Abstract:
The present invention is a method and apparatus for positioning a read/write head in a hard disk drive. The method comprises providing a disk having a at least one side with a plurality of tracks, where each of the tracks has a servo field with servo bits. The servo bits are read to provide a position signal for positioning a read/write head. The method determines a difference in position between an initial and a subsequent position of the read/write head on a track, where the subsequent location occurs after the read/write head has moved one revolution from the initial position on the track. The initial and subsequent positions are offset laterally. The method generates a compensation signal based on the initial position, the subsequent position and the difference. The position signal and the compensation signal are combined to provide a compensated position signal for positioning the read/write head. Various embodiments are described.
Abstract:
A system for and a method of providing an integrated communications and broadcasting service are provided. This system includes a transmitter and a receiver. The transmitter RF-multiplexes a CATV broadcasting signal and a satellite broadcasting signal, converts the RF-multiplexed broadcasting signal into an RF-multiplexed broadcasting optical signal having a predetermined wavelength, multiplexes the broadcasting optical signal with an Internet data signal, and transmits an integrated communications and broadcasting optical signal via a predetermined optical fiber. The receiver receives the integrated communications and broadcasting optical signal from the transmitter, demultiplexes the received signal according to a wavelength band to separate the received signal into the broadcasting optical signal and the Internet data signal, separates the broadcasting optical signal into the CATV broadcasting signal and the satellite broadcasting signal using the difference between wavelength bands of the CATV broadcasting signal and the satellite broadcasting signal, and transports the separated signals to appropriate terminals.
Abstract:
A method for forming a contact hole in a semiconductor device is disclosed. The method for forming a contact hole in a semiconductor device comprises depositing a nitride layer and an ILD on a substrate including predetermined devices; forming a first photoresist pattern on the ILD and making a via hole by using the first photoresist pattern; performing a first ashing process; forming a second photoresist pattern on the ILD and making a trench using the second photoresist pattern; conducting a PET; performing a second ashing process and etching the predetermined portion of the nitride layer exposed through the via hole; and wet-cleaning the resulting structure. Accordingly, the present disclosure can fabricate a contact hole maximizing the characteristics of a semiconductor device just by performing a Post Etching Treatment after a trench is formed.
Abstract:
A data strobe circuit is configured to generate an internal strobe signal for latching data in response to a clock signal. The data strobe circuit using a clock signal comprises an external input processing unit, a clock signal processing unit and a strobe signal output unit. The external input processing unit performs a logic operation on an externally applied data strobe signal and a reference voltage, and outputs the result of the logic operation in response to a clock enable signal and an internal control signal. The clock signal processing unit selectively outputs an external clock signal in response to the clock enable signal. The strobe signal output unit performs a logic operation on output signals from the external input processing unit and the clock signal processing unit, and selectively outputs one of the output signals from the external input processing unit and the clock signal processing unit as an internal data strobe signal.
Abstract:
A lamp driving device for driving a plurality of lamps in a liquid crystal display device and a liquid crystal display device using a lamp driving device are provided. The lamp driving device includes an inverter substrate, a plurality of transformers on the inverter substrate to supply a high voltage AC waveform to each of the lamps; and a plurality of pattern capacitors on the inverter substrate to limit the electric current supplied to each of the lamps. The patterns capacitors have a plurality of capacitor patterns on a front surface of the inverter substrate with a designated distance therebetween and a first ground line on a rear surface of the inverter substrate overlapping the capacitor patterns.
Abstract:
Provided are an optical network unit (ONU) and method for servicing Ethernet-based digital cable broadcasting. The ONU includes a received frame classifier, which receives an Ethernet frame from an OLT and classifies the Ethernet frame into a digital broadcasting frame or a nonbroadcasting frame; a broadcasting frame classifier, which sorts the digital broadcasting frame according to a channel; and a broadcasting frame processing unit, which examines a channel requested by a subscriber and transmits a broadcasting frame corresponding to the channel to the subscriber.
Abstract:
The present invention relates to an invisible passenger airbag door, and more particularly, to an invisible passenger airbag door that is constructed by defining an incision portion through processing of micro holes on an instrument panel. In the invisible passenger airbag door, an incision portion is constructed at a portion of an instrument panel where a passenger airbag is installed, by processing micro holes at a corresponding portion of an inner surface of the instrument panel to conform to an outer contour of the passenger airbag. The micro holes constructing the incision portion are filled with a filling material that comprises fine particles with no viscosity.
Abstract:
A lightweight and compact super-insulation system that is also capable of supporting a high level of compressive load is described. The system utilizes spacers to provide structural support and utilize controlled buckling of a thin protective outer skin supported by spacers to form strong catenary surfaces to protect insulation material underneath. The spacers may comprise an aerogel, or an aerogel may provide insulation separate from the spacer yet contained within the thin outer skin. The system will be useful for thermal management of variety of deep underwater structures such as pipe-in-pipe apparatus, risers or subsea trees for ultra-deep water oil-and-gas exploration.
Abstract:
An integrated circuit package includes an inductance loop formed from a connection of lead wires and one or more input/output (I/O) package pins. In one embodiment, the inductance loop is formed from first and second wires which connect a first bonding pad on the integrated circuit chip to a first I/O pin of the package and a third and fourth wires which connect a second bonding pad on the chip to a second I/O pin of the package. To complete the inductor loop, the first and second I/O pins are connected by a third conductor between the pins. The third conductor may include one or more bonding wires and the I/O pins are preferably ones which are adjacent one another. However, the loop may be formed from non-adjacent connections of I/O pins based, for example, on loop-length requirements, space considerations, and/or other design or functional factors. In another embodiment, connection between the first and second I/O pins is established by making the I/O pins have a unitary construction. In another embodiment, connection between the first and second I/O pins is established by a metallization layer located either on the surface of the package substrate or within this substrate. By forming the inductor loop within the limits of the integrated circuit package, a substantial reduction in space requirements is realized, which, in turn, promotes miniaturization. Also, the integrated circuit may be implemented in any one of a variety of systems, at least one parameter of which is controlled by the length of the inductor loop of the package.
Abstract:
A mechanism for implementing time tracking and early/ontime/late correlation processing in a vector correlator has been implemented to accommodate processing of data when the earliest chips in a triple data input buffer are to be processed and time tracking needs to be done to an earlier sample and further to accommodate processing of data when chips being processed are the last chips in a circular input buffer and time tracking needs to be done to a later sample.