NANO PRO 0.7 mm 100 Ohm/Sq ITO Coated Glass Substrate

SKU:
GL0327
SHIPPING:
Piece
IF YOU ARE INTERESTED IN A QUOTE FOR A LARGE QUANTITY, PLEASE CONTACT US
Email: Marknanossr@gmail.com
or
Get A Quotation

NANO PRO 0.7 mm 100 Ohm/Sq ITO Coated Glass Substrate

Piece 1
Request a quotation.

Contact Us

Global Head Office

Email: Marknanossr@gmail.com

Tel:+86 15606950920

Wechat: 15606950920

Address:  Building 1, No. 39 Xinchang Road, Haicang District, Xiamen City, Fujian Province, China

Description of 100 Ohm/sq Indium Doped Tin Oxide Glass Substrate 0.7 mm

100 Ohm/sq, 0.7 mm thickness ITO Glass Substrate, Indium Doped Tin Oxide (In-SnO2 or ITO) coated glass, can customize conductive film patterns as required.

For FTO substrates, please click here.

Click here for publications using our products

Free Samples are available upon request for preliminary testing.

ITO Patterns can be custom made based on customer requirements. We can offer double-sided ITO glass upon request.

  • Glass: NSG Soda Lime Glass (SLG)
  • Glass Transition Temperature: 564°C (1,047°F )
  • Dimension: 1" x 1" (25.4 mm x 25.4 mm), 2" x 2", 4" x 4", or can be customized.
  • Special Patterns: can be customized according to customer provided drawings.
  • Etching Capability: Laser etching, wet etching for detailed patterns.  Both techniques have a resolution of +/- 50um.
  • Sheet resistance: 7 ohm/sq, 10 ohm/sq, 15 ohm/sq, 30 ~ 60 ohm/sq, 100 ohm/sq
  • Glass thickness: 0.7 mm is standard, other thickness can be customized
  • Transmittance: >87%
  • Typical RMS
technical information and specifications of ITO coated soda lime glass
Specification (Ohm/sq) Sheet Resistance  (Ohm/sq) Visible Light Transmittance  (%)* Thickness  of  ITO Film
500 ≤500 ≥90 120ű 30Å
150 ≤150 ≥87. 0 150ű 30Å
125 ≤125 ≥87. 0 200ű30Å
100 ≤100 ≥87. 0 230ű 50Å
80 ≤80 ≥86. 0 300ű5oÅ
60 ≤60 ≥85. 0 350ű 50Å
50 ≤50 ≥84. 0 400ű 50Å
40 ≤40 ≥85. 0 500ű 100Å
30 ≤30 ≥80. 0 650ű 100Å
20 ≤20 ≥85. 0 950ű 100Å
15 ≤15 ≥85. 0 1350ű 150Å
10 ≤10 ≥84. 0 1850ű 200Å
6 ≤7 ≥80. 0 2200ű 300Å
5 ≤5 ≥77. 0 3500ű 300Å
* Transmission will vary slightly depending on thickness of the glass substrate

ITO conductive glass substrates

Grade (ohm/sq)

Size L x W (mm)

Thickness (mm)

Minimum of Order

Prices of non-etched ($/sheet)

Prices of etched Patterns ($/sheet)

100

10X10

0.7

100 sheets

3.39

Contact Us

100

25x25

0.7

100 sheets

5.10

Contact Us

100

50x50

0.7

50 sheets

8.95

Contact Us

100

100x100

0.7

25 sheets

18.90

Contact Us

 

Applications 100 Ohm/sq Indium Doped Tin Oxide Glass Substrate 0.7 mm:

Indium tin oxide (ITO) is one of the most widely used transparent conducting oxides (TCO) because of its two main properties, its electrical conductivity and optical transparency. ITO can also be easily deposited on a substrate as a thin film. High quality sputtered Indium Doped Tin Oxide (ITO) films can be used as electrodes for photovoltaic/solar cells, LCD display, electrochemical deposition, capacitors, Infrared detection applications.

Customer Testimonials 100 Ohm/sq Indium Doped Tin Oxide Glass Substrate 0.7 mm:

Carlos Biaou, a PhD student at UC Berkeley worked with NANOSSR to fabricate several hundred customized ITO and FTO substrates for his thesis research, and he had a very positive feedback on the products and services he received from NANOSSR.

  • "The uniformity of the ITO and FTO layers were excellent, and the custom pattern I ordered was well formed."
  • "The variation in size from substrate to substrate is within the margins of errors I needed, so that's great too."
  • "I appreciate the great customer service and diligence you've shown in customizing my substrates."

Dr. Selma Duhovi from MIT has used the ITO and FTO substrates provided by NANOSSR for smart glass application, and has been very satisfied with the products and services provided by NANOSSR.

  • "The FTO and ITO glass slides you sent me work GREAT!"
  • "The substrates work really well for smart glass application."
  • "The experiments have gone well!"
Typical Academia Customers at NANOSSR:
NREL, UC Berkeley, UCLA, Caltech, MIT, Yale, University of Michigan, Cornell, University of Chicago, State University of New York (SUNY), McMaster Univ., National Physical Laboratory (NPL), etc.
€ 4.00
GRAPHENE SHEET
Recent Posts

Future Communication with 5G Technology and Advanced Materials

Preserving History with the Power of Graphene
Future Communication with 5G Technology and Advanced Materials 5G technology opens the doors to a new era in communication with faster connection speeds, low late...

5G technology opens the doors to a new era in communication with faster connection speeds, low latency and wide coverage. This new generation technology enables important applications in many sectors...

