Metric-pitch / PU Timing Belt T5

Parameter Value
Pitch (P) 5.0 mm
Thickness (T) 2.2 mm
Tooth Height (T1) 1.2 mm
Width (W) 1.8 mm
Truly Endless Size 1440–20000 mm

Description

T5 PU Timing Belt for Precision Industrial Applications

Winproflex Truly endless timing belt has trapezoidal tooth shape and a pitch of 5mm.

Parameter Specification
Timing Belt Material Steel cord / Kevlar cord
Tolerance in Width ± 0.5 mm
Tolerance in Length ± 0.8 mm
Minimum Pulley Diameter 15.05 mm
Minimum Counter-Flex Diameter 30.00 mm

Metric Pitch Timing Belt for Accurate and Flowing Motion

Applications requiring accurate synchronization and seamless power transmission frequently use the T5 PU timing belt. It is appropriate for light to medium-duty activities where precision and efficiency are crucial because of its 5 mm pitch profile.

These belts, which are made of premium polyurethane, offer outstanding durability and reliable performance in a variety of industrial settings.

What is a T5 Metric Pitch Timing Belt?

A T5 timing belt has a tooth spacing of 5 mm and is a member of the metric pitch series. This design reduces slippage and increases system efficiency by ensuring precise engagement with pulleys.

Strength and stability are improved by the inclusion of reinforced tensile cords, enabling dependable performance even during prolonged operation.

Key Features and Benefits

Superior accuracy and seamless functioning
Strong resistance to abrasion and wear
Minimal noise while in use
Consistent performance with little elongation
resilient to environmental factors and oils
Long lifespan with little upkeep

T5 belts are a reliable choice for small and accurate systems because of their characteristics.

Applications of T5 PU Timing Belts

T5 PU timing belts are frequently utilized in:

Machines for labeling and packaging
Small-scale automation systems
Equipment for printing and handling paper
Conveyor systems for light
Textile and processing equipment

They are perfect for applications that need precise positioning and controlled motion because of their small pitch.