Abstract:
The present invention relates to a storing structure of a wireless mouse for storing a wireless signal receiver therein. The storing structure of the wireless mouse includes a cover member, a carrier and a carrier door. The cover member includes a receiving portion therein. The carrier is disposed in the receiving portion and movable to be protruded from the cover member. The carrier door is pivotally coupled to the carrier.
Abstract:
A device capable of video data processing includes a first unit capable of analyzing at least one motion vector of a macroblock to determine at least one sub-region in at least one reference, each of the at least one sub-region corresponding to one of the at least one motion vector, a second unit capable of storing pixel data of each of the at least one sub-region, a third unit capable of storing an address of each of the at least one reference block, and a fourth unit capable of retrieving from a memory device compensation data corresponding to the address of each of the at least one reference block.
Abstract:
A wireless mouse includes a housing, a rubbery cover and a wireless signal receiver. The housing has a receptacle therein for accommodating the wireless signal receiver therein. The receptacle has an entrance exposed from the housing. The rubbery cover can be plugged into the entrance of the receptacle to close the receptacle.
Abstract:
A fish aquarium has a connecting slice, a first side-slice and a second side-slice. The connecting slice has a joint and two thermal-pressed sections. The first side-slice is attached to one of the thermal-pressed sections and has a printed pattern and a buckled chain mounted on the first side-slice near the distal edge. The second side-slice is attached to the other thermal-pressed section and has a buckled chain near the distal edge to engage with the buckled chain of the first side slice. The first side-slice and the second side-slice are combined together with a thermal compression process to form a thermal-sealed segment, a thermal-seal line, an interior space and an opening between the side-slices.
Abstract:
A high-voltage device structure includes a high-voltage device disposed on a semiconductor substrate. The semiconductor includes an active region and an isolation region, and the high-voltage device is disposed in the active region. The high-voltage device structure includes a source diffusion region of a first conductive type, a drain region of the first conductive type, and a gate longer than the source diffusion region and the drain diffusion region so as to form spare regions on both sides of the gate. The isolation region is outside the active region and surrounds the active region. In the isolation region, an isolation ion implantation region of a second conductive type and an extended ion implantation region are disposed to prevent parasitic current from being generating between the source diffusion region and the drain diffusion region.
Abstract:
An inertial positioning system is disclosed, which includes at least one sensor, an inertial processing unit, a step-distance determination module, a external positioning module, a Kalman filter and an output terminal, wherein the step-distance determinate module estimates an inertial step-distance via analyzing peak values of velocity and time intervals, and in addition, the external positioning module provides a precise initial state to effectively constrain error of the estimated step-distance.
Abstract:
An improved structure of a photo sensor is disclosed. Its structural feature is that a PIN photo diode is allocated in a MOSFET, by means of enlarging the detected small photo current from PIN photo diode by the MOSFET; so as to avoid the shortcoming of conventional PIN photo diode, and enhance the sensitivity of photo sensing.
Abstract:
A flash memory cell is fabricated by forming a lightly-doped region with only an implantation procedure to avoid lateral diffusion resulting from an increased overlap between the source region and gate as well as a short channel effect, while surrounding the source region with the lightly-doped region to thereby increase the breakdown voltage between the source region and the substrate.
Abstract:
A magnetic induction assembly includes a magnetic core, a primary winding, a secondary winding and a base. The primary winding is wound by a wire. The secondary winding is a conductive plate having an open loop and two contact ends. The base has a body having a through hollow. A surface of the body is formed with n partitions, where n is greater than or equal to 1. The partitions divide the body into n+1 winding areas for being selectively wound by the wire. Each of the partitions has a chamber, a through hole communicating with the through hollow and an opening allowing the secondary winding to enter the chamber. The magnetic core passes through the through hollow, the through holes and the loop of the conductive plate to magnetically couple with the primary winding and the secondary winding.
Abstract:
A coil module includes a first coil set and a second coil set. The first coil set has an isolation frame. The second coil set has an open first winding body. The first winding body has two ends which are out of contact with each other. One of the two ends has a first conductive portion projecting from the first winding body. The other one of the two ends has a connecting end from which an open second winding body is integratedly outward extended. A terminal of the second winding body has a second conductive portion which is outward protrudent. The connecting end comprises a bent portion which makes the second winding body and the first winding body arranged in the same direction so that the second winding body and the first winding body are attached on two opposite sides of the isolation frame.