
Today, China's Long March 10B carrier rocket's first-stage sea-based net recovery test achieved success. The recovery platform "Navigator" adopted an innovative net-based recovery method, achieving precise recovery of the rocket's first stage through fully automatic, unmanned control. This breakthrough not only demonstrates the progress of China's aerospace technology but also reflects the powerful capabilities of automated control, precise execution, and system coordination.
Not only must we "fly high," but we must also "catch steady";
Not only must we complete a single mission, but we must also consistently maintain precision, stability, and reliability in complex environments.
This pursuit of precision also exists in modern injection molding automation production. From mold opening and part extraction, in-mold labeling, and transfer, to visual inspection, stacking, and bagging, every环节 requires precise coordination to be completed in an extremely short time.
A production cycle of just a few seconds is backed by the seamless connection of dozens of actions; a single微小 deviation can affect product quality and overall line efficiency. Just as rocket recovery tests system coordination capabilities, intelligent manufacturing competes not only on speed but also on the ability to maintain long-term stability and precise execution.
As a provider of in-mold labeling and post-injection molding automation system solutions, SWITEK has always adhered to precision engineering as its foundation, building high-efficiency, high-stability intelligent manufacturing systems for global customers. From millisecond-level response to long-term stable operation, every precise part extraction and every precise labeling is a commitment to quality.
SWITEK believes that true intelligent manufacturing stems from every precise execution.


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