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B82442H1106K000
Wirewound Inductor, 10 mH, 120 ohm, 500 kHz, 35 mA, 2220 [5650 Metric], B82442H
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- Manufacturer: EPCOS
- Product type: Wirewound Inductors
- Inductance: 10mH
- Core Material: Ferrite
- Product Range: B82442H
- Product Width: 5mm
- Product Height: 5mm
- Product Length: 5.6mm
- DC Current Rating: 35mA
- DC Resistance Max: 120ohm
- Inductor Case Style: 2220 [5650 Metric]
- Inductance Tolerance: ± 10%
- Inductor Construction: Unshielded
- Inductor Case / Package: 2220 [5650 Metric]
- Self Resonant Frequency: 500kHz
| Delivery and price | |
|---|---|
| Units per pack | 500 |
| Price | 0.385 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **SMT inductors** ## SIMID series, SIMID 2220-H **Series/Type: B82442H** Date: October 2012 ��EPCOS AG 2012. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS’ prior express consent is prohibited. ## ~~LT~~ **SMT inductors, SIMID series B82442H SIMID 2220-H** **Size 2220 (EIA) or 5650 (IEC) Rated inductance 1 ... 10000 μH Rated current 35 ... 2500 mA** ## **Construction** - Upright ferrite drum core - Laser-welded winding - Flame-retardant molding ## **Features** - Temperature range up to +150 °C - Current handling capability up to 2.5 A - High L values - Qualified to AEC-Q200 - Suitable for lead-free reflow soldering as referenced in JEDEC J-STD 020D - RoHS-compatible ## **Applications** - Filtering of supply voltages, coupling, decoupling - DC/DC converters - Automotive electronics - Telecommunications - Consumer electronics - Industrial electronics ## **Terminals** - Base material CuSn6 - Layer composition Cu, Ag, Sn (lead-free)[1)] - Electro-plated ## **Marking** - Marking on component: Manufacturer, L value (in nH), tolerance of L value (coded), date of manufacture (YWWD) - Minimum data on reel: Manufacturer, ordering code, L value, quantity, date of packing ## **Delivery mode and packing unit** - 12-mm blister tape, wound on 330-mm reel - Packing unit: 1500 pcs./reel 1) Ni-barrier-plated terminals on request (B82442H*50). Please read _Cautions and warnings_ and _Important notes_ at the end of this document. **2** 10/12 - ~~Lo~~ **SMT inductors, SIMID series B82442H SIMID 2220-H** ## **Dimensional drawing and layout recommendation** **==> picture [489 x 269] intentionally omitted <==** **----- Start of picture text -----**<br> 1)<br>0.7±0.2<br>B C B<br>D<br>IND0053-6<br>HL aay<br>A B C D<br>4.5 2.0 4.0 8.0<br>———<br>5.6+0.3 5+0.3<br>bd ‘| Marking<br>A<br>1)<br>3.5±0.1<br>1)<br>5+0.3<br>0.15 max. 0.7 min.<br>**----- End of picture text -----**<br> 1) Soldering area IND0088-3-E Dimensions in mm **==> picture [522 x 222] intentionally omitted <==** **----- Start of picture text -----**<br> Taping and packing<br>Blister tape Reel<br>4±0.1 18.4 max. 13±0.2<br>Component 1.5+0.1 2±0.05<br>. = mal<br>Spe | Lb 12.4 +1.5_0 o& 62±1.5<br><_ 6.0 8±0.1 1.6±0.1 IND0350-S<br>4 [.]<br>Direction of unreeling<br>IND0564-H-E<br>1.75±0.1 5.5±0.1<br>+0 2_<br>330<br> 7.2<_ 12±0.3<br>**----- End of picture text -----**<br> Dimensions in mm Please read _Cautions and warnings_ and _Important notes_ at the end of this document. **3** 10/12 - ## ~~LT~~ **SMT inductors, SIMID series B82442H SIMID 2220-H** ## **Technical data and measuring conditions** |Rated inductance LR|Measured with impedance analyzer Agilent 4294A<br>at frequencyfL, 0.1 V, +20 °C| |---|---| |Q factor Qmin|Measured with impedance analyzer Agilent 4294A<br>at frequencyfQ, +20 °C| |Rated temperature TR|+85 C| |Rated current IR|Maximum permissible