Timing Pulleys
Browning® Gearbelt® 1056324 Type 16 Synchronous Flanged Pulley, 3/8 to 1-1/2 in Split Taper Bore, 3.551 in OD, 30 Grooves, 3.581 in Dia Pitch, 1 in W Face
Browning® Gearbelt® 1056324 Type 16 Synchronous Flanged Pulley, 3/8 to 1-1/2 in Split Taper Bore, 3.551 in OD, 30 Grooves, 3.581 in Dia Pitch, 1 in W Face
Browning® Gearbelt® 3514049 Type D Arm Synchronous Timing Pulley, 1/2 to 2-15/16 in QD® Bore, 13.315 in OD, 84 Grooves, 13.369 in Dia Pitch, 1-13/16 in W Face
Browning® Gearbelt® 3513470 Type B Arm Synchronous Timing Pulley, 1/2 to 2 in QD® Bore, 8.564 in OD, 72 Grooves, 8.594 in Dia Pitch, 1-1/4 in W Face
Martin timing pulleys are manufactured to extremely close specifications and are stocked in minimum plain bore, taper bushed, QD bushed styles depending on size and pitch. Synchronous sprockets are non-slip toothed drives that require no lubrication. These sprockets have a wide speed range, are very efficient and make less noise than chain drives. Teeth on the belts are molded to conform with and engage the teeth on a mating sprocket.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Browning® Gearbelt® 3513827 Type B Arm Synchronous Timing Pulley, 1/2 to 2-15/16 in QD® Bore, 9.495 in OD, 60 Grooves, 9.549 in Dia Pitch, 1-5/16 in W Face
Browning® Gearbelt® 3514023 Type D Arm Synchronous Timing Pulley, 1/2 to 2-15/16 in QD® Bore, 9.495 in OD, 60 Grooves, 9.549 in Dia Pitch, 1-13/16 in W Face
Browning® 1055011 Type 2A Synchronous Timing Pulley, 5/16 to 1 in, 3.036 in OD, 48 Grooves, 3.056 in Dia Pitch, 0.563 in W Face
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Browning® Gearbelt® 3514205 Type DF Solid Synchronous Flanged Pulley, 1/2 to 2-5/8 in QD® Bore, 6.949 in OD, 44 Grooves, 7.003 in Dia Pitch, 2-11/32 in W Face
Browning® Gearbelt® 3514007 Type BF Solid Synchronous Flanged Pulley, 1/2 to 2-5/8 in QD® Bore, 6.949 in OD, 44 Grooves, 7.003 in Dia Pitch, 1-13/16 in W Face
Browning® Gearbelt® 3513793 Type BF Solid Synchronous Flanged Pulley, 1/2 to 2-5/8 in QD® Bore, 6.949 in OD, 44 Grooves, 7.003 in Dia Pitch, 1-5/16 in W Face
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
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