FI (list display)

  • G02F1/00
  • Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics [1, 2, 4, 2006.01] HB CC 2K102
  • G02F1/01
  • .for the control of the intensity, phase, polarisation or colour (G02F 1/29, G02F 1/35 take precedence) [7] HB CC 2K102
  • G02F1/01@A
  • Related to materials HB CC 2K102
  • G02F1/01@B
  • Related to drive HB CC 2K102
  • G02F1/01@C
  • Waveguide structure HB CC 2K102
  • G02F1/01@D
  • Spatial modulation HB CC 2K102
  • G02F1/01@E
  • .provided with photoconductive layer HB CC 2K102
  • G02F1/01@F
  • Structure in general HB CC 2K102
  • G02F1/01@Z
  • Others HB CC 2K102
  • G02F1/015
  • ..based on semiconductor elements having potential barriers, e.g. having a PN or PIN junction? (G02F 1/03 takes precedence) [2006.01] HB CC 2K102
  • G02F1/015,501
  • ...Related to materials HB CC 2K102
  • G02F1/015,502
  • ...Related to drive HB CC 2K102
  • G02F1/015,503
  • ...Spatial modulatin HB CC 2K102
  • G02F1/015,504
  • ....provided with photoconductive layer HB CC 2K102
  • G02F1/015,505
  • ...Structure in general HB CC 2K102
  • G02F1/017
  • ...Structures with periodic or quasi periodic potential variation, e.g. superlattices, quantum wells HB CC 2K102
  • G02F1/017,501
  • ....related to material HB CC 2K102
  • G02F1/017,502
  • ....related to drive HB CC 2K102
  • G02F1/017,503
  • ....Waveguide structure HB CC 2K102
  • G02F1/017,504
  • ....Spatial modulation HB CC 2K102
  • G02F1/017,505
  • .....provided with photoconductive layer HB CC 2K102
  • G02F1/017,506
  • ....Structure in general HB CC 2K102
  • G02F1/025
  • ...in an optical waveguide structure (G02F 1/017 takes precedence) [5,7] HB CC 2K102
  • G02F1/03
  • ..based on ceramics or electro-optical crystals, e.g. exhibiting Pockels or Kerr effect(G02F1/061 takes precedence) HB CC 2K102
  • G02F1/03,501
  • ...Related to materials HB CC 2K102
  • G02F1/03,502
  • ...Related to drive HB CC 2K102
  • G02F1/03,503
  • ...Spatial modulation HB CC 2K102
  • G02F1/03,504
  • ....provided with photoconductive layer HB CC 2K102
  • G02F1/03,505
  • ...Structure in general HB CC 2K102
  • G02F1/035
  • ...in an optical waveguide structure [5] HB CC 2K102
  • G02F1/05
  • ...with ferro-electric properties(G02F1/035, G02F1/055 take precedence) HB CC 2K102
  • G02F1/05,501
  • ....Related to materials HB CC 2K102
  • G02F1/05,502
  • ....Related to drive HB CC 2K102
  • G02F1/05,503
  • ....Spatial modulation HB CC 2K102
  • G02F1/05,504
  • .....provided with photoconductive layer HB CC 2K102
  • G02F1/05,505
  • ....Structure in general HB CC 2K102
  • G02F1/055
  • ...the active material being a ceramic(G02F1/035 takes precedence) HB CC 2K102
  • G02F1/055,501
  • ....Related to materials HB CC 2K102
  • G02F1/055,502
  • ....Related to drive HB CC 2K102
  • G02F1/055,503
  • ....Spatial modulation HB CC 2K102
  • G02F1/055,504
  • .....provided with photoconductive layer HB CC 2K102
  • G02F1/055,505
  • ....Structure in general HB CC 2K102
  • G02F1/061
  • ..based on electro-optical organic material(G02F1/07 takes precedence) HB CC 2K102
  • G02F1/061,501
  • ...related to material HB CC 2K102
  • G02F1/061,502
  • ...related to drive HB CC 2K102
  • G02F1/061,503
  • ...Spatial modulation HB CC 2K102
  • G02F1/061,504
  • ....provided with photoconductive layer HB CC 2K102
  • G02F1/061,505
  • ...Structure in general HB CC 2K102
  • G02F1/065
  • ...in an optical waveguide structure [7] HB CC 2K102
  • G02F1/07
  • ..based on electro-optical liquids exhibiting Kerr effect HB CC 2K102
  • G02F1/07@A
  • Related to materials HB CC 2K102
  • G02F1/07@B
  • Related to drive HB CC 2K102
  • G02F1/07@C
  • Waveguide structure HB CC 2K102
  • G02F1/07@D
  • Spatial modulation HB CC 2K102
  • G02F1/07@E
  • .Provided with photoconductive layer HB CC 2K102
  • G02F1/07@F
  • Structure in general HB CC 2K102
  • G02F1/07@Z
