Metaphase Technologies MB-CLL2007

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL2007 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 MB-CLL1907

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1907 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 MB-CLL1807

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1807 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 MB-CLL1707

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1707 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 MB-CLL1607

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1607 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 MB-CLL1507

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1507 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 MB-CLL1407

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1407 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 MB-CLL1307

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1307 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 MB-CLL1207

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1207 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 MB-CLL1107

Highlights Using proprietary optics, the Metaphase Technologies MB-CLL1107 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