Desa T32N, T36N, T32P, T36P installation manual Installing GAS Piping to Fireplace Location

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FIREPLACE INSTALLATION

Installing Gas Piping to Fireplace Location

19

FIREPLACE INSTALLATION

Continued

INSTALLING GAS PIPING TO FIREPLACE LOCATION

WARNING: A qualified service person must con- nect fireplace to gas supply. Follow all local codes.

CAUTION: For propane/LP units, never connect fireplace directly to the propane/LP supply. This heater requires an external regulator (not supplied). Install the external regulator between the fireplace and propane/LP supply.

Installation Items Needed

Before installing fireplace, make sure you have the items listed below.

external regulator (supplied by installer)

piping (check local codes)

sealant (resistant to propane/LP gas)

equipment shutoff valve *

test gauge connection *

sediment trap

tee joint

pipe wrench

approved flexible gas line with gas connector (if allowed by lo- cal codes)

*A CSA design-certified equipment shutoff valve with 1/8" NPT tap is an acceptable alternative to test gauge connection. Purchase the CSA design-certified equipment shutoff valve from your retailer.

For propane/LP connection only, the installer must supply an external regulator. The external regulator will reduce incoming gas pressure. You must reduce incoming gas pressure to between 11 and 14 inches of water. If you do not reduce incoming gas pressure, fireplace regulator damage could occur. Install external regulator

CAUTION: Use only new, black iron or steel pipe. Internally-tinned copper tubing may be used in certain areas. Check your local codes. Use pipe of 1/2" diam- eter or greater to allow proper gas volume to fireplace. If pipe is too small, undue loss of pressure will occur.

Installation must include an equipment shutoff valve, union, and plugged 1/8" NPT tap. Locate NPT tap within reach for test gauge hook up. NPT tap must be upstream from fireplace (see Figure 31).

IMPORTANT: Install main gas valve (equipment shutoff valve) in an accessible location. The main gas valve is for turning on or shutting off the gas to the appliance.

Check your building codes for any special requirements for locating equipment shutoff valve to fireplaces.

Apply pipe joint sealant lightly to male threads. This will prevent excess sealant from going into pipe. Excess sealant in pipe could result in clogged fireplace valves.

CAUTION: Use pipe joint sealant that is resistant to liquid petroleum (LP) gas.

We recommend that you install a sediment trap/drip leg in supply line as shown in Figure 31. Locate sediment trap/drip leg where it is within reach for cleaning. Install in piping system between fuel supply and fireplace. Locate sediment trap/drip leg where trapped matter is not likely to freeze. A sediment trap traps moisture and contaminants. This keeps them from going into fireplace gas con- trols. If sediment trap/drip leg is not installed or is installed wrong, fireplace may not run properly.

CSA Design-Certified

Equipment Shutoff Valve

with 1/8" NPT Tap*

with the vent pointing down as shown in Figure 30. Pointing the vent down protects it from freezing rain or sleet.

External

Propane/LP

Regulator

Supply Tank

Approved Flexible

Gas Line

3" Minimum

Natural - From Gas Meter (5.5" W.C. to 10.5"

W.C. Pressure)

Propane/LP From External Regulator (11" W.C. to 14" W.C. Pressure)

Vent

Pointing

Down

Cap Pipe Nipple Tee Joint

Figure 31 - Gas Connection

Sediment Trap/Drip Leg

Figure 30 - External Regulator with Vent Pointing Down (Propane/LP Only)

*The CSA design-certified equipment shutoff valve may be sup- plied with the appliance or you can purchase it from your retailer.

