10-T5-840 RICH | Timing Belt Polyurethane 10-T5-840 RICH
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  • 10-T5-840 RICH | Timing Belt Polyurethane 10-T5-840 RICH

10-T5-840 RICH | Timing Belt Polyurethane

RICH
10-T5-840
€6.55
No tax
Quantity
🏠 The Product Is In Our Warehouse And Will Arrive At Your Shipping Address Within 7–10 Business Days.

The minimum purchase order quantity for the product is 10.

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10-T5-840 RICH Polyurethane Timing Belt - T5 Profile - 840 mm Length


Technical Specifications:

  • Brand: RICH
  • Type: Timing Belt, Polyurethane
  • Model: 10-T5-840
  • Profile: T5 (Trapezoidal Tooth)
  • Pitch Length (Lp): 840 mm
  • Pitch (t): 5 mm
  • Nominal Width: 10 mm
  • Number of Teeth: 168
  • Belt Thickness (hs): 2.2 mm
  • Tooth Height (ht): 1.2 mm
  • Weight: 0.019 kg
  • Country of Origin: China

The 10-T5-840 RICH is a high-precision Polyurethane Timing Belt manufactured by RICH. This durable belt is specifically engineered for reliable synchronous power transmission and highly accurate linear motion, commonly utilized in automation systems, indexing tables, and machinery requiring excellent positional control.

This model features the standard T5 profile, characterized by a 5 mm pitch, and a nominal width of 10 mm. The belt has a total pitch length of 840 mm and 168 teeth. Constructed from high-quality polyurethane, it provides superior resistance to abrasion, chemicals, and wear, ensuring a longer service life and reliable, clean operation compared to conventional rubber belts. The light weight and precise tooth geometry of the 10-T5-840 RICH guarantee consistent, high-accuracy indexing and high dynamic performance.


Key Performance Advantages:

  • Polyurethane Material: Offers superior wear, abrasion, and chemical resistance for extended durability.
  • Precise Synchronization: T5 profile ensures highly accurate positioning in linear drive systems.
  • Compact Design: 10 mm width is suitable for drives in space-constrained applications.
  • High Efficiency: Low mass and precise construction deliver reliable power transmission with minimal inertia.

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