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Characterization and optimization of a bipolar ESD-device by measurements and simulations

机译:通过测量和仿真来表征和优化双极性ESD器件

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The design of ESD (electro-static discharge) protection structures can be significantly shortened by using thermoelectrical device simulations. In many cases simulation results predict the performance of new designs enough accurate which makes it unnecessary to go through the whole manufacturing process of test chips. More important, however, they allow the designer to gain additional insight into a problem by examining device-internal parameters that are not obtainable through measurements, such as current densities, the electric field and the lattice t emperature. In this article we investigate and optimize a p-base type npn-transistor with a vertical and a lateral operation mode. Based on the TCAD tool chain, we develop a methodology to simulate the transient switching behavior, the avalanche breakdown and the snapback holding voltages of the device. To validate our design methodology we implemented the evaluated devices on a real test chip which has also been used to gain the needed data for the calibration of th esimulators. Thus we are able to compare simulation and measurements and found the simulated voltages to closely match values obtained in measurements. In addition we extracted a set of parameters for a compact circuit modle describing the device under various ESD stress types.
机译:通过使用热电设备模拟,可以大大缩短ESD(静电放电)保护结构的设计。在许多情况下,仿真结果可以预测新设计的性能足够准确,从而无需经历测试芯片的整个制造过程。然而,更重要的是,它们允许设计人员通过检查无法通过测量获得的器件内部参数(例如电流密度,电场和晶格温度)来进一步了解问题。在本文中,我们研究和优化了具有垂直和横向操作模式的p基型npn晶体管。基于TCAD工具链,我们开发了一种方法来模拟器件的瞬态开关行为,雪崩击穿和回弹保持电压。为了验证我们的设计方法,我们在真实的测试芯片上实施了评估后的器件,该芯片也已用于获得仿真器校准所需的数据。因此,我们能够比较仿真和测量结果,发现仿真电压与测量中获得的值非常匹配。此外,我们提取了一组用于紧凑型电路模型的参数,这些参数描述了在各种ESD应力类型下的器件。

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