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Categories | Wireless Charging Coil |
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Brand Name: | ZXY |
Model Number: | G84-6.3UH |
Certification: | RoHS,ISO9001-2001 |
Place of Origin: | China,shenzhen city. |
MOQ: | Negotiable |
Price: | Negotiable |
Supply Ability: | 2000K-pcs/month |
Delivery Time: | Stock Or 3 weeks |
Packaging Details: | 100pieces / Carton size:380mm*325mm*345mm |
Inductance: | 6.3UH |
Coil color: | White |
Usage: | Charging |
Input/Output Voltage: | Customized |
Current: | 15W |
Name: | 6.3UH Wireless Charging Coil |
Company Info. |
Shenzhen Zhixiangyuan Electronics Co., Ltd. |
Verified Supplier |
View Contact Details |
Product List |
6.3μH refers to the inductance of this wireless charging coil. Inductance is a characteristic of a coil that reflects the coil's ability to impede changes in current. In the field of wireless charging, 6.3μH wireless charging coils are usually used as transmitting coils or receiving coils to participate in the electromagnetic induction process to realize the transmission of electrical energy. Generally, it can be used in a variety of devices that require wireless charging, such as smartphones, smartwatches, wireless headphones, etc.
Product name | G84-6.3UH |
Product Attributes | Wireless Charger |
Product Service temperature | -40+125 |
Inductance value | 6.3UH |
Product Size | 84mmx1.0mm |
1. Specific inductance value: the inductance of 6.3μH is determined according to the design requirements of the wireless charging system, which can enable the coil to form a suitable resonance frequency with other components in the circuit (e.g. capacitors, etc.) at a specific operating frequency to realize efficient power transmission and conversion.
2. Good electromagnetic compatibility: the use of appropriate
materials and structural design, can effectively reduce
electromagnetic interference (EMI) and electromagnetic radiation,
not only to avoid interference with other electronic equipment in
the vicinity, but also to prevent themselves from external
electromagnetic interference, to ensure the stability and
reliability of the charging process.
3. Highly conductive materials: copper and other materials with
high conductivity are usually used for winding, which can reduce
the resistance of the coil, reduce the heat loss in the process of
power transmission, improve the charging efficiency, and also help
to extend the service life of the coil.
4. Compact structure: in order to adapt to various miniaturized
electronic devices, 6.3μH wireless charging coils are generally
designed with compact structure and small volume, which can be
conveniently integrated into the charging base and inside the
charged devices without occupying too much space.
5. Certain temperature stability: by adopting suitable winding
process and material, it has good temperature stability, and can
maintain relatively stable inductance value and performance under
different ambient temperatures and heat generation in the charging
process to ensure that the charging effect will not be affected too
much.
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