Gates® Power Transmission Polyflex® 7M690 Light Duty V-Belt, 7M Section, 9/32 in W Top, 27.17 in L Outside, 7/32 in THK, High Modulus Polyurethane
Developed by Gates and produced to patented manufacturing processes, these belts provide more load-carrying capacity at higher speeds to small multiple V-belt precision drives. This results in significant cost savings and improved design freedom.
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BrandGates® Power Transmission
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UPC072053302066
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Manufacturer Part Number7M690
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CountryUSA
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Temperature Range-65 to 180 deg F
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Thickness7/32 in
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MaterialHigh Modulus Polyurethane
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Top Width9/32 in
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Reinforced MaterialPolyester
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TypeLight Duty
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Minimum Pulley Diameter2.546 in
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Section Size7M
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Series8903
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Number of Ribs1
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Outside Length27.17 in
- High modulus polyurethane compound resists fatigue, wear, ozone and most environmental conditions
- Precise casting method eliminates layers and overlaps for smooth running and low vibration
- Ribbed backing provides greater lateral stability and relieves bending stress
- Unique 60 deg angle polyurethane construction transmits greater loads at higher speeds in less space than conventional V-belts
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Alternative Part Number89030690
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UNSPSC26111801
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Package DescriptionEACH
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Standards/ApprovalsRMA Standard
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Instruction/Installation Manual
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Specification Sheet
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Catalog
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Gates® Power Transmission Polyflex® 7M690 Light Duty V-Belt, 7M Section, 9/32 in W Top, 27.17 in L Outside, 7/32 in THK, High Modulus Polyurethane
Developed by Gates and produced to patented manufacturing processes, these belts provide more load-carrying capacity at higher speeds to small multiple V-belt precision drives. This results in significant cost savings and improved design freedom.
Gates® Power Transmission Polyflex® JB® 3/7M710JB Joined Band Light Duty V-Belt, 7M Section, 9/32 in W Top, 27.7 in L Outside, 7/32 in THK, High Modulus Polyurethane
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Gates® Power Transmission Polyflex® 7M730 Light Duty V-Belt, 7M Section, 9/32 in W Top, 28.74 in L Outside, 7/32 in THK, High Modulus Polyurethane
Developed by Gates and produced to patented manufacturing processes, these belts provide more load-carrying capacity at higher speeds to small multiple V-belt precision drives. This results in significant cost savings and improved design freedom.
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