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1.
The bias dependence of radiation-induced narrow-width channel effects(RINCEs) in 65-nm n-type metal-oxidesemiconductor field-effect transistors(NMOSFETs) is investigated. The threshold voltage of the narrow-width65 nm NMOSFET is negatively shifted by total ionizing dose irradiation, due to the RINCE. The experimental results show that the 65 nm narrow-channel NMOSFET has a larger threshold shift when the gate terminal is kept in the ground, which is contrary to the conclusion obtained in the old generation devices. Depending on the three-dimensional simulation, we conclude that electric field distribution alteration caused by shallow trench isolation scaling is responsible for the anomalous RINCE bias dependence in 65 nm technology.  相似文献   
2.
A nondestructive selection technique for predicting ionizing radiation effects of commercial metal-oxide-semiconductor (MOS) devices has been put forward. The basic principle and application details of this technique have been discussed. Practical application for the 54HC04 and 54HC08 circuits has shown that the predicted radiation-sensitive parameters such as threshold voltage, static power supply current and radiation failure total dose are consistent with the experimental results obtained only by measuring original electrical parameters. It is important and necessary to choose suitable information parameters. This novel technique can be used for initial radiation selection of some commercial MOS devices.  相似文献   
3.
ELDRS and dose-rate dependence of vertical NPN transistor   总被引:1,自引:0,他引:1  
The enhanced low-dose-rate sensitivity (ELDRS) and dose-rate dependence of vertical NPN transistors are investigated in this article. The results show that the vertical NPN transistors exhibit more degradation at low dose rate, and that this degradation is attributed to the increase on base current. The oxide trapped positive charge near the SiO2-Si interface and interface traps at the interface can contribute to the increase on base current and the two-stage hydrogen mechanism associated with space charge effect can well explain the experimental results.  相似文献   
4.
不同发射极面积npn晶体管高低剂量率辐射损伤特性   总被引:6,自引:0,他引:6       下载免费PDF全文
影响npn晶体管辐射损伤的因素有很多,如晶体管工艺、剂量率以及辐照偏置等.主要研究了三种发射极面积的国产npn晶体管在高低剂量率下的辐射损伤特性,分析了发射极尺寸对辐射损伤的影响.研究结果表明,国产npn晶体管具有低剂量率损伤增强效应,且发现当小电流注入下晶体管的辐射损伤会表现得愈加显著.比较三种发射极尺寸的晶体管辐照响应发现,发射极周长面积比P/A越大时晶体管归一化过剩基极电流ΔIB/IB0也越大.详细阐述了npn晶体管辐射损伤机制,从发射极尺寸和晶体管工作电压角度对npn晶体管的加固保证方法进行了探索. 关键词: 发射极面积 国产npn晶体管 剂量率 辐射损伤  相似文献   
5.
王义元  陆妩  任迪远  郭旗  余学峰  何承发  高博 《物理学报》2011,60(9):96104-096104
为了对双极线性稳压器在电离辐射环境下损伤变化特征及其剂量率效应进行研究,选择一组器件进行60Co γ高低剂量率的辐照和退火试验. 结果表明线性稳压器的输出电压、最大负载电流、线性调整率、压降电压等多个关键参数都有不同程度的蜕变. 且各器件在高低剂量率下的辐照响应略有不同,表现出不同的剂量率效应. 文中通过多种形式的测试结果分析,系统地讨论了各参数变化的原因及其内部各模块对稳压器功能的影响. 结合电离损伤退火特性,探讨了各剂量率效应形成的原因. 这不但对工程应用考核提供了参考,而且为设 关键词: 双极线性稳压器 总剂量效应 剂量率效应 辐射损伤  相似文献   
6.
为从工艺角度深入研究航空航天用互补金属氧化物半导体(CMOS)工艺混合信号集成电路总剂量辐射损伤机理, 选取国产CMOS 工艺制作的NMOS晶体管及寄生双极晶体管进行了60Coγ射线源下的总剂量试验研究. 发现: 1) CMOS工艺中固有的寄生效应导致NMOS晶体管截止区漏电流对总剂量敏感, 随总剂量累积而增 大; 2) 寄生双极晶体管总剂量损伤与常规双极晶体管不同, 表现为对总剂量不敏感, 分析认为两者辐射损伤的差异来源于制作工艺的不同; 3)寄生双极晶体管与NMOS晶体 管的总剂量损伤没有耦合效应; 4)基于上述研究成果, 初步分析CMOS工艺混合信号集成电路中数字模块及模拟模块辐射损伤机制, 认为MOS晶体管截止漏电流增大是导致数字模块功耗增大的主因, 而Bandgap电压基准源模块对总剂量不敏感源于寄生双极晶体管抗总剂量辐射的能力. 关键词: 总剂量效应 N沟道金属氧化物场效应晶体管 寄生双极晶体管 Bandgap基准电压源  相似文献   
7.
