- The glass substrate is the portion of
the mirror in which solar energy is transmitted. It is composed of a
float glass with high transmission characteristics in the visible and
infrared ranges and is configured to transmit visible light and infrared
radiation.
- The first side contains a
reflective layer for reflecting the solar energy gathered. This is then
transmitted through the glass substrate to the second side. The second
side that is curved then reflects the solar energy back through the
glass substrate and back out the first side of the glass.
- After several years of research Komag
has achieved major breakthroughs in process technologies associated with
the manufacture of glass substrates. Such process advancements may offer
the potential to approximately halve the cost of future glass
substrates.
- Furthermore, the cost of glass
substrates manufactured under these new processes is expected to be less
expensive than equivalent aluminum-based substrates. Over 90% of the
disks manufactured today are aluminum-based disks.
- Glass slides wafers are often cleaned
by a solvent clean, followed by a dionized water (DI) rinse, followed by
a mild acid clean, DI rinse and blow dry. This is a level-1 process and
requires basic INRF safety certification. The use of dangerous chemicals
requires that the user may not perform the process alone.
- In FPD technology, Process of Coating
for Glass Substrate and/or CF is an extremely important process.
KURAMOTO's "Coating technology" enjoy a high reputation of
customers
- Electrostatic chucks (ESCs) in dry
etchers for thin film transistor-liquid crystal display (TFTLCD)
fabrications were investigated theoretically. First of all, the
behaviors of glass encountering electric fields in the presence of a
plasma were studied. It was shown that, in some conditions, the ESCs
should be used. By applying the simple ESC model, the voltage region for
the stability of glass substrate was obtained.
- To transport delicate glass
substrates without damaging them, Sharp developed original transporting
technology. As a result, Sharp can input 60,000 glass substrates per
month into the manufacturing line (at Kameyama Plant No. 1), making it
possible to produce a stable and highly efficient supply of large LCD
panels.
In order to mass-produce larger LCD
panels, Sharp adopted new technology that involves dropping liquid
crystals onto the surface of a glass substrate. Through this method,
which looks simple but is actually quite difficult, Sharp pioneered the
way to mass production of large LCD panels.
- PDP has excellent features suitable
for larger display and highly minute pictures, and its demand is rapidly
increasing worldwide. Central Glass Co., Ltd. Company will soon start
sales activities targeting annual sales of ¥3 billion in 2005. Central
Glass Co., Ltd. Company currently produces substrates for flat panel
displays such as VFD (Vacuum Fluorescent Display), TN-LCD, STN-LCD and
TFT-LCD.
- Demand for TFT liquid crystal panels
is now in full swing for television sets as well as for personal
computers, and is expected to rise at an annual rate of 20% on a unit
basis. In addition, many TFT liquid crystal panel manufacturers
currently produce panels by using large 6th generation or larger mother
glass. Production of panels with using 10th generation glass substrates,
the world’s largest, is also scheduled.
- Sales in the glass and related
operations segment amounted to ¥625,240 million ($5,768 million), and
accounted for 45.3% of total sales, including intersegment net sales and
transfers.
- The segment’s operating income
was ¥35,852 million ($331 million). Sales of flat glass and construction
materials expanded, supported by continuing firm demand in Japan for
double-glazing glass units, which offer excellent insulation.
- One approach to synthesising HDOAs
consolidates the principles of solid-phase nucleic acid synthesis and
photolithography adapted from the
semiconductor manufacturing arena.
This approach allows for the synthesis of oligonucleotides in situ on
glass substrates.
- For thin solar cell application glass
would be a very good material, because it offers many advantageous
properties. It offers a very good chemical resistance which is needed
both for the processing of the solar cells as well as for its long term
application to be resistant to atmospheric attack and ultraviolett
radiation.
- Its temperature stability is
needed for the processing. Good transmission properties are also needed,
which are offered by glass as well as a smooth surface.
- The use of CG Silicon technology to
form circuitry directly on the glass substrate is what lies beneath the
outstanding features of System LCDs-high resolution, low power
consumption, narrow frame, and multi resolution display capability
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General
- Optical Windows. Co.Uk
- Glass Substrates
- Globe Precision Products
- Solar mirror
- Epoxy Resin – Glass Fabric
Substrates
Process & Cleaning
Procedures
-
Basic Study of the Electric Forces on a Glass Substrate in
a Dry Etching System.
Flexible Flat Panel
Displays
Fpd Technology
Hybrid glass substrate technology
leads to hybrid waveguide devices.
Soldering Of Thin Film Metallized,
Soda Lime Glass Substrates.
