INSTALLATION SEQUENCE

For installations in the City of Los Angeles, California Category IV PVC Pipe such as that manufactured by Brownline Pipe Company, must be used as vent pipe material.

CAUTION

VENT TERMINALS SUPPLIED WITH HEATER MUST BE USED.

NOTE: BEFORE BEGINNING INSTALLATION OF ANY VENT PIPE READ THE VENT PIPE MANUFACTURER’S INSTALLATION INSTRUCTIONS.

1.After the points of termination have been determined, use the cover plates as templates to mark the holes for the vent pipes to be inserted through the wall. BEWARE OF

CONCEALED WIRING AND PIPING INSIDE OF WALL. If the vent terminals are being installed on the outside of a finished wall, it may be easier to mark both the inside and outside wall. Align the holesby drilling a hole through the center of the template from the inside through to the outside. The template can now be positioned on the outside wall using the drilled holes as a centering point for the template.

A.) MASONRY SIDE WALLS Chisel an opening approximately 1/2” (1.3 cm) larger than the marked circle.

B.) WOODEN SIDE WALLS Drill a pilot hole approximately one quarter inch outside of the marked circle. This pilot hole is used as a starting point for a saws-all or sabre saw blade. Cut around the marked circle staying approximately one quarter inch outside of the line. (This will allow the vent pipe to easily slide through the opening. The resulting gap will be covered by the vent terminal cover plates.) Repeat this step on the inside wall if necessary.

2.Cut a length of 3” PVC pipe about 3.5” (8.9 cm) longer than the wall thickness at the opening.

3.Glue the intake vent terminal to the section of the pipe.

4.Slide the wall plate over pipe to stop against intake vent terminal.

5.Place a bead of caulking (not supplied) around the gap between the pipe and the wall. Place some of the caulking on the back of the plate to hold it against the wall after installation.

6.If the vent pipe is installed up to the wall, with a coupling on the end against the wall opening, the pipe with the vent terminal can be prepared for gluing before inserting through the wall. Slide the pipe through the wall and insert into coupling on the other side of the wall, making sure that the vent terminal ends up pointed in the correct position (Figure 19).

VERTICAL VENT TERMINAL INSTALLATION

IMPORTANT

WHEN TERMINATING THROUGH A ROOF, THE FOLLOWING SPECIFICATIONS PERTAINING TO TERMINAL LOCATION MUST BE FOLLOWED.

1.Proper support must be provided for all pipe protruding through the roof.

2.The vertical roof terminations should be sealed with a plumbing roof boot or equivalent flashing.

3.The intake vent termination and the exhaust vent termination must penetrate the same side of roof.

4.The center line of the intake vent termination and the center line of the exhaust vent termination must be no closer than 24” (61cm).

5.The intake vent terminal and the exhaust vent terminal must be oriented facing downward and the same direction.

The specifications are displayed in Figures 20 & 21.

NOTE: Exhaust vent terminal is installed using the same procedure.

FIGURE 20.

FIGURE 19.

FIGURE 21.

21

Page 21
Image 21
State Industries A B C D E F 100 instruction manual Installation Sequence, Vertical Vent Terminal Installation

A B C D E F 100 specifications

State Industries A B C D E F 100 is a groundbreaking initiative aimed at revolutionizing various sectors including manufacturing, technology, and services, by integrating advanced methodologies and innovative practices. This initiative underscores a commitment to sustainability, efficiency, and quality, setting new standards for industry performance.

One notable feature of State Industries A B C D E F 100 is its focus on automation and smart manufacturing technologies. This includes the implementation of the Internet of Things (IoT) devices that facilitate real-time data collection and analysis. By harnessing this data, industries can optimize their operations, leading to improved productivity and reduced operational costs. Machine learning algorithms play a crucial role in predictive maintenance, enabling timely interventions that minimize downtime and enhance equipment longevity.

Another key aspect of State Industries A B C D E F 100 is the emphasis on renewable energy solutions. Many facilities are transitioning towards solar, wind, and other sustainable energy sources, which not only lowers carbon footprints but also leads to considerable savings in energy costs. This shift towards clean energy reflects a broader commitment to corporate social responsibility, addressing the environmental challenges faced by today’s industries.

Moreover, the initiative promotes the use of advanced materials and smart technologies in product development. These innovations not only enhance product functionality but also improve safety and sustainability. For instance, the use of biodegradable materials in packaging aligns with global efforts to reduce plastic waste, while advancements in nanotechnology offer unique solutions to traditional manufacturing challenges.

Collaboration stands as another essential characteristic of State Industries A B C D E F 100. By fostering partnerships between different stakeholders, including academia, government agencies, and private enterprises, the initiative encourages knowledge sharing and co-creation of solutions. This collaborative approach leads to the development of best practices that can be shared across sectors, amplifying the impact of technological advancements.

In conclusion, State Industries A B C D E F 100 embodies the future of industrial evolution, integrating cutting-edge technologies, sustainable practices, and collaborative efforts to create a resilient and forward-thinking industrial landscape. As industries continue to adapt to the changing global environment, the principles established by this initiative will likely play a pivotal role in shaping a sustainable and prosperous future for all.