IP Library › Granted Patent US 11,537,537
Granted Patent B2
US 11,537,537 · App. 17/200,427 · Granted Dec 27, 2022

Semiconductor device and method

Inventor: Tomoaki Suzuki (Chigasaki, JP)
Assignee: Kioxia Corporation
G06F13/1668G06F13/28
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Quick Facts
Patent No.
US 11,537,537
App. No.
17/200,427
Granted
Dec 27, 2022
Kind
B2
Abstract

A semiconductor device includes a terminal group configured to receive a first signal and a second signal from a host, a first chip electrically connected to the terminal group, and a second chip electrically connected to the terminal group. The first chip is configured to, in response to reception of the first signal, transmit a third signal corresponding to the first signal to the second chip. The first chip is configured to, when the first chip has received the second signal before the first signal, refrain from transmitting the third signal to the second chip.

Claims (43)

1. A semiconductor device comprising:

a terminal group configured to receive a first signal and a second signal from a host;

a first chip electrically connected the terminal group; and

a second chip electrically connected to the first chip, wherein

the first chip is configured to, in response to reception of the first signal, transmit a third signal corresponding to the first signal to the second chip, and

is configured to, when the first chip has received the second signal before the first signal, refrain from transmitting the third signal to the second chip,

the first chip includes a first memory and a fourth memory,

the second chip includes a second memory and a third memory,

the first signal includes a second command for writing first information into the first memory or the second memory,

the first chip is configured to store the first information into the first memory, in response to reception of the second signal before the second command,

the first information includes second information representing a set value of a size of data to be input or output to or from the third memory,

the first signal includes a third command for causing the second chip to output data from the third memory, and

the first chip is configured to:

transmit a fourth command corresponding to the first signal to the second chip, in response to reception of the first signal after receiving the third command from the host;

sequentially buffer first data in the fourth memory, the first data being data output from the second chip in accordance with the fourth command; and

notify the host of third information representing that a size of the first data buffered in the fourth memory has reached a threshold, the threshold being defined based on the second information.

2. The semiconductor device according to claim 1 , wherein

the terminal group includes a dedicated terminal for receiving the second signal.

3. The semiconductor device according to claim 1 , wherein

the second signal includes a first command transmitted from the host via a terminal that transmits the first signal.

4. The semiconductor device according to claim 3 , wherein

the second chip is configured to, in spite of reception of the first command, refrain from responding to the first command.

5. The semiconductor device according to claim 1 , wherein

the first chip is configured to start supplying the first data from the fourth memory to the host after allowing notification of the third information.

6. The semiconductor device according to claim 1 , wherein

when a data transfer rate between the host and the first chip is N times higher than a data transfer rate between the first chip and the second chip, where N is larger than one, the threshold is calculated by multiplying a data size indicated by the second information by (1−1/N).

7. A method of controlling a first chip electrically connected to a second chip, the method comprising:

causing, in response to reception of a first signal from a host, the first chip to transmit a second signal corresponding to the first signal to the second chip; and

causing, when a third signal is received before the first signal from the host, the first chip to refrain from transmitting the second signal to the second chip, wherein

the first chip includes a first memory and a fourth memory,

the second chip includes a second memory and a third memory,

the first signal includes a first command for writing first information into the first memory or the second memory,

the first signal includes a second command for causing the second chip to output data from the third memory, and

the first information includes second information representing a set value of a size of data to be input or output to or from the third memory,

the method further comprising:

storing first information into the first memory, in response to reception of the third signal before the first command,

transmitting a third command corresponding to the first signal to the second chip, in response to reception of the first signal after receiving the second command from the host,

sequentially buffering first data in the fourth memory, the first data being data output from the second chip in accordance with the third command; and

transferring, to the host, third information representing that a size of the first data buffered in the fourth memory has reached a threshold, the threshold being defined based on the second information.

8. The method according to claim 7 , further comprising

starting supplying the first data from the fourth memory to the host after the size of the first data buffered in the fourth memory has reached the threshold.

9. The method according to claim 8 , further comprising

when a data transfer rate between the host and the first chip is N times higher than a data transfer rate between the first chip and the second chip, where N is larger than one, calculating the threshold by multiplying a data size indicated by the second information by (1−1/N).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2021
From: SUZUKI, TOMOAKI
To: KIOXIA CORPORATION
Reel/Frame 056942/0799 →
Priority Claims (1)
JP JP2020-155799 · Sep 16, 2020 · national
Continuity (1)
Related Publication 20220083479A1 · Mar 17, 2022
Cited By (1)
US 12,724,569