Presentation
Table Of Contents
- Damper Actuator Portfolio
- Agenda
- OpenAir™ Damper Actuators
- History: Did you know?
- OpenAir Product Line
- Differentiating Product Features
- Core Benefits of OpenAir Actuators
- Universal Features Across the OpenAir Product Line
- Quality Assurance with 100% Actuator Factory Testing
- Demo: Factory Testing for Confirmation of Quality
- Features
- Patented Technology in Self-Centering Shaft Adapter
- Features
- Features Continued…
- Universal Wiring Across OpenAir Product Line
- Slide Number 16
- #1: Reduced Installation Costs
- #2: Reduced Operating Costs
- #3: Increased Comfort and Extreme Reliability
- OpenAir™ Damper Actuators
- High Torque Applications
- High Torque Applications
- High Torque Applications: Enhanced GCA15x Actuators
- More Mounting Options: Tandem Mounting
- Medium Torque Applications
- Medium Torque Applications
- GMA15x Series
- GEB161.1U Modulating Control with Enhanced Functionality
- Low Torque Applications
- Low Torque Applications
- GDE/GLB Modulating Functionality
- GDE Alternatives
- Low Torque Applications:Spring Return
- Low Torque Applications:Spring Return
- Fire and Smoke Applications
- Fire and Smoke Applications
- Lab Applications
- Lab Applications
- Slide Number 39
- SimpleSelect with Damper Actuators
- Sizing and Selection of Electronic Damper Actuators
- Electronic Damper Actuator Sizing Parameters
- Electronic Damper Actuator Sizing Parameters
- Electronic Damper Actuator Sizing Parameters
- Electronic Damper Actuator Sizing Parameters
- Electronic Damper Actuator Sizing Parameters
- Electronic Damper Actuator Sizing Parameters
- Questions?
- Sales and Marketing Resources
- OpenAir Damper Actuator Resources
- Thank you!
Restricted © Siemens AG 2014 All rights reserved.
Page 43
Electronic Damper Actuator Sizing Parameters
Sizing the torque of a electronic damper actuator depends on three factors
1. What is the area of the damper.
2. What is the blade type of the damper
3. What is the velocity of the airflow in the application in FPM or CFM
1
2
3