Coating Inductors (SPS/SPH/SPN Series)
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- Αλθαία Αλεξόπουλος
- 5 χρόνια πριν
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1 Coating Inductors (SPS/SPH/SPN Series) Feature 1. Small and low profile inductor 2. It corresponds to high current 3. Simple and original magnetic shield structure Product Range Application For small DC/DC converter (HDD, DVC, DSC, LCD display, notebook, tablet, Bluetooth earphone, cellular phones) DARFON Item Dimensions Height Inductance range (mm) (mm) max 0.1uH 1uH 10uH 100uH 1mH SPS * uH 10uH SPS * ~ uH 10uH SPS * ~ uH 10uH SPS * ~ uH 10uH SPH * uH 4.7uH SPH * ~ uH 22uH SPH * ~ uH 22uH SPH * ~ uH 33uH SPH * ~ uH 47uH SPH * ~ uH 100uH SPH * uH 22uH SPN * uH 10uH SPN * ~ uH 10uH SPN * ~ uH 47uH SPN * ~ uH 220uH SPN * ~ uH 47uH SPN * ~ uH 100uH SPN * ~ uH 100uH Standard External Dimensions BOTTOM Series Recommended Land Patterns Package L W H A B E (mm) (mm) (mm) Reel Amount(pcs) (mm) (mm) (mm) SPS2016 PCA 2.0± ± max ,000 SPN2016 PSA 2.0± ± max ,000 SPS2520 PCA 2.5± ± max " 3,000 SPH2520 PS8 2.5± ± max " 2,000 SPN(H)2520 PSA 2.5± ± max " 2,000 SPS2520 PCC 2.5± ± max " 3,000 SPN(H)2520 PSC 2.5± ± max " 2,000 1
2 BOTTOM Series Recommended Land Patterns Packge L W H C D A B E (mm) (mm) (mm) (mm) (mm) Reel Amount(pcs) (mm) (mm) (mm) SPH2020 PCC 2.0± ± max 1.25± ± ,500 SPS3030 PCA 3.0± ± max 1.9± ± " 2,000 SPN(H)3030 PTA 3.0± ± max 1.9± ± " 2,000 SPS3030 PCC 3.0± ± max 1.9± ± " 2,000 SPN(H)3030 PTC 3.0± ± max 1.9± ± " 2,000 SPN(H)3030 PTE 3.0± ± max 1.9± ± " 2,000 SPS4040 PCA 4.0± ± max 2.5± ± " 1,000 SPN(H)4040 ETA 4.0± ± max 2.5± ± " 5,000 SPS4040 PCC 4.0± ± max 2.5± ± " 1,000 SPN(H)4040 ETC 4.0± ± max 2.5± ± " 4,500 SPN(H)4040 ETG 4.0± ± max 2.5± ± " 3,500 SPH4040 ESH 4.0± ± max 2.5± ± " 3,500 SPN5050 PTA 4.9± ± max 3.3± ± " 1,000 SPN5050 PTC 4.9± ± max 3.3± ± " 1,000 SPN5050 PTD 4.9± ± max 3.3± ± " 1,000 SPN(H)5050 PTH 4.9± ± max 3.3± ± " 800 SPN5050 ETI 4.9± ± max 3.3± ± " 2,500 SPN5050 PTL 4.9± ± max 3.3± ± " 500 SPN(H)5050 ETN 4.9± ± max 3.3± ± ,500 SPN6060 PTA 6.0± ± max 4.0± ± ,000 SPN(H)6060 PTC 6.0± ± max 4.0± ± ,000 SPN6060 PTD 6.0± ± max 4.0± ± ,000 SPN(H)6060 ETH 6.0± ± max 4.0± ± ,500 SPN(H)6060 ETK 6.0± ± max 4.0± ± ,000 SPN(H)6060 ETP 6.0± ± max 4.0± ± ,500 SPN8080 ETL 8.0± ± max 5.62± ± ,000 SPN(H)8080 ETN 8.0± ± max 5.62± ± ,000 Part Numbers & Characteristic (SPS Series for Metal Coating) SPS2016 DARFON P/N Thickness Inductance Typ. Max. Idc(A) Typ. Isat(A) Typ. SPS2016R24MPCA 0.24 ± 20% MHz,1V SPS2016R33MPCA 0.33 ± 20% MHz,1V SPS2016R47MPCA 0.47 ± 20% MHz,1V SPS2016R68MPCA 0.68 ± 20% MHz,1V SPS20161R0MPCA 1.0 ± 20% MHz,1V SPS20161R5MPCA 1.0mm 1.5 ± 20% MHz,1V SPS20162R2MPCA 2.2 ± 20% MHz,1V SPS20163R3MPCA 3.3 ± 20% MHz,1V SPS20164R7MPCA 4.7 ± 20% MHz,1V SPS20166R8MPCA 6.8 ± 20% MHz,1V SPS MPCA 10 ± 20% MHz,1V SPS2016R47MPRA 1.0mm 0.47 ± 20% MHz,1V All test data are referenced to 25 ambient. Isat: DC current(a) that will cause inductance to drop approximately 30%. Idc: DC current(a) that will cause an approximate T of 40. 2
