Specifications:
| Cover surface hardness |
≥6H |
| Ink adhesion |
≥4B |
| Impact resistance |
≥IK07 |
| Support Touch Points |
10 points Typ. |
| Controller Interface |
USB Typ. |
| Controller Supply Voltage |
USB 5V Typ.v |
| Touch Report Rate |
≥100Hz |
| Touch Response Time |
≤25ms |
| Touch Linearity |
±2mm |
| Transmittance |
>85% |
| Support Color |
16.7M colors (RGB 6-bits +Hi-FRC data) |
| Contrast Ratio |
800 Typ. |
How to Improve the Vibration Resistance Performance of Touch Modules in Practical Applications1.High-alumina-silicon tempered glass is selected as the cover lens, adopting a two-stage ion-exchange chemical strengthening process. A high-strength compressive stress layer is formed on the glass surface, delivering far superior impact resistance, collision resistance and bending strength compared with ordinary tempered glass. It can withstand gravel impact and conventional external knocking, greatly reducing the risk of glass breakage.
2.A PET explosion-proof protective film is laminated on the inner side of the glass. Even if the glass shatters under strong external force, the fragments will be firmly adhered by the explosion-proof film without splashing around, completely eliminating safety hazards such as pedestrians or visitors being scratched by broken glass. Meanwhile, basic touch functions can still be maintained for a short period to facilitate emergency equipment shutdown and data saving.
3.A metal anti-collision protective bezel is installed around the screen and protrudes above the glass surface. Gravel and external forces first strike the metal frame to buffer impact force and prevent direct collision and bumping on the glass. The aluminum alloy bezel is treated with hard anodizing to resist deformation under impact.