
( Brand: Ipg ), ( Manufacturer Part Number: YLR-200-AC-Y14 ), ( Part Type: Laser Module )
The IPG YLR-200-AC-Y14 Laser Module is an exceptional, high-powered diode laser solution designed for industrial applications. This laser module delivers a continuous-wave output of 200W at a wavelength of 1064nm, making it an ideal tool for high-energy, precise material processing.
The IPG YLR-200-AC-Y14 features a compact and lightweight design, measuring just 178mm x 91mm x 65mm, allowing for easy integration into a variety of systems. Its high-performance, air-cooled, thermally optimized construction ensures reliable and stable operation even under heavy use, providing excellent thermal management to prevent overheating.
The IPG YLR-200-AC-Y14 Laser Module is engineered with IPG's advanced laser technology, offering excellent beam quality, with a near-diffraction-limited M of
This laser module features a robust, fiber-coupled design, with a 700 m core diameter fiber for efficient heat dissipation and minimal loss of power during transmission. The IPG YLR-200-AC-Y14 Laser Module comes with a high-quality, 2m long, Ytterbium-doped fiber, providing ample length for seamless integration into various systems.
In addition to its high power and excellent beam quality, the IPG YLR-200-AC-Y14 Laser Module is easy to control, with a built-in analog current control interface for precise power adjustment. It is compatible with most industry-standard laser controllers, enabling seamless integration into existing systems or new designs.
The IPG YLR-200-AC-Y14 Laser Module is an outstanding choice for industrial applications requiring high-power, high-precision laser processing, such as cutting, welding, marking, and engraving. With its compact design, excellent thermal management, near-diffraction-limited beam quality, and easy integration, this laser module is a valuable asset for any industrial laser system.
1. High Power: With an output power of 200W, the IPG YLR-200-AC-Y14 is capable of handling demanding tasks efficiently.
2. Compact Design: The module's small form factor allows for easy integration into various systems, saving space and reducing weight.
3. High Beam Quality: The laser module provides excellent beam quality with a M value of
4. Reliability: IPG is a well-established company known for its high-quality laser products, ensuring the IPG YLR-200-AC-Y14 is a reliable choice.
Cons:1. Cost: As a high-power, high-quality laser module, the IPG YLR-200-AC-Y14 comes at a premium price, which may be prohibitive for some users.
2. Cooling System: The laser module requires active cooling, which may add complexity to system design and increase maintenance requirements.
3. Limited Wavelength: The IPG YLR-200-AC-Y14 operates at a wavelength of 1064nm, which might not be suitable for all applications that require other wavelengths.
Conclusion:The IPG YLR-200-AC-Y14 laser module offers impressive performance, particularly for tasks requiring high power and excellent beam quality. However, its premium price and cooling system requirements should be considered. If the advantages align with your specific application needs and budget, the IPG YLR-200-AC-Y14 could be an excellent choice. Alternatively, users with more modest power requirements or tighter budgets might find other laser modules more suitable. It is essential to carefully evaluate your application's specific needs before making a purchase decision.
Item comes as shown in pictures, if a part is not pictured, or mentioned the , then it included sale. LM Assets only sells new surplus items or used that were pulled from known working machinery. The cutting head is NOT included.
Limited Warranty: Buyer acknowledges that the equipment is being sold as and without any warranty of merchant-ability or fitness for a particular use. Buyer may inspect the equipment prior to purchase and placement of order inspection is deemed a waiver Buyers right. One 1 IPG YLR-200-AC-Y14 Laser Module model: Supply: 100-120/200-240 VAC Phase: 1 Hz: 50/60 Manufactured: Dec 2017, Note This sale is for the laser source only. Elapsed time might be higher than 2899 minutes pictured, due to test firing of the laser.