Johnson Controls TM9T*MP installation manual Section Viii Combustion AIR and Vent System

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505309-UIM-D-0511

SECTION VIII: COMBUSTION AIR AND VENT SYSTEM

COMBUSTION AIR AND VENT SAFETY

This Category IV, dual certified direct vent furnace is designed for resi- dential application. It may be installed without modification to the con- densate system in a basement, garage, equipment room, alcove, attic or any other indoor location where all required clearance to combusti- bles and other restrictions are met. The combustion air and the venting system must be installed in accordance with Section 5.3, Air for Com- bustion and Ventilation, of the National Fuel Gas Code Z223.1/NFPA 54 (latest edition), or Sections 7.2, 7.3 or 7.4 of CSA B149.1, National Gas and Propane Codes (latest edition) or applicable provisions of the local building code and these instructions.

The “VENT SYSTEM” must be installed as specified in these instruc- tions for Residential and non-HUD Modular Homes. The direct vent system is the only configuration that can be installed in a non-HUD Modular Home.

This furnace may not be common vented with any other appliance, since it requires separate, properly sized air intake and vent lines. The furnace shall not be connected to any type of B, BW or L vent or vent connector, and not connected to any portion of a factory-built or masonry chimney

The furnace shall not be connected to a chimney flue serving a sepa- rate appliance designed to burn solid fuel.

When combustion air pipe is installed above a suspended ceiling or when it passes through a warm and humid space, the pipe must be insulated with 1/2” Armaflex or other heat resistant type insulation if two feet or more of pipe is exposed.

Vent piping must be insulated if it will be subjected to freezing temper- atures such as routing through unheated areas or through an unused chimney.

COMBUSTION AIR/VENT PIPE SIZING

The size of pipe required will be determined by the furnace model, the total length of pipe required and the number of elbows required.

Table 8 lists the maximum equivalent length of pipe allowed for each model of furnace. The equivalent length of elbows is shown in Table 9 The equivalent length of the vent system is the total length of straight pipe PLUS the equivalent length of all of the elbows.

The following rules must also be followed:

1.Long radius (sweep) elbows are recommended. Standard elbows may be used, but since they have a longer equivalent length, they will reduce the total length of pipe that will be allowed. Short radius (plumbing vent) elbows are not allowed. The standard dimensions of the acceptable elbows are shown below.

2.The maximum equivalent length listed in Table 8 is for the vent pip- ing and the air intake piping separately. For example, if the table allows 65 equivalent feet for a particular model, then the vent can have 65 equivalent feet of pipe, AND the combustion air intake can have another 65 equivalent feet of pipe.

3.Three vent terminal elbows (two for the vent and one for the com- bustion air intake) are already accounted for and need not be included in the equivalent length calculation.

4.All combustion air and vent pipe must conform to American National Standards Institute (ANSI) and American Society for Test- ing and Materials (ASTM) standards D1785 (Schedule 40 PVC), D2665 (PVC-DWV), F891 (PVC-DWV Cellular Core), D2261 (ABS- DWV) or F628 (Schedule 40 ABS). Pipe cement and primer must conform to ASTM Standard D2546 (PVC) or D2235 (ABS). If ABS pipe is to be used, any joint where ABS pipe is joined to PVC pipe must be glued with cement that is approved for use with BOTH materials. Metallic materials must not be used for venting or air intake.

5.If a flexible connector is used in the vent system, it must be made of a material that is resistant to acidic exposure and to at least 225°F (107°C) temperature. Flexible connectors are also allowed in the combustion air pipe.

6.All models are supplied with 2" (5.1 cm) vent connections. When the pipe must be increased to 3" (7.6 cm) diameter, the transition from 2" to 3" must be done as close to the furnace as possible. For upflow models, the transition from 2" to 3" should be done immedi- ately above the furnace. For downflow or horizontal models, the transition from 2" to 3" pipe should be done immediately after exit- ing the furnace.

7.In Canada, vents shall be certified to ULC S636, Standard for Type BH Gas Venting Systems.

8.In Canada, the first three feet (91.4 cm) of the vent must be readily accessible for inspection.

9.For single pipe systems it is recommended to install the combustion air coupling provided and install approximately 18” (46 cm) of PVC pipe on the furnace.

10.Minimum vent length for all models is 5 feet (1.5 m).

