IP Library Patent Application 18819349
Patent Application
App. No. 18/819,349

Light Valve System with Gap Maintenance System

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Quick Facts
Patent No.
US None
App. No.
18/819,349
Abstract

A light valve can include a liquid crystal layer having a first and a second side. A first substrate is positioned in contact with the first side of the liquid crystal layer, with the first substrate having a first semiconductor layer. A second substrate is positioned in contact with the second side of the liquid crystal layer, with the second substrate having a second semiconductor transparent electrode layer and a second semiconductor layer. A plurality of laser transparent aperture support structures are positioned within the liquid crystal layer to contact both the first and the second substrate to generate a stable uniform gap under the force from the liquid crystal surface tension applied to substrate that are thin and compliant.

Claims (44)

1 . A light valve, comprising:

a liquid crystal layer having a first and a second side;

a first substrate positioned in contact with the first side of the liquid crystal layer, with the first substrate having a first semiconductor layer; and

a second substrate positioned in contact with the second side of the liquid crystal layer, with the second substrate having a second semiconductor transparent electrode layer and a second semiconductor layer; and

a plurality of laser transparent aperture support structures positioned within the liquid crystal layer to contact both the first and the second substrate.

2 . The light valve of claim 1 , wherein the first substrate further comprises a first semiconductor transparent electrode layer positioned in contact with the first semiconductor layer to form a transmissive light valve.

3 . The light valve of claim 1 , wherein the first substrate further comprises a reflective layer positioned in contact with the first semiconductor layer to form a reflective light valve.

4 . The light valve of claim 1 , wherein the liquid crystal layer is at least one of less than liquid crystal layer is less than 100 micrometers, less than 10 micrometers, or less than 5 micrometers thick.

5 . The light valve of claim 1 , wherein each substrate is less than 1 mm thick.

6 . The light valve of claim 1 , wherein each substrate comprises at least one of a wide bandgap and ultra-wide bandgap semiconductor material.

7 . The light valve of claim 1 , wherein the plurality of laser transparent aperture support structures comprise at least one of spacer balls, shims, and posts positioned within the liquid crystal layer and sized to maintain a uniform gap between the first and second substrates.

8 . The light valve of claim 1 , wherein the first and second substrates and the liquid crystal layer are attached to form a monolithic block.

9 . The light valve of claim 1 , wherein the first and second substrates and the liquid crystal layer are CTE matched to be within 10% of each other.

10 . A method of forming a light valve, comprising:

providing a liquid crystal layer having first and second sides;

applying a plurality of laser transparent aperture support structures into the liquid crystal layer;

positioning a first electrode on a first semiconductor layer to form a first substrate;

contacting the first semiconductor layer with the first side of the liquid crystal layer;

positioning a second transparent electrode on a second semiconductor layer to form a second substrate; and

contacting the second semiconductor layer with the second side of the liquid crystal layer.

11 . The method of claim 10 , wherein the first substrate further comprises a first semiconductor transparent electrode layer positioned in contact with the first semiconductor layer to form a transmissive light valve.

12 . The method of claim 10 , wherein the first substrate further comprises a reflective layer positioned in contact with the first semiconductor layer to form a reflective light valve.

13 . The method of claim 10 , wherein the liquid crystal layer is less than 1 mm thick.

14 . The method of claim 10 , wherein each substrate is less than 1 mm thick.

15 . The method of claim 10 , wherein each substrate comprises at least one of a wide bandgap and ultra-wide bandgap semiconductor material.

16 . The method of claim 10 , wherein the plurality of laser transparent aperture support structures comprises at least one of spacer balls, shims, and posts positioned within the liquid crystal layer and sized to maintain a uniform gap between the first and second substrates.

17 . The method of claim 10 , wherein the first and second substrates and the liquid crystal layer are attached to form a monolithic block.

18 . The method of claim 10 , wherein the first and second substrates and the liquid crystal layer are CTE matched to be within 10% of each other.

19 . An additive manufacturing system, comprising:

a laser system;

a powder bed;

a light valve positioned to pattern light received from the laser system and direct the patterned light to the powder bed, wherein the light valve further comprises

a liquid crystal layer having a first and a second side;

a first substrate positioned in contact with the first side of the liquid crystal layer, with the first substrate having and a first semiconductor layer; and

a second substrate positioned in contact with the second side of the liquid crystal layer, with the second substrate having a second semiconductor transparent electrode layer and a second semiconductor layer; and

a plurality of laser transparent aperture support structures positioned within the liquid crystal layer to contact both the first and the second substrate.

20 . The additive manufacturing system of claim 19 , wherein the light valve can form a two-dimensional light pattern.

21 . A light valve, comprising:

a liquid crystal layer having a first and a second side;

a first substrate positioned in contact with the first side of the liquid crystal layer, with the first substrate having a first semiconductor layer;

a second substrate positioned in contact with the second side of the liquid crystal layer, with the second substrate having a second semiconductor transparent electrode layer and a second semiconductor layer; and wherein

the liquid crystal layer is within a uniform gap contacting both the first and the second substrate.

22 . The light valve of claim 21 , wherein the liquid crystal layer is at least one of less than liquid crystal layer is less than 100 micrometers, less than 10 micrometers, or less than 5 micrometers thick.

23 . The light valve of claim 21 , wherein the uniform gap containing the liquid crystal layer varies in thickness by less than a micrometer.

Assignments (2)
SECURITY INTEREST Recorded Dec 9, 2025
From: SEURAT TECHNOLOGIES, INC.
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 073909/0977 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2024
From: ELHADJ, SELIM; SARGOLZAEIAVAL, YASAMAN; DAVIDSON, ZOEY SAMUEL
To: SEURAT TECHNOLOGIES, INC.
Reel/Frame 068442/0600 →