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24,998
2026-01-01 to 2026-03-31
Business Connect
Measurement of Low Emissivity Coated Glass Temperature within the furnace/manufacturing process utilising emisisivity enhancement and emisisivity independence techniques.
163,729
2025-08-01 to 2026-04-30
Small Business Research Initiative
This project will involve field testing our portable hyperspectral smartphone imaging solution (ChromaMapper) for plant health monitoring and disease detection. This solution offers hyperspectral imaging to a high accuracy at a cost point and portability suitable for wide scale adoption in the agricultural and biosecurity sectors.
24,956
2025-02-01 to 2025-04-30
Feasibility Studies
Novel distance measurement solution for optical glass at elevated temperatures.
93,521
2024-06-01 to 2025-11-30
Collaborative R&D
This industrial research project aims to deliver a working prototype, high accuracy thermal perfusion mapping instrument, for measuring blood perfusion levels in patient's feet. The aim is to provide a more accurate reliable technique to replace ankle-brachial pressure index (ABPI) method for PAD screening and improve outcomes and reduce re-admissions for chronic limb-threatening lower limb ischemia revascularisation procedures such as endovascular treatments (eg. angioplasty/stent) or bypass surgery.
149,950
2024-04-01 to 2025-03-31
Grant for R&D
This project will develop and test a portable hyperspectral smartphone imaging solution for plant health monitoring and disease detection. This solution offers hyperspectral imaging to a high accuracy at a cost point and portability suitable for wide scale adoption in the agricultural and biosecurity sectors.
59,964
2023-08-01 to 2023-10-31
Small Business Research Initiative
Domestic combustion particulate emission and carbon dioxide capture utilising bio-activated exhaust gas suppression techniques.
36,750
2022-02-01 to 2022-10-31
Collaborative R&D
This industrial research project aims to determine the optimum measurement technique and technology for non-contact measurement of highly accurate temperature, key elemental liquid iron chemistry (including silicon and sulfur content) and key elemental molten glass chemistry (including iron oxide and magnesium oxide).
53,007
2020-10-01 to 2021-09-30
Collaborative R&D
This project aims to provide accurate in situ real time raceway adiabatic flame temperatures, coal addition rates from the lance at the tuyère and raceway depth measurements to allow blast furnace operators the ability to optimise their coal injection rates and oxygen enrichment levels at low utilisation levels to reduce coke usage.