1461798001 Allicdata Electronics
Allicdata Part #:

WM15003-ND

Manufacturer Part#:

1461798001

Price: $ 7.77
Product Category:

Inductors, Coils, Chokes

Manufacturer: Molex, LLC
Short Description: RX 1 COIL 1 LAYER 2.9UH
More Detail: 1 Coil, 1 Layer 2.9µH Wireless Charging Coil Recei...
DataSheet: 1461798001 datasheet1461798001 Datasheet/PDF
Quantity: 406
1 +: $ 7.06230
10 +: $ 6.52995
100 +: $ 5.29477
500 +: $ 4.94175
1000 +: $ 4.69467
Stock 406Can Ship Immediately
$ 7.77
Specifications
Series: NuCurrent®, PowerLife™, 146179
Part Status: Active
Function: Receiver
Type: 1 Coil, 1 Layer
Inductance: 2.9µH
Tolerance: ±2%
DC Resistance (DCR): 120 mOhm
Q @ Freq: 160 @ 6.78MHz
Current Rating: --
Current - Saturation: --
Frequency - Self Resonant: --
Operating Temperature: --
Size / Dimension: 2.236" L x 2.864" W x 0.037" H (56.80mm x 72.75mm x 0.95mm)
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Wireless Charging Coils are becoming increasingly popular in the field of 1461798001 applications. These wireless coils are powered by electromagnetic waves and generate energy to charge batteries and other small electronic devices. This type of technology is becoming more widespread as it has the potential to reduce the clutter of wires and power cords in the home and office.

The actual working principle of the wireless charging coils is relatively straightforward. It involves the transmission of energy from a transmitting coil, referred to as the primary coil, and a receiving coil, referred to as the secondary coil. Both of these coils create an electric field which, when opposed to each other, creates an electrical current. This current is then converted into usable energy by an external power source. It is this converted energy which is then used to charge batteries or other small electronic devices.

The primary coil produces an alternating current which creates a magnetic field that induces current within the secondary coil. This process is known as electromagnetic induction. Once induced, the current in the secondary coil is then converted to usable electric energy. In order for this process to occur, the primary coil must be in direct proximity to the secondary coil and the process is much more efficient when the coils are in close proximity.

This type of wireless charging system is becoming increasingly popular due to its numerous advantages. First, it reduces the need for power cords and wires. This also eliminates the risk of electric shocks and the need for outlets. Furthermore, by utilizing this technology, devices can be charged without having to be physically plugged into an outlet.

Furthermore, wireless charging coils can provide a quicker and more efficient charge than a traditional charger. Since the coils are in close proximity, the power transfer is much more efficient. This decrease in power loss means that devices can be charged faster. Additionally, since there is no physical connection between the coils, the devices can be moved while maintain a charge. This eliminates the need to constantly unplug and replug the device.

Finally, wireless charging coils are cost effective. The initial cost of installation of the wireless charging coils is significantly less than traditional chargers. Furthermore, due to its efficient power transfer, the energy costs are significantly lower than traditional chargers.

Wireless Charging Coils are becoming increasingly popular in the field of 1461798001 applications due to its various advantages. The actual working principle of this type of technology is relatively straightforward and involves the transmission of energy from a transmitting coil and a receiving coil. This type of technology reduces the need for cords and wiring, eliminates the risk of electric shocks, enables the devices to be charged without having to be plugged into an outlet, and provides a quicker and more efficient charge than traditional chargers. Lastly, the cost of setting up this type of system is much lower than that of traditional chargers due to its efficient power transfer.

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

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