Electro-optical glazing structures having scattering and transparent modes of operation and methods and apparatus for making the same
View Patent ↗Electro-optical glazing structures having total-scattering and total-transparent modes of operation which are electrically-switchable for use in dynamically controlling electromagnetic radiation flow in diverse applications.
1. An electro-optical glazing structure comprising:
an electro-optical glazing panel including polymer stabilized cholesteric texture liquid crystal material between electrically conductive electrodes having a first state of operation and a second state of operation,
said polymer stabilized cholesteric texture liquid crystal material includes a polymer network formed from a polymerization product of a non-reactive chiral liquid crystal material, a monomer, and a photo-initiator, wherein a polymer network is free of a mesogenic groups,
a radiation sensor coupled to said glazing panel for sensing electromagnetic radiation incident on said glazing panel; and
a microcontroller coupled to said sensor and said microcontroller for switching said glazing panel from said first state of operation to said second state of operation,
wherein said switching from said first state of operation to said second state of operation is responsive to said electromagnetic radiation.
2. The electro-optical glazing structure of claim 1 , wherein said first state of operation is totally-scattering mode of operation.
3. The electro-optical glazing structure of claim 1 , wherein said second state of operation is transmission mode of operation.
4. An electro-optical glazing structure comprising:
an electro-optical glazing panel including polymer stabilized cholesteric texture liquid crystal material between electrically conductive electrodes having a first state of operation and a second state of operation,
wherein said polymer stabilized cholesteric texture liquid crystal material includes dichroic dyes;
a radiation sensor coupled to said glazing panel for sensing electromagnetic radiation incident on said glazing panel; and
a microcontroller coupled to said sensor and said microcontroller for switching said glazing panel from said first state of operation to said second state of operation,
wherein said switching from said first state of operation to said second state of operation is responsive to said electromagnetic radiation.
5. The electro-optical glazing structure of claim 4 , wherein said first state of operation is totally-scattering mode of operation.
6. The electro-optical glazing structure of claim 4 , wherein said second state of operation is transmission mode of operation.