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Expressed by three figures. The unit is micro-henry (µH). The first and second figures are significant digits, and the third figure expresses the number of zeros which follow the two figures. If there is a decimal point, it is expressed by the capital letter "R". In this case, all figures are significant digits. If inductance is less than 0.1 µH, the inductance code is expressed by a combination of two figures and capital letter "N", and the unit of inductance is nano-henry (nH). The capital letter "N" indicates the unit of "nH", and also expresses a decimal point. In this case, all figures are
PLH10AN2211R5P2 Features
1. High performance in high frequency range 2. Low profile in vertical core layout 3. Compact and light weight
PLH10AN2211R5P2 Typical Application
Suppressing radiation noise in switching power supply and inverter (AC-AC converter)
PLH10AN2911R2P2 General Description
Expressed by three figures. The unit is micro-henry (µH). The first and second figures are significant digits, and the third figure expresses the number of zeros which follow the two figures. If there is a decimal point, it is expressed by the capital letter "R". In this case, all figures are significant digits. If inductance is less than 0.1 µH, the inductance code is expressed by a combination of two figures and capital letter "N", and the unit of inductance is nano-henry (nH). The capital letter "N" indicates the unit of "nH", and also expresses a decimal point. In this case, all figures are
PLH10AN2911R2P2 Features
1. High performance in high frequency range 2. Low profile in vertical core layout 3. Compact and light weight
PLH10AN2911R2P2 Typical Application
Suppressing radiation noise in switching power supply and inverter (AC-AC converter)