Abstract:
Electronic parts are mounted onto a substrate. A parts supply device holds a plurality of electronic parts and moves to be positioned at a predetermined parts take-out position. The parts supply device includes a readable and writable memory for storing data indicative of the plurality of electronic parts held therein. A reading device reads the data stored in the readable and writable memory provided in the parts supply device when the parts supply device moves relative to the reading device to the predetermined parts take-out position. The electronic part is extracted from the parts supply device position at the predetermined parts take-out position and mounted on a substrate.
Abstract:
An IC component mounting method includes sucking each of different types of IC components at a supply position to which the IC component having an electrode-provided face thereof to be bonded to a circuit board, recognizing an image of the IC component to detect a sucking position at which a sucking nozzle does not interfere with an electrode of the IC component, detecting a height of the sucking position, positioning the sucking nozzle at the sucking position while the position of the sucking nozzle in a vertical direction is controlled, sucking the IC component by a mounting head, recognizing a position of the IC component sucked by the mounting head, and recognizing a reference position of the circuit board or an IC component-mounting position thereof, and positioning the IC component at the IC component-mounting position of the circuit board and then mounting the IC component on the circuit board.
Abstract:
A microcomputer includes an instruction decoder and a program counter. The instruction decoder decodes fetched instructions and outputs a control signal ordering execution of the fetched instruction. The control signal from the instruction decoder includes a component controlling fetch cycles which triggers a fetch cycle at the beginning of each instruction cycle to fetch the operand for the instruction currently being executed and midway through each instruction cycle to fetch the OP code for the next instruction. The program counter is responsive to the triggering of each fetch cycle to increment its counter value so as to keep the counter value consistent with the address being accessed in each fetch cycle.
Abstract:
An apparatus is for mounting electronic parts onto a substrate. The apparatus includes a parts supply device for holding a plurality of electronic parts and for moving to be positioned at a predetermined parts take-out position. The parts supply device includes a readable and writable memory for storing data indicative of the plurality of electronic parts held therein. The apparatus further includes a reading device for reading the data stored in the readable and writable memory provided in the parts supply device when the parts supply device moves relative to the reading device to the predetermined parts take-out position. The electronic part is extracted from the parts supply device position at the predetermined parts take-out position and mounted on a substrate.
Abstract:
A transfer and molding apparatus for transferring an image or pattern from an elongate transfer film to a molded article. The transferring and molding apparatus includes a film feed-out mechanism for feeding the transfer film wound around a supply drum and introducing the transfer film between a stationary mold member and a movable mold member and a film take-up mechanism for taking up the transfer film positioned between the stationary mold member and the movable mold member onto a take-up drum. A longitudinal direction feeding device has a controlling motor for feeding the transfer film in a longitudinal direction thereof from the film feed-out mechanism toward the film take-up mechanism by a predetermined length during each molding cycle, and a longitudinal direction sensor for detects a position setting mark on the transfer film. When the mold is open to separate the stationary and movable mold members, the controlling motor is rotated at a high speed until immediately before an amount of the transfer film being fed reaches a predetermined value and thereafter it is switched to a low speed. Then when the longitudinal direction sensor detects the position setting mark, the controlling motor is once stopped, and thereafter the controlling motor is further rotated by a preset rotational angle.
Abstract:
A compound represented by the following general formula (1), or a salt thereof has serine protease inhibiting activity, and particularly excellent inhibiting activity against clotting factor VIIa. This compound or a salt thereof is useful as therapeutic and/or prophylactic agents for diseases associated with thrombus formation. [wherein R1 represents hydrogen, R2 represents optionally substituted phenyl, etc., R3 represents optionally substituted C6-10 aryl, etc.].
Abstract:
An optical wireless communication device mounted in electronic equipment includes: a light-receiving element for receiving an optical communication signal; and a control unit that monitors a received light output of the light-receiving element. When the control unit determines that the received light output represents the optical communication signal, it selects and executes communication mode for the optical communication signal. When the control unit determines that the received light output does not represent the optical communication signal, it selects and executes charge mode in which the received light output is used as a charge power.
Abstract:
In an optical distance measuring apparatus, a transmitter has a light-emitting device emitting an optical signal synchronized with a modulating signal having a predetermined repetition frequency, and a modulating signal generator outputting the modulating signal to the light-emitting device. A receiver has a photodetector receiving an optical beam reflected by an object to be measured and converting it to an electrical signal, a switch receiving the signal from the modulating signal generator and alternately choosing two channels for the electrical signal with a predetermined timing, and first and second storage sections storing electrical signals on the two channels. A signal processing section has a differential operation section performing a differential operation on electrical signals stored in the first and second storage sections, and a distance determining section determining a distance to the object on the basis of the result of the differential operation of the differential operation section.
Abstract:
A compound represented by the following general formula (1), or a salt or hydrate thereof: [Formula 1] wherein R1 represents a C1-C6 alkyl group or C2-C6 alkynyl group which may be substituted, or a phenyl group which may be substituted, R2 represents a hydrogen atom or a C1-C6 alkyl group, R3 represents methyl or ethyl group, R4 represents a C1-C6 alkyl group, R5 represents a hydrogen atom, provided that a compound wherein R1 is a C1-C6 alkyl group unsubstituted or substituted with a halogen atom and R2 is a hydrogen atom is excluded.
Abstract:
The optical object discriminating device includes a light projecting part which applies light, which is emitted from a semiconductor light emitting element, to a measuring object which is an object to be measured, and a light receiving part which receives reflected light reflected by the measuring object. Between the light receiving part and the measuring object is placed a polarization-state selector part which permits polarized light of a specified polarization direction to pass therethrough. A signal processing part processes a signal outputted by the light receiving part, and measures intensity of light of the polarization direction permitted by the polarization-state selector part to pass therethrough.