Hybrid Fans. Models QEI and QEID. Belt and Direct Drive

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1 Hybrid Fans Models QEI and QEID Belt and Direct Drive March 9

2 Quiet, Efficient, Inline Greenheck, the world s largest manufacturer of air movement and control products, has been providing top quality ventilation solutions for more than years. Hybrid Fan QEI & QEID Hybrid inline fans can be used with clean air for supply, exhaust, or return air installations. Our patented design excels in commercial applications where low sound is critical. In addition, the Models QEI / QEID are more efficient than comparably sized double width cabinet and axial fans, thus reducing the required motor horsepower and lowering operating costs. The Models QEI and QEID hybrid fans are the quietest tubular inline fans in the world! Patented (QEI/QEID) USA Patent No. 799 China (P.R.) Patent No. CN191C Mexico Patent No. Model QEI Belt Drive 1 Sizes, two classes of construction Volume Range:, - 11, m /hr (, - 9, cfm) Static Pressure: Up to 1 Pa (. in. wg) Performance as cataloged is assured. All sizes are licensed to bear the AMCA Certified Sound (both inlet and outlet) and Air Performance Seal. The QEI & QEID are UL/cUL-7 Listed for electrical, UL Emergency Smoke Evacuation and UL 7 Restaurant Grease Exhaust (UL Listings optional). The QEI is certified in accordance to Chinese National Standard T17-91 and GA Smoke Evacuation. All sizes are operated and vibration tested before they leave the factory to ensure trouble-free operation at the jobsite. Compact size and Universal Mounting System make tight space considerations and last minute mounting changes easy to handle at the jobsite. The QEI uses air handling quality bearings that are 1% inspected for swivel torque, noise levels, and bore tolerance. Greenheck subjects these products to extensive life testing, assuring you that the fans will provide many years of reliable performance. Typical Hybrid Applications: The models QEI and QEID are recommended for any ventilation application that requires low sound and high efficiency, such as: Office Buildings Parking Garages Concert Halls Libraries Educational Facilities Model QEID Direct Drive 1 Sizes, % - 1% wheel widths Volume Range: 1, - 1, m /hr ( - 9, cfm) Static Pressure: Up to 7 Pa (9. in. wg) All Greenheck products are supported by the industry s best product literature, electronic media, and Computer Aided Product Selection program (CAPS). You ll also find extensive product and Installation and Operation Manual (IOM) information on our website, And, of course, you can always count on the personal service and expertise of our sales representative organization. To locate your nearest Greenheck representative, visit our website at greenheck.com or call any of the phone numbers provided on the back of this catalog.

3 Design & Performance Hybrid Design A hybrid wheel is a cross between an axial propeller and a centrifugal wheel. The result is a design that combines the best axial and centrifugal properties: highly efficient air movement, increased pressure capabilities, extremely low sound levels, and a steep fan performance curve. To further enhance the fan s performance, straightening vanes are incorporated in the housing. These serve to convert swirling airflow into a straight axial flow with a resulting static pressure rise and energy savings. Profiles Static Pressure Double Width Cabinet Hybrid Axial Double Width Cabinet Sound and Efficiency Sound power levels and fan efficiency are two very important factors when selecting a fan. There is a noticeable difference between impeller types. The table and chart below compare the sound power (LwA) and the static efficiency of the QEI wheel versus a double width cabinet and axial inline fans. The QEI provides the quietest and most efficient selection over a wide range of operating points. Performance, Pa, Pa, 1 Pa QEI Size Axial QEI Sound Power LwA Double Width Cabinet (Model comparisons based on similar outer tube diameters.) Hybrid Axial Double Width Cabinet Fans: Two 9 deflections before airflow exits the fan. Axial Fans: Straight through, nearly linear airflow. Hybrid QEI Fan: deflected by two turns. QEI Static Efficiency Double Width Cabinet M 9 db 1 db 91 db % 1% % M db 11 db 1 db % % % M9 91 db 1 db 19 db 71% % 7% Axial Lower Sound Power, Better Sound Quality Sound power levels shown at each frequency: Sound Power, db Typical Double Width Cabinet Typical Axial QEI 1 1 Frequency, Hz The sound quality of the QEI is as beneficial to low sound design as is the reduced overall sound power. The sound chart compares units of similar outer tube diameters at an operating point of, cmh with 7 Pa of static pressure (Ps). Double width cabinet (yellow) have dominant tones in the Hz through Hz octave bands, while axials (red) have more mid to high frequency sound. A bystander would hear a more bland sound that is quieter than a double width cabinet or axial.

