125 Series Standard Conveyors

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1 Series Standard Conveyors Specifications Width 2 to 24 Length 24 to 44 Profile.89 high Drive Pulley.3 Diameter Load Carrying Capacity to 450 lbs.* Speed Range up to 2 fpm *See Technical Data on page 0 Overview Dimensions As in all industries, technical specifications will change with technology updates. Please contact factory or see for the most up-todate drawings * W +.3 = FRAME WIDTH W -.0 = BELT WIDTH L = CENTER DISTANCE L -.3 = OVERALL LENGTH.50 DIA. /8 SQ. KEY.88 W SHAFT LENGTH.75 8 QC Industries *Dimension reflects use of MAA belt. See pages 20-2.

2 Features & Benefits Conveyor Low profile design provides tight product transfers and the ability to fit into space-constrained areas Single piece 0-gauge steel framework is laser cut and formed to create a single-body frame construction, ensuring frame integrity Tight tolerance belting and our unique snap-out sealed tail assembly provide for a quick belt change (less than 5 minutes) that is normally achieved without having to remove the drive packages or side rails High tensile strength belts offer superior strength-to-weight ratio and are available in over 50 various types All components in our conveyors are produced on state-of-the-art manufacturing equipment Tail Assembly Single point belt tension is achieved through a snap-in eccentric tail assembly designed to pull through the natural elongation characteristics of the belt and provide quick and easy belt change capacity Crowned sealed tail assembly is designed to promote excellent belt tracking and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the tail assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Grease fitting design in the tail assembly allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed tail assembly, providing optimal conditions to move the heaviest loads in low profile conveyors Eccentric tracking bushing allows for single point tracking control at the idler end of the conveyor Drive Assembly Straight knurl design used to prevent premature wear on the carcass of the belt and still provide superior grip to overcome start-up inertia Crowned sealed drive assembly designed to promote superior belt tracking, and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the drive assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Discreet needle fitting lubrication points in each bearing housing allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed bearing assemblies that are piloted on body fitted studs, providing optimal conditions to move the heaviest loads in low profile conveyors Threaded tracking adjustment points provide simple responsive belt tracking that retain settings, even during belt removal Drive pulley is available in solid output design, dual solid output design, or hex through shaft design QC Industries

3 Series Standard Conveyors Technical Data Each of the myriad of applications that exist requires certain performance characteristics from the conveyor. QC Industries has developed a sizing system that condenses all of these parameters into a common factor, namely equivalent load. A conveyor application that is accumulating a 5-pound load, for example, demands the conveyor to carry more than 5 pounds. As such, we have developed certain factors to add to the load that the conveyor needs to carry. Follow the five steps below to determine the equivalent load your application requires. The result will then be used to help choose the gearmotor arrangement that will provide the correct torque.. Nominal Load Enter the total load in pounds the conveyor must carry. For example, (2) cartons weighing 0 pounds each would have a total nominal load of 20 lbs. Use Figure 0-A to cross-reference the width conveyor you desire with the nominal load you need to carry (to ensure it can carry the load). Each conveyor width listed shows a total load carrying capacity for both drive pushing and drive pulling applications. Enter nominal load (in pounds) on Line One. 2. Accumulation 2. If the application does not have an accumulating load, enter zero on Line Two. Otherwise, multiply the nominal load from Line One times an accumulation factor. (0.2 for accumulation belts listed on page 20 and 0.3 for MAA standard urethane). Enter result on Line Two. 3. Incline/Decline [Factor] x [Load] = 3. Some applications require an incline or decline. If the application does not require an incline or decline, enter zero on Line Three. For inclining or declining applications, choose a factor from Figure 0-B based upon the angle of incline then multiply that factor by the total nominal load from Line One. Enter result on Line Three. 4. Side Seals 4. If the application does not call for side rails with seals to prevent small parts from getting under the rail, enter zero on Line Four. Otherwise, multiply the conveyor length in feet by 5. The side rails can be found on page 22. Example: 96" long conveyor with side seals would have a factor of 40 (8 x 5). Enter result on Line Four.. Load Carrying Capacity - Figure 0-A Lbs Belt Width Pulling (Drive Location A&B) Pushing (Drive Location C&D) See page Above load carrying capacities are for both drive pushing and pulling applications. for drive pushing applications, decrease load capacity of conveyor by /2. Incline/Decline Load Factors - Figure 0-B Equivalnt Load Constant Angle Factor STOP **Verify Load Capacity: After adding lines one through four together, please reference Figure 0-A to ensure that the conveyor width you desire will carry the sum of Lines One through Four. If the sum is greater than the load capacity listed for the width you have chosen, please choose a wider conveyor or consult factory. 5. Conveyor Friction 5. Conveyor Friction - Figure 0-C All conveyors have a certain amount of friction that must be added to the nominal load. To determine how much additional load must be factored in, add 4 to the conveyor width in inches, then multiply by 6, or simply choose the value from Figure 0-C. Enter result on Line Five. Equivalent Load (lbs) SUM (-5) Write down the equivalent load on your application assistance form (pages 6-7). The equivalent load will be needed to properly size a gearmotor for the conveyor. (See pages 30-37) Equivalent Load lbs. 0 Conveyor Width Frictional Load Next, proceed to the next page to construct the conveyor part number. 0 QC Industries

4 How to Order Series Step Step 2 Step 3 Step 4 Drive Type Construction Frame Frame Style E S H Width Width Length Length Length Drive Location Drive Pulley Tail Pulley Belt Belt Belt Series Standard Step Series Drive Type Construction Frame Frame Style = E = End Drive S = Standard Step 2 B =.8 Powder Coat (Beige) E =.8 Stainless Steel Custom colors available - Contact factory H = Straight Frame Widths Lengths* *Contact factory for special lengths Step 3 Drive Location Drive Pulley Type Tail Pulley Type C D Cap /2 Dia* S Standard A Step 4 B A&B are drive pulling C&D are drive pushing Standard Option see pg.4 Option see pg.4 Thru /2 Dia* Solid Output Shaft Hex Input Dual Output /2 Hex /2 Dia* H D Standard Option see pg.43 Option see pg.42 * /8 sq. key included Rolling Nosebar Detectable Q R D Choose three-digit belt ordering code on pages Example: ESBH ASQ-MAA Series conveyor with standard construction and.8 powder coated frame. Conveyor measures 2 wide by 48 long with solid output pulley and standard tail pulley. The drive output shaft is in the A position. The conveyor has a standard urethane belt. Optional: Snap-In Wiper is used with smooth surfaced, low friction belts for residue removal. This item snaps into the underside of the conveyor frame and can be installed at either end of the conveyor. Shown here on the drive end. Fill in the last two digits of the part number with the conveyor width Part Number: -092-WW Example: Snap-In Wiper for an 8 wide conveyor As standard, we assemble the conveyor, track the pre-tensioned belt and quality check every conveyor before we ship to the customer. Accessories such as Drives, Stands, Mounts, and Guides are packaged separately and are shipped unassembled with the conveyor to prevent damage during shipment. Complete assembly can be provided upon request; please contact our factory for details. proceed to page 22 to continue sizing your conveyor... QC Industries

5 Series Cleated Conveyors Specifications Width 2 to 24 Length 24 to 44 Profile.89 high Drive Pulley.3 Diameter Load Carrying Capacity to 450 lbs.* Speed Range up to 2 fpm Multiple Cleat Heights Available *See Technical Data on page 4 Overview Dimensions W As in all industries, technical specifications will change with technology updates. Please contact factory or see for the most up-todate drawings * W -.37 = CLEAT WIDTH CLEAT HEIGHT SEE PAGE 5 L = CENTER DISTANCE L -.3 = OVERALL LENGTH.50 DIA. /8 SQ. KEY SHAFT LENGTH.75 2 QC Industries *Dimension reflects use of MAA belt. See pages 20-2.

6 Conveyor Features & Benefits Low profile design provides tight product transfers and the ability to fit into space-constrained areas Single piece 0-gauge steel framework is laser cut and formed to create a single-body frame construction, ensuring frame integrity Tight tolerance belting and our unique snap-out sealed tail assembly provide for a quick belt change (less than 5 minutes) that is normally achieved without having to remove the drive packages or side rails High tensile strength cleated belts offer superior strength-to-weight ratio and are available in various styles and heights. Cleats are always high frequency welded to customer desired spacing and never glued to the top surface of the belt All components in our conveyors are produced on state-of-the-art manufacturing equipment Multiple cleat sizes and styles available See page 5 Step 4 for options Corrugated sides available with inch cleats Tail Assembly Single point belt tension is achieved through a snap-in eccentric tail assembly designed to pull through the natural elongation characteristics of the belt and provide quick and easy belt change capacity Crowned sealed tail assembly is designed to promote excellent belt tracking and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the tail assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Grease fitting design in the tail assembly allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed tail assembly, providing optimal conditions to move the heaviest loads in low profile conveyors Eccentric tracking bushing allows for single point tracking control at the idler end of the conveyor Drive Assembly Straight knurl design used to prevent premature wear on the carcass of the belt and still provide superior grip to overcome start-up inertia Crowned sealed drive assembly designed to promote superior belt tracking, and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the drive assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Discreet needle fitting lubrication points in each bearing housing allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed bearing assemblies that are piloted on body fitted studs, providing optimal conditions to move the heaviest loads in low profile conveyors Threaded tracking adjustment points provide simple responsive belt tracking that retain settings, even during belt removal Drive pulley is available in solid output design, dual solid output design, or hex through shaft design QC Industries

