Varitrac pc software download






















The Voyager can replace an older machine with old ductwork and, in some cases, improve the comfort through better air distribution. Sloped Condensate Drain Pans can be found in all Voyager units. To improve indoor air quality, these drain pans ensure proper slope and drainage in order to prevent conditions of water stagnation that result in microbial growth. VariTrac - is an electronic control system that provides a thermostat for every comfort zone and the intelligence to control their comfort.

Each thermostat allows the VariTrac air damper to carefully monitor and cool the temperature of each zone, eliminating varying temperatures throughout a building. By using microelectronic technology, Trane provides cost effective variable air volume comfort to traditional single-zone office buildings. Tracker - building management panel provides microelectronic control and monitoring. Tracker communicates with Voyager zone controllers with the ability to track status points and alarm messages on a communications link, creating a total Integrated Comfort System.

Tracker software provides scheduling, monitoring, and timed override capabilities, as well as local and auto dial-out indication of alarms. Operator interface is simple and user-friendly with the use of icons on the keypad and a two-line liquid crystal display LCD. Tracer - Integrated Comfort system, when coupled with Voyager, provides the ultimate in centralized control, monitoring, energy management, and equipment diagnostic functions.

Tracer provides the ability to monitor and control the operation of each rooftop unit and coordinate their operation with other HVAC equipment. Download PDF for more information». Corregido Gas Heat Exchanger Built to last The heat exchanger is manufactured using aluminized steel with stainless steel components for maximum durability The American National Standards Institute Z Trane demands that their design be tested to 2.

This feature makes Voyager one of the safest gas heat systems on the market today The forced combustion blower supplies pre-mixed fuel through a single stainless steel burner screen into a sealed drum where ignition takes place.

It is more reliable to operate and maintain than a multiple burner system The Hot surface ignition is a gas device which doubles as a safety device utilizing a continuous test to prove the flame.

Trane Built Compressors Reliability This is an editable setup parameter with a range of 1 to 4 factory default is 2. All current callers must be satisfied before the system is allowed to change over. A minimum time between changeovers is enforced. The editable setup parameter has a range of 10 to 60 minutes; the factory default is 15 minutes.

The counter begins running immediately after a changeover occurs and must expire before changeover is allowed. The time remaining on the counter is displayed in the operator display and PC software. If the system is in the heating mode and three zones are calling for heat, all three zones must be satisfied.

Note: During the unoccupied mode all groups unoccupied , the Minimum Opposite Calls to Changeover functions the same as in the occupied mode.

Minimum Opposite Strong Calls to Changeover is an editable setup parameter with a range of 1 to 4 factory default is 2. Note: During the unoccupied mode all groups unoccupied the minimum opposite calls to changeover automatically changes to one 1 , so any opposite strong caller can initiate a mode change. With a call for heating or cooling from one of the zones, the CCP activates stages of heating or cooling to satisfy the requirement. The control algorithm is both deviationand time-based.

During operation, the CCP monitors not only the supply air temperature deviation from setpoint, but also how quickly deviation occurs when a stage is turned off, and how quickly deviation is recovered when a stage is turned on.

This allows the CCP to adjust the number of stages required and the stage cycle rate for the most consistent supply air temperature control.

The control algorithm always meets the minimum-on and -off time requirements when adjusting stages. After it is energized, a stage must remain on until its minimum-on time is satisfied. After a stage is turned off, it cannot be turned on again until its minimum-off time is satisfied. This mode holds the ventilation air damper closed on the HVAC unit until the system restores the zone temperatures to their occupied setpoints.

The mode terminates when half of the occupied voting zones are satisfied or become opposite callers. The spare output is energized during morning warm-up and de-energized when morning warm-up terminates. The VariTrac system normally operates in the autochangeover mode. If manual selection of the mode is required, the operator may manually place the system in the heat, cool, off, or auto mode.

The system remains in the selected mode until it is manually returned to the auto mode. The relay board in the central control panel is not required. This configures the binary outputs to control in the appropriate sequence. The sixth binary output on the optional relay board is an SPDT unpowered spare output relay.

An entry in the PC software allows you to choose how the relay is controlled:. The spare output controls the outdoor air damper control. The output is energized when the CCP all groups is unoccupied. The spare output is de-energized when morning warm-up terminates. The spare output is energized when the CCP is in cooling and deenergized when it is in heating. The state of the relay is controlled by an upper-level system, such as Tracker or Tracer currently not supported.

