PogoPin probes, widely used in high-frequency electronics, automotive power systems, and medical devices, rely on material selection to balance conductivity, durability, and environmental resistance. The core structure—comprising a needle head, spring

A laser equipment probe is a specialized sensing device integrated with laser technology to measure, align, or detect targets with ultra-high precision—used in laser-based systems such as laser cutting machines, laser engravers, laser scanners, and laser

An industrial control probe is a precision sensing device designed to monitor, measure, and transmit critical operational data in industrial control systems (ICS), enabling real-time oversight of parameters like temperature, pressure, flow rate, vibration

Pogopin probe installation requires precision alignment, controlled insertion force, and compatibility with application scenarios, with two primary approaches: manual installation for small-scale production and automated installation for mass manufacturin

Instrument probes are high-precision, application-specific tools designed to interface with scientific, industrial, or engineering instruments—such as oscilloscopes, signal analyzers, spectrum analyzers, or precision multimeters—to measure, capture, and t

Resistive test probes are specifically designed for testing resistive touch screens, which function based on pressure-induced changes in electrical resistance between two conductive layers (a top flexible layer and a bottom rigid layer). Unlike capacitive

Capacitive test probes are tailored for evaluating capacitive touch screens, which operate by detecting changes in electrical capacitance caused by the proximity or contact of a conductive object (typically a human finger). Unlike resistive screens, capac

Touch screen test probes are specialized tools designed to verify the functionality, accuracy, and reliability of touch screen interfaces across various devices, including smartphones, tablets, industrial control panels, and automotive infotainment system