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KMID : 1137820080290050392
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2008 Volume.29 No. 5 p.392 ~ p.399
Optimal Design of a-Si TFT Array for Minimization of Data-line Capacitance and Its Implementation
Kim Chang-Won

Yoon Jeong-Key
Kim Sun-Yong
Kim Jong-Hyo
Abstract
Thin-film transistor (TFT) arrays for an x-ray detector require quite different design concept from that of the conventional active-matrix liquid crystal devices (AM-LCDs). In this paper anew design of TFT array which uses only SiNx for passivation layer is described to meet the detector performance and the product availability simultaneously. For the purpose of optimizing the design parameters of the TFT array, a Spice simulation was performed. As a result, some parameters, such as the TFT width, the data line capacitance, and the storage capacitance, were able to be fixed. The other parameters were decided within a permissible range of the TFT process especially the photolithography process and the wet etch process. Then we adapted the TFT array which had been produced by the proposed design to our prototype model (FDXD-1417 and evaluated it clinically by comparing with a commercial model (EPEX, Hologic, Beford, USA). The results say that our prototype model is slightly better than EPEX system in chest PA images. So we can prove the technical usefulness and the commercial values of the proposed TFT design.
KEYWORD
flat-panel, detector, TFT, clinical, evaluation
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