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| № |
Patent number |
Title of the invention and abstract piece | Date of publication of the patent |
|---|---|---|---|
| 1 | JP2008090661A |
COMPUTER PROGRAM FOR CONTROLLING PRINT ENVIRONMENT SETTING, COMPUTER PROGRAM FOR MANAGING A PLURALITY OF PRINT ENVIRONMENT SETTINGS, PRINTING CONTROL DEVICE, AND PRINT SYSTEM
PROBLEM TO BE SOLVED: To easily switch between print environment setting for front surfaces and print environment setting for back surfaces in automatic double side printing. SOLUTION: This computer program controls the print environment setting when printing is executed by a computer having a print environment preparing/managing function of preparing a plurality of mutually different print... |
17.04.2008 |
| 2 | JP2008090783A |
METER BOX MONITOR OF TELEMETER SYSTEM
PROBLEM TO BE SOLVED: To quickly detect an abnormality such as removing, opening, or disassembling a meter box and to enable the user-side device to report the abnormality to the center-side device. SOLUTION: The user-side device of a telemeter system is installed in a meter box including communication modules transmitting and receiving a read value and control information of a meter readin... |
17.04.2008 |
| 3 | JP2008090784A |
BUSINESS INFORMATION MANAGEMENT SYSTEM, BUSINESS INFORMATION MANAGEMENT METHOD, AND BUSINESS INFORMATION MANAGEMENT PROGRAM
PROBLEM TO BE SOLVED: To prevent when data on business information are altered, other data which become necessary in association with the alteration of the data from being left unaltered. SOLUTION: A business information management system 10 is provided with; a data-connective relation information storage part 13 which stores connective relations of data which composes a business informatio... |
17.04.2008 |
| 4 | JP2008091035A |
NEGATIVE ELECTRODE FOR LITHIUM ION SECONDARY BATTERY, AND ITS MANUFACTURING METHOD
PROBLEM TO BE SOLVED: To provide a negative electrode for a lithium ion secondary battery in which an active material is neither peeled off nor falls from a copper foil that is of a current collector even if charge and discharge are repeated while having high discharge capacity and which is superior in cycle characteristics. SOLUTION: Sn or Sn alloy (Sn-Cu, Sn-Fe, Sn-Co, Sn-Ag, and Sn-Sb or... |
17.04.2008 |
| 5 | JP2008091041A |
NONAQUEOUS SECONDARY BATTERY
PROBLEM TO BE SOLVED: To obtain a battery of high capacity and superior in output characteristics in a nonaqueous electrolyte secondary battery using a lithium nickel manganese complex oxide containing lithium at a transition metal site as a positive electrode active material. SOLUTION: In the nonaqueous electrolyte secondary battery with a positive electrode containing the positive electro... |
17.04.2008 |
| 6 | JP2008091054A |
NONAQUEOUS ELECTROLYTE SECONDARY BATTERY
PROBLEM TO BE SOLVED: To provide a nonaqueous electrolyte secondary battery in which breakage of an electrode plate at winding up is eliminated, which is high in productivity and superior in electric characteristics, and which has high capacity. SOLUTION: An interface of an electrode mixture and a core material of a positive electrode in which an electrode mixture layer in which a lithium c... |
17.04.2008 |
| 7 | JP2008091056A |
LEAD ACID BATTERY
PROBLEM TO BE SOLVED: To provide a lead acid battery in which reduction of discharge capacity is suppressed and which is not damaged even by combustion of a retention gas. SOLUTION: An electrode plate group consisting of a positive electrode plate, a negative electrode plate, and a separator is housed in a cell chamber and a filling material having a through hole in a space upward the elect... |
17.04.2008 |
| 8 | JP2008091065A |
LIQUID INJECTION METHOD AND LIQUID INJECTION DEVICE OF LITHIUM SECONDARY BATTERY
PROBLEM TO BE SOLVED: To provide an injection method of a lithium secondary battery in which a flow rate in the injection nozzle can be suppressed and injected while effectively preventing formation of a liquid film of an electrolytic solution in an injection nozzle so as to be adaptable to a liquid suction speed of the electrolytic solution in a battery case, and an injection device in which t... |
17.04.2008 |
| 9 | JP2008091099A |
LAMINATED LITHIUM ION BATTERY
PROBLEM TO BE SOLVED: To provide a laminated lithium ion battery in which improvement of cycle characteristics or the like can be promoted by fabrication with superior precision by suppressing deviation of lamination between electrodes. SOLUTION: In the laminated lithium ion battery which has a positive electrode 1, a negative electrode 2 having larger size of four sides than that of this p... |
17.04.2008 |
| 10 | JP2008091100A |
SQUARE LITHIUM-ION BATTERY
PROBLEM TO BE SOLVED: To provide a square lithium ion battery in which on an assumption that undulation or warping are apt to occur in a separator when the separator is manufactured by heat fusion-bonding, even if lamination deviation of a positive electrode and a negative electrode occurs, the lamination deviation can be identified easily, and by this, the lamination deviation can be corrected... |
