GE CV936 manual Determine HOOD, Ductwork and Wiring Locations, For Vertical Straight Up Ducting

Page 13

Installation Instructions

DETERMINE HOOD, DUCTWORK AND WIRING LOCATIONS

Measure desired distance from the bottom of the hood to the cooking surface, 24” min. to 36” max. Refer to the previous page if the accessory duct cover will be used.

Use a level to draw a horizontal line indicating the bottom of the hood.

Use a level to draw the cooktop centerline location.

Measure 15-3/8” up from the horizontal line for the bottom of the hood. Draw another horizontal line.

Measure 18” up from the line for the bottom of the hood, draw another horizontal line to indicate the top of the hood.

FOR VERTICAL (Straight Up) DUCTING:

If venting out the ceiling, extend the centerline forward on the ceiling.

Measure 6-7/8” from drywall to mark centerline for a 7½” dia. duct hole on the ceiling.

If drywall is not present, add drywall thickness to the 6-7/8” dimension.

Venting through a soffit or upper cabinet.

Follow the same procedure for ceiling ducting to cut the 7½” dia. hole through the top of the cabinet or soffit.

See Step 4, page 5 for details to cut opening for duct transition.

FOR CEILING

6-7/8”VENT DUCTING Centerline To Wall

 

 

 

Electrical

 

7½” Dia. Hole

 

 

 

 

 

 

 

Centerline

FOR WALL VENT DUCT

8” Min. above

Top of Hood

 

 

 

 

 

 

 

 

Top of Hood

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Wood Support

 

18"

 

 

 

 

 

 

 

 

15-3/8"

Electrical

Bottom of Hood

FOR DUCTING THROUGH REAR WALL:

Measure the supplied duct transition with any straight run length of duct used, plus 90° elbow height. Draw a horizontal line on the wall intersecting the centerline.

House Wiring Location:

The junction box is fastened to the back of the hood on the right side. See illustrations for hood knockout locations.

Note: The junction box can be relocated to the inside top of the hood.

House wiring may enter the junction box from the rear or the top of the hood at the right side.

To route house wiring through the ceiling or soffit;

Cut a hole approximately 1” dia., 5-7/8” forward on the ceiling, 11-1/8” to the right of the centerline for 30” models or, 14-1/8” to the right of the centerline for 36” models.

To route house wiring through the wall,

Cut a hole approximately 1” dia., 10-1/16” down from the top of the hood, 11-1/8” to the right of the centerline for 30” models or, 14-1/8” to the right of the centerline for 36” models.

Remove top or rear knockout depending on your installation.

14-1/8” for 36” Models

11-1/8” for 30” Models

5-7/8"

Knockout

Locations

10-1/16"

14-1/8” for 36” Models

11-1/8” for 30” Models

1 Ft = 0.3 m 1” = 2.5 cm

13

Image 13
Contents Range Hoods Safety Precautions Read and Save These Instructions FAN Control Using the hood controlsLight Control Painted Surfaces on some models Care and cleaning of the vent hoodStainless Steel Surfaces on some models To remove Hood LightsRead these instructions completely and carefully Product DimensionsFt = 0.3 m 1 = 2.5 cm Optional Accessories Installation ClearancesDuct Cover Commercial Filter KitAdvance Planning Power SupplyDuct Fittings Decorative Duct CoversFlexible ducting Duct. It Can Transition To ¼ x 12 Duct Kit JXDW1Remove the Packaging Tools and Materials RequiredDuct Cover Requirements Parts ProvidedTo route house wiring through the ceiling or soffit Determine HOOD, Ductwork and Wiring LocationsTo route house wiring through the wall For Vertical Straight Up DuctingInstall Transition Install Hood SupportInstall Hood Onto Wall Drill Bottom Mounting Hole LocationsSkip this Step if Using Wall Mounting Method Install Hood to Soffit or Beneath CabinetsConnect Ductwork Install Ceiling BracketInstall Duct Covers Install MotorInstall Filter Support Connect Electrical11A Install Optional Commercial Filters Install FiltersInstall Control Knobs Finalize InstallationPage Excessively soiled filters Before you call for service…Ownership Registration For Canadian Customers Pour les consommateurs canadiens Mabe Will Replace Range Hood WarrantyWhat Mabe Will Not Cover Parts and Accessories Schedule ServiceConsumer Support GE Appliances Website Extended Warranties

CV936 specifications

The GE CV936 is a versatile and powerful gas turbine designed for use in a variety of industrial and power generation applications. With its advanced design and state-of-the-art technologies, the CV936 represents a significant step forward in the field of aeroderivative gas turbines.

One of the standout features of the GE CV936 is its impressive efficiency. This turbine achieves a fuel efficiency rate that allows operators to maximize output while minimizing fuel consumption, thereby reducing overall operating costs. The efficiency extends beyond fuel usage, contributing to lower emissions as the turbine is designed to comply with rigorous environmental regulations.

The CV936 incorporates advanced aerodynamics in its design. Its blades are engineered using sophisticated computer modeling techniques that enhance airflow and optimize performance. The materials chosen for these components are lightweight yet durable, which contributes to the turbine’s ability to operate at high temperatures without degradation in performance.

A significant technology aspect of the GE CV936 is its modular design. This feature not only simplifies maintenance but also allows for quick and efficient upgrades as technology evolves. Operators can benefit from improved performance without needing to replace the entire turbine, which can be a cost-effective solution for many businesses.

Another characteristic that sets the CV936 apart is its robust control system. Coupled with advanced sensors and data analytics capabilities, the turbine provides real-time monitoring and operational insights. This allows for proactive maintenance strategies, reducing downtime and extending the operational lifespan of the equipment.

The turbine's design also accommodates a wide variety of fuels, making it exceptionally flexible for different operational contexts. Whether used in simple cycle, combined cycle, or cogeneration setups, the CV936 can efficiently use natural gas and liquid fuels, giving operators the flexibility to adapt to their specific energy needs.

In summary, the GE CV936 gas turbine is a cutting-edge solution that combines high efficiency, advanced aerodynamics, modular design, and robust control technologies. Its ability to adapt to various fuel types and configurations makes it an excellent choice for companies looking to optimize their power generation capabilities while minimizing environmental impact.