​Graphite Applications on Anti-friction Coatings

Preserving History with the Power of Graphene
​Graphite Applications on Anti-friction Coatings Graphite is said to be known as one of the forms of carbon present in usually crystalline form. Thi...

Graphite is said to be known as one of the forms of carbon present in usually crystalline form. This too has various types and varieties in which graphite can be exhibited. However, recently it has c...

Cuprous (Copper) Oxide Properties and Applications

Preserving History with the Power of Graphene
Cuprous (Copper) Oxide Properties and Applications Cuprous oxide is also commonly known as copper oxide which is basically an inorganic compound compr...

Cuprous oxide is also commonly known as copper oxide which is basically an inorganic compound comprising of copper and oxygen. It has some excellent properties that enable it to surpass a lot of copp...

Cellulose Nanocrystals (CNC), Applications and Properties

Preserving History with the Power of Graphene
Cellulose Nanocrystals (CNC), Applications and Properties Cellulose is a very abundant polymer naturally available as it is a vital component present in vari...

Cellulose is a very abundant polymer naturally available as it is a vital component present in various plant cell walls. Besides, cellulose nanocrystals (CNC) also found in every other species all of...

Ketjen Black Applications As a Superconductor

Preserving History with the Power of Graphene
Ketjen Black Applications As a Superconductor Ketjen black is basically a conductive agent and conductive agents are usually used to make sure th...

Ketjen black is basically a conductive agent and conductive agents are usually used to make sure that the electrode possesses good charge and discharge performance. So ketjen black is responsible for...

​7 Reasons to Why Fullerenes are Growing Market

Preserving History with the Power of Graphene
​7 Reasons to Why Fullerenes are Growing Market Fullerene is a carbon allotrope consist of carbon atoms attached via single or double bonds.These m...

Fullerene is a carbon allotrope consist of carbon atoms attached via single or double bonds.These molecules have rich characteristics and potentially strong properties which enable them to work effec...

Molybdenum Disulfide (MoS2) Properties and Applications

Preserving History with the Power of Graphene
Molybdenum Disulfide (MoS2) Properties and Applications Molybdenum disulfide, also known as MoS2, is one of the best materials initially belonging to the t...

Molybdenum disulfide, also known as MoS2, is one of the best materials initially belonging to the transition metals.Its structure is unique hence all the properties it possesses are unique.  The buil...

From Graphene to the New Teflon

Preserving History with the Power of Graphene
From Graphene to the New Teflon Graphene is one of the most used materials in today's world and with all the exceptions that it is ...

Graphene is one of the most used materials in today's world and with all the exceptions that it is being used, it is being proven as one of the best materials for almost all industries.  Ever since i...

​Use of Graphene In The Textile Industry, Examples From The Market And Its Future

Preserving History with the Power of Graphene
​Use of Graphene In The Textile Industry, Examples From The Market And Its Future Graphene is known as a carbon allotrope in the industry as it comprises carbon atoms that are put t...

Graphene is known as a carbon allotrope in the industry as it comprises carbon atoms that are put together in the form of a lattice. Graphene is a highly necessary product in today's world as it is s...

IR Coating Technology and Applications

Preserving History with the Power of Graphene
IR Coating Technology and Applications IR coating technology is used for the optical coatings that perform their functions at a very large...

IR coating technology is used for the optical coatings that perform their functions at a very large scale. This includes UV wavelengths which are both short and long too. A lot of comprehensive studi...

Silicon Dioxide in Battery Applications

Preserving History with the Power of Graphene
Silicon Dioxide in Battery Applications Silicon dioxide is a promising material for next generation battery technologies because of its hig...

Silicon dioxide is a promising material for next generation battery technologies because of its high capacity and abundance. Especially Li-ion and Li-S batteries benefit from silicon dioxide and its ...

Properties of ​Ketjen Black as a Superconductor

Preserving History with the Power of Graphene
Properties of ​Ketjen Black as a Superconductor Ketjen black is basically a conductive agent and conductive agents are usually used to make sure th...

Ketjen black is basically a conductive agent and conductive agents are usually used to make sure that the electrode possesses good charge and discharge performance. So ketjen black is responsible for...

MoS2 Applications on Anti-friction Coatings

Preserving History with the Power of Graphene
MoS2 Applications on Anti-friction Coatings MoS2 is basically the chemical formula of molybdenum disulfide which is a compound known to be a tr...

MoS2 is basically the chemical formula of molybdenum disulfide which is a compound known to be a transition metal dichalcogenide having a blackish and silvery appearance. MoS2 is one of the categori...

​How to Sustainably Produce Nano Clays

Preserving History with the Power of Graphene
​How to Sustainably Produce Nano Clays Nanoclays, with their unique layered structure and nanometric size, are transforming industries by ...

Nanoclays, with their unique layered structure and nanometric size, are transforming industries by enhancing the performance of materials in packaging, automotive, and environmental engineering.  Th...

​10 Uses of Calcium Oxide in Daily Life

Preserving History with the Power of Graphene
​10 Uses of Calcium Oxide in Daily Life Calcium oxide is the chemical combination of calcium and oxygen subsequently forming a product that...

Calcium oxide is the chemical combination of calcium and oxygen subsequently forming a product that is rich in its characteristics and has an excellent set of properties that enable it to perform var...

​Cubic Boron Nitride Nanopowders: The New Diamond, Properties, and Applications

Preserving History with the Power of Graphene
​Cubic Boron Nitride Nanopowders: The New Diamond, Properties, and Applications Boron nitride is a chemical compound consisting of nitrogen and boron, having the chemical formula ...

Boron nitride is a chemical compound consisting of nitrogen and boron, having the chemical formula BN. It has various forms but the most common one is the cubic boron nitride form. It is actually a t...