110-XL-9,53 (110-XL-037) RICH | Timing Belt 110-XL-9,53 (110-XL-037) RICH
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  • 110-XL-9,53 (110-XL-037) RICH | Timing Belt 110-XL-9,53 (110-XL-037) RICH

110-XL-9,53 (110-XL-037) RICH | Timing Belt

RICH
110-XL-9,53 (110-XL-037)
€1.35
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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110-XL-9,53 RICH XL Timing Belt - L=279.4 mm, W=9.53 mm


Technical Specifications:

  • Brand: RICH
  • Type: Timing Belt
  • Model: 110-XL-9,53 (110-XL-037)
  • Profile: XL
  • Pitch (t): 5.08 mm
  • Pitch Length (Ld=Lp=Lw): 279.4 mm
  • Number of Teeth: 55
  • Width (W): 9.53 mm (Inferred from Model)
  • Belt Thickness (hs): 2.3 mm
  • Tooth Height (ht): 1.27 mm
  • Weight: 0.006 kg
  • Country of Origin: China

The 110-XL-9,53 RICH is a reliable XL Timing Belt produced by RICH, designed for applications requiring precise synchronous motion and dependable power transfer in a compact form factor. This belt features a pitch length of 279.4 mm with a standard XL pitch of 5.08 mm, giving it a total of 55 teeth. The 9.53 mm width provides excellent stability and torque capacity for light-duty drive systems.

Constructed from highly durable materials and internally reinforced with high-strength tensile cords, the 110-XL-9,53 RICH ensures minimal stretch and maintains dimensional accuracy throughout its service life. The XL trapezoidal tooth form guarantees positive, non-slip engagement with mating pulleys, making it an excellent choice for office machines, compact drive systems, and general machinery where reliable timing is crucial.


Key Performance Advantages:

  • Synchronous Drive: Provides positive, non-slip power transmission for accurate positioning.
  • XL Profile: Standard trapezoidal tooth form for compatibility across many light-duty applications.
  • 9.53 mm Width: Optimized for compact installations requiring high precision.
  • Dimensional Stability: Reinforced cords ensure consistent length and minimal elongation under load.

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