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The Yaskawa 155620-1 is designed as an input gear specifically for L-axis applications, boasting a gear ratio of 106:1. Constructed from case-hardened alloy steel, this component is built for durability and reliability, handling maximum input speeds of up to 3000 rpm with a maximum input torque rating of 8.34 Nm.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Input Gear (L-Axis) |
| Product Line | Accessories |
| Part Number | 155620-1 |
| Gear Ratio | 106 : 1 |
| Material | Case-hardened alloy steel |
| Max Input Speed | 3000 rpm |
| Max Input Torque | 8.34 Nm |
| Nominal Output Torque | 890 Nm |
| Backlash | ≤ 3 arcmin |
| Lubrication | Pre-filled Molywhite RE No. 00 grease |
| Mounting Interface | 14-tooth spline bore |
| Operating Temperature Range | -20 °C to +80 °C |
| Environmental Coating | Zinc-phosphate black finish |
| Rotational Inertia | 0.0002 kg·m² |
Part number 155620-1 by Yaskawa is characterized as an input gear intended for L-axis configurations. The gear leverages a 106:1 ratio, facilitating effective motion transfer across various applications. Made from case-hardened alloy steel, this unit ensures enhanced strength and longevity.
This input gear can accommodate a maximum input speed of 3000 revolutions per minute (rpm) and has an impressive maximum input torque of 8.34 Newton-meters (Nm). It achieves a nominal output torque of 890 Nm, which is significant for robust operational requirements. With a backlash measurement of less than or equal to 3 arcminutes, it demonstrates accuracy in performance, essential for tasks requiring precision.
Lubrication is handled by pre-filled Molywhite RE No. 00 grease, optimizing operational efficiency and reducing wear. The mounting interface features a 14-tooth spline bore, ensuring reliable integration into various setups. This gear operates effectively across a broad temperature range, from -20 °C to +80 °C, making it suitable for diverse environmental conditions.
It is finished with a zinc-phosphate black coating, providing a layer of protection against corrosive environments. The rotational inertia is quantified at 0.0002 kg·m², indicating its lightweight nature which contributes to responsive movement in dynamic applications.