Used DAGE 2400 #9092230 for sale
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DAGE 2400 is an advanced, automated wire bonder machine. It is a fully automated tool designed for the direct ribbon and ball application of small gauge wires, ranging from 30-200 micrometers. The machine is engineered to provide precise control over a wide variety of parameters and processes, with the ability to dynamically respond to different types of wires, temperatures, and other physical characteristics. The wirebonder is equipped with a pressure-controlled bonding head, an automated wire feeding equipment, and a vision alignment system. Using 2400, wires can be rapidly and accurately bonded to conductive components without the need for manual intervention. The machine incorporates an adjustable pressure regulator, to ensure that an appropriate amount of force is applied when bonding the wires. It also features an advanced vision alignment unit, which allows for precise placement and connection of the wires to the conductive pads. DAGE 2400's automated wire feeder maintains a constant wire length, ensuring high bonding accuracy and uniformity. 2400 is designed to be reliable and robust. Its annealing oven machine is self-monitoring and temperature-controlled, with the ability to store up to 25 user-defined time and temperature profiles. DAGE 2400 also features a hard vacuum bonding head, providing a better grip to the aluminium ribbon without compressing it, increasing the longevity of the wires. This feature is especially important for high-frequency applications, as well as micro-bonding of extremely small wires. The bonder has a easy-to-use touchscreen interface, with the ability to store up to 25 different jobs and settings, allowing the user to access them quickly. 2400 also allows real-time monitoring and diagnosis of the bonding process, with adjustable support and control levels for a variety of source materials. With its highly accurate computer-controlled placement accuracy, DAGE 2400 can easily bond all types of low gauge wires, providing superior performance for challenging applications.
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