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    • 8. 发明专利
    • SOLID-STATE ELECTRIC DISCHARGE DEVICE
    • JPS61286863A
    • 1986-12-17
    • JP12831285
    • 1985-06-14
    • RICOH KKNORITAKE CO LTD
    • MIYAGAWA SEIICHIOOTAKE HIDEMUNEKANI YASUYUKIHIRANO TAKAO
    • H01T19/00B01J23/00B01J23/14B01J23/34B01J23/42B01J23/52B01J27/224B01J27/24G03G15/02
    • PURPOSE:To decrease ozones by using a material which exhibits a catalytic function to decompose the ozones during discharge to form the discharge electrodes of a solid- state electrostatic charger (SSC) consisting of an inside electrode provided in a dielectric layer and the discharge electrodes provided on the discharge surface on the surface of the dielectric layer. CONSTITUTION:An AC voltage is impressed between a pair of AC electrodes 3 from an AC power source 14. The AC electrodes 3 and the discharge electrodes 5 are insulat ed thoroughly in DC by a glass plate 4 and capacitively form a closed circuit. Corona discharge is generated between the electrodes 3 and the electrode 5. An electrode 9 to be electrostatically charged is positioned to face the electrodes 5 apart at a space therefrom and a DC bias power source 13 is connected between the electrodes 5 and 9 to form a DC electric field between the electrodes 5 and 9 in the case of using the solid-state charger SSC as an electrostatic charger. Electrostatically charged ions and electrons 10 formed by the discharge flow toward the electrode 9 so that the charge current flows in the electrode 9. The electrodes 5 are made of the material exhibiting the catalytic function to decompose the ozones during the corona discharge. The quantity of the ozones to be released is thereby suppressed low.
    • 9. 发明专利
    • MANUFACTURE OF THICK-FILM RESISTOR FOR HIGH VOLTAGE
    • JPH11102806A
    • 1999-04-13
    • JP26125297
    • 1997-09-26
    • NORITAKE CO LTD
    • KOBAYASHI KAZUOKANI YASUYUKINAGATA TAKUO
    • H01C13/00H01C17/02H01C17/06
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a thick-film resistor for high voltage, which can be sufficiently downsized and by which decrease in yield due to failed separation of substrate or insulating glass is prevented. SOLUTION: In a step 26 for forming an insulating glass layer, an insulating glass layer 18 with a single pattern which covers multiple thick-film resistor layers 16 formed on a common substrate 20 in a step 24 for forming thick-film resistor layers, and the common substrate 20 is cut along cutting lines which are positioned in advance between the thick-resistor layers 16. Thick-film resistors 10 for high voltage are separated from each other, accordingly. In this way, there is no longer any need for ensuring margins larger than a specified value between the perimeter of the thick-film resistor layers 16 and borders of each substrate 12 and the device can be miniaturized. Also, since the thick- film resistors 10 are separated from each other by a cutting grinder 30, decrease in yield due to failed separation of substrate or chipping insulating glass can be prevented advantageously.
    • 10. 发明专利
    • MANUFACTURE OF ARTICLE HAVING TRANSFER PRINT-IMAGE
    • JPH09300894A
    • 1997-11-25
    • JP11383696
    • 1996-05-08
    • FUJI KAGAKU SHIKOGYONORITAKE CO LTD
    • MATSUMOTO MASAOKAMEDA YURIKOKAITE RYOICHIKANI YASUYUKITSUZUKI YOSHITADA
    • B41M5/382B41M1/34B41M5/40B41M5/50B41M5/52B44C1/175
    • PROBLEM TO BE SOLVED: To transfer surely a vivid print-image on a tentatively transferred body onto a transferred body as it is by forming a vivid print-image on a smooth water soluble substance layer of a tentatively transferred body, after that, thermal bonding this onto the body to be transferred by means of a heat presser or the like, and thereafter dissolving the water soluble substance layer. SOLUTION: In forming a vivid print-image A on all kinds of transferred bodies 20 regardless of qualities, configurations, or the like of surface roughness, rigidity, or the like of a transferred body 20, the vivid print-image A is formed at first by means of a thermal printer on the surface of a water soluble substance layer 12 of a tentatively transferred body 10 with a smooth surface of the water soluble substance layer 12. In the next place, the tentatively transferred body 10 having the print-image A and the body 20 are superimposed each other in such a manner that the print-image A on the transferred body 10 is thermally bonded positively on the transferred body 20 through the agency of heat and pressure by means of a thermal press or the like. Subsequently, an integrated matter of the transferred body 10 and transferred body 20 are immersed in water in order that the water soluble substance layer 12 is dissolved or swelled, thereby positively transferring the vivid print-image A of the transferred body 10 on the transferred body 20.