X-ray image sensor

5729021
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Inventors

Brauers, Andreas
Schiebel, Ulrich

Application #

712031

Filed

Sep-11-1996

Published

Mar-17-1998

Current US Class

250/370.09
250/580
257/E27.141
257/E31.086
257/E31.119
378/98.8

International Classes

G01T 001/24; G01T 001/29

Field of Search

250/370.09 250/580 378/98.8

Assignee

U.S. Philips Corporation (New York, NY)

Examiners

Glick; Edward J.

Attorney, Agent or Firm

Slobod; Jack D.

US Patent References

4233514   Solid state radiatio...
5187369   High sensitivity, hig...
5319206   Method and appar...
5381014   Large area X-ray i...
5396072   X-ray image detector
5498880   Image capture pan...
5563421   Apparatus and met...

Referenced by:

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Citation

Cite This Patent

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Abstract
An x-ray image sensor (1) with a lead-oxide photoconductor layer (6) positioned between collecting electrodes (3) and a common electrode (2) is provided with a passivation layer (7) which separates the lead-oxide from the metal of the common electrode to counteract degradation of the photoconductor layer due to chemical reactions between then metal of the common electrode and the lead-oxide. A bias layer (8) is provided between the common electrode (2) and the photoconductor layer (6) and a cladding layer (9) is provided between collecting electrodes (3) and the photoconductor layer (6) so as to avoid injection of charges into the photoconductor layer.
 
Claims
We claim:

1. An x-ray image sensor (1) comprising a common electrode (2), a plurality of x-ray sensitive sensor elements each comprising a collecting electrode (3), and a photoconductor layer (6) containing lead-oxide (PbO.sub.x) being disposed between the common electrode (2) and the collecting electrodes (3), characterized in that a passivation layer (7) is disposed between the photoconductor layer (6) and the common electrode (2) for impeding chemical reactions between the photoconductor layer (6) and the common electrode (2) while allowing charge carriers generated by absorption of x-rays in the photoconductor layer to pass to the common electrode (2).

2. An x-ray image sensor as claimed in claim 1, characterized in that the passivation layer is an electrically resistive layer.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The invention pertains to an x-ray image sensor including a common electrode a plurality of x-ray sensitive sensor elements, separate sensor elements comprising a collecting electrode and a photoconductor layer containing lead-oxide (PbO.sub.x) being disposed between the common electrode and the collecting electrodes. The invention also relates to an x-ray examination apparatus comprising an x-ray source for emitting an x-ray beam to irradiate an object for forming an x-ray image, an x-ray detector to derive an electronic image signal form the x-ray image, provided with such an x-ray image sensor.

2.Description of the Related Art

Such an x-ray image sensor is known from the European patent application EP 0 588 397 which corresponds to U.S. Pat. No. 5,396,072.

The known x-ray image sensor comprises a matrix of a plurality of x-ray sensitive elements arranged in columns and rows. Each row is provided with a read-out line coupled to a low-noise amplifier. The outputs of the low-noise amplifiers are coupled to a multiplex circuit. The photoconductor layer of the known x-ray image sensor consists of amorphous selenium (.alpha.-Se). Incident x-radiation is absorbed in the photoconductor layer and generates electron-hole pairs. Under the influence of a static electrical field which is applied across the photoconductor layer by way of the common electrode, the holes migrate to the common electrode and the electrons are collected at the collecting electrodes, or vice versa depending on the polarity of the static electric field, holes are collected at the collecting electrodes and electrons migrate to the common electrode. Each collecting electrode is part of a collecting capacitance and separate sensor elements comprise respective switching elements which couple the relevant collecting electrodes to a read-line. The switching elements, which remain opened during x-irradiation, are closed to read out the collected charges and the collected charges are supplied to the respective read-lines along which they flow to respective low-noise amplifiers which integrate the current in the respective read-lines and subsequently supply a charge signal to the multiplex circuit which converts the charge signals of respective read-lines into an electronic image signal.
 
  An X-ray image sensor with electronic, planar image converters covers a relatively large area without the occurrence of image gaps. A number of image converters...  The invention is related to an X-ray image sensory system, including an electrode layer, a conversion layer, a gap layer and a charge collection layer....