3 SPS2520 Typ. Max. Idc(A) Typ. Isat(A) Typ. SPS2520R33MPCA 0.33 ± 20% MHz,1V SPS2520R47MPCA 0.47 ± 20% MHz,1V SPS2520R68MPCA 0.68 ± 20% MHz,1V SPS25201R0MPCA 1.0 ± 20% MHz,1V SPS25201R5MPCA 1.5 ± 20% MHz,1V 1.0mm SPS25202R2MPCA 2.2 ± 20% MHz,1V SPS25203R3MPCA 3.3 ± 20% MHz,1V SPS25204R7MPCA 4.7 ± 20% MHz,1V SPS25206R8MPCA 6.8 ± 20% MHz,1V SPS MPCA 10 ± 20% MHz,1V SPS2520R24MPCC 0.24 ± 20% MHz,1V SPS2520R33MPCC 0.33 ± 20% MHz,1V SPS2520R47MPCC 0.47 ± 20% MHz,1V SPS2520R68MPCC 0.68 ± 20% MHz,1V SPS25201R0MPCC 1.0 ± 20% MHz,1V SPS25201R5MPCC 1.2mm 1.5 ± 20% MHz,1V SPS25202R2MPCC 2.2 ± 20% MHz,1V SPS25203R3MPCC 3.3 ± 20% MHz,1V SPS25204R7MPCC 4.7 ± 20% MHz,1V SPS25206R8MPCC 6.8 ± 20% MHz,1V SPS MPCC 10 ± 20% MHz,1V SPS3030 Typ. Max. Idc(A) Typ. Isat(A) Typ. SPS3030R47MPCA 0.47 ± 20% MHz,1V SPS30301R0MPCA 1.0 ± 20% MHz,1V SPS30301R5MPCA 1.5 ± 20% MHz,1V SPS30302R2MPCA 2.2 ± 20% MHz,1V 1.0mm SPS30303R3MPCA 3.3 ± 20% MHz,1V SPS30304R7MPCA 4.7 ± 20% MHz,1V SPS30306R8MPCA 6.8 ± 20% MHz,1V SPS MPCA 10 ± 20% MHz,1V SPS3030R30MPCC 0.30 ± 20% MHz,1V SPS3030R47MPCC 0.47 ± 20% MHz,1V SPS30301R0MPCC 1.0 ± 20% MHz,1V SPS30301R5MPCC 1.2mm 1.5 ± 20% MHz,1V SPS30302R2MPCC 2.2 ± 20% MHz,1V SPS30303R3MPCC 3.3 ± 20% MHz,1V SPS30304R7MPCC 4.7 ± 20% MHz,1V 3
4 SPS4040 Typ. Max. Idc(A) Typ. Isat(A) Typ. SPS4040R33MPCA 0.33 ± 20% MHz,1V SPS4040R47MPCA 0.47 ± 20% MHz,1V SPS4040R68MPCA 0.68 ± 20% MHz,1V SPS40401R0MPCA 1.0 ± 20% MHz,1V SPS40401R5MPCA 1.5 ± 20% MHz,1V 1.0mm SPS40402R2MPCA 2.2 ± 20% MHz,1V SPS40403R3MPCA 3.3 ± 20% MHz,1V SPS40404R7MPCA 4.7 ± 20% MHz,1V SPS40406R8MPCA 6.8 ± 20% MHz,1V SPS MPCA 10 ± 20% MHz,1V SPS4040R33MPCC 0.33 ± 20% MHz,1V SPS4040R47MPCC 0.47 ± 20% MHz,1V SPS40401R0MPCC 1.0 ± 20% MHz,1V SPS40401R5MPCC 1.5 ± 20% MHz,1V SPS40402R2MPCC 1.2mm 2.2 ± 20% MHz,1V SPS40403R3MPCC 3.3 ± 20% MHz,1V SPS40404R7MPCC 4.7 ± 20% ,10 1MHz,1V SPS40406R8MPCC 6.8 ± 20% MHz,1V SPS MPCC 10 ± 20% MHz,1V SPS4040R24MPSD 1.4mm 0.24 ± 20% MHz,1V SPS4040R47NPCH 0.47 ± 30% MHz,1V SPS4040R68MPCH 0.68 ± 20% MHz,1V SPS40401R0MPCH 1.0 ± 20% MHz,1V SPS40401R5MPCH 1.5 ± 20% MHz,1V SPS40402R2MPCH 2.0mm 2.2 ± 20% MHz,1V SPS40403R3MPCH 3.3 ± 20% MHz,1V SPS40404R7MPCH 4.7 ± 20% MHz,1V SPS40406R8MPCH 6.8 ± 20% MHz,1V SPS MPCH 10 ± 20% MHz,1V All test data are referenced to 25 ambient. Isat: DC current(a) that will cause inductance to drop approximately 30%. Idc: DC current(a) that will cause an approximate T of 40. 4
5 Part Numbers & Characteristic (SPH Series for Ferrite Coating High ) SPH2020 Inductance DC Resistance Heat Rating Saturation Measuring Condition DARFON P/N Thickness (mω) DC Amp. DC Amps. Typ. Max. Idc(A) Max. Isat(A) Typ. SPH2020R47MPCC 0.47 ± 20% MHz,1V SPH2020R68MPCC 0.68 ± 20% MHz,1V SPH20201R0MPCC 1 ± 20% MHz,1V SPH20201R5MPCC 1.2mm 1.5 ± 20% MHz,1V SPH20202R2MPCC 2.2 ± 20% MHz,1V SPH20203R3MPCC 3.3 ± 20% MHz,1V SPH20204R7MPCC 4.7 ± 20% MHz,1V SPH2520 Inductance DC Resistance Heat Rating Saturation Measuring Condition DARFON P/N Thickness (mω) DC Amp. DC Amps. Typ. Max. Idc(A) Max. Isat(A) Typ. SPH2520R47NPS ± 30% MHz,1V SPH252010RNPS8 1 ± 30% MHz,1V SPH25201R5NPS8 1.5 ± 30% MHz,1V SPH25202R2MPS8 2.2 ± 20% MHz,1V 0.8mm SPH25203R3MPS8 3.3 ± 20% MHz,1V SPH25204R7MPS8 4.7 ± 20% MHz,1V SPH25206R8MPS8 6.8 ± 20% MHz,1V SPH MPS8 10 ± 20% MHz,1V SPH2520R50NPSA 0.5 ± 30% MHz,1V SPH2520R68NPSA 0.68 ± 30% MHz,1V SPH25201R0NPSA 1 ± 30% MHz,1V SPH25201R5MPSA 1.5 ± 20% MHz,1V SPH25202R2MPSA 1.0mm 2.2 ± 20% MHz,1V SPH25203R3MPSA 3.3 ± 20% MHz,1V SPH25204R7MPSA 4.7 ± 20% MHz,1V SPH25206R8MPSA 6.8 ± 20% MHz,1V SPH MPSA 10 ± 20% MHz,1V SPH2520R24NPSC 0.24 ± 30% MHz,1V SPH2520R47NPSC 0.47 ± 30% MHz,1V SPH2520R50NPSC 0.5 ± 30% MHz,1V SPH2520R68NPSC 0.68 ± 30% MHz,1V SPH25201R0NPSC 1 ± 30% MHz,1V SPH25201R5MPSC 1.5 ± 20% MHz,1V SPH25202R2MPSC 1.2mm 2.2 ± 20% MHz,1V SPH25203R3MPSC 3.3 ± 20% MHz,1V SPH25204R7MPSC 4.7 ± 20% MHz,1V SPH25206R8MPSC 6.8 ± 20% MHz,1V SPH MPSC 10 ± 20% MHz,1V SPH MPSC 22 ± 20% MHz,1V SPH MPRC 10 ± 20% KHz,1V All test data are referenced to 25 ambient. Isat :DC current(a) that will cause inductance to drop approximately 30% Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) (note: SPH2520 PSA SPH2520 PSC SPH2520 PRC specifications are defined an approximately T of 40 ) 5
