Used AEHR MBT208M #113491 for sale
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AEHR MBT208M is a highly advanced fully automated burn-in equipment designed to improve device testing and increase overall production efficiency. Its innovative design is capable of accommodating a variety of pin numbers and varying test conditions, making it ideal for a wide range of burn-in applications. The system features a multi-station architecture which is comprised of eight independently controllable and monitored burn-in channels. Each of these burn-in channels is designed to accept up to eight units in single-level or dual-level configurations, allowing users to effectively customize the unit to meet their specific testing needs. Additionally, the machine is equipped with a variety of advanced control modules that allow users to quickly set up and monitor test sequences. MBT208M is equipped with an intuitive graphical user interface (GUI) that makes it easy for users to navigate the tool and access all relevant information. It also features an embedded web server that allows users to easily view and manage burn-in results from any PC or mobile device. The asset is also equipped with a number of sophisticated thermal management components that can be adjusted to meet the needs of different tests. These components include advanced circulation pumps and a air-cooled recirculating jacket that are capable of maintaining the temperature of the burn-in chamber within a designated range. The model also features temperature sensors and thermocouples that are designed to assure precise temperature uniformity and accuracy. AEHR MBT208M additionally features a built-in fail-safe device that triggers a shutdown in the event of an over-temperature condition. This feature prevents PCB boards from becoming damaged during the testing process. Finally, MBT208M offers an impressive range of monitoring capabilities, allowing users to monitor and observe each channel's performance in real time. The equipment is designed to identify, detect, and report failures or warnings quickly and efficiently, allowing users to achieve increased throughput and shorter test times.
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