7 Series Cleated Conveyors Technical Data Each of the myriad of applications that exist requires certain performance characteristics from the conveyor. QC Industries has developed a sizing system that condenses all of these parameters into a common factor, namely equivalent load. A conveyor application that is carrying a 5-pound load, for example, demands the conveyor to carry more than 5 pounds. As such, we have developed certain factors to add to the load that the conveyor needs to carry. Follow the three steps below to determine the equivalent load your application requires. The result will then be used to help choose the gearmotor arrangement that will provide the correct torque.. Nominal Load Enter the total load in pounds the conveyor must carry. For example, (2) cartons weighing 0 pounds each would have a total nominal load of 20 lbs. Use Figure 4-A to cross-reference the width conveyor you desire with the nominal load you need to carry (to ensure it can carry the load). Each conveyor width listed shows a total load carrying capacity for both drive pushing and drive pulling applications. Enter nominal load (in pounds) on Line One. 2. Incline/Decline [Factor] x [Load] = 2.. Load Carrying Capacity - Figure 4-A Lbs Belt Width Pulling (Drive Location A&B) Pushing (Drive Location C&D) See page 5 Above Above load load carrying carrying capacities capacities are are for for both both drive drive pushing pushing and and pulling pulling applications. applications. for for drive drive pushing pushing applications, applications, decrease decrease load load capacity capacity of of conveyor conveyor by by /2. /2. Incline/Decline Load Factors - Figure 4-B Some applications require an incline or decline. If the application does not require an incline or decline, enter zero on Line Two. For inclining or declining applications, choose a factor from Figure 4-B based upon the angle of incline then multiply that factor by the total nominal load from Line One. Enter result on Line Two. STOP **Verify Load Capacity: After adding lines One and Two together, please reference Figure 4-A to ensure that the conveyor width you desire will carry the sum of Lines One through Two. If the sum is greater than the load capacity listed for the width you have chosen, please choose a wider conveyor or consult factory. Equivalnt Load Constant Angle Factor Conveyor Friction 3. All conveyors have a certain amount of friction that must be added to the nominal load. To determine how much additional load must be factored in, add 4 to the conveyor width in inches, then multiply by 6, or simply choose the value from Figure 4-C. Enter result on Line Three. Equivalent Load (lbs) SUM (-3) lbs. Conveyor Friction - Figure 4-C Equivalent Load Write down the equivalent load on your application assistance form (pages 6-7). The equivalent load will be needed to properly size a gearmotor for the conveyor. (See pages 30-37) Next, proceed to the next page to construct the conveyor part number. 0 Conveyor Width Frictional Load QC Industries

8 How to Order Step Step 2 Step 3 Step 4 Step 5 Series Drive Type Construction Frame Frame Style E S H Width Width Length Length Length Drive Location Drive Pulley Tail Pulley Belt Belt Belt # of Cleats # of Cleats # of Cleats Step Series Drive Type Construction Frame Frame Style = E = End Drive S = Standard Step 2 B =.8 Powder Coat (Beige) E =.8 Stainless Steel Custom colors available - Contact factory H = Straight Frame Widths Lengths* *Contact factory for special lengths Step 3 Drive Location Drive Pulley Type Tail Pulley Type C D Cap /2 Dia* S Standard A Step 4 B A&B are drive pulling C&D are drive pushing Standard Option see pg.4 Option see pg.4 Thru /2 Dia* Solid Output Shaft Hex Input Dual Output /2 Hex /2 Dia* H D Standard Option see pg.42 * /8 sq. key included Detectable Q D Choose a base belt material and cleat height Step 5 Base Belt Material 5mm 9mm /2 3/4 w/corr. sides 2 3 MAA (Standard Urethane) CAB CAD CAE CAF CAH CAG CAI CAK UAC ( Urethane) CBB CBD CBE CBF CBH CBG CBI CBK Note : All belts must have a cleat indent of width minus.37, except cleats with corrugated sidewall. That cleat indent is width minus 3.62 Note 2: Cleated belts are intended for use in conjunction with indented or adjustable guides (see page 23) Determine the total number of cleats on the conveyor. Multiply conveyor length (in inches) by 2, divide by the desired spacing between the cleats (in inches). This will result in the total number of cleats evenly spaced around the circumference of the belt. Must have a whole number of cleats. Example: ESBH ASQ-CAE06 Series conveyor with standard construction and.8 powder coated frame. Conveyor measures 6 wide by 48 long with solid output pulley and standard tail pulley. The drive output shaft is in the A position. The conveyor belt has a /2 high cleat every 6. As standard, we assemble the conveyor, track the pre-tensioned belt and quality check every conveyor before we ship to the customer. Accessories such as Drives, Stands, Mounts, and Guides are packaged separately and are shipped unassembled with the conveyor to prevent damage during shipment. Complete assembly can be provided upon request; please contact our factory for details. proceed to page 22 to continue sizing your conveyor... QC Industries

9 Series Magnetic Conveyors Specifications Width 2 to 24 Length 24 to 44 Profile.89 high Drive Pulley.3 Diameter Load Carrying Capacity to 450 lbs.* Speed Range up to 2 fpm *See Technical Data on page 8 Overview Dimensions 2.69 MAGNETS MAGNETS As in all industries, technical specifications will change with technology updates. Please contact factory or see for the most up-todate drawings * MAGNET SPACING SEE PAGE 9 L = CENTER DISTANCE.50 DIA. /8 SQ. KEY.88 W SHAFT LENGTH.75 L -.3 = OVERALL LENGTH *Dimension reflects use of MAA belt. See pages QC Industries

10 Conveyor Features & Benefits Low profile design provides tight product transfers and the ability to fit into space-constrained areas Single piece 0-gauge stainless steel framework is laser cut and formed to create a single-body frame construction, ensuring frame integrity Tight tolerance belting and our unique snap-out sealed tail assembly provide for a quick belt change (less than 5 minutes) that is normally achieved without having to remove the drive packages or side rails Ceramic magnets are custom positioned within the conveyor framework to achieve an optimum magnetic field and smooth product movement for your application High tensile strength belts offer superior strength-to-weight ratio and are available in over 50 various types All components in our conveyors are produced on state-of-the-art manufacturing equipment Tail Assembly Single point belt tension is achieved through a snap-in eccentric tail assembly designed to pull through the natural elongation characteristics of the belt and provide quick and easy belt change capacity Crowned sealed tail assembly is designed to promote excellent belt tracking and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the tail assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Grease fitting design in the tail assembly allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed tail assembly, providing optimal conditions to move the heaviest loads in low profile conveyors Eccentric tracking bushing allows for single point tracking control at the idler end of the conveyor Drive Assembly Straight knurl design used to prevent premature wear on the carcass of the belt and still provide superior grip to overcome start-up inertia Crowned sealed drive assembly designed to promote superior belt tracking, and is equipped with superior needle bearings with seals that are filled with high performance grease Thrust washers designed into the drive assembly provide axial float, which allows the assembly to move with the natural camber of the belt and protect bearings against off-center load conditions Discreet needle fitting lubrication points in each bearing housing allows for lubrication of bearings while the conveyor is running, resulting in zero down time during lubrication Precision bearing alignment is guaranteed within the pressed bearing assemblies that are piloted on body fitted studs, providing optimal conditions to move the heaviest loads in low profile conveyors Threaded tracking adjustment points provide simple responsive belt tracking that retain settings, even during belt removal Drive pulley is available in solid output design, dual solid output design, or hex through shaft design QC Industries

11 Series Magnetic Conveyors Technical Data Each of the myriad of applications that exist requires certain performance characteristics from the conveyor. QC Industries has developed a sizing system that condenses all of these parameters into a common factor, namely equivalent load. A conveyor application that is carrying a 5-pound load, for example, demands the conveyor to carry more than 5 pounds. As such, we have developed certain factors to add to the load that the conveyor needs to carry. Follow the five steps below to determine the equivalent load your application requires. The result will then be used to help choose the gearmotor arrangement that will provide the correct torque.. Nominal Load Enter the total load in pounds the conveyor must carry. For example, (2) metal parts weighing 0 pounds each would have a total nominal load of 20 lbs. Use Figure 8-A to cross-reference the width conveyor you desire with the nominal load you need to carry (to ensure it can carry the load). Each conveyor width listed shows a total load carrying capacity for both drive pushing and drive pulling applications. Enter nominal load (in pounds) on Line One.. Load Carrying Capacity - Figure 4-A Lbs Belt Width Pulling (Drive Location A&B) Pushing (Drive Location C&D) See page 9 Above load carrying capacities are for both drive pushing and pulling applications. for drive pushing applications, decrease load capacity of conveyor by /2. Magnetic Load Factors - Figure 8-B Magnetic Factor 2. To achieve magnetic pull, there are rows of magnets down the length of the conveyor. The maximum number of rows can be determined by dividing the conveyor width by two (not to exceed eight rows). Choose the number of magnet rows and then multiply the load by the factor from Figure 8-B. Enter result on Line Two. 3. Incline/Decline [Factor] x [Load] = 3. Some applications require an incline or decline. If the application does not require an incline or decline, enter zero on Line Three. For inclining or declining applications, choose a factor from Figure 8-C based upon the angle of incline then multiply that factor by the total nominal load from Line One. Enter result on Line Three. Equivalent Load Constant Number of Magnet Rows Incline/Decline Load Factors - Figure 8-C 4. Side Seals 4. If the application does not call for side rails with seals to prevent small parts from getting under the rail, enter zero on Line Four. Otherwise, multiply the conveyor length in feet by 5. The side rails can be found on page 22. Example: 96" long conveyor with side seals would have a factor of 40 (8 x 5). Enter result on Line Four. STOP **Verify Load Capacity: After adding lines one through four together, please reference Figure 8-A to ensure that the conveyor width you desire will carry the sum of Lines One through Four. If the sum is greater than the load capacity listed for the width you have chosen, please choose a wider conveyor or consult factory. 5. Conveyor Friction 5. Equivalnt Load Constant Angle Factor All conveyors have a certain amount of friction that must be added to the nominal load. To determine how much additional load must be factored in, add 4 to the conveyor width in inches, then multiply by 6, or simply choose the value from Figure 8-D. Enter result on Line Five. Conveyor Friction - Figure 8-D Equivalent Load (lbs) SUM (-5) Write down the equivalent load on your application assistance form (pages 6-7). The equivalent load will be needed to properly size a gearmotor for the conveyor. (See pages 30-37) lbs. Equivalent Load Next, proceed to the next page to construct the conveyor part number. 0 Conveyor Width QC Industries Frictional Load

