Abstract:
A replay device and method thereof with automatic sentence segmentation is provided. A soundwave analysis module receives a soundwave signal and analyzes the soundwave signal to determine plural segmentation points. A replay actuation module receives a replay command and sets a replay endpoint on the soundwave signal. A replay access module sets the nearest segmentation point prior to the replay endpoint as a replay startpoint. A replay module plays the soundwave signal from the replay startpoint to the replay endpoint.
Abstract:
An autostereoscopic display includes a displaying panel, having a pixel array, the pixel array having a plurality of pixel units, and each of the pixel units including multiple view zones in a specific pixel pattern. A plurality of lenticular segments, corresponding to each of the pixel units, forms a plurality of lenticular rows with a number of the lenticular segments for each of the lenticular rows. The lenticular segments in adjacent two of the lenticular rows have an offset and a side edge of each of the lenticular segments does not form a slant straight line.
Abstract:
A bicycle includes a frame, a pedaling device, a sprocket device, a stepping device and a clutch device. The pedaling device is furnished on the frame for a rider to perform pedaling operation. The sprocket device includes an axle pivotally coupled to the frame and a front sprocket rotatably mounted on the axle. The stepping device is connected between the pedal device and the sprocket device for transmitting power from the pedal device to rotate the axle and increasing moment of force of the pedaling operation by a reciprocal stepping operation. The clutch device is furnished on the frame for performing a first position to engage with the front sprocket so that the front sprocket is driven together with the axle by the stepping device to rotate, and a second position to disengage from the front sprocket so that the front sprocket is free from driven by the stepping device.
Abstract:
An electrical connector includes an insulating housing, a shielding shell and a plurality of terminals received in the insulating housing. The insulating housing has a protrusion, a middle of the protrusion protrudes frontward to form an inserting portion, and defines a plurality of first grooves adjacent to the protrusion and a plurality of second grooves connected with the corresponding first grooves. The shielding shell includes a first shielding shell and a second shielding shell, the first shielding shell has a plurality of arms, the second shielding shell defines an opening at a middle thereof, a plurality of splinters bent inward from fringes of the opening, the first shielding shell surrounds the protrusion and the inserting portion with the arms inserted in the corresponding first grooves, the second shielding shell surrounds the insulating housing, the splinters are inserted in the corresponding second grooves and abut against the corresponding arms.
Abstract:
A semiconductor chip package is disclosed. The semiconductor chip package comprises a lead frame having a chip carrier, wherein the chip carrier has a first surface and an opposite second surface. A semiconductor chip is mounted on the first surface, having a plurality of bonding pads thereon, wherein the semiconductor chip has an area larger than that of the chip carrier. A package substrate comprises a central region attached to the second surface, having an area larger than that of the semiconductor chip, wherein some of the bonding pads of the semiconductor chip are electrically connected to a marginal region of the package substrate.
Abstract:
An audio jack connector has an insulating housing having a passageway. A contacting terminal disposed on a side of the passageway has a holding portion and two contacting pieces slanted toward the same side separatively from two opposite ends of the holding portion. A first fixing terminal arranged on a side of the passageway, adjacent to the contacting terminal, has a first fixing slice. The first fixing slice has a side extended obliquely to form a first contacting piece connecting with one contacting piece. A second fixing terminal placed on an opposite side of the passageway has a second fixing slice, a second contacting piece obliquely connected with the second fixing slice for connecting with the other contacting piece. The contacting pieces are forced to slide on and depart from the first contacting piece and the second contacting piece when the contacting terminal is elastically pushed by the inserted plug.
Abstract:
A status sensing mechanism is disclosed, which comprises: a post, and a sleeve, ensheathing the post for enabling the post to slide up and down therein; wherein the post is abutted against a side of the sleeve as the inertial cursor-control device is subject to a first movement while the post is separated from the side of the sleeve as the inertial cursor-control device is subject to a second movement. By the use of the aforesaid status sensing mechanism, an improved cursor-control device can be provided, in which a sensor is used to detect and determine whether the status sensing mechanism is subjecting to the first movement or the second movement so as to issue different electrical signals corresponding to the detection to an inertial cursor processor arranged inside the cursor-control device for directing the inertial cursor processor to perform one of the following operation: (1) to perform a two-dimensional or three-dimension operation with respect to the received electrical signal for controlling the switching of the sensing capabilities of the cursor-control device, that is, the cursor-control device is controlled to be in a mode of two-dimensional detection or in a mode of three-dimensional detection; and (2) to perform either a displacement locking operation for freeing the cursor from the control of the cursor-control device, or a calculation of displacement for directing the cursor to move accordingly.
Abstract:
An inertial sensing method is disclosed, which is capable of detecting tilting of an inertial sensing apparatus with respect to a specific level surface while using the detection for defining/controlling movements of a cursor displayed on a display, In a preferred aspect, as it is capable of acting as an hand-held input device, a swing of a hand holding the inertial sensing apparatus can be detected thereby and is used for controlling a page change of a display. Operationally, a micro inertial sensing module of the aforesaid inertial sensing apparatus detects changes of gravity caused by tilts of the inertial sensing apparatus and then generates inclination signals accordingly while enabling a wireless transmitter to send the same to a micro processing unit where the inclination signals are filtered and then compared with predefined datum signals so as to enable a cursor control circuit to define/control movements of a cursor displayed on a display according to the comparison. In addition, an effect of vibration measured along an axis of a Cartesian coordinate system of X-, Y-, and Z-axes defining the inertial sensing apparatus can be eliminated by the use of variations of signals measured along other axes of the Cartesian coordinate system. Preferably, by using two Y-axis accelerometers of the micro inertial sensing module to measure a difference of centrifugal forces detected respectively thereby, the adverse affection of centrifugal forces exerting upon the Y-axis can be eliminated.
Abstract:
A plug connector connected with a cable has a base and an insertion portion at a front of the base. A terminal is fixed to the base, having a soldering slice connecting with the cable. A first shell is coupled with the insertion portion. A second shell coupled with the base has a lip plate covering a top surface of the base. An edge of the lip plate is extended to form a lateral plate at a front thereof, attached to a side of the base, and a connecting arm at a rear thereof and extending apart from the lateral plate. An opposite edge of the lip plate is extended to form a parcel plate bent around the base to connect the lateral plate. The parcel plate has a support arm extending beneath the connecting arm to form a passageway for allowing the cable to pass therethrough.
Abstract:
A sliding mechanism is disclosed, wherein the sliding mechanism movably connects to a display module and an input module of an electronic device. The sliding mechanism includes a first member, a second member, a connection member, and a cover movably disposed on the first member. The first member is movable with respect to the second member and has an opening. A flexible printed circuit (FPC) of the electronic device is disposed through the opening and electronically connects to the display module and the input module. The connection member connects the first and second members at opposite sides thereof, and a middle portion of the connection member connects to the cover. When the first member slides with respect to the second member in a first direction, the connection member impels the cover to block a part of the opening.