GE 8500 Series installation instructions Constant on Fan, Occupancy Sensor Field Supplied, Duct

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Safety Instructions

Operating Instructions

Care and Cleaning

Consumer Support Troubleshooting Tips

Controls–dip switches.

Freeze Sentinel (Requires room air sensor kit–RAVRMS)

When this switch is enabled (UP), it turns OFF the freeze sentinel protection feature. With the switch disabled (DOWN), the freeze sentinel is activated which automatically provides heat without user interface. This helps to prevent plumbing damage by turning the heater and fans ON at 41° F and OFF at 46° F.

Constant ON Fan

When this switch is enabled (UP), it allows the fan to run continuously.

Occupancy Sensor (Field Supplied)

When this switch is enabled (UP), it allows the unit to utilize an infrared motion sensor and a door switch for occupancy detection. This feature combined with field devices automatically cycles the unit between normal operation and a preset energy management operation.

Duct

The duct select function allows the indoor

fan to be operated at two variable fan speeds. When this switch is enabled (UP), the unit automatically selects either high or middle fan speed (for longer ductwork applications). When set in the down position, the unit is automatically operated in either the middle or low fan speed (for shorter ductwork applications).

FREEZE S (Freeze Sentinel)

CONST FAN (Constant ON Fan)

OCCUPIED (Occupancy Sensor)

DUCT (Blower Fan)

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Contents Warranty Air FiltersPreparation Model # Serial #Safety Precautions Controls-dip switches Controls-Dip SwitchesTroubleshooting All Electric Heat Heat pump models onlyConstant on Fan Occupancy Sensor Field SuppliedDuct Freeze Sentinel Requires room air sensor kit-RAVRMSTemperature limiting during Cool mode Temperature Limiting Requires room air sensor kit-RAVRMSGEAppliances.com Controls-terminal connections Controls-Terminal ConnectionsRoom Air Sensor Requires room air sensor kit Ravrms Also be connected to the remote thermostatCentral Desk Control Remote ThermostatMotion Sensor Obtained locally Door Sensor Obtained locallyOther features of your Zoneline On/Off SwitchVentilation Control About Heat Pumps on some modelsCare and cleaning DrainBase Pan Air FiltersInstallation Recommended branch circuit wire sizes For 230/208 Volt Cord Connections onlyFor 230/208 Volt Direct Connect Applications only Remove Junction BOX CoverAttach Conduit Important Connection of a 265V AC productMake Wire Lead Connections Inside the Junction BOX Power Connection ChartRequired Accessories Zoneline ComponentsModel Type Electronic ThermostatTypical Utility Closet and Dimensions Top ViewUtility Closet Connection Locations Option Air grille and access door/panelUnit-mounted filter with a field-supplied return Build and Install the Zoneline Base Platform Install the Drains Ductwork000 BTU 12,000 BTU 18,000 BTU 390 415 440 465 490 435 485 535Install and Connect the Case Install and Ground Unit to the CaseAdjust all four leveling legs until the case is level Unit to the CaseMake Unit Electrical Connections Maximum Wiring Length for Thermostat Connection to the UnitConnect the TOP Duct Final Check Connect PowerServicing Before You Call For Service… Power failure Indoor airflow is restrictedUnit is unplugged Air filter is dirtyMinute delay Things that are normalNormal Operating Sounds Compressor. You may also hear a fan noise stop and startGEAppliances.com Page Vertical Zoneline Warranty For The Period GE Will ReplaceWhat GE Will Not Cover Model numberSchedule Service Parts and AccessoriesConsumer Support GE Appliances Website Real Life Design Studio

8500 Series specifications

The GE 8500 Series represents a remarkable advancement in the realm of industrial gas turbines, combining efficiency, reliability, and flexibility. Designed to meet the demands of current energy markets, this series of turbines is engineered for both baseload and peak-load applications, making it an ideal choice for operators seeking to optimize their energy production.

One of the standout features of the GE 8500 Series is its exceptional thermal efficiency. With a capability of achieving efficiency levels exceeding 60%, these turbines significantly reduce fuel consumption and lower greenhouse gas emissions. This feature not only makes them environmentally friendly but also helps operators reduce operational costs in the long run, positioning them favorably in a competitive energy landscape.

The GE 8500 Series incorporates advanced airfoil technologies that enhance performance. Featuring an innovative blade design, these turbines are capable of operating efficiently across a wide range of operating conditions. The materials used in the construction of the blades are engineered for durability, allowing them to withstand the harsh environments often encountered in power generation. This greatly extends the service life of the turbine and reduces downtime for maintenance.

Another important aspect of the GE 8500 Series is its adaptability. These turbines can utilize various fuels, including natural gas, hydrogen, and biofuels, offering flexibility to operators in terms of resource management. This feature allows utilities to adjust to changing fuel availability and price fluctuations, ensuring consistent energy generation.

The control and monitoring systems integrated into the GE 8500 Series are state-of-the-art, featuring advanced digital control technologies that provide real-time performance data. This allows operators to make informed decisions regarding maintenance and operational adjustments, ultimately enhancing the overall reliability of the power generation system.

In addition to these advancements, the GE 8500 Series is designed with a focus on reduced emissions without compromising performance. The turbines incorporate advanced combustion technologies that facilitate ultra-low emissions, aligning with the global movement toward cleaner energy solutions.

In conclusion, the GE 8500 Series is an exceptional line of gas turbines that combines high efficiency, flexibility, and low emissions. With advanced technologies and robust features, these turbines are positioned to meet the evolving needs of the energy sector while supporting the transition to a more sustainable future.