Fantech FIT 120E-D-EC-M 129 CFM Low Profile Mirrored Energy Recovery Ventilator w/ Shut-Off Damper

ERV & HRV Ventilation Systems

Simplify design and installation in mirrored floor plans with the Fantech FIT 120E-D-EC-M Low Profile EC Motor ERV with Shut-Off Damper. The compact, mirrored design and included ceiling bracket make it easy to install, out of the way, with a 10-inch installed depth to ensure a perfect fit. Using high efficiency EC motors, the Fantech FIT 120E-D-EC-M series features an energy recovery core that effectively transfers moisture and heat from the outgoing air to the incoming fresh airflow, minimizing the energy needed to maintain a comfortable indoor environment year-round. Key Features and Benefits of the Fantech FIT 120E-D-EC-M Series Energy Recovery Core: The energy recovery core has a durable polymer membrane facilitating water vapor transport. This core exhibits high humidity permeability and is freeze-tolerant and water-washable. Convenient and Secure Duct Connections: It features metal collars with rubber gaskets to ensure the 5-inch side port duct connections are tightly sealed for seamless integration with your existing ductwork. Shut-Off Damper: The integrated mechanical shutoff damper ensures the supply ductwork doesn't allow outside air to be drawn back into the space during standby or defrost mode. Customizable Airflow Control: This fresh air appliance offers multi-speed operation from 40 to 129 CFM at 0.4 inches w.g., according to your specific space requirements. The settings can be easily managed through the external electrical box, or a separate wall control. Frost Prevention Mechanism: When the outdoor air temperature reaches 14 degrees F or lower, the appliance automatically engages a preset frost prevention sequence where the supply blower halts operation while the exhaust blower switches to high speed, maximizing the effectiveness of the frost prevention method. Normal operation resumes afterward. Drain-Free Design: No drain is required for installation. Moisture in the incoming air is simply transferred to the outgoing air during the circulation pr

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