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The 149701-1 from Yaskawa is a sophisticated timing belt designed for B-axis applications. This component features 1000 teeth over a length of 4500 mm, with a width of 60 mm. Constructed from reinforced rubber, it supports high linear speeds of up to 60 m/s.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Timing Belt |
| Product Line | Accessories |
| Part Number | 149701-1 |
| Number of Teeth | 1000 |
| Axis Type | B-Axis |
| Belt Width | 60 mm |
| Material | Reinforced Rubber |
| Max Linear Speed | 60 m/s |
| Application Axis | B-Axis |
| Belt Length | 4500 mm |
| Tensile Cord | Fiberglass |
| Static Conductivity | Yes |
| Usage Type | Synchronous Drive |
| Tooth Pitch | 4.5 mm |
| Operating Temp Range | -20 to 80°C |
| Oil Resistance | Moderate |
| Load Capacity | High |
The Yaskawa 149701-1 is a timing belt engineered for high-performance applications within the B-axis framework. Spanning a length of 4500 mm, this belt is designed with 1000 precisely spaced teeth, contributing to its reliable synchronous drive capabilities. With a width of 60 mm, the belt serves to manage considerable load demands while maintaining durability and performance. It is constructed from robust reinforced rubber, which enhances its overall strength and functionality.
The design includes a fiberglass tensile cord that provides additional reinforcement, allowing for a high load capacity. This timing belt can achieve a maximum linear speed of 60 m/s, making it suitable for fast-moving operations. Furthermore, the static conductivity feature is crucial for applications requiring effective electrostatic discharge management.
Operating within a broad temperature range of -20°C to 80°C, this timing belt also demonstrates moderate oil resistance, ensuring compatibility with various environment factors. The 4.5 mm tooth pitch is engineered to optimize contact and engagement during operation, ensuring smooth performance and reliability in synchronizing movements. Overall, the Yaskawa 149701-1 timing belt is an essential component for applications that demand precision and durability in mechanical systems.