Wireless Charging Coils

Results:
286
Manufacturer
Series
Size / Dimension
DC Resistance (DCR)
Inductance
Q @ Freq
Current Rating (Amps)
Frequency - Self Resonant
Current - Saturation (Isat)
Operating Temperature
Type
Tolerance
Function
Results remaining286
Select
ImageProduct DetailPriceAvailabilityECAD ModelToleranceOperating TemperatureCurrent Rating (Amps)SeriesFunctionTypeInductanceDC Resistance (DCR)Q @ FreqCurrent - Saturation (Isat)Frequency - Self ResonantSize / Dimension
760308100141
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
9A
WE-WPCC
Transmitter
1 Coil, 2 Layer
10µH
30mOhm Max
180 @ 125kHz
16A
11MHz
1.97" L x 1.89" W x 0.24" H (50.0mm x 48.0mm x 6.0mm)
760308101220
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
1.1A
WE-WPCC
Receiver
1 Coil, 3 Layer, Bifilar
12.6µH
340mOhm Max
20 @ 125kHz
2.5A
19MHz
0.67" Dia x 0.03" H (17.0mm x 0.8mm)
WR301025-19M8-G
RX 1 COIL 2 LYR 12.8UH
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
WR
Receiver
1 Coil, 2 Layer
12.8µH
1.27Ohm Max
-
-
-
-
2114
UNIVERSAL QI WIRELESS CHARGING M
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
600mA
-
Receiver
-
-
-
-
-
-
-
1461798021
RX 1 COIL 1 LAYER 4UH
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
*
-
-
-
-
-
-
-
-
AWCCA-50N50H50-C01-B
RX TX 1 COIL 1 LAYER 24UH 5.7A
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-25°C ~ 85°C
5.7A
AWCCA-50N50
Receiver, Transmitter
1 Coil, 1 Layer
24µH
72mOhm
163 @ 100kHz
30A
2.8MHz
1.96" L x 1.96" W x 0.19" H (50.0mm x 50.0mm x 5.0mm)
AWCCA-47R38H08-C01-B
RX 1 COIL 1 LAYER 11.5UH
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Quantity
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PCB Symbol, Footprint & 3D Model
±5%
-25°C ~ 85°C
-
AWCCA
Receiver
1 Coil, 1 Layer
11.5µH
160mOhm
34 @ 100kHz
-
-
1.85" L x 1.50" W x 0.03" H (47.0mm x 38.0mm x 0.9mm)
760308104120
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
9A
WE-WPCC
Transmitter
3 Coil, 1 Layer
6.9µH, 6.4µH, 6.9µH
45mOhm
100 @ 125kHz
12A
15MHz
-
WTM-12R5K-A6
MULTI-COIL WIRELESS CHARGING COI
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 85°C
7A
WCC
Transmitter
3 Coil, 1 Layer
11.5µH, 12.5µH
65mOhm Max
-
10A
-
3.94" L x 2.17" W x 0.16" H (100.0mm x 55.0mm x 4.0mm)
WR524830-16F3-NF-G
RX 1 COIL, 1 LYR 19.5UH
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
WR
Receiver
1 Coil, 1 Layer
19.5µH
800mOhm
-
-
-
2.05" L x 1.89" W x 0.02" H (52.0mm x 48.0mm x 0.6mm)
760308101103
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
3A
WE-WPCC
Transmitter
1 Coil, 1 Layer
6.5µH
180mOhm Max
35 @ 125kHz
8A
20MHz
1.18" L x 1.18" W x 0.07" H (30.0mm x 30.0mm x 1.9mm)
760308103149
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
9A
WE-WPCC
Transmitter
3 Coil, 1 Layer
10.2µH, 9.8µH, 10.2µH
55mOhm
110 @ 125kHz
18A
8MHz
4.17" L x 2.24" W x 0.17" H (106.0mm x 57.0mm x 4.2mm)
760308102213
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
1.7A
WE-WPCC
Receiver
1 Coil, 1 Layer
7.9µH
330mOhm Max
18 @ 125kHz
4A
21MHz
1.14" L x 1.14" W x 0.04" H (29.0mm x 29.0mm x 0.9mm)
WT505090-10F2-LP-G1
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
WT
Transmitter
1 Coil, 1 Layer
6.3µH
60mOhm
-
-
-
2.02" Dia x 0.13" H (51.4mm x 3.4mm)
WR111180-49F5-G
RX 1 COIL 3 LYR 31.8UH
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Quantity
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PCB Symbol, Footprint & 3D Model
±5%
-
-
WR
Receiver
1 Coil, 3 Layer
31.8µH
1.34Ohm
-
-
-
0.43" Dia x 0.07" H (11.0mm x 1.7mm)
AWCCA-98T56H38-C01-B
TRANSMITTER 3 COIL 1 LAYER
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-25°C ~ 85°C
-
AWCCA
Transmitter
3 Coil, 1 Layer
12.0µH, 11.5µH, 12.0µH
56mOhm
120 @ 100kHZ, 110 @ 100kHZ
-
-
3.86" L x 2.20" W x 0.15" H (98.0mm x 56.0mm x 3.8mm)
1461792001
RX 2 COIL 1 LAYER 10.6UH
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
*
-
-
-
-
-
-
-
-
WR111180-36F5-B1
RX 1 COIL 2 LYR 16.6UH
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
WR
Receiver
1 Coil, 2 Layer
16.6µH
1Ohm
-
-
-
0.43" Dia x 0.06" H (11.0mm x 1.5mm)
IWAS4832AEEB120KF1
WIRELESS CHARGING RECEIVE COIL
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-40°C ~ 85°C
3A
-
Receiver
1 Coil, 1 Layer
12µH
200mOhm Max
33 @ 100kHz
-
-
1.89" L x 1.26" W x 0.04" H (48.0mm x 32.0mm x 1.0mm)
760308111
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Quantity
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PCB Symbol, Footprint & 3D Model
±10%
-20°C ~ 105°C
13A
WE-WPCC
Transmitter
1 Coil, 2 Layer, Bifilar
6.3µH
24mOhm Max
80 @ 125kHz
16A
20MHz
2.10" L x 2.10" W x 0.24" H (53.3mm x 53.3mm x 6.0mm)

