Viking VGBQ410-3RE1* manual Installation Requirements, Gas inlet and power cord location area

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OUTDOOR—C OOKING

41”W. Ultra -Pre mium T-Series/E -Se ries Gas Grill

Installation Requirements

ACCESS REQUIREMENTS

VGBQ410-3RE1*

VGBQ412-2RE1*

VGIQ410-3RT/E1*

VGIQ412-2RT1*

T-Series/E-Series

T-Series/E-Series

T-Series /E-Series

T-Series Two-Burner Grill

Three-Burner All-Grill

Two-Burner Grill

Three-Burner All-Grill

w/Side Burners

 

w/Side Burners

(inc. TruSear™ Burner)

(inc. TruSear™ Burner)

Gas inlet and power cord location area

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2. 5”

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Electrical connection

for power supply cord on E-Series to be located

on rear wall with a maximum distance of 2’ (61.0 cm) beneath solid bottom support.

**Accessd ooropening

1

 

 

 

 

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Countertop typically requires 1/2” wide by 1/2” deep notch cutout on each side of grill. This allows grill CP to sit back properly in the cutout.

*Cabinet Cutout must have a solid bottom to support the full weight of the unit. **Access Doors sold seperately

 

All models

Cutout width

40-1/4" (102.2 cm)

Cutout height

10-1/4” (26.0 cm)

Cutout depth

28” (71.1 cm)

PLANNING AND DESIGN GUIDE

RE LE A S E D 8/ 5 /0 8

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Contents All models include Standard Features & AccessoriesModel Options VGBQ412 models VGBQ410 modelsVGIQ410 models VGIQ412 modelsVGBQ410-3RE1 VGBQ412-2RE1 VGIQ410-3RT/E1 VGIQ412-2RT1 Dimensions & SpecificationsProduct Dimensions Clearance Dimensions & Hood Swing All models Installation RequirementsGas inlet and power cord location area Utility Installation Notes & Accessories Warming Racks SS Grill GratesRotisserie Baskets Compliance Information

VGBQ410-3RE1*, VGIQ412-2RT1*, VGIQ410-3RT/E1* specifications

Viking has long been a prominent name in the world of industrial and commercial automation, and their range of components exemplifies cutting-edge technology and robust performance. Among the standout products in their lineup are the VGIQ412-2RT1*, VGIQ410-3RT/E1*, and VGBQ410-3RE1* models, each designed to meet specific industrial needs.

The VGIQ412-2RT1* is engineered for advanced control applications. Its key feature is the integration of high-speed processing capabilities, which allows for lightning-fast reactions to changes in operational conditions. This model also comes equipped with dual relay outputs, which ensures redundancy and enhances the reliability of control systems. The VGIQ412-2RT1* supports a variety of communication protocols, making it highly versatile in diverse industrial settings. Its compact design ensures that it can be easily mounted in tight spaces, without compromising on performance.

The VGIQ410-3RT/E1* continues this trend of versatility while specifically addressing the needs of automation in harsh environments. Its ruggedized casing protects internal components against dust, moisture, and chemical exposure, making it an ideal choice for factories and outdoor applications. The innovative temperature management system embedded in this model keeps the device operating efficiently even under extreme conditions. Additionally, the VGIQ410-3RT/E1* showcases an intuitive user interface, allowing for seamless programming and operation by technicians and operators alike.

On the other hand, the VGBQ410-3RE1* stands out with its ability to handle high switching capacities. With an impressive current rating, this model is designed to manage large loads without overheating. It features advanced safety measures, including surge protection and automatic shut-off mechanisms, which safeguard both the device and connected equipment. The VGBQ410-3RE1* is also known for its energy efficiency, ensuring lower operational costs for businesses without compromising on performance.

All three models are compatible with Viking's suite of software tools, enhancing their functionality further by allowing for easy integration into existing systems. They are also designed with long-term reliability in mind, backed by Viking's commitment to quality engineering and customer support.

In conclusion, the VGIQ412-2RT1*, VGIQ410-3RT/E1*, and VGBQ410-3RE1* from Viking represent a convergence of innovation, reliability, and adaptability. These models are poised to meet the demands of modern industrial applications, providing users with the efficiency and performance required in today’s competitive landscape.