EP1045451A2

Semiconductor device and method for fabricating the same

Abstract

The invention primarily provides gate electrodes and gate wirings permitting large-sized screens for active matrix-type display devices, wherein, in order to achieve this object, the construction of the invention is a semiconductor device having, on the same substrate, a pixel TFT provided in a display region and a driver circuit TFT provided around the display region, wherein the gate electrodes of the pixel TFT and the driver circuit TFT are formed from a first conductive layer, the gate electrodes are in electrical contact through connectors with gate wirings formed from a second conductive layer, and the connectors are provided outside the channel-forming regions of the pixel TFT and the driver circuit TFT.

EP1045451A2, drawing sheet 1
Sheet 1 of 27

Term

Term ended

Projected expiry passed 11 April 2020, 6.5 years ago.

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

63 claims: 6 independent, 57 dependent

  1. 1
    A semiconductor device comprising a pixel TFT provided in a display region and a driver circuit TFT provided around said display region over a same substrate, wherein:said pixel TFT and said driver circuit TFT comprise gate electrodes formed from a first conductive layer, said gate electrodes are in electrical contact through connectors with gate wirings formed from a second conductive layer, and said connectors are provided outside channel-forming regions of said pixel TFT and said driver circuit TFT.
  2. 10
    A semiconductor device having a pixel TFT provided in a display region and a driver circuit TFT provided round said display region over a same substrate, said semiconductor device comprising:said pixel TFT comprising at least one lightly doped region disposed so as not to overlap said gate electrode of said pixel TFT;first n-channel TFT of said driver circuit comprising at least one lightly doped region disposed so as to overlap said gate electrode of said first n-channel TFT;second n-channel TFT of said driver circuit comprising at least one lightly doped region disposed so that at least a portion thereof overlaps said gate electrode of said second n-channel TFT;and gate electrodes of said pixel TFT and said driver circuit TFT formed from a first conductive layer, wherein said gate electrodes are in electrical contact with gate wirings formed from a second conductive layer through connectors provided outside channel-forming regions of said pixel TFT and said driver circuit TFT.
  3. 19
    A semiconductor device having a display region and a driver circuit provided around said display region over a same substrate, said semiconductor device comprising:said display region comprising a pixel TFT provided with a lightly doped region not overlapping a gate electrode of said pixel TFT;and said driver circuit comprising at least a first n-channel TFT provided with a whole lightly doped region overlapping a gate electrode of said first n-channel TFT and a second n-channel TFT provided with a portion of a lightly doped region overlapping a gate electrode of said second n-channel TFT, wherein at least said gate electrodes of said pixel TFTs and said first and second n-channel TFTs are formed from a first conductive layer, and gate wirings connected to said gate electrodes are formed from a second conductive layer, and wherein said gate electrodes and said gate wirings are electrically connected through connectors outside channel-forming regions of said pixel TFT and said driver circuit TFT.
  4. 28
    A method for fabricating a semiconductor device having a pixel TFT provided in a display region and a driver circuit TFT provided around said display region over a same substrate, said method comprising the steps of:forming gate electrodes of said pixel TFT and said driver circuit TFT from a first conductive layer;and forming gate wirings connected to said gate electrodes from a second conductive layer, wherein said gate electrodes and said gate wirings are connected through connectors provided outside channel-forming regions of said pixel TFT and said driver circuit TFT.
  5. 40
    A method for fabricating a semiconductor device having a pixel TFT provided in a display region and a driver circuit TFT provided around said display region over a same substrate, said method comprising the steps of:selectively introducing an n-type impurity element to semiconductor layers of first and second n-channel TFTs of said driver circuit at a concentration of 2 x 10 16 to 5 x 10 19 atoms/cm 3 ;forming gate electrodes of said pixel TFT and said driver circuit TFT from a first conductive layer;selectively introducing a p-type impurity element to a semiconductor layer of p-channel TFT of said driver circuit at a concentration of 3 × 10 20 to 3 × 10 21 atoms/cm 3 ;selectively introducing an n-type impurity element to said semiconductor layers of said first and said second n-channel TFT of said driver circuit and said semiconductor layer of said pixel TFT at a concentration of 1 × 10 20 to 1 × 10 21 atoms/cm 3 ;selectively introducing an n-type impurity element to the semiconductor layer of said pixel TFT to a concentration range of 1 × 10 16 to 5 × 10 18 atoms/cm 3 , using at least said gate electrode of said n-channel TFT as a mask;and forming gate wirings of said pixel TFT and said driver circuit TFT from a second conductive layer;wherein said gate electrodes and said gate wirings are connected through connectors provided outside channel-forming regions of said pixel TFT and said driver circuit TFT.
  6. 52
    A method for fabricating a semiconductor device having a pixel TFT provided in a display region and a driver circuit TFT provided around said display region over a same substrate, said method comprising the steps of:selectively introducing an n-type impurity element to semiconductor layers of first and second n-channel TFTs of said driver circuit and to a semiconductor layer of a storage capacitor in said display region at a concentration of 2 × 10 16 to 5 × 10 19 atoms/cm 3 ;forming gate electrodes of said pixel TFT and said driver circuit TFT from a first conductive layer;selectively introducing a p-type impurity element to a semiconductor layer of p-channel TFT of said driver circuit at a concentration of 3 × 10 20 to 3 × 10 21 atoms/cm 3 ;selectively introducing an n-type impurity element to said semiconductor layers of said first and second n-channel TFT of said driver circuit and to said semiconductor layer of said pixel TFT at a concentration of 1 × 10 20 to 1 × 10 21 atoms/cm 3 ;selectively introducing an n-type impurity element to said semiconductor layer of said pixel TFT at a concentration of 1 × 10 16 to 5 × 10 18 atoms/cm 3 , using at least said gate electrode of said n-channel TFT as a mask;and forming gate wirings of said pixel TFT and said driver circuit TFT from a second conductive layer, wherein said gate electrodes and said gate wirings are connected through connectors provided outside channel-forming regions of said pixel TFT and said driver circuit TFT.