Public tenders for environment in Buddinge Denmark

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Restricted procedure for the purchase of 12 fume hoods and 6 Laminar flow wet benches for harsh Chemicals.

Danmarks Tekniske Universitet — DTU | Published November 27, 2015
Winner
Arias GMBH
cpvs
38000000, 42520000, 42522000

DTU Danchip wishes to acquire 12 Fume hoods, 6 Laminar flow wet benches for harsh chemicals, several chemical storage cabinets and tables. These units will be used in our ISO 14644-1 Class 4 and 5 clean-room. The units should be built from flame retardant polypropylene. The units will be used by many different users with diverse backgrounds, which means, that operator safety is an important aspect. Another important aspect is minimization of unnecessary exhaust due to the high cost of air treatment for the clean-room environment.

Restricted procedure for the purchase of 12 fumehoods and 6 Laminar flow wet benches for harsh Chemicals.

Danmarks Tekniske Universitet — DTU | Published June 20, 2015  -  Deadline July 17, 2015
cpvs
38000000, 42520000, 42522000

DTU Danchip wishes to acquire 12 Fumehoods, 6 Laminar flow wet benches for harsh chemicals, several chemical storage cabinets and tables. These units will be used in our ISO 14644-1 Class 4 and 5 cleanroom. The units should be built from flame retardant polypropylene. The units will be used by many different users with diverse backgrounds, which means, that operator safety is an important aspect. Another important aspect is minimization of unnecessary exhaust due to the high cost of air treatment for the cleanroom environment.

Substrate Bonder SB6 Gen2.

Danmarks Tekniske Universitet | Published October 15, 2015
Winner
SUSS MicroTec Lithography GmbH
cpvs
31000000

Substrate Bonder SB6 Gen2. The machine is being used for bonding 2 substrates together with an alignment accuracy of ± 2 micrometres. The bonding methods available should be both fusion bonding (by use of applied force) and anodic bonding (by use of an applied electric field). Additionally, it should be possible to perform the process in a high vacuum environment. The substrates can be either entire semiconductor or glass wafers with a size of up to 6 inches (150 mm) and/or pieces thereof. Using the same chuck, the tool should be able to exert an evenly distributed force on both entire 100 mm wafers as well as arbitrarily shaped samples. The samples to be bonded should be loaded into the bonding chamber via a load lock to minimise pump-down times.

Consultancy Services for formulation, preparation, development, submission, contract preparation and project support of funding applications for national, international and EU funding for DTU.

Danmarks Tekniske Universitet - DTU | Published May 2, 2015
Winner
More than one supplier
cpvs
73200000

DTU submits annually about 2 000 funding applications for Danish, international, and EU funding. These funding applications are for the funding of Research and Development projects, within DTU's specific business areas. In 2013, DTU submitted funding applications for a total of 6 500 000 000 DKK. 12 % of these applications were for EU funding, under EU, FP7, Life +, Erasmus Mundus, EFSA and others. Funding applications for Danish funding (both public and private) in 2013 were submitted for a total of 5 700 000 000 DKK. The applications were submitted for research funding within DTU's core areas of expertise, which are: — Health, demographic change and wellbeing; — Food security, sustainable agriculture and forestry, marine and maritime and inland water research, and the Bio economy; — Secure, clean and efficient energy; — Smart, green and integrated transport; — Climate action, environment, resource efficiency and raw materials; — Europe in a changing world - inclusive, innovative and reflective societies; — Secure societies - protecting freedom and security of Europe and its citizens. Submission of proposals for external funding requires normally dedicated resources for a short period of time, while the proposals are being developed. Therefore DTU requests the services of short-time consultants to deal with the formulation, preparation and development of these funding applications.

Plasma Thermal ALD System.