4 Value-Added Features Vibration Testing Before shipment, every hybrid fan is vibration tested as a complete assembly using Greenheck s state-of-the-art digital spectrum analyzer/balancer instrument package. This system uses two tri-axial accelerometers to measure vibration from six inputs simultaneously. The maximum allowable vibration on a QEI at the fan bearings is.1 mm/sec. peak velocity, filter in, for the specified fan. QEID maximum vibration is. mm/sec. peak, filter-in, on the fan housing for the specified. A record of any vibration test result. or it s Vibration Signature is available upon request. By performing the vibration test, we are able to provide more than simply trim balancing; it is also a diagnostic tool for finding potential problems. A defective bearing or motor, bent shaft or misaligned sheaves may cause excessive vibration. A complete vibration test will find these problems before the fan leaves the factory. Electrostatic Powder Paint Powder coatings offer a uniform, durable and high quality finish. Powder coating is a one-coat process applied over a phosphatized surface that generally meets or exceeds the corrosion resistance of a comparable wet paint. Greenheck offers a number of in-house coatings applied via electrostatic powder. The standard coating, Permatector, is excellent for indoor or outdoor applications and also has resistance to many common chemicals. Consult Greenheck s Product Application Guide, Performance Coatings for Ventilation Products, for a complete list of coatings available and their chemical resistance. Available on-line at greenheck.com. Maintenance / Serviceable Construction Advantages The following value added features are incorporated into the design to allow for quick and easy field service. Belt Drive service advantages (QEI) Bearing lubrication is performed through extended grease fittings located on the outside of the fan housing. The entire shaft and bearing assembly can be removed as a single assembly from the inlet end of the fan housing. An adjustable motor base is provided for tightening the fan belts. Direct Drive service advantages (QEID) Grease lubrication on motor bearings is done through extended grease fittings for IEC motor frame sizes 1 and over. Smaller frame motors use sealed bearings and are permanently lubricated.

5 Inlet and Outlet Sound Power Levels All sizes and configurations have AMCA licensed sound power levels for both the fan inlet and outlet. Application and installation determines which sound power reading (inlet, outlet, or both) is critical. The differences between the generated sound from the inlet and outlet are important and noticeable. AMCA licensed inlet and outlet sound power data provides complete sound information to select a fan based on the acoustical requirements. Field Rotatable Housing / Compact Size The QEI is designed to accommodate changing fan mounting positions and motor orientation in the field. Mounting fixtures are securely bolted to the fan casing and can be relocated to reposition to accomodate how the fan and motor must be orientated. Flexibility in a motor s location is important for easier access and can determine where the unit will fit. Last minute design changes or unexpected obstacles during installation are no longer a problem. The QEI and QEID were designed for compact size. Keeping size to a minimum is important when fitting into tight spaces like mechanical rooms or air handlers. Patented (QEI/QEID) USA Patent No. 799 China (P.R.) Patent No. CN191C Mexico Patent No. Slip-Fit Duct Connections The inlet and outlet ends of the QEI and QEID are designed to accept slipfit connections. Often companion flanges are bolted to the fan to provide a slip-fit connection for a flexible sleeve. This extra step is now eliminated by directly attaching the flexible sleeve to the duct and fan. This saves time and money in the installation process. It is recommended to use a flexible sleeve connection instead of a rigid duct connection. The advantages of a flexible transition are: Decreased sound transmission in the ductwork Duct Flexible connections allow for minor misalignment Accommodates the use of thrust restraints to resist thrust loads. AutoCAD Drawings Scaled AutoCAD drawings are available through Greenheck s website or from the Greenheck CAPS program which retrieves drawings and places them automatically into a job folder.

6 Optional Features & Model Number Code Sure-aire The Sure-Aire airflow monitoring station measures airflow within an accuracy of -%. Unlike traditional flow probes that block air passing through the inlet of the fan venturi, the Sure-Aire does not interfere with airflow and will not impact the fan s air or sound performance. This option is available on all QEI and QEID models and ships completely assembled from our factory. Motor options QEI and QEID models are supplied as standard with IEC (IP) motors. IEC design motors are variable frequency drive (VFD) compatible, have class F insulation and are capable of wyedelta starting when over. kw. The option is also available for NEMA (ODP and TEFC) motors Insulation Frequency Class F Class H Hz Hz ASD Compatible Extended Motor Leads Overload IP IP TECF Leadtime maybe extended with these selctions. on these models. NEMA motors use across the line starting with options for VFD compatibility. Design and construction options for motors include increased thermal insulation, overload protection and extended motor leads. Model number code The model number code provides a numbering system designed to identify the fan model, size and horsepower. Belt Drive QEI - M - I -7. Hybrid, Belt Drive QEI - Inline Metric Units Fan Size 1, 1, 1,,,, 7,,,,,, 9, Fan Class I or II Motor kw Direct Drive Hybrid, Direct Drive QEID - Inline Metric Units QEID - M A7. Fan Size 1, 1, 1,,,, 7,,,,,, 9, Motor kw Code A = 177 B = 117 C = 7 F = 9 Percent Wheel Width through 1 J = 1 K = 9 R = 9

