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Transparent Conductive Oxide Ultrasonic Precision Coating
Item No: FS310
Frequency: 20-200khz for Optional
Power: 1-15w
Continuous spraying amount(max): 0.5-10ml/min
Effective spraying width: 2-20mm
Spray uniformity: ≥95%
Solution viscosity: ≤30cps
Atomized particles (median value): 10-45μm(Distilled water), determined by nozzle frequency
Hangzhou Shengtu Technology Co., Ltd. is one of the leading manufacturers and suppliers of transparent conductive oxide ultrasonic precision coating in China. Welcome to buy high quality customized products at low price from our factory. Contact us for more details.
Description:
Transparent Conductive Oxide (TCO) Ultrasonic Precision Coating is a high-tech coating science primarily used to structure obvious and conductive coatings in digital and optoelectronic devices.
Transparent conductive oxides (such as indium tin oxide, ITO) are in many instances used in functions such as contact screens, displays, and photo voltaic cells. Ultrasonic precision coating technological know-how uniformly applies TCO coating on the floor of the substrate thru high-frequency vibration of ultrasonic waves, improving the adhesion between the coating and the substrate, and precisely controlling the thickness and uniformity of the coating.
FUNSONIC basic ultrasonic spraying machine FS310 is mainly developed by enterprises, universities, and research institutes that are in contact with ultrasonic spraying equipment for the first time.
Parameters:

Nozzle Adjusting :
When the nozzle is too close to the substrate, the coating may be overly concentrated during spraying, resulting in uneven diffusion of the coating and the formation of splashes. Here are some adjustment suggestions:
1. Increase the distance between the nozzle and the substrate: It is endorsed to enlarge the distance between the nozzle and the substrate appropriately, typically between 5-15 centimeters, relying on the kind of coating and utility requirements.
2. Adjust the nozzle angle: Ensure that the spray perspective of the nozzle is appropriate for the coating object, and keep away from excessively vertical spraying, which may also purpose the coating to without delay affect the substrate.
3. Reduce spraying pressure: If a pneumatic gadget is used, decreasing the spraying stress as it should be can minimize the have an impact on pressure of the coating, thereby decreasing splashing.
4. Increase the coating velocity appropriately: Increasing the coating pace can decrease the house time of the coating on the substrate, thereby decreasing the opportunity of splashing.
5. Choose the suitable nozzle type: Based on the coating and software requirements, select the splendidnozzle type, such as a nozzle with higher atomization effect.



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