6 SPH3030 SPH4040 DC Resistance(mΩ) Heat Rating Saturation Measuring SPH30301R2NPTA 1.2 ± 30% KHz,1V SPH30301R5NPTA 1.5 ± 30% KHz,1V SPH30302R2MPTA 2.2 ± 20% KHz,1V SPH30303R3MPTA 3.3 ± 20% KHz,1V SPH30304R7MPTA 1.0mm 4.7 ± 20% KHz,1V SPH30306R8MPTA 6.8 ± 20% KHz,1V SPH MPTA 10 ± 20% KHz,1V SPH MPTA 15 ± 20% KHz,1V SPH MPTA 22 ± 20% KHz,1V SPH3030R47NPTC 0.47 ± 30% KHz,1V SPH30301R0NPTC 1 ± 30% KHz,1V SPH30301R5NPTC 1.5 ± 30% KHz,1V SPH30302R2MPTC 2.2 ± 20% KHz,1V SPH30303R3MPTC 3.3 ± 20% KHz,1V 1.2mm SPH30304R7MPTC 4.7 ± 20% KHz,1V SPH30306R8MPTC 6.8 ± 20% KHz,1V SPH MPTC 10 ± 20% KHz,1V SPH MPTC 15 ± 20% KHz,1V SPH MPTC 22 ± 20% KHz,1V SPH30301R0NPTE 1 ± 30% KHz,1V SPH30301R5NPTE 1.5 ± 30% KHz,1V SPH30302R2MPTE 2.2 ± 20% KHz,1V SPH30303R3MPTE 3.3 ± 20% KHz,1V 1.5mm SPH30304R7MPTE 4.7 ± 20% KHz,1V SPH30306R8MPTE 6.8 ± 20% KHz,1V SPH MPTE 10 ± 20% KHz,1V SPH MPTE 22 ± 20% KHz,1V DC Resistance Heat Rating Saturation Measuring SPH40401R0NETA 1 ± 30% KHz,1V SPH40402R2META 2.2 ± 20% KHz,1V SPH40403R3META 3.3 ± 20% KHz,1V SPH40404R7META 4.7 ± 20% KHz,1V 1.0mm SPH40406R8META 6.8 ± 20% KHz,1V SPH META 10 ± 20% KHz,1V SPH META 15 ± 20% KHz,1V SPH META 22 ± 20% KHz,1V SPH40401R0NETC 1 ± 30% KHz,1V SPH40402R2METC 2.2 ± 20% KHz,1V SPH40403R3METC 3.3 ± 20% KHz,1V SPH40404R7METC 4.7 ± 20% KHz,1V 1.2mm SPH40406R8METC 6.8 ± 20% KHz,1V SPH METC 10 ± 20% KHz,1V SPH METC 15 ± 20% KHz,1V SPH METC 22 ± 20% KHz,1V SPH40401R0NETG 1 ± 30% KHz,1V SPH40401R5NESG 1.5 ± 30% KHz,1V SPH40402R2METG 2.2 ± 20% KHz,1V SPH40403R3METG 1.8mm 3.3 ± 20% KHz,1V SPH40404R7METG 4.7 ± 20% KHz,1V SPH40406R8METG 6.8 ± 20% KHz,1V SPH METG 10 ± 20% KHz,1V 6
7 DARFON P/N Thickness Inductance SPH METG 15 ± 20% KHz,1V SPH METG 22 ± 20% KHz,1V SPH METG 33 ± 20% KHz,1V SPH METG 47 ± 20% KHz,1V 1.8mm SPH METG 68 ± 20% KHz,1V SPH METG 100 ± 20% KHz,1V SPH METG 150 ± 20% KHz,1V SPH METG 220 ± 20% KHz,1V SPH MESH 2.0mm 22 ± 20% KHz,1V Isat :DC current that will cause inductance to drop approximately 30% Idc: DC current that will cause an approximate T of 20 (at 25 ambient) SPH5050 SPH5050R47NPTH 0.47 ± 30% KHz,1V SPH50501R0NPTH 1 ± 30% KHz,1V SPH50501R5NPTH 1.5 ± 30% KHz,1V SPH50502R2NPTH 2.2 ± 30% KHz,1V SPH50503R3NPTH 3.3 ± 30% KHz,1V 2.0mm SPH50504R7MPTH 4.7 ± 20% KHz,1V SPH50506R8MPTH 6.8 ± 20% KHz,1V SPH MPTH 10 ± 20% KHz,1V SPH MPTH 15 ± 20% KHz,1V SPH MPTH 22 ± 20% KHz,1V SPH50501R5NETN 1.5 ± 30% KHz,1V SPH50502R2NETN 2.2 ± 30% KHz,1V SPH50503R3NETN 3.3 ± 30% KHz,1V SPH50504R7NETN 4.7 ± 30% KHz,1V SPH50506R8METN 6.8 ± 20% KHz,1V 4.0mm SPH METN 10 ± 20% KHz,1V SPH METN 15 ± 20% KHz,1V SPH METN 22 ± 20% KHz,1V SPH METN 33 ± 20% KHz,1V SPH METN 47 ± 20% KHz,1V SPH6060 SPH60601R0NPTC 1 ± 30% KHz,1V SPH60601R5NPTC 1.5 ± 30% KHz,1V SPH60602R5NPTC 2.5 ± 30% KHz,1V SPH60603R3NPTC 3.3 ± 30% KHz,1V SPH60604R7MPTC 4.7 ± 20% KHz,1V SPH60605R3MPTC 5.3 ± 20% KHz,1V SPH60606R8MPTC 6.8 ± 20% KHz,1V 1.2mm SPH MPTC 10 ± 20% KHz,1V SPH MPTC 15 ± 20% KHz,1V SPH MPTC 22 ± 20% KHz,1V SPH MPTC 33 ± 20% KHz,1V SPH MPTC 47 ± 20% KHz,1V SPH MPTC 68 ± 20% KHz,1V SPH MPTC 100 ± 20% KHz,1V 7