12 How to Order Step Step 2 Step 3 Step 4 Step 5 Series Drive Type Construction Frame Frame Style E M E H Width Width Length Length Length Drive Location Drive Pulley Tail Pulley Belt Belt Belt - Number of rows 6 Section from Tail 6 Sections on Row See Step 5 below Row Spacing Step Consult factory Series Drive Type Construction Frame Frame Style = E = End Drive M = Magnetic E =.8 Stainless Steel H = Straight Frame Step 2 Widths Lengths* *Contact factory for special lengths Step 3 Drive Location Drive Pulley Type Tail Pulley Type C D Cap /2 Dia* S Standard A Step 4 B A&B are drive pulling C&D are drive pushing Standard Option see pg.4 Option see pg.4 Thru /2 Dia* Solid Output Shaft Hex Input Dual Output /2 Hex /2 Dia* H D Standard Option see pg.42 * /8 sq. key included Detectable Q D Choose three-digit belt ordering code on page 20 and 2. Step 5 Please send the part to be conveyed to our Sales Department to evaluate for proper magnetic arrangement. Ceramic magnets are positioned in a stainless steel frame according to each application. This permits a wide variety of magnetic field strengths and location options. Our application specialists will complete the part number for you. Below is an illustration of how we document the magnet spacing. Number of rows 3 Number of magnet sections from tail 2 Distance from tail before magnetic field begins 4 Row Spacing As standard, we assemble the conveyor, track the pre-tensioned belt and quality check every conveyor before we ship to the customer. Accessories such as Drives, Stands, Mounts, and Guides are packaged separately and are shipped unassembled with the conveyor to prevent damage during shipment. Complete assembly can be provided upon request; please contact our factory for details. proceed to page 22 to continue sizing your conveyor... QC Industries

13 Series Conveyors Belt Selection Guide Multi-Purpose Belts A. Standard Urethane B. Option #-Sealed Edge Standard Urethane C. Option #2-Spill Edge Cleat D. Option #3-Perforated Belt High Friction Belts A. Grey Diamond Top High Adhesion B. Green High Tack PVC C. Beige FDA High Adhesion D. Black Lateral Grooved High Adhesion E. Black Rough Top High Adhesion Accumulation Belts (Low Friction) A. FDA Fabric Accumulator C. Black Tight Weave Accumulator D. Grey Textured Urethane Accumulator E. Green FDA Fabric Accumulator MAA MAB MAC MAD FAA FAB FAC FAD FAF AAA AAC AAD AAE Belt Ordering Code Snakeskin Matte Smooth Longitudinal Groove Rough Top Fabric Fabric Textured Fabric Top Surface Description Smooth Smooth, Sealed Edge Longitudinal Serrated Cleat Smooth, Perforations Top Surface Material Urethane Urethane Urethane Urethane PVC PVC Soft Silicone PVC PVC Urethane Urethane Impregnated Urethane Impregnated Urethane Impregnated Belt Color Light Grey Dark Green Beige Black Black Black Light Grey Dark Green FDA LOW LOW LOW LOW HIGH HIGH HIGH HIGH HIGH Topside Coefficient of Friction (CoF) VERY LOW VERY LOW VERY LOW VERY LOW Short Term Part Max Temperature ( F) Max. Ambient Operating Temperature ( F) Anti-Static Average Belt Thickness (inches) Heat-Resistant Belts A. Silicone Heat Resistor B. Silicone Translucent Resistor C. Smooth FDASilicone Heat Resistor D. Blue Nitrile Heat Resistor E. Nitrile Heat Resistor Cut Resistant Belts A. Yellow Cut Resistor B. Standard Urethane C. Black Dimple Top Cut Resistor D. Rugged Poly Cut Resistor HAA HAB HAC HAD HAE IAA IAB IAC IAD Fine Texture Fabric Smooth Coarse Structure Smooth Smooth Smooth Dimple Top Structured Silicone Silicone Impregnated Silicone Nitrile Rubber Nitrile Rubber Urethane Urethane Hard Urethane Nitrile Rubber Blue Yellow Black Black LOW LOW LOW HIGH FDA Belts A. Standard Urethane B. Sealed Edge Standard Urethane C. Pure FDA D. Woven FDA E. FDA Urethane High Adhesion Static Conductive Belts A. Textured Carbon Impregnated B. Accumulation Static Conductive C. Low Friction Static Conductive D. Structured Static Conductive Translucent Belts UAA UAB UAC UAD UAE EAA EAB EAC EAD Smooth Smooth, Sealed Edge Matte Smooth Smooth Textured Rough Texture Smooth Structured Urethane Urethane Urethane Urethane Impregnated Urethane Urethane Impregnated Nitrile Rubber Urethane NBR Impregnated Fleece Translucent Black Black Black Black LOW LOW LOW HIGH HIGH LOW e 0 4 e 0 5 e 0 5 e A. Green Translucent Accumulator B. FDA Fabric Translucent Accumulator C. Silicone Translucent Accumulator TAA TAB TAC Textured Fabric Textured Impregnated PU Urethane Impregnated Silicone Light Green Translucent Translucent VERY LOW VERY LOW VERY LOW Color Contrasting Belts A. Gray Textured Contraster B. Smooth Green Urethane Contraster C. Dark Green PVC Contraster D. Light Blue Urethane Contraster E. Smooth Black PVC Contraster Non-Marking Belts A. Felt Topped Product Protector B. Fabric Topped Product Protector C. Cotton Topped Product Protector D. Black Elastomer Product Protector Release Properties Belts A. Beige Silicone Product Release B. PVC Product Release C. Textured Silicone Product Release D. Smooth Habilene Product Release E. Smooth Silicone Product Release Specialty/Profile Belts A. Green Sawtooth Profile Belt B. Grooved Rubber C. Stipple Top PVC Profile D. Negative Pyramid Profile E. Green Longitudinal PVC Profile Belt PAA PAB PAC PAD PAE NAA NAB NAC NAD RAA RAB RAC RAD RAE SAA SAB SAC SAD SAE Textured Smooth Matte Matte Smooth Felt Fabric Fabric Felt Smooth Matte, Smooth Fine Texture Smooth Textured Sawtooth Lateral Groove Stipple Top Textured Longitudinal Groove Chemical Resistant Belts Due to the broad spectrum of chemicals and percentages of chemical mixtures, QC Industries offers belt selection assistance in chemical application circumstances. Our application specialists will help determine which belt is best suited to withstand the chemicals present as well as the entire scope of the application parameters. This approach delivers the best possible product for the application. QC Industries PVC Urethane PVC Urethane PVC Felt Spun Polyester Cotton Polyester Silicone Non-Stick PVC Silicone Habilene Silicone PVC Nitrile Rubber PVC Urethane PVC Grey Green Dark Green Light Blue Black Natural Black Beige Green Green LOW HIGH LOW LOW HIGH HIGH HIGH Specifications subject to change - consult factory

14 QC Industries offers conveyor belting for a wide variety of applications and industries. These pages cover a number of the more popular belts we have provided through the years. These belts have all been tested at QC Industries and offer a compatible fit to the Series conveyors. If you have a specific need that is not covered on these pages, please contact one of our sales engineers directly at the factory to discuss your application parameters. To Order With Conveyor: Please use the three-digit QC belt code number for conveyor ordering on pages, 5, and 9. To Order Belt Only: Choose nominal conveyor width and length in inches and enter the three-digit belt code. E - WW - LLL - Example: E MAA Standard urethane belt for an 8 wide by 20 long Series conveyor Multi-Purpose Belts MAA QUICK SHIP! MAB MAC MAD High-Friction Belts FAA FAB FAC FAD FAF Accumulation Belts (Low Friction) AAA AAC AAD AAE Heat-Resistant Belts HAA HAB HAC HAD HAE Cut-Resistant Belts IAA IAB IAC IAD FDA/USDA Belts UAA UAB UAC UAD UAE Static Conductive Belts EAA EAB EAC EAD Translucent Belts TAA TAB TAC Color Contrasting Belts PAA PAB PAC PAD PAE Non-Marking Belts NAA NAB NAC NAD Release Properties Belts RAA RAB RAC RAD RAE Specialty/Profile Belts SAA SAB SAC SAD SAE Chemical Resistant Belts Due to the wide variety of chemical and percentages of chemical mixtures, QC Industries offers belt selection assistance in these application circumstances. Our application specialists will help determine which belt is best suited to withstand not only the chemicals present, but the entire scope of the application parameters. This approach delivers the best possible product for the application. QC Industries

15 Series Side Rails & Guide Rails Fixed Side Rails W +.06 W * W +.06 W * W +.06 W * /3 Side Rails -069 pictured Aluminum extruded /3 high sides Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Aluminum extruded /3 high sides with seals** Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Aluminum extruded /3 high sides with wear strip Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex W +.9 W *.78 W +.9 W +.06 W *.78 W +.9 W * Side Rails -078 pictured Aluminum extruded high sides Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Aluminum extruded high sides with seals** Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Aluminum extruded high sides with wear strip Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex W +.9 W +.06 W +.9 W +.06 W -.6 W +.9 W * * * Side Rails -0 pictured Aluminum extruded 2 high sides Part No. -0- Aluminum extruded 2 high sides with seals** Part No Aluminum extruded 2 high sides with wear strip Part No Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Fill in the last three digits of the part number with the nominal conveyor length in inches. Ex Note : W = nominal belt width in inches * Dimension reflects use of standard urethane belt (MAA) see page 20 Note 2: All rails are sold in sets ** Side seals are not intended for cleated belts, high friction belts, or belt speeds exceeding 30 FPM Note 3: Side rails start /6 from tail end and stop 3 /2 from drive end Custom fixed and flared side rails are available. For heights, consult factory QC Industries