TABLE 8: Maximum Equivalent Pipe Length

Model Input

Pipe Size

Maximum

Equivalent

BTUH (kW)

Inches (cm)

length feet (m)

 

 

 

 

 

60,000

2 (5.1)

65 (19.8)

60,000

3 (7.6)

90 (27.4)

60,000

4 (10.2)

150

(45.7)

80,000

2 (5.1)

65 (19.8)

80,000

3 (7.6)

90 (27.4)

80,000

4 (10.2)

150

(45.7)

100,000

2 (5.1)

30

(9.1)

100,000

3 (7.6)

90 (27.4)

100,000

4 (10.2)

150

(45.7)

120,000

2 (5.1)

30

(9.1)

120,000

3 (7.6)

90 (27.4)

120,000

4 (10.2)

150

(45.7)

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Johnson Controls Unitary Products

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Contents List of Figures Models TM9T*MPList of Sections List of TablesSpecific Safety Rules and Precautions Section I SafetySafety Requirements Combustion AIR Quality List of Contaminants Codes and StandardsInspection Furnace Location and ClearancesDuctwork General Information Floor Base and Ductwork Installation DownflowSection II Ductwork Duct FlangesFurnace Assembly MC & FC Series Coils Coil InstallationCOIL/FURNACE Assembly MC/FC/PC Series Coils Coil Flange InstallationBottom Return and Attic Installations Coil / Furnace Assembly HC Series CoilsDownflow Duct Connectors Critical Coil ProjectionHorizontal Application Attic InstallationSuspended Furnace / Crawl Space Installation Downflow ApplicationSection III Filters Filter InstallationSide Return Section IV GAS Piping GAS SafetyGAS Piping Installation Horizontal FiltersElectrical Power Connections Section V Electrical PowerHigh Altitude Pressure Switch Conversion GAS Orifice Conversion for Propane LPLOW Voltage Control Wiring Connections Supply Voltage ConnectionsTwo Stage Air Conditioner Two Stage PSC Furnace PP32U70124 DN22H00124 DP22U70124TWO Stage PSC Furnace OD Models Section VI Twinning Condensate Drain Location Twinning InstructionsTwinning Operation Condensate hoses must slope downwards at all pointsCondensate Drain Termination Typical. Combustion Pipe Drain TeeWill cause the furnace Airflow Horizontal Left Right Configuration Johnson ControlsCombustion AIR/VENT Pipe Sizing Combustion AIR and Vent SafetySection Viii Combustion AIR and Vent System Model Input Pipe Size MaximumCombustion AIR / Venting Combustion AIR and Vent Piping AssemblyElbow a Dimension Fitting Equivalent LengthVent Clearances Home LayoutVent Applications and Termination Vent SystemVenting Multiple Units Combustion AIR Supply Downward VentingOutdoor Combustion Air Ambient Combustion Air SupplyAir Supply Openings and Ducts Combustion Air Source From OutdoorsDampers, Louvers and Grilles Canada Only Free AreaVentilated Combustion Air Termination Specially Engineered InstallationsVentilated Combustion Air Vent Blower RotationCalculating the Furnace Input NAT. GAS Section IX START-UP AdjustmentsGAS Piping Leak Check Ignition System SequenceRevolution Cu Ft Seconds ForRead the inlet gas pressure Adjustment of Manifold GAS Pressure & Input RateRead the manifold gas pressure Adjustment of Temperature Rise Adjustment of FAN Control SettingsBottom Airflow Data Scfm Blower Performance CFM Any Position without filterLeft Side Airflow Data Scfm Section X Safety Controls Section XI Normal Operation and DiagnosticsFurnace Control Diagnostics Diagnostic Fault Code Storage and Retrieval Section XII Replacement Parts ListFabricated Parts Section Xiii Wiring Diagram Wiring DiagramJohnson Controls Unitary Products York Drive Norman, OK

TM9T*MP specifications

Johnson Controls TM9T*MP is a state-of-the-art HVAC unit designed for modern commercial and residential applications. With its innovative technology and robust features, the TM9T*MP offers exceptional performance, efficiency, and reliability. This unit is engineered to provide optimal climate control, ensuring that indoor environments remain comfortable regardless of external weather conditions.

One of the main features of the TM9T*MP is its variable-speed compressor, which allows for precise temperature regulation and energy-efficient operation. This technology enables the unit to adjust its output based on the current demand, significantly reducing energy consumption compared to traditional systems. By operating at lower speeds during mild weather, the TM9T*MP minimizes energy costs while maintaining user comfort.

Another significant aspect of the TM9T*MP is its advanced multi-stage filtration system. This system includes a high-efficiency air filter capable of capturing a wide range of airborne particles, including dust, pollen, and allergens. This feature not only improves indoor air quality but also helps to promote a healthier living environment for occupants. Furthermore, the TM9T*MP is compatible with smart home technology, allowing users to monitor and control their HVAC system remotely through mobile devices or voice-controlled assistants.

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Additionally, the TM9T*MP incorporates advanced diagnostics and troubleshooting capabilities. This feature simplifies maintenance by alerting technicians to potential issues before they escalate, ensuring smooth operation and reducing downtime. Moreover, with a user-friendly interface, occupants can easily adjust settings, access energy usage data, and schedule maintenance reminders for peak performance.

In summary, Johnson Controls TM9T*MP sets a new standard in HVAC technology with its variable-speed compressor, multi-stage filtration, compact design, and smart capabilities. Committed to energy efficiency and indoor air quality, it promises to deliver comfort and sustainability in every setting.