Viking DBCV, VICV, VBCV, DICV dimensions Installation Requirements

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VENTILATION

Built-In Custom Ventilator Systems

Installation Requirements

VBCV Professional

VICV Professional

DBCV Designer

DICV Designer

Custom Wall

Custom Island

Custom Wall

Custom Island

Ventilator System

Ventilator System

Ventilator System

Ventilator System

UTILITY REQ UIREMENTS

Proper installation/ ducting is extremely important to ensure maximum performance. Use a qualified and trained installer.

DUCTING

Check with a qualified and trained installer or local codes for makeup air requirements, if any.

Max. duct run length

o For 300 – 1,200 CFM— 50’ (152.4 m)

o For 1,500 CFM—75’ (22.9 m) o Duct run length is for

general reference only; always use a qualified and trained installer.

o Straight runs and gradual turns are best; for example, each 90° elbow is equivalent to 5’ – 10’ (1.52 – 3.05 cm) of straight run.

7” (17.8 cm) round duct for 300 – 600 CFM; 10” for 900 – 1500 CFM

o Never use flexible duct; it creates back pressure/air turbulence and greatly reduces performance.

GAS

Not applicable

ELECTRICAL

Hardwire direct with two-wire ground

120 VAC/60 Hz

Max. amp usage (rating includes recommended ventilator kit rating)—see

Installation Requirements table

PLUMBING

Not applicable

Note: Exhaust capacity based on tests with 0.1 static pressure. Without applying static pressure (some brands do not), CFM could be greatly overstated.

Model

Ventilator Kits

Interior Exterior

Duct Size

Interior Exterior

Max. Amps

Interior Exterior

VBCV3038

VIV300/600/1200*

VEV900/1200*

7” (17.8 cm)/

10” (25.4 cm)

5.0/6.2/8.7

8.7/6.1

 

 

 

10” (25.4 cm)

 

 

 

VBCV3638

VIV300/600/1200*

VEV900/1200*

7” (17.8 cm)/

10” (25.4 cm)

5.0/6.2/8.7

8.7/6.1

 

 

 

10” (25.4 cm)

 

 

 

VBCV4238

VIV600/1200*

VEV900/1200*

7” (17.8 cm)/

10” (25.4 cm)

6.2/8.7

8.7/6.1

 

 

 

10” (25.4 cm)

 

 

 

VBCV4838

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

11.1

8.4/9.1

VBCV5438

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

11.1

8.4/9.1

VBCV6038

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

11.5

8.8/9.5

VBCV6638

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

11.5

8.8/9.5

VICV3698

VIV600/VIV1200*

VEV900/1200*

7” (17.8 cm)

10” (25.4 cm)

4.9/7.4

7.4/4.7

VICV4298

VIV600/1200*

VEV900/1200*/1500

7” (17.8 cm)

10” (25.4 cm)

4.9

7.4/4.8/5.4

VICV5498

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

8.2

5.6/6.2

VICV6698

VIV1200*

VEV1200*/1500

10” (25.4 cm)

10” (25.4 cm)

9.0

6.3/7.1

DBCV3082

DIV300/440

DEV900**/1200*

7” (17.8 cm)

10” (25.4 cm)

1.7/3.2

6.6/3.9

DBCV3682

DIV300/440

DEV900**/1200*

7” (17.8 cm)

10” (25.4 cm)

1.7/3.2

6.6/3.9

DBCV4282

DIV440

DEV900**/1200*

7” (17.8 cm)

10” (25.4 cm)

3.2

6.6/3.9

DBCV4882

DIV880

DEV1200/1500

10” (25.4 cm)

10” (25.4 cm)

5.6

4.3/5.1

DICV3632

DIV440

DEV900**/1200*

7” (17.8 cm)

10” (25.4 cm)

4.0

7.5/5.2

DICV4232

DIV440

DEV900**/1200/1500

7” (17.8 cm)

10” (25.4 cm)

4.0

7.5/5.2/6.0

DICV5432

DIV880

DEV1200/1500

10” (25.4 cm)

10” (25.4 cm)

6.4

5.2/6.0

*1200 CFM interior and exterior (if applicable) ventilator should be used with all outdoor approved models and when indoor models are installed over ranges/rangetops with gas grill.

**Must use 8” duct from canopy to ceiling – trasition to 10” duct past duct cover.

PLANNING AND DESIGN GUIDE

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Contents Model Options Standard Features & AccessoriesDimensions & Specifications VBCV3038 28-1/4 71.8 cm 21-7/8 55.8 cm 17-1/4 43.8 cmVBCV3638 34-1/4 87.0 cm 21-7/8 55.8 cm 17-1/4 43.8 cm Model Ventilator Kits Interior Exterior Duct Size Max. Amps Installation RequirementsKit model Description Hood models Approx. ship wt. lbs. kg Installation Notes & AccessoriesVentilator Kits Compliance Information

DBCV, VICV, DICV, VBCV specifications

Viking DICV (Differential Integrated Control Valve) is a significant advancement in control valve technology, designed to enhance precision in flow regulation across various industries. One of its main features is the differential control mechanism that allows for superior responsiveness to changes in flow dynamics. This results in improved process efficiency and reduced energy consumption. The DICV employs advanced materials and coatings, ensuring durability and resistance to wear even in harsh environments.

Viking VICV (Vortex Induced Control Valve) is another innovative solution from the Viking range, aimed at optimizing control systems. VICV utilizes vortex-induced principles to facilitate enhanced control over liquid and gas flows. One standout feature is its ability to manage turbulent flow conditions effectively, which tends to be a challenge in traditional control valves. Technologies like smart actuators can be integrated with VICV, allowing for real-time monitoring and adaptive control strategies to optimize performance further.

Viking DBCV (Dynamic Balance Control Valve) boasts a unique design that addresses balance issues commonly faced in flow systems. Its dynamic balance technology effectively compensates for varying pressure conditions, leading to stable performance throughout different operational scenarios. This makes DBCV particularly suitable for applications requiring consistent flow rates, such as in chemical processing and water treatment plants. Moreover, the valve's maintenance-friendly design reduces downtime and operational costs.

Viking VBCV (Variable Bypass Control Valve) is tailored for systems that require adjustable flow rates based on demand. One of its key features is the ability to dynamically adjust its opening based on feedback from the system, ensuring optimal flow without unnecessary pressure losses. The incorporation of smart sensor technologies allows VBCV to work seamlessly with advanced control systems, offering better process control. Its rugged construction means it is well-suited for industrial applications, where conditions can be extreme.

In summary, the Viking DICV, VICV, DBCV, and VBCV represent a suite of advanced control valve technologies that address key challenges in fluid dynamics management. Each model has unique features that cater to specific application needs, prioritizing efficiency, durability, and precision. With ongoing advancements in materials and technologies, these valves are set to play a vital role in the future of automation and process control.