Ceramic coil vape solution

Short Description:

Ideal atomization conditions are the equilibrium of power, heat and flow
1. Suitable atomization temp: Ideal atomization temperature for cigarette oil
2. Output power of the program board: Power required to achieve desired atomization temperature
3. Structural design of airway and oilway: Rationalization of airway design and rationalization of oilway design


Product Detail

Product Tags

Feature

Silicore technical is an atomization platform based on finding the balance between power, heat and flow.

Airway:
The airway affects oil leakage, condensate, etc. If the airway is not smooth, and the atomized smoke accumulates and stays on the airway, it will condense; the airway does not have a buffer ventilation structure. With the consumption of e-liquid, the air in the oil warehouse increases, forming a pressure difference, which must leak oil.

Oilway:
Poorly designed oil passages will lead to burnout and carbon buildup. If the oil passage is clogged with air bubbles, even the fastest atomizer core will be carbonized.

E-liquid Atomization Temperature

To achieve the extreme taste, the ideal atomization temperature of the smoke oil is a necessity. Matching the thermodynamic properties and power of ceramic atomizer cores is key.

E-liquid type:
Disposable tobacco, moist and high-sweet e-liquid needs to choose a vertical hair ceramic coil,because the airway is short.
For bullet change and disposable delicate and fresh e-liquid, need to choose a flat ceramic coil.

Power:
<7W choose thick film ceramic coil,which with strong burst, it only needs low power to reach the ideal atomization temperature;
>7.5W choose a SMD ceramic coil, which requires high power to achieve the desired atomization temperature.

Viscosity of tobacco liquid:
The viscosity of the e-liquid directly affects the atomization temperature. After determining the viscosity of the e-liquid, the ceramic coil is the best choice. The oil conduction speed is the oil conduction speed required to reach the ideal atomization temperature. Not too fast, not too slow.

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