Trane CAB-PRC001-EN manual End Device Options, Two-Position Control Valves

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End Device

Controls Options

Control Valve

Two-Position Fresh Air Damper Actuator

End Device Options

All end device options are factory- installed and tested.

Two-Position Control Valves

Model Number Digits 27 and 28 = A - H Two-position valve options are available with either Tracer ZN.010, ZN.510, or ZN.520. Valves are spring-return type, sweat connections, and available as normally open or closed. The valves respond to a 24V signal and have 1/2-inch sweat connections. The two-way valve option will either fully open or close. The three-way valve option allows either full water flow through the coil or diverts waterflow through the bypass. If the control valve loses power, the valve returns to its de-energized position. All control valve options are factory installed in the leaving water piping downstream of the hydronic coil. The valve actuator is easily removable for service without removing the valve body from piping.

Modulating Control Valves (ZN.520) Model Number Digits 27 and 28 = J - R

These 1/2-inch sweat connect valves are three-wire floating point valves, equal percentage type. Modulating valves are available in four Cv sizes: 0.7, 1.5, 2.5, and

4.0.The valve responds to a 24V triac signal from the controller, which deter- mines the valve position by a control algorithm. If the valve loses power, it remains in the position that it was in

when the power loss occurred. All control valves are factory installed in the leaving water piping downstream of the hydronic coil.

Field-Supplied Valves

Model Number Digits 27 and 28 = X or Y When using field-supplied valves, this option allows the controller to be factory- configured for the normal position of the field-supplied valve.

Note: The Trane Company does not recommend wild coil applications.

Two-Position Fresh Air Damper Actuator Model Number Digit 13 = D, E, or F (Available with all control options except ZN.520)

This damper actuator uses a 24V signal and is factory-wired and mounted to the damper assembly. It allows zero to 50% fresh air. The damper will drive open to an adjustable mechanical stop-position whenever the fan is running during occupied mode and will spring-return closed when the fan turns off.

CAB-PRC001-EN

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Contents December Force-Flo Cabinet HeaterIt isn’t just a fan and a coil… Contents Features and Benefits Selection ProcedureModel Number DescriptionDigit 28 Not Used Digit 27 Main Control ValveDigit 29 Piping Packages Digit 30 Control TypeUnit General Data ConfigurationsModel a Vertical Concealed Model B Vertical CabinetModel C Horizontal Concealed Fresh Air Outlet Model D Horizontal CabinetOutlet Inlet Model F Vertical Wall Hung Cabinet General Data Unit ConfigurationsModel E Horizontal Recessed Vertical Recessed Model HModel J Vertical Cabinet Slope TopModel N Inverted Vertical Recessed General DataModel M Inverted Vertical Cabinet Table GD-2. Cabinet Heater Air Flow Table GD-1. Force-Flo Cabinet Heater General DataElectric Heat Electric HeatPiping Packages Factory-Installed Piping PackagesPiping Package Options General DataSelecting the Correct Modulating Valve Size Hot Water PerformanceData CoilsTable PD-3. Free Discharge Motor, Group Table PD-2. Free Discharge Motor, GroupTable PD-4. Free Discharge Motor, Group Table PD-6. High Static Motor, Group Table PD-5. High Static Motor, GroupTable PD-7. Free Discharge Motor, Group Performance Steam DataCoilsTable PD-8. Free Discharge Motor, Group Table PD-9. Free Discharge Motor, GroupTable PD-12. Steam Properties Table PD-10. High Static Motor, GroupTable PD-11. High Static Motor, Group Controls Manual Fan Mode SwitchControl Options Tracer ControlsSequence of Operation SequenceControls Operation Table C-2. Controller Function Summary General Controls InformationTable C-1. Controller Input/Output Summary Controls Options Zone SensorZone Sensor Options ZN.010ZN.520 Additional Features Controls FeaturesControl Features Control Valve Two-Position Fresh Air Damper Actuator End Device OptionsTwo-Position Control Valves Units with Electric Heat Electrical DataCalculating MCA Calculating MFSRPM Table ED-6. Two-Stage Electric Heat Digit 18 = U Table ED-8. Single Stage, Low kW Electric Heat Digit 18 = Table ED-7. Single-Stage, Max kW Electric Heat Digit 18 = NTable DW-2. Shipping Weights lbs. kg Dimensions WeightsTable DW-1. Operating Weights lbs. kg Vertical Concealed Unit Dimensions DimensionsVertical ConcealedVertical Cabinet, Model B Vertical Cabinet Unit DimensionsHorizontal Concealed, Model C Horizontal Concealed Unit DimensionsHorizontal Horizontal Cabinet, Model D Horizontal Cabinet Unit DimensionsCabinet Horizontal Recessed, Model E Horizontal Recessed Unit DimensionsRecessed Vertical Wall Hung Cabinet, Model F Vertical Wall Hung Cabinet Unit DimensionsWall Hung Vertical Recessed, Model H Vertical Recessed Unit DimensionsVertical Slope Top, Model J Vertical Slope Top Unit DimensionsSlope Top Inverted Vertical Cabinet, Model M Inverted Vertical Cabinet Unit DimensionsInverted Vertical Inverted Vertical Recessed, Model N Inverted Vertical Recessed Unit DimensionsConnections CoilCoil Connections Vertical Units Horizontal Units Inverted UnitsOpening Fresh Air Opening Dimensions, Horizontal UnitsFresh Air Fresh Air Opening Dimensions, Vertical Units Continuous Mortar Ribs TOP and Bottom Wall BoxProjection Panel Dimensions Projection PanelProjection Panel Dimensions Mechanical Specifications Filters Electric Heat CoilFresh Air Damper Manual DamperMechanical Specifications Options Recessing Flanges False BacksAluminum Wall Boxes Projection PanelsAuto Circuit Setter Piping Components Ball ValveManual Circuit Setter Balance Fitting Control ValveUnion StrainerTrane Company Division of American Standard Inc

