High Frequency Ion Nozzle
Classification:
Keyword:
Electrostatic monitoring equipment
Product details
Product Overview
The high-frequency ion air nozzle is a specialized equipment for electrostatic elimination launched by our company. It adopts high-frequency AC method and uses clean compressed air to discharge tungsten alloy needles, generating positive and negative ions that are blown out from the nozzle hole. With excellent ion balance, it achieves the effect of eliminating static electricity over a large area. Among them, the networked ion air nozzle, combined with the company's developed IoT control platform and WeChat mini program, can achieve remote control, remote monitoring, remote alarm, report printing, and timely push of device abnormal information and other functions. The product is widely used in industries such as precision electronics, semiconductor production, and pharmaceutical manufacturing.
Product Features
●Equipped with networked remote monitoring function, it is convenient for equipment maintenance personnel to view or receive abnormal information at any time, solve problems in a timely manner, save maintenance costs, and improve the timeliness of equipment normal operation. From the production link of static electricity elimination, it effectively ensures the normal progress of production, further improves production efficiency and capacity, and reduces costs
Low failure rate of production products. (Online version only)
●The automatic ion balance system can achieve ion balance within ± 10V.
●Built in high integration high-voltage generation circuit, the product has a small size, making installation and use safer and more convenient.
●Equipped with power operation indicator light, discharge operation indicator light, discharge abnormal indicator light, and function abnormal indicator light, it is convenient to understand the operating status of the equipment.
●Selected specially made tungsten alloy discharge needle, which is not easy to wear out after long-term use.
Specification Parameters
| Project | Specifications | Remark | |
| Product Name | High frequency ion nozzle | ||
| Power consumption time | Less than 1 second | (Note 1) | |
| Ion balance | Within ± 10V | (Note 1) | |
| Use airflow | Air (dry and clean air) | ||
| Airflow pressure | 0.05Mpa-0.5Mpa | (Note 2) | |
| Power supply voltage | DC24V±5% | ||
| Operating current | Below 100mA | ||
| Ion emission method | High frequency AC type | ||
| Ion generation method | Corona discharge type | ||
| Discharge output voltage | Approximately 2200V | ||
| Outer diameter of piping | Ø6 | ||
| Indicator light | Abnormal function indicator light | ALM: Red LED lights up when abnormal discharge is detected | |
| contact method | Abnormal discharge indicator light | CHK: When the discharge is insufficient or the tungsten needle needs to be cleaned, the yellow LED lights up | |
| Ozone generation | Normal discharge indicator light | H. V: The green LED stays on during normal discharge | |
| Adapted power supply | Power working indicator light | PWR: The green LED stays on during normal operation | |
| Environmental temperature for use | RS485 | ||
| Environmental humidity for use | Below 0.03ppm | (Note 3) | |
| Material | Internet of Things power supply (networking function) | ||
| Weight | Input: AC220V 50Hz/60Hz | ||
| Overall dimensions | Output: DC24V 0.5A | ||
| Project | Universal adapter (without networking function) | ||
| Product Name | Input: AC220V 50Hz/60Hz | ||
| Power consumption time | Output: DC24V 0.5A | ||
| Ion balance | 0-60 ℃ (no condensation) | ||
(Note 1) A representative example of using a straight nozzle with an air pressure of 0.3 MPa for a distance of 300mm between a charged object and the nozzle of a static eliminator.
(Note 2) Without air blowing, static electricity cannot be removed, and the ozone concentration inside the nozzle may increase, which may also cause damage to this product or surrounding products
Due to adverse effects, air must be blown out when ions are generated.
When there is no air blowing out, the discharge signal input should be turned off to stop the discharge.
(Note 3) The value obtained by subtracting interference from the distance of 300mm in front of the nozzle of the static eliminator.
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