in the prototyping phaseIndustry Tags: Quantum Hardware Supply Chain, Electronics Procurement, Bill of Materials Optimization, High-Tech Manufacturing Logistics, Deep Tech Operations, Component Traceability, Vendor Management, Prototyping Operations, Industrial Engineering
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