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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Radiation-tolerant, low-mass, high bandwidth, flexible printed circuit cables for particle physics experiments
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Radiation-tolerant, low-mass, high bandwidth, flexible printed circuit cables for particle physics experiments

机译:耐辐射,低质量,高带宽,柔性印刷电路电缆,用于粒子物理实验

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The design of meter long flexible printed circuit cables required for low-mass ultra-high speed signal transmission in the high radiation environment of the High Luminosity Large Hadron Collider is described. The design geometry is a differential embedded microstrip with 100 Ω nominal impedance. Minimal mass and maximal radiation hardness are pre-eminent considerations. Several dielectric materials are compared. To reduce mass, a cross hatched ground plane is applied. The long flexible printed circuit cables are characterized in bit error rate tests, attenuation versus frequency, mechanical response to temperature induced stress, and dimensional implications on radiation length. These tests are performed before and after irradiation with 1 MeV neutrons to 2 × 10~(16)/cm~2 and 800 MeV protons to 2 × 10~(16) 1-MeV neutron equivalent/cm~2. A 1.0 m Kapton cable with cross hatched ground plane, effective bandwidth of 4.976 gigabits per second, 0.0160% of a radiation length, and no detectable radiation-induced mechanical or electrical degradation is obtained.
机译:描述了在高光度大强子对撞机的高辐射环境下低质量超高速信号传输所需的米长柔性印刷电路电缆的设计。设计几何形状是标称阻抗为100的差分嵌入式微带。最小的质量和最大的辐射硬度是首要考虑因素。比较了几种介电材料。为了减少质量,应用了阴影线接地平面。长挠性印刷电路电缆的特征在于误码率测试,衰减与频率的关系,对温度引起的应力的机械响应以及对辐射长度的尺寸影响。这些测试是在辐照1 MeV中子至2×10〜(16)/ cm〜2和800 MeV质子辐照至2×10〜(16)1-MeV中子当量/ cm〜2之前和之后进行的。一条1.0 m的Kapton电缆带有交叉影线的接地平面,有效带宽为4.976吉比特/秒,辐射长度为0.0160%,并且没有可检测到的辐射诱发的机械或电性能下降。

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