Field Controls PVU-300 installation instructions Installation of Power Venter

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8.Air flow adjustment MUST be made to ensure appliance efficiency. This should be done at the appliance exhaust outlet with a velocity meter, draft gauge or by the "match test procedure". The match test is in accordance with National Fuel Gas Code A.N.S.I.Z223.1, Section 8.6.

9.On heating appliances not equipped with a draft hood, a barometric draft control MUST be installed to regulate proper air flow and fluctuations in the system's air flow during operation. Fluctuations can come from wind loads on the outlet of the venter, house depressurization during windy days and the different house ventilation requirements between summer and winter operation. Use a Field Controls Type MG-1 Barometric Draft Control. Gas-fired draft induced systems should have a single-acting or double-acting barometric draft control installed.

Diagram A

INSTALLATION OF POWER VENTER

CAUTION: Failure to install, maintain and/or operate the power venting system in accordance with manufacturer's instructions will result in conditions which may produce bodily injury and/or property damage.

1.Remove power venter from box and inspect unit for damage. If the carton has been crushed or mutilated, check unit very carefully for damage. Rotate venter wheel to insure that the motor and venter wheel rotate freely. DO NOT install if any damage is apparent. Refer to unit sizing chart to check proper venting sizing.

2.Location of the termination of the venting system should be installed in accordance with the National Fuel Gas Code, A.N.S.I.Z233.1, manufacturer's recommendations, and/or local codes which are applicable. See the following requirements or refer to Diagram A for typical locations.

a. The exit termination of mechanical draft systems shall not be less than 7' above grade when located adjacent to public walkways.

b. A venting system shall terminate at least 3' above any forced air inlet located within 10'.

c. The venting system of other than a direct vent appliance shall terminate at least 4' below, 4' horizontally from, or 1' above any door, window, or gravity air inlet into the building.

d. The vent termination of a direct vent appliance with an input of 50,000 BTU/Hr or less, shall be located at least 9" from any opening through which vented gases could enter the building. With an input over 50,000 BTU/Hr, a 12" termination clearance shall be required.

e.The vent termination point shall not be installed closer than 3' from an inside corner of an L-shaped structure.

f.The vent termination should not be mounted directly above or within 3' horizontally from an oil tank vent or gas meter.

g.The bottom of the vent terminal shall be located at least 12" above finished grade.

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Contents Typical Venting System Components Do not Destroy These Instructions Must Remain with EquipmentPower Venter Sizing System OperationInstallation Safety Instructions Vent Pipe Fittings Vent Pipe Diameter TEE Elbow ReducerInstallation of Power Venter Side Wall Vent Hood Installation Diagram B Internal Wiring Schematic for PVU-300 General Wiring Instructions Adjusting Thermostat Anticipator AIR Flow Adjustments General Installation InspectionSystem Control Check Procedures Troubleshooting TipsMaintenance Replacement Parts ListMultiple Venting Systems Diagram G Multiple Wiring with two 24 VAC Appliances Diagram H Multiple Wiring with two 120 VAC Appliances PV Series Power Venter Vertical Venting Option Installation Information Venting System Operational Information46517200 Rev B 11/06

PVU-300 specifications

Field Controls PVU-300 is a highly esteemed device in the realm of indoor air quality management, particularly designed for residential and light commercial applications. This innovative product excels in providing a comprehensive solution for ventilating spaces while ensuring optimal comfort and air quality.

One of the main features of the PVU-300 is its capability to deliver fresh outdoor air efficiently into a building while exhausting stale indoor air. This is crucial for maintaining a healthy living or working environment. The unit comes equipped with multiple airflow configurations, allowing it to adapt seamlessly to various building sizes and layouts.

The PVU-300 utilizes advanced demand control ventilation technology, which adjusts ventilation rates based on the actual occupancy and indoor air quality needs. This not only enhances comfort but also improves energy efficiency, as the system reduces unnecessary energy consumption during periods of low occupancy.

Furthermore, the PVU-300 is designed with intuitive controls that allow for easy operation and monitoring. The user-friendly interface simplifies adjustments and settings, ensuring that users can easily manage their ventilation needs. This device is compatible with a range of sensors, enabling it to work in conjunction with CO2 and humidity controls, further optimizing performance.

In terms of construction, the PVU-300 is built with durability in mind. Its robust design ensures longevity and reliable operation in various environmental conditions. The unit also boasts a compact footprint, making it suitable for installation in tight spaces without compromising airflow performance.

The technology behind the PVU-300 includes high-efficiency fans that minimize noise levels while maximizing airflow. This ensures that the device operates quietly, providing a comfortable environment without distracting sounds.

Installation of the PVU-300 is straightforward, thanks to its flexible duct design and user-friendly mounting options. This efficiency not only saves time but also reduces labor costs associated with installation.

In conclusion, the Field Controls PVU-300 represents a significant advancement in ventilation technology, combining energy efficiency, user-friendliness, and adaptability to diverse environments. Its features and technological innovations make it an ideal choice for enhancing indoor air quality, ensuring spaces are both comfortable and healthy for occupants.