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News from Multitest Elektronische Systeme GmbH


Multitest’s MT9510 x16 Proves Best Temperature Accuracy High Parallel Test Must Not Jeopardize Temperature Performance

Nov 06, 2012

 MT9510 x16

Multitest, a designer and manufacturer of final test handlers, contactors and load boards used by integrated device manufacturers (IDMs) and final test subcontractors worldwide, announces that its MT9510 x16 has proven its outstanding temperature accuracy of ±2.0°C at an Asian high-volume production site.

Multitest always applies the strictest measurement methods for indicating temperature accuracy, i.e. the figure stands for the dynamic temperature accuracy measured at the device under test (DUT) for the entire test time. In this case, the measurement was for cold and hot test of QFN 4x4 and QFN 5x5 packages during a test time of three minutes.

The MT9510 x16 ensures that even for 16-site test the packages are tested under the required temperature without compromise. The challenge is to maintain the pre-soaked temperature from the soaking area while the package is inserted and contacted. This only is possible with advanced temperature control at the contact site during test.

Based on its field proven experience with the MT9510 XP, Multitest combines advanced mechanical design features and leading thermal control processes to achieve this highly reliable temperature performance for high parallel test.

For more information, visit www.multitest.com/MT9510x16.


Multitest (headquartered in Rosenheim, Germany) is one of the world’s leading manufacturers of test equipment for semiconductors. Multitest markets test handlers, contactors and ATE printed circuit boards. Multitest has more than 30 years of experience in the semiconductor industry, providing solutions to the automotive, consumer and communication but also to the sensor market. Globally, more than 900 employees serve the company’s customers in offices and branches in North America, Singapore, Malaysia, the Philippines, Taiwan, China and Thailand.
www.multitest.com

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