Abstract:
An apparatus includes a non-volatile memory and a processor. The processor is configured to receive, from a host, commands for storage of data in the non-volatile memory, to further receive from the host, for storage in the non-volatile memory, File System (FS) information that specifies organization of the data in a FS of the host, to receive from the host a directive that grants the processor permission and capability to access and modify the FS information, and to access the FS information, using the directive, so as to manage the storage of the data in the non-volatile memory.
Abstract:
A method includes storing data values in a group of memory cells that share a common isolating layer, by producing quantities of electrical charge representative of the data values at respective regions of the common isolating layer that are associated with the memory cells. A function, which relates a drift of the electrical charge in a given memory cell in the group to the data values stored in one or more other memory cells in the group, is estimated. The drift is compensated for using the estimated function.
Abstract:
A method includes, in a plurality of memory cells that share a common isolation layer and store in the common isolation layer quantities of electrical charge representative of data values, assigning a first group of the memory cells for data storage, and assigning a second group of the memory cells for protecting the electrical charge stored in the first group from retention drift. Data is stored in the memory cells of the first group. Protective quantities of the electrical charge that protect from the retention drift in the memory cells of the first group are stored in the memory cells of the second group.
Abstract:
A method includes, in a host that stores data in a storage device, instructing the storage device to operate in a power throttling mode that limits power consumption of the storage device to a selected power limit. Storage commands are generated in the host for execution by the storage device, wherein each of at least some of the storage commands is partitioned into multiple sub-commands having a maximal size that depends on the selected power limit. The sub-commands are sent for execution in the storage device.
Abstract:
A method includes providing data for storage in a memory, which includes multiple analog memory cells arranged in a three-dimensional (3-D) configuration having a first dimension associated with bit lines, a second dimension associated with word lines, and a third dimension associated with sections. The data is stored in the memory cells in accordance with a programming order that alternates among the sections, including storing a first portion of the data in a first section, then storing a second portion of the data in a second section different from the first section, and then storing a third portion of the data in the first section.
Abstract:
A method for data storage in a memory that includes multiple analog memory cells, includes defining, based on a characteristic of the memory cells, an uneven wear leveling scheme that programs and erases at least first and second subsets of the memory cells with respective different first and second Programming and Erasure (P/E) rates. Data is stored in the memory in accordance with the uneven wear leveling scheme.
Abstract:
A method includes, in a memory controller that controls a memory, evaluating an available memory space remaining in the memory to write data. A redundant storage configuration is selected in the memory controller depending on the available memory space. Redundancy information is calculated over the data using the selected redundant storage configuration. The data and the redundancy information are written to the available memory space in the memory.
Abstract:
A method includes, in a plurality of memory cells that share a common isolation layer and store in the common isolation layer quantities of electrical charge representative of data values, assigning a first group of the memory cells for data storage, and assigning a second group of the memory cells for protecting the electrical charge stored in the first group from retention drift. Data is stored in the memory cells of the first group. Protective quantities of the electrical charge that protect from the retention drift in the memory cells of the first group are stored in the memory cells of the second group.
Abstract:
A method includes storing data in a memory, which includes multiple strings of analog memory cells arranged in a three-dimensional (3-D) configuration having a first dimension associated with bit lines, a second dimension associated with word lines and a third dimension associated with sections, such that each string is associated with a respective bit line and a respective section and includes multiple memory cells that are connected to the respective word lines. For a group of the strings, respective values of a property of the strings in the group are evaluated. Source-side voltages are calculated for the respective strings in the group, depending on the respective values of the property, and respective source-sides of the strings in the group are biased with the corresponding source-side voltages. A memory operation is performed on the strings in the group while the strings are biased with the respective source-side voltages.
Abstract:
A method for data storage includes storing data in a group of analog memory cells by writing respective storage values into the memory cells in the group. One or more of the memory cells in the group are read using a first readout operation that senses the memory cells with a first sense time. At least one of the memory cells in the group is read using a second readout operation that senses the memory cells with a second sense time, longer than the first sense time. The data stored in the group of memory cells is reconstructed based on readout results of the first and second readout operations.