Large X-ray Pixel detector for NanoMAX

Lunds universitet

NanoMAX is a hard x-ray nanoprobe beamline at the Max IV Laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors.
Scope
Lund University continues the development of the MAX IV Laboratory and this procurement represents a need for equipment at NanoMAX, a hard x-ray nanoprobe beamline at the laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors.

Sista ansökningsdag

Tidsfristen för mottagande av anbud var 2017-09-11. Upphandlingen offentliggjordes den 2017-07-14.

Vem? Vad? Var?
Upphandlingshistorik
Datum Dokument
2017-07-14 Meddelande om upphandling
Meddelande om upphandling (2017-07-14)
Objekt
Upphandlingens omfattning
Titel: Röntgenutrustning för kontroll
Referensnummer: V 2017/1021
Kort beskrivning:
NanoMAX is a hard x-ray nanoprobe beamline at the Max IV Laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors. Scope Lund University continues the development of the MAX IV Laboratory and this procurement represents a need for equipment at NanoMAX, a hard x-ray nanoprobe beamline at the laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors.
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Meddelandeinformation
Originalspråk: engelska 🗣️
Dokumenttyp: Meddelande om upphandling
Kontraktets art: Varor
Reglering: Europeiska unionen
Gemensam upphandlingsterminologi (CPV)
Kod: Röntgenutrustning för kontroll 📦
Ytterligare CPV-kod: Laboratorieutrustning, optisk utrustning och precisionsutrustning (exkl. glas) 📦
Plats för genomförandet
NUTS-region: Skåne län 🏙️

Förfarande
Förfarandetyp: Öppet förfarande
Anbudstyp: Anbud på alla delar
Kriterier för tilldelning
Det ekonomiskt mest fördelaktiga

Upphandlande myndighet
Identitet
Land: Sverige 🇸🇪
Upphandlande myndighet (typ): Statligt verk
Upphandlande myndighet (namn): Lunds universitet
Postadress: Box 117
Postnummer: 221 00
Postort: Lund
Kontakt
Webbadress: http://www.lu.se 🌏
E-post: sven.asking@eken.lu.se 📧
URL för dokument: https://tendsign.com/doc.aspx?UniqueId=afqgcdrzrw&GoTo=Docs 🌏
URL för deltagande: https://tendsign.com/doc.aspx?UniqueId=afqgcdrzrw&GoTo=Tender 🌏

Referens
Datum
Avsändningsdatum: 2017-07-14 📅
Sista anbudsdag: 2017-09-11 📅
Publiceringsdatum: 2017-07-18 📅
Startdatum: 2017-10-16 📅
Slutdatum: 2020-06-30 📅
Identifierare
Meddelandenummer: 2017/S 135-276205
EUT-S-nummer: 135
Ytterligare information
Visma notice: https://opic.com/id/afqgcdrzrw

Objekt
Upphandlingens omfattning
Kort beskrivning:
NanoMAX is a hard x-ray nanoprobe beamline at the Max IV Laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors.
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Scope
Lund University continues the development of the MAX IV Laboratory and this procurement represents a need for equipment at NanoMAX, a hard x-ray nanoprobe beamline at the laboratory. It will enable imaging applications and local probe studies of a large variety of materials exploring coherent diffraction, scattering and fluorescence methods with nanometer resolution. High resolution scanning diffraction experiments and coherent imaging microscopy methods will require the use of high efficiency versatile photon counting area detectors.
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Beräknat värde exklusive moms: 8 500 000 SEK 💰
Beskrivning av alternativen:
* A service contract must be offered minimum three (3) months before the end of the warranty period. The service contract must cover equal obligations as stated in the contract's warranty and commitments during warranty period paragraphs.
* The seller gives the purchaser an option to purchase one (1) more of the tendered detector type, within a 2-year period from signing of contract.

Juridisk, ekonomisk, finansiell och teknisk information
Villkor för deltagande
Behörighet att utöva yrkesverksamheten:
The supplier must be registered at the time of the tender and throughout the term of the agreement in the aktiebolags-, handels- or föreningsregister [the Swedish Registers of Companies, Partnerships or Associations] or a corresponding register kept in the State where its activity is established. An up-to-date registration certificate or corresponding must be attached to the tender.
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Förfarande
Tidpunkt för mottagande av anbud: 23:59
Språk på vilka anbud eller ansökningar om deltagande kan lämnas in: svenska 🗣️
engelska 🗣️
Anbudens giltighetstid: 2017-12-31 📅
Datum för öppnande av anbud: 2017-09-12 📅
Tidpunkt för öppnande av anbud: 00:00

Upphandlande myndighet
Identitet
Nationellt registreringsnummer: 202100-3211
Kontakt
Kontaktpunkt: Sven Asking
URL för dokument: https://tendsign.com/doc.aspx?UniqueId=afqgcdrzrw&GoTo=Docs 🌏

Kompletterande information
Granskningsorgan
Namn: Förvaltningsrätten Malmö
Postort: Malmö
Land: Sverige 🇸🇪
Källa: OJS 2017/S 135-276205 (2017-07-14)