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Place of Origin: | CHINA |
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Brand Name: | FUNSONIC |
Certification: | CE |
Model Number: | FS310 |
Minimum Order Quantity: | 1 UNIT |
Price: | Negotation |
Packaging Details: | Packed by Wooden Case |
Payment Terms: | T/T, Western Union |
Supply Ability: | 1000 unit per month |
Production Name: | Ultrasonic Precision Spraying Machine | Frequency: | 20-200Khz |
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Max Power: | 1-15w | Automized Particle Size Range: | 15-45μm |
Spray Flow: | 0.5-10ml/min | Liquid Viscosity: | <30cps |
Particle Size: | <8μm | Application: | Suitable For Qualitative Experiments |
Highlight: | Ultrasonic Precision Coating,Transparent Conductive Oxide Ultrasonic Coating,Precision ultrasonic spray coating machine |
Transparent Conductive Oxide Ultrasonic Precision Coating
Description:
Transparent Conductive Oxide (TCO) Ultrasonic Precision Coating is a high-tech coating technology mainly used to form transparent and conductive coatings in electronic and optoelectronic devices.
Transparent conductive oxides (such as indium tin oxide, ITO) are commonly used in applications such as touch screens, displays, and solar cells. Ultrasonic precision coating technology uniformly applies TCO coating on the surface of the substrate through high-frequency vibration of ultrasonic waves, enhancing the adhesion between the coating and the substrate, and accurately 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:
Product Type |
Ultrasonic Precision Spray Coating Machine Laboratory desktop Type |
Spray Nozzle Operating Frequency | 20-200KHz |
Nozzle Power | 1-15W |
Continuous Spraying Volume Max | 0.01-50ml/min |
Effective Spraying Width | 2-100mm |
Spray Uniformity | ≥95% |
Solution Conversion Rate | ≥95% |
Dry Film Thickness | 20nm-100μm |
Solution Viscosity | ≤30cps |
Temperature Range | 1-60℃ |
Atomized Particles (Median Value) | 10-45μm (distilled water), determined by the frequency of the nozzle |
Diversion Pressure Max | ≤0.10MPA |
Input Voltage | 220V±10%/50-60Hz |
Exercise Mode | X+Y two axis fully automatic, Z-axis manual adjustment |
Control Mode | Micro computer card, 7-inch touch screen+buttons |
Control Content | Ultrasonic spraying, liquid supply, heating, ultrasonic dispersion and other systems |
Liquid Supply Method | Precision injection pump |
Ultrasonic Dispersion System (Optional) | 50ml, 40K, biological grade sampler |
Rated Power of Ultrasonic Dispersion System | 200W,10A |
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 recommended to increase the distance between the nozzle and the substrate appropriately, usually between 5-15 centimeters, depending on the type of coating and application requirements.
2. Adjust the nozzle angle: Ensure that the spray angle of the nozzle is suitable for the coating object, and avoid excessively vertical spraying, which may cause the coating to directly impact the substrate.
3. Reduce spraying pressure: If a pneumatic system is used, reducing the spraying pressure appropriately can reduce the impact force of the coating, thereby reducing splashing.
4. Increase the coating speed appropriately: Increasing the coating speed can reduce the residence time of the coating on the substrate, thereby reducing the possibility of splashing.
5. Choose the appropriate nozzle type: Based on the coating and application requirements, choose the appropriate nozzle type, such as a nozzle with better atomization effect.
Transparent Conductive Oxide Ultrasonic Precision Coating