Array type X-ray detection apparatus

6891163
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Inventors

Kaneko, Katsuyuki
Tsutsui, Hiroshi
Nakahara, Shinichi
Shinkaji, Yasuhiko

Application #

148829

Filed

Dec-6-2000

Published

May-10-2005

Current US Class

250/370.09

International Classes

G01T 001//24; H01L 031//08

Field of Search

250/37009

Assignee

Matsushita Electric Industrial Co., Ltd. (Osaka, JP)

Examiners

Hannaher; Constantine

Attorney, Agent or Firm

RatnerPrestia

US Patent References

4689487   Radiographic ima...
4910158   Zener diode emulat...
5852296   X-ray imaging app...
6243441   Active matrix detect...

Referenced by:

View Backward References

Other References

Japanese language search report for PCT/JP00/08611 dated Apr. 3, 2001, Not a publication. English translation of Form PCT/ISA/210, Not a publication.

Citation

Cite This Patent

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Abstract
In order to prevent destruction of a read gate by excessive storage of charge without any addition or change to the manufacturing process, the array type X-ray detection apparatus using a direct conversion system, which directly converts irradiation X-rays to charge, provides each pixel cell with a sensor section for converting X-rays to an amount of charge according to the amount of X-rays, a charge collecting electrode for storing the charge generated, a read gate for transferring the stored charge to an external read amplifier and a MIS diode using a TFT. A clamp signal is applied to one end of the MIS diode. The read gate and MIS diode are formed in the same manufacturing process. Since the amount of charge stored in the charge collecting electrode is clamped to the amount of charge corresponding to the clamp signal voltage by the MIS diode, the read gate is not destroyed even with excessive X-ray irradiation. Furthermore, instead of the MIS diode, a cutoff voltage control circuit and a cutoff gate using a TFT connected to the cutoff voltage control circuit are provided. When the output of the charge storage capacitor exceeds a cutoff voltage, the cutoff gate interrupts the inflow of charge to the charge storage capacitor to suppress further increase of output, thus preventing the read gate from being destroyed.
 
Claims
1. An array type X-ray detection apparatus comprising:

a plurality of X-ray dose detection devices arranged in a two-dimensional array;

reading means of reading from said plurality of X-ray dose detection devices; and

potential controlling means of controlling a reference potential to protect said plurality of X-ray dose detection devices and/or said reading means,

wherein said plurality of X-ray dose detection devices comprises:

charge converting means of converting incident X-rays to charge;

charge storing means of storing said charge;

charge transferring means of transferring the charge stored in said charge storing means to said reading means; and



Description
TECHNICAL FIELD

The present invention relates to a planar type X-ray detection apparatus for use in a medical X-ray diagnostic apparatus, and more particularly, to an X-ray detection apparatus in which X-ray detectors are integrated in a two-dimensional array using a thin-film transistor (TFT) manufacturing technology.

BACKGROUND ART

For radiographic tests, a method of obtaining two-dimensional images called an "X-ray planar detector" whereby electrons generated by a two-dimensional array of X-ray sensors are electronically swept and measured using switching elements is conceived, instead of a conventional radiographic method using X-ray films. In this apparatus, storing electrons and switching elements make it possible to manufacture capacitors all together using thin-film transistor (TFT) manufacturing process used to manufacture liquid crystal displays, etc.

With respect to the method of obtaining an amount of charge corresponding to an amount of X-ray, the following two methods are conceived for the X-ray planar detector.
 
  An ionizing radiation detector arrangement includes scintillator crystals and respective photodiodes of elongate form and mountings to assemble these in...  Described herein is a method of radiographic imaging providing low access time prior to the start of a user-requested X-ray exposure, while at the same...