DC with inductance decrease<br>L/L010% and temperature increase<br>of 40 K at rated temperature| |Self-resonance frequencyfres,min|Measured with impedance analyzer Agilent 4294A, +20 °C| |DC resistance Rmax|Measured at +20 C| |Solderability (lead-free)|Sn95.5Ag3.8Cu0.7: +(245 5) °C, (5 0.3) s<br>Wetting of soldering area 90%<br>(based on IEC 60068-2-58)| |Resistance to solderingheat|+260 C, 40 s (as referenced in JEDEC J-STD 020D)| |Climatic category|55/150/56 (to IEC 60068-1)| |Storage conditions|Mounted:<br>–55 °C … +150 °C<br>Packaged: –25 °C … +40 °C, 75% RH| |Weight|Approx. 0.4g| Please read _Cautions and warnings_ and _Important notes_ at the end of this document. **4** 10/12 - |LR<br>H|Tolerance<br>~~jez~~|Qmin<br>~~jez~~|fL; fQ<br>MHz<br>~~jez~~|IR<br>mA<br>~~jez~~|Rmax<br>~~jez~~|fres,min<br>MHz<br>~~jez~~|Ordering code1)2)| |---|---|---|---|---|---|---|---| |1.0<br>1.2<br>1.5|10% K<br>~~^~~<br>~~jez~~|10<br>10<br>10<br>~~jez~~|7.96<br>7.96<br>7.96<br>~~jez~~|2500<br>2350<br>2200<br>~~jez~~|0.024<br>0.028<br>0.032<br>~~jez~~|95<br>70<br>55<br>~~jez~~|B82442H1102K000<br>B82442H1122K000<br>B82442H1152K000| |1.8<br>2.2<br>2.7||10<br>10<br>10<br>~~jez~~|7.96<br>7.96<br>7.96<br>~~jez~~|2000<br>1800<br>1700<br>~~jez~~|0.040<br>0.048<br>0.056<br>~~jez~~|47<br>42<br>37<br>~~jez~~|B82442H1182K000<br>B82442H1222K000<br>B82442H1272K000| |3.3<br>3.9<br>4.7||10<br>10<br>10<br>~~jez~~|7.96<br>7.96<br>7.96<br>~~jez~~|1550<br>1450<br>1350<br>~~jez~~|0.064<br>0.072<br>0.088<br>~~jez~~|34<br>32<br>29<br>~~jez~~|B82442H1332K000<br>B82442H1392K000<br>B82442H1472K000| |5.6<br>6.8<br>8.2||10<br>10<br>10<br>~~jez~~|7.96<br>7.96<br>7.96<br>~~jez~~|1250<br>1130<br>1050<br>~~jez~~|0.104<br>0.120<br>0.144<br>~~jez~~|26<br>24<br>22<br>~~jez~~|B82442H1562K000<br>B82442H1682K000<br>B82442H1822K000| |10<br>12<br>15||10<br>10<br>10<br>~~jez~~|2.52<br>2.52<br>2.52<br>~~jez~~|1000<br>880<br>810<br>~~jez~~|0.168<br>0.20<br>0.24<br>~~jez~~|19<br>17<br>16<br>~~jez~~|B82442H1103K000<br>B82442H1123K000<br>B82442H1153K000| |18<br>22<br>27||10<br>10<br>10<br>~~jez~~|2.52<br>2.52<br>2.52<br>~~jez~~|740<br>670<br>620<br>~~jez~~|0.29<br>0.35<br>0.42<br>~~jez~~|14<br>13<br>11.5<br>~~jez~~|B82442H1183K000<br>B82442H1223K000<br>B82442H1273K000| |33<br>39<br>47|5% J<br>10% K<br>~~^~~<br>~~^~~|10<br>10<br>10|2.52<br>2.52<br>2.52|560<br>520<br>480|0.50<br>0.58<br>0.68|10.5<br>9.5<br>8.5|B82442H1333+000<br>B82442H1393+000<br>B82442H1473+000| |56<br>68<br>82||10<br>10<br>10|2.52<br>2.52<br>2.52|430<br>400<br>380|0.80<br>0.96<br>1.12|7.8<br>7.0<br>6.4|B82442H1563+000<br>B82442H1683+000<br>B82442H1823+000| |100<br>120<br>150||20<br>20<br>20|0.796<br>0.796<br>0.796|350<br>320<br>290|1.28<br>1.52<br>1.76|6.0<br>5.4<br>4.8|B82442H1104+000<br>B82442H1124+000<br>B82442H1154+000| Closer tolerances on request. Higher currents possible at temperatures <TR on request. Sample kit available. Ordering code: B82442X001 For more information refer to chapter “Sample kits”. > 1) Replace the + by the code letter for the required inductance tolerance. > 2) For Ni-barrier-plated terminals replace the last two digits “00” by “50”. Please read _Cautions and warnings_ and _Important notes_ at the end of this document. **5** 10/12 - ## ~~LT~~ **SMT inductors, SIMID series B82442H SIMID 2220-H** **Characteristics and ordering code** |**Characteristics and ordering