17.04.2008 |
| 11 | JP2008091127A |
CYLINDRICAL BATTERY AND ITS MANUFACTURING METHOD
PROBLEM TO BE SOLVED: To provide a manufacturing method of a cylindrical battery capable of manufacturing the cylindrical battery having an internal short circuit preventive function due to contact of a tip of a current collector rod and the bottom part of a bottomed cylindrical outer package can, simply and rapidly. SOLUTION: This is the manufacturing method of a cylindrical battery 100, i... |
17.04.2008 |
| 12 | JP2008091159A |
RADIATION IMAGE IMAGING APPARATUS, ITS CONTROL METHOD, RADIATION DOSAGE DETECTOR ADJUSTING DEVICE AND ITS ADJUSTMENT METHOD
PROBLEM TO BE SOLVED: To establish in high precision an optimal dosage irradiated on an interested region of an object. SOLUTION: A radiation image information of a mammo 44 is acquired by a solid detector 46 from radiation rays X irradiated and transmitted from a radiation ray source 74. The detected value detected from a region including the interested region by the solid detector 46 is c... |
17.04.2008 |
| 13 | JP2008091189A |
SEALED LEAD ACID STORAGE BATTERY
PROBLEM TO BE SOLVED: To provide a lead acid storage battery used for an uninterruptive power supply unit or an emergency power supply device in which a discharge capacity during high rate discharge and a maintenance rate of the lead acid storage battery capacity at a trickle use, that is, a trickle life can be improved simply. SOLUTION: The lead acid storage battery is made by maturing and... |
17.04.2008 |
| 14 | JP2008091191A |
METHOD AND DEVICE FOR STORING LITHIUM ION TO NEGATIVE ELECTRODE PRECURSOR FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY
PROBLEM TO BE SOLVED: To continuously store lithium ion of an amount required for supplementing irreversible capacity of a negative electrode active material to the negative electrode active material by an electrochemical method using a non-aqueous electrolytic solution. SOLUTION: Lithium ion dissolved in an non-aqueous electrolytic solution 25 is made to be stored in an active material lay... |
17.04.2008 |
| 15 | JP2008091192A |
MANUFACTURING METHOD OF POLAR PLATE FOR LITHIUM SECONDARY BATTERY, POLAR PLATE FOR LITHIUM SECONDARY BATTERY USING THE SAME, AND LITHIUM SECONDARY BATTERY
PROBLEM TO BE SOLVED: To solve problems related to quality, where a polar plate becomes longer due to an increase in the number of rolling times and a mixture layer is peeled partially, when the polar plate is rolled to increase its density. SOLUTION: A lithium secondary battery comprises: a positive electrode made of a composite lithium oxide; a negative electrode made of a material for re... |
17.04.2008 |
| 16 | JP2008091210A |
LITHIUM ION BATTERY AND ITS CHARGING METHOD
PROBLEM TO BE SOLVED: To provide a lithium ion battery capable of realizing compatibly securing of a discharge capacity and excellent cycle characteristics. SOLUTION: The lithium ion battery uses respectively a lithium-manganese oxide for a positive electrode active material, a hard-carbon carbon material for a negative electrode active material, and a non-aqueous electrolytic solution for ... |
17.04.2008 |
| 17 | JP2008091240A |
BATTERY
PROBLEM TO BE SOLVED: To provide a battery high in safety, and capable of preventing jumping-out of a power generation element or the like when the internal pressure of the battery is increased by an internal short circuit or the like. SOLUTION: In this battery 10, the power generation element 15 comprising a positive electrode plate and a negative electrode plate is stored in a battery cas... |
17.04.2008 |
| 18 | JP2008091249A |
NONAQUEOUS ELECTROLYTIC SECONDARY BATTERY
PROBLEM TO BE SOLVED: To provide a nonaqueous electrolytic secondary battery which suppresses the swelling of the battery that occurs, when the battery is left in a high-temperature condition, has a fine discharge capacity, enables the high density of an electrode plate, and attains high energy density for the battery. SOLUTION: A negative electrode 4 has a negative electrode active materia... |
17.04.2008 |
| 19 | JP2008091259A |
METHOD FOR MANUFACTURING NONAQUEOUS ELECTROLYTE SECONDARY BATTERY
PROBLEM TO BE SOLVED: To provide a nonaqueous electrolyte secondary battery that is satisfactory in the cycle characteristics and reliability, by forming a satisfactory coating on a negative electrode at initial charging. SOLUTION: In the nonaqueous electrolyte secondary battery comprising an electrode plate group containing a positive electrode plate that holds a positive electrode active ... |
17.04.2008 |
| 20 | JP2008091293A |
INDUCTION HEATING DEVICE
PROBLEM TO BE SOLVED: To provide an induction heating device in which an electric current flowing in a heating coil which heats a kettle by connecting resonant capacitors in parallel is controlled by a conduction controlling element and in which a spectrum of a radiating noise is dispersed and in which there is no large peak in a specific frequency. SOLUTION: A pan 1 is housed in a rice coo... |
17.04.2008 |