16 Adjustable Guide Rails 3.00 ADJ. W -.0 MAX ADJ. W -. MAX MAX. *.3 MIN. * 3. MAX. *.99 MIN. * Axis Adjustable Guides T pictured W W W MAX. W MAX High 2-Axis Adjustable Guides 2 High 2-Axis Adjustable Guides Part No Part No ADJ. W -.38 MAX. 5. MAX. * 3.00 MIN. * 4.34 Fill in the last three digits of part number with the nominal length of the conveyor. Choose a set screw adjustment or a thumb wheel adjustment mechanism by indicating (S) for set screw and (T) for thumb wheel at the end of the part number. Example T adjustable guide rail with wear strip and thumb wheel adjustment for a 20 long conveyor. W W MAX. 3 High 2-Axis Adjustable Guides Part No The 2-Axis Adjustable Guides are designed to guide the product being conveyed. The rails can adjust vertically and horizontally, offering the end user the ultimate in flexibility. Choose from a set screw or thumb wheel adjustment. The thumb wheel is shown in the above picture and is ideal for quick adjustments, because no tools are required. W +.42 W -.2 W +.57 W MAX. * 2.3 MIN. *.62 MAX. *.03 MIN. * Indented Guides -029 pictured High Indented Guide Assembly Part No High Indented Guide Assembly Part No W +.57 W -.3 Fill in the last three digits of part number with the nominal conveyor length in inches * 4.92 Example adjustable guide rail with wear strip for a 20 long conveyor. The Indented Guides are designed to work with cleated belts. Each cleated belt is indented slightly (see page 5). The Indented Guide spans the indentation, providing a pocket which surrounds the product being conveyed. 3 High Indented Guide Assembly Part No *Dimension reflects use of MAA belt. See pages QC Industries

17 Series Side Rails & Guide Rails Tee Slotted Extrusions UNF THRU Use part number (Qty. ) SET (Qty. 4).9.86 The Rotate-In Tee Nut is designed to hold lightweight brackets that have a thickness of.48 or under Rotate-In Tee Nut Rotate-In Tee Nut Part No (Qty ) Part No SET (Qty 4) The Rotate-In Tee Nut can be used with the following rails and bolt on profiles: , -077, , -027, -026 Tee - -02, -099 The Rotate-In Tee Nut works with the and 2 side rails shown on page 22, as well as the Single Tee Slot and the Multi Tee Slot extrusions shown below. W W +.28 W *.73 *.6.6 Multi Tee Slot Multi Tee Slot Side Assembly Part No Single Tee Slot Single Tee Slot Side Assembly Part No Fill in last three digits of part number with the nominal conveyor length in inches. Part number includes one set as shown in drawing. Fill in last three digits of part number with the nominal conveyor length in inches. Part number includes one set as shown in drawing. Product Containment Accessories W + 3. MAX. W +.50 MIN. LANES W * RAIL CLEARANCE 2" OR 3" 3.86 MAX MIN. RAILS Lane Dividers Lane Dividers For part number see below Hinged Side Extenders Shown with /3 side rail with seal W +.56 Hinged Side Extenders For part number see below 24 LD S Construction (S - Standard) Mounting Type (F - Frame or T - Tee slot) # of Lanes (2,3,4 etc) # of Rails (, 2, 3 etc) Example Conveyor Length (in inches) LD FS Conveyor Width (in inches) 2 Lane Divider for 8 wide 44 long conveyor. One rail with two lanes Rail Clearance Height (2 or 3 ) mounted to the conveyor frame QC Industries Hinged Side Extenders bolt directly onto the frame of the conveyor, and can be used in conjunction with /3 side rails. Only available in 24 and 36 lengths. 36 Long Part No Long Part No *Dimension reflects use of MAA belt. See pages To obtain a longer length of hinged side, please use combinations of 24 and 36 lengths. However, all length combinations must equal 2 less than the nominal conveyor length.

18 Flared Side Rails 45 W MAX. W MIN. W MAX. W -.97 MIN Flared Side Rails are ideal for applications that require a drop zone wider than the width of the conveyor. The rails attach to and require the use of the adjustable guide rails shown at the top of page 23. Additionally, the user can add other components (shown below) to help guide the product as needed. Flared Side Rails should be ordered one size smaller than the nominal length of the conveyor. Flared Side Rails Shown with 2-axis adjustable guide (sold separately) Part # LLL-S L. Z Z Z Z Z Z Z length 8 length 24 length 30 length 36 length 42 length 48 length 5.74 MAX. * 4.93 MIN. * Example: () Z A set of 36 long flared side rails The rails are sold in sets and include mounting hardware L = length of flared side rails Requires Part #-0282-LLL-S shown on page 23 End Stops * End Stops are used in conjunction with the Flared Side Rail. Stops are adjustable down the length of the rail. End stops are available for the following width conveyors: 8, 0, 2, 8, and Example: () One end stop for a 0 wide conveyor equipped with flared side rails Shown with 2-axis adjustable guide AND Flared Side Rails (both sold separately) Part # LLL-S, #Z-004-LLL Designed to be compatible with and 2 cleats. End stops are equipped with a swing gate to help contain product Adjustable Hopper L L MAX. L MAX * The Adjustable Hopper is used in conjunction with the Flared Side Rail. The hopper is made from (2) end stops, which are adjustable down the length of the rail. Available for the following width conveyors: 8, 0 2 8, and 24. Please order a quantity of 2: Example: (2) Two end stops for a 0 wide conveyor equipped with flared side rails Shown with 2-axis adjustable guide AND Flared Side Rails (both sold separately) Part # LLL and #Z-004-LLL L = length of flared side rails Designed to be compatible with and 2 cleats. End stops are equipped with a swing gate to help contain product *Dimension reflects use of MAA belt. See pages QC Industries

19 Series Mounts Standard Mounts Universal Adjustable Side Mount pictured.22 DIA SLOT.34 DIA W +.09 MAX. W +.57 MIN. W +.7 Notes: Brackets are universal and can work on either side of the conveyor. Frame mounted brackets can only be used with high or lower cleats. Tee Slot mounted brackets can only be used with /2 high or lower cleats W * Frame Mounted version attaches directly to the conveyor frame. The frame has mounting holes every 3. The Tee Slot mounted version attaches to side rails, 2 side rails, the single tee slot and the multi tee slot. See page 22 & 24. Part No (Tee Slot)* Part No (Frame)* Part No (For use with multi-tier stand)* *Part No. denotes one bracket and necessary hardware Universal Raised Side Mount pictured.22 DIA..34 DIA SLOT W * W +.09 MAX. W +.57 MIN. W +.7 Notes: Brackets are universal and can work on either side of the conveyor. Universal raised side mounts work with all cleat heights. Frame Mounted version attaches directly to the conveyor frame. The frame has mounting holes every 3. The Tee Slot mounted version attaches to side rails, 2 side rails, the single tee slot and the multi tee slot. See page 22 & 24. Part No (Tee Slot)* Part No (Frame)* *Part No. denotes one bracket and necessary hardware /6 DIA. THRU HOLE Tee Mount W +.37 W * Attaches directly to the conveyor frame. The frame has mounting holes every 3. Part No * Notes: Brackets are universal and can work on either side of the conveyor. Can also be used at tail end of conveyor in conjunction with drive end mounts ( , , and ). Cannot be used with cleated belts. *Part No. denotes one bracket and necessary hardware /6-8 SET SCREW.7 DIA. THRU HOLE /32 DIA * Attaches directly to the underside of the conveyor frame. To order, use the part number below and fill in the nominal conveyor width in inches for the last two digits. Universal Bottom Mount W -.50 W -.75 W +.00 W +.50 Part No. -00-WW * Example: * Universal Bottom mount for a 4 wide conveyor Notes: Bottom mount can attach conveyor to a horizontal or vertical surface. Cannot be used with high adhesion or cleated belts. *Part No. denotes one bracket and necessary hardware 26 QC Industries *Dimension reflects use of MAA belt. See pages 20-2.

20 Standard Mounts Rod Clamp Mount Standard method for mounting to stands (fasteners included) Alternate method for mounting (fasteners not included).93 * * W +.00 W /8-6 CAP SCREW 5/6-8 CAP SCREW.63 This mount uses existing through holes on the conveyor that are located 6.06 from the tail end and 8.5 or 4.5 from the drive end, depending on which gearmotor selection is chosen. This will mount the conveyor to a flat surface. To order, use the part number below and fill in the nominal conveyor width in inches for the last two digits. Part No. -06-WW* Notes: Mounts cannot be used with Multi Tee or Single Tee Slotted Side Assembly. Mounts cannot be used with cleated belts. Example: * Rod Clamp Mount for 6 wider conveyor *Part No. denotes one bracket and necessary hardware W +.75 These mounts are primarily intended to provide precise alignment when mounted to a common flat surface, or for multiple conveyors utilizing a common drive shaft. See gang drive page TYPE LEFT HAND PART Drive End Mount 9/32 DIA. THRU W +.3 RIGHT HAND UNIVERSAL* *This mount replaces either right hand or left hand mount and allows mounting of a side drive. Notes: Mounts can only be used with a side or remote drive. Mounts cannot be used with cleated belts. Self-Aligning Bottom Clamp Mount 3.38 W BRACKET BY CUSTOMER 3/8 MAX. THICKNESS 2.70 MAX. Notes: Mounts can only be used with a side or remote drive. Mounts cannot be used with cleated belts. For applications where rapid alignment and rigid mounting of conveyors is required. These clamp mounts provide an economical and practical approach to rapid bolster mounting of gang driven conveyors. See gang drives pg. 4. TYPE LEFT HAND RIGHT HAND UNIVERSAL* PART BL -002-BR -07-BU *This mount replaces either right hand or left hand mount and allows mounting of a side drive. Self-Aligning Top Clamp Mount BRACKET BY CUSTOMER 3/8 MAX. THICKNESS 2.70 MAX W +.75 Notes: Mounts can only be used with a side or remote drive. Mounts cannot be used with cleated belts. For applications where rapid alignment and rigid mounting of conveyors is required. These clamp mounts are ideal for quick die change systems since the conveyors can be installed into the dies prior to being inserted into the press. See gang drives pg. 4. TYPE PART. LEFT HAND -002-TL RIGHT HAND -003-TR UNIVERSAL* -07-TU *This mount replaces either right hand or left hand mount and allows mounting of a side drive. *Dimension reflects use of MAA belt. See pages QC Industries