With the increasing use of nuclear energy, there is a need for a wider range of efficient dosimeters for radiation detection and assessment. There has been a tremendous growth in the development of radiation detectors and devices in the past few decades. In recent years, the development of new materials for radiation dosimetry has progressed significantly. Alkaline earth sulfides (AES) have been known for a long time as excellent and versatile phosphor materials. In the present investigation, a number of phosphor samples such as mono-, binary and ternary sulfides of alkaline earths (II^a-VI^b) have been prepared and their TL properties have been studied with respect to exposure (x-ray) response and fading. In this paper, some results on SrS:Eu, Sm and CaS:Eu, Sm phosphors are presented. A type of novel OSL dosimeter is described. The dosimeter takes advantage of the characteristics of charge trapping materials SrS:Eu, Sm and CaS:Eu, Sm that exhibit optically stimulated luminescence (OSL). The measuring range of the dosimeter is from 0.01 to 1000 Gy. The OSL dosimeters provide capability for remote monitoring radiation locations which are difficult to access and hazardous. This equipment is relatively simple, small in size and has low power consumption. The device is suitable for space radiation dose exploration. In addition, it also can be used in IC and other radiation occasions and has good prospects.  相似文献   
8.
用蒙特卡罗方法研究了金和硅交界时60Coγ射线入射产生的剂量梯度分布,并且通过mcnp5程序建立了一个三维的金硅界面结构模型,进而计算了剂量增强因子.计算结果表明:界面附近硅一侧具有明显的剂量梯度分布,界面剂量增强因子为1.76.  相似文献   
9.
The mechanisms occurring when the switched temperature technique is applied, as an accelerated enhanced low dose rate sensitivity(ELDRS) test technique, are investigated in terms of a specially designed gate-controlled lateral PNP transistor(GLPNP) that used to extract the interface traps(Nit) and oxide trapped charges(Not). Electrical characteristics in GLPNP transistors induced by ~(60)Co gamma irradiation are measured in situ as a function of total dose, showing that generation of Nit in the oxide is the primary cause of base current variations for the GLPNP. Based on the analysis of the variations of Nit and Not, with switching the temperature, the properties of accelerated protons release and suppressed protons loss play critical roles in determining the increased Nit formation leading to the base current degradation with dose accumulation. Simultaneously the hydrogen cracking mechanisms responsible for additional protons release are related to the neutralization of Not extending enhanced Nit buildup. In this study the switched temperature irradiation has been employed to conservatively estimate the ELDRS of GLPNP, which provides us with a new insight into the test technique for ELDRS.  相似文献   
10.
姜柯  陆妩  胡天乐  王信  郭旗  何承发  刘默涵  李小龙 《物理学报》2015,64(13):136103-136103
本文对不同偏置下的NPN输入双极运算放大器LM108分别在1.8 MeV和1 MeV两种电子能量下、不同束流电子辐照环境中的损伤特性及变化规律进行了研究, 分析了不同偏置状态下其辐照敏感参数在辐照后三种温度 (室温, 100 ℃, 125 ℃) 下随时间变化的关系, 讨论了引起电参数失效的机理, 并且分析了器件在室温和高温的退火效应以讨论引起器件电参数失效的机理. 结果表明, 1.8 MeV和1 MeV 电子对运算放大器LM108主要产生电离损伤, 相同束流下1.8 MeV电子造成的损伤比1 MeV 电子更大, 相同能量下0.32 Gy(Si)/s束流电子产生的损伤大于1.53 Gy(Si)/s束流电子. 对于相同能量和束流的电子辐照, 器件零偏时的损伤大于正偏时的损伤. 器件辐照后的退火行为都与温度有较大的依赖关系, 而这种关系与辐照感生的界面态密度增长直接相关.  相似文献   
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