Johnson Controls 13 & 14.5 SEER - TCG(D, YCJ(D, TCJ(D, GCGD, F) Precautions During Brazing of Lines

Page 4

872678-UIM-C-0213

PRECAUTIONS DURING BRAZING OF LINES

All outdoor unit and evaporator coil connections are copper-to-copper and should be brazed with a phosphorous-copper alloy material such as Silfos-5 or equivalent. DO NOT use soft solder. The outdoor units have reusable service valves on both the liquid and vapor connections. The total system refrigerant charge is retained within the outdoor unit during shipping and installation. The reusable service valves are pro- vided to evacuate and charge per this instruction.

Serious service problems can be avoided by taking adequate precau- tions to assure an internally clean and dry system.

Dry nitrogen should always be supplied through the tubing while it is being brazed, because the temperature required is high enough to cause oxidation of the copper unless an inert atmosphere is pro- vided. The flow of dry nitrogen should continue until the joint has cooled. Always use a pressure regulator and safety valve to insure that only low pressure dry nitrogen is introduced into the tubing. Only a small flow is necessary to displace air and prevent oxidation.

PRECAUTIONS DURING BRAZING SERVICE VALVE

Precautions should be taken to prevent heat damage to service valve by wrapping a wet rag around it as shown in Figure 4. Also, protect all painted surfaces, insulation, and plastic base during brazing. After braz- ing, cool joint with wet rag.

This is not a backseating valve. The service access port has a valve core. Opening or closing valve does not close service access port.

If the valve stem is backed out past the chamfered retaining wall, the O-ring can be damaged causing leakage or system pressure could force the valve stem out of the valve body possibly causing personal injury.

Valve can be opened by removing the plunger cap and fully inserting a hex wrench into the stem and backing out counter-clockwise until valve stem just touches the chamfered retaining wall.

Connect the refrigerant lines using the following procedure:

1.Remove the cap and Schrader core from both the liquid and vapor service valve service ports at the outdoor unit. Connect low pres- sure nitrogen to the liquid line service port.

2.Braze the liquid line to the liquid valve at the outdoor unit. Be sure to wrap the valve body with a wet rag. Allow the nitrogen to con- tinue flowing.

3.Carefully remove the plugs from the evaporator liquid and vapor connections at the indoor coil.

FIGURE 4: Heat Protection

Do not install any coil in a furnace which is to be operated during the heating season without attaching the refrigerant lines to the coil. The coil is under 30 to 35 psig inert gas pressure which must be released to prevent excessive pressure build-up and possible coil damage.

4.Braze the liquid line to the evaporator liquid connection. Nitrogen should be flowing through the evaporator coil.

5.Slide the grommet away from the vapor connection at the indoor coil. Braze the vapor line to the evaporator vapor connection. After the connection has cooled, slide the grommet back into original position.

6.Protect the vapor valve with a wet rag and braze the vapor line connection to the outdoor unit. The nitrogen flow should be exiting the system from the vapor service port connection. After this con- nection has cooled, remove the nitrogen source from the liquid fit- ting service port.

7.Replace the Schrader core in the liquid and vapor valves.

8.Go to SECTION IV or SECTION V for orifice or TXV installation depending on application.

9.Leak test all refrigerant piping connections including the service port flare caps to be sure they are leak tight. DO NOT OVER- TIGHTEN (between 40 and 60 inch - lbs. maximum).

NOTICE

Line set and indoor coil can be pressurized to 250 psig with dry nitrogen and leak tested with a bubble type leak detector. Then release the nitrogen charge.

Do not use the system refrigerant in the outdoor unit to purge or leak test.

10.Evacuate the vapor line, evaporator, and liquid line to 500 microns or less.

11.Replace cap on service ports. Do not remove the flare caps from the service ports except when necessary for servicing the system.

Do not connect manifold gauges unless trouble is suspected. Approximately 3/4 ounce of refrigerant will be lost each time a stan- dard manifold gauge is connected.

12.Release the refrigerant charge into the system. Open both the liq- uid and vapor valves by removing the plunger cap and with an allen wrench back out counter-clockwise until valve stem just touches the chamfered retaining wall. If the service valve is a ball valve, use a cresent wrench to turn valve stem one-quater turn counterclockwise to open. Do not overturn or the valve stem may break or become damaged. See “PRECAUTIONS DURING BRAZING SERVICE VALVE”.

