Crystal-pulling method for pulling monocrystalline silicon
US-2024084478-A1 · Mar 14, 2024 · US
US10221500B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10221500-B2 |
| Application number | US-201715398407-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 4, 2017 |
| Priority date | Jan 4, 2017 |
| Publication date | Mar 5, 2019 |
| Grant date | Mar 5, 2019 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
Systems and methods for forming an ingot from a melt are disclosed. A system includes a crucible defining a cavity for receiving the melt, and a first and second barrier to inhibit movement of the melt. A first passageway and a second passageway are arranged to allow the melt located within an outer zone to move into and through a transition zone and into an inner zone. Conditioning members are placed in at least one of the zones and arranged to contact the melt to reduce the number of micro-voids in the melt.
Opening claim text (preview).
What is claimed is: 1. A system for forming an ingot from a melt, the system comprising: a crucible defining a cavity for receiving the melt; a first barrier disposed in the cavity to inhibit movement of the melt, the crucible and the first barrier forming an outer zone, the first barrier including a first passageway; a second barrier disposed in the cavity to inhibit movement of the melt from outward of the second barrier to inward of the second barrier, the first barrier and the second barrier defining a transition zone therebetween, the second barrier forming an inner zone and including a second passageway, wherein the first passageway and the second passageway are arranged to allow the melt located within the outer zone to move into and through the transition zone and into the inner zone; and conditioning members including bodies positioned in the transition zone between the first barrier and the second barrier, the conditioning members being arranged to contact the melt in the transition zone and reduce the number of micro-voids in the melt. 2. The system of claim 1 , wherein the conditioning members include bodies constructed of quartz. 3. The system of claim 1 , further comprising spacers positioned in the transition zone and arranged to support the conditioning members within the transition zone. 4. The system of claim 1 further comprising a feeder system to deliver solid feedstock material into the cavity, wherein the solid feedstock material is arranged to form the melt. 5. The system of claim 4 , wherein the conditioning members are positioned throughout the transition zone from the first barrier to the second barrier at a melt line defined by a surface of the melt such that the melt contacts the conditioning members as the solid feedstock material melts. 6. The system of claim 5 , wherein the conditioning members are further arranged to extend above the melt line. 7. The system of claim 6 , wherein the conditioning members are further arranged to extend below the melt line. 8. The system of claim 1 , wherein the crucible is a first crucible and the first barrier is a second crucible, the outer zone being formed by the first crucible and the second crucible. 9. The system of claim 8 , wherein the second barrier is a third crucible forming the inner zone, the transition zone being formed by the third crucible and the second crucible. 10. The system of claim 1 , wherein the first and second barriers are weirs separating the outer zone, the transition zone, and the inner zone, the weirs including the first and second passageways therethrough to allow the melt located within the outer zone to move into the inner zone, wherein the inner zone defines a growth area for the ingot, the conditioning members being positioned in the outer zone and the transition zone. 11. The system of claim 1 , wherein the conditioning members include at least one of the following shapes: cuboid, conical, cylindrical, spherical, prismatic, and pyramidal.
Controlling or regulating (controlling or regulating in general G05) · CPC title
Continuous growth · CPC title
adding crystallising materials or reactants forming it in situ to the melt · CPC title
Silicon · CPC title
Double crucible methods · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.