7 Licenses and Certifications AMCA Greenheck Kunshan Co. Ltd. certifies that the Models QEI and QEID Hybrid Inline fans shown herein are licensed to bear the AMCA seal. The ratings shown are based on tests and procedures performed in accordance with AMCA Publication 11 and AMCA Publication 11 and comply with the requirements of the AMCA Certified Ratings Program. For QEID performance pages showing AMCA licensed data for sound and air performance, please refer to the Model QEID Sound and Air Performance Supplement. UL 7 Power Ventilators QEI and QEID models are available with the UL/cUL 7 (Underwriters Laboratory) listing on a wide variety of and Hz motors. This listing ensures the use of UL approved electrical components. UL/cUL File #E1 UL/cUL Listed Power Ventilator UL Emergency Smoke Evacuation QEI and QEID models were tested and rated for design time and temperature used in emergency heat and smoke exhaust applications. Consult your Greenheck representative for time and temperature combinations other than those listed. Model Operating Temperature Time Duration ºC ºF Hours Comments QEID 7 1 QEI 7 Per British Spec 7 Model QEI/QEID is available with UL listing for Power Ventilators for Smoke Control Systems QEI QEID Per Industrial Risk Insurers (North America) GB Emergency Smoke Evacuation The QEI model is tested and rated for design time and temperature used in emergency heat and smoke exhaust applications according to Chinese National Standard GB/T17 and GA11 for C ( F) for minutes. UL 7 Restaurant Exhaust Inline grease exhaust fans are an excellent alternative for kitchen applications when roof or wall mounted ventilators are not practical. The QEI with UL 7 grease option is designed to withstand the demands of high temperature kitchen grease exhaust and highpressure duct washers. A Tough Package to Beat The QEI inline grease fan is tough to beat when packaged with our full line of kitchen hoods and grease extraction options. Take advantage of Greenheck s expertise in providing a total solution in kitchen ventilation equipment. Listed Power Ventilation for Restaurant Exhaust Appliances 1G Maximum Operating Temperature C ( F) UL 7 is concerned with fans designed for removal of smoke and grease-laden vapors with airstream temperatures up to C ( F). Meets all UL 7 Requirements Bolted Access Door Drain Connection Meets requirements of NFPA 9 Ventilation Control and Fire Protection of Commercial Cooking Operations 7

8 Belt Drive vs. Direct Drive Belt Drive Advantages Lower sound levels Higher operating efficiencies Motor out of the airstream for easy access Motor size may be changed to accommodate possible future air capacity requirements Final system balancing accomplished by changing drives Direct Drive Advantages Fewer wear components and less maintenance, no shaft, bearings, pulleys, or belts More compact than equivalent belt drive size Motor in airstream for increased motor efficiency and cooling Equal loading between mounting brackets HIGH EFFICIENCIES = LOWER OPERATING COSTS Example of Annual Operating Cost Savings For a system performance requirement of, cmh at Pa of static pressure, the corresponding operating power requirements are 1.17 kw with a QEI size M and 1 kw for a size M71 double width cabinet fan. Formulas: - Kilowatt-Hours = ( Operating Power x Hours of Operation ) / Motor Efficiency - Operating Cost = Kilowatt Hours x Power Cost per kw hour Assumptions: - Cost of electricity is $.1 per kilowatt hour - 1 annual hours of operation ( 1 hours per day, five days a week, weeks a year ) - 91.% motor efficiency Double Width Cabinet Fan kw-hours = (1 kw x 1) /.91 = 1,71 Operating Cost = 1,71 x $.1 = $, QEI - Hybrid Fan kw-hours = (1.17 kw x 1) /.91 = 1,7 Operating Cost = 1,7 x $.1 = $, Annual Operating Cost Savings = $, - $, = $,79 (USD)

9 Wheel Characteristics Belt Drive: Fan Class Class I and II fans have different wheel designs with different performance characteristics. Class I hybrid wheels are optimized for performances involving low pressures and high volumes. Class II wheels are designed for a steeper fan curve with higher pressure capabilities. This is illustrated in the graph with the two different class wheels plotted at identical fan s. When selecting a hybrid fan, it cannot be assumed that moving into a Class II fan will produce the same results as a Class I. Class II Static Pressure Class I Direct Drive: Percent Wheel Width Direct drive hybrid fans are optimized for performance requirements by the use of partial wheel widths. This is necessary because the fan is fixed and identical to the motor. A reduction in the width of the wheel (or the air passage) results in reduced airflow capacity and a steeper fan curve. This is similar to the effect of a reduced pitch in a direct drive vane axial fan. QEID wheels are available in % increments from - 1% wheel width. QEID fans are commonly used in conjunction with variable frequency drives (VFD s) for variable air volume (VAV) systems. In these applications, the wheel width is optimized to ensure efficient operation and stable performance throughout the turndown range. VFD s are also used for final system balancing and to reduce the airflow during initial phases of building construction. In this case, the fan and wheel width are selected using the final design and static pressure. Static Pressure % Wheel Width Intermediate Wheel Widths 1% Wheel Width % Wheel Width 1% Wheel Width Sound Power versus Sound Pressure The sound values displayed on the performance pages are in terms of inlet sound power (LWi A) and outlet sound power (LWo A). These values are the acoustic power radiating from the inlet and outlet of the fan, respectively. Sound pressure, expressed as dba, is the acoustic pressure at a point in space which can be measured with a microphone or can be heard. To convert sound power (LWA) into sound pressure (dba), the following corrections are applied for a hemispherical free field. dba = L W A - correction Distance from Fan.9 m ( ft.) 1. m ( ft.). m (1 ft.) Correction 7 db 11. db 17. db Note: Refer to AMCA Publication, Application of Sound Power Level Ratings for additional information on calculating typical sound pressure levels for fan installation. 9

