Model VCD-20. Control Damper. Application. 3V Blade. Ratings. Flange Options. Size Limitations. Blade Operation. Features and Options

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Application The series is a general purpose control damper for applications as an automatic control or manual balancing damper with low to medium pressure and velocity systems. A wide range of electric and pneumatic actuators are available. Ratings Pressure: Up to 5 in. wg (1.2 kpa) - pressure differential Velocity: Up to 3,000 (15.2 m/s) Temperature: Up to 250 F (121 C). Consult Greenheck for higher temperatures. Construction Standard Optional Frame Material Galvanized Steel 304SS Frame Thickness Frame Type 16 ga. (1.5mm) 5 in. x 1 in. (127mm x 25mm) Channel 12 ga. (2.7mm) Single flange, reversed flange, double flange Blade Material Galvanized Steel 304SS Blade Thickness 16 ga. (1.5mm) - Blade Type 3V - Blade Operation Opposed Parallel Axle 1 2 in. dia. Plated Steel 304SS Axle Bearings Synthetic 304SS Linkage Material Plated Steel 304SS Paint Finishes - Baked Enamel, Epoxy, Hi Pro Polyester, Industrial Epoxy Size Limitations W x H Maximum Size Minimum Size Single Section Multiple Section Inches 6 x 6 48 x 74 Unlimited mm 152 x 152 1219 x 1880 Unlimited Features and Options Low profile head and sill are used on sizes less than 17 in. (432mm) high Linkage concealed in the frame Wide range of electric and pneumatic actuators. Factory installation available. Model Control Damper W* 3V Blade *W & H dimension furnished approximately 1 4 in. (6mm) undersize. Shown with optional extension pin and standoff bracket. Flange Options 5 in. 5 in. 5 in. Single Flange 1 1/2 in. (Typical) Reversed Flange * Shown with optional internally mounted actuator. Blade Operation 1 1 /4 in. (typical) 5 in. 5 in. 1 1 /4 in. (typical) H* Double Flange Parallel Blades Opposed Blades Installation instructions available at www.greenheck.com.

Data 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/ft 3 (1.201 kg/m 3 ). 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. 6D Figure 5.3 D 4 (W) (H) 3.14 Figure 5.2 Figure 5.5

R AMCA Certified Data AMCA 5.2 Greenheck Fan Corporation certifies that the model VCD- 20 shown herein is licensed to bear the AMCA Seal. The ratings shown are based on tests and procedures performed in accordance with AMCA Publication 511 and comply with the requirements of the AMCA Certified Ratings Programs. The AMCA Certified Ratings Seal applies to Air Performance ratings. 1000 0.05 1000 0.02 1500 0.11 1500 0.06 1500 0.05 2000 0.19 2000 0.10 2000 0.09 2500 0.29 2500 0.16 2500 0.14 3000 0.41 3000 0.23 3000 0.19 3500 0.55 3500 0.30 3500 0.27 4000 0.72 4000 0.40 4000 0.35 1000 0.04 1500 0.08 2000 0.15 2500 0.22 3000 0.32 3500 0.43 4000 0.56 1500 0.07 2000 0.12 2500 0.18 3000 0.26 3500 0.36 4000 0.47 AMCA 5.3 6D 1000 0.02 1000 0.02 1500 0.08 1500 0.04 1500 0.03 2000 0.13 2000 0.07 2000 0.06 2500 0.20 2500 0.11 2500 0.09 3000 0.29 3000 0.16 3000 0.13 3500 0.40 3500 0.21 3500 0.19 4000 0.51 4000 0.28 4000 0.25 1500 0.07 2000 0.12 2500 0.18 3000 0.26 3500 0.36 4000 0.46 1500 0.06 2000 0.10 2500 0.16 3000 0.22 3500 0.30 4000 0.39 AMCA 5.5 500 0.03 500 0.03 500 0.03 1000 0.13 1000 0.12 1000 0.12 1500 0.30 1500 0.26 1500 0.28 2000 0.53 2000 0.47 2000 0.50 2500 0.82 2500 0.75 2500 0.78 3000 1.19 3000 1.04 3000 1.12 3500 1.62 3500 1.41 3500 1.53 4000 2.10 4000 1.90 4000 2.00 500 0.03 1000 0.12 1500 0.27 2000 0.47 2500 0.75 3000 1.07 3500 1.45 4000 1.91 500 0.03 1000 0.12 1500 0.28 2000 0.49 2500 0.77 3000 1.12 3500 1.53 4000 2.01

