Nova Patents
EP0859413A2

Infrared focal plane array

Abstract

A two-dimensional infrared focal plane array comprising temperature detecting units in which the temperature detecting units are arranged for every pixel in a two-dimensional arrangement on a semiconductor substrate, the temperature detecting unit being formed integrally with a thermal type light detector and a means for detecting a change in characteristic of the thermal type light detector, the change being caused by an incident infrared ray, wherein a temperature detecting portion which is supported by support legs comprising a high thermal resistance material capable of controling a heat flow to the semiconductor substrate and has a temperature detecting element, and an infrared ray absorbing portion which is spliced by at least one splicing pillar with the temperature detecting element are provided for every pixel on the semiconductor substrate.

EP0859413A2, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Projected expiry passed 9 January 2018, 8.7 years ago.

  1. Priority
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  3. Published
  4. Projected expiry
  5. Today

10 claims: 2 independent, 8 dependent

  1. 1
    A two-dimensional infrared focal plane array comprising temperature detecting units in which said temperature detecting units are arranged for every pixel (1000 to 1008) in a two-dimensional arrangement on a semiconductor substrate (1 to 4), said temperature detecting unit being formed integrally with a thermal type light detector and a means for detecting a change in characteristic of said thermal type light detector, said change being caused by an incident infrared ray, wherein a temperature detecting portion (300 to 710) which is supported by support legs (21, 22, 721 and 722) comprising a high thermal resistance material capable of controling a heat flow to said semiconductor substrate and has a temperature detecting element, and an infrared ray absorbing portion which is spliced by at least one splicing pillar (140 to 147 and 441) with said temperature detecting element are provided for every said pixel on said semiconductor substrate.
  2. 2
    The two-dimensional infrared focal plane array of Claim 1, wherein said temperature detecting portion is provided above a cavity portion (200 to 202 and 790) which is formed in said semiconductor substrate.
  3. 3
    The two-dimensional infrared focal plane array of Claim 1, wherein said temperature detecting portion is provided above a readout circuit (400) on said semiconductor substrate.
  4. 4
    The two-dimensional infrared focal plane array of Claim 2 or Claim 3, wherein an infrared absorbing structure comprising a reflection film (150, 350, 355 and 356) and an interlayer insulating film is provided on at least one part of said infrared ray absorbing portion.
  5. 5
    The two-dimensional infrared focal plane array of Claim 2 or Claim 3, wherein an optical resonant structure comprising a reflection film (150, 350, 355 and 356), an interlayer insulating film and a metal infrared ray absorbing film (160, 360, 365, 366) is provided on at least one part of said infrared ray absorbing portion.
  6. 6
    The two-dimensional infrared focal plane array of Claim 2 or Claim 3, wherein at least one part of said splicing pillar is made of the same material as said infrared ray absorbing portion.
  7. 7
    The two-dimensional infrared focal plane array of Claim 2 or Claim 3, wherein an optical resonant structure comprising a reflection film, an interlayer insulating film and metal infrared ray absorbing film is provided on at least one part of said infrared ray absorbing portion, and said splicing pillar is formed in one body with said metal infrared ray absorbing film.
  8. 8
    The two-dimensional infrared focal plane array of Claim 2 or Claim 3, wherein an etching stop layer (190) is provided of a material resistant to an etchant which is employed when forming said cavity portion in said semiconductor substrate around said cavity portion.
  9. 9
    The two-dimensional infrared focal plane array of Claim 1, wherein a bolometer thin film (11 to 13 and 711) is provided as said temperature detecting element.
  10. 10
    A manufacturing method for a two-dimensional infrared focal plane arrray comprising:a) on a semiconductor substrate (1), a step of forming a signal readout circuit (400), then forming an insulating film (110), contact portions (121 and 122), further forming metal wirings (31 and 32) and a temperature detecting element (11), and covering with a protective insulating film (100) as a whole;b) a step of forming sacrifice layer (170) on said protective insulating film, removing an area for forming a splicing pillar layer by photolithography technique, said area being one of said sacrifice layer, then filling a material to be said splicing pillar layer into said removed area;c) on said sacrifice layer and said splicing pillar layer, a step of forming a thin film to be an infrared absorbing portion (130), then patterning for dividing said infrared ray absorbing portion for every pixel;d) a step of etching said sacrifice layer to remove;e) a step of etching said silicon substrate to form a cavity portion (200) in said silicon substrate.