It is designed to operate in a wide humidity range. The humidity-tolerant battery can function in environments with varying levels of moisture. Whether it's a humid tropical rainforest where a research station needs power or a damp basement where a home backup system is located, it can maintain its performance without succumbing to humidity-related issues like corrosion or short circuits.
They are produced using a die casting process for metal components. Molten metal is forced under high pressure into a precisely machined die cavity, taking on the exact shape of the desired part. This method allows for high production rates and excellent dimensional accuracy, making it ideal for creating complex metal pieces. In automotive manufacturing, it's commonly used to produce engine blocks, transmission housings, and various other components. The resulting parts have a smooth surface finish and high structural integrity, reducing the need for extensive post-processing. For instance, in an electric vehicle's motor production, die-cast components can enhance heat dissipation due to their dense structure, ensuring the motor operates at optimal temperatures. This process also minimizes material waste, as the molten metal fills the die cavity almost completely, contributing to cost-effective and sustainable production.
In a bustling industrial park, it's a pioneer in wireless power transfer technology. Here, they manufacture devices that can transmit electricity through the air, eliminating the need for cords. The production process involves intricate coil design and precise tuning of electromagnetic frequencies. The coils, made from high-quality conductive materials, are carefully wound and calibrated to achieve maximum power transfer efficiency. In applications like wireless charging pads for smartphones and electric vehicles, this technology offers convenience and flexibility. The facility also has a wireless power testing area where they measure the transfer efficiency and range under different conditions, constantly striving to improve the performance.
| Voltage | 12V/24V |
| Capacity | 100/200Ah |
| Cycle Life | >3000 cycles |
| Efficiency of Charge | 100% @0.5C |
| Efficiency of Discharge | 96~99% @1C |
| Charge Voltage | 14.6±0.2V |
| Charge Current | 60A |
| IP Class | IP65 |


























FAQ
Q: How does the pulsed electric field treatment enhance material properties?
A: When we apply a pulsed electric field to materials, it triggers a series of molecular-level changes that enhance their properties. In polymers, for example, the pulsed electric field can align the molecular chains. Normally, polymer chains are randomly oriented, but under the influence of the electric field pulses, they tend to line up in the direction of the field. This alignment improves the mechanical strength of the polymer, making it more resistant to stretching and tearing. It also enhances the electrical conductivity as the aligned chains provide a more favorable pathway for electron movement. In food processing, the pulsed electric field can be used to pasteurize liquids without heating.
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