SILICONE KEYPAD PARTNER
Introducing our top-of-the-line Silicone Guard Entry Remote Control Keypad, meticulously designed to meet the demanding standards of entrance guard systems. Equipped with the latest technology, our silicone keypad ensures a user-friendly interface. Powered by an OEM membrane switch, it offers a range of conductive options including carbon pill, conductive oil, metal dome, and non-conductive elements for consistent and reliable performance.
Constructed entirely of silicone, this keypad offers a spectrum of customizable colors to blend seamlessly into your facility. Its dimensions are tailored for effortless integration. Customize your keyboard with precise screen printing and epoxy techniques for clear labeling. Enhance its appearance with logo options such as mint mark, silk screen and laser etching.
Finished with Matte Oil, PU, Epoxy, or Color Oil coatings, our keypads not only ensure durability, but also enhance the aesthetic appeal of your security facility. Each keypad is meticulously packaged in PE bags and cartons to ensure the highest quality delivery to meet your project requirements.
Specification
Conductive Solutions
Our Silicone Keypad introduces a game-changing innovation with Carbon Pill technology. This groundbreaking method incorporates tiny carbon-infused pillars that enhance electrical connectivity when pressure is applied. These pillars guarantee a responsive and reliable user experience, setting a new benchmark for performance.
Incorporating a conductive oil solution into our Silicone Keypad creates seamless electrical pathways. This unique technique utilizes conductive oil to bridge gaps, facilitating signal transmission when pressure is applied to the keypad surface.
Enhancing the conductivity of our Silicone Keypad, Metal Dome technology features small, dome-shaped metal components beneath the keypad surface. These elements collapse upon pressure, providing a tactile response and ensuring precise completion of the electrical circuit.
Certain areas of the Silicone Keypad strategically incorporate non-conductive materials to regulate electrical flow. This deliberate design prevents unintended electrical contact, guaranteeing interference-free and accurate input control.