EP1553633A2

Infrared sensor device and manufacturing method thereof

Abstract

A supporting beam line (80) for supporting, afloat in a cavity on a semiconductor substrate, an infrared detection pixel (20) comprising an infrared absorption portion (23) for absorbing an incident infrared ray and converting it into heat and a thermoelectric conversion portion (21) for converting a temperature change caused by the heat generated in the infrared absorption portion (23) into an electric signal is formed by a damascene metal (70) on the same layer as the gate (66) of a damascene metal gate MOS transistor (61) to be used in a peripheral circuit. The supporting beam line (80) comprises a conductor line with U-shaped cross section (81) inside which a metal is filled.

EP1553633A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 28 March 2022, 4.5 years ago.

  1. Priority and filed
  2. Published
  3. Projected expiry
  4. Today

10 claims: 2 independent, 8 dependent

  1. 1
    An infrared sensor device comprising:a semiconductor substrate having a principal plane including a surface portion in which a hole is provided;an infrared detection pixel disposed in the hole, comprising an infrared absorption portion configured to absorb an infrared ray and convert it into heat and a thermoelectric conversion portion configured to convert the heat into an electric signal;a semiconductor peripheral circuit, disposed on the principal plane of the substrate, configured to read out the electric signal from the infrared detection pixel;and a supporting beam line with U-shaped cross section, extending across the infrared detection pixel and the surface portion having the hole, configured to support the infrared detection pixel, afloat with the hole and to electrically connect the infrared detection pixel to the semiconductor peripheral circuit.
  2. 2
    An infrared sensor device according to Claim 1, wherein the supporting beam line comprises an electric conductor.
  3. 3
    An infrared sensor device according to Claim 2, wherein the electric conductor is made of titanium nitride.
  4. 4
    An infrared sensor device according to either of Claims 2 or 3, wherein the supporting beam line further comprises an insulating layer.
  5. 5
    An infrared sensor device according to Claim 4, wherein the insulating layer is made of silicon nitride.
  6. 6
    An infrared sensor device according to Claim 1, wherein a metal member is inserted inside the supporting beam line.