8 SPH60600R8NETH 0.8 ± 30% KHz,1V SPH60601R5NETH 1.5 ± 30% KHz,1V SPH60602R2NETH 2.2 ± 30% KHz,1V SPH60603R3NETH 3.3 ± 30% KHz,1V 2.0mm SPH60604R7NETH 4.7 ± 30% KHz,1V SPH60606R8NETH 6.8 ± 30% KHz,1V SPH METH 10 ± 20% KHz,1V SPH METH 22 ± 20% KHz,1V SPH60600R9NETK 0.9 ± 30% KHz,1V SPH60601R5NETK 1.5 ± 30% KHz,1V SPH60602R2NETK 2.2 ± 30% KHz,1V SPH60603R0NETK 3 ± 30% KHz,1V SPH60604R7METK 4.7 ± 20% KHz,1V SPH60606R0METK 6 ± 20% KHz,1V SPH METK 2.8mm 10 ± 20% KHz,1V SPH METK 15 ± 20% KHz,1V SPH METK 22 ± 20% KHz,1V SPH METK 33 ± 20% KHz,1V SPH METK 47 ± 20% KHz,1V SPH METK 68 ± 20% KHz,1V SPH METK 100 ± 20% KHz,1V SPH60601R0NETP 1 ± 30% KHz,1V SPH60601R3NETP 1.3 ± 30% KHz,1V SPH60601R8NETP 1.8 ± 30% KHz,1V SPH60602R3NETP 2.3 ± 30% KHz,1V SPH60603R0NETP 3 ± 30% KHz,1V SPH60604R5METP 4.5 ± 20% KHz,1V SPH60606R3METP 6.3 ± 20% KHz,1V 4.5mm SPH METP 10 ± 20% KHz,1V SPH METP 15 ± 20% KHz,1V SPH METP 22 ± 20% KHz,1V SPH METP 33 ± 20% KHz,1V SPH METP 47 ± 20% KHz,1V SPH METP 68 ± 20% KHz,1V SPH METP 100 ± 20% KHz,1V SPH8080 SPH80800R9NETN 0.9 ± 30% KHz,1V SPH80801R4NETN 1.4 ± 30% KHz,1V SPH80802R0NETN 2 ± 30% KHz,1V SPH80803R6NETN 3.6 ± 30% KHz,1V SPH80804R7NETN 4.7 ± 30% KHz,1V 4.0mm SPH80806R8NETN 6.8 ± 30% KHz,1V SPH METN 10 ± 20% KHz,1V SPH METN 15 ± 20% KHz,1V SPH METN 22 ± 20% KHz,1V SPH METN 100 ± 20% KHz,1V All test data are referenced to 25 ambient. Isat :DC current(a) that will cause inductance to drop approximately 30% Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) 8
9 Part Numbers & Characteristic (SPN Series for Ferrite Coating) SPN2016 Typ. Max. Idc(A) Max. Isat(A) Typ. SPN2016R24NPSA 0.24 ± 30% MHz,1V SPN2016R47NPSA 0.47 ± 30% MHz,1V SPN20161R0NPSA 1 ± 30% MHz,1V SPN20161R5NPSA 1.5 ± 30% MHz,1V SPN20161R8NPSA 1.8 ± 30% MHz,1V 1.0mm SPN20162R2MPSA 2.2 ± 20% MHz,1V SPN20163R3MPSA 3.3 ± 20% MHz,1V SPN20164R7MPSA 4.7 ± 20% MHz,1V SPN20166R8MPSA 6.8 ± 20% MHz,1V SPN MPSA 10 ± 20% MHz,1V SPN2520 Typ. Max. Idc(A) Max. Isat(A) Typ. SPN2520R47NPSA 0.47 ± 30% MHz,1V SPN2520R68NPSA 0.68 ± 30% MHz,1V SPN25201R0NPSA 1 ± 30% MHz,1V SPN25201R5MPSA 1.5 ± 20% MHz,1V SPN25202R2MPSA 1.0mm 2.2 ± 20% MHz,1V SPN25203R3MPSA 3.3 ± 20% MHz,1V SPN25204R7MPSA 4.7 ± 20% MHz,1V SPN25206R8MPSA 6.8 ± 20% MHz,1V SPN MPSA 10 ± 20% MHz,1V SPN2520R47NPSC 0.47 ± 30% MHz,1V SPN25201R0NPSC 1 ± 30% MHz,1V SPN25201R5MPSC 1.5 ± 20% MHz,1V SPN25202R2MPSC 2.2 ± 20% MHz,1V 1.2mm SPN25203R3MPSC 3.3 ± 20% MHz,1V SPN25204R7MPSC 4.7 ± 20% MHz,1V SPN25206R8MPSC 6.8 ± 20% MHz,1V SPN MPSC 10 ± 20% MHz,1V SPN3030 SPN30301R0NPTA 1 ± 30% KHz,1V SPN30301R5NPTA 1.5 ± 30% KHz,1V SPN30302R2MPTA 2.2 ± 20% KHz,1V SPN30303R3MPTA 3.3 ± 20% KHz,1V SPN30304R7MPTA 4.7 ± 20% KHz,1V SPN30306R8MPTA 1.0mm 6.8 ± 20% KHz,1V SPN MPTA 10 ± 20% KHz,1V SPN MPTA 15 ± 20% KHz,1V SPN MPTA 22 ± 20% KHz,1V SPN MPTA 33 ± 20% KHz,1V SPN MPTA 47 ± 20% KHz,1V SPN30301R0NPTE 1 ± 30% KHz,1V SPN30301R5NPTE 1.5 ± 30% KHz,1V SPN30302R2MPTE 2.2 ± 20% KHz,1V SPN30303R3MPTE 3.3 ± 20% KHz,1V SPN30304R7MPTE 4.7 ± 20% KHz,1V SPN30306R8MPTE 1.5mm 6.8 ± 20% KHz,1V SPN MPTE 10 ± 20% KHz,1V SPN MPTE 15 ± 20% KHz,1V SPN MPTE 22 ± 20% KHz,1V SPN MPTE 33 ± 20% KHz,1V SPN MPTE 47 ± 20% KHz,1V (note: SPN2016 PSA SPN2520 PSA specifications is defined an approximately T of 40 ) 9
