Dänemark - Simulatoren für Forschung, Prüfung oder technisch-wissenschaftliche Anwendung - Tieffrequenzvibrations-, Hochvakuum-Kryostat mit Vektormagnet für SDU
OriginalDanmark - Simulatorer til forskning, prøvning eller teknisk-videnskabelig brug - Low vibration, high vacuum cryostat, with vector magnet for SDU
VerhandlungsverfahrenDer Auftraggeber wählt Bewerber aus und verhandelt dann über die Angebote, bevor er entscheidet.Ganzer EintragOberhalb des EU-SchwellenwertsEin Auftrag, der groß genug ist, dass EU-weite Regeln gelten und er auf TED erscheinen muss.Ganzer Eintrag
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Dänemark - Simulatoren für Forschung, Prüfung oder technisch-wissenschaftliche Anwendung - Tieffrequenzvibrations-, Hochvakuum-Kryostat mit Vektormagnet für SDU
Auftraggeber: Syddansk Universitet
Land: Dänemark
Verfahren: Verhandlungsverfahren
Branche (CPV): Labor- & Präzisionsgeräte (38970000)
Aperlena: https://aperlena.com/de/t/danmark-simulatorer-til-forskning-provning-eller-teknisk-videnskabelig-brug-low-vibration-high-vacuum-cryostat-wi-30051f56fe
Amtliche Bekanntmachung: https://ted.europa.eu/en/notice/-/detail/616391-2026
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01
Zusammenfassung
Maschinell erstellte Zusammenfassung
Die Syddansk Universitet vergab einen Vertrag über einen Kryostaten mit geringer Vibration und Hochvakuum, kompatibel mit einem abnehmbaren 4-1-1-Vektormagneten, für Forschungszwecke. Das System erfordert eine Basistemperatur von maximal 3,5 K, eine Kühlleistung von mindestens 250 mW bei 4,2 K, Vibrationen unter 30 nm Spitze-Spitze, ein Ultrahochvakuum besser als 1 × 10⁻⁹ mbar, mehrere optische Zugänge, Hochstromkanäle, Koaxialleitungen, Glasfaserdurchführungen und 48 Gleichstromanschlüsse. Nach einer Marktuntersuchung wurde nur ein Anbieter als in der Lage identifiziert, alle obligatorischen Spezifikationen zu erfüllen. Der Vertrag wurde an Qnity SAS über EUR 444,073.66 vergeben, mit dem Vergabedatum 2026-08-11.
02
Beschreibung
The requested cryogenic system must meet a unique combination of optical, cryogenic, vacuum, vibration, electrical, and future upgrade requirements that are essential for our research. Following a market assessment, only the proposed supplier was identified as capable of providing a fully integrated system meeting all mandatory specifications. 1. Product Specifications Required The system must provide: •At least four lateral optical accesses and one top optical access. •A large cryogenic sample volume of Ø250 mm cold plate × 250 mm height. •Non-magnetic radiation shield with four horizontal and one vertical optical window. •Three integrated 50 A high-current channels to the 4 K stage. •Four thermally anchored coaxial lines for measurements up to 20 GHz. •Four fibre-optic feedthroughs. •48 DC electrical connections at the 4 K cold plate. •Base temperature ≤ 3.5 K with stability better than 50 mK. •Cooling power of at least 250 mW at 4.2 K. •Vibration levels below 30 nm peak-to-peak. •Ultra-high vacuum better than 1 × 10⁻⁹ mbar. •Remote cryocooler architecture with unrestricted 360° optical access. •Future compatibility with a removable 4-1-1 vector magnet. •Complete mobility of the cryostat on the optical table. 2. Why These Specifications Are Necessary •Large 250 mm sample space: Required to accommodate complex optical setups, cryogenic positioners, electrical and fibre connections, and future magnet integration without redesigning the experimental platform. •Ultra-high vacuum (UHV): Our experiments run continuously for several weeks. A vacuum level better than 1 × 10⁻⁹ mbar is essential to avoid contamination of samples and optical windows, ensuring stable measurement conditions and reproducible results over long measurement periods. •Remote cryocooler and ultra-low vibration: Our experiments rely on interferometric and other vibration-sensitive optical measurements. The cryocooler must be physically separated from the optical table to minimise vibration and acoustic noise transmission, while maintaining the flexibility to move the cryostat when experimental configurations evolve. •Extensive optical access: Four side windows and one top window are required to provide simultaneous laser excitation, imaging, collection optics, and future experimental configurations that cannot be accommodated by standard cryostat designs. •Future magnet integration: The system must support straightforward integration of a 4-1-1 vector magnet and allow different magnet configurations to be installed or removed without major modifications to the cryostat. 3. Why There Is Only One Supplier The selected supplier is the only identified manufacturer capable of providing all required features within one validated and integrated platform. In particular, the supplier uniquely combines: •A Ø250 mm × 250 mm cryogenic sample space. •UHV performance (<10⁻⁹ mbar) suitable for multi-week experiments. •A remote cryocooler architecture delivering very low vibration while preserving cryostat mobility. •Unobstructed 360° optical access with multiple optical ports. •Integrated high-current, RF, fibre-optic, and DC measurement infrastructure. •A design specifically prepared for future vector magnet integration and compatibility with different magnet configurations. •Cryogenic positioners and cryostat supplied by the same manufacturer, ensuring full mechanical, thermal, electrical, and software compatibility while eliminating integration risks. Although alternative suppliers may offer some individual features, no other supplier was found that can simultaneously provide the required UHV performance, large sample volume, remote low-vibration architecture, extensive optical access, future magnet flexibility, and fully integrated cryogenic positioning system. We have nonetheless ensured that the terms of acquisition reflect sound financial judgment and serve the best interests of SDU and Danish taxpayers. Based on the market coverage, there is only one supplier who can deliver the desired equipment.
Amtliche Quelle
Quelle: TED - Tenders Electronic Daily (Publications Office of the EU)
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