The relay is controlled by the CCP demand-controlled ventilation program and energizes when the CO 2 alarm point is reached. This relay function can be used to reset the position of a ventilation damper on a noncommunicating HVAC unit based on the zone CO 2 level.

Auxiliary heat on heat pump units can be disabled via PC software. When disabled, any stages of auxiliary heat are turned off minimum-on times are enforced. Occupied priority local heat is controlled via a PC software entry.

If occupied priority local heat is enabled, each zone controls the local heat to the heating setpoint for that zone during the occupied mode. In this mode, the zone heats to setpoint with local heat first. Unoccupied priority local heat allows the operator to select a different local heat function during the unoccupied mode.

Although priority local heat control may be desirable for better comfort control during the occupied mode, it may be desirable for the HVAC unit to have heating priority to save energy when comfort is not as critical during the unoccupied mode. Unoccupied priority local heat is controlled via an entry in the PC software. If unoccupied priority local heat is enabled during the unoccupied mode, each zone controls the local heat to the unoccupied heating setpoint for that zone.

Only fan-powered VAV boxes operate their local heat with the main supply fan off. Unoccupied local heat calls at the zone level will not energize the main supply fan. The occupancy of the VariTrac system can be determined one of three ways listed in order of priority, high to low :. When the VariTrac system is scheduled by Tracker or the CCP operator display, the group scheduling function is available.

When a contact closure is made across terminals TB and -9, the unoccupied mode is initiated for all groups and connected zones. During the unoccupied mode, the fan operates only on a demand for heating or cooling.

This minimizes the fan operation to save energy. During the unoccupied mode, the minimum opposite strong calls for changeover goes to one so any strong caller can change the system over.

All other system setup parameters remain the same during the unoccupied mode. The energy saver and ventilation modes require continuous fan operation and are disabled in the unoccupied mode.

During the unoccupied mode local heat is disabled at all zones when the fan in the air handler is off. When the fan is energized local heat is enabled unless edited to disabled in the PC software. Many systems require the outsideair damper to remain closed during unoccupied operation. The spare binary output on the optional relay board can disable the outside air damper during the unoccupied mode.

Each group can have up to 24 members. Any zone can be assigned to any group, but a zone can only be a member of one group at a time. By default, all 24 zones are assigned to Group 1. This allows zones serving a specific area to be grouped and scheduled together. Each air conditioning system controlled by a central control panel can have up to four separate time-of-day schedules, one for each of the four groups.

If any group is occupied, the central control panel will operate the supply fan and handle zone voting according to occupied parameters. All four groups must be unoccupied for the CCP to operate using unoccupied parameters.

Zones that are members of occupied groups control to occupied setpoints. Zones that are members of unoccupied groups control to unoccupied setpoints. If the timed override button on a zone sensor is pressed, all zone members of that group become occupied. The CCP operates the supply fan and handles zone voting according to occupied parameters. Zones that are members of unoccupied groups but on the same CCP, continue to control to unoccupied setpoints.

A cancel signal from any group member is treated as a cancel for the group. If another group TOV signal is generated, the timer is reset to two hours and the group continues to be controlled to the occupied setpoints.

If the timer expires or a cancel TOV signal is generated, the group is released from the timed override control. The group flow control defaults to auto.

The group member zones modulate their dampers to follow temperature versus setpoint demand. Zone damper position can be manually overridden to continuous open, closed, minimum, or maximum. When enabled, the energy-saver mode allows zone dampers to close below their minimum minimum changes to zero. This only occurs if a zone is in the cooling mode with a zone temperature lower than the active heating setpoint, or in the heating mode and with a zone temperature greater than the active cooling setpoint.

This feature prevents counterproductive air from entering a zone. When enabled this mode allows dampers to open for greater ventilation. This occurs when the group is occupied and the air conditioning system is in zero energy state no stages of heating or cooling energized for more than four minutes.

When the ventilation mode is active, the vent flow multiplier is not allowed to drop below 4. The fans in parallel fan-powered boxes can be enabled or disabled. Series fans cannot be overridden. Zone local heat can be enabled or disabled. Note: The fans in series fan-powered VAV boxes cannot be overridden, and are not controlled by the occupancy schedule.

Series fans only go off when the air valve is fully closed. When the system balance mode is enabled, the CCP automatically prepares the VariTrac system for balancing. When enabled, the CCP sets the following parameters:. The system may now be balanced manually as a single-zone system. The balanced mode offers a group override function for the four groups. This function allows a group of dampers to modulate from the maximum position to the closed position to compensate for airside diversity.