10 Standard Construction & QEID Dimensional Data Housing Tubular housings are constructed of fully welded steel to eliminate air leakage. Integral straightening vanes are constructed from steel and welded into place. Wheel Hybrid Fabricated wheels are constructed from steel. The blade profiles are angled and contoured for the most efficient and quiet performance. Slip-Fit Duct Connection Inlets and outlets are designed with extended collars for slip-fit duct connections. Bearings (Belt Drive) Standard bearings are premium air handling quality, grease lubricated, self aligning, ball or roller type in flange mounts. Bearings are selected with a basic rating fatigue life (L 1 ), per ABMA standards, in excess of, hours at the maximum operating speed. Bolted Access Door A bolted access door provides an opening through the fan housing for cleaning or visual inspection of the wheel. A hinged access door is available as an accessory. Belt Guard (Belt Drive) A totally enclosed belt guard provides protection from rotating pulleys and belts. Belt guards meet OSHA Standards. Adjustable Motor Bases (Belt Drive) Rigid, heavy gauge steel motor bases are welded to the fan housing and include heavy duty adjustment screws for belt tensioning. Extended Lube Lines Belt drive units have nylon lubrication lines with grease fittings that allow bearing lubrication without disassembling the fan. Grease fittings are mounted on the outside of the fan housing. Direct drive units with IEC 1 frame size motors and larger also have extended lubrication lines for lubricating the motor bearings. Smaller frame sized motors are sealed and not lubricatable. Permatector Coating Greenheck s Permatector coating is a thermosetting polyester urethane, electrostatically applied to provide uniform thickness and a clean appearance. Permatector coatings also provide excellent corrosion characteristics for general applications, both indoor and outdoor. qeid dimensional data SLIP-FIT LENGTH Size Slip-Fit Length* Weight** Millimeters Inches Millimeters Inches Kilograms Pounds M M M M M M M M M M M M M M * Length of unit changes with motor frame size. Length dimension shown is for maximum possible length. For exact length, contact your Greenheck representative or the CAPS program. ** Weight is for unit only and does not include motor. 1

11 Belt Drive Mounting Configurations Sizes M1-M7 (Universal Mounting) Horizontal Base Mount Fig. 1 Horizontal Ceiling Hung Fig. Vertical Ceiling Hung Vertical Base Mount Fig. Optional Mounting Rails Horizontal Base Mount Motor at or 9 o'clock position Fig. Horizontal Ceiling Hung Motor at or 9 o'clock position Fig. Optional Mounting Rails Optional Mounting Rails Horizontal and Vertical Mounting Configurations QEI fans sizes M1-M7 can be mounted horizontally or vertically. For ease of installation, eight mounting brackets are welded on each fan. These eight brackets along with standard mounting supports provide for Greenheck s Universal Mounting System. Motor positions are viewed from the discharge end. Fig. 1 Horizontal Base Mount Each fan is shipped as standard in this arrangement. Motor at A position (1 o clock) is standard. Fig. Horizontal Base Mount with motor at C or G position ( or 9 o clock). A set of optional mounting rails are recommended for this installation. Fig. Horizontal Ceiling Hung In this installation the supports can be positioned for mounting the motor at A or E (1 or o clock). Fig. Horizontal Ceiling Hung with motor at C or G ( or 9 o clock). A set of optional mounting rails are recommended for this installation. Fig. Vertical Mount Universal QEI fans can be mounted vertically (ceiling hung or base mount) for either upward or downward airflow. Optional mounting rails are suggested for any vertical installation. Sizes M-M QEI fans sizes M-M are available in horizontal and vertical mounting configurations. Lifting lugs are provided on horizontal fans for ease of installation. Vertical units should be lifted by the mounting brackets. Horizontal Mounting Horizontal mounting configurations, base mount or ceiling hung, are provided with an identical support. The mounting configuration can be changed between base mount or ceiling hung in the field. The motor position can also be field rotated to any of the shown positions. Motor positions are viewed from the discharge end. Base Mount: Rigid steel base provides stable mounting to floor for the housing. Motor Positions; A, B, C, G and H Ceiling Hung: Suspend the fan horizontally from the ceiling. Motor Positions; A, C, D, E, F and G Mounting rails are recommended for horizontal installations with B, C, D, F, G and H motor positions. Vertical Mounting Vertical mounting configurations, upblast or downblast, are provided with heavy duty steel brackets welded to both ends. These brackets permit either floor or ceiling mounting on the same unit. Optional mounting rails are suggested for any vertical installation. G H A B C Horizontal - Base Mount G F A E D C Horizontal - Ceiling Hung Vertical (Upblast shown) 11

