Abstract:
A method for performing system power budgeting within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and performing configuration adjustment on at least one portion of the electronic device according to the power consumption index corresponding to the specific subsystem.
Abstract:
A method for performing system power control within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and triggering a power limiter protection operation for the electronic device according to the power consumption index. For example, the power consumption index corresponding to the specific subsystem may represent a power consumption value of the specific subsystem, and the method may further include: comparing the power consumption value of the specific subsystem with a peak power threshold to determine whether the power consumed by the specific subsystem reaches the peak power threshold to generate a determining result, for triggering the power limiter protection operation.
Abstract:
A controller coupled to a plurality of hardware modules is arranged for determining activities of at least two of the hardware modules in real time, and determining a voltage and a frequency for one of the hardware modules according to the activities of the at least two of the hardware modules.
Abstract:
A method for performing system power budgeting within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and performing configuration adjustment on at least one portion of the electronic device according to the power consumption index corresponding to the specific subsystem.
Abstract:
A method for performing system power control within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and triggering a power limiter protection operation for the electronic device according to the power consumption index. For example, the power consumption index corresponding to the specific subsystem may represent a power consumption value of the specific subsystem, and the method may further include: comparing the power consumption value of the specific subsystem with a peak power threshold to determine whether the power consumed by the specific subsystem reaches the peak power threshold to generate a determining result, for triggering the power limiter protection operation.
Abstract:
A method for performing system power control within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and triggering a power limiter protection operation for the electronic device according to the power consumption index. For example, the power consumption index corresponding to the specific subsystem may represent a power consumption value of the specific subsystem, and the method may further include: comparing the power consumption value of the specific subsystem with a peak power threshold to determine whether the power consumed by the specific subsystem reaches the peak power threshold to generate a determining result, for triggering the power limiter protection operation.
Abstract:
A method for performing system power budgeting within an electronic device and an associated apparatus are provided. The method includes the steps of: utilizing a power consumption index generator positioned in a specific subsystem to generate a power consumption index corresponding to the specific subsystem, where the electronic device includes a plurality of subsystems, and the specific subsystem is one of the plurality of subsystems; and performing configuration adjustment on at least one portion of the electronic device according to the power consumption index corresponding to the specific subsystem.
Abstract:
Method and apparatus are provided for thermal management of mobile devices. In one novel aspect, a throttle method is used to control the fast rising temperature for the device. In one embodiment, the thermal management method determines a temperature of the mobile device and compares the temperature with a plurality of predefined temperature thresholds. The thermal management applies a first throttle solution upon detecting the temperature reaches a first predefined temperature threshold and applies a second throttle solution upon detecting the temperature reaches a second predefined temperature threshold. In one embodiment, the first and the second throttle solutions control the slope of the rising temperature to be below a first predefined slope and a second predefined slope, respectively. In one embodiment, the temperature is controlled by adjusting the operating frequency and/or voltage of at least one heat-generating component of the mobile device.
Abstract:
Method and apparatus are provided for thermal management of mobile devices. In one novel aspect, a micro-throttle method is used to control the fast rising temperature for the device. In one embodiment, the thermal management method determines a temperature of the mobile device and compares the temperature with a plurality of predefined temperature thresholds. The thermal management applies a first micro-throttle solution upon detecting the temperature reaches a first predefined temperature threshold and applies a second micro-throttle solution upon detecting the temperature reaches a second predefined temperature threshold. In one embodiment, the first and the second micro-throttle solution control the slope of the rising temperature to be below a first predefined slope and a second predefined slope, respectively. In one embodiment, the temperature is controlled by adjusting the operating frequency or voltage of at least one heat-generating component of the mobile device.
Abstract:
Method and apparatus are provided for thermal management of mobile devices. In one novel aspect, a micro-throttle method is used to control the fast rising temperature for the device. In one embodiment, the thermal management method determines a temperature of the mobile device and compares the temperature with a plurality of predefined temperature thresholds. The thermal management applies a first micro-throttle solution upon detecting the temperature reaches a first predefined temperature threshold and applies a second micro-throttle solution upon detecting the temperature reaches a second predefined temperature threshold. In one embodiment, the first and the second micro-throttle solution control the slope of the rising temperature to be below a first predefined slope and a second predefined slope, respectively. In one embodiment, the temperature is controlled by adjusting the operating frequency or voltage of at least one heat-generating components of the mobile device.