Abstract:
An optical disc drive is provided. The optical disc drive includes a housing having a protruding pin, an optical head engaged to a lead screw, a tray slidably disposed in the housing and a tray locking device disposed on the tray. The tray locking device includes a pushing member, wherein the pushing member and the optical head are driven by the lead screw to move, a latching hook used to latch and release the protruding pin, and a transmission assembly disposed between the pushing member and the latching hook. The transmission assembly has a driving portion disposed on a moving path of the pushing member, wherein the pushing member pushes the driving portion so that the transmission assembly is actuated and drives the latching hook to release the protruding pin.
Abstract:
An optical pick-up head module includes a base, an optical pick-up head adjusting mechanism, two guiding rods, a spring and an optical pick-up head slidably disposed on the guiding rods. The optical pick-up head adjusting mechanism includes a protrusion, a pillar and an adjusting element. The protrusion connected to the base has a sliding slot. The pillar having first and second flat surfaces is slidably disposed in the sliding slot. The first flat surface contacts an inner wall of the sliding slot. The adjusting element is screwed on the base. The spring disposed on the base pushes the pillar to contact the adjusting element by the second flat surface. When the adjusting element is rotated, the adjusting element pushes the pillar toward the base.
Abstract:
A low drop-out (LDO) voltage regulator with efficient frequency compensation is disclosed. The LDO voltage regulator includes an error amplifier, a transmission element, a voltage divider and a pole control unit. The error amplifier generates a control signal according to a reference voltage and a feedback voltage. The transmission element is coupled to the error amplifier, and adjusts an input voltage to generate an output voltage according to the control signal. The voltage divider is coupled to the transmission element, and performs a voltage division operation on the output voltage to generate the feedback voltage. The pole control unit is coupled to the transmission element, and provides and adjusts an output capacitor of the LDO voltage regulator to fix a frequency of a pole according to variation of an output impedance of the transmission element, so as to maintain loop stability.
Abstract:
An analog-to-digital converter includes a sample and hold unit, a successive control unit, a look-up memory, and a calibrating comparator, which further includes a positive input end, a negative input end, a timing signal input end, a data port, a latch unit, an enable switch, a first controllable resistor, a second controllable resistor, a reset switch assembly, a controllable capacitive device, and an output end.
Abstract:
A phase selector is disclosed. The phase selector is utilized for outputting an output clock to a flip-flop according to an input data signal latched by the flip-flop. The phase selector includes: a clock phase adjustor, for adjusting the delay of an input clock to generate a first clock and a second clock, wherein the clock phases of the first clock and the second clock are different; a phase detector, for detecting phase relation between the input data signal and the first clock to generate a detecting signal; a decision circuit, coupled to the phase detector, for generating a selecting signal according to the detecting signal; and a selection circuit, coupled to the decision circuit, for selecting the input clock or the second clock to generate the output clock to the flip-flop according to the selecting signal.
Abstract:
The present invention provides a data latch circuit. The data latch circuit includes a first data latch unit, a second data latch unit, a third data latch unit, and a phase selector. The first data latch unit is used for latching a first input data according to a first clock signal and outputting a first output data. The second data latch unit is used for latching the first output data according to a second clock signal and outputting a second output data. The third data latch unit is used for latching the second output data according to a third clock signal and outputting an output data. The phase selector is coupled to the second data latch unit for generating the second clock signal to the second data latch unit according to phase relation between the first clock signal and the third clock signal.
Abstract:
The present invention discloses a time-interleaved analog-to-digital converter (ADC), which includes a first and a second sub-ADC and a calibration module. The calibration module includes a switch module and a calibration engine. The switch module selectively provides one of a set of reference voltage levels, which are provided by a resistor series of the first sub-ADC, onto an input signal line, which is shared by the first and the second sub-ADCs. The calibration engine calibrates pre-amplifying units of the first and the second sub-ADCs according to digital signals generated by the first and the second sub-ADCs.
Abstract:
A calibration device for calibrating an ADC comprising: an error estimator for estimating an error of a digital signal outputted from the ADC, the error estimator includes: a digital filter for filtering the digital signal to generate a filtered signal; and a least-mean-square module for performing a least-mean-square operation according to the filtered signal to generate an estimated error; and an error correction module for correcting the digital signal according to the estimated error.
Abstract:
A fixing structure without any fixing member is disclosed. The fixing structure is able to be installed in a housing of an electronic device for fixture of a driver. The fixing structure includes at least a supporting member fixed to the housing of the electronic device, and an elastic member connected to the driver. The driver is able to be fixed to the fixing structure through a fixing action achieved by the supporting member and the elastic member.
Abstract:
A fixing structure of battery module for fixing a battery module in an electronic device is proposed. The fixing structure includes a first lid and a second lid, which are formed on a surface of the electronic device, wherein the first lid is formed with a first fastening part, and the second lid is formed with a second fastening part for being engaged with the first fastening part; a mounting cavity formed in the electronic device at a position corresponding to the second lid; a first locking part formed on the second lid; and a second locking part formed on the battery module, for being coupled to the first locking part so as to fasten the battery module to the second lid. When the first and second lids are coupled together by the first and second fastening parts, the battery module fastened to the second lid is received in the mounting cavity and fixed in the electronic device.