  • Others HB CC 2K102
  • G02F1/09
  • ..based on magneto-optical elements, e.g. exhibiting Faraday effect HB CC 2K102
  • G02F1/09,501
  • ...Related to materials HB CC 2K102
  • G02F1/09,502
  • ...Related to drive HB CC 2K102
  • G02F1/09,503
  • ...Spatial modulation HB CC 2K102
  • G02F1/09,504
  • ....Provided with photoconductive layer HB CC 2K102
  • G02F1/09,505
  • ...Structure in general HB CC 2K102
  • G02F1/095
  • ...in an optical waveguide structure [5] HB CC 2K102
  • G02F1/11
  • ..based on acousto-optical elements, e.g. using variable diffraction by sound or like mechanical waves(acousto-optical deflection G02F1/33) HB CC 2K102
  • G02F1/11,501
  • ...Related to materials HB CC 2K102
  • G02F1/11,502
  • ...Related to drive HB CC 2K102
  • G02F1/11,503
  • ...Spatial modulation HB CC 2K102
  • G02F1/11,504
  • ....Provided with photoconductive layer HB CC 2K102
  • G02F1/11,505
  • ...Structure in general HB CC 2K102
  • G02F1/125
  • ...in an optical waveguide structure [5] HB CC 2K102
  • G02F1/13
  • ..based on liquid crystals, e.g. single liquid crystal display cells [2] HB CC 2H088
  • G02F1/13,101
  • ...Manufacture of liquid crystal cell not characterized by structure layout HB CC 2H088
  • G02F1/13,102
  • ...characterized by non-electric or non-magneto-optical effect, e.g. effect by heat or pressure HB CC 2H088
  • G02F1/13,500
  • ...Characterized by liquid crystal material HB CC 2K011
  • G02F1/13,505
  • ...Application of liquid crystal HB CC 2H088
  • G02F1/133
  • ...Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements(arrangements or circuits for control of liquid crystal elements in a matrix, not structurally associated with these elements G09G3/36) HB CC 2H189
  • G02F1/133,500
  • ....STN [extra-twisted birefringence type] HB CC 2H189
  • G02F1/133,505
  • ....Liquid crystal cell operation and circuit layout HB CC 2H193
  • G02F1/133,510
  • .....Adoption of colors HB CC 2H193
  • G02F1/133,515
  • .....Negative and positive HB CC 2H193
  • G02F1/133,520
  • .....Power supply HB CC 2H193
  • G02F1/133,525
  • .....Removal of DC component HB CC 2H193
  • G02F1/133,530
  • .....Input function HB CC 2H193
  • G02F1/133,535
  • .....Light source HB CC 2H193
  • G02F1/133,540
  • .....Operation in combination with impedance element HB CC 2H189
  • G02F1/133,545
  • .....Simple matrix HB CC 2H193
  • G02F1/133,550
  • .....Active matrix HB CC 2H193
  • G02F1/133,555
  • .....Two-frequency drive HB CC 2H193
  • G02F1/133,560
  • .....for ferroelectric and bistable liquid HB CC 2H193
  • G02F1/133,565
  • .....Thermal address HB CC 2H193
  • G02F1/133,570
  • .....Response time control HB CC 2H193
  • G02F1/133,575
  • .....Contrast control HB CC 2H193
  • G02F1/133,580
  • .....Compensation for changes in external conditions, e.g. temperature compensation HB CC 2H193
  • G02F1/1333
  • ....Constructional arrangements (G02F 1/135, G02F 1/136 take precedence) [5] HB CC 2H189
  • G02F1/1333,500
  • .....Substrate HB CC 2H190
  • G02F1/1333,505
  • ......Insulated film HB CC 2H190
  • G02F1/1334
  • .....based on polymer-dispersed liquid crystals, e.g. microencapsulated liquid crystals [7] HB CC 2H189
  • G02F1/1335
  • .....Structural association of cells with optical devices, e.g. polarisers or reflectors [2006.01] HB CC 2H291
  • G02F1/1335,500
  • ......Combination with filters HB CC 2H291
  • G02F1/1335,505
  • .......for adoption of full colors HB CC 2H291
  • G02F1/1335,510
  • ......Combination with polarizer HB CC 2H291
  • G02F1/1335,515
  • .......for adoption of full colors HB CC 2H291
  • G02F1/1335,520
  • ......Combination with reflecting mirror HB CC 2H291
  • G02F1/1335,525
  • .......for adoption of full colors HB CC 2H291
  • G02F1/13357
  • ......Illuminating devices [7] HB CC 2H391
  • G02F1/13363
  • ......Birefringent elements, e.g. for optical compensation [7] HB CC 2H291
