Nova Patents
EP0935255A2

Flash EEPROM system

Abstract

A system of Flash EEPROM memory chips with controlling circuits serves as non-volatile memory such as that provided by magnetic disk drives. The memory cells of the Flash EEPROM are partitioned into a plurality of sectors that individually are erasable together as a unit. The individual sectors are provided with a user data portion and an overhead portion which allow for operations similar to that of a magnetic disk drive. In one embodiment, information about defect mapping of cells for a sector is maintained in the overhead portion and used to map defective cells or the whole sector to spare ones. In another embodiment, an error correction code of the data in the user data portion is maintained in the overhead portion.

EP0935255A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 30 March 2010, 16.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

50 claims: 13 independent, 37 dependent

  1. 1
    A method of operating a computer system including a processor and a memory system, wherein the memory system includes an array of non-volatile floating gate memory cells partitioned into a plurality of sectors that individually include a distinct group of said array of memory cells that are erasable together as a unit, comprising:providing said memory array and a memory controller within a card that is removably connectable to the computer system, said controller being connectable to said processor for controlling operation of the array when the card is connected to the computer system, partitioning the memory cells within the individual sectors into at least a user data portion and an overhead portion, causing the controller in response to receipt from the processor of an address in a format designating at least one magnetic disk sector, to designate an address of at least one non-volatile memory sector that corresponds with said at least one magnetic disk sector, either writing user data to, or reading user data from, the user data portion of said at least one non-volatile memory sector, and either writing to, or reading from, said overhead portion of said at least one non-volatile memory sector, overhead data related either to said at least one non-volatile memory sector or to data stored in the user data portion of said at least one non-volatile memory sector.
  2. 8
    A memory system on a card that is connectable to a host computer system, said memory system comprising:an array of non-volatile floating gate memory cells partitioned into a plurality of sectors that individually include a distinct group of said memory cells that are erasable together as a unit, the individual sectors having enough cells for storing a given amount of user data and overhead data, and means connectable to said computer system for controlling operation of the array, said controlling means including: means responsive to receipt of a magnetic disk sector address from the host computer system for addressing a corresponding non-volatile memory sector, means for reading the overhead data stored in the addressed sector prior to either reading the user data from, or writing user data to, the addressed sector, and means responsive to the read overhead data for executing an instruction from the host computer system to perform a designated one of reading user data from, or writing user data to, the addressed sector.
  3. 13
    The memory system according claim 12 wherein said substituting means including means referencing the overhead data of an addressed sector for substituting redundant cells within the addressed sector.
  4. 14
    A memory system having electrical terminations for establishing a connection with a host computer system, said memory system comprising:an array of non-volatile floating gate memory cells partitioned into a plurality of sectors that individually include a distinct group of said memory cells that are erasable together as a unit, the individual sectors having enough cells for storing a given amount of user data and some overhead data, and a memory controller connected between said electrical terminations and said memory cell array for controlling operation of the array, said controller including: means responsive to receipt of one or more mass memory storage block addresses through said terminations for addressing one or more of the non-volatile memory sectors, said addressing means including means responsive to an identification of any of the non-volatile memory sectors that are unusable for substituting another usable sector therefor, means for reading overhead data stored in the addressed sector prior to either reading the user data from, or writing user data to, the addressed sector, and means responsive to the read overhead data for either reading user data from, or writing user data to, the addressed sector.
  5. 17
    The memory system according to any one of claims 14-16 wherein the identification of any unusable sectors includes inoperable or defective sectors.
  6. 18
    The memory system according to any one of claims 14-16 wherein the identification of any unusable sectors includes sectors that contain a number of defective cells in excess of a preset number.
  7. 19
    The memory system according to any one of claims 14-16 wherein said given amount of user data is substantially equal to 512 bytes.
  8. 20
    The memory system according to any one of claims 14-16 wherein said controller additionally includes means for selecting a plurality of sectors for an erase operation, and means for simultaneously performing an erase operation on only the selected plurality of sectors.
  9. 23
    The memory system according to any one of claims 14-16, 21 and 22 wherein the given amount of user data that is storable in individual sectors is substantially equal to a size of individual mass memory storage blocks of the host computer system, and wherein the addressing means maps addresses of individual ones of the mass memory storage blocks into unique individual ones of the non-volatile memory sectors.
  10. 24
    The memory system according to any one of claims 14-16, 21 and 22 wherein said memory system unit is implemented on a single printed circuit card.
  11. 25
    The memory system according to any one of claims 14-16, 21 and 22 wherein the one or more mass memory storage block addresses to which the controller addressing means is responsive consists of one or more magnetic disk sector addresses.
  12. 26
    In a computer system including a processor and a memory system, wherein the memory system includes an array of integrated electronic circuit non-volatile floating gate memory cells partitioned into a plurality of distinct sectors of said memory cells that are individually erasable together as a unit separately from other sectors, a method of operating the memory system, comprising:removably connecting said memory system including a controller to the computer system in a manner that said controller communicates with said processor for controlling operation of the array, in response to receipt from the processor of an address in a format designating at least one mass memory storage block, generating through the controller (1) an address of at least one of said plurality of sectors of non-volatile memory corresponding to said at least one mass memory storage block and (2) an erase, write or read command, in response to an erase command, erasing said at least one sector, in response to a write command, reading, from an overhead portion of said at least one sector, overhead data of a characteristic of said at least one sector, and thereafter writing user data in the user data portion of said at least one sector and writing a characteristic of the written user data in the overhead portion of said at least one sector, and in response to a read command, reading, from an overhead portion of said at least one sector, overhead data of a characteristic of said at least one sector or of data stored in the user data portion of said at least one sector, and thereafter reading data from the user data portion of said at least one sector.
  13. 42
    A method of operating a computer system including a processor and a memory system, wherein the memory system includes an array of non-volatile floating gate memory cells partitioned into a plurality of sectors that individually include a distinct group of said array of memory cells that are erasable together as a unit, comprising:providing said memory array and a memory controller within a card that is removably connectable to the computer system, said controller being connectable to said processor for controlling operation of the array when the card is connected to the computer system, partitioning the memory cells within the individual sectors into at least a user data portion and an overhead portion, detecting a predefined condition when individual sectors become unusable and linking the addresses of such unusable sectors with addresses of other sectors that are useable, causing the controller, in response to receipt from the processor of an address in a format designating at least one magnetic disk sector, to generate an address of a non-volatile memory sector that corresponds to said at least one magnetic disk sector, accessing a usable sector of the memory system, if the sector with the generated address is unusable, by referring to the linked address of another sector that is usable and then accessing that other sector, either writing data to, or reading data from, the user data portion of the accessed usable sector, and either writing to, or reading from, said overhead portion of the accessed usable sector, information related to either the accessed usable sector or data stored in the user data portion of said accessed useful sector.