code**|| |---|---| |LR<br>H<br>Tolerance<br>Qmin<br>fL; fQ<br>MHz<br>IR<br>mA<br>Rmax<br>fres,min<br>MHz<br>180<br>5% J<br>10% K<br>20<br>0.796<br>270<br>2.24<br>4.4<br>220<br>20<br>0.796<br>240<br>2.72<br>3.9<br>270<br>20<br>0.796<br>220<br>3.36<br>3.6<br>330<br>20<br>0.796<br>200<br>3.92<br>3.2<br>390<br>20<br>0.796<br>180<br>4.64<br>2.9<br>470<br>20<br>0.796<br>170<br>5.60<br>2.6<br>560<br>20<br>0.796<br>150<br>6.80<br>2.4<br>680<br>20<br>0.796<br>140<br>8.00<br>2.2<br>820<br>20<br>0.796<br>130<br>10.4<br>2.0<br>1000<br>30<br>0.252<br>120<br>12.0<br>1.8<br>1200<br>30<br>0.252<br>105<br>13.6<br>1.5<br>1500<br>30<br>0.252<br>100<br>16.0<br>1.4<br>1800<br>30<br>0.252<br>85<br>24.0<br>1.3<br>2200<br>30<br>0.252<br>75<br>28.0<br>1.2<br>2700<br>30<br>0.252<br>65<br>44.0<br>1.1<br>3300<br>30<br>0.252<br>55<br>48.0<br>1.0<br>3900<br>30<br>0.252<br>53<br>56.0<br>1.0<br>4700<br>30<br>0.252<br>50<br>62.4<br>0.9<br>5600<br>30<br>0.252<br>46<br>68.0<br>0.8<br>6800<br>30<br>0.252<br>42<br>88.0<br>0.7<br>8200<br>30<br>0.252<br>39<br>100<br>0.6<br>10000<br>30<br>0.0796<br>35<br>120<br>0.5<br>~~^~~<br>~~^~~<br>~~O~~<br>~~o~~|Ordering code1)2)<br>B82442H1184+000<br>B82442H1224+000<br>B82442H1274+000<br>B82442H1334+000<br>B82442H1394+000<br>B82442H1474+000<br>B82442H1564+000<br>B82442H1684+000<br>B82442H1824+000<br>B82442H1105+000<br>B82442H1125+000<br>B82442H1155+000<br>B82442H1185+000<br>B82442H1225+000<br>B82442H1275+000<br>B82442H1335+000<br>B82442H1395+000<br>B82442H1475+000<br>B82442H1565+000<br>B82442H1685+000<br>B82442H1825+000<br>B82442H1106+000| |Closer tolerances on request.|| |Higher currents possible at temperatures <TRon request.|| |Sample kit available. Ordering code: B82442X001|| |For more information refer to chapter “Sample kits”.|| |1) Replace the + by the code letter for the required inductance tolerance.|| |2) For Ni-barrier-plated terminals replace the last two digits “00” by “50”.|| |**6**<br>10/12<br>Please read_Cautions and warnings_and<br>_Important notes_at the end of this document.<br>-|| **SMT inductors, SIMID series SIMID 2220-H** **B82442H** **Impedance |Z| versus frequency f** measured with impedance analyzer Agilent 4294A/E4991A, typical values at +20 °C **==> picture [224 x 265] intentionally omitted <==** **----- Start of picture text -----**<br> IND0094-8<br>10 [6]<br>Ω B82442H<br>|| ee al<br>|Z|<br>10 [5]<br>10 [4]<br>10 [3]<br>10 [2]<br>1 μH<br>10 μH<br>100 μH<br>10 [1]<br>1000 μH<br>10000 μH<br>10 0 MU ELM EME<br>10 5 10 6 10 7 10 8 Hz 10 9<br>f<br>**----- End of picture text -----**<br> ## **Q factor versus frequency f** measured with impedance analyzer Agilent 4294A/E4991A, typical values at +20 °C **==> picture [221 x 264] intentionally omitted <==** **----- Start of picture text -----**<br> IND0096-9<br>80<br>B82442H<br>cn CUEUII<br>Q<br>60<br>| CMI<br>40 SEIMEICMI Ul<br>LK<br>AONE UTE<br>EN Il<br>20<br>1 μH<br>10 μH<br>WG \\NX\<br>100 μH<br>1000 μH<br>J 10000 μH \\\\ \<br>0<br>10 4 10 5 ALINE 10 6 10 7 Hz 10 VII 8<br>f<br>**----- End of picture text -----**<br> **Inductance L versus DC load current IDC** measured with LCR meter Agilent 4285A, typical values at +20 °C **==> picture [220 x 268] intentionally omitted <==** **----- Start of picture text -----**<br> IND0095-W<br>10 [5]<br>μH B82442H<br>ee []<br>L 10000 μH<br>10 [4]<br>1000 μH<br>10 [3]<br>100 μH<br>10 [2]<br>10 μH<br>10 [1]<br>1 μH<br>10 [0]<br>10 _110 LL _2 LETTE 10 PETE _1 10 0 A 10 1<br>IDC<br>**----- End of picture text -----**<br> **Current derating Iop/IR versus ambient temperature TA** (rated temperature TR = +85 °C) **==> picture [237 x 268] intentionally omitted <==** **----- Start of picture text -----**<br> IND0097-H-E<br>1.2<br>B82442H<br>Iop<br>= = IR Ee AEE<br>1.0<br>PeeEEEEReEEE<br>0.8<br>| BUSGERRERCHOO000EET<br>CeeceereeceNCtte<br>TTT TTT<br>0.6<br>“COLE<br>LE<br>0.4<br>LEE