Abstract:
Systems and methods are disclosed for managing the peak power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.
Abstract:
CONTROLLING AND STAGGERING OPERATIONS TO LIMIT CURRENT SPIKES Abstract of the Disclosure Systems and methods are disclosed for managing the peak 5 power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller 10 may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.
Abstract:
Systems and methods are disclosed for managing the peak power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.
Abstract:
operações de controle e escalonamento para limitar os picos de corrente. a presente invenção refere-se a sistemas e métodos que são divulgados para gerenciar o consumo de energia de pico de um sistema, tal qual um sistema de memória não volátil (por exemplo, o sistema de memória flash). o sistema pode incluir vários subsistemas e um controlador para controlar os subsistemas. cada subsistema pode ter um perfil de corrente que atinge picos. desta forma, o controlador pode controlar a potência de pico do sistemas através, por exemplo, da limitação do número de subsistemas que podem executar operações de uso intenso de energia ao mesmo tempo ou pelo auxílio a um subsistema na determinação da potência de pico que o subsistema pode consumir a qualquer dado momento.
Abstract:
CONTROLLING AND STAGGERING OPERATIONS TO LIMIT CURRENT SPIKES Abstract of the Disclosure Systems and methods are disclosed for managing the peak 5 power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller 10 may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.
Abstract:
CONTROLLING AND STAGGERING OPERATIONS TO LIMIT CURRENT SPIKES Abstract of the Disclosure Systems and methods are disclosed for managing the peak 5 power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller 10 may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.
Abstract:
Se divulgan sistemas y métodos para la gestión del consumo de picos de corriente de un sistema, como por ejemplo sistema de memoria no volátil (por ejemplo sistema de memoria flash). El sistema puede incluir múltiples subsistemas y un controlador para controlar los subsistemas. Cada subsistema puede tener un perfil de corriente que tenga picos o variaciones. De esta forma, el controlador, puede controlar el poder máximo del sistema mediante, por ejemplo, limitar el número de subsistemas que pueden realizar operaciones de máxima potencia al mismo tiempo al ayudar a un subsistema a determinar la corriente máxima que un subsistema puede consumir en un determinado momento.
Abstract:
The disclosed architecture uses address mapping to map a block address on a host interface to an internal block address of a non-volatile memory (NVM) device. The block address is mapped to an internal chip select for selecting a Concurrently Addressable Unit (CAU) identified by the block address. The disclosed architecture supports generic NVM commands for read, write, erase and get status operations. The architecture also supports an extended command set for supporting read and write operations that leverage a multiple CAU architecture.
Abstract:
Systems and methods are disclosed for managing the peak power consumption of a system, such as a non-volatile memory system (e.g., flash memory system). The system can include multiple subsystems and a controller for controlling the subsystems. Each subsystem may have a current profile that is peaky. Thus, the controller may control the peak power of the system by, for example, limiting the number of subsystems that can perform power-intensive operations at the same time or by aiding a subsystem in determining the peak power that the subsystem may consume at any given time.