Used ASM AD 809C #66879 for sale

ASM AD 809C
Manufacturer
ASM
Model
AD 809C
ID: 66879
Wafer Size: 6"
Vintage: 1996
Die attachers, 6" 1996 vintage.
ASM AD 809C is a precision die attacher, specially designed for the consistent attach of both flat die and advanced interconnect devices without interfering with delicate components. AD 809C's robust and highly reliable feed system allows it to be used in a wide range of applications, from large to small die attachments. The machine is also fully applicable for lead-free and non-lead applications, and can attach a variety of devices with varying densities. ASM AD 809C's presser-foot driven drive system utilizes linear bearing guides, providing precise and consistent positioning of the die attach heads. It eliminates the need for the multiple drives and gearing used in traditional die attachers, enabling higher accuracy and increased production speeds. Using its cutting-edge laser head-to-head alignment, the machine precisely positions each die, further boosting its accuracy and repeatability. In addition to its precise and consistent positioning, AD 809C also features user-friendly programming and adjustability. Its CNC-style touch screen with graphic navigation menus makes controlling trace and line calibrations simpler than ever. It also supports various programming languages such as Python, to ensure that users can easily create and adjust settings based on their production needs. ASM AD 809C is rated for a production speed of up to 180 attachment per minute and the feeding system is compatible with parts fed from either a waffle pack tray or bulk parts feeder. The machine also requires minimal maintenance, with its user-friendly touch screen providing access to the diagnostic and control functions and automated self-adjustments that minimize manual calibration. Overall, AD 809C is the perfect solution for a wide range of die attaching applications. Its advanced design ensures that it is both precise and reliable, while its user-friendly programming and adjustability further optimize its performance.
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