12 Accessories Motor Cover (Belt Drive) A weather proof motor cover shields the motor components from dust, dirt and moisture for indoor or outdoor installations. Motor covers also serve as personnel guards and meet OSHA standards. Hinged Access Door Hinged access doors provide an opening through the fan housing for cleaning or visual inspection of the wheel. Bolted access door is standard. Extended Life Bearings (Belt Drive) Standard bearing life for all QEI fans is (L 1 ), hours. This option provides air handling quality, flange mounted bearings that meet a basic rating fatigue life (L 1 ), per ABMA standards, in excess of, hours at maximum operating speed. Copper Lube Lines Copper lube lines can be used as a replacement for standard nylon lube lines. Grease fittings allow bearing lubrication without disassembling the fan or while in operation. Fittings are mounted on the outside of the fan housing. Available on all belt drive units and direct drive units with IEC 1 frame size motors and larger. Flanges Inlet and outlet flanges with prepunched holes are available for all fan sizes. These flanges, welded to the housing, provide an easy means for bolted connection to ductwork. Matching bolt-on companion flanges are also available. Disconnect Switches Toggle type and heavy duty disconnect switches are available for positive electrical shut-off and safety when servicing fans. The following switches are available to meet individual electrical requirements and can be factory mounted or shipped loose for field mounting. IP- General purpose IP- Dust and watertight Inlet and Outlet Guards Removable inlet and outlet guards provide protection for personnel and equipment in ducted or non-ducted installations. Extended Wiring (Direct Drive) Electric leads from motor junction box are brought out to exterior of unit. This provides an easy means of connecting the motor to the electrical system. Belt Tube (Belt Drive) A totally enclosed belt tube isolates the belts and drives from the airstream. Mounting Rails (Belt Drive) Mounting rails are used to provide a stable base when the fan and motor center of gravity is overhung to one side. They are recommended for horizontal mounting when the motor is to be located in the or 9 o clock position and also for all vertically mounted fans. Isolators Both base mount and hanging isolators are available in either neoprene or spring mounts. The isolators are sized to match the total weight of each fan. Special Coatings Special coatings are available for protective purposes. Coatings are applied before assembly so that each manufactured component is coated inside and out. Painting the exterior a specified color for appearance is also an option. Consult Greenheck s Product Application Guide, Performance Coatings for Ventilation Products, for a complete list of coatings available and their chemical resistance. Available on-line at greenheck.com. 1

13 Accessories Motor Cover Companion Flange Outlet Flange Outlet Guard Inlet Guard Inlet Flange Spring Base Isolator Neoprene Base Isolators Spring Hanging Isolator Neoprene Hanging Isolator Companion Flange Mounting Rails 1

14 Direct Drive Selection Charts The quick select charts are a convenient method for sizing the fan required for a specific performance. Colored bands for a given size in each chart represent the entire operating range available for that size and speed. For QEID performance pages showing AMCA licensed data for sound and air performance, please refer to the Model QEID Sound and Air Performance Supplement. 1 1 ( Hz) Model QEID M1 M Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) 1 9 ( Hz) Model QEID M1 M Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) 7 ( Hz) Model QEID M M Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) 1

15 ( Hz) Model QEID M1 M Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) ( Hz) Model QEID M1 M9 Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) 1 7 ( Hz) Model QEID M M Static Pressure (Pa x 1) Volume (cfm x 1) Volume (m /hr x 1) 1

16 QEI-M1 Class I Maximum F = 71 Maximum Motor Frame Size = 1S Approximate Weight (LMD) = kg. (19 lb.) Wheel Diameter = mm (1. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 17) Outlet Velocity = / 77 Tip Speed = Fan x. = ( x 1) / (Fan x.) 77 Static Pressure (Pa x 1) QEI-1I.7 (). () Density.7 lb/ft Density 1. kg/m 7 1. ().7 (1).7 (½).19 (¼) Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 1

17 Static Pressure (Pa x 1) QEI-M1 Class II QEI-1II Maximum F = Maximum Motor Frame Size = 1S Approximate Weight (LMD) = 1 kg. ( lb.) Wheel Diameter = mm (1. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 17) Outlet Velocity = / 77 Tip Speed = Fan x. = ( x 1) / (Fan x.7) (). () 1. ().7 (1). (7½) 7. (1) Volume (cfm x 1) 9 Density.7 lb/ft Density 1. kg/m 9 Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 17

18 QEI-M1 Class I Maximum F = Maximum Motor Frame Size = 1S Approximate Weight (LMD) = 1 kg. ( lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 1) Outlet Velocity = / 9 Tip Speed = Fan x. = ( x 1) / (Fan x.71) 111 Static Pressure (Pa x 1) (). (7½). () 1.1 (1½). (¾). ( 1 /) Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 1

19 Static Pressure (Pa x 1) QEI-M1 Class II Maximum F = 1 Maximum Motor Frame Size = 1S Approximate Weight (LMD) = 19 kg. ( lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 177) Outlet Velocity = / 9 Tip Speed = Fan x. = ( x 1) / (Fan x.91) (7½).7 (). () 1. ().7 (1) 11 (1) 7. (1) Volume (cfm x 1) 1 Density.7 lb/ft Density 1. kg/m 7 9 Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 19