10 SPN4040 SPN40401R0NETA 1 ± 30% KHz,1V SPN40402R2NETA 2.2 ± 30% KHz,1V SPN40403R3META 3.3 ± 20% KHz,1V SPN40404R7META 4.7 ± 20% KHz,1V SPN40406R8META 6.8 ± 20% KHz,1V 1.0mm SPN META 10 ± 20% KHz,1V SPN META 15 ± 20% KHz,1V SPN META 22 ± 20% KHz,1V SPN META 33 ± 20% KHz,1V SPN META 47 ± 20% KHz,1V SPN40401R0NETC 1 ± 30% KHz,1V SPN40402R2METC 2.2 ± 20% KHz,1V SPN40403R3METC 3.3 ± 20% KHz,1V SPN40404R7METC 4.7 ± 20% KHz,1V SPN40406R8METC 6.8 ± 20% KHz,1V 1.2mm SPN METC 10 ± 20% KHz,1V SPN METC 15 ± 20% KHz,1V SPN METC 22 ± 20% KHz,1V SPN METC 33 ± 20% KHz,1V SPN METC 47 ± 20% KHz,1V SPN40401R0NETG 1 ± 30% KHz,1V SPN40402R2METG 2.2 ± 20% KHz,1V SPN40403R3METG 3.3 ± 20% KHz,1V SPN40404R7METG 4.7 ± 20% KHz,1V SPN40406R8METG 6.8 ± 20% KHz,1V SPN METG 10 ± 20% KHz,1V SPN METG 15 ± 20% KHz,1V 1.8mm SPN METG 22 ± 20% KHz,1V SPN METG 33 ± 20% KHz,1V SPN METG 47 ± 20% KHz,1V SPN METG 68 ± 20% KHz,1V SPN METG 100 ± 20% KHz,1V SPN METG 150 ± 20% KHz,1V SPN METG 220 ± 20% KHz,1V SPN5050 SPN50501R0NPTA 1 ± 30% KHz,1V SPN50502R2NPTA 2.2 ± 30% KHz,1V SPN50503R3MPTA 3.3 ± 20% KHz,1V SPN50504R7MPTA 4.7 ± 20% KHz,1V 1.0mm SPN50506R8MPTA 6.8 ± 20% KHz,1V SPN MPTA 10 ± 20% KHz,1V SPN MPTA 15 ± 20% KHz,1V SPN MPTA 22 ± 20% KHz,1V SPN50501R0NPTC 1 ± 30% KHz,1V SPN50501R5NPTC 1.5 ± 30% KHz,1V SPN50502R2MPTC 2.2 ± 20% KHz,1V SPN50503R3MPTC 3.3 ± 20% KHz,1V 1.2mm SPN50504R7MPTC 4.7 ± 20% KHz,1V SPN50506R8MPTC 6.8 ± 20% KHz,1V SPN MPTC 10 ± 20% KHz,1V SPN MPTC 15 ± 20% KHz,1V Isat :DC current(a) that will cause inductance to drop approximately 30% (referenced to 25 ambient.) Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) 10
11 SPN5050 SPN5050R47NPTD 0.47 ± 30% KHz,1V SPN50501R2NPTD 1.2 ± 30% KHz,1V SPN50502R2NPTD 2.2 ± 30% KHz,1V SPN50503R3NPTD 3.3 ± 30% KHz,1V SPN50504R7NPTD 1.4mm 4.7 ± 30% KHz,1V SPN50506R8MPTD 6.8 ± 20% KHz,1V SPN MPTD 10 ± 20% KHz,1V SPN MPTD 15 ± 20% KHz,1V SPN MPTD 22 ± 20% KHz,1V SPN5050R47NPTH 0.47 ± 30% KHz,1V SPN50501R0NPTH 1 ± 30% KHz,1V SPN50501R5NPTH 1.5 ± 30% KHz,1V SPN50502R2NPTH 2.2 ± 30% KHz,1V SPN50503R3NPTH 3.3 ± 30% KHz,1V 2.0mm SPN50504R7MPTH 4.7 ± 20% KHz,1V SPN50506R8MPTH 6.8 ± 20% KHz,1V SPN MPTH 10 ± 20% KHz,1V SPN MPTH 15 ± 20% KHz,1V SPN MPTH 22 ± 20% KHz,1V SPN50501R0NETI 1 ± 30% KHz,1V SPN50501R5NETI 1.5 ± 30% KHz,1V SPN50502R2NETI 2.2 ± 30% KHz,1V SPN50503R3NETI 3.3 ± 30% KHz,1V SPN50504R7METI 4.7 ± 20% KHz,1V 2.4mm SPN50506R8METI 6.8 ± 20% KHz,1V SPN METI 10 ± 20% KHz,1V SPN METI 15 ± 20% KHz,1V SPN METI 22 ± 20% KHz,1V SPN METI 33 ± 20% KHz,1V SPN5050R47NPTL 0.47 ± 30% KHz,1V SPN50501R0NPTL 1 ± 30% KHz,1V SPN50502R2NPTL 2.2 ± 30% KHz,1V SPN50503R3MPTL 3.3 ± 20% KHz,1V SPN50504R7MPTL 4.7 ± 20% KHz,1V SPN50506R8MPTL 3.0mm 6.8 ± 20% KHz,1V SPN MPTL 10 ± 20% KHz,1V SPN MPTL 15 ± 20% KHz,1V SPN MPTL 22 ± 20% KHz,1V SPN MPTL 33 ± 20% KHz,1V SPN MPTL 47 ± 20% KHz,1V SPN50501R5NETN 1.5 ± 30% KHz,1V SPN50502R2NETN 2.2 ± 30% KHz,1V SPN50503R3NETN 3.3 ± 30% KHz,1V SPN50504R7NETN 4.7 ± 30% KHz,1V SPN50506R8METN 6.8 ± 20% KHz,1V 4.0mm SPN METN 10 ± 20% KHz,1V SPN METN 15 ± 20% KHz,1V SPN METN 22 ± 20% KHz,1V SPN METN 33 ± 20% KHz,1V SPN METN 47 ± 20% KHz,1V All test data are referenced to 25 ambient. Isat :DC current(a) that will cause inductance to drop approximately 30% Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) 11
12 SPN6060 SPN60601R5MPTA 1.5 ± 20% KHz,1V SPN60602R2MPTA 2.2 ± 20% KHz,1V SPN60603R3MPTA 3.3 ± 20% KHz,1V SPN60604R7MPTA 1.0mm 4.7 ± 20% KHz,1V SPN60606R8MPTA 6.8 ± 20% KHz,1V SPN MPTA 10 ± 20% KHz,1V SPN MPTA 22 ± 20% KHz,1V SPN60602R5NPTC 2.5 ± 30% KHz,1V SPN60604R0NPTC 4 ± 30% KHz,1V SPN60605R3MPTC 5.3 ± 20% KHz,1V SPN60606R8MPTC 6.8 ± 20% KHz,1V SPN MPTC 10 ± 20% KHz,1V SPN MPTC 1.2mm 15 ± 20% KHz,1V SPN MPTC 22 ± 20% KHz,1V SPN MPTC 33 ± 20% KHz,1V SPN MPTC 47 ± 20% KHz,1V SPN MPTC 68 ± 20% KHz,1V SPN MPTC 100 ± 20% KHz,1V SPN60601R2NPTD 1.2 ± 30% KHz,1V SPN60602R2NPTD 2.2 ± 