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  • Ogic Technologies Co., Ltd.

    Our company has established a presence with our unique NIPOLYN plating technology.
    Main Image
    We are engaged in the business of surface treatment such as aluminum anodizing, electroless nickel plating, and electrolytic polishing. We are extending our business in a wide range of fields from power semiconductor devices and semiconductor manufacturing equipment to automobiles and electronics and electricity. Our main customers include Denka, Mitsubishi Electric, and Tokyo Electron. Our unique NIPOLYN plating technology has excellent water repellency, mold releasability, non-adhesiveness, and low friction resistance. This technology has established a presence in the industry, and it is employed by a major manufacturer for their production line jigs.

    製品・技術情報

    • NipolynNIPOLYN

      NipolynNIPOLYN

      [Product description] Nipolyn has both feature of PTFE and Nickel metal. ◇Water repellent, ◇wear resistance ◇High Hv ◇ conductivity NIPOLYN is our original plating technology that has the functions of both electrolytic nickel plating and PTFE. It contains polytetrafluoroethylene (PTFE, Teflon) as composite particles, which imparts new functions that individual metals or alloys cannot have. The trade name combines nickel and the Japanese word for phosphor, and represents electroless nickel plating and PTFE composite plating. See the photo list for the features of NIPOLYN. Keywords: Smoothness, self-lubricating, water repellency, uniformity of film thickness, releasability, abrasion resistance, high hardness, conductivity, low friction, static charge prevention, non-adhesiveness, surface treatment, fluororesin, and Food Sanitation Act. Applicable fields: Semiconductors, automobiles, foods, pharmaceuticals, MEMS, various devices, semiconductor manufacturing equipment parts, wafer equipment, special rubber molds, sliding parts, high-performance gears, nozzles, etc. We look forward to your inquiries.

    • O-DENT

      O-DENT

      [Product description] O-DENT is an antistatic treatment combined from our in-house special chemical etching and plating to reduce the glass peeling charging phenomenon. The antistatic effect is attributable to the special minutely detailed sharp-pointed structure on the aluminum surface. This structure makes point contact with a glass panel and drastically reduces the true area of contact. The effective area associated with charging is reduced, so static electricity is also suppressed. See the photo list for further features. Keywords: Antistatic measures, static charge prevention, durability, high hardness. We look forward to your inquiries.

    • Electro FormingElectroforming

      Electro FormingElectroforming

      [Product description] MEMS(Micro Electro Mechanical systems) are applied in a wide range of devices, such as inkjet parts and many sensors, as a current technology. We successfully developed thick type MEMS of 200μm using Electro Forming systems(EF) by photolithography processing in conjunction with Ni plating. We can provide high quality, defect-free structures with high aspect ratios of up to 2.5. Precision electroforming is one of the technologies for manufacturing the micro mechanical parts that constitute Micro Electro Mechanical Systems (MEMS). This is a technology for forming high-performance plating films with high precision on micro patterns created by photolithography. These films themselves serve as parts, unlike ordinary plated parts, so they require characteristics such as low internal stress and high hardness, and they become thicker than ordinary plated parts. Fine patterns have high aspect ratios and it is difficult to produce flawless films with high accuracy. Our precision electroforming technology can copy a fine pattern with a high aspect ratio with high fidelity in a negative form, unlike etching. It can produce a flawless film of the specified thickness at high speed. Keywords: MEMS, micro, electroforming, and precision. We look forward to your inquiries.

    • OGEP-V3

      OGEP-V3

      [Product description] OGEP (OGEP-V3) is a form of electrolytic polishing that supports aluminum and stainless-steel chambers (austenite, martensite). This is applicable to semiconductor manufacturing equipment parts. It is effective for suppressing gas emission generated when vacuum devices are evacuated. Electrolytic polishing generates corrosive sulfur gas, but OGEP does not. OGEP can be classified into OGEP Al for aluminum and OGEP SUS for stainless steel. See the photo list for further features. Keywords: Electrolytic polishing, sulfur, gloss, leveling, corrosion resistance, deburring, burn elimination, precision cleaning, and smoothness. We look forward to your inquiries.

    • WELMITE

      WELMITE

      [Product description] WELMITE is a heat-resistant anodized aluminum film made using our unique aluminum anodizing technology. Ordinary anodized aluminum film cracks due to elongation discrepancies between the anodized aluminum film and its base aluminum material. This is because the coefficients of thermal expansion are different. We developed WELMITE targeting a film structure that eases differences in thermal expansion. Even a 200 ºC cycle test does not cause cracking. Features: Heat resistance, crack resistance, corrosion resistance, particle reduction, and maintenance frequency reduction. Keywords: Aluminum anodizing, crack resistance, heat resistance, aluminum. Applicable fields: Automobiles, semiconductors, semiconductor manufacturing equipment parts, and other items that are heated. We look forward to your inquiries.

    会社概要

    法人名

    Ogic Technologies Co., Ltd.

    ホームページ

    http://www.ogic.ne.jp/

    資本金

    23,000,000 JPY (Yen)

    従業員数

    110 (Full-time: 110)

    設立年月

    October, 1947

    本社所在地:国

    Japan

    本社所在地:住所

    2-9-9, Kamikumamoto, Nishi-ku, Kumamoto, 860-0079

    業種

    Manufacture of fabricated metal products

    代表者

    Shuuichi Kanamori   President

    この企業は支援機関から推薦されています

    Kyushu Head Office

    日本語ページ掲載情報

    https://jgoodtech.jp/ja_JP/web/jc0000000001416/jpn

    日本語ページ掲載情報

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