21 Series Stands Aluminum Exact Width Conveyor Stands WW H - H2 Stand Height Range: H- H2 (in inches) H - H2 H - H Stand Widths-WW (nominal conveyor width in inches) To order: Part No. TE: There is a 3 overall height adjustment with feet 082 H H2 WW ) Choose height range from left and enter into H & H2 sections. Remember that the conveyor profile adds.89 to the height. 2) Enter conveyor width into WW section. TE: No additional mounts are required. TE: Conveyors 4 wide and under will have the stand framework on the outside of the conveyor; and the minimum height range is 2-5 inches Example: (Part No. includes one stand) Steel Telescoping Conveyor Stands WW Stand Height Range: H- H2 (in inches) To order: Part No. 084 H H2 WW H - H2 H - H ) Choose height range from left and enter into H & H2 sections. Remember that the conveyor profile adds.89 to the height. 2) Enter top plate width into WW section. TE: Mounts are required to attach the conveyor to the stand. See mount pages 26 & 27 for details Top Plate Widths - WW (in inches) TE: 8 wide top plate will accept up to a 6 wide conveyor 4 wide top plate will accept up to a 2 wide conveyor 2 wide top plate will accept up to an 8 wide conveyor 27 wide top plate will accept up to a 24 wide conveyor Example: (Part No. includes one stand) WW Steel Stands with Stabilizers Stand Height Range: H- H2 (in inches) To order: Part No. 086 H H2 WW H- H2 H - H ) Choose height range from left and enter into H & H2 sections. Remember that the conveyor profile adds.89 to the height. 2) Enter top plate width into WW section. TE: Must use Rod Clamp Mount -006-WW (See page 27) to attach the conveyor to the stand. 48 Top Plate Widths - WW (in inches) TE: 8 wide top plate will accept up to a 6 wide conveyor 4 wide top plate will accept up to a 2 wide conveyor 2 wide top plate will accept up to an 8 wide conveyor 27 wide top plate will accept up to a 24 wide conveyor Max conveyor length is 60 Example: (Part No. includes one stand) WW Aluminum Multiple Conveyor Stands H- H2 H - H2 (in inches) Widths - WW* (in inches) Stand Widths - WW (in inches) To order: Part No. 087 H H2 WW ) Choose height range from left and enter into H & H2 sections. 2) Choose stand width (WW) and enter into WW section. TE: Conveyor will add.89 to top of belt height TE: Adjustable side mounts are required to attach the conveyors to the stand. Use Part No TE: *Stand width must be at least 4 greater than the width of the top tier conveyor and/or at least 8 greater than the width of the bottom tier conveyor TE: Bottom conveyors can be adjusted within 5 from the floor to within 8 of the top conveyor Example: (Part No. includes one stand) 28 QC Industries TE: All applications will require the end user to properly lag stands and ensure stability. Because every application and installation is different, the functionality and performance of the supports depend on the end user. QC Industries can aid in determining the supports your application requires.

22 Angle Brace To order: Part No For use with aluminum stands only. Angle brace can be used on a Series conveyor with a minimum top of belt height of 28. The angle brace is designed for conveyors 5 or longer. When used with casters, angle braces must be used on both stands. Part number denotes a set; order () per stand. Aluminum Cross Ties To order: Cross Ties - Available Lengths Inches LLL Part No LLL Enter length of cross ties needed into the LLL section above. A quantity of one includes (2) cross ties. Cross ties require customer to cut to length because of stand placement variations. Example: Steel Cross Ties To order: Cross Ties - Available Lengths Inches LLL Part No LLL Enter length of cross ties needed into the LLL section above. A quantity of one includes (2) cross ties. Cross ties require customer to cut to length because of stand placement variations. Example: Casters To order: Part No Swivel locking caster Order (2) per stand Casters can be added to either aluminum or steel stands. Swivel locking casters increase stand height by Casters should only be used with stands that are /3 as wide as they are tall. Swivel-In Tee Nut To order: Part No (Qty ) SET (Qty 4) The Swivel-In Tee Nut is ideal for mounting brackets to an aluminum stand, and allows quick mounting location changes. /4-20 thread in Tee-Nut is provided for attaching accessories TE: All applications will require the end user to properly lag stands and ensure stability. Because every application and installation is different, the functionality and performance of the supports depend on the end user. QC Industries can aid in determining the supports your application requires. QC Industries

23 Series Drives Drive Sizing Technical Data The equivalent load was determined in the conveyor technical data pages (pages 0, 4, and 8). To choose a gear motor combination that works best for the application, the next step is to convert that equivalent load into the torque required and size a drive based upon its use. The user must know the belt speed (in feet per minute) and service factor (determined below). The steps below guide the user through this process. These steps will utimately compare the torque required to move the load on the conveyor (Required Conveyor Drive Torque) and the torque the drive train is capable of producing (Supplied Drive Train Torque).. Calculate Required Conveyor Drive Torque (RCDT). Enter the equivalent load the drive must handle (from pages 0, 4, or 8). Divide this number by 6. The result equals the torque required for the application, or the required conveyor drive torque (RCDT). Enter RCDT on Line One. 2. Select Belt Speed & Enter Drive Train Torque (DTT) 2. Choose the belt speed from one of the following pages (33 or 37), and write down the drive train torque (DTT) for the selected speed. Please note that if you are choosing a top or bottom drive, you may use either a timing belt or a chain. For heavy duty drives (listed on page 37), the drive train torque is lower if using a timing belt. Enter the drive train torque on Line Two. 3. Select Service Class and Enter Service Factor (SF) Service Class (I or II) 3. Select a service class: Class I - Moderate loads with chain and sprocket or direct drive Class II - Moderate loads with timing belt and pulley Now select the service factor (SF) from Chart 30-A below based upon hours of operation per day and number of starts and stops per hour. Enter the result on Line Three. 4. Calculate Supplied Drive Train Torque (SDTT) 4. Divide the drive train torque (DTT) from #2 by the service factor (SF) from #3. This result equals the supplied drive train torque (SDTT). Enter the result on Line Four. 5. Determine Functionality Service Factor - Chart 30-A Compare Line 4 (the supplied drive train torque [SDTT]) to Line (the required conveyor drive torque [RCDT]). If the SDTT is equal to or greater than RCDT, then you have selected the proper drive. SDTT > RCDT. If not, then: A) Slow down the belt speed B) Choose a wider conveyor C) Consult factory Proceed to the next page for instructions on how to use the remaining drive pages. Service Factor Hours of Operation per Day Starts and Stops per Hour Class II Class I Example: Example: Equivalent load = 00 (per conveyor technical data page) 00 / 6 = 7 (RCDT) 30 FPM (From page 33 - standard duty top drive - fixed speed) 33 inch lbs. of torque (DTT) Class II (using timing belt on a top drive) 8 hours per day with no starts and stops (Service Factor is.5) 33 /.5 = 22 inch lbs. (SDTT) RCDT = 7 SDTT = (Gearmotor assembly will provide adequate torque) Equivalent load = 300 (per conveyor technical data page) 300 / 6 = 50.0 (RCDT) 50 FPM (From page 37 - heavy duty bottom drive - fixed speed) 87 inch lbs. of torque (DTT) Class II (using timing belt on a bottom drive) 6 hours per day with (0) starts and stops (Service Factor is.7) 87 /.7 = 5. inch lbs. (SDTT) RCDT = 50.0 SDTT = (Gearmotor assembly will provide adequate torque) 30 QC Industries

