MSE PRO 0.7 mm 15 Ohm/Sq ITO Coated Glass Substrate

MSE PRO 0.7 mm 15 Ohm/Sq ITO Coated Glass Substrate

5
(594)
Write Review
More
$ 342.00
Add to Cart
In stock
Description

Description of 15 Ohm/sq Indium Doped Tin Oxide Glass Substrate 0.7 mm 15 Ohm/sq, 0.7 mm thickness ITO Glass Substrate, Indium Doped Tin Oxide

NSG TEC15 FTO substrate, TEC 15 glass, Fluorine Doped Tin Oxide (FTO) coated TEC 15 Glass (0.7 mm Thickness), For ITO please click here.,

MSE PRO 0.7 mm 13-15 Ohm/Sq FTO TEC 15 Coated Glass Substrate

Indium tin oxide coated glass slide, square surface resistivity 8-12ohm/sq 50926-11-9

Modular fabrication of intelligent material-tissue interfaces for bioinspired and biomimetic devices - ScienceDirect

Modular fabrication of intelligent material-tissue interfaces for bioinspired and biomimetic devices - ScienceDirect

FTO Glass_Fluorine Doped Tin Oxide (FTO) coated TEC 7 Glass– MSE Supplies LLC

Magnetic Substrate Guide for ULTILE Precision Glass Cutters– MSE

Description of 15 Ohm/sq Indium Doped Tin Oxide Glass Substrate 0.7 mm 15 Ohm/sq, 0.7 mm thickness ITO Glass Substrate, Indium Doped Tin Oxide

MSE PRO 0.7 mm 15 Ohm/Sq ITO Coated Glass Substrate

1.1mm ITO Fto Coated Glass Substrate with Silver Busbar Clear Conductive Glass 1 Ohm-15 Ohm for Laboratory and Touch Panel LCD Screen Display PV Battery Use - China ITO Glass, Fto Glass

1.1mm ITO Fto Coated Glass Substrate with Silver Busbar Clear Conductive Glass 1 Ohm-15 Ohm for Laboratory and Touch Panel LCD Screen Display PV Battery Use - China ITO Glass, Fto Glass

ITO Coated Conductive Glass Transparent Indium tin Oxide Conductor Material 10×10×1.1mm Surface Resistance: <15ohm/sq for Lab R&D Use (168 Slides) : Qunguan: Industrial & Scientific

PDF) Solution-Processed Robust Multifunctional Memristor of 2D Layered Material Thin Film

MSE PRO PMN-PT Single Crystals and Substrates, PMNT

Solution-Processed Robust Multifunctional Memristor of 2D Layered Material Thin Film

Solution-Processed Robust Multifunctional Memristor of 2D Layered Material Thin Film

Chemical approaches for electronic doping in photovoltaic materials beyond crystalline silicon - Chemical Society Reviews (RSC Publishing) DOI:10.1039/D2CS00110A