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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.

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.

BrowningĀ® GearbeltĀ® 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

BrowningĀ® GearbeltĀ® 1056662 Type 16 Synchronous Flanged Pulley, 3/8 to 1-1/2 in Split Taper Bore, 5.222 in OD, 44 Grooves, 5.252 in Dia Pitch, 1-1/4 in W Face

BrowningĀ® GearbeltĀ® 1056985 Type 13 Synchronous Flanged Pulley, 3/4 to 2-11/16 in Split Taper Bore, 7.585 in OD, 48 Grooves, 7.639 in Dia Pitch, 1-1/4 in W Face

BrowningĀ® GearbeltĀ® 1057009 Type 13 Synchronous Timing Pulley, 3/4 to 2-11/16 in Split Taper Bore, 11.405 in OD, 72 Grooves, 11.459 in Dia Pitch, 1-1/4 in W Face

BrowningĀ® GearbeltĀ® 1057264 Type 13 Synchronous Timing Pulley, 3/4 to 2-11/16 in Split Taper Bore, 13.315 in OD, 84 Grooves, 13.369 in Dia Pitch, 1-3/4 in W Face

BrowningĀ® GearbeltĀ® 1057348 Type 6 Synchronous Flanged Pulley, 3/4 to 1-3/4 in Split Taper Bore, 4.721 in OD, 30 Grooves, 4.775 in Dia Pitch, 2.281 in W Face

BrowningĀ® GearbeltĀ® 1057355 Type 11 Synchronous Flanged Pulley, 3/4 to 2-11/16 in Split Taper Bore, 5.039 in OD, 32 Grooves, 5.093 in Dia Pitch, 2.281 in W Face

BrowningĀ® GearbeltĀ® 1057371 Type 11 Synchronous Flanged Pulley, 3/4 to 2-11/16 in Split Taper Bore, 6.312 in OD, 40 Grooves, 6.366 in Dia Pitch, 2.281 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.

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