Novel production method for large double-sided microstrip detectors of the CBM Silicon Tracking System at FAIR

P. Pfistner, M. Caselle, T. Blank, Marc Weber
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引用次数: 2

Abstract

The silicon sensors of the Silicon Tracking System of the Compressed Baryonic Matter experiment at FAIR, GSI are connected to the read-out electronics by low mass flexible microcables due to tight material budget restrictions. The cable length of up to 50 cm and its flexible nature make detector module assembly one of the most critical parts in STS. A novel low mass, low capacitance multilayer copper microcable has been designed and produced to facilitate detector assembly. Furthermore, a novel detector production method based on high-density gold stud bump bonding of silicon die on microcable has been developed. We present the Cu microcable design, capacitance simulations and measurements together with the individual steps performed in the STS detector assembly.
FAIR上CBM硅跟踪系统大型双面微带探测器的新生产方法
由于严格的材料预算限制,FAIR, GSI压缩重子物质实验硅跟踪系统的硅传感器通过低质量柔性微电缆连接到读出电子设备。长达50厘米的电缆长度和灵活的特性使探测器模块组件成为STS中最关键的部件之一。为了方便探测器的组装,设计并生产了一种新型的低质量、低电容多层铜微电缆。在此基础上,提出了一种基于硅模在微电缆上高密度金螺柱凸接的探测器制作方法。我们介绍了铜微电缆的设计、电容模拟和测量以及STS探测器组件中执行的各个步骤。
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