Leakage Data Leakage testing was conducted in accordance with AMCA Standard 500-D and is expressed as cfm/ft2 of damper face area. All data has been corrected to represent standard air at a density of 0.075 lb/ft 3 (1.204 kg/m 3 ). 74 60 Application Data Velocity Limitations 15.0 Static Pressure Difference ( in. wg) 10.0 9.0 8.0 7.0 6.0 5.0 4.0 3.0 2.0 1.0.9.8.7.6.5.4 Damper Height (in.) 48 36 24 12 3000 2500 2000.3.2 1 2 3 4 5 6 7 8 9 10 20 30 40 50 60 70 80 90100 150 0 0 12 24 36 48 Damper Width (in.) Air Leakage (cfm/ft 2 ) Space Envelopes D On dampers less than 18 in. (457mm) high, actuators may also require clearances above and/or below the damper frame. B and T dimensions are worst case clearance requirements for some dampers less than 18 in. (457mm) high. All damper sizes under 18 in. (457mm) high do not require these worst case clearances. If space availability above or below the damper is limited, each damper size should be individually evaluated. Damper frame T Optional Jackshaft B Actuator Type/Model AFBUP (-S) and FSNF Series, Belimo MSxx20 Series, Honeywell; 33x-2976 Series, Siemens FSLF, LF and TFB Series, Belimo MSxx04 & MSxx09 Series, Honeywell MS75xx Series, Honeywell 33x-4551 Series, Siemens 331-2856, Siemens Height T B D Inches (mm) Inches (mm) >6 to <10 0 12 3 4 6 >10 to <18 0 2 6 >18 0 0 6 >6 to <10 0 3 1 2 6 >10 0 0 6 >6 to <9 0 4 3 4 6 >9 0 0 6 >6 to <10 0 12 3 4 6 >10 to <18 0 7 6 >18 0 0 6 >6 to <10 0 7 1 2 6 >10 to <17 0 1 1 2 6 >17 0 0 6 <12 N/A N/A N/A >12 to <18 0 2 1 2 9 >18 0 0 9

Assemblies Specifications 1 1/4 in. (32mm) This drawing depicts the worse case clearance requirements for an actuator with a jackshaft. 7 3/4 in. (197mm) 3 3/4 in. (95mm) Mounting External - includes extension pin (standoff bracket optional) External kit - actuator and all mounting hardware Internal - blade lever Actuator 5 3/8 in. (136.5mm) 5 in. (127mm) Multi-Section Assembly Dampers larger than the maximum single section size, will be made up of a multiple of equal size sections. Multiple section dampers can be jackshafted together so that all sections operate together as shown below. NOTE: Dampers larger than 48 in. x 74 in. (1219mm x 1880mm) are not intended to be structurally self supporting. Additional horizontal bracing is recommended to support the weight of the damper and vertical bracing should be installed as required to hold against system pressure. Specifications Control dampers meeting the following specifications shall be furnished and installed where shown on plans and/or as described in schedules. Damper blades shall be 16 ga. (1.5mm) galvanized steel 3V type with three longitudinal grooves for reinforcement. Blades shall be completely symmetrical relative to their axle pivot point, presenting identical resistance to airflow and operation in either direction through the damper (blades that are non-symmetrical relative to their axle pivot point or utilize blade stops larger than 1 2 in. [13mm] are unacceptable). Linkage shall be blade-to-blade concealed in jamb (out of the airstream) to protect linkage and reduce pressure drop and noise. Damper frame shall be 16 ga. (1.5mm) galvanized steel formed into a structural hat channel shape with reinforced corners to meet 11 ga. (3.1mm) criteria. Bearings shall be corrosion resistant, permanently lubricated, synthetic (acetal) sleeve type, rotating in extruded holes in the damper frame for maximum service. Axles shall be square and positively locked into the damper blade. The Damper manufacturer s submittal data shall certify all air performance pressure drop data is licensed in accordance with the AMCA Certified Ratings Program for Test Figures 5.2, 5.3 and 5.5. Damper air performance data shall be developed in accordance with the latest edition of AMCA Standard 500-D. Damper manufacturer's printed application and performance data including pressure, velocity and temperature limitations shall be submitted for approval showing damper suitable for pressures to 5 in. wg. (1.2 kpa), velocities to 3000 (15.2 m/s) and temperatures to 250 F (121ºC). Testing and ratings to be in accordance with AMCA Standard 500-D. Basis of design is Greenheck's model. Copyright 2017 Greenheck Fan Corporation Rev. 15 May 2017