Coilcraft 0402HP-13NXGLW
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See Product Specifications.
See Product Specifications.
Stock Code
026568
026568
Manufacturer / Brand
Coilcraft
Part Number
0402HP-13NXGLW
0402HP-13NXGLW
Categories
Unit Price
$0.5200
$0.5200
Factory Lead-Time
8 Weeks
8 Weeks
Short Description
0402HP-13NXGLW: Small ceramic inductor by Coilcraft
0402HP-13NXGLW: Small ceramic inductor by Coilcraft
Datasheet
In Stock: 12943
Qty | Unit Price | Total Price | Discount |
---|---|---|---|
1 | $0.5200 | $0.5200 | |
10 | $0.4500 | $4.5000 | -13.46% |
100 | $0.3900 | $39.0000 | -25% |
Description
The Coilcraft 0402HP-13NXGLW is a miniature surface-mount inductor with a high Q factor and low DC resistance. This inductor is designed to provide reliable performance in electronic applications that require miniaturization and high frequency operation. The 0402HP-13NXGLW features a wirewound design, which allows for high inductance values in a small package size. The device measures just 1.0mm x 0.5mm x 0.5mm and has a maximum rated current of 80mA.
The inductor features a ceramic core that provides excellent stability and low losses at high frequencies. The 0402HP-13NXGLW has a nominal inductance of 13nH and a tolerance of ±2%. The device is rated for operation at temperatures ranging from -40°C to +125°C and has a maximum DC resistance of 0.12 ohms. The coil is designed for use in a wide range of applications, including mobile devices, Wi-Fi routers, and other high frequency circuits. Its compact size and reliable performance make it an ideal solution for space-constrained designs
The inductor features a ceramic core that provides excellent stability and low losses at high frequencies. The 0402HP-13NXGLW has a nominal inductance of 13nH and a tolerance of ±2%. The device is rated for operation at temperatures ranging from -40°C to +125°C and has a maximum DC resistance of 0.12 ohms. The coil is designed for use in a wide range of applications, including mobile devices, Wi-Fi routers, and other high frequency circuits. Its compact size and reliable performance make it an ideal solution for space-constrained designs