13.Replace plunger cap finger tight, then tighten an additional 1/12 turn (1/2 hex flat). Cap must be replaced to prevent leaks.

Never attempt to repair any brazed connections while the system is under pressure. Personal injury could result.

See "System Charge” section for checking and recording system charge.

Supplied with the outdoor unit is a Schrader Valve Core and Orifice for highest sales volume indoor coil. The valve core must be installed in equalizer fitting of the indoor coil.

4

Johnson Controls Unitary Products

Image 4
Contents Section II Safety List of FiguresList of Tables Section I GeneralSection III Unit Installation ADD-ON REPLACEMENT/RETROFITLimitations LocationGround Installation Roof InstallationPrecautions During Line Installation Liquid Line FILTER-DRIERPrecautions During Brazing of Lines Precautions During Brazing Service ValveSection V TXV Installation Section IV Orifice InstallationSection VI Evacuation Superheat Charging Method Piston Indoor Section VII System ChargeSubcooling Charging Method TXV Indoor Section Viii Electrical Connections Field Connections Power WiringGeneral Information & Grounding Field Connections Control Wiring Power WiringAC 1A ThermostatID Models PSC Single Stage AIR Handler AIR ConditionerAC 1B PSC Single Stage AIR AIR Handler ConditionerAC 5D Single Stage PSC AIR Furnace ConditionerSingle Stage PSC Furnace AC 5ESingle Stage AIR Conditioner Section IX Instructing the Owner MaintenanceSubcooling Charge Table is on the Unit Rating Plate Section X Wiring Diagram 412217 Yellow RED Section XI Start UP Sheet Air Conditioning and Heating Start-Up SheetAdjust Cool

F) SERIES, 13 & 14.5 SEER - TCG(D, F), GCGD, TCJ(D specifications

Johnson Controls has long been a pioneer in HVAC technology, and their F-Series air conditioning units, specifically the 13 and 14.5 SEER models, have garnered attention for their efficiency and innovative features. The F-Series models TCG(D, F) and TCJ(D, GCGD) stand out in the market, offering a blend of advanced technology, energy efficiency, and user-friendly design.

One of the main features of the TCG and TCJ series is their high Seasonal Energy Efficiency Ratio (SEER), with options of 13 and 14.5 SEER. This high efficiency not only translates to lower energy bills for consumers but also promotes environmental sustainability by reducing carbon footprints. These units are designed to perform optimally in various climates, making them a versatile choice for homeowners and businesses alike.

Incorporating advanced refrigeration technology, the F-Series units utilize scroll compressors that are known for their reliability and efficiency. This type of compressor operates quietly and reduces the chances of breakdown, ensuring longevity and minimal maintenance. Additionally, the variable speed operation allows for better humidity control and comfort, adjusting to the specific cooling needs of the space.

Another key characteristic of Johnson Controls' F-Series is their advanced airflow design. The units are engineered to provide consistent and effective airflow, resulting in even temperature distribution throughout the space. With adjustable louvers, users can easily direct airflow to specific areas, enhancing comfort levels.

The TCG and TCJ models also feature enhanced filtration systems that significantly improve indoor air quality. These systems capture airborne particles and allergens, contributing to a healthier living environment. This focus on air quality is particularly beneficial for families with young children, the elderly, or individuals with respiratory issues.

For ease of use, Johnson Controls has integrated smart technology into their F-Series units. With Wi-Fi connectivity options, users can control their HVAC systems remotely through a smartphone app, allowing for convenient adjustments and energy management. This feature is increasingly important in today’s digital age, where home automation systems are becoming commonplace.

In summary, the Johnson Controls F-Series, particularly the 13 and 14.5 SEER models such as TCG(D, F) and TCJ(D, GCGD), showcase an impressive blend of energy efficiency, advanced technology, and user-centric features. With their reliable performance, superior air quality, and smart technology integration, these air conditioning units represent a solid investment for anyone looking to enhance their indoor comfort while being mindful of energy consumption.