Greenheck Fan dimensions Pressure Drop Data SMD-202, Amca Test Figures

Page 2

Pressure Drop Data

SMD-202

This pressure drop testing was conducted in accordance with AMCA Standard 500-D using the three configurations shown. All data has been corrected to represent standard air at a density of .075 lb/ft3 (1.201 kg/m3).

Actual pressure drop found in any HVAC system is a combination of many factors. This pressure drop information along with an analysis of other system influences should be used to estimate actual pressure losses for a damper installed in a given HVAC system.

AMCA Test Figures

Figure 5.3 Illustrates a fully ducted damper. This configuration has the lowest pressure drop of the three test configurations because entrance and exit losses are minimized by straight duct runs upstream and downstream of the damper.

Figure 5.2 Illustrates a ducted damper exhausting air into an open area. This configuration has a lower pressure drop than Figure 5.5 because entrance losses are minimized by a straight duct run upstream of the damper.

Figure 5.5 Illustrates a plenum mounted damper. This configuration has the highest pressure drop because of extremely high entrance and exit losses due to the sudden changes of area in the system.

5D

5D

6D

D4 (W) (H)

3.14

Image 2
Contents Model SMD-202 Smoke DampersPressure Drop Data SMD-202 Amca Test FiguresAmca 5.2 Pressure Drop SMD-202 500 1000 1500 2000 2500 3000 3500 4000Amca 5.3 Pressure Drop SMD-202 Amca 5.5 Pressure Drop SMD-202 Application Data Damper Sleeve Dimensional DataActuators and Accessories Space EnvelopesDamper Sizing Information Transitioned Damper DimensionsSpecifications

SMD-202 specifications

The Greenheck Fan SMD-202 represents a cutting-edge solution in the world of ventilation and airflow management. Known for its exceptional performance and reliability, this fan model is a prime choice for various commercial and industrial applications. With a focus on energy efficiency, durability, and ease of installation, the SMD-202 has garnered attention for its innovative features and superior technology.

One of the standout characteristics of the SMD-202 is its efficient design. Engineered with a backward-inclined centrifugal blade design, this fan minimizes turbulence and maximizes airflow, ensuring that environments remain well-ventilated while consuming less energy. The SMD-202 operates quietly, thanks to its high-efficiency motor and precision balancing—features that make it ideal for applications where noise reduction is a priority.

The fan’s construction includes high-quality materials, which enhance durability and ensure a long service life. With a robust housing and an option for corrosion-resistant finishes, the SMD-202 is suitable for various environments, including those prone to moisture and chemical exposure. Additionally, the fan is designed for ease of maintenance, with access points that facilitate routine checks and repairs.

Equipped with advanced technologies, the SMD-202 offers exceptional versatility. It comes with variable speed drives, allowing users to adjust the airflow to meet specific requirements. This adaptability not only optimizes energy usage but also enhances comfort levels in occupied spaces. Furthermore, the fan can be integrated into existing building management systems, promoting seamless operation and monitoring.

Safety is also a top priority in the design of the SMD-202. The fan features thermal protection to prevent overheating and ensure operational safety. Additionally, it adheres to stringent industry standards, making it a reliable choice for commercial and industrial installations.

In summary, the Greenheck Fan SMD-202 embodies the perfect blend of efficiency, durability, and advanced technology. Its innovative features and reliable performance make it an excellent choice for a diverse range of ventilation needs, setting a benchmark in the industry for quality and effectiveness. Choosing the SMD-202 ensures that businesses can maintain optimal air quality while benefiting from lower energy costs and reduced maintenance efforts.