IP Library Granted Patent US 10,482,052
Granted Patent B2
US 10,482,052 · App. 15/978,272 · Granted Nov 19, 2019

Semiconductor device and memory system

Inventors: Kunihiko Yamagishi (Yokohama, JP); Toshitada Saito (Yokohama, JP)
Assignee: Toshiba Memory Corporation
G06F13/4068G06F12/0246G06F13/385G06F13/40G06F13/4063G06F13/42G06F13/4282H04L25/03828G06F2212/7201G06F2213/3804G06F2213/3854
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,482,052
App. No.
15/978,272
Granted
Nov 19, 2019
Kind
B2
Abstract

A semiconductor device capable of communicating with a host apparatus includes a symbol generation unit, a coding unit, and a transmission unit. The symbol generation unit includes a random number generation circuit and generates a symbol according to a random number generated by the random number generation circuit. The coding unit performs 8b/10b coding for the symbol. The transmission unit transmits the symbol coded by the 8b/10b coding unit to the host apparatus.

Claims (32)

1. A memory card communicating with a host apparatus, comprising:

a card;

a plurality of signal pins provided on the card and connectable to the host apparatus;

a memory provided in the card and from and into which data can be read and written; and

a memory controller circuit provided in the card and coupled to the memory and capable of being coupled to the host apparatus via ones of the plurality of pins, the memory controller circuit selecting one symbol from a pair of a first symbol and a second symbol, the symbols indicating an idle state, the first symbol having a plus running disparity and the second symbol having a minus running disparity, the one symbol selected by the memory controller circuit having a running disparity different from a running disparity of a symbol which is most recently selected, the memory controller circuit performing 8b/10b coding for the selected symbol and repeatedly transmitting the 8b/10b coded symbol to the host apparatus.

2. The card according to claim 1 , wherein data to be transmitted from the card to the host apparatus is scrambled, and the scrambled data is transmitted to the host apparatus.

3. The card according to claim 1 , wherein the memory controller circuit selects one of the first and second symbols according to a random number.

4. The card according to claim 1 , wherein the memory controller circuit transmits, to the host apparatus, the coded symbol and coded scramble data as one symbol set.

5. A memory card communicating with a host apparatus, comprising:

a card;

a plurality of signal pins provided on the card and connectable to the host apparatus;

a memory provided in the card and from and into which data can be read and written; and

a memory controller circuit provided in the card and coupled to the memory and capable of being coupled to the host apparatus via ones of the plurality of pins, the memory controller circuit selecting one symbol from a pair of a first symbol and a second symbol, the memory controller circuit performing 8b/10b coding for the selected symbol and a third symbol which indicates a delimiter, the memory controller circuit repeatedly transmitting a symbol set including the 8b/10b coded one of the first and second symbols and the 8b/10b coded third symbol to the host apparatus, the symbol set being used to set up synchronization with the host apparatus, the first symbol having a plus running disparity and the second symbol having a minus running disparity, the one symbol selected by the memory controller circuit having a running disparity different from a running disparity of a symbol which is most recently selected.

6. The card according to claim 5 , wherein data to be transmitted from the card to the host apparatus is scrambled, and the scrambled data is transmitted to the host apparatus.

7. The card according to claim 5 , wherein the memory controller circuit selects one of the first and second symbols according to a random number.

8. The card according to claim 5 , wherein the memory controller circuit transmits, to the host apparatus, the coded symbol and coded scramble data as one symbol set.

9. A memory card communicating with a host apparatus, comprising:

a card;

a plurality of signal pins provided on the card and connectable to the host apparatus;

a memory provided in the card and from and into which data can be read and written; and

a memory controller circuit provided in the card and coupled to the memory and capable of being coupled to the host apparatus via ones of the plurality of pins, the memory controller circuit selecting one symbol from a pair of a first symbol and a second symbol, the symbols indicating an idle state, one of the first and second symbols being a symbol in which a running disparity is ±0, the one symbol selected by the memory controller circuit having a running disparity different from a running disparity of a symbol which is most recently selected, the memory controller circuit performing 8b/10b coding for the selected symbol and repeatedly transmitting the 8b/10b coded symbol to the host apparatus.

10. The card according to claim 9 , wherein data to be transmitted from the card to the host apparatus is scrambled, and the scrambled data is transmitted to the host apparatus.

11. The card according to claim 9 , wherein the memory controller circuit selects one of the first and second symbols according to a random number.

12. The card according to claim 9 , wherein the memory controller circuit transmits, to the host apparatus, the coded symbol and coded scramble data as one symbol set.

13. A memory card communicating with a host apparatus, comprising:

a card;

a plurality of signal pins provided on the card and connectable to the host apparatus;

a memory provided in the card and from and into which data can be read and written; and

a memory controller circuit provided in the card and coupled to the memory and capable of being coupled to the host apparatus via ones of the plurality of pins, the memory controller circuit selecting one symbol from a pair of a first symbol and a second symbol, the memory controller circuit performing 8b/10b coding for the selected symbol and a third symbol which indicates a delimiter, the memory controller circuit repeatedly transmitting a symbol set including the 8b/10b coded one of the first and second symbols and the 8b/10b coded third symbol to the host apparatus, the symbol set being used to set up synchronization with the host apparatus, one of the first and second symbols being a symbol in which a running disparity is ±0, the one symbol selected by the memory controller circuit having a running disparity different from a running disparity of a symbol which is most recently selected.

14. The card according to claim 13 , wherein data to be transmitted from the card to the host apparatus is scrambled, and the scrambled data is transmitted to the host apparatus.

15. The card according to claim 13 , wherein the memory controller circuit selects one of the first and second symbols according to a random number.

16. The card according to claim 13 , wherein the memory controller circuit transmits, to the host apparatus, the coded symbol and coded scramble data as one symbol set.

Assignments (3)
MERGER Recorded Jan 22, 2021
From: TOSHIBA MEMORY CORPORATION
To: K.K. PANGEA
Reel/Frame 055659/0471 →
CHANGE OF NAME AND ADDRESS Recorded Jan 22, 2021
From: TOSHIBA MEMORY CORPORATION
To: KIOXIA CORPORATION
Reel/Frame 055669/0001 →
CHANGE OF NAME AND ADDRESS Recorded Jan 22, 2021
From: K.K. PANGEA
To: TOSHIBA MEMORY CORPORATION
Reel/Frame 055669/0401 →
Priority Claims (1)
JP 2009-279719 · Dec 9, 2009 · national
Continuity (6)
Continuation 15627821 · Jun 20, 2017
Continuation 15257666 · Sep 6, 2016
Continuation 14797970 · Jul 13, 2015
Continuation 14292180 · May 30, 2014
Continuation 13514736
Related Publication 20180260355A1 · Sep 13, 2018