24 How to Use the Following Pages The following pages contain information on types and locations of available QC drives, presented in a clear, concise manner. Simply follow the two-page spread from left to right, and note the steps listed here. Mounting Arrangement Step Side Drive Remote Drive Top Drive Bottom Drive Drawings Series Standard Duty Drives A A 3.50 Front View.27.3 Front View A +.3 Front View *For A dimension, see Motor Information table at right *For A dimension, see Motor Information table at right *For A dimension, see Motor Information table at right A Front View *For A dimension, see Motor Information table at right O Top View 3.50 Top View Top View Top View Drive locations This mounting arrangement allows for the drive to be mounted on either side of the conveyor with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the tables to the right for Drive Location mounting package and 3 gearmotor ordering information. The box immediately left shows the possible drive positions. 3 This mounting arrangement allows for the drive to be mounted away from the conveyor and on either side of the conveyor, with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. This mounting arrangement allows for the drive to be mounted above the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Drive Location Reference the tables to the 3 right for mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 3 This mounting arrangement allows for the drive to be mounted below the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Step 3 Variable Speed Notes: Fixed Speed Sizing Information Torque (DTT) FPM Inch Lbs *Speeds Vary +/- 4 FPM Sizing Information Torque (DTT) FPM* inch Lbs *Speeds Vary +/- 4 FPM Fixed Speed Sizing Information FPM* Torque (DTT) Inch Lbs (belt) 88(chain) 76 (belt) 76 (chain) 8 50 (belt) 50 (chain) 22 4 (belt) 4 (chain) (belt) 33 (chain) (belt) 23 (chain) *Speeds Vary +/- 4 FPM Variable Speed Sizing Information FPM* Torque (DTT) Inch Lbs. 77 (belt) (chain) 40 (belt) (chain) 27 (belt) (chain) 22 (belt) (chain) (belt) 7 (chain) (belt) 2 (chain) *Speeds Vary +/- 4 FPM Sizing information Mounting Part Number Example: S3SE Mounting Mounting Position* or 3 or 3 or 3 or 3 or 3 or 3 *See Drive Location Chart Mounting Part Number Example: RSE Position* or 3 or 3 or 3 or 3 or 3 or 3 Mounting Part Number Example: SSE (Side Drive Mounting) Mounting Tor B Tor B Tor B Tor B Tor B Tor B *See Drive Location Chart Side or Remote Drive Conv. Sprkt Suffix SE- SE- SE- SE- SE- SE- Suffix SE- SE- SE- SE- SE- SE- Mounting Part Number Example: TSE-5M Position* Suffix Belt/Chain GMtr/Sprkt 5M or 3 SE- CH 0 5M or 3 SE- CH 0 5M or 3 SE- CH 0 5M or 3 SE- CH 0 5M or 3 SE- CH 0 5M or 3 SE- CH 0 *See Drive Location Chart Mounting Part Number Example: B3SE-5M Mounting Position* Suffix Belt/Chain GMtr/Sprkt Conv. Sprkt 5M Tor B or 3 SE- CH 0 0 5M Tor B or 3 SE- CH 0 0 5M Tor B or 3 SE- CH 0 0 5M Tor B or 3 SE- CH 0 0 5M Tor B or 3 SE- CH 0 0 5M Tor B or 3 SE- CH 0 0 *See Drive Location Chart Mounting Part Number Example: T3SE-5M (Top Drive Mounting Pkg w/timing Belt) Motor Part Number Example: Ratio Motor Part Number Example: V Top or Bottom Drive V V V V V V Ratio Motor Part No. Example: -20 (5v PH Gearmotor@4.5 FPM) Motor Part Number Example: -0 Ratio Motor Part Number Example: V-02 V- V- V- V- V- V- Ratio HP HP HP HP Standard Duty Electric Motor Information* AMP Motor Information Motor Part No. Example: V-0 (5v PH Gearmotor@6.0 TO 2.0 FPM) AMP Motor Information* AMP Motor Information* AMP *A *A from drawing A* *A from drawing *A *A from drawing *A *A from drawing Step 5 Series Step : Choose mounting arrangement & location Step 2: If top or bottom drive mounting arrangement, choose timing belt or chain drive Each speed has two rows. The top row is timing belt driven, and the bottom row is chain driven Step 3: Choose speed. Speeds can be reduced to /0 of their stated speed and provides 88 inch lbs. of torque by using a decimal reducer (Part No x) 2. Above gearmotors are not UL, CSA, or CE approved 3. Torque values are based upon start-up torque 32 QC Industries Speed Mounting See Drive Accessory Page for optional cords, switches, and plugs QC Industries Step 4 (p. 30) Step 4: Run drive sizing calculations listed on Page 30 Fixed Speed Sizing Information FPM* Variable Speed Torque (DTT) Inch Lbs. 88 (belt) 88(chain) 76 (belt) 76 (chain) 50 (belt) 50 (chain) 4 (belt) 4 (chain) 33 (belt) 33 (chain) 23 (belt) 23 (chain) *Speeds Vary +/- 4 FPM Mounting Part Number Example: TSE-5M Mounting Position* Suffix Belt/Chain GMtr/Sprkt Conv. Sprkt Tor B or 3 SE- 5M CH 0 0 Tor B or 3 SE- 5M CH 0 0 Tor B or 3 SE- 5M CH 0 0 Tor B or 3 SE- 5M CH 0 0 Tor B or 3 SE- 5M CH 0 0 Tor B or 3 SE- 5M CH 0 0 *See Drive Location Chart Step 2 Step 6 Motor Part Number Example: Ratio HP Motor Information* AMP *A *A from drawing Step 5: Choose voltage requirements Step 6: Put together two part numbers, drive mounting package and gearmotor, by following from left to right Torque Gear Reducer Horsepower Key Sprocket/Timing Pulley Combinations 3 V 5VAC PH 230/460 VAC 3 PH 90 VDC w/controller D 90 VDC w/o controller QC Industries

25 Series Standard Duty Drives Side Drive A * Front View Top View *For A dimension, see Motor Information table on next page.38 This mounting arrangement allows for the drive to be mounted on either side of the conveyor with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the tables to the right for Drive Location mounting package and 3 gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Remote Drive 3.08 A * DIA Front View Top View *For A dimension, see Motor Information table on next page This mounting arrangement allows for the drive to be mounted away from the conveyor and on either side of the conveyor, with the motor inline with the drive pulley. Reference the drawings to the left for dimensional Drive Location information. Reference the tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Top Drive A +.3 * ** Front View Top View *For A dimension, see Motor Information table on next page **Dimension reflects use of MAA belt. See pages 20-2 This mounting arrangement allows for the drive to be mounted above the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Drive Location Reference the tables to the 3 right for mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Bottom Drive A +.3 * Front View Top View *For A dimension, see Motor Information table on next page This mounting arrangement allows for the drive to be mounted below the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions QC Industries

26 Side or Remote Drive Standard Duty Electric Fixed Speed Sizing Information Mounting Part Number Example: S3SE Motor Part Number Example: -0 Motor Information* FPM* Torque (DTT) Inch Lbs Mounting Position* or 3 or 3 or 3 or 3 or 3 or 3 Suffix SE SE SE SE SE SE Ratio HP AMP *A *Speeds vary up to +/- 4 FPM *See Drive Location Chart *A from drawing Variable Speed Sizing Information Mounting Part Number Example: RSE Motor Part Number Example: V-08 Motor Information FPM* Torque (DTT) Inch Lbs Mounting Position* or 3 or 3 or 3 or 3 or 3 or 3 Suffix SE SE SE SE SE SE V- V- V- V- V- V- Ratio HP AMP A* *Speeds vary up to +/- 4 FPM Mounting Part Number Example: SSE (Side Drive Mounting) *See Drive Location Chart Motor Part No. Example: -20 (5v PH Gearmotor@4.5 FPM) *A from drawing Fixed Speed Sizing Information FPM* Torque (DTT) Inch Lbs *Speeds vary up to +/- 4 FPM Variable Speed Sizing Information FPM* Torque (DTT) Inch Lbs Notes: *Speeds vary up to +/- 4 FPM T or B T or B T or B T or B T or B T or B or 3 or 3 or 3 or 3 or 3 or 3 Mounting Part Number Example: TSE-5M Mounting Position* Suffix Belt/Chain GMtr/Sprkt Conv. Sprkt T or B or 3 SE- 5M CH 0 0 T or B or 3 SE- 5M CH 0 0 T or B or 3 SE- 5M CH 0 0 T or B or 3 SE- 5M CH 0 0 T or B or 3 SE- 5M CH 0 0 T or B or 3 SE- 5M CH 0 0 *See Drive Location Chart SE- SE- SE- SE- SE- SE- 5M CH 5M CH 5M CH 5M CH 5M CH 5M CH Top or Bottom Drive Mounting Part Number Example: B3SE-5M Mounting Position* Suffix Belt/Chain GMtr/Sprkt Conv. Sprkt *See Drive Location Chart Mounting Part Number Example: T3SE-5M (Top Drive Mounting Pkg w/timing Belt). Speeds can be reduced to /0 of their stated speed and provides 88 inch lbs. of torque by using a decimal reducer (Part No x) 2. Fixed speed motors are UL, cul, and CE approved; however, the variable speed motor is not 3. Torque values are based upon start-up torque Motor Part Number Example: -0 - Ratio Motor Part Number Example: V-02 V- Ratio 20 V- V- V- V- V HP HP Motor Part No. Example: V-0 (5v PH Gearmotor@6 TO 2 FPM) Motor Information* See Drive Accessory Page (Page 39) for standard duty cords, switches, and plugs AMP 0.7 QC Industries Motor Information* AMP *A *A from drawing *A *A from drawing 33

27 Series Pneumatic Drives Side Drive Front View Top View.38 This arrangement allows for the drive to be mounted on either side of the conveyor with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the tables to the right for mounting Drive Location package and gearmotor 3 ordering information. The box immediately left shows the possible drive positions. 3 Remote Drive Front View DIA Top View This arrangement allows for the drive to be mounted away from the conveyor and on either side of the conveyor, with the motor inline with the drive pulley. Reference the drawings to the left for dimensional Drive Location information. Reference the tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Top Drive * Front View *Dimension reflects use of MAA belt. See pages Top View.38 This arrangement allows for the drive to be mounted above the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. 3 Bottom Drive Front View Top View.38 This arrangement allows for the drive to be mounted below the conveyor belt, on either side of the conveyor, and with the motor inline with the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3 mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions QC Industries

28 Side or Remote Drive Pneumatic Sizing Information Mounting Part Number Motor Part Number Motor Information Example: S3SA Example: 30A-05 FPM* 4-44 Torque In. Lbs. See Chart Below Mounting Position* or 3 Suffix SA 30 A- Ratio 05 Vane 4 Max PSI 80 *Speeds vary up to +/- 4 FPM *See Drive Location Chart Mounting Part Number Example: SSA Top Drive Mounting Package with Chain Motor Part No. Example: 30A-05 4 Vane Reversible Pnuematic Motor 2.0 /4-8 NPT /4-8 NPT.88 HEX /4-8 NPT 3.2 /4-8 NPT Needle Valve Part Number: VLV The QC Industries Needle Valve acts as a throttling device, and is sized to incrementally control the speed of the Standard Duty Pneumatic Drive Typical Arrangement Filter, Regulator, Lubricator Part Number: FRL The QC Industries Filter, Regulator, and Lubricator has been sized to handle the flow and pressure requirements of the Standard Duty Pneumatic Drive Top or Bottom Drive Sizing Information FPM* 4-44 Torque In. Lbs. See Chart See Chart *Speeds vary up to +/- 4 FPM SA- Mounting Position* T or B or 3 Mounting Part Number Example: TSA-5M Suffix *See Drive Location Chart Belt/Chain 5M CH Mounting Part Number Example: T3SA-CH00 (Top Drive Mounting Pkg w/chain) GMtr. Sprkt 0 Conv Sprkt 0 30 Motor Part No. Example: 30A-05 A- Ratio 05 Motor Part No. Example: 30A-05 (4 Vane Reversible Pneumatic Motor) Motor Information Vane 4 Max PSI 80 Torque vs. Speed 00 Air Consumption vs. Speed PSI Torque Lbs. In PSI 40 PSI 20 PSI CFM (Free Air) Consumption PSI 60 PSI 40 PSI 20 PSI Notes: Speed - FPM (Output). Motor comes standard with muffler and in-line filter. 2. Speed should be controlled on the exhaust of air to preserve maximum torque output and a stable speed control. 3. Max speed is 6 80 PSI. 4. Both chain and timing belt drives have the same torque rating Speed - FPM (Output) QC Industries