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Contents For Your Safety What to do if YOU Smell GAS For Your SafetySafety Information Table of ContentsLocal Codes Safety Information Product IdentificationPRE-INSTALLATION Preparation Product FeaturesLocation and Space Requirements Framing and Finishing ClearancesBalcony with Perpendicular Side Wall Location of Termination CAPHorizontal Termination Installation Venting Installation InstructionsInstallation Precautions Installation PlanningVent Pipe Connections Installing Horizontal Vent Cap T32 Series 31 min Horizontal Termination ConfigurationsSquare Termination VerticalCorner and Alternate Installation Venting with Two 90 Elbows Horizontal System Installation Using TWO 90 ElbowsFlat Ceiling Installation Installation for Vertical TerminationVenting with One 90 Elbow Vertical Termination ConfigurationsVertical Venting High Altitude InstallationCheck GAS Type Fireplace InstallationParts Lists for Venting Kits and Components Installing Optional Blower AccessoriesBlower Model BK Model BKT InstallationBlower Model BKT Blower Wiring DiagramInstallation Items Needed Installing GAS Piping to Fireplace LocationChecking GAS Connections Connecting Fireplace to GAS SupplyInstallation Items Needed Pressure Testing Gas Supply Piping SystemInstalling Remote Receiver Pressure Testing Fireplace Gas ConnectionsRemoving Glass Door Cleaning Glass DoorREMOVING/REPLACING Glass Door Removing Louver PanelsInstalling Log No Installing LOGS, Lava Rock and Glowing EmbersInstalling Logs No and No Lighting Instructions For Your Safety Read Before LightingManual Lighting Procedure Operating FireplaceTions on Optional Remote OperationGhrc Series Operation Ghrcta Series OperationOperating Optional GWMT1 Wall Mounted Thermostat Operating Optional Blower AccessoryPilot Assembly Inspecting BurnersLogs Cleaning MaintenanceGlass Door Pilot and BurnersObserved Problem Possible Cause TroubleshootingObserved Problem Possible Cause Remedy Above Gas leak. See Warning statementParts Under Warranty Replacement Parts Service HintsSpecifications Technical ServiceAccessories VT32NRB Illustrated Parts BreakdownVT32PRB KEY Part Number Description QTY Parts ListVT36PRB For more Visit www Com Warranty Information

T32N, T36N, T32P, T36P specifications

Desa T32N, T36N, T32P, and T36P are prominent technologies that represent the cutting-edge advancements in the field of telecommunications and data transmission. These systems are crucial for a variety of applications, including telecommunications networks, data centers, and various other technological infrastructures that require high-speed and reliable data transfer capabilities.

Starting with the T32N and T36N models, these systems are characterized by their exceptional bandwidth capacity and high processing speeds. They are designed to cater to the growing demand for faster internet connections and efficient data handling. One of the main features of these models is their ability to support multiple channels simultaneously, allowing for numerous data streams to be processed at once. This is particularly beneficial for environments where data traffic is high, such as urban areas and corporate networks. The T32N and T36N utilize advanced modulation techniques to enhance signal quality, effectively minimizing interference and increasing overall throughput.

On the other hand, the T32P and T36P models are specially engineered for optimal performance under varying network conditions. These models are equipped with adaptive technologies that automatically adjust to network demands, ensuring consistent data delivery even during peak usage periods. The main trait of these systems is their resilience; they are built to withstand fluctuations in data traffic and environmental factors, making them suitable for deployment in diverse settings, from rural areas to densely populated cities.

All four models leverage state-of-the-art technologies such as MIMO (Multiple Input Multiple Output) and beamforming to maximize efficiency and coverage. MIMO technology allows these systems to transmit and receive multiple data streams simultaneously, significantly boosting the data rate and overall system capacity. Beamforming enhances the directivity of the signal, focusing the transmission toward specific receivers, which not only improves signal strength but also reduces interference with other devices.

Another noteworthy characteristic of the Desa T32N, T36N, T32P, and T36P family is their compatibility with a wide range of existing technologies and infrastructures. This interoperability allows for seamless integration into current systems, facilitating upgrades without the need for complete overhauls. As the landscape of technology continues to evolve, these models stand out for their robust features and adaptive capabilities, solidifying their position as essential tools in the advancement of telecommunications and data transfer solutions.