Used HOE IE HIMJ-0072 #9132945 for sale
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HOE IE HIMJ-0072 is a photoresist equipment developed by HOE (Homogeneous Organic Electronics) that utilizes a novel intaglio printing technology and improved components. This photoresist system is intended for use in the production of high resolution, low cost, low-voltage electroluminescent displays. HIMJ-0072 unit includes a base photoresist substrate and two color deposition layers. The base substrate is a transparent indium tin oxide (ITO) film with an annealed tin oxide (ATO)/titanium oxide (TiO2) barrier layer. This base substrate is designed to provide uniform coverage and low resistance to the materials used in the deposition of the two color layers on top. The color deposition layers are formed using two different evaporation processes: a resistive evaporation process utilizing a metal mask and a direct evaporation process utilizing a semiconductor mask. The first layer is a negative tone photoresist which is patterned using a single photomask in the resistive evaporation process. This layer is designed to be a conductive pattern that will serve as the guide for electroluminescent materials in the second deposition layer. The second layer consists of electroluminescent phosphor materials and is deposited using the direct evaporation process. The combination of these two layers provides a high resolution display that is both low voltage and low cost. The layer thickness of the phosphor materials in the second layer is consistently controlled using a thermally-controlled deposition process. The resolution of the display is also kept high due to the use of a sub-micron resolution photomask. HOE IE HIMJ-0072 photoresist machine is suitable for use in the production of electroluminescent displays with increased resolution and low costs. This tool is designed to be compatible with existing processes and is well suited for producing highly detailed patterns with an impressive level of accuracy. Due to its low-voltage properties, the asset can be used in applications where power consumption must be kept to a minimum.
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