Cold chain maintenance is changing, don’t get left behind.

Start with your existing data

SnoFox helps optimize cooling strategies for industrial refrigeration, ensuring efficient operation and lower energy consumption.  Every implementation starts by comprehensively understanding each refrigeration facility. Using pre-existing system diagrams and historical sensor data, our system configures a physics-based digital twin of the cooling system, fine-tuning the model to anticipate each operating mode under diverse conditions.  Once the facility's digital twin is configured for operation, SnoFox integrates with existing sensor/controls systems enabling real-time data collection and critical performance calculations. 

Discover meaningful insights

Your facility's digital twin calculates performance metrics that are difficult or impossible to measure directly, such as refrigeration output and refrigerant flow rates. Using proprietary algorithms, SnoFox compares current system performance to optimal levels by analyzing existing data and hundreds of variables. Our models leverage readily available yet complex data points to uncover valuable insights, including underperforming or malfunctioning equipment and opportunities for energy efficiency optimization.

Drive action and measure success

Finding inefficiencies is just the start, and fixing them involves multiple stakeholders. SnoFox provides the data and insights to understand and address these issues, driving decisions from the facility floor to the boardroom.

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  • "We know that sensors drift over time. Instrumentation that was installed 5, 10, and 15 years ago won't be as accurate as we need it to be. SnoFox can tell me how significant that drift has been."

  • "Snofox dashboard gives me more analytical tools that can be used for troubleshooting, and system optimization. For example, a correction to underfeeding ammonia to the dock evaporators."

  • "Taking action in an expensive and highly regulated industry like ammonia refrigeration requires certainty, we were able to validate the efficiency gains and impact for hot gas defrost and pulse valves on the dock evaporators."