Large Area 50 mm Substrates



50mm Completed substrate Large area substrates for OPV/OLEDs available in three different designs for scale-up/certification, detector/display arrays and large-area deposition techniques.

Outer dimensions: 50 mm x 50 mm
Glass thickness: 0.7 mm
Substrate type: Borosilicate glass
ITO resistance: 20 Ohm / square (100 nm)
Coating: photoresist protective sheet



Order codeDesignQuantityPrice
S131 Single pixel 25 £499
S132 Single pixel 100 £1499
S133 4-Pixel 25 £499
S134 4-Pixel 100 £1499
S135 Array 25 £499
S136 Array 100 £1499




Other products you may be interested in...

50mm Substrate Rack
50mm Evaporation shadow masks
50mm Measurement aperture masks
50mm Substrate rack
50mm Evaporation shadow mask
50mm Measurement aperture mask


Printable HTML Datasheet Adobe PDF


Large Area devices for scale-up engineering, device certification, detector/display arrays and more


50mm completed Substrate Substrates and processing equipment
A completed device
Substrates and processing equipment

Ossila is pleased to announce that it now has large area substrates in stock for device scale up and certification purposes.
Our substrates have been designed to give you the best possible performance by minimising ITO series resistance while being easy to handle and use. They also come pre-coated in a protective photoresist for cleaner ITO and better yield.
Can be used for both OLEDs and OPVs for purposes such as:


• Certification of 1 cm2 devices
• Testing of large area deposition techniques
• Prototype detector and display arrays
• Yield studies
• Large area demonstrators

Available with all the requisite processing equipment including encapsulation glue and coverslips, spin-coating chucks, evaporation shadow masks, measurement aperture masks and cleaning/storage racks.



Substrate dimensions50 mm x 50 mm
Glass TypePolished Soda Lime, Float
Glass Thickness0.7 mm
Substrate CoatingFully Oxidized ITO
ITO Thickness100 nm
ITO Resistance20 Ohm


Substrates Designs


We have designed three types of substrates for different purposes. All substrates are on 50 mm square borosilicate glass with 20 Ohm/square ITP (100nm).



Substrate certificationa dn scale=up

Certification and scale-up

Designed for certification and yield studies. Four pixels each with an active area of 165 mm2 designed to fit with a 1 cm2 aperture mask for certification purposes. The four pixels give the greatest chance of a champion pixel and also allow for yield studies. ITO series resistance minimised for greatest performance. In stock now.



Substrates Pixelated

Pixelated

For detector arrays and yield studies. A 6x6 array of pixels each with an active area of 6.45 mm2 (0.01 inch2) designed to attach to standard 2.54 mm electrical legs or POGO connectors. In stock now.




Substrates Single Pixel

Single pixel

For high-throughput deposition techniques such as doctor-blading and spray-coating as well as for large area demonstrators. One large pixel of 900 mm2. In stock now.




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Processing Equipment



Substrate Rack

Substrate Racks

For cleaning and storing substrates during processing. Holds up to 11 substrates and designed to fit in standard sized beakers. Milled from a single piece of polypropylene to resist most acids and solvents.



Evaporation Shadow Masks

Evaporation shadow masks

For evaporation of cathodes onto substrates. Three different types available for the three substrate designs. All available in single-substrate configuration for small evaporation chambers and four-substrate configuration for large chambers. Made from stainless steel to avoid outgassing under vacuum.



Aperture Masks

Aperture masks

Electrochemically etched apertures to define the active are for measurement of OPVs under solar simulators. Each aperture has dimensions of 11 mm x 11 mm to enable 1 cm2 certification. Note that aperture areas require calibration for exact measurement.



To the best of our knowledge the technical information provided here is accurate. However, Ossila assume no liability for the accuracy of this information. The values provided here are typical at the time of manufacture and may vary over time and from batch to batch.





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