CA2260041C

Radiation detection device and method of producing the same

Abstract

A radiation detection device comprising: a light receiving element array (6) formed by arranging two-dimensionally light receiving elements (2) on a substrate (1), arranging bonding pads (4) on the outer periphery of the substrate (1) and electrically connecting them to light receiving elements (2) of each row or column with signal lines (3), and disposing a protective passivation film (5) on the light receiving elements (2) and on the signal lines (3); a scintillator (7) of a CsI columnar crystal deposited on the light receiving surface of the light receiving element array (6); a thinly elongated resin frame (8) so disposed inside the bonding pads (4) as to encompass the outer periphery of the light receiving portion; and a protective film (12) formed by sandwiching an inorganic film (10) with Parillen organic films (9 and 11), and laminated inside the resin frame (8). The outer periphery of the protective film (12) is brought into close contact with the resin frame (8) by a covering resin (13).

CA2260041C, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 12 February 2018, 8.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

9 claims: 2 independent, 7 dependent

  1. 1
    CA 02260041 2001-01-17 27986-13 CLAIMS:1. A radiation detection device comprising: a light-receiving device array in which a plurality of light-receiving devices are one- or two-dimensionally arranged on a substrate to form a light-receiving portion, and a plurality of bonding pads electrically connected to said light - receiving devices in respective rows or columns of said light-receiving portion are disposed outside said lightreceiving portion;a scintillator layer, deposited on said lightreceiving devices of said light-receiving portion and provided with columnar crystals, for converting a radiation into visible light ;one or a plurality of resin frames made of a resin each formed like a closed frame separating an area formed with said scintillator layer on said light-receiving device array and an area in which said bonding pads are arranged from each other;and a radiation-transmittable, moisture-resistant protective film covering at least the top and side portions of said scintillator layer and the surface of said light-receiving array around said scintillator layer and reaching above said resin frame so as to expose at least said bonding pad portion, said protective film intrudes into gaps among the top part of said columnar crystals.
  2. 5
    A method of making a radiation detection device comprising steps of:(a) forming a 1ight-receiving portion by one- or twodimensionally arranging a plurality of light-receiving devices and a plurality of bonding pads disposed outside said lightreceiving portion and electrically connected to said lightreceiving devices in respective rows or columns of said lightreceiving portion on a substrate;(b) depositing a scintillator layer provided with columnar crystals for converting a radiation into visible light on said light-receiving devices of said light-receiving portion of a 1ight-receiving device array;(c) forming with a resin, on said light-receiving device array, one or a plurality of resin frames each formed like a closed frame separating said scintillator layer and a bonding pad portion from each other;(d) forming a radiation-transmittable, moisture resistant protective film enveloping said 1ight-receiving device array as a whole so as to cover the top and side portions of said scintillator, the surface of said lightreceiving device array around said scintillator, and the top and side part to said resin frames and intrude into gaps among the top part of said columnar crystals;CA 02260041 2001-01-17 27986-13 (e) cutting said moisture-resistant protective film at the top portions of said resin frame along a longitudinal direction of said resin frame;and (f) removing said moisture-resistant protective film on said bonding pad portion so as to expose said bonding pad portion.