Inventor profile of:

Liam Michael Parker

City:

Edinburgh

Country:

United Kingdom

Published Applications:

26

Last publication date:

2021-09-30

Top Assignees for applications by Liam Michael Parker

The entities that hold a legal rights for patent applications filed by inventor Parker Liam Michael:

Recent patent applications by Parker Liam Michael

Liam Michael Parker from Edinburgh, GB has applied for patents for these inventions. The list has both pending applications and granted patents:

#1 | 2021-09-30
US20210303463A1
Physics

System and method of data writes and mapping of data for multiple sub-drives

#2 | 2021-08-05
US20210240614A1
Physics

System and method of direct write and mapping of data in a non-volatile memory having multiple sub-drives

#3 | 2020-01-23
US20200026645A1
Physics

System and method of data writes and mapping of data for multiple sub-drives

#4 | 2019-12-19
US20190384704A1
Physics

System and method of direct write and mapping of data in a non-volatile memory having multiple sub-drives

#5 | 2018-12-13
US20180357160A1
Physics

System and method of direct write and mapping of data in a non-volatile memory having multiple sub-drives

#6 | 2018-12-13
US20180356997A1
Physics

System and method of direct write and mapping of data in a non-volatile memory having multiple sub-drives

#7 | 2018-10-18
US20180300081A1
Physics

System and method for hybrid push-pull data management in a non-volatile memory

#8 | 2018-07-05
US20180190329A1
Physics

System and method of managing data in a non-volatile memory having a staging sub-drive

#9 | 2017-08-03
US20170221573A1
Physics

End of life prediction based on memory wear

#10 | 2017-05-04
US20170123666A1
Physics

SYSTEM AND METHOD FOR MANAGING MAINTENANCE SCHEDULING IN A NON-VOLATILE MEMORY

#11 | 2017-05-04
US20170123664A1
Physics

Method and system for programming a multi-layer non-volatile memory having a single fold data path

#12 | 2016-11-03
US20160322113A1
Physics

System and method for measuring data retention in a non-volatile memory

#13 | 2016-06-23
US20160180959A1
Physics

Memory block cycling based on memory wear or data retention

#14 | 2016-06-23
US20160180953A1
Physics

PREDICTING MEMORY DATA LOSS BASED ON TEMPERATURE ACCELERATED STRESS TIME

#15 | 2016-06-23
US20160180952A1
Physics

End of life prediction based on memory wear

#16 | 2016-06-23
US20160180951A1
Physics

Measuring memory wear and data retention individually based on cell voltage distributions

#17 | 2016-06-23
US20160179608A1
Physics

Removing read disturb signatures for memory analytics

#18 | 2016-06-23
US20160179602A1
Physics

End of life prediction to reduce retention triggered operations

#19 | 2016-06-23
US20160179597A1
Physics

Failed bit count memory analytics

#20 | 2016-06-23
US20160179428A1
Physics

DYNAMIC PROGRAMMING ADJUSTMENTS IN MEMORY FOR NON-CRITICAL OR LOW POWER MODE TASKS

#21 | 2016-06-23
US20160179407A1
Physics

Trade-off adjustments of memory parameters based on memory wear or data retention

#22 | 2016-06-23
US20160179406A1
Physics

Dynamic programming adjustments based on memory wear, health, and endurance

#23 | 2015-07-30
US20150213893A1
Physics

Pattern breaking in multi-die write management

#24 | 2015-07-30
US20150212732A1
Physics

Pattern breaking in multi-die write management

#25 | 2013-01-24
US20130024609A1
Physics

Tracking and handling of super-hot data in non-volatile memory systems

#26 | 2012-11-22
US20120297122A1
Physics

Non-volatile memory and method having block management with hot/cold data sorting

InventorID:

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