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RIBER receives a major order in Europe  for two MBE 6000 production systems, including associated services
Globenewswire· 2025-12-29 07:00
Core Insights - RIBER, a leader in molecular beam epitaxy (MBE) equipment for the semiconductor industry, has received a significant order for two MBE 6000 production systems from a European customer, with delivery scheduled for 2026 [2][6]. Group 1: Customer and Market Context - The customer is a European company with fully vertically integrated production facilities, focusing on photonic devices for rapidly growing markets such as AI data centers, LiDAR applications, and various medical, industrial, and scientific sectors [3]. - This order represents a strategic investment to enhance the customer's industrial production capacity, addressing the increasing demand for high-performance optical sources [3]. Group 2: Product and Technology Details - The MBE 6000 platform is designed for industrial-scale production of advanced III-V structures, featuring high throughput, robust process stability, and advanced automation capabilities [5]. - The system supports multi-wafer processing, allowing up to four 6-inch wafers per run, which leads to significant productivity gains and cost-effective manufacturing while ensuring high uniformity and reproducibility for complex multilayer heterostructures [5]. Group 3: Services and Support - The order includes a comprehensive range of services and productivity-enhancing solutions from RIBER, aimed at improving manufacturing efficiency and process integration [4]. - RIBER's technology is recognized for its atomic-level process control, high material purity, and excellent uniformity, which are essential for the performance and reliability of advanced optoelectronic devices [4].
RIBER receives an order in Asia for a research system
Globenewswire· 2025-09-17 06:00
Company Overview - RIBER is a global market leader in molecular beam epitaxy (MBE) equipment for the semiconductor industry, founded in 1964 [5] - The company designs and produces equipment for the semiconductor industry and provides scientific and technical support, optimizing performance and output levels [5] - RIBER's equipment is essential for the development of advanced semiconductors used in various applications, including information technologies, photonics, 5G telecommunications, and quantum computing [5] Recent Developments - RIBER has received an order for a Compact 21 DZ research system from Academia Sinica, a research center in Taiwan [2] - The new equipment will be used in several research projects focusing on III-V-based structures for quantum photonic applications [2] - The Compact 21 research system is noted for its versatility and comprehensive capabilities, meeting the needs of users in microelectronics and optoelectronics industries [3] - The system is scheduled for delivery in 2026 [3] Academia Sinica Overview - Founded in 1928, Academia Sinica is Taiwan's national academic institution, focusing on research excellence and policy advisories [4] - The institution comprises 24 institutes and 9 research centers across three divisions: Mathematics and Physical Sciences, Life Sciences, and Humanities and Social Sciences [4] - Academia Sinica employs over 8,000 research fellows and staff, achieving a balanced development in both natural and social sciences [4]
RIBER receives an order in Asia for an MBE 412 research system
Globenewswire· 2025-06-03 06:00
Core Insights - RIBER, a leader in Molecular Beam Epitaxy (MBE) equipment, has secured an order for an MBE 412 research system from a prominent Asian university institute, aimed at advancing research on laser sources for methane detection [2][3] Company Overview - Founded in 1964, RIBER specializes in designing and producing MBE equipment for the semiconductor industry, providing both scientific and technical support to optimize client equipment performance [4] - RIBER's equipment plays a crucial role in the development of advanced semiconductors used in various applications, including information technologies, photonics, 5G telecommunications, and quantum computing [4] Product Details - The MBE 412 system is noted for its compactness and versatility, allowing for high flexibility in growth protocols and compatibility with a variety of effusion cells, ensuring excellent deposition uniformity and stability [3] - The recent order reflects a growing interest in MBE technologies among research institutes for developing specialized lasers and innovative nanoscale materials [3]
RIBER secures a major order for an MBE 412 cluster system in Australia
Globenewswire· 2025-05-13 06:00
Core Viewpoint - RIBER, a leader in Molecular Beam Epitaxy (MBE) equipment, has secured a significant order for an MBE 412 cluster system from a prominent Australian research laboratory, enhancing its capabilities in infrared (IR) sensor technology [2][4]. Group 1: Order Details - The Australian National Fabrication Facility (ANFF WA Node) at the University of Western Australia has placed an order for a new RIBER MBE 412 system to advance research in IR technologies [3][4]. - The MBE 412 system is designed for next-generation infrared imaging devices, featuring full automation and compatibility with HgCdTe structures [5]. Group 2: System Specifications - The MBE 412 system supports wafers up to 7 x 7 cm and is equipped with RIBER's Crystal XE software for enhanced uniformity performance [5]. - All components of the system have been customized to meet the specific requirements of the laboratory, with comprehensive technical and process support provided [5]. Group 3: Installation and Historical Context - The installation of the system is scheduled for 2026 in a new laboratory adjacent to an existing MBE system at the University of Western Australia [6]. - RIBER's Chairwoman and CEO highlighted the long-standing partnership with the research facility, noting that this order comes 36 years after the acquisition of the first RIBER 32P system, which is still operational [7]. Group 4: Company Background - Founded in 1964, RIBER is the global market leader in MBE equipment, providing essential tools for the semiconductor industry and supporting advancements in various applications, including quantum computing and 5G telecommunications [8].