Sunlight & Daylight Readable

TRU-Vu SRM-24J-MV

Highlights The SRM-24 Series Sunlight Readable HD LCD monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. These state-of-the-art monitors produce over 1,000 nits of brightness (vs. 150-200 nits for standard laptops). This results in amazingly bright, crystal-clear HD images, even with direct, bright sunlight on the face of … Continued

TRU-Vu SRM-21.5Z-36

Highlights The SRM-21.5 Series Sunlight Readable HD LCD monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. These state-of-the-art monitors produce over 1,000/1,500 nits of brightness (vs. 250-300 nits for standard monitors). This results in amazingly bright, crystal-clear HD images, even with direct, bright sunlight on the face of … Continued

TRU-Vu VMMOB-19B

Highlights The VMMOB-19 Series are Optically-Bonded LCD monitors, designed to dramatically improve viewabiity in bright dayight and other high ambient light conditions. The optical bonding process injects an optical-grade epoxy resin between the surface of the LCD panel and the outer protective glass, eliminating the air gap between the two. The outer glass surface has … Continued

TRU-Vu SRMHOB-19B-HM

Highlights The SRMOB-19B Optically Bonded Sunlight Readable LCD monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize intensely bright backlights to produce over 1,000 nits of brightness. This results in amazingly bright, crystal-clear images, even with direct, bright sunlight on the face of the screen. Anti-Glare glass … Continued

TRU-Vu VMOB-17G-36

Highlights The VMOB-17 Series are optically bonded LCD monitors, designed to dramatically improve viewability in bright daylight and other high ambient light conditions. The optical bonding process injects an optical-grade epoxy resin between the LCD panel and the outer protective glass, eliminating the air gap between the two. The outer glass surface has an Anti- … Continued

TRU-Vu VMOB-17B-36

Highlights The VMOB-17 Series are optically bonded LCD monitors, designed to dramatically improve viewability in bright daylight and other high ambient light conditions. The optical bonding process injects an optical-grade epoxy resin between the LCD panel and the outer protective glass, eliminating the air gap between the two. The outer glass surface has an Anti- … Continued

TRU-Vu VMOB-17B

Highlights The VMOB-17 Series are optically bonded LCD monitors, designed to dramatically improve viewability in bright daylight and other high ambient light conditions. The optical bonding process injects an optical-grade epoxy resin between the LCD panel and the outer protective glass, eliminating the air gap between the two. The outer glass surface has an Anti- … Continued

TRU-Vu VMOB-17C

Highlights The VMOB-17 Series are optically bonded LCD monitors, designed to dramatically improve viewability in bright daylight and other high ambient light conditions. The optical bonding process injects an optical-grade epoxy resin between the LCD panel and the outer protective glass, eliminating the air gap between the two. The outer glass surface has an Anti- … Continued

TRU-Vu VMOBX-15.6Z

Highlights The VMOBX-15.6 Series are Optically-Bonded LCD monitors, designed to dramatically improve view-ability in bright daylight and other high ambient light conditions. The Optical Bonding process injects an optical-grade epoxy bond between the surface of the LCD panel and the outer protective glass, eliminating the air gap between the two. This eliminates two reflective surfaces, … Continued

TRU-Vu VMOBX-15.6R

Highlights The VMOBX-15.6 Series are Optically-Bonded LCD monitors, designed to dramatically improve view-ability in bright daylight and other high ambient light conditions. The Optical Bonding process injects an optical-grade epoxy bond between the surface of the LCD panel and the outer protective glass, eliminating the air gap between the two. This eliminates two reflective surfaces, … Continued