29 Series Heavy Duty Drives Side Drive 4.4 B DIA. *.48 A * Front View *For A and B dimensions, see table at bottom of page B DIA.* 3.89 Top View.34 This arrangement allows for the drive to be mounted on either side of the conveyor with the motor perpendicular to the drive pulley. Reference the drawings to the left for dimensional information. Reference the tables to the right for Drive Location mounting package and 3-G -J gearmotor ordering information. The box immediately left shows the possible drive positions. -J 3-G Remote Drive 56 frame gear motors extend below gear box mounting plate and may require shimming B DIA. * A * Front View *For A and B dimensions, see table at bottom of page B DIA. * 2.88 Top View.44 DIA..50 DIA..2 This arrangement allows for the drive to be mounted away from the conveyor and on either side of the conveyor, with the motor perpendicular to the drive pulley. Reference the drawings to the left for Drive Location dimensional information. Reference the tables to the 3-J -G right for mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. -G 3-J Top Drive Bottom Drive Front View Front View B DIA. * B DIA. * 5.68 ** *For A and B dimensions, see table at bottom of page **Dimension reflects use of MAA belt. See pages *For A and B dimensions, see table at bottom of page B DIA.* Top View B DIA.* Top View A *.37 A *.37 This arrangement allows for the drive to be mounted above the conveyor belt, on either side of the conveyor, and with the motor perpendicular to the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3-G -J mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. -J 3-G This arrangement allows for the drive to be mounted below the conveyor belt, on either side of the conveyor, and with the motor perpendicular to the drive pulley. Reference the drawings to the left for dimensional information. Reference the Drive Location tables to the right for 3-J -G mounting package and gearmotor ordering information. The box immediately left shows the possible drive positions. -G 3-J The motor can be rotated in 90 O increments when attaching it to the gearbox. This allows the user flexibility when deciding where the motor capacitor and work box will be located. Motor Dimension Chart A B V V V V 503 (ID) QC Industries

30 Side Drive Fixed or Variable Speed Heavy Duty Electric Sizing Information Torque (DTT) FPM* Inch Lbs *Speeds vary up to +/- 4FPM Remote Drive Mounting Part Number Example: SJ0 Mounting Position* Suffix S J or 3G 0 S J or 3G 0 S J or 3G 0 S J or 3G 0 S J or 3G 0 S J or 3G 0 S J or 3G 0 *See Drive Location Chart Motor Part Number Example: 6-50J Ratio Gearbox Hand 6,3,V,D- 50 G or J 6,3,V,D- 40 G or J 6,3,V,D- 30 G or J,3,V,D- 20 G or J,3,V,D- 5 G or J 33,3,V,D- 0 G or J 50,3,V,D- G or J HP /6 /6 /6 /4 /4 /3 /2 Motor Information 5/230 Amp 3.6/.9 3.6/.9 3.6/.9 4.6/ / / / /460 Amp.3/0.6.3/0.6.3/0.6.3/0.6.3/0.6.5/0.7 2./2.0 DC Amp Face 42C 42C 42C 42C 42C 42C 56C Sizing Information FPM* Torque (DTT) Inch Lbs *Speeds vary up to +/- 4FPM Mounting Part Number Example: RG0 Mounting R R R R R R R Position* G or 3J G or 3J G or 3J G or 3J G or 3J G or 3J G or 3J Suffix *See Drive Location Chart Motor Part Number Example: -20G Ratio Gearbox Hand,3,V,D- 50 G or J,3,V,D- 40 G or J,3,V,D- 30 G or J,3,V,D- 20 G or J,3,V,D- 5 G or J,3,V,D- 0 G or J,3,V,D- G or J HP /6 /6 /6 /4 /4 /3 /2 Motor Information 5/230 Amp 3.6/.9 3.6/.9 3.6/.9 4.6/ / / / /460 Amp.3/0.6.3/0.6.3/0.6.3/0.6.3/0.6.5/0.7 2./2.0 DC Amp Face 42C 42C 42C 42C 42C 42C 56C Notes: Top or Bottom Drive Sizing Information FPM* Torque (DTT) Inch Lbs (belt) 20 (chain) 5 95 (belt) 28 (chain) (belt) 32 (chain) (belt) 30 (chain) (belt) 28 (chain (belt) 07 (chain) (belt) 07 (chain) (belt) 00 (chain) (belt) 67 (chain) (belt) 82 (chain) (belt) 68 (chain) (belt) 59 (chain) (belt) 5 (chain) 2 46 (belt) 46 (chain) *Speeds vary up to +/- 4FPM Mounting Part Number Example: S3J0 (Side Drive Mounting) T or B T or B J, G, 3J or 3G J, G, 3J or 3G J, G, 3J or 3G J, G, 3J or 3G J, G, 3J or 3G *See Drive Location chart Mounting Part Number Example: TJ0-5M40 (Top Drive Mounting Pkg w/timing Belt) 0-0- Motor Part No. Example: 3-5J (230/460v 3PH Gearmotor@40 FPM) Fixed or Variable Speed Mounting Part Number Motor Part No. Motor Information Example: B3J0-CH40 Example: 503-J Mounting Position* Suffix Belt/Chain Gearbox GMtr. Sprkt Conv Sprkt Ratio 5/ /460 DC Hand HP Amp Amp Amp Face 5M T or B J, G, 3J 0-6,3,V,D- 50 G or J or 3G CH / /.9.3/ C T or B J, G, 3J 0-5M or 3G CH 0 0 6,3,V,D- 40 G or J /6 3.6/.9.3/ C T or B J, G, 3J 5M 0- or 3G CH 0 0 6,3,V,D- 30 G or J /6 3.6/.9.3/ C T or B J, G, 3J 5M 0- or 3G CH 0 0,3,V,D- 20 G or J /4 4.6/2.6.3/ C T or B J, G, 3J 5M 0- or 3G CH 0 0,3,V,D- 5 G or J /4 4.6/2.6.3/ C T or B J, G, 3J 5M or 3G CH 2 0,3,V,D- 5 G or J /4 4.6/2.6.3/ C J, G, 3J 5M T or B or 3G 0- CH ,3,V,D- 0 G or J /3 2.5/2.8.5/ C T or B J, G, 3J 5M 30 or 3G 0- CH ,3,V,D- 0 G or J /3 2.5/2.8.5/ C T or B J, G, 3J 5M 40 or 3G 0- CH ,3,V,D- 0 G or J /3 2.5/2.8.5/ C T or B 0-5M CH ,3,V,D- G or J /2 7.4/3.7 2./ C T or B 0-5M 30 CH ,3,V,D- G or J /2 7.4/3.7 2./ C T or B 0-5M 34 CH ,3,V,D- G or J /2 7.4/3.7 2./ C. ALL above gearmotors are UL and CSA approved 2. Torque values are based upon running torque 3. Inverter duty variable frequency rated motors are available in /2 HP. Add an ID to the end of the motor part number for the 230/460VAC 3ph motors only. 4. Please note that all inverter duty motors have a non-removable foot mount on them 5M CH 5M CH ,3,V, D-,3,V,D- 3 V D 5 VAC PH 230/460 VAC 3 PH 90 VDC w/controller 90 VDC w/o controller G or J G or J /2 /2 Motor Part No. Example: 33-0J (5v PH Gearmotor@00 FPM) Key For optional AC controls, see p. 38 For optional AC controls, see p. 38 See controller on p. 38 Customer to supply controller 7.4/ /3.7 2./.0 2./.0 See Drive Accessories pages (p. 38 & 39) for optional controllers, motor starters, e-stops, cords, switches, and plugs 56C 56C QC Industries

31 Series Drive Accessories Motor Controls X.9 DIA Specifications/Features: 5 V AC, phase input, 90 V DC, /2 hp max output 230 V AC, phase input, 80 V DC, hp max output 30: speed range UL/ULc/CE NEMA Enclosure Forward/Reverse switch, Run/Brake switch Min/Max & Accel/Decel settings Standard DC Control Standard AC Control X.88 DIA It is the responsibility of the end user to properly wire this controller to the gearmotor X.8 DIA It is the responsibility of the end user to properly wire this controller to the gearmotor.34 Part Number: Standard NEMA DC Control * Wiring: cords & plugs *Includes 8 cord from control to AC plug and 8 cord from control to motor with male/female disconnects (wired). Specifications/Features: 5/230 V AC, /3 phase, 50/60 hz input, hp max output 0: speed range (when used with ID motor) UL/ULc/CE IP 20 Enclosure 3-digit LED display Forward/Reverse switch Run/Stop button, Accel/Decel buttons Carrier frequency selectable for quiet operation Part Number:* -04-5C-- 5V AC, phase input, IP C-2-230V AC, phase input, IP C V AC, 3 phase input, IP C V AC, 3 phase input, IP20 Washdown DC Control X 3/4 NPT It is the responsibility of the end user to properly wire this controller to the gearmotor Specifications/Features: 5 V AC, phase input, 90 V DC, hp max output 230 V AC, phase input, 80 V DC, 2 hp max output 30: speed range UL/ULc/CE NEMA 4X Enclosure Speed adjustment potentiometer Forward/Off/Reverse switch Min/Max & Accel/Decel settings Part Number: NEMA 4X DC Control This 4X washdown controller can be used in a wet or dusty environment. Specifications/Features: /230 V AC, phase, 50/60 hz input, 3 phase out, hp max output 0: speed range (when used with ID motor) UL/ULc NEMA 4X Enclosure Speed adjustment potentiometer Run/Stop switch Carrier frequency selectable for quiet operation Washdown AC Control 5.6 2X 3/4 NPT Part Number: NEMA 4X AC Control This 4X washdown controller can be used in a wet or dusty environment. 38 QC Industries It is the responsibility of the end user to properly wire this controller to the gearmotor