20 QEI-M1 Class I Maximum F = Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 11 kg. ( lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 1) Outlet Velocity = / 11 Tip Speed = Fan x.9 = ( x 1) / (Fan x 7.) 111 Static Pressure (Pa x 1) QEI-1I.7 (). () 1.1 (1½). (¾). ( 1 /) 1. (7½) Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

21 Static Pressure (Pa x 1) QEI-M1 Class II QEI-1II Maximum F = 777 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 11 kg. (1 lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 1) Outlet Velocity = / 11 Tip Speed = Fan x.9 = ( x 1) / (Fan x.) (1) 11 (1). (7½).7 (). () 1. ().7 (1) Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m 9 1 Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 1

22 QEI-M Class I Maximum F = 7 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 11 kg. (1 lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 11) Outlet Velocity = / 1 Tip Speed = Fan x. = ( x 1) / (Fan x 1.1) 7 1 Static Pressure (Pa x 1) QEI- Class 1.7 (). () 1. ().7 (1).7 (½) 1 1. (7½) (1) 7 17 Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

23 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 17 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 1 kg. ( lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 11) Outlet Velocity = / 1 Tip Speed = Fan x. = ( x 1) / (Fan x.1) (1) 11 (1). (7½).7 (). () 1.1 (1½) Volume (cfm x 1) 7 Density.7 lb/ft Density 1. kg/m 9 1 Shaded values show where class I fan selections are more efficient than class II. 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

24 QEI-M Class I Maximum F = 19 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 1 kg. (7 lb.) Wheel Diameter = mm (7. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 9) Outlet Velocity = / 171 Tip Speed = Fan x.9 = ( x 1) / (Fan x 1.1) 7 19 Static Pressure (Pa x 1) QEI-I.7 (). () 1. ().7 (1) 1.7 (½). (7½) 7 7. (1) Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

25 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = Maximum Motor Frame Size = 1L Approximate Weight (LMD) = 191 kg. ( lb.) Wheel Diameter = mm (7. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 9) Outlet Velocity = / 171 Tip Speed = Fan x.9 = ( x 1) / (Fan x 1.1) (1). (7½).7 () 1. () 11 (1) 1 () Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

26 QEI-M Class I Maximum F = 1 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 1 kg. (7 lb.) Wheel Diameter = 7 mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 79) Outlet Velocity = / 77 Tip Speed = Fan x.99 = ( x 1) / (Fan x.) 11 Static Pressure (Pa x 1) QEI-I. (7½) 7. (1) 11 (1) Density.7 lb/ft Density 1. kg/m 7.7 (). () 1.1 (1½) 9. (¾) Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

27 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = Maximum Motor Frame Size = 1M Approximate Weight (LMD) = 9 kg. ( lb.) Wheel Diameter = 7 mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / ) Outlet Velocity = / 77 Tip Speed = Fan x.99 = ( x 1) / (Fan x 1.7) (1). (7½).7 () 1. () 11 (1) 1 () 19 () Volume (cfm x 1) 179 Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 7

28 QEI-M7 Class I Maximum F = 1 Maximum Motor Frame Size = 1L Approximate Weight (LMD) = kg. ( lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 9) Outlet Velocity = / Tip Speed = Fan x.9 = ( x 1) / (Fan x.) Static Pressure (Pa x 1) QEI-7I 7. (1). (7½).7 (). () 1.1 (1½) 1. (¾) (1) Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

29 Static Pressure (Pa x 1) QEI-M7 Class II QEI-7II Maximum F = 17 Maximum Motor Frame Size = 1L Approximate Weight (LMD) = kg. (7 lb.) Wheel Diameter = mm (. in.) Minimum Motor Starting kw = 1.1 Maximum kw = (Fan / 9) Outlet Velocity = / Tip Speed = Fan x. = ( x 1) / (Fan x 1.9) () 1 () 19 () 11 (1) Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m 7 7. (1). (7½).7 () 1. () Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 9

30 QEI-M Class I Maximum F = 1 Maximum Motor Frame Size = 1M Approximate Weight (LMD) = kg. ( lb.) Wheel Diameter = 97 mm (. in.) Minimum Motor Starting kw =.7 Maximum kw = (Fan / ) Outlet Velocity = / Tip Speed = Fan x. = ( x 1) / (Fan x.) Static Pressure (Pa x 1) QEI-I 7. (1).7 () 1. () 1.7 (1) 11 (1) () Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

31 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 17 Maximum Motor Frame Size = L Approximate Weight (LMD) = kg. (1 lb.) Wheel Diameter = 97 mm (. in.) Minimum Motor Starting kw = 1.1 Maximum kw = (Fan / ) Outlet Velocity = / Tip Speed = Fan x. = ( x 1) / (Fan x 9.) () 19 () () 11 (1) 7. (1). (7½).7 (). () Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 1