30% KHz,1V SPN60603R3NPTD 3.3 ± 30% KHz,1V SPN60604R7MPTD 4.7 ± 20% KHz,1V 1.4mm SPN60606R8MPTD 6.8 ± 20% KHz,1V SPN MPTD 10 ± 20% KHz,1V SPN MPTD 15 ± 20% KHz,1V SPN MPTD 22 ± 20% KHz,1V SPN60600R8NETH 0.8 ± 30% KHz,1V SPN60601R5NETH 1.5 ± 30% KHz,1V SPN60602R2NETH 2.2 ± 30% KHz,1V SPN60603R3NETH 3.3 ± 30% KHz,1V 2.0mm SPN60604R7NETH 4.7 ± 30% KHz,1V SPN60606R8NETH 6.8 ± 30% KHz,1V SPN METH 10 ± 20% KHz,1V SPN METH 22 ± 20% KHz,1V SPN60600R9NETK 0.9 ± 30% KHz,1V SPN60601R5NETK 1.5 ± 30% KHz,1V SPN60602R2NETK 2.2 ± 30% KHz,1V SPN60603R0NETK 3 ± 30% KHz,1V SPN60604R7METK 4.7 ± 20% KHz,1V SPN60606R0METK 6 ± 20% KHz,1V SPN METK 2.8mm 10 ± 20% KHz,1V SPN METK 15 ± 20% KHz,1V SPN METK 22 ± 20% KHz,1V SPN METK 33 ± 20% KHz,1V SPN METK 47 ± 20% KHz,1V SPN METK 68 ± 20% KHz,1V SPN METK 100 ± 20% KHz,1V 12
13 SPN60601R0NETP 1 ± 30% KHz,1V SPN60601R3NETP 1.3 ± 30% KHz,1V SPN60601R8NETP 1.8 ± 30% KHz,1V SPN60602R3NETP 2.3 ± 30% KHz,1V SPN60603R0NETP 3 ± 30% KHz,1V SPN60604R5METP 4.5 ± 20% KHz,1V SPN60606R3METP 6.3 ± 20% KHz,1V 4.5mm SPN METP 10 ± 20% KHz,1V SPN METP 15 ± 20% KHz,1V SPN METP 22 ± 20% KHz,1V SPN METP 33 ± 20% KHz,1V SPN METP 47 ± 20% KHz,1V SPN METP 68 ± 20% KHz,1V SPN METP 100 ± 20% KHz,1V All test data are referenced to 25 ambient. Isat :DC current(a) that will cause inductance to drop approximately 30% Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) SPN8080 SPN80801R0NETL 1 ± 30% KHz,1V SPN80801R5NETL 1.5 ± 30% KHz,1V SPN80802R2NETL 2.2 ± 30% KHz,1V SPN80803R3METL 3.3 ± 20% KHz,1V SPN80804R7METL 4.7 ± 20% KHz,1V SPN80806R8METL 3.0mm 6.8 ± 20% KHz,1V SPN METL 10 ± 20% KHz,1V SPN METL 15 ± 20% KHz,1V SPN METL 22 ± 20% KHz,1V SPN METL 33 ± 20% KHz,1V SPN METL 47 ± 20% KHz,1V SPN80800R9NETN 0.9 ± 30% KHz,1V SPN80801R4NETN 1.4 ± 30% KHz,1V SPN80802R0NETN 2 ± 30% KHz,1V SPN80803R6NETN 3.6 ± 30% KHz,1V SPN80804R7NETN 4.7 ± 30% KHz,1V SPN80806R8NETN 6.8 ± 30% KHz,1V SPN METN 4.0mm 10 ± 20% KHz,1V SPN METN 15 ± 20% KHz,1V SPN METN 22 ± 20% KHz,1V SPN METN 33 ± 20% KHz,1V SPN METN 47 ± 20% KHz,1V SPN METN 68 ± 20% KHz,1V SPN METN 100 ± 20% KHz,1V All test data are referenced to 25 ambient. Isat :DC current(a) that will cause inductance to drop approximately 30% Idc: DC current(a) that will cause an approximate T of 20 (at 25 ambient) 13
14 Testing Condition & Requirements No. Item Specification Description Test Method 1. Product temperature range Operation temp.:-40 ~ +125 (Including self-generated heat) Storage temp.: -40 ~ Appearance No defects or abnormalities. Visual inspection Using calipers 2.1 Core chipping The appearance standard of the chipping size in top side, of bottom side ferrite core is following dimension. L : As the specification W: As the specification 2.2 Void appearance tolerance limitation Size of voids occurring to coating resin is specified as following. Using calipers 1. Width direction (dimension a) : acceptable when a w/2 nonconforming when a > w/2 2. Length direction (dimension b) : it is not specified. 