CAPACITANCE-ADJUSTING POWER-FEED SUBSTRATE, AND DISCHARGE TUBE CURRENT EQUALIZATION LIGHTING DEVICE USING THE SAME, AND LIQUID CRYSTAL DISPLAY

PROBLEM TO BE SOLVED: To provide an inexpensive substrate capable of simply adjusting capacitances serially connected to respective discharge tubes, and restraining manufacturing cost; a discharge tube current equalization lighting device using the substrate; and a liquid crystal display. SOLUTION:...

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Hauptverfasser: KURITA YASUSHI, WANG GUO-HUA
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creator KURITA YASUSHI
WANG GUO-HUA
description PROBLEM TO BE SOLVED: To provide an inexpensive substrate capable of simply adjusting capacitances serially connected to respective discharge tubes, and restraining manufacturing cost; a discharge tube current equalization lighting device using the substrate; and a liquid crystal display. SOLUTION: This substrate is provided with: a plurality of first conductors 301 and 302 formed on a surface S of an insulating substrate 16a by being separated from one another, and connected to the respective discharge tubes; capacitance-adjusting second conductors 311 formed between the first conductors 301 and 302 adjacent to each other on the surface S in a state without being connected to any of the first conductors; and a third conductor 32 formed oppositely to the first conductors 301 and 302 and the second conductors 311 on the back surface R of the insulating substrate 16a. As a result, capacitances can be formed in regions where the first conductors 301 and 302 overlap the third conductor 32. The values of the capacitances can be varied depending on whether the capacitance-adjusting second conductor 311 is jointed to either of the first conductors 301 and 302 adjacent to each other or not. Accordingly, the capacitances connected in series to the respective discharge tubes can be adjusted on a discharge tube basis, and high-frequency currents having values nearly equal to one another can be supplied to the respective discharge tubes. COPYRIGHT: (C)2009,JPO&INPIT
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SOLUTION: This substrate is provided with: a plurality of first conductors 301 and 302 formed on a surface S of an insulating substrate 16a by being separated from one another, and connected to the respective discharge tubes; capacitance-adjusting second conductors 311 formed between the first conductors 301 and 302 adjacent to each other on the surface S in a state without being connected to any of the first conductors; and a third conductor 32 formed oppositely to the first conductors 301 and 302 and the second conductors 311 on the back surface R of the insulating substrate 16a. As a result, capacitances can be formed in regions where the first conductors 301 and 302 overlap the third conductor 32. The values of the capacitances can be varied depending on whether the capacitance-adjusting second conductor 311 is jointed to either of the first conductors 301 and 302 adjacent to each other or not. Accordingly, the capacitances connected in series to the respective discharge tubes can be adjusted on a discharge tube basis, and high-frequency currents having values nearly equal to one another can be supplied to the respective discharge tubes. 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SOLUTION: This substrate is provided with: a plurality of first conductors 301 and 302 formed on a surface S of an insulating substrate 16a by being separated from one another, and connected to the respective discharge tubes; capacitance-adjusting second conductors 311 formed between the first conductors 301 and 302 adjacent to each other on the surface S in a state without being connected to any of the first conductors; and a third conductor 32 formed oppositely to the first conductors 301 and 302 and the second conductors 311 on the back surface R of the insulating substrate 16a. As a result, capacitances can be formed in regions where the first conductors 301 and 302 overlap the third conductor 32. The values of the capacitances can be varied depending on whether the capacitance-adjusting second conductor 311 is jointed to either of the first conductors 301 and 302 adjacent to each other or not. Accordingly, the capacitances connected in series to the respective discharge tubes can be adjusted on a discharge tube basis, and high-frequency currents having values nearly equal to one another can be supplied to the respective discharge tubes. 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SOLUTION: This substrate is provided with: a plurality of first conductors 301 and 302 formed on a surface S of an insulating substrate 16a by being separated from one another, and connected to the respective discharge tubes; capacitance-adjusting second conductors 311 formed between the first conductors 301 and 302 adjacent to each other on the surface S in a state without being connected to any of the first conductors; and a third conductor 32 formed oppositely to the first conductors 301 and 302 and the second conductors 311 on the back surface R of the insulating substrate 16a. As a result, capacitances can be formed in regions where the first conductors 301 and 302 overlap the third conductor 32. The values of the capacitances can be varied depending on whether the capacitance-adjusting second conductor 311 is jointed to either of the first conductors 301 and 302 adjacent to each other or not. Accordingly, the capacitances connected in series to the respective discharge tubes can be adjusted on a discharge tube basis, and high-frequency currents having values nearly equal to one another can be supplied to the respective discharge tubes. COPYRIGHT: (C)2009,JPO&amp;INPIT</abstract><oa>free_for_read</oa></addata></record>
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subjects BASIC ELECTRIC ELEMENTS
BLASTING
CAPACITORS
CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES ORLIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
DEVICES OR ARRANGEMENTS, THE OPTICAL OPERATION OF WHICH ISMODIFIED BY CHANGING THE OPTICAL PROPERTIES OF THE MEDIUM OF THEDEVICES OR ARRANGEMENTS FOR THE CONTROL OF THE INTENSITY,COLOUR, PHASE, POLARISATION OR DIRECTION OF LIGHT, e.g.SWITCHING, GATING, MODULATING OR DEMODULATING
ELECTRIC HEATING
ELECTRIC LIGHTING NOT OTHERWISE PROVIDED FOR
ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
ELECTRICITY
FREQUENCY-CHANGING
HEATING
INDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21Sand F21V, RELATING TO THEFORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THELIGHT EMITTED
LIGHTING
MECHANICAL ENGINEERING
NON-LINEAR OPTICS
NON-PORTABLE LIGHTING DEVICES
OPTICAL ANALOGUE/DIGITAL CONVERTERS
OPTICAL LOGIC ELEMENTS
OPTICS
PHYSICS
SYSTEMS THEREOF
TECHNIQUES OR PROCEDURES FOR THE OPERATION THEREOF
VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLEEXTERIORS
WEAPONS
title CAPACITANCE-ADJUSTING POWER-FEED SUBSTRATE, AND DISCHARGE TUBE CURRENT EQUALIZATION LIGHTING DEVICE USING THE SAME, AND LIQUID CRYSTAL DISPLAY
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