18397889. TECHNIQUES FOR IMPROVED DATA TRANSFER simplified abstract (Micron Technology, Inc.)
Contents
- 1 TECHNIQUES FOR IMPROVED DATA TRANSFER
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 TECHNIQUES FOR IMPROVED DATA TRANSFER - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Prior Art
- 1.11 Frequently Updated Research
- 1.12 Questions about Data Transfer Technology
- 1.13 Original Abstract Submitted
TECHNIQUES FOR IMPROVED DATA TRANSFER
Organization Name
Inventor(s)
Jameer Mulani of Bangalore (IN)
Amiya Banerjee of Bangalore (IN)
Nitul Gohain of Bangalore (IN)
TECHNIQUES FOR IMPROVED DATA TRANSFER - A simplified explanation of the abstract
This abstract first appeared for US patent application 18397889 titled 'TECHNIQUES FOR IMPROVED DATA TRANSFER
Simplified Explanation
The patent application describes methods, systems, and devices for improving data transfer in memory devices. The memory controller reads data units from one set of memory cells, decodes them, generates corrected data units if needed, creates parity information, and writes the data to another set of memory cells without transferring the uncorrected data units.
- Memory controller reads data units from one set of memory cells
- Decodes and potentially corrects data units
- Generates parity information
- Writes corrected data units and parity information to another set of memory cells
Key Features and Innovation
- Improved data transfer techniques in memory devices
- Ability to correct data units during transfer
- Efficient encoding and writing of corrected data units and parity information
Potential Applications
- Data storage systems
- Computer memory devices
- Data transfer operations in various electronic devices
Problems Solved
- Data corruption during transfer
- Ensuring data integrity in memory devices
- Efficient data transfer processes
Benefits
- Enhanced data reliability
- Improved data transfer efficiency
- Reduced risk of data loss or corruption
Commercial Applications
Memory controllers with improved data transfer capabilities can be used in various industries such as data storage, cloud computing, and telecommunications. These innovations can lead to more reliable and efficient data handling processes, benefiting companies that rely on secure data storage and transfer.
Prior Art
Readers interested in prior art related to this technology can explore research papers, patents, and industry publications on memory devices, data transfer techniques, and error correction methods in electronic systems.
Frequently Updated Research
Researchers are constantly exploring new methods to enhance data transfer efficiency and reliability in memory devices. Stay updated on the latest advancements in memory technology to leverage the most innovative solutions for data handling processes.
Questions about Data Transfer Technology
How does error correction improve data transfer reliability?
Error correction mechanisms in memory devices help identify and fix errors in data units, ensuring that transferred data remains accurate and intact.
What are the potential challenges in implementing advanced data transfer techniques in memory devices?
Implementing advanced data transfer techniques may require significant hardware and software modifications, as well as thorough testing to ensure compatibility and reliability.
Original Abstract Submitted
Methods, systems, and devices for techniques for improved data transfer are described. As part of a data transfer operation from a first set of memory cells of a memory device to a second set of memory cells of the memory device, a memory controller of may read a set of data units from the first set of memory cells. The memory device may transmit the set of data units to the memory controller. The memory controller may decode the set of data units, and, in some cases, may generate one or more corrected data units. The memory controller may then generate parity information for the set of data units, and may encode and write the parity information, along with any corrected data units, to the second set of memory cells of the memory device without transferring the uncorrected data units.