Abstract:
A method and apparatus for beam detection in a wireless communication system. In one embodiment, the method includes the UE initiating a RA procedure. The method also includes the UE transmitting multiple RA preambles to a base station of the cell at different occasions for the base station to determine a beam set of the UE. The method further includes the UE starts monitoring a PDCCH for RA response reception from the base station after finishing transmissions of the multiple RA preambles.
Abstract:
A charging method and a portable electronic device using the same are provided. The charging method includes following steps: detecting a battery voltage and a charging current of a battery module; determining whether the portable electronic device operates at a constant voltage (CV) charging mode; executing an impedance calculation at the CV charging mode to obtain a first battery voltage corresponding to a first predetermined current and a second battery voltage corresponding to a second predetermined current; calculating a compensation impedance according to the predetermined current and the battery voltages; setting a maximum charging voltage according to the compensation impedance and executing a CV charging to the battery module accordingly; determining whether a current variation of the charging current is larger than a threshold value; re-executing the impedance calculation; updating a setting value of the maximum charging voltage when the current variation is larger than the threshold value.
Abstract:
An image capturing method of a touch display module is disclosed. The image capturing method includes the steps of defining a first axial; defining a second axial which is perpendicular to the first axial; detecting a motion track on the touch display module, wherein the motion track includes at least an angle or a curve; calculating a first length which is the length of the motion track projecting to the first axial; calculating a second length which is the length of the motion track projecting to the second axial; and capturing a selecting range according to the first length and the second length. This invention also discloses an electronic device.
Abstract:
A cross-account notification method and an electronic device using the same are provided. The method includes: tagging multiple application programs of multiple accounts of the electronic device; receiving a first notification of the tagged first application program of the first account; determining whether the first notification needs to be transmitted to a second account according to a notification setting; transmitting the first notification to the second account according to the notification setting.
Abstract:
A short-circuit protection circuit adapted to a voltage regulator module is provided. The voltage regulator module includes a high side transistor and a low side transistor. The short-circuit protection circuit includes a short-circuit detecting circuit, a first switch, and a second switch. The short-circuit detecting circuit includes a detecting terminal coupled with the high side transistor. The high side transistor is connected with the low side transistor and a load, and the low side transistor is coupled with a ground. The first switch is connected with the low side transistor in parallel. The second switch coupled between the high side transistor and the power supply. The first switch is turned on before the power supply is powered on, the short-circuit detecting circuit sends a detecting voltage to the high side transistor via the detecting terminal to determine whether the high side transistor is short-circuited to control to second switch.
Abstract:
A method and apparatus are disclosed for handling multiple D2D grants for multiple sidelinks in decreasing order of priority. In one embodiment, the method includes a first UE participates in a first sidelink and a second sidelink, wherein a priority of the first sidelink is higher than a priority of the second sidelink. The method also includes the first UE receiving a first D2D grant and a second D2D grant from a base station in a first SA period. The method further includes the first UE serving the first sidelink with the first D2D grant and afterward, the first UE cannot serve the first sidelink with another D2D grant for the same SA period as the first D2D grant. In addition, the method includes the first UE serving the second sidelink with the second D2D grant and afterward, the first UE cannot serve the second sidelink with another D2D grant for the same SA period as the second D2D grant. Furthermore, the method includes the first UE using the first D2D grant for transmitting available data of the first sidelink and using the second D2D grant for transmitting available data of the second sidelink in a second SA period, wherein the second SA period and the first SA period are different SA periods.
Abstract:
A method and apparatus of a UE are disclosed. In one embodiment, the method includes the UE receiving a superposed signal from a BS. The method also includes the UE receiving a signaling from the BS and getting information from the signaling about a first standard modulation scheme for demodulation and a specific indication of how to retrieve at least one transport block from the demodulation output. In addition, the method includes the UE demodulating the superposed signal received from the BS according to the first standard modulation scheme, retrieving at least one transport block from the demodulation output according to the specific indication, and ignoring other portion(s) of the demodulation output.
Abstract:
A computer system and its booting and setting method are disclosed. Power supplying and a booting process of the computer system are controlled by a basic input/output system (BIOS). The computer system includes a super input/output chip, a south bridge chipset, and a power supply module. The super input/output chip includes a timer. A counting time is set by the BIOS and the timer counts down when booting the computer system, wherein the counting time is longer than a normal booting time. The south bridge chipset is electrically connected with the super input/output chip and exchanges data between a south bridge chipset and a peripheral device. The power supply module is used for providing power to the computer system. The BIOS controls the timer to stop counting down when the computer system is capable of booting normally.