3. When total area of voids(including one exposing coil) occurring to each sides is not greater than 50% of coating resin area that is acceptable 2.3 Electrode appearance criterion for exposed wire Visual inspection Power Inductor 3. Solder ability The surface of terminal immersed shall be minimum of 90% covered with a new coating of solder Solder heat proof : 1. Preheating : 160±10 90s 2. Retention time: 245±5 for 3 ± 1 sec 4. Vibration Inductance change : within ± 10% without mechanical damage such as break 1. Vibration frequency : (10Hz to 55Hz to 10Hz) in 60 sec. as a period 2. Vibration time : period cycled for 2 hr in each of 3 mutual perpendicular directions 3. Amplitude: 1.5mm max. 5. Terminal strength No detachment of terminal pin and no breakage of wire Add static load 4.9N(500gf) to inductor through hole of test board for 10 ± 2 sec 6. Thermal shock Inductance change : within ± 10% without mechanical damage such as break 1. Repeat 100 cycles as follow : (-40 ± 2, 30±3 minutes) (room temperature, 5 minutes) (+125 ± 2, 30±3 minutes) (room temperature, 5 minutes) 2. Recovery : 48+4/-0 hours of recovery under the standard condition after the test. 7. High temperature resistance Inductance change : within ± 10% without mechanical damage such as break 1. Environment condition : 85 ±2 2. Applied current : rated current 3. Duration : /-0 hours 14
15 No. Item Specification Description Test Method 8. Humidity resistance Inductance change : within ± 10% without mechanical damage such as break 1. Environment condition : 60 ±2 2. Humidity : 90~95% 3. Applied current : rated current 4. Duration : /-0 hours 9. Low temperature storage Inductance change : within ± 10% without mechanical damage such as break Store temperature : -40 ± 2 for total /-0 hours 10. High temperature storage Inductance change : within ± 10% without mechanical damage such as break Store temperature : +125 ± 2 for total /-0 hours 11 Inductance a. Temperature: 25+/- 3 b. Relative Humidity: 45 to 75%RH c. Measuring equipment: measure :Chroma Chroma 1320 Within specified tolerance. 12 DC Resistance Measuring instrument: Chroma A Reflow Profile Chart (Reference) In accordance with electrical specification. Power Inductor IPC/JEDEC J-STD-20 MSL Classifications Level Time Soak Requirements Floor Life Standard Accelerated Cond Cond Cond Time (hrs) Time (hrs) degc/rh% degc/rh% degc/rh% 2 1 year 30/60% 168+5/-0 85/60 n/a n/a 15
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FEATURES PRECISE TOLERANCE AND TEMPERATURE COEFFICIENT EIA STANDARD CASE SIZES (0201 ~ 2512) LOW NOISE, THIN FILM (NiCr) CONSTRUCTION REFLOW SOLDERABLE (Pb FREE TERMINATION FINISH) Type Size EIA PowerRating
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Features 1. RoHS & Halogen-Free (HF) compliant 2. IA size: 0603, 0805, 1206, 1812 3. Hold current ratings from 0.05 to 3A 4. Voltage ratings from 6V computer and electronic applications to 60V 5. Small
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Scope -Calchip s 0201 and 0402 series inductor is a photo lithographically etched single layer ceramic chip. Calchip s design provides high, excellent Q, and superior temperature stability. This highly
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Διαβάστε περισσότεραNo item Digit Description Series Reference (1) Meritek Series SI Signal Inductor LI: Leaded Inductor PI: Power Inductor
FEATURE Operating Temperature: -40 C ~ +125 C Storage Temperature: 15~28 C; Humidity < 80%RH Ceramic base provide high SRF Ultra-compact inductors provide high Q factors Low profile, high current are available
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Features. RoHS & HF compliant 2. Body size: Ф5mm ~ Ф 30mm 3. Radial lead resin coated 4. High power rating 5. Wide resistance range 6. Cost effective 7. Operating temperature range: Φ5mm:-40~+50 Φ8~Φ0mm:-40~+70
Διαβάστε περισσότεραNTC Thermistor:SCK Series
Features. RoHS compliant 2. Body size Ф5mm~ Ф 30mm 3. Radial lead resin coated 4. High power rating 5. Wide resistance range 6. Cost effective 7. Operating temperature range: Φ5mm:-40~+50 Φ8~Φmm:-40~+70