Danmarks Tekniske Universitet — DTU | Published November 20, 2015
Winner
Picosun Oy
cpvs
38000000

This tender is concerning a combined plasma/thermal Atomic Layer Deposition system (p/t-ALD) for research applications with focus on high flexibility regarding source materials (metals and dielectrics), substrate materials and sizes. It should be possible to deposit metal oxides, metal nitrides and pure metal thin films in ALD-mode. The plasma source should be located in a remote position with respect to the substrate (substrate located ‘down-stream’). It must be possible to run the precursors concurrently thereby enabling multilayer stacks of thin films. To secure high thermal uniformity the reactor should be provided with heated chamber walls. Furthermore, the ALD system should be equipped with a transfer load-lock to secure optimal vacuum conditions in the reaction chamber during sample transfer. All components of the system should be easy to access and maintain. Regarding the precursor delivery system focus must be on fast precursor/gas valves, strict thermal control of the precursors from bottle to reaction chamber, fast purge/cycle times securing high-precision in the thin film layer control and smallest possible foot print for the total system (reaction chamber incl. load-lock). The possibility for stacked substrates to increase throughput will have high priority. The instrument will be placed in a multi-user environment so it must be very user friendly and robust. It is essential that the tool supplier can guarantee fast and reliable service even without a service contract.

Plasma Thermal ALD System.

Danmarks Tekniske Universitet — DTU | Published September 19, 2015  -  Deadline October 20, 2015
cpvs
38000000

This tender is concerning a combined plasma/thermal Atomic Layer Deposition system (p/t-ALD) for research applications with focus on high flexibility regarding source materials (metals and dielectrics), substrate materials and sizes. It should be possible to deposit metal oxides, metal nitrides and pure metal thin films in ALD-mode. The plasma source should be located in a remote position with respect to the substrate (substrate located ‘down-stream’). It must be possible to run the precursors concurrently, thereby enabling multilayer stacks of thin films. To secure high thermal uniformity the reactor should be provided with heated chamber walls. Furthermore, the ALD system should be equipped with a transfer load-lock to secure optimal vacuum conditions in the reaction chamber during sample transfer. All components of the system should be easy to access and maintain. Regarding the precursor delivery system focus must be on fast precursor/gas valves, strict thermal control of the precursors from bottle to reaction chamber, fast purge/cycle times securing high-precision in the thin film layer control and smallest possible foot print for the total system (reaction chamber including load-lock). The possibility for stacked substrates to increase throughput will have high priority. The instrument will be placed in a multiuser environment, so it must be very user friendly and robust. It is essential that the tool supplier can guarantee fast and reliable service even without a service contract.

Construction work

Campus Service — Danmarks Tekniske Universitet (DTU) | Published October 5, 2017  -  Deadline November 3, 2017
cpvs
45000000, 45214300

The main contract for this contract is a modernization - including environmental renovation - of building 358 for the establishment of time-consuming offices, teaching and learning rooms and the study environment for DTU Management Engineering. Modernization will take place within the framework of the building's overall disposal and overall building structure. The building was built in 1967

The current state of the building is very diverse. About half of the building, which has until now been housed in the Maskinmesterskole, is worn out with delivery and living areas in connection with the canteen, toilet cores, changing facilities and lighting level. Other areas are in reasonable condition.

Supplies and projects are freely available via iBinder.

Reference is made to item II.1.4) and the tender documents, which are freely available through the iBinder Procurement Portal.

DTU Life Science and Bioengineering, Building 204 and Building 201, Environmental clean-up and partial demolition.

Danmarks Tekniske Universitet (DTU) | Published December 18, 2014  -  Deadline January 19, 2015
cpvs
45000000, 45111100, 45262640, 45262660

The existing building 201, chemistry building, must henceforth be the administration building in the overall Life Science and Bioengineering complex. The existing building 204 will in future continue to serve as a laboratory and administration building - however the overall Life Science and Bioengineering complex. Building 204 is made up of approximately 5,000 square meters, 1,675 m² basement and 770 m² taghus. Building 201 has corresponding areas. The task is offered as a complete general contracting. The buildings have been detected instances of heavy metals, lead, PCBs, chlorinated paraffins and asbestos. In building 201 must all permanent fixtures (fume hoods, labbænke etc.) removed. All existing installations incl. electrical, chemical drains and gases near the toilet drains and rainwater system must also be removed. There must be carried out demolition of some non-bearing brick walls. In taghuse, existing cladding and insulation removed. In addition, there must be environmental sanitation of surfaces to be worked on. In building 204 must be something fixtures (labbænke) removed. There must be carried out demolition of some non-bearing brick walls. All existing electrical installations and individual extraction points and chemistry drain removal. In taghuse, existing cladding and insulation removed. In addition, there must be environmental sanitation of surfaces to be worked on. Renovation is expected to start in building 204, which may become a little break before renovation can be continued in the building. 201
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