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Metaphase Technologies UL-CLL2509

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2509 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL2409

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2409 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL2309

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2309 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL2209

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2209 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL2109

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2109 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL2009

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL2009 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL1909

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL1909 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL1809

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL1809 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL1709

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL1709 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued

Metaphase Technologies UL-CLL1609

Highlights Using proprietary optics, the Metaphase Technologies UL-CLL1609 collimated line light works similar to a traditional line light but can project its light at a lower divergence angle. This helps keep a tight, structured beam of light at a longer working distance many meters away while delivering high intensity. This works great for applications where … Continued