32 QEI-M Class I Maximum F = 1 Maximum Motor Frame Size = 1L Approximate Weight (LMD) = 9 kg. (99 lb.) Wheel Diameter = 1 mm (. in.) Minimum Motor Starting kw = 1.1 Maximum kw = (Fan / 9) Outlet Velocity = / 79 Tip Speed = Fan x. = ( x 1) / (Fan x.) Static Pressure (Pa x 1) QEI-I 11 (1) 1 () 19 () Density.7 lb/ft Density 1. kg/m 7 7. (1).7 () 9 1. () 1.7 (1) Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

33 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 1 Maximum Motor Frame Size = L Approximate Weight (LMD) = kg. (1 lb.) Wheel Diameter = 1 mm (. in.) Minimum Motor Starting kw = 1. Maximum kw = (Fan / 9) Outlet Velocity = / 79 Tip Speed = Fan x. = ( x 1) / (Fan x 9.9) () 19 () () 1 () 11 (1) 7. (1).7 (). () Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

34 QEI-M Class I Maximum F = 111 Maximum Motor Frame Size = 1L Approximate Weight (LMD) = kg. (1 lb.) Wheel Diameter = 11 mm (. in.) Minimum Motor Starting kw = 1.1 Maximum kw = (Fan / 19) Outlet Velocity = / 1 Tip Speed = Fan x.9 = ( x 1) / (Fan x 1.) 1 19 Static Pressure (Pa x 1) QEI-I 1 () 19 () () 11 (1) Density.7 lb/ft Density 1. kg/m 7 7. (1).7 (). () 1.1 (1½) Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

35 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 177 Maximum Motor Frame Size = S Approximate Weight (LMD) = kg. (1 lb.) Wheel Diameter = 11 mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / ) Outlet Velocity = / 1 Tip Speed = Fan x.9 = ( x 1) / (Fan x.) () 11 (1) 7. (1).7 () () 7 () () Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

36 QEI-M Class I Maximum F = 11 Maximum Motor Frame Size = L Approximate Weight (LMD) = kg. (1 lb.) Wheel Diameter = 1 mm (9. in.) Minimum Motor Starting kw = Maximum kw = (Fan / 7) Outlet Velocity = / 9 Tip Speed = Fan x. = ( x 1) / (Fan x 1.7) 11 1 Static Pressure (Pa x 1) QEI-I 19 () () () Density.7 lb/ft Density 1. kg/m 11 (1) 7 7. (1).7 () 1. () D O NOT SELECT TO THE LEFT OF THIS SYSTEM CURVE Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

37 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 11 Maximum Motor Frame Size = M Approximate Weight (LMD) = kg. (19 lb.) Wheel Diameter = 1 mm (9. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 7) Outlet Velocity = / 9 Tip Speed = Fan x. = ( x 1) / (Fan x 7.) () 1 () 7. (1).7 () () 7 () () Volume (cfm x 1) 7 Density.7 lb/ft Density 1. kg/m 9 19 Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 7

38 QEI-M Class I Maximum F = 91 Maximum Motor Frame Size = S Approximate Weight (LMD) = 97 kg. ( lb.) Wheel Diameter = 17 mm (. in.) Minimum Motor Starting kw =. Maximum kw = (Fan / 1) Outlet Velocity = / Tip Speed = Fan x.71 = ( x 1) / (Fan x 11.9) 1 7 Static Pressure (Pa x 1) QEI-I 1 () 7. (1).7 () 1 1. () () () Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

39 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 119 Maximum Motor Frame Size = M Approximate Weight (LMD) = 1 kg. ( lb.) Wheel Diameter = 17 mm (. in.) Minimum Motor Starting kw = 7. Maximum kw = (Fan / 1) Outlet Velocity = / Tip Speed = Fan x.71 = ( x 1) / (Fan x 97.9) () (7) () () 1 () 7. (1).7 () Volume (cfm x 1) 7 Density.7 lb/ft Density 1. kg/m 9 Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 9

40 QEI-M9 Class I Maximum F = Maximum Motor Frame Size = M Approximate Weight (LMD) = 19 kg. ( lb.) Wheel Diameter = 1 mm (. in.) Minimum Motor Starting kw = 7. Maximum kw = (Fan / ) Outlet Velocity = / 11 Tip Speed = Fan x.79 = ( x 1) / (Fan x 1.19) Static Pressure (Pa x 1) QEI-9I 19 () 11 (1). (7½). () 1 () 7 () 7 Density.7 lb/ft Density 1. kg/m Volume (cfm x 1) Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

41 Static Pressure (Pa x 1) QEI-M9 Class II QEI-9II Maximum F = 1 Maximum Motor Frame Size = S Approximate Weight (LMD) = 1 kg. (1 lb.) Wheel Diameter = 1 mm (. in.) Minimum Motor Starting kw = 11 Maximum kw = (Fan / ) Outlet Velocity = / 11 Tip Speed = Fan x.79 = ( x 1) / (Fan x 1.1) () (7) 7 (1) () () 1 () 7. (1) Volume (cfm x 1) 7 Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. 1 1 Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only. 1

