Product Description
The E274HL-683 is a resistive touchscreen panel designed for industrial, commercial, and specialized applications that require a robust and dependable user interface. This touchscreen panel measures 249mm x 186.5mm overall, with an active touch area of 216mm x 164mm, offering high sensitivity for precise detection of user interaction. A 210mm Flat Flexible Cable (FFC) connects the panel to its controller circuitry, enabling easy integration into various control systems or devices.
The E274HL-683 utilizes 4-wire resistive touchscreen technology, known for its ability to detect touches made by a stylus, gloves, or other objects. This makes it ideal for environments where capacitive touchscreens may not be as effective, such as industrial settings where workers often wear gloves. Additionally, this technology is well-suited for extreme conditions that demand both accuracy and reliability.
Typically, the connector of this panel features 5 pins, which is standard for 4-wire resistive touchscreen interfaces. An extra pin may also be present, primarily for grounding or shielding, facilitating easy connections with different control boards or computing systems.
Internally, the panel likely contains layered sheets with transparent conductive material like Indium Tin Oxide (ITO), which come into contact when pressure is applied, registering a touch input. This design enhances sensitivity and precision. The silver-colored frame around the panel provides structural support while protecting the internal components, ensuring durability throughout its lifespan.
The E274HL-683 resistive touchscreen is widely used in applications such as industrial control panels, medical devices, kiosks, and point-of-sale systems. It is built to provide reliable operation even in harsh environments, including those exposed to dust, water splashes, or chemicals, making it one of the most dependable solutions for demanding applications.
In conclusion, the E274HL-683 resistive touchscreen panel is designed with durability and adaptability in mind for use in tough settings. Its precise measurements and solid structure make it easily incorporable into various devices or systems where accurate touch input is required and toughness cannot be compromised.