Desa CDVBP(A) Female Locking Lugs Male Slots Rigid Vent Pipe, Vent Opening Combustible Wall

Models: CDVBP(A) CDVBN(A), CDVBP(A)

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CDVBN(A) AND CDVBP(A)

CAST IRON STOVE AND BURNER SYSTEM

VENTING INSTALLATION

Continued

3.Attach vent pipe assembly to the burner system. Set stove in front of it’s permanent location to insure minimum clearances. Mark the wall for a 10" square hole (for noncombustible ma- terial such as masonry block or con- crete, a 7 1/2" diameter hole is accept- able). See Figure 22. The center of the hole should line up with the center- line of the horizontal rigid vent pipe. Cut a 10"x10" (254mm x 254mm) square hole through combustible ex- terior wall (7 1/2" [190mm] diameter hole if noncombustible). Frame as nec- essary (see Figure 22).

Female

Locking

Lugs

Male

Slots

Rigid Vent Pipe

Figure 21 - Vent Pipe Connections

Vent Opening

Combustible Wall

10"

(254mm)

10"

(254mm)

(Framing

4.Apply a bead of non-hardening mastic around the outside edge of the vent cap. Position the vent cap in the center of the 7 1/2" or 10" hole on the exterior wall with the word “UP” on the vent cap facing up. Insure proper clearance of 1" to combustibles is maintained. At- tach the vent cap with four wood screws supplied (see Figure 23). Note: Re- place the wood screws with appropri- ate fasteners for stucco, brick, concrete, or other types of siding.

WARNING: Do not recess vent termination in to any wall. This will cause a fire hazard.

For vinyl siding, stucco, or wood ex- terior use vinyl siding standoffs be- tween vent cap and exterior wall. The vinyl siding standoff prevents exces- sive heat from melting the vinyl sid- ing material. Bolt the vent cap to the standoff. Apply non-hardening mastic around outside edge of the standoff in- stead of the vent cap assembly. Use wood screws provided to attach the standoff. See Figure 24.

5.Slide the wall thimble over the vent pipe before connecting the horizontal run to the vent cap (see Figure 25).

Apply Mastic to All Four Sides

UP

Wood

Screw

Vent Cap

6.Carefully move the stove with vent as- sembly attached toward the wall and insert the vent pipe into the horizontal termination. The pipe overlap should be a minimum of 1 1/4". Apply silicone to the outer pipe connection. Fasten all vent connections with screws provided.

7.Slide the wall thimble against the inte- rior wall surface and attach with screws provided (see Figure 25).

 

Cut Vinyl Siding

 

Away to Fit

 

Standoff

 

 

Standoff

 

 

Wood

 

 

Screw

 

 

UP

Nut

Apply Mastic

Vent

 

to All Four

Cap

 

Sides

Bolt

Figure 24 - Installing Vinyl Siding Standoff

Interior Wall

Surface

Wall

Thimble

Vent Cap

Screw

Horizontal

Vent Pipe

Vent Opening

Detail)

Figure 23 - Installing Horizontal Vent Cap

(Horizontal

Termination)

Noncombustible Wall

7 1/2" (190mm)

Figure 25 - Connecting Vent Cap with Horizontal Vent Pipe

Figure 22 - Vent Opening Requirements

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Desa CDVBP(A) Female Locking Lugs Male Slots Rigid Vent Pipe, Vent Opening Combustible Wall, Cut Vinyl Siding, Away to Fit

CDVBP(A), CDVBN(A), CDVBP(A) specifications

Desa CDVBN(A), CDVBP(A), and CDVBP(A) are innovative and cutting-edge technological platforms designed to enhance communication and operational efficiency in various sectors, including business, education, and public services. Each of these platforms boasts unique features and characteristics that make them stand out in their respective fields.

Desa CDVBN(A) is known for its robust hybrid integration capabilities. It allows organizations to seamlessly connect on-premises systems with cloud applications, thereby enabling hybrid workflows and ensuring data consistency across different platforms. One of its main features is a versatile API management toolkit that facilitates the smooth exchange of information between disparate systems. This capability is especially beneficial for organizations looking to modernize their IT infrastructure without entirely discarding legacy systems. Furthermore, its user-friendly interface encourages ease of adoption among non-technical users.

On the other hand, Desa CDVBP(A) focuses primarily on business process optimization. It introduces advanced automation features that streamline repetitive tasks, reduce operational costs, and improve turnaround times. Equipped with machine learning algorithms, CDVBP(A) learns from user interactions to optimize workflows dynamically. This platform’s main selling point is its extensive analytics capabilities, providing organizations with valuable insights into productivity patterns, resource utilization, and areas for potential improvement. Its customizable dashboard allows users to visualize data effectively, thereby empowering informed decision-making.

Desa CDVBP(A), while sharing similarities with its counterpart, takes a more specialized approach aimed at enhancing collaborative efforts within teams. It integrates features such as real-time messaging, file sharing, and project management tools, creating a centralized space where team members can interact and collaborate seamlessly. The platform leverages cloud technology to ensure accessibility from anywhere, making it an ideal solution for remote teams. Additionally, it offers secure data encryption and compliance features, ensuring that sensitive information is protected against unauthorized access.

In summary, Desa CDVBN(A), CDVBP(A), and CDVBP(A) exemplify the future of communication and operational efficiency. Each platform serves distinct yet complementary roles, ranging from hybrid integration and business process optimization to teamwork enhancement. By embracing these technologies, organizations can position themselves competitively in an increasingly digital landscape, improving not only their internal operations but also their overall service delivery.