Desa T32N, T36N, T32P, T36P Installation for Vertical Termination, Flat Ceiling Installation

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VENTING INSTALLATION INSTRUCTIONS

Installation for Vertical Termination

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VENTING INSTALLATION INSTRUCTIONS

Continued

INSTALLATION FOR VERTICAL TERMINATION

Note: Vertical restrictor must be installed in all vertical installations.

1.Determine the route your vertical venting will take. If ceiling joists, roof rafters, or other framing will obstruct the venting system, consider an offset (see Figure 19) to avoid cutting load bearing members. Note: Pay special attention to these instal- lation instructions for required clearances (air space) to com- bustibles when passing through ceilings, walls, roofs, enclo- sures, attic rafters, etc. Do not pack air spaces with insulation. Also note maximum vertical rise of the venting system and any maximum horizontal offset limitations.

2.Set the fireplace in desired location. Drop a plumb line down from the ceiling to the position of the fireplace exit flue. Mark the center point where the vent will penetrate the ceiling. Drill a small locating hole at this point.

Drop a plumb line from the inside of the roof to the locating hole in the ceiling. Mark the center point where the vent will penetrate the roof. Drill a small locating hole at this point.

Roof Flashing

Wall Strap

45° Elbow

Ceiling Firestop

Figure 19 - Offset with Wall Strap and 45° Elbows

Flat Ceiling Installation

1.Cut a 10" square hole in the ceiling using the locating hole as a center point. The opening should be framed to 10"x10" (254mm x 254mm) inside dimensions, as shown in Figure 9 on page 8 using framing lumber the same size as the ceiling joists. If the area above the ceiling is an insulated ceiling or a room, nail firestop from the top side. This prevents loose insulation from falling into the required clearance space. Otherwise, install firestop below the framed hole. The firestop should be installed with no less than three nails per side (see Figure 20).

2.Assemble the desired lengths of pipe and elbows necessary to reach from the fireplace flue up through the firestop. Be sure all pipe and elbow connections are fully twist-locked (see Fig- ure 8, page 8).

3.Cut a hole in the roof using the locating hole as a center point. (Cover any exposed open vent pipes before cutting hole in roof.) The 10"x10" hole must be measured on the horizontal; actual length may be larger depending on the pitch of the roof. There must be a 1" clearance from the vent pipe to combustible mate- rials. Frame the opening as shown in Figure 9, page 8.

4.Connect a section of pipe and extend up through the hole.

Note: If an offset is needed to avoid obstructions, you must

support the vent pipe every 3 feet. Use wall straps for this purpose (see Figure 19). Whenever possible, use 45° elbows instead of 90° elbows. The 45° elbow offers less restriction to the flow of the flue gases and intake air.

5.Place the flashing over the pipe section(s) extending through the roof. Secure the base of the flashing to the roof and fram- ing with roofing nails. Be sure roofing material overlaps the top edge of the flashing as shown in Figure 19. There must be a 1" clearance from the vent pipe to combustible materials.

6.Continue to add pipe sections until the height of the vent cap meets the minimum building code requirements described in Figure 7 on page 6. Note: You must increase vent height for steep roof pitches. Nearby trees, adjoining rooflines, steep pitched roofs, and other similar factors may cause poor draft or down-drafting in high winds. Increasing the vent height may solve this problem.

7.Twist-lock the vent cap onto the last section of vent pipe.

Note: If the vent pipe passes through any occupied areas above the first floor, including storage spaces and closets, you must enclose pipe. You may frame and sheetrock the enclosure with standard construction material. Make sure and meet the minimum allowable clearances to combustibles. Do not fill any of the required air spaces with insulation.

If area above is a room, install

If area above is not a room, install

firestop above framed hole.

firestop below framed hole.

Figure 20 - Installing Firestop

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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 CAPInstallation Precautions Venting Installation InstructionsInstallation Planning Horizontal Termination InstallationVent Pipe Connections Installing Horizontal Vent Cap Square Termination Horizontal Termination ConfigurationsVertical T32 Series 31 minCorner 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 InstallationParts Lists for Venting Kits and Components Fireplace InstallationInstalling Optional Blower Accessories Check GAS TypeBlower Model BK Model BKT InstallationBlower Model BKT Blower Wiring DiagramInstallation Items Needed Installing GAS Piping to Fireplace LocationInstallation Items Needed Connecting Fireplace to GAS SupplyPressure Testing Gas Supply Piping System Checking GAS ConnectionsInstalling Remote Receiver Pressure Testing Fireplace Gas ConnectionsREMOVING/REPLACING Glass Door Cleaning Glass DoorRemoving Louver Panels Removing Glass DoorInstalling Log No Installing LOGS, Lava Rock and Glowing EmbersInstalling Logs No and No Manual Lighting Procedure For Your Safety Read Before LightingOperating Fireplace Lighting InstructionsGhrc Series Operation Optional Remote OperationGhrcta Series Operation Tions onPilot Assembly Operating Optional Blower AccessoryInspecting Burners Operating Optional GWMT1 Wall Mounted ThermostatGlass Door Cleaning MaintenancePilot and Burners LogsObserved Problem Possible Cause TroubleshootingObserved Problem Possible Cause Remedy Above Gas leak. See Warning statementSpecifications Replacement Parts Service HintsTechnical Service Parts Under WarrantyAccessories 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.