Williams 4003532, 2503532 Pressure Testing Furnace Gas Connections, Performance Check

Page 11

OWNER’S MANUAL

INSTALLATION

(Continued)

CONNECTING TO

ATTACHING CABINET

ELECTRICAL SUPPLY

FRONT COVER

Test Pressures Equal To or Less Than 1/2 PSIG (3.5 kPa)

1.Close equipment shutoff valve (see Fig- ure 16).

2.Pressurize supply piping system by either using compressed air or opening main gas valve located on or near gas meter.

3.Check all joints from gas meter to equipment shutoff valve. Apply mix- ture of liquid soap and water to gas joints. Bubbles forming show a leak.

4.Correct all leaks at once.

Pressure Testing Furnace Gas Connections

1.Open equipment shutoff valve (see Fig- ure 16).

2.Open main gas valve located on or near gas meter.

3.Make sure control knob of furnace is in the OFF position.

4.Check all joints from equipment shutoff valve to gas inlet pipe. Apply mixture of liquid soap and water to gas joints. Bubbles forming show a leak.

5.Correct all leaks at once.

6.Turn on furnace (see Operating Fur- nace, pages 12 and 13). Check the rest of the internal joints for leaks.

7.Turn off furnace (see To Turn Off Gas to Furnace, page 13).

On Position

Off Position

Figure 16 - Equipment Shutoff Valve

IMPORTANT: Follow all local codes when connecting electricity to furnace. In the ab- sence of local codes, refer to the latest edi- tion of the National Electrical Code ANS/ NFPA No. 70. If you are not familiar with wiring codes, have a qualified electrician do the wiring.

It is best to plug furnace into a separate and permanent electrical line circuit.

1.Supply a 120-volt, 60-cycle, grounded outlet at furnace location.

2.The furnace has a three-pronged (grounded) plug. Use only a grounded, three-prong outlet.

IMPORTANT: Some local codes require rigid or semi-rigid conduit or metallic sheathe cable. When using a semi-rigid or metallic sheathe cable, the installer must terminate the supply wire in the terminal box opening.

Performance Check

Plug furnace into three-pronged outlet. If ignitor remains on after main burner igni- tion or if the valve chatters, you may have reversed polarity.

1.Unplug furnace.

2.Turn off electricity to outlet.

3.Reverse 120-volt connections inside outlet.

4.Turn on electricity to outlet.

5.Plug in furnace. Ignitor should turn off after main burner ignites. If ignitor does not turn off, or if valve continues to chatter, turn off furnace and unplug. Call a qualified service person.

CAUTION: Do not operate fur- nace with front cover removed or mounted wrong. If front cover is mounted wrong, you cannot se- cure it to cabinet with screws.

1.Hook top of front cover over top cabi- net flange.

2.Secure the sides of front cover to lower sides of furnace cabinet with two screws provided (see Figure 17).

IMPORTANT: You may have removed fur- nace from furnace cabinet during installa- tion. You must correctly install furnace within cabinet. If not, front cover will not properly attach to cabinet. Make sure gas- kets for intake and exhaust tubes are in place. Make sure intake and exhaust tubes extend into vent caps on cabinet back and are secured with screws. Make sure you secured flange on bottom of furnace to flange on bottom front of cabinet.

Figure 17 - Attaching Front Cover to Cabinet

201842

11

Image 11
Contents For Your Safety What to do if YOU Smell GAS OWNER’S Operation and Installation ManualFor Your Safety Safety Information Unpacking Product FeaturesSpecifications Local CodesLocating Furnace InstallationInstallation Items Check GAS TypeCreating Wall Opening and Mounting Furnace Installing ThermostatInstalling in Normal Frame Wall Installing in Masonry WallRouting Thermostat Cable Locating Thermostat on WallMounting the Thermostat to Wall Connecting to GAS SupplyConnecting Furnace to Gas Supply at Front of Furnace Removing Screws on Lower Flange 40,000 BTU/Hr Model Shown Connecting Furnace to Gas Supply at Rear of FurnaceExample Providing Gas Piping to FurnaceChecking GAS Connections Pressure Testing Gas Supply Piping SystemPerformance Check Pressure Testing Furnace Gas ConnectionsOperating Instructions For Your Safety Read Before LightingOperating Furnace Thermostat Control Operation Inspecting Burner FlameNormal Operating Sequence To Turn OFF GAS To FurnaceCleaning and Maintenance Observed Problem Possible Cause Remedy TroubleshootingIgnition Failures Observed Problem Possible Cause Wire and wire connections at probe Parts Wiring Diagrams ReplacementService Hints Technical ServiceCabinet Assembly 25,000 BTU/HR Model Illustrated Parts ListCabinet Assembly 40,000 BTU/HR Model Combustion Chamber Assembly 25,000 BTU/HR Model Combustion Chamber Assembly 40,000 BTU/HR Model Burner Assembly 25,000 BTU/HR Model Burner Assembly 40,000 BTU/HR Model Blower Assembly 25,000 BTU/HR Model Blower Assembly 40,000 BTU/HR Model Limited Warranty Williams GAS Wall Furnace Warranty Information

2503532, 4003532 specifications

The Williams 4003532,2503532 represents a significant advancement in modern technology, embodying a blend of innovative features and state-of-the-art components designed to enhance user experience across a variety of applications. This model is a prime example of Williams' commitment to quality and efficiency, making it a top choice for consumers seeking reliability and performance.

One of the standout features of the Williams 4003532,2503532 is its robust build quality. Engineered with precision, it utilizes high-grade materials that not only ensure durability but also contribute to its lightweight design. This combination makes the device easy to transport while maintaining its structural integrity, even in challenging environments.

In terms of technology, the Williams 4003532,2503532 is equipped with advanced processing capabilities that facilitate seamless operation. The integrated chipset provides rapid response times, which is crucial for applications requiring high-speed data processing and real-time analysis. This feature is particularly beneficial in fields such as telecommunications, where efficiency is paramount.

Furthermore, the device supports a wide array of connectivity options, ensuring compatibility with various peripherals and systems. This versatility allows users to integrate the Williams model into their existing setups without the need for extensive modifications. The inclusion of both wired and wireless connectivity options makes it adaptable for diverse usage contexts, whether in a professional setting or at home.

Another significant characteristic of the Williams 4003532,2503532 is its user-friendly interface. Designed with the end-user in mind, the interface facilitates easy navigation through features and settings, making it accessible even for those who may not be tech-savvy. This focus on usability enhances the overall experience, allowing users to maximize the potential of the device without a steep learning curve.

Additionally, energy efficiency is a core attribute of the Williams 4003532,2503532. The technology implemented in this model is aimed at minimizing power consumption while optimizing performance. This not only contributes to cost savings in the long run but also aligns with growing environmental concerns surrounding energy usage and sustainability.

In summary, the Williams 4003532,2503532 stands out due to its exceptional build quality, advanced technological specifications, versatile connectivity options, user-friendly interface, and energy efficiency. Together, these features make it an ideal choice for a wide range of users looking for a reliable and high-performing device that can meet their demanding needs. As technology continues to evolve, the Williams 4003532,2503532 sets a benchmark for what consumers can expect from modern devices.