Merlic has extensive competence in introducing new semiconductor products to vertical markets such as industrial, wireless communication, consumer and automotive markets.
“Joining Hyperstone during this phase of exceptional growth and transferring their success, know-how and technology to benefit new markets will be my main goal. Especially, focusing on industrial Ethernet solutions based on Hyperstone’s exceptional hyNet family of microcontrollers”, said Zoran Merlic, Vice President of Sales and Marketing at Hyperstone.
Dr. Matthias Steck, who was responsible for Sales & Marketing, took over the management of Hyperstone Asia-Pacific. “Being responsible for our Asia Pacific operations, and introducing the hyNet family to our customers in this region especially with respect to the fast pace of these markets will be a great assignment”, said Dr. Matthias Steck, Vice General Manager of Hyperstone Asia Pacific. “Furthermore, we will strengthen our cooperation with key suppliers and business partners to ensure best logistical support for our customers worldwide.”
Visit Hyperstone at:
SPS/IPC Drives 2005, Nuremberg, Germany, November 22nd to 24th, Hall 6 Stand 124 (Ethernet Powerlink Standardization Group).
About Hyperstone AGHyperstone, a fabless semiconductor and microprocessor design company, was founded in 1990 and is based in Konstanz, Germany. Together with subsidiaries in Taiwan, USA and with other worldwide partners, Hyperstone serves a global customer base. Hyperstone is a member of CML Microsystems Plc group. Traded at the London Stock Exchange, the group currently consists of eight subsidiaries and has over 250 employees. Hyperstone research and development is based in Germany and Taiwan. Industry-leading partners provide world-class wafer subcontracting, packaging, and testing services. Hyperstone’s success is based on the unique design of the unified RISC/DSP processor architecture. This core architecture provides both a fast RISC processor for data and control functions together with a powerful DSP unit for efficient algorithm execution. Hyperstone designs’ require less silicon, are more power efficient and require lower software complexity when compared to conventional dual-core designs.
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