CERAMIC OXIDE BODY, METHOD OF MANUFACTURING THEREOF, AND METHOD OF MANUFACTURING GLASS SHEET
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United States of America Patent
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Issued Date -
Mar 2, 2017
app pub date -
Mar 25, 2015
filing date -
Mar 27, 2014
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Abstract
A ceramic oxide body is disclosed. The ceramic oxide body may include fused cast aluminum oxide powder, fine aluminum oxide powder and titanium oxide powder.
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- 15 United States
- 10 France
- 8 Japan
- 7 China
- 5 Korea
- 2 Other
Patent Owner(s)
Patent Owner | Address | |
---|---|---|
CORNING INCORPORATED | SP-TI-03-1 CORNING NY 14831 |
International Classification(s)

- 2015 Application Filing Year
- C03B Class
- 530 Applications Filed
- 395 Patents Issued To-Date
- 74.53 % Issued To-Date
Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
---|---|---|---|
Cannon, Wilson Shunda Denise | Painted Post, US | 2 | 2 |
# of filed Patents : 2 Total Citations : 2 | |||
Miao, Weiguo | Horseheads, US | 34 | 475 |
# of filed Patents : 34 Total Citations : 475 | |||
Seymour, David Ivan | Corning, US | 1 | 2 |
# of filed Patents : 1 Total Citations : 2 |
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Patent Citation Ranking
- 2 Citation Count
- C03B Class
- 37.76 % this patent is cited more than
- 8 Age
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Maintenance Fees
Fee | Large entity fee | small entity fee | micro entity fee | due date |
---|---|---|---|---|
11.5 Year Payment | $7400.00 | $3700.00 | $1850.00 | Sep 2, 2028 |
Fee | Large entity fee | small entity fee | micro entity fee |
---|---|---|---|
Surcharge - 11.5 year - Late payment within 6 months | $160.00 | $80.00 | $40.00 |
Surcharge after expiration - Late payment is unavoidable | $700.00 | $350.00 | $175.00 |
Surcharge after expiration - Late payment is unintentional | $1,640.00 | $820.00 | $410.00 |
Full Text
US Patent Application No: 2024/0135,797
DATA-DRIVEN STREET FLOOD WARNING SYSTEM
Abstract
A data-driven street flood warning system that employs distributed fiber optic sensing (DFOS)/distributed acoustic sensing (DAS) and machine learning (ML) technologies and techniques to provide a prediction of street flood status along a telecommunications fiber optic cable route using the DFOS/DAS data and ML models. Operationally, a DFOS/DAS interrogator collects and transmits vibrational data resulting from rain events while an online web server provides a user interface for end-users. Two machine learning models are built respectively for rain intensity prediction and flood level prediction. The machine learning models serve as predictive models for rain intensity and flood levels based on data provided to them, which includes rain intensity, rain duration, and historical data on flood levels.
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