CAB-PRC001-EN specifications

The Trane CAB-PRC001-EN is an advanced control system designed to enhance the efficiency and performance of commercial heating, ventilation, and air conditioning (HVAC) systems. This building automation system plays a crucial role in optimizing indoor climate conditions while maximizing energy savings.

One of the standout features of the CAB-PRC001-EN is its capability for real-time monitoring and control. The system integrates seamlessly with various HVAC components, allowing users to adjust settings, schedules, and operational modes from a centralized interface. This flexibility ensures that building managers can respond promptly to changes in occupancy or external weather conditions, optimizing comfort while minimizing energy consumption.

The CAB-PRC001-EN employs a robust set of advanced technologies aimed at enhancing system reliability. Utilizing adaptive control algorithms, it intelligently balances heating and cooling loads across different zones, ensuring a consistent temperature environment throughout the building. The system can quickly adapt to variable load conditions, improving energy efficiency and reducing wear on equipment.

Another defining characteristic is its commitment to user-friendly operation. The intuitive interface utilizes a clear graphical display, making navigation straightforward for users of all skill levels. Furthermore, the system can be accessed remotely through web-enabled devices, providing convenience and flexibility for building managers who are often on the move.

Integration capabilities are another hallmark of the CAB-PRC001-EN. It is designed to work with a multitude of third-party devices and protocols, enabling a comprehensive building management solution. This compatibility allows for smooth communication between different systems, including lighting, security, and fire safety systems, fostering an environment of enhanced operational efficiency.

In addition, the CAB-PRC001-EN supports advanced analytics and reporting features. Users can generate detailed reports on energy usage, system performance, and maintenance needs, enabling informed decision-making that can lead to further energy savings and improved system longevity.

In summary, the Trane CAB-PRC001-EN control system is a cutting-edge solution designed for commercial buildings, offering a combination of real-time monitoring, advanced control technologies, user-friendly interfaces, seamless integration capabilities, and powerful analytics. This makes it an ideal choice for any organization looking to enhance their HVAC operations while promoting sustainability and energy efficiency.