Unit

Setup

Chart 2 – Flow Sensor Delta P vs.Airflow Delivery

 

10

 

 

 

 

 

 

 

 

 

water)

 

 

 

6

 

 

8" x 12"

 

 

 

 

 

8"

10"

12"

14"

16"

16" x 24"

 

 

 

 

1

 

4

5

 

 

 

 

 

 

Differential Pressure (inches

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Flow Sensor

0.1

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

0.01

 

 

 

 

 

 

 

 

 

 

10

100

 

 

1,000

 

 

 

 

10,000

Airflow (CFM)

Chart 3– Fan Motor Amperage

Maximum PSC Fan MotorAmperage (FLA)

Fan

HP

115

277

347

208

Size

VAC

VAC

VAV

VAC

 

Parallel/Series 02SQ

1/8

1.6

0.7

.7

Parallel/Series 03SQ

1/3

4.3

1.6

1.4

Parallel/Series 04SQ

1/3

5.5

2.0

1.8

Parallel/Series 05SQ

1/2

6.7

2.4

2.2

Parallel/Series 06SQ

1/2

3.8

3.3

4.6

Parallel/Series 07SQ

1

4.7

3.8

6.6

Low-height Parallel/Series 08SQ

1/3

5.5

2.5

1.8

Low-height Parallel/Series 09SQ

1/3

5.5

2.5

1.8

Series Low-height 10SQ

2 x 1/8

11.0

5.0

3.5

Parallel Low-Height 10SQ

2 x 1/8

9.4

3.5

3.0

 

Maximum ECM Fan MotorAmperage (FLA)

Fan

HP

115

277

Size

VAC

VAC

VAV

Parallel/Series 03SQ

1/3

4.5

2.4

Parallel/Series 04SQ

1/2

6.5

3.5

Parallel/Series 05SQ

1

10.1

5.4

Parallel/Series 06SQ

1

9.5

5.1

Low-height Parallel/Series 08SQ

1/2

2.0

1.1

Low-height Parallel/Series 09SQ

1/2

6.7

3.6

Low-height Series 10SQ

2 x 1/2

7.5

4.0

32

VAV-SVN01E-EN

Page 32
Image 32
Trane VAV-SVN01E-EN, Trane manual Unit Setup, Chart 2 Flow Sensor Delta P vs.Airflow Delivery, Chart 3- Fan Motor Amperage

VAV-SVN01E-EN, Trane specifications

The Trane VAV-SVN01E-EN is an advanced variable air volume (VAV) system designed to optimize indoor air quality and energy efficiency in commercial buildings. This system is part of Trane’s commitment to offering reliable, innovative HVAC solutions that meet the demands of modern architectural designs and energy standards.

One of the main features of the VAV-SVN01E-EN is its ability to control air flow based on occupancy and environmental conditions. This ensures that energy is used efficiently, as airflow can be adjusted to match real-time needs, rather than operating at a constant rate. The integration of intelligent sensors allows the system to adapt dynamically, leading to both reduced energy consumption and improved comfort for building occupants.

The technology behind the VAV-SVN01E-EN includes advanced digital controls and integration capabilities. These controls enable the system to communicate seamlessly with building management systems (BMS), allowing for centralized monitoring and management. This interconnected approach not only enhances operational efficiency but also enables predictive maintenance, helping facility managers identify and address potential issues before they become problematic.

Energy efficiency is further enhanced through the use of VAV technology, which reduces the amount of conditioned air delivered when spaces are unoccupied or when less cooling or heating is required. This tailored approach contributes to lower energy costs and supports sustainability initiatives by decreasing the overall carbon footprint of the building.

Key characteristics of the Trane VAV-SVN01E-EN include its compact design, which facilitates easy installation in existing spaces without significant modifications. The unit is also designed for low sound levels, ensuring that it operates quietly, contributing to a more pleasant indoor environment. Moreover, the VAV system is engineered to be reliable and durable, with rigorous testing and high-quality components ensuring long-term performance.

In summary, the Trane VAV-SVN01E-EN stands out in the field of HVAC solutions, bringing together advanced technology, energy efficiency, and user comfort. Its features are tailored for modern building requirements, making it a preferred choice for facility managers aiming to enhance indoor air quality while reducing operational costs.