Ohara Optical (M) Sdn Bhd

Merlimau,  Melaka 
Malaysia
http://www.ohara-inc.co.jp
  • Booth: B2224

OHARA glass/glass-ceramic materials welcome your visit.

Overview

OHARA, a pioneer in optical glass in Japan, was established in 1935. Since then, we have continuously developed and provided cutting-edge materials that satisfy the needs of the times. Involved in countless technological innovations, we have contributed to industrial advancement, cultural creation and the realization of fulfilling lifestyles. In parallel, we have positively expanded our business globally and earned praise, especially for quality.
Meanwhile, advancements in science and technology have triggered a global wave of innovation that has allowed new players to emerge successively in the industrial arena, quickly remapping the landscape of industrial power that had remained intact for a long time. Today, business growth and even business survival is difficult if companies adhere to conventional mindsets and approaches.

The cutting-edge glass materials of the highest quality that OHARA provides support people around the world in their smiles and sense of wonder. Meanwhile, we strive to enhance product quality and develop new products for state-of-the-art applications in the future.

OHARA deals with over 150 types of optical glasses and meets the needs of a wide variety of optical designs to enable higher performances, miniaturization and cost reduction. We also offer lens-blanks and finished lens such as 55mm-Diameter Large-Aperture Aspherical Glass Mold Lens. Non-Browning Optical Glass may maintain its transparency even if it exposed to high levels of radiation. In addition to those items, we may propose Ultra Low Expansion Glass-ceramics (CLEARCERAM™-Z), Synthetic Quartz Glass, i-Line High Homogeneity Glass, etc.


  Products

  • High precision Optical Glass
    At OHARA, we meet all optical design needs with a line-up of over 140 types of optical glasses with the characteristics that enable optical devices to attain higher performances, miniaturization and cost reduction....

  • Optical glass is used in various optical devices such as digital single lens reflex cameras, projectors, television cameras, automotive cameras, security cameras and medical devices. The cutting-edge glass materials of the highest quality that OHARA provides support people around the world in their smiles and sense of wonder.

    131 different types of optical glass for use in polished lenses and optical elements. For the purpose of global environmental conservation, OHARA uses no lead or arsenic in these 131 glasses. To distinguish these glasses from others containing lead or arsenic, the names for these 131 environmentally safe glass types begin with S-.  17 types of optical are lined for use in molded lenses. The glass type designation for these types begins with L-. They are also environmentally friendly, as they do not contain lead or arsenic. 

    Product Types

    Glass Blocks, Reheat Pressings, Saw cut Centerless Ground Cylindrical Blanks, Polished Balls, Dimensional Specified Blanks, Polished Preforms, Aspherical Glass Mold Lenses, Polished Lenses

    Non-browning Glass

    A special optical glass that reduces coloring in a radiation environment. It is used for optical components in radiation environments such as outer space.

  • CLEARCERAM™-Z
    CLEARCERAM™-Z is a glass-ceramic with an Ultra-Low Thermal Expansion Coefficient, and produced under tightly controlled conditions and offers outstanding thermal, mechanical and chemical properties....

  • This material was developed by OHARA based on our knowledge of High Homogeneity melting and Precise Crystallization. This material is produced under tightly controlled conditions and offers outstanding thermal, mechanical and chemical properties. There are 3 version of CLEARCERAM™-Z available based on thermal expansion differences; Regular, CCZ HS and CCZ EX. 

    Ultra-Low Expansion

    The material shows almost Zero Thermal Expansion over a wide temperature range and offers superior thermal shock resistance. CLEARCERAM™-Z Regular offers lower thermal expansion across a wide temperature range, while the CLEARCERAM™-HS offers lower thermal expansion near room temperature. CLEARCERAM™-Z EX features extremely low temperature dependence of thermal expansion in 0 to 50degree C, which is less than half of the present high spec grade (CLEARCERAM™-Z HS)

    Superior Mechanical Properties

    The material has very high chemical durability and is very stable in various cleaning and thin-film coating processes. CLEARCERAM™-Z does not contain Na, K, B, F, or Pb in its composition which is a main reason for the excellent chemical resistance the material displays.

    Superior Machinability

    The crystal grain structure of the material prevents the propagation of micro crack caused in machining process. This property allows the material to be processed into various shapes with high accuracy, with ease of machinabilty and elevated yield rates.

    Excellent Chemical Properties

    The material has very high chemical durability and is very stable in various cleaning and thin-film coating processes. CLEARCERAM™-Z does not contain Na, K, B, F, and Pb in its composition which is a main reason for excellent chemical resistance the material displays.

