CA2178232C

Lcd with bus lines overlapped by pixel electrodes and photo-imageable insulating layer therebetween

Abstract

This invention is related to an active matrix liquid crystal display (AMLCD) having a high pixel aperture ratio. The display has an increased pixel aperture ratio because the pixel electrodes are formed over the insulating layer so as to overlap portions of the array address lines. Both the manufacturability and capacitive cross-talk of the TFT-based device are improved due to the use of a photo-imageable insulating layer between the pixel electrodes and the address lines. Both the manufacturability and capacitive cross-talk of the TFT-based device are improved due to the use of a photo-imageable insulating layer between the pixel electrodes and the address lines. According to certain other embodiments, the insulating layer may be BCB (either photo-imageable or not) and/or have a dielectric constant less than about 3Ø

CA2178232C, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Expired 5 June 2016, 10.3 years ago.

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

27 claims: 5 independent, 22 dependent

  1. 1
    CA 02178232 2005-06-16 WE CLAIM:1. A high aperture liquid crystal display having a plurality of pixels_comprising: first and second substrates;a liquid crystal layer sandwiched between said first and second substrates;an array of thin film transistors (TFTs) disposed on said first substrate, said array of TFTs including a plurality of address lines connected to said TFTs;an array of substantially transparent pixel electrodes disposed on said first substrate, a plurality of the pixel electrodes in said array of pixel electrodes overlapping at least one of said address lines thereby increasing the pixel aperture ratio of the LCD;a photo-imageable insulating layer disposed on said first substrate between said address lines and said pixel electrodes at least in areas of overlap between said address lines and said pixel electrodes, and areas adjacent source electrodes of the TFTs;and said photo-imageable insulating layer having a first group of contact vias defined therein by photo-imaging, wherein said pixel electrodes are in electrical communication with corresponding TFT source electrodes through said contact vias of said first group defined in said insulating layer, wherein the dielectric constant and thickness of the photo-imageable insulating layer are such that a parasitic capacitance between one of said pixel electrodes and corresponding said address lines is no greater than 0.01 pF, when the pixel pitch of the display is 150 pm.
  2. 12
    A TFT array structure comprising:an array of TFTs on a substrate, said TFTs being connected to a corresponding array of pixel electrodes;row and column address lines on said substrate for addressing said TFTs;and photo-imageable insulating means disposed between (i) said pixel electrodes;and (ii) said address lines so as to reduce crosstalk with a parasitic capacitance between one of said pixel electrodes and corresponding said address lines that is less than 0.01 pF and permit said means to be photo-imaged.
  3. 13
    A liquid crystal display with a high pixel aperture ratio comprising:a liquid crystal layer sandwiched between first and second substrates;an array of thin film transistors, corresponding storage capacitors and corresponding pixel CA 02178232 2005-06-16 electrodes on said first substrate, each of said thin film transistors including a semiconductor layer, a gate electrode connected to a gate address line, a drain electrode connected to a drain address line, and a source electrode connected to one of said corresponding pixel electrodes, and wherein said pixel electrode connected to said source electrode overlaps said gate and drain address lines along longitudinal edges thereof and each of said storage capacitors includes a via or contact hole that electrically connects said pixel electrode with a conductive layer;and a substantially continuous insulating layer having a dielectric constant ε no greater than 3.0 disposed between said pixel electrode and said address lines.
  4. 19
    A liquid crystal display having a plurality of pixels comprising:a liquid crystal layer;a substantially transparent substrate adjacent said liquid crystal layer;an array of thin film transistors disposed on said substrate, said thin film transistors connected to address lines and acting as switching elements for energizing corresponding pixel. electrodes;a substantially transparent planarization layer disposed on said array of transistors, said planarization layer being located between (i) said pixel electrodes;and (ii) said address lines;and wherein said planarization layer includes Benzocyclobutene (BCB) and has a dielectric constant of less than 3.0 and a parasitic capacitance between one of said pixel electrodes and corresponding said address lines is less than 0.01 pF, when the pixel pitch of the display is 150 pm.
  5. 20
    A method of making an array of semiconductor based thin film transistors (TFTs), the method comprising the steps of:providing a first substantially transparent substrate;forming an array of TFTs and corresponding address lines on the first substrate;depositing an organic photo-imageable insulating layer over both the TFT array and corresponding address lines;photo-imaging the insulating layer in order to form a first array of vias or contact holes therein;and forming an array of electrode members on the first substrate over the insulating layer so that the electrode members in the array are in communication with the corresponding TFTs through the first array of vias or contact holes,, wherein the dielectric constant and thickness of the insulating layer are such that a parasitic capacitance between one of the array of electrode members and the corresponding address lines is no greater than 0.01 pF.