H Series Double Sided Heavy Industrial Timing Belt

H Series Double Sided Heavy Industrial Timing Belt – Specifications and Applications

The H Series Double Sided Heavy Industrial Timing Belt is engineered for robust, high-load synchronous power transmission in demanding industrial environments. Featuring a classical trapezoidal tooth profile on both sides, this heavy-duty timing belt provides simultaneous bi-directional drive in compact, multi-shaft applications. The H Series is well-known for its precision timing, durability, and high torque capacity.


Specifications:

  • Pitch: 1/2 inch (12.7 mm)

  • Tooth Profile: Trapezoidal (Classical H)

  • Construction: Molded neoprene body with fiberglass or aramid tension cords

  • Tooth Facing: Double-sided nylon fabric for improved wear resistance and reduced noise

  • Width Options: Available in widths from 0.5" up to 2.0" (12.7 mm to 50.8 mm)

  • Operating Temperature Range: -30°C to +100°C

  • Resistance Properties: Excellent resistance to oil, ozone, heat, and general wear

  • Tensile Strength: Designed to withstand high-torque loads with minimal elongation

With a dual-tooth profile, the H Series double sided timing belt can engage pulleys on both sides, enabling intricate, synchronized movements across multiple drive axes.


Applications:

The H Series Double Sided Timing Belt is used in a wide array of heavy-duty industrial applications, including:

  • Material handling systems

  • Automated manufacturing equipment

  • Packaging and bottling machinery

  • Large-scale printing presses

  • Agricultural machinery

  • Industrial robotics

  • Textile production lines

These belts offer consistent performance under high load, making them essential in operations where power must be transmitted precisely and simultaneously to multiple shafts.

Whether it's powering a large conveyor system or coordinating complex movements in industrial automation, the H Series Double Sided Timing Belt is a go-to solution for reliable, maintenance-friendly, and efficient power transmission in heavy-duty environments.