  • SK-1300: VAD process Synthetic Fused Silica
    SK-1300 is extremely high in purity and much lower in OH content than the traditional direct method, thus making it the first synthetic fused silica usable in the semiconductor and liquid crystal display industries....

  • Ohara successfully developed synthetic fused silica SK-1300 as a result of significant improvements made to the conventional VAD (vapor-phase axial deposition) method of optical fiber manufacturing technology.

    SK-1300 is extremely high in purity and much lower in OH content than the traditional direct method, thus making it the first synthetic fused silica usable in the semiconductor and liquid crystal display industries.

    SK-1300 is the state-of-the-art technology in optical characteristics because it provides a high ultraviolet transmission, no micro inclusion and a solarization resistance, in addition to heat resistance, mechanical strength, and chemical resistance.

    These products can be used in a wide variety of industrial applications for semiconductors, optical and all physical or chemical related research featuring these applications:

    • Wafers for various types of devices such as TFT(poly-Si thin-film transistor LCD.), SOI (Silicon on Insulator) etc.
    • Photomask substrates for ultra-LSI and LCD.
    • Reactor furnace tubes, jigs and tools for ULSI manufacturing processes.
    • Electrical-discharge lamp tubes.
    • Optical elements, Ienses, mirrors and windows, for ultraviolet and vacuum ultraviolet

    ppb

    Element Analytical value Element Analyltcal value
    Al <10 Co <10
    Fe <10 Ni <10
    Ti <10 P <10
    Ca <10 B <10
    Mg <10 Na <10
    Mn <10 K <10
    Cr <10 Li <10
    Cu <10 Zr <10
    OH <200(ppm) <1
    (Typical values Not guaranteed)
  • i-line High Homogeneity Glass
    Optical glass with excellent internal transmittance and optical homogeneity. it's used for lenses for semiconductor exposure equipment and high-precision inspection devices where homogeneity of the refractive index is crucial....

  • These materials are optically homogeneous and have excellent internal transmittance and high durability against solarization (coloring by UV). They are used in semi-conductor production equipment (Stepper Cameras) and its peripherals (Illumination Systems, etc.).

    – The format of this catalog is identical to OHARA’s master catalog for optical glass so that it may be used for optical systems other than i-line systems. For individual properties, refer to the detailed data [PDF]. However, the properties mentioned below differ from the detailed data [PDF].

    – The refractive index represents values for 22 segments of the spectrum ranging from 326 nm to 2325 nm.

    – Refractive indices for wavelengths not specified in the catalog may be calculated using Sellmeier’s dispersion formula, as they have traditionally been. Given that the scope of applications for the dispersion formula is broad, the data sheet shows the dispersion formula constant used for the 326 nm to 1129 nm wavelength range. For refractive indices in the 1129 nm to 2325 nm wavelength range, use the dispersion formula constant specified below.

    – The internal transmittance shows both the value for the standard sample thickness of 10 mm (τ10) as well as the value for the thickness of 25 mm (τ25), which is suitable for practical application.

  • NANOCERAM™
    New proposals will be possible that cannot be realized with sapphire crystal glass and chemically strengthened glass, such as cover glass for optical devices and mobile devices, which requires shock resistance....

  • NANOCERAMTM is glass-ceramic for which we have further evolved OHARA’s nanocrystallization technology, thus far recognized in all fields, and achieved superior mechanical properties and high transmittance.
    New proposals will be possible that cannot be realized with sapphire crystal glass and chemically strengthened glass, such as cover glass for optical devices and mobile devices, which requires shock resistance.

    Impact Resistance High Hardness

    Compared with general borosilicate glass, NANOCERAM™ has 30% higher hardness and showed more than 10 times higher impact resistance in steel ball drop impact test. In addition, it has a 20% higher hardness than chemically strengthened glass, and showed more than 3 times higher impact resistance in steel ball drop impact test. Also, it has better fracture toughness than sapphire crystal glass, and cracks that cause breakage do not occur even if there are scratches and realizing a characteristic that is resistant to cracking.

    Good Processability

    Although it has the properties of hard ceramics, the cutting, polishing and moldability realized workability comparable to that of glass. Moreover, it has grinding and polishing property which can shorten process time to about 1 / 20th of sapphire crystal glass.

    High Transmittance

    Since, crystal grains of glass ceramics are large, so it is difficult to transmit light and never used for optical applications. However, high transparency has been realized by Ohara's nanocrystallization technology (particle diameter about 6 nm) which has a high track record in the space and astronomy fields. NANOCERAM™ is mounted on a high-end lens protector for single-lens reflex interchangeable lenses of domestic manufacturers who are demanding strict optical performance and precise quality, and NANOCERAM™ has received high marks.

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