Trinity College. During fiscal year 2022, we entered into a power purchase agreement with Trinity College in Hartford, Connecticut, for our 250 kW solid oxide fuel cell power generation system. Power and heat produced from the platform will be used at Trinityβs campus in Hartford, Connecticut, to lower energy cost and enhance energy reliability and security. Β This project is currently under development and the solid oxide fuel cell power generation system is expected to be installed in the summer of 2024. Modules for our solid oxide platform are manufactured at our manufacturing and research and development facility in Calgary, Alberta, Canada, and the project will be fully assembled and integrated at our facilities in Connecticut.
Manufacturing Output, Capacity and Expansion: We have made progress in advancing our carbonate and solid oxide platform capacity expansion plans.
Carbonate Platform: During the nine months ended July 31, 2023, we operated at an annualized production rate of approximately 31.9 MW, compared to an annualized production rate for the nine months ended July 31, 2022 of 38.5 MW. This reduction in annualized production rate is primarily due to reduced staffing levels in our Torrington facility. The Company continuously evaluates its production rate and staffing levels and has determined that the current levels are sufficient to satisfy the current demand for carbonate fuel cell modules.
The Company continues to invest in capability with the goal of reducing production bottlenecks and driving productivity, including investments in automation, laser welding, and the construction of additional integrated conditioning capacity. The Company also constructed a SureSource 1500 in Torrington during fiscal year 2022, which operates as a testing facility for qualifying new supplier components and performance testing and validation of continued platform innovations. During fiscal year 2023, the Company is investing to add engineered carbon separation capability to the onsite SureSource 1500. This product enhancement will allow potential customers to observe the operating plant and, given the targeted market of food and beverage companies, will allow for the sampling and testing of separated CO2 to verify quantity, quality or purity requirements.
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Solid Oxide Platform: The Company continues to invest in product development and manufacturing scale up for two solid oxide platforms: power generation and electrolysis. Β Both platforms are based on the Companyβs differentiated thin, lightweight, electrode supported cells, which are configured into compact, lightweight stacks. The thin electrode structure minimizes electrolyte materials, leading to very low use of rare earth minerals compared to other solid oxide technologies, and the electrodes do not require the platinum group materials that lower temperature systems require. The thin electrodes also have very low electrical resistance, leading to high efficiency in both power generation and electrolysis applications. We provide integrated products with the goal of offering complete customer solutions. Our electrolysis platform includes integrated steam generation and hydrogen drying systems, so it will be fed with water, not steam, and will provide dried hydrogen. Β A steam supply can optionally be used to increase the electrical efficiency of the system from 90% to 100% (based on higher heating value). Our power generation platform can operate on natural gas, biogas, hydrogen, or fuel blends, and is capable of combined heat and power operation at up to 80% efficiency (based on lower heating value).
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During the nine months ended July 31, 2023, Versa Power Systems Ltd. (βVersa Ltd.β), a subsidiary of FuelCell Energy, entered into a lease expansion, extension and amending agreement which expanded the space leased by Versa Ltd. in Calgary, Alberta, Canada to include an additional approximately 48,000 square feet, for a total of approximately 80,000