The RFL150-10A is a light duty ratchet fastener manufactured by Essentra Components. It provides a secure and adjustable fastening solution for various applications. This fastener is designed for quick and easy installation and removal, making it ideal for situations where frequent adjustments or maintenance are required.
Applications:
- Cable Management: Securing and organizing cables in electronic equipment and wiring harnesses.
- Panel Attachment: Fastening access panels or covers in machinery and enclosures.
- Temporary Fixtures: Creating temporary or adjustable fixtures in manufacturing or assembly lines.
- Point of Sale Displays: Securing and adjusting display components.
- HVAC Systems: Securing ductwork and access panels.
Features:
- Ratchet Mechanism: Allows for incremental tightening and secure locking.
- Light Duty Design: Suitable for applications with moderate load requirements.
- Durable Material: Constructed from robust materials for long-lasting performance.
- Easy Installation: Quick and simple to install without special tools.
- Adjustable Length: Provides flexibility in accommodating various component sizes.
Benefits:
- Secure Fastening: The ratchet mechanism ensures a tight and reliable hold.
- Time Savings: Quick installation and adjustment reduce assembly time.
- Versatile Application: Suitable for a wide range of fastening needs.
- Cost-Effective: Provides a reliable fastening solution at a competitive price.
- Ease of Use: Simple design allows for easy handling and operation.
Additional Details:
The RFL150-10A is typically made from nylon or a similar polymer, offering a balance of strength and flexibility. The ratchet mechanism is designed for repeated use, ensuring long-term reliability. The dimensions and load-bearing capacity vary depending on the specific model, so it is essential to refer to the manufacturer's specifications for detailed information.
This fastener is commonly used in applications where vibration or movement is present, as the ratchet mechanism helps to prevent loosening over time.