  • G02F1/1337
  • .....Surface-induced orientation of the liquid crystal molecules, e.g. by alignment layers HB CC 2H290
  • G02F1/1337,500
  • ......Characterized by rubbing HB CC 2H290
  • G02F1/1337,505
  • ......provided with multiple orientation treatments HB CC 2H290
  • G02F1/1337,510
  • ......suitable to smectic liquid crystal HB CC 2H290
  • G02F1/1337,515
  • ......Orientation control film composed of inorganic compounds HB CC 2H290
  • G02F1/1337,520
  • ......Orientation control film composed of organic compounds HB CC 2H290
  • G02F1/1337,525
  • .......Imide compound HB CC 2H290
  • G02F1/1337,530
  • .......Silane compound HB CC 2H290
  • G02F1/1339
  • .....Gaskets; Spacers; Sealing of cells [2006.01] HB CC 2H189
  • G02F1/1339,500
  • ......Gasket and spacer HB CC 2H189
  • G02F1/1339,505
  • ......Cell sealing HB CC 2H189
  • G02F1/1341
  • .....Filling or closing of the cell [5] HB CC 2H189
  • G02F1/1343
  • .....Electrodes [5] HB CC 2H092
  • G02F1/1345
  • .....Conductors connecting electrodes to cell terminals [5] HB CC 2H092
  • G02F1/1347
  • .....Arrangement of liquid crystal layers or cells in which the final condition of one light beam is achieved by the addition of the effects of two or more layers or cells [5] HB CC 2H189
  • G02F1/135
  • ....Liquid crystal cells structurally associated with a photoconducting or a ferro-electric layer, the properties of which can be optically or electrically varied [3] HB CC 2H092
  • G02F1/136
  • ....Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit (G02F 1/135 takes precedence) [5] HB CC 2H192
  • G02F1/1362
  • .....Active matrix addressed cells [7] HB CC 2H192
  • G02F1/1365
  • ......in which the switching element is a two-electrode device [7] HB CC 2H192
  • G02F1/1368
  • ......in which the switching element is a three-electrode device [7] HB CC 2H192
  • G02F1/137
  • ...characterised by a particular electro- or magneto-optical effect, e.g. field-induced phase transition, orientation effect, guest-host interaction, dynamic scattering [3] HB CC 2H088
  • G02F1/137,500
  • ....Effects occurring only in the mixed liquid crystal HB CC 2H088
  • G02F1/139
  • ....based on orientation effects in which the liquid crystal remains transparent [6] HB CC 2H088
  • G02F1/141
  • .....using ferroelectric liquid crystals [6] HB CC 2H088
  • G02F1/15
  • ..based on an electrochromic effect [2019.01] HB CC 2K101
  • G02F1/15,501
  • ...Antiglare mirror HB CC 2K101
  • G02F1/15,502
  • ...Light control window HB CC 2K101
  • G02F1/15,503
  • ...Spectacles HB CC 2K101
  • G02F1/15,504
  • ...Diaphragm HB CC 2K101
  • G02F1/15,505
  • ...Characterized by manufacturing method HB CC 2K101
  • G02F1/15,506
  • ...Other application equipment HB CC 2K101
  • G02F1/15,507
  • ...Totally solid type HB CC 2K101
  • G02F1/15,508
  • ...Provided with liquid electrolyte layer HB CC 2K101
  • G02F1/1503
  • ...caused by oxidation-reduction reactions in organic liquid solutions, e.g. viologen solutions HB CC 2K101
  • G02F1/1506
  • ...based on electrodeposition, e.g. electrolytic deposition of an inorganic material on or close to an electrode HB CC 2K101
  • G02F1/1514
  • ...characterised by the electrochromic material, e.g. by the electrodeposited material HB CC 2K101
  • G02F1/1516
  • ....comprising organic material HB CC 2K101
  • G02F1/1523
  • ....comprising inorganic material HB CC 2K101
  • G02F1/1524
  • .....Transition metal compounds HB CC 2K101
  • G02F1/153
  • ...Constructional arrangements [5] HB CC 2K101
  • G02F1/155
  • ....Electrodes [5] HB CC 2K101
  • G02F1/157
  • ....Structural association of optical devices, e.g. reflectors or illuminating devices, with the cell [5] HB CC 2K101
  • G02F1/161
  • ....Gaskets; Spacers; Sealing of the cell; Filling or closing of the cell [5] HB CC 2K101
  • G02F1/163
