Resistive Touch Screen(RTS)
The Panamich Solutions MicroTouch resistive touchscreens are based on proven five-wire resistive technology, the preferred solution for applications that demand reliability, input flexibility, and contamination resistance. The MicroTouch five-wire resistive touchscreens use a glass panel with a uniform resistive coating. A thick polyester coversheet is tightly suspended over the top of the glass, separated by small, transparent insulating dots. The screens work with standard EETI controller/chip solutions and drivers under a wide variety of operating systems, and are available in a set of standard products as well as customized designs.

Smooth Integrations
MicroTouch Zero-Bezel touchscreens are available with proprietary touch technology to deliver a touch response that is drift-free and accurate in high-use applications. The zero-bezel design eliminates the need for a traditional front-bezel, achieving a smooth, seamless flat surface for a clean, modern look. MicroTouch zero-bezel resistive touchscreens use a flexible printed circuit cable that virtually eliminates the cable attachment bump that is typical on most resistive touchscreens and enables a smooth, flat integration.
Quality is built in
Panamich is MicroTouch delivers both X and Y measurements made on a stable rear glass layer where many other resistive touchscreen designs use a flexing plastic coversheet to measure only one axis. As a result, MicroTouch resistive touchscreens provide a longer product life, designed to withstand more than 35 million touches.
High industry standards
MicroTouch touchscreens can be sealed against contamination to support NEMA 4/4x/12 and IP65 standards. Every screen meets pencil hardness 4H per ASTM D3363.
Product Overview
The Panamich is MicroTouch touchscreens are based on proven five-wire resistive technology, the preferred solution for applications that demand reliability, input flexibility, and contamination resistance. MicroTouch touchscreens are available in bezel and zero-bezel designs, with proprietary Panamich technology to deliver a touch response that is drift-free and accurate in high-use applications. Panamich is MicroTouch delivers both X and Y measurements made on a stable rear glass layer where many other resistive touchscreen designs use a flexing plastic coversheet to measure only one axis. As a result, MicroTouch resistive touchscreens provide a longer product life, designed to withstand more than 35 million touches. MicroTouch touchscreens can be sealed against contamination to support NEMA 4/4x/12 and IP65 standards.
The zero-bezel design eliminates the need for a traditional front-bezel, achieving a smooth, seamless flat surface for a clean, modern look. MicroTouch zero-bezel touchscreens use a flexible printed circuit cable that virtually eliminates the cable attachment bump that is typical on most resistive touchscreens and enables a smooth, flat integration. The screens work with standard EETI controller/chip solutions and drivers under a wide variety of operating systems, and are available in a set of standard products as well as customized designs.
Size:From 5.6” to 24”
Surface Hardness: 3H or higher
Surface:AG/AR Coating,Sun-Readable
Operating Temperature: -30℃ to 70℃
Storage Temperature: -40℃ to 80℃
Transmittance:>80%
Linearity:<1.5%
Operating Life:>3500 Million Times
Warranty:3 Years
General Specification
Type Five-Wire Resistive Touch Window
Input Mode Stylus or Finger
Cable Flexible Printed Circuit
Environmental Characteristics
Operation Temperature -30℃ to 70℃
Storage Temperature -40℃ to 80℃
Operation Humidity (Non Condensing) 20%RH - 90%RH
Storage Humidity (Non Condensing) 10%RH - 90%RH
Electrical Characteristics
Loop Resistance X:20~500Ω, Y:20~500Ω
Linearity X≤1.5%, Y≤1.5% (See Figure 10-2)
Chattering ≤10ms
Insulation ≥20MΩ/25V(DC)
Endurance No damage at DC50V/60sec.
Optical Characteristics
Transparency ≥78% (measured by BYK-Gardner Haze Meter at 550nm)
Anti-glare Finish: 8%±2%
Reliability
High Temperature /Humidity 60°C/90%RH, 120 hrs, allow panel stays in normal environment for 24 hrs
High Temperature 80°C /120 hrs allow panel stays in normal environment for 24 hrs
Low Temperature -40°C /120 hrs allow panel stays in normal environment for 24 hrs
Thermal Cycle -30°C ~70℃ [30 min./cycle] *20cycles allow panel to stay in normal environment for 24 hrs
Durability
Knock Test 35,000,000 Times
Line Test 100,000 Times