Abstract:
A semiconductor memory device is provided which includes a sense amplifier, a bit line connected to a plurality of memory cells of a first memory block, a complementary bit line connected to a plurality of memory cells of a second memory block, a first switch configured to connect the bit line to the sense amplifier, and a second switch configured to connect the complementary bit line to the sense amplifier. The first switch is configured to electrically separate the bit line from the sense amplifier when the second memory block performs a refresh operation.
Abstract:
Disclosed is a method of controlling a deep power down mode in a multi-port semiconductor memory having a plurality of ports connected to a plurality of processors. Control of the deep power down mode in the multi-port semiconductor memory is performed such that activation/deactivation of the deep power down mode are determined in accordance with signals applied through various ports in the plurality of ports.
Abstract:
In a method of refreshing in a memory device having a plurality of pages, a candidate refresh address corresponding to a page scheduled to be refreshed after a monitoring period is generated. Whether an active command is processed for the candidate refresh address is monitored during the monitoring period. If an active command is processed for the candidate refresh address during the monitoring period, the scheduled refresh for that page is skipped. If no active command is processed for the candidate refresh address during the monitoring period, the scheduled refresh operation is performed.
Abstract:
A memory module includes a master memory device and at least one slave memory device. The master memory device may generate a refresh clock signal, and perform a refresh operation in synchronization with the refresh clock signal. The slave memory device may be connected to receive the refresh clock signal, and perform a refresh operation in synchronization with the refresh clock signal.