AWCCA-98T56H38-C01-B Allicdata Electronics
Allicdata Part #:

535-13310-ND

Manufacturer Part#:

AWCCA-98T56H38-C01-B

Price: $ 7.97
Product Category:

Inductors, Coils, Chokes

Manufacturer: Abracon LLC
Short Description: TRANSMITTER 3 COIL 1 LAYER
More Detail: 3 Coil, 1 Layer 12.0µH, 11.5µH, 12.0µH Wireless Ch...
DataSheet: AWCCA-98T56H38-C01-B datasheetAWCCA-98T56H38-C01-B Datasheet/PDF
Quantity: 117
1 +: $ 7.25130
10 +: $ 6.70761
100 +: $ 5.43848
500 +: $ 5.07591
1000 +: $ 4.82211
Stock 117Can Ship Immediately
$ 7.97
Specifications
Series: AWCCA
Part Status: Active
Function: Transmitter
Type: 3 Coil, 1 Layer
Inductance: 12.0µH, 11.5µH, 12.0µH
Tolerance: ±10%
DC Resistance (DCR): 56 mOhm
Q @ Freq: 120,110 @ 100kHZ
Current Rating: --
Current - Saturation: --
Frequency - Self Resonant: --
Operating Temperature: -25°C ~ 85°C
Size / Dimension: 3.86" L x 2.20" W x 0.15" H (98.0mm x 56.0mm x 3.8mm)
Description

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Wireless charging technology has grown significantly over the last decade, and today many tech companies and researchers strive to realize wireless power transfer. This has led to an incredible range of wireless power options, from Qi to Radio Frequency (RF) systems, each with their own advantages and disadvantages. One of the most remarkable innovations in this field is the AWCCA-98T56H38-C01-B wireless charging coils.

The AWCCA-98T56H38-C01-B wireless charging coils are designed to reduce a person’s reliance on cords. The coils are composed of a number of copper turns, which induce a current when exposed to a magnetic field. The magnetic field is generated by a transmitter, which sends energy to the receiver coil. The AWCCA-98T56H38-C01-B transmitter is located at the source of energy and is usually powered by a battery or a flow of electricity. The receiver coil is located at the receiving end and is magnetically coupled to the transmitter.

One of the primary applications of the AWCCA-98T56H38-C01-B wireless charging coils is in consumer electronics. Many mobile phones, laptops, and tablets now have built-in wireless charging capabilities thanks to these coils. Instead of having to plug a device into a wall socket for charging, users simply place the device onto a charging dock containing the transmitter coil, which charges the device overnight.

The AWCCA-98T56H38-C01-B wireless charging coils also have some industrial applications. For example, some renewable energy systems make use of the coils to transfer energy over short distances from one building to another. These coils are particularly advantageous for places that are difficult to reach by wires, such as rural areas with limited access to power grids.

The working principle of the AWCCA-98T56H38-C01-B wireless charging coils is based on the principle of magnetic induction. As mentioned earlier, the transmitter coil generates a magnetic field. If a receiver is located within this field, then a current will be induced in the coil. This current is then sent to the device for charging.

In effect, the AWCCA-98T56H38-C01-B wireless charging coils allow for the transfer of energy without any physical contact. This makes them a great solution for charging devices without the need for cables and wires. The coils are also highly efficient, as the majority of the energy is transmitted to the device instead of being lost as heat or radiation.

In summary, the AWCCA-98T56H38-C01-B wireless charging coils offer a variety of practical applications in consumer electronics and renewable energy systems. The coils are highly efficient and capable of transferring energy without any physical contact. This makes them an attractive and cost-effective solution for many applications.

The specific data is subject to PDF, and the above content is for reference

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