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Neoprene is reinforced with fiberglass for quiet operation with high strength.
Urethane has excellent abrasion resistance, so these belts don’t create dust while they run.
Withstanding temperatures up to 400° F, silicone is the best choice for use in hot environments. Belts have Kevlar reinforcement, which has very high strength, low stretch, and excellent shock resistance.
Use a single belt to drive three or more pulleys in reversing and serpentine drive systems. These belts have teeth on both sides to transmit power from either side and rotate pulleys in opposite directions. Belts are neoprene with fiberglass reinforcement for quiet operation with high strength.
Belts combine neoprene with fiberglass reinforcement for quiet operation with high strength.
Abrasion-resistant urethane means these belts don’t create dust while they run.
Resisting temperatures up to 400° F, silicone can take the heat. Belts have Kevlar reinforcement, which has very high strength, low stretch, and excellent shock resistance.
Pulleys are anodized aluminum, which is more corrosion resistant than steel.
Quiet-running neoprene is reinforced with high-strength fiberglass for use in general purpose drive systems.
Urethane has excellent abrasion resistance, so these belts don’t create dust while they run. They have Kevlar reinforcement, which has very high strength, low stretch, and excellent shock resistance.
Anodized aluminum has good corrosion resistance.
Made from polycarbonate, these pulleys are useful in applications with weight constraints.
Used to drive small-scale linear motion applications, these belts are neoprene with fiberglass reinforcement for quiet operation with high strength.
Made of urethane, these belts have excellent abrasion resistance, so they don’t create dust while they run.
These quiet-running timing belts have a curved tooth shape that provides higher strength than trapezoidal teeth.
For higher speed or higher torque applications, these GT series timing belt pulleys provide a more precise fit than HTD pulleys. Use them where accuracy is critical, such as in storage and retrieval systems or in robotics.