32 Motion Controls Motor Starter 5.3. DIA X /2 DIA. KCKOUT It is the responsibility of the end user to properly wire motor starter and e-stops.72 The Motor Starter is an overload protection that also provides a means of using a Remote E-Stop for safety. The starter is equipped with an undervoltage trip to protect against autostarting after the overload condition has been corrected. Also includes short circuit protection. Specifications/Features: 5 V AC, phase, 60 hz input, /2 hp max 230 V AC, 3 phase input, /2 hp max 460 V AC, 3 phase input, /2 hp max UL/CSA/CE Start/Stop buttons IP55 Enclosure Part Number: V AC, ph w/enclosure V AC, 3 ph w/enclosure V AC, 3 ph w/enclosure TURN TO RELEASE E-STOP The E-Stop accessory is mounted directly to the Motor Starter enclosure, providing a means of stopping the motor for safety. It can be padlocked for servicing, and contains a start button for restarting the motor after the pushbutton has been released. E-Stop Accessory 5.88 LOCK-OUT TAG-OUT It is the responsibility of the end user to properly wire motor starter and e-stops 2. Specifications/Features: Turn to release UL/CSA/CE E-Stop can be locked out/includes start button IP55 Rated Mounts directly to motor starter enclosure Part Number: ELECT-06 E-Stop Accessory for Motor Starter 2X.22 DIA The Remote E-Stop provides a means for locking out power to the motor for safety. It includes an IP65 enclosure and mounting bracket to allow the E-Stop to be mounted directly to the side of the conveyor frame Specifications/Features: Turn to release UL/CSA/CE IP65 Enclosure Part Number: ELECT-063-WBRKT E-Stop with enclosure Remote E-Stop It is the responsibility of the end user to properly wire motor starter and e-stops Includes mounting bracket to mount to conveyor frame Optional Cords, Plugs, & Switches Standard Duty Motor Options Heavy Duty Motor Options Part Number Description Fixed speed standard duty electric motor ON/OFF switch Fixed speed standard duty electric motor FORWARD/REVERSE switch Variable speed standard duty electric motor FORWARD/REVERSEswitch Fixed speed standard duty electric motor 8 cord and plug Part Number Description ON/OFF switch for PH heavy duty motor FORWARD/REVERSE switch for PH heavy duty motor 8 cord and plug for PH heavy duty motor 8 cord and plug for 90VDC motor - see controller for details QC Industries

33 Series Drive Accessories Double Universal Joint Part No (with bearing mount) Part No (without bearing mount) /8 KEYWAY.50 DIA. BORE.00 DIA MAX MAX X /32 HOLES /2 HEX CAUTION: Universal joint must be guarded. (Guarding is the responsibility of the end user.) The Double Universal Joint with bearing mount is used to couple a remote mounted motor with a conveyor drive shaft when there is not common shaft alignment. This assembly should be used with Drive End Mounts. Torque rating of universal joint at average angle of 5 O (.375 offset) and 350 rpm is inch lbs. Higher speeds and angle will reduce rating. Single Piece Flex Coupling A B Part Number A.5 in. diameter.5 in. diameter w/keyway B.5 in. diameter.5 in. hex *Torque Rating (Inch Lbs.) in. hex.5 in. hex 00 The Single Piece Flex Coupling is used to couple the remote mounted motor with the conveyor drive shaft. This coupling can also be used to couple between gang driven conveyors. *Value based on non-reversing applications with an angular offset of up to 5 O. Three Piece Flex Coupling.37 A.06 DIA DIA. /2 Hex Shaft Retaining Collar Part No B Part Number A.5 in. diameter w/keyway.6 in. diameter w/keyway.5 in. hex B.5 in. hex.5 in. hex.5 in. hex.5 in. diameter.5 in. diameter *Torque Rating (Inch Lbs.) *Value based on standard duty non-reversing applications with an angular offset of up to O. For heavy duty applications, divide torque by 2. The Three Piece Flex Coupling is used to couple the remote mounted motor with the conveyor drive shaft. This coupling can also be used to couple between gang driven conveyors. This coupling is used on all side drives. Use of the three piece flex coupling may require the /2 hex shaft retaining collar (Part No ) to prevent separation. Please consult factory. Drive Extension Shaft Drive Extension Shaft Support Block LENGTH X /32 HOLES Length 23 in. 35 in. 47 in. 59 in. 7 in. 83 in. 95 in. Part No /2 HEX 7/8 / 4 The Drive Extension Shaft can be used to gang drive multiple conveyors and/or for power take-off of remote drives. /2 Part No The Drive Extension Shaft Support Block is used to support lengths of shaft not supported by the drive coupling or a conveyor. /2 HEX 40 QC Industries

34 Typical Gang Drive Examples Bottom Drive withtwo Flex Couplings BG0-5M ESBH06-20-ASQ-MAA ESBH06-20-ADQ-MAA 6-50G Note : This typical gang drive application shows a bottom drive mounting arrangement. The couplings and drive extension shaft are shown on the opposing page. Please note that the conveyor to which the drive is attached has a D designator in the drive pulley portion of the part number. Side Drive with Through Shaft & Drive End Mounts 6-50J ESBH06-20-AHQ-MAA ESBH06-20-AHQ-MAA SJ0-HEX* *Non-Standard Part Number Note 2: This typical gang drive application shows a side drive mounting arrangement. The drive end mounts are shown on page 27, and drive extension shafts are shown on the opposing page. Please note that the conveyor to which the drive is nearest has an H designator in the drive pulley portion of the part number. Remote Drive with Flex Couplings Note 3: 6-50G RG ESBH06-20-ASQ-MAA ESBH06-20-ADQ-MAA This typical gang drive application shows a remote drive mounting arrangement. The couplings and drive extension shafts are shown on the opposing page. Please note that the conveyor to which the drive is nearest has a D designator in the drive pulley portion of the part number. How to Order The examples above help illustrate how to assemble part numbers for typical applications. The following shows the steps needed to correctly size a gang driven application: Step One: Add up the equivalent load for each conveyor you plan to gang drive. (Using pages 0, 4, and/or 8) Step Two: Size a drive based upon the total equivalent load from Step One Step Three: Determine which type of drive arrangement you need: side, remote, top, or bottom (Using page 32, 34, or 36) Step Four: Change the drive pulley digit of the conveyor part number to reflect which drive arrangement you are using. "D" for top or bottom drives and "H" for side or remote drives. Conveyor Part number example: ESBH ADQ-MAA - The "D" designates a dual output drive pulley to be used in a gang driven application using a top or bottom drive. The H designates a hex input pulley to be used in a gang driven application using a side or remote drive. Step Five: Determine the couplings and drive extension shaft needed, using the above diagrams as a guide. This information can be located on the opposing page Step Six: Ensure that the couplings can handle the torque requirements of the system. Reference page 40 Please consult the factory if you have questions. QC Industries

35 Series Automation Accessories Motion Detection Motion detection can be used in all applications where it is necessary to know the conveyor belt is running while other machines are operating. QC s motion detection system monitors your conveyor and provides a belt running signal to your machine conrtrol system or PLC PIN 2 WIRE RECEPTACLE CLAMPED IN FRAME 4 PIN 2WIRE CONNECTOR PROX SENSOR #0-32 F.H.C.S. Compact design Easy to retrofit into existing conveyors Magnetic proximity sensor allows for dependable operation in harsh operating environments Provides one pulse per tail pulley revolution.86 SPRING ALLOWS SENSOR MOVEMENT FOR QUICK BELT CHANGE BROWN (+) N/A 3 3 BLUE (-) 4 N/A PIN CONFIGURATION Electrical Specifications: Supply - 24 VDC Load Current ma, normally open Operating Temperature: - O to +70 O C (-3 O F to +58 O F) Motion Detection Retrofit Kit Installed Motion Detection Kit Conveyor Width Part No. Includes: Conveyor Width Part No. Includes: 2 in. 3 in. 4 in. 6 in. 8 in. 0 in. 2 in. 8 in. 24 in () 4-pin two wire male connector () 4-pin two wire female connector () Mounting block and spring assembly () Mounting hardware kit () Template for mounting hole transfer () Detectable tail assembly () Proximity sensor This kit can only be ordered for installation of motion detection into an existing conveyor in the field 2 in. 3 in. 4 in. 6 in. 8 in. 0 in. 2 in. 8 in. 24 in () 4-pin two wire male connector () 4-pin two wire female connector () Mounting block and spring assembly () Mounting hardware kit () Detectable tail assembly exchanged for the standard tail assembly () Proximity sensor () Installation of sensor kit into conveyor This kit can only be ordered with the purchase of a new conveyor Holes to be drilled in the field by the customer. Please denote a D in the tail pulley portion of conveyor part number Drip Pans /2-4 NPT Part No /2-4 NPT Features: Attaches to standard width and length conveyors, and is ideal for recapturing oils and lubricants. Designed for use with fixed side rails that use side rail clamps and the universal adjustable side mount only. Fill in the last five digits of the part number with the width and length of the conveyor it is to be used on. Part No WW-LLL 42 QC Industries

36 Automation Accessories 90 O Transfer Plate Inline Transfer Plate Conveyor Width 2 in. 3 in. 4 in. 6 in. 8 in. 0 in. 2 in. 8 in. 24 in. Part No Conveyor Width 2 in. 3 in. 4 in. 6 in. 8 in. 0 in. 2 in. 8 in. 24 in. Part No Notes: Transfer plates are not intended for use with high friction or cleated belts. Discharge conveyor must be pushing. Transfer plates are not intended for use with high friction or cleated belts. Customer to drill screw holes to mount plate. Pivot Mount Set Custom Rolling Nosebars The pivot mount attaches to the tail end of the conveyor and enables a pivot point from which other devices can lift the conveyor. Includes left and right hand mount. The rolling nosebar can be used with a conveyor running less than 60 fpm and carrying less than 5 lbs. per inch of conveyor width. Part No Please denote an SAF in the belt portion of the conveyor part number, and an R for the tail pulley part of the conveyor part number. Example: ESBH ASR-SAF Adjustable Stops Adjustable Diverters. Select an adjustable stop for sides, 2 sides, or single tee slot (See pages 22-24) 2. Using the chart below, fill in the part number using the nominal width of the conveyor for the last two digits of the part number Part No. Sides 2 Sides Single Tee Slot WW WW WW The adjustable diverter comes with a 5 piece of UHMW rail and (2) mounting assemblies that the user can utilize to help orient the product around a 90 O transfer. Example: End Stop for a 4 wide conveyor that has aluminum side rails with wear strip Part No QC Industries

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