  • ...Operation of electrochromic cells; Circuit arrangements [5] HB CC 2K101
  • G02F1/165
  • ..based on translational movement of particles in a fluid under the influence of an applied field HB CC 2K101
  • G02F1/166
  • ...characterised by the electro-optical or magneto-optical effect HB CC 2K101
  • G02F1/167
  • ....based on electrophoresis [5] HB CC 2K101
  • G02F1/1671
  • ....involving dry toners HB CC 2K101
  • G02F1/1673
  • ....by magnetophoresis HB CC 2K101
  • G02F1/1675
  • ...Constructional details HB CC 2K101
  • G02F1/16753
  • ....Structures for supporting or mounting cells, e.g. frames or bezels HB CC 2K101
  • G02F1/16755
  • ....Substrates HB CC 2K101
  • G02F1/16756
  • ....Insulating layers HB CC 2K101
  • G02F1/16757
  • ....Microcapsules HB CC 2K101
  • G02F1/1676
  • ....Electrodes HB CC 2K101
  • G02F1/16761
  • .....Side-by-side arrangement of working electrodes and counter-electrodes HB CC 2K101
  • G02F1/16762
  • .....having three or more electrodes per pixel HB CC 2K101
  • G02F1/16766
  • .....for active matrices HB CC 2K101
  • G02F1/1677
  • ....Structural association of cells with optical devices, e.g. reflectors or illuminating devices HB CC 2K101
  • G02F1/1679
  • ....Gaskets; Spacers; Sealing of cells; Filling or closing of cells HB CC 2K101
  • G02F1/1681
  • .....having two or more microcells partitioned by walls, e.g. of microcup type HB CC 2K101
  • G02F1/1685
  • ...Operation of cells; Circuit arrangements affecting the entire cell HB CC 2K101
  • G02F1/169
  • ..based on orientable non-spherical particles having a common optical characteristic, e.g. suspended particles of reflective metal flakes HB CC 2K101
  • G02F1/17
  • ..based on variable absorption elements (G02F 1/015-G02F 1/167 take precedence) [2,5] HB CC 2K101
  • G02F1/19
  • ..based on variable-reflection or variable-refraction elements not provided for in groups G02F 1/015-G02F 1/169 [2019.01] HB CC 2K101
  • G02F1/19,501
  • ...due to orientation changes of fine particles, not provided for in group G02F 1/169 HB CC 2K101
  • G02F1/21
  • ..by interference [2] HB CC 2K102
  • G02F1/225
  • ...in an optical waveguide structure [5] HB CC 2K102
  • G02F1/23
  • ..for the control of the colour (G02F 1/03-G02F 1/21 take precedence) [2] HB CC 2K102
  • G02F1/25
  • ...as to hue or predominant wavelength [2] HB CC 2K102
  • G02F1/29
  • .for the control of the position or the direction of light beams, i.e. deflection [4] HB CC 2K102
  • G02F1/295
  • ..in an optical waveguide structure (G02F 1/313, G02F 1/335 take precedence) [5] HB CC 2K102
  • G02F1/31
  • ..Digital deflection devices (G02F 1/33 takes precedence) [2] HB CC 2K102
  • G02F1/313
  • ...in an optical waveguide structure [5] HB CC 2K102
  • G02F1/315
  • ...based on the use of controlled total internal reflection [3] HB CC 2K102
  • G02F1/315@A
  • Provided with waveguide structure HB CC 2K102
  • G02F1/315@Z
  • Others HB CC 2K102
  • G02F1/33
  • ..Acousto-optical deflection devices [2] HB CC 2K102
  • G02F1/335
  • ...having an optical waveguide structure [5] HB CC 2K102
  • G02F1/35
  • .Non-linear optics [2,5] HB CC 2K102
  • G02F1/35,501
  • ..Optical amplification HB CC 2K102
  • G02F1/35,502
  • ..Inductive scattering HB CC 2K102
  • G02F1/355
  • ..characterised by the materials used HB CC 2K102
  • G02F1/355,501
  • ...Inorganic substance HB CC 2K102
  • G02F1/361
  • ...Organic materials [7] HB CC 2K102
  • G02F1/365
  • ..in an optical waveguide structure (G02F 1/377 takes precedence) [7] HB CC 2K102
  • G02F1/37
  • ..for second-harmonic generation [2] HB CC 2K102
  • G02F1/377
  • ...in an optical waveguide structure [7] HB CC 2K102
  • G02F1/383
  • ....of the optical fibre type [7] HB CC 2K102
  • G02F1/39
  • ..for parametric generation or amplification of light, infra-red, or ultra-violet waves [2] HB CC 2K102
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