TRU-Vu SRMHETRWP-15C

Highlights The SRMHTWP-15 Series Sunlight Readable waterproof panel-mount touch screen monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 1,500 nits of brightness (vs. 250-300 nits for standard monitors). The 5-wire resistive touch screen can be activated by almost any object … Continued

TRU-Vu SRMHOBTRWP-15C

Highlights The SRMHTWP-15 Series Sunlight Readable waterproof panel-mount touch screen monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 1,500 nits of brightness (vs. 250-300 nits for standard monitors). The 5-wire resistive touch screen can be activated by almost any object … Continued

TRU-Vu Monitors SRMHTRW-15G

Highlights The TRU-Vu Monitors SRMHTRW-15G is a small waterproof touch screen monitor featuring at least 1500 nits brightness and a 4:3 aspect ratio. The 1500 nits brightness is over 3 to 5 times brighter than standard monitors making it perfect for use in direct bright sunlight and other high ambient-light conditions. The SRMHTRW-15G outdoor touch … Continued

TRU-Vu Monitors SRMHTRW-15V

Highlights The TRU-Vu Monitors SRMHTRW-15V is a small waterproof touch screen monitor featuring at least 1500 nits brightness and a 4:3 aspect ratio. The 1500 nits brightness is over 3 to 5 times brighter than standard monitors making it perfect for use in direct bright sunlight and other high ambient-light conditions. The SRMHTRW-15V outdoor touch screen … Continued

TRU-Vu SRMHTP-15R

Highlights The SRMHT-15 Series Sunlight Readable Touch Screen monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 1,500 nits of brightness (vs. 250-300 nits for standard monitors). This results in amazingly bright, crystal-clear images, even with direct, bright sunlight on the … Continued

TRU-Vu SRMHTR-15R-24

Highlights The SRMHT-15 Series Sunlight Readable Touch Screen monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 1,500 nits of brightness (vs. 250-300 nits for standard monitors). This results in amazingly bright, crystal-clear images, even with direct, bright sunlight on the … Continued

TRU-Vu SRMHTR-15R-36

Highlights The SRMHT-15 Series Sunlight Readable Touch Screen monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 1,500 nits of brightness (vs. 250-300 nits for standard monitors). This results in amazingly bright, crystal-clear images, even with direct, bright sunlight on the … Continued

TRU-Vu SRMHOB-15B-36

Highlights The SRMHOB-15 Series Sunlight Readable Optically Bonded LCD monitors are designed to operate in direct bright sunlight, or in other high ambient-light conditions. They utilize state-of-the-art LED backlights to produce over 2,200 nits of brightness. This results in amazingly bright, crystal-clear images, even with direct, bright sunlight on the face of the screen. The … Continued

TRU-Vu MMZBTP-15.6G-XG

Highlights The TRU-Vu MMZBTP-15.6G-X is a 15.6” Medical-Grade Projected Capacitive Touch Screen monitor. It conforms to UL 60601-1 Edition 3.1, and IEC 60601-1 4th Edition. The projected capacitive touch technology enables multi-touch; it can be activated via dual fingers that are exposed, or in a surgical glove. The screen is unaffected by dirt, grease or … Continued

TRU-Vu VMOB-13.3G

Highlights The VMOB13.3G 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 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, and … Continued