42 QEI-M Class I Maximum F = 7 Maximum Motor Frame Size = M Approximate Weight (LMD) = 11 kg. (9 lb.) Wheel Diameter = 17 mm (. in.) Minimum Motor Starting kw = 7. Maximum kw = (Fan / 17) Outlet Velocity = / 117 Tip Speed = Fan x.79 = ( x 1) / (Fan x.) 19 7 Static Pressure (Pa x 1) QEI-I () 1 () 7. (1).7 () () 7 () () Volume (cfm x 1) kw 7 (HP) Density.7 lb/ft Density 1. kg/m Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Inlet Sound Power, L Wi [db ref 1-1 watts] Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi, L Wi A and outlet L Wo, L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

43 Static Pressure (Pa x 1) QEI-M Class II QEI-II Maximum F = 99 Maximum Motor Frame Size = S Approximate Weight (LMD) = 1 kg. ( lb.) Wheel Diameter = 17 mm (. in.) Minimum Motor Starting kw = 11 Maximum kw = (Fan / 17) Outlet Velocity = / 117 Tip Speed = Fan x.79 = ( x 1) / (Fan x 17.7) (7) 7 (1) 9 (1) 7 () () 1 () 7. (1) Volume (cfm x 1) Density.7 lb/ft Density 1. kg/m Shaded values show where class I fan selections are more efficient than class II. Inlet Sound Power, L Wi [db ref 1-1 watts] Volume (m /hr x 1) kw kw kw kw kw kw kw kw kw Outlet Sound Power, L Wo [db ref 1-1 watts] 1 7 L Wi A 1 7 L Wo A The sound power level ratings shown are in decibels, referred to 1-1 watts calculated per AMCA Standard 1. Values shown are for inlet L Wi A and outlet L Wo A sound power levels for Installation Type B: Free inlet, Ducted outlet. Ratings include the effects of duct end correction for the outlet duct. The AMCA Certified Ratings Seal applies to the single L Wi A and L Wo A values only. The A-weighted sound ratings shown have been calculated per AMCA International Standard 1. The AMCA Certified Ratings Seal applies to L Wo A and L Wi A values only.

44 Model QEI and QEID Supply, exhaust, or return air fans shall be of the inline hybrid type. The housing shall be constructed of welded heavy gauge steel to assure no air leakage. Housing shall have inlet and outlet collars for slip fit duct connections. The housing and bearing and/or motor supports shall be constructed of structural steel members to prevent vibration and rigidly support the shaft and bearings. Welded steel vanes shall straighten the flow of air from the fan discharge. Units up through size M7 shall incorporate a universal mounting system that allows the fan to be mounted in either vertical or horizontal configurations and field rotation of the motor position in 9 degree increments. Bearing life shall not be reduced below specified level in different configurations. Units size M and larger shall allow for field rotation of motor positions. Units shall accommodate base mount or ceiling hung mounting without structural modifications to the fan. The wheel shall be of the hybrid type. Wheels shall have a wheel cone, spherical back plate and single thickness cambered blades. Wheels shall be statically and dynamically balanced to balance grade G. per ANSI S.19. The wheel cone and fan inlet cone shall be carefully matched and shall have precise running tolerances for maximum performance and operating efficiency. Each assembled fan shall be test run at the factory at the specified fan. The maximum allowable fan vibration shall be.1 mm/sec. peak velocity, filter-in for belt drive units with signatures taken on each bearing in three planes; horizontal, vertical, and axial. Maximum vibration of. mm/sec. peak velocity, filter-in, for direct drive units in a single plane on the fan housing. This report shall be provided at no charge to the customer upon request. Inlet and outlet sound power levels shall be provided for each of the eight octave bands at the point of operation. Fans shall be licensed to bear the AMCA Seal for sound and air performance. Hybrid fans shall be Model QEI or QEID as manufactured by Greenheck Kunshan Co. Ltd., China and shall be supplied as shown on the plans and in the fan schedule. Additional Belt Drive Specification Turned, precision ground and polished steel shafts shall be sized so the first critical speed is at least % over the maximum operating speed. Close tolerances shall be maintained where the shaft makes contact with the bearings. Bearings shall be heavy duty, grease lubricated, self-aligning ball or roller flange mounted bearings with extended lubrication lines. Bearings shall be selected for a minimum life (L 1 ) of, hours at maximum operating speed and horsepower per fan class. Our Warranty Greenheck warrants this equipment to be free from defects in material and workmanship for a period of 1 months from the shipment date or one year from the date of installation, whichever occurs first. Any units or parts which prove defective during the warranty period will be repaired or replaced at our option when returned to our factory, transportation prepaid. Should motors furnished by Greenheck prove defective during this period, Greenheck should be informed and the motors should be returned to the nearest authorized motor service station. Greenheck will not be responsible for any removal or installation costs. As a result of our commitment to continuous improvement, Greenheck reserves the right to change specifications without notice. Prepared to Support Green Building Efforts USA Phone: Shanghai, China Phone: Beijing, China Phone: Kunshan, China Phone:.1.7- greenheck.com QEI and QEID Rev. 1 March 9 Copyright 9 Greenheck Kunshan Co. Ltd.

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