Panasonic FV-10VEC2R is an Energy Recovery Ventilator designed to provide efficient air exchange in residential and commercial spaces. It boasts several capabilities that enhance indoor air quality and comfort:
Ventilation Performance: The device offers balanced ventilation, effectively exhausting stale air and supplying fresh outdoor air. It maintains a consistent airflow of 100 CFM in both exhaust and supply modes, ensuring proper air circulation.
Energy Efficiency: Panasonic FV-10VEC2R is engineered to minimize energy consumption while delivering optimal ventilation. It utilizes a highly efficient heat exchanger core to recover energy from the exhaust air and transfer it to the incoming fresh air, reducing heating and cooling costs.
Panasonic FV-10VEC2R is an Energy Recovery Ventilator designed to provide efficient air exchange in residential and commercial spaces. It boasts several capabilities that enhance indoor air quality and comfort:
Ventilation Performance: The device offers balanced ventilation, effectively exhausting stale air and supplying fresh outdoor air. It maintains a consistent airflow of 100 CFM in both exhaust and supply modes, ensuring proper air circulation.
Energy Efficiency: Panasonic FV-10VEC2R is engineered to minimize energy consumption while delivering optimal ventilation. It utilizes a highly efficient heat exchanger core to recover energy from the exhaust air and transfer it to the incoming fresh air, reducing heating and cooling costs.
Panasonic FV-10VEC2R is an Energy Recovery Ventilator designed to provide efficient air exchange in residential and commercial spaces. It boasts several capabilities that enhance indoor air quality and comfort:
Ventilation Performance: The device offers balanced ventilation, effectively exhausting stale air and supplying fresh outdoor air. It maintains a consistent airflow of 100 CFM in both exhaust and supply modes, ensuring proper air circulation.
Energy Efficiency: Panasonic FV-10VEC2R is engineered to minimize energy consumption while delivering optimal ventilation. It utilizes a highly efficient heat exchanger core to recover energy from the exhaust air and transfer it to the incoming fresh air, reducing heating and cooling costs.
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