Cleaning procedures for glass substrates
Lapping & Polishing Machines
Manufacturing Equipment
SWP & LWP Filter Coatings For Glass Substrates
TFT glass substrates
Products
- Display Filters
- Glass Substrates Production
- Quartz & Special Glasses
Institute
- Agc Asahi GlassCorning Introduces
First LCD Glass Substrate Free of Heavy Metal
- Filter Glass
- Glass
Products
- Glass Tag
-
IBM glass substrate disks
Production
-
Increasing Production Capacity of large-sized TFT LCD
Glass Substrates
-
Increasing Production Capacity of PDP Glass Substrates
-
Sharp builds for 10th-generation glass substrates
-
LCD Production
-
LG Uses New Technique For PDP
Production
Patent
-
Cassette For Loading Glass Substrates
-
Die & Production
-
Method Etchant
for Etching Glass Substrate
-
Glass Substrate & Leaving
-
Methods for producing glass substrates for use in
biopolymeric micro arrays
-
Glass Substrate For Photo masks & Preparation
Method
-
Methods and apparatus for polishing glass substrates
-
Porous glass substrate for field emission device
-
Glass Substrate Forming Mold & Production Method.
-
Method of sealing glass substrates
-
Thin Film Semiconductor Package Utilizing a Glass
Substrate With Composite Polymer Interconnect
Layers
Technology
-
Giving Corning Crystal-Clear Visibility
-
Information
Technology
-
Corning LCD Glass Substrates
-
Glass
Transporting Technology
-
Quality In Glass Substrates Holds Key to Improvements In
Lcds
-
Liquid crystal Injection Technology.
-
Array-Based Technologies and their Applications in
Proteomics
Market
-
PDP glass substrates market.
-
Industrial Demand
-
Asahi Glass To Expand Output Capacity of Large TFT-LCD
-
Corning Taichung Facility Prepared to Ship LCD Glass
Substrates
-
Corning to Wild Premier Finishing Facility In
China
Suppliers
-
Suppliers Of The Glass Substrates
-
Glass Master Substrate
& Optical Glass Substrate
-
Laser
Infiniti Co
-
Changzhou almaden Pv Glasses Co., Ltd
-
Woojin
Corporation
-
Glass Substrate Suppliers
-
glass
substrate
Material Safety Data Sheet
-
Corning Eagle XG AMLCD Glass Substrates.
-
Isola
-
Norplex Micarta
-
High Performance Composites
-
Industrial Laminates/Norplex, I
-
Mineral Products Of Texas
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Application
-
Stronger
glass as a requirement for flexible thin glass substrates
-
Design and Analysis of a 6 GHz Chip Antenna on Glass
Substrates for Integration with RF/Wireless Microsystems
Electroluminescent Display Materials
Telechem International, Inc
Saint Gobain Application Overview
LCD Touch-Panel Controllers
Touchscreens in the Automotive Environment
Current Trends of Flat Panel Displays Viewed from
Applications
Report
-
Acquisition of the Glass Substrates
-
International Display & Manufacturing Conference.
-
Adhesion Strength Study of EVA Encapsulants on Glass
Substrates
Company Annual Report
Optics
Large magnetoresistance of bismuthÕgold films thermally deposited onto
glass substrates
Next generation uses of highdensity oligonucleotide arrays
Optical characterization of thermally evaporated thin CdO
films
Matsushita Electric Industrial
Project
-
Implementing Cost-Effective Capacitive DNA Sensors on
Glass Substrates
-
Localization Project for
TFT-LCD Glass Substrate
-
High-Strength Nanotechnology Glass
Project for Displays
The Pentacene
Project
High Throughput Vaccum Processing For Innovative Uses Of
Glass
Consultants
-
Barry N. Breen
-
BG&S Peening & Consulting
-
Science & Engineering Consultants
-
Guna S. Selvaduray
-
Jk Consulting
-
Indars.Com
Expert in
Electronic Ceramics and Glasses
Standards & Equipments
-
Polished Glass Substrates
-
FPD
Standards
ITO-Coatings on High
Quality Glass Substrates
Polished Glass Wafers and
Substrates to SEMI Standards
Sharp finalizes 10G LCD glass substrate size
Glass Substrate Chipping Inspection System
Tokyo Ohka Kogyo Co., Ltd
Properties
-
Tem Characterization Of Single Crystal Silicon Film On
Glass Substrate
-
Substrate effects in chemical solution deposition.
-
Effect of Na Incorporation on the Growth and Properties of
CdTe/CdS Devices
The Effects of Glass-Substrate’s Surface-Treatment on the
Characteristics of N-Channel Polycrystalline
Effect of Substrate Sodium Content on
Crystallization
Effect of Substrate Roughness on D Spacing Supports
Effect of Substrate Temperature and Input Power on TiN
Film Deposition
Substrate temperature effect on the optical properties of
amorphous Sb2S3 thin films
Machinery
Flat Panel Display
Equipment
LLCD Optical Polishing
Machines
Precision Machinery
Large-Size
Glass Substrate
Company Profile
-
Micronit
-
Navitar Coating Labs
-
Saint Gobain Display Glass
-
Nippon Electric Glass Taiwan Co.,
-
Alpha Precision,Inc
-
Anhui Bengbu Huayi Conducive FilmGlass Co., Ltd
-
Precision Glass Products Company
-
The Microarray Substrate Company
Plant
-
Sharp Kameyama Plant
-
Niigata Plant
-
Norplex- Micarta
-
Corning Leads Industry as First
Commercial Supplier of Generation 6 Size Glass
Substrates
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