Abstract:
A fan rotor protection structure includes a fan wheel and an annular member. The fan wheel has a hub and a plurality of blades. The hub has a top portion and a side wall portion, which together define a receiving space in the hub. The annular member has one side aligned with and connected to an end surface of the side wall portion opposite to the top portion, and defines an opening communicable with the receiving space in the hub. With the annular member, foreign matters are stopped from entering into and accumulating in the fan rotor, enabling largely increased fan service life and more stable flow field around the fan.
Abstract:
A cooling fan structure includes a hub, a rotary shaft, a fan seat, and a stator assembly. The fan seat is provided on around a front end corresponding to a rear end of the hub with a forward protruded annular rim portion and a sunken annular groove portion adjoining an inner lower side of the rim portion. The protruded annular rim portion reduces a gap between the hub and the fan seat to reduce the amount of air flowing into the hub via the gap and accordingly prevents external foreign matters from invading the hub via the same gap to adversely damage components inside the hub or cause a stuck hub; and the groove portion provides an additional space for receiving invaded and accumulated foreign matters to thereby reduce the possibility of a stuck hub. With these arrangements, the cooling fan can have prolonged service life.
Abstract:
A mobile communication device operating as a Mobile Terminal (MT) with multiple processor logics is provided. In the mobile communication device, a first processor logic is configured for sending an Activate PDP (Packet Data Protocol) Context Request message to a service network, a second processor logic is configured for receiving an Activate PDP Context Accept message indicating a PDP address from the service network, and a third processor logic is configured for indicating an interface identifier and a prefix obtained from the PDP address to a Terminal Equipment (TE), so that the TE constructs an IPv6 address based on the prefix and interface identifier.
Abstract:
A motor control method comprises: inputting a PWM signal into a control unit for the control unit to obtain a direction command and a speed command by an identification rule, and generating a control signal according to the direction and speed commands by the control unit; and generating a driving signal according to the control signal by the driving unit for driving a motor to operate according to the direction and speed commands.
Abstract:
A double-layer switchable stereo liquid crystal display includes a timing controller, a microprocessor, a backlight module, a first liquid crystal panel, a controller, and a second liquid crystal panel. The timing controller receives an image signal and generates a left/right eye signal and a two-dimensional/three-dimensional control signal. The microprocessor outputs the image signal, and generates a control signal and a backlight control signal according to output timing of the image signal. The first liquid crystal panel receives and displays the image signal. The controller outputs a voltage control signal according to the control signal. The second liquid crystal panel rotates liquid crystal within the second liquid crystal panel according to the voltage control signal. A period for the second liquid crystal panel rotating the liquid crystal to a second angle is longer than a period for the second liquid crystal panel rotating the liquid crystal to a first angle.
Abstract:
The embodiments of methods and structures disclosed herein provide mechanisms of forming and programming a metal-via fuse. The metal-via fuse and a programming transistor form a one-time programmable (OTP) memory cell. The metal-via fuse has a high resistance and can be programmed with a low programming voltage, which expands the programming window.
Abstract:
A manufacturing method of a depletion mode trench semiconductor device includes following steps. Firstly, a substrate including a drift epitaxial layer disposed thereon is provided. A trench is disposed in the drift epitaxial layer. A gate dielectric layer is formed on an inner sidewall of the trench and an upper surface of the drift epitaxial layer. A base doped region is formed in the drift epitaxial layer and adjacent to a side of the trench. A thin doped region is formed and conformally contacts the gate dielectric layer. A gate material layer is formed to fill the trench. A source doped region is formed in the base doped region, and the source doped region overlaps the thin doped region at a side of the trench. Finally, a contact doped region is formed to overlap the thin doped region, and the contact doped region is adjacent to the source doped region.
Abstract:
A cooling fan structure includes a hub, a rotary shaft, a fan seat, and a stator assembly. The fan seat is provided on around a front end corresponding to a rear end of the hub with a forward protruded annular rim portion and a sunken annular groove portion adjoining an inner lower side of the rim portion. The protruded annular rim portion reduces a gap between the hub and the fan seat to reduce the amount of air flowing into the hub via the gap and accordingly prevents external foreign matters from invading the hub via the same gap to adversely damage components inside the hub or cause a stuck hub; and the groove portion provides an additional space for receiving invaded and accumulated foreign matters to thereby reduce the possibility of a stuck hub. With these arrangements, the cooling fan can have prolonged service life.
Abstract:
A mobile communication device operating as a Mobile Terminal (MT) with multiple processor logics is provided. In the mobile communication device, a first processor logic is configured for sending an Activate PDP (Packet Data Protocol) Context Request message to a service network, a second processor logic is configured for receiving an Activate PDP Context Accept message indicating a PDP address from the service network, and a third processor logic is configured for indicating an interface identifier and a prefix obtained from the PDP address to a Terminal Equipment (TE), so that the TE constructs an IPv6 address based on the prefix and interface identifier.