Wireless Charging Coils

Wireless charging coils are key components in the technology of inductive power transfer, which enables the wireless transfer of energy from a transmitting coil to a receiving coil. These coils generate an alternating electromagnetic field that facilitates the transfer of energy to other coils positioned parallel and in close proximity. The primary application of wireless charging coils is to charge batteries or power electronic devices without the need for physical connections. When energy is transferred from the transmitting coil to the receiving coil, it can be used to charge the battery or directly power the device. Wireless charging coils come in different designs, serving various purposes. Some coils are specifically designed to function as receivers, while others are designed as transmitters. There are also dual-purpose coils that can act as both transmitters and receivers. These coils may consist of a single coil or multiple coils with multiple layers of windings, depending on the specific requirements of the wireless charging system. To ensure compatibility and optimal performance, wireless charging coils are rated based on several key parameters. These parameters include the inductance of the coil, which determines its ability to store and transfer energy efficiently. The self-resonant frequency indicates the frequency at which the coil naturally vibrates electrically. The saturation current represents the maximum current that the coil can handle before its magnetic properties become compromised. Lastly, the Q factor, or quality factor, measures the efficiency of the coil's energy transfer at a given frequency. By considering these important parameters, engineers can select the appropriate wireless charging coils for their specific applications, ensuring efficient and reliable wireless power transfer. In summary, wireless charging coils are crucial components in wireless power transfer systems. They generate electromagnetic fields to facilitate the inductive transfer of energy between coils, enabling wireless charging of batteries and powering electronic devices. By considering factors such as inductance, self-resonant frequency, saturation current, and Q factor, engineers can design efficient and effective wireless charging systems.