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Features 1. RoHS compliant 2. EIA size:1206~1812 3. Hold current ratings from 0.05 to 3A 4. Voltage ratings from 6V computer and electronic applications to 60V 5. Small footprint 6. Fast time to trip 7.
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Διαβάστε περισσότεραCurrent Sensing Thick Film Chip Resistor-SMDB Series Size: 0402/0603/0805/1206/1210/2010/2512. official distributor of
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Features. RoHS & Halogen Free (HF) compliant 2. Body size: Ф5mm ~ Ф30mm 3. Radial lead resin coated 4. High power rating 5. Wide resistance range 6. Cost effective 7. Operating temperature range: Ф5mm:
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Feature. Ferrite core wire wound construction. 2. Provide low DC resistance and high current. 3. Precision inductance tolerance is available. 4. Small footprint as well as profile. 5. All support Lead-Free
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Scope -Ceramic body and wire wound construction provide highest s available.. Features -Ceramic base provide high -Ultra-compact inductors provide high Q factors -ow profile, high current are available
Διαβάστε περισσότεραSMD - Resistors. TThin Film Precision Chip Resistor - SMDT Series. Product : Size: 0201/0402/0603/0805/1206/1210/2010/2512. official distributor of
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Διαβάστε περισσότεραFeature. shock and pressure. -Tighter tolerance down to ±2% -Smaller size of 0402 (1005) -CATV Filter, Tuner. -Cable Modem/ XDSL Tuner.
Wire Wound Chip Inductor-WL Series Feature -Wire wound ceramic construction provide high SRF -Ultra-compact inductors provide exceptional Q values -Low profile, high current are available -Miniature SMD
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Features. RoHS & Halogen Free (HF) compliant 2. Body size: Ф5mm ~ Ф30mm 3. Radial lead resin coated 4. High power rating 5. Wide resistance range 6. Cost effective 7. Operating temperature range: Ф5mm:
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1. Scope This specification applies to all sizes of rectangular-type fixed chip resistors with Ni/Cr as material. 2. Features Tolerance from 0.01%1% Thin film & Ni/Cr Resistor TCR from 5ppm 50ppm for thin
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Διαβάστε περισσότεραPolymer PTC Resettable Fuse: KRG Series
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Construction D1 L (AR Series) Features -Advanced thin film technology -Very tight tolerance down to ±0.01% -Extremely low TCR down to ±5PPM/C -Wide resistance range 1ohm ~ 3Mega ohm -Miniature size 0201
Διαβάστε περισσότεραThin Film Precision Chip Resistor (AR Series)
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Scope -Ceramic body and wire wound construction provide highest s available.. Features -Ceramic base provide high -Ultra-compact inductors provide high Q factors -ow profile, high current are available
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Διαβάστε περισσότεραMetal Oxide Leaded Film Resistor
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Power ratio(%) MFR Series Features Excellent overall stability Very tight tolerance down to ±0.05% Extremely low TCR down to ±5 PPM/ C High power rating up to 3 Watts Excellent ohmic contact Applications
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