EP1564800A2

Semiconductor device and method for manufacturing the same

Abstract

A TFT formed on an insulating substrate source, drain and channel regions, a gate insulating film formed on at least the channel region and a gate electrode formed on the gate insulating film. Between the channel region and the drain region, a region having a higher resistivity is provided in order to reduce an Ioff current. A method for forming this structure comprises the steps of anodizing the gate electrode to form a porous anodic oxide film on the side of the gate electrode; removing a portion of the gate insulating using the porous anodic oxide film as a mask so that the gate insulating film extends beyond the gate electrode but does not completely cover the source and drain regions. Thereafter, an ion doping of one conductivity element is performed. The high resistivity region is defined under the gate insulating film.

EP1564800A2, drawing sheet 1
Sheet 1 of 19

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Term ended

Projected expiry passed 20 September 2014, 12 years ago.

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26 claims: 10 independent, 16 dependent

  1. 1
    A semiconductor device comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a channel region;a pair of high resistance regions in said semiconductor film with said channel region therebetween wherein said pair of high resistance regions contain an impurity of one conductivity type at a first concentration;a pair of impurity regions in said semiconductor film adjacent to said pair of high resistance regions wherein said pair of impurity regions contain an impurity of the same conductivity type at a second concentration higher than said first concentration;a gate electrode over said channel region with a gate insulating film therebetween wherein said gate electrode partly overlaps each of said pair of high resistance regions,    wherein each of said pair of impurity regions comprises a metal silicide.
  2. 4
    A semiconductor device comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a channel region;a pair of high resistance regions in said semiconductor film with said channel region therebetween wherein said pair of high resistance regions contain an impurity of one conductivity type at a first concentration;a pair of impurity regions in said semiconductor film adjacent to said pair of high resistance regions wherein said pair of impurity regions contain an impurity of the same conductivity type at a second concentration higher than said first concentration;a gate electrode over said channel region with a gate insulating film therebetween wherein said gate electrode partly overlaps each of said pair of high resistance regions,    wherein each of said pair of impurity regions comprises a metal silicide.
  3. 6
    A semiconductor device comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a channel region;a pair of high resistance regions in said semiconductor film with said channel region therebetween wherein said pair of high resistance regions contain an impurity of one conductivity type at a first concentration;a pair of impurity regions in said semiconductor film adjacent to said pair of high resistance regions wherein said pair of impurity regions contain an impurity of the same conductivity type at a second concentration higher than said first concentration;a gate insulating film formed on said channel region and said pair of high resistance regions;a gate electrode over said channel region with said gate insulating film therebetween wherein said gate electrode partly overlaps each of said pair of high resistance regions,    wherein each of said pair of impurity regions comprises a metal silicide, and said pair of impurity regions are not covered by said gate insulating film.
  4. 9
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film.
  5. 11
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;a pair of high resistance regions formed in said semiconductor film between said first channel region and said pair of N-type impurity regions wherein said pair of high resistance regions contains an impurity for giving one conductivity type at a lower concentration than said pair of N-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film.
  6. 13
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film,    wherein each of said pair of N-type impurity regions and said pair of P-type impurity regions comprises a metal silicide.
  7. 16
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;a pair of high resistance regions formed in said semiconductor film between said first channel region and said pair of N-type impurity regions wherein said pair of high resistance regions contains an impurity for giving one conductivity type at a lower concentration than said pair of N-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film,    wherein each of said pair of N-type impurity regions and said pair of P-type impurity regions comprises a metal silicide.
  8. 19
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film,    wherein each of said pair of N-type impurity regions and said pair of P-type impurity regions comprises a nickel silicide.
  9. 21
    A semiconductor device including at least a first N-channel thin film transistor and a second P-channel thin film transistor comprising:a substrate having an insulating surface;a semiconductor film comprising silicon over said substrate, said semiconductor film including a first channel region for the first N-channel thin film transistor and a second channel region for the second P-channel thin film transistor;a pair of N-type impurity regions formed in said semiconductor film with said first channel region therebetween;a pair of P-type impurity regions formed in said semiconductor film with said second channel region therebetween wherein one of said pair of N-type impurity regions is contiguous to one of said pair of P-type impurity regions;a pair of high resistance regions formed in said semiconductor film between said first channel region and said pair of N-type impurity regions wherein said pair of high resistance regions contains an impurity for giving one conductivity type at a lower concentration than said pair of N-type impurity regions;an insulating film formed over said semiconductor film, said insulating film having at least one opening;an electrode formed on said insulating film wherein said electrode is in contact with both said one of the pair of N-type impurity regions and said one of the pair of P-type impurity regions through said opening of the insulating film,    wherein each of said pair of N-type impurity regions and said pair of P-type impurity regions comprises a nickel silicide.
  10. 23
    A semiconductor device comprising:a semiconductor comprising silicon, said semiconductor including a channel region;a pair of high resistance regions in said semiconductor with said channel region therebetween wherein said pair of high resistance regions contain an impurity of one conductivity type at a first concentration;a pair of impurity regions in said semiconductor film adjacent to said pair of high resistance regions wherein said pair of impurity regions contain an impurity of the same conductivity type at a second concentration higher than said first concentration;a gate electrode over said channel region with a gate insulating film therebetween,    wherein each of said pair of impurity regions comprises a metal silicide and contain at least one of carbon, oxygen and nitrogen at a higher concentration than said channel region.