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Silicon micromachined tactile imagers for use in live-scan fingerprinting and credit card applications.

机译:硅微机械触觉成像仪,用于实时扫描指纹和信用卡应用。

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摘要

Credit cards are currently used extensively for financial transactions all across the globe. As an increasing number of financial transactions are implemented using credit cards and other card-access systems, it is important that mechanisms exist to improve their reliability and prevent the fraudulent use of these cards. Inkless electronic fingerprint readers can, in principle, be utilized to verify the identity of an individual using a credit card at point-of-sale terminals worldwide. This thesis describes the development of a low-cost silicon tactile imager for reading embossed characters on credit cards as an alternative when the magnetic strip on the card has failed. It also describes the development of high density silicon tactile imagers for live-scan fingerprinting. In addition to their use in financial transactions, electronic fingerprint scanners are very important to criminal justice agencies such as the FBI, as well as in electronic security systems and smart cards.; A high-compliance piezoresistive linear tactile array has been developed for reading embossed characters on credit cards. The sensor has 16 flexible silicon shanks and each shank is 6mm long, 100{dollar}mu{dollar}m wide and 10{dollar}mu{dollar}m thick. Polysilicon strain gauges incorporated on the shanks give a high-sensitivity analog readout as the tips of the shanks deflect over characters on the scanned surface. Fabrication is accomplished using a five-mask single-sided bulk-micromachined dissolved wafer process. The devices have a sensitivity of 10mV/mm at 5V and a minimum vertical resolution of l{dollar}mu{dollar}m.; High density planar capacitive tactile imagers have also been implemented for use in live-scan fingerprinting. Prototype 16 x 16-element arrays have been fabricated with both 300dpi and 500dpi spatial resolution. Each pixel is formed by the intersection of metal column lines on glass and {dollar}psp+{dollar} silicon row electrodes that are suspended by dual angular beams. Fabrication is achieved using a simple 7-mask dissolved-wafer process. The 300dpi and 500dpi arrays have force sensitivities of 150N/m and 90N/m, respectively; this can be easily adjusted by varying the beam thickness and is suitable for live-scan fingerprinting.
机译:信用卡目前在全球范围内广泛用于金融交易。随着使用信用卡和其他卡访问系统来进行越来越多的金融交易,重要的是要有各种机制来提高其可靠性并防止对这些卡的欺诈性使用。原则上,无墨电子指纹读取器可用于在全球销售点终端上使用信用卡验证个人身份。本文描述了一种低成本的硅触觉成像仪的开发,该成像仪可​​用于在信用卡上的磁条出现故障时读取信用卡上的浮雕字符。它还描述了用于实时扫描指纹识别的高密度硅触觉成像仪的开发。除了在金融交易中使用外,电子指纹扫描仪对于联邦调查局等刑事司法机构以及电子安全系统和智能卡也非常重要。已经开发出了一种用于读取信用卡上浮雕字符的高顺从压阻线性触觉阵列。该传感器具有16个柔性硅刀柄,每个刀柄长6mm,宽100 {μm} /μm,厚10 {μm} /μm。刀柄上的多晶硅应变计可提供高灵敏度的模拟读数,因为刀柄的尖端会在扫描表面的字符上方偏转。使用五掩膜单面批量微加工溶解晶圆工艺完成制造。该器件在5V电压下的灵敏度为10mV / mm,最小垂直分辨率为1 {μm。高密度平面电容式触觉成像器也已实现用于实时扫描指纹识别。已制造出具有300dpi和500dpi空间分辨率的原型16 x 16元素阵列。每个像素由玻璃上的金属列线与被双角梁悬挂的{dolps} psp + {dollar}硅行电极的交点形成。使用简单的7掩模溶解晶片工艺即可完成制造。 300dpi和500dpi阵列的力敏感度分别为150N / m和90N / m。可以通过改变光束厚度轻松地进行调整,适用于实时扫描指纹。

著录项

  • 作者

    De Souza, Richard Joseph.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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