The CCP remains in the balance mode until the mode is manually disabled. When the system exits the balance mode, all functions return to normal, and a system calibration is performed. The VariTrac system can be placed in the balance mode from the operator display or the PC software.

The program has four configuration settings:. As the zone CO 2 level rises from the normal level to the peak level, the damper position is reset linearly between the minimum damper position and the maximum damper position. The program can be configured to use one zone CO 2 sensor as its source, or it can be configured to hunt through all zones with sensors attached and use the highest value. If the VariTrac system is controlling a noncommunicating HVAC unit with the optional relay board, the spare binary output on the relay board can be configured for CO 2 control.

In this configuration, the program will energize the relay when the peak CO 2 level is reached and de-energize the relay when the CO 2 concentration returns to the normal level. If the setpoint thumbwheel on the zone sensor attached to a zone UCM is enabled, the thumbwheel becomes the active occupied setpoint. The setpoint at the thumbwheel is the active occupied cooling setpoint.

Each zone UCM has a set of setpoint limits that restricts the setpoint range of the sensor knob. The VariTrac CCP allows you to create a single set of limits for the setpoint thumbwheels on the zone sensor and broadcast them to all the zones on the system at one time by pushing a single button.

A reset occurs in the UCM after every power failure. The UCM also initiates a reset automatically whenever air valve timing, water-valve timing, or unit size is edited. The calibration process can take as long as 11 minutes, depending on the edited drive time. After a power failure, the reset starts are delayed by 20 minutes. This is to prevent reset calibration of the UCM from interfering with the calibration of the bypass dampers and static pressure sensor.

This process occurs when the system transitions from the occupied to unoccupied mode. If the CCP has no schedules hour operation the system will calibrate approximately once every seven days. See Bypass System Calibration, p. This is the active cooling setpoint when the zone is in the occupied mode and the zone sensor setpoint is disabled. This is the active heating setpoint when the zone is occupied and the zone sensor setpoint is disabled. Note: If the setpoint thumbwheel on the zone sensor is enabled, the thumbwheel determines the active occupied setpoint, subject to limits see below.

See Heat Setpoint Offset below. This is the active cooling setpoint when the zone is unoccupied. This is the active heating setpoint when the zone is in the unoccupied mode. The cooling setpoint low limit is applied to the active cooling setpoint with no effect on the operator entry of setpoints.

When the setpoint is set below the cooling setpoint low limit, the zone uses the cooling low limit as the active cooling setpoint. The zone continues to control normally using this setpoint. The cooling setpoint high limit is applied to the active cooling setpoint with no effect on the operator entry of setpoints.

When the setpoint is set above the cooling setpoint high limit, the zone uses the cooling high limit as the active cooling setpoint. The heating setpoint high limit is applied to the active heating setpoint with no effect on the operator entry of setpoints.

When the setpoint is set above the heating setpoint high limit, the zone uses the heating setpoint high limit as the active heating setpoint.

The heating setpoint low limit is applied to the active heating setpoint with no effect on the operator entry of setpoints. When the setpoint is set below the heating setpoint low limit, the zone uses the heating setpoint low limit as the active heating setpoint.

When a zone- sensor-thumbwheel setpoint is being used, the occupied cooling setpoint will equal the zone sensor setpoint and the occupied heating setpoint will equal the zone sensor setpoint minus the zone sensor heating setpoint offset. This is the maximum position that the damper opens to unless overridden by a drive-open command.

This is the minimum position the damper closes to when in the cooling mode unless overridden by a drive-closed command or by initiation of the energy-saver mode. This is the minimum position the damper closes to when in the heating mode unless overridden by a drive-closed command. This is the minimum position the damper closes to when local heat is energized unless overridden by a drive-closed command available in UCM 4.

Setpoint must be manually activated to become functional. This parameter defines whether the control action of the zone damper will be heating or cooling i. This parameter is a damper air valve override per one of the following:. The zone continuously monitors the zone temperature, the damper position, and the zone setpoints. With this information, it uses a PI proportional plus integral control loop to maintain the heating and cooling setpoints. The zone UCM compares the supply air temperature of the system to the individual zone temperature and zone setpoint.

The UCM has three local heat outputs available to control duct or perimeter heat. The local heat type has five selections. This selection determines the heating control algorithm used by the UCM. The following tables and descriptions are with priority local heat enabled. The choices are:. No local heat is controlled. This software is distributed free Net v. Universal remote ccp software download..

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