AT<br>0.2<br>CUT<br>CEEEEEEEEr<br>00 20 40 60 80 100 120 C 160<br>TA<br>**----- End of picture text -----**<br> 10/12 **7** ## ~~LT~~ **Cautions and warnings** - Please note the recommendations in our Inductors data book (latest edition) and in the data sheets. - Particular attention should be paid to the derating curves given there. - The soldering conditions should also be observed. Temperatures quoted in relation to wave soldering refer to the pin, not the housing. - If the components are to be washed varnished it is necessary to check whether the washing varnish agent that is used has a negative effect on the wire insulation, any plastics that are used, or on glued joints. In particular, it is possible for washing varnish agent residues to have a negative effect in the long-term on wire insulation. - Washing processes may damage the product due to the possible static or cyclic mechanical loads (e.g. ultrasonic cleaning). They may cause cracks to develop on the product and its parts, which might lead to reduced reliability or lifetime. - The following points must be observed if the components are potted in customer applications: – Many potting materials shrink as they harden. They therefore exert a pressure on the plastic housing or core. This pressure can have a deleterious effect on electrical properties, and in extreme cases can damage the core or plastic housing mechanically. - It is necessary to check whether the potting material used attacks or destroys the wire insulation, plastics or glue. - The effect of the potting material can change the high-frequency behaviour of the components. - Ferrites are sensitive to direct impact. This can cause the core material to flake, or lead to breakage of the core. - Even for customer-specific products, conclusive validation of the component in the circuit can only be carried out by the customer. Please read _Cautions and warnings_ and _Important notes_ at the end of this document. **8** 10/12 - ~~LT~~ **Important notes** The following applies to all products named in this publication: 1. Some parts of this publication contain **statements about the suitability of our products for certain areas of application** . These statements are based on our knowledge of typical requirements that are often placed on our products in the areas of application concerned. We nevertheless expressly point out **that such statements cannot be regarded as binding statements about the suitability of our products for a particular customer application.** As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar with them than the customers themselves. For these reasons, it is always ultimately incumbent on the customer to check and decide whether an EPCOS product with the properties described in the product specification is suitable for use in a particular customer application. 2. We also point out that **in individual cases, a malfunction of electronic components or failure before the end of their usual service life cannot be completely ruled out in the current state of the art, even if they are operated as specified.** In customer applications requiring a very high level of operational safety and especially in customer applications in which the malfunction or failure of an electronic component could endanger human life or health (e.g. in accident prevention or life-saving systems), it must therefore be ensured by means of suitable design of the customer application or other action taken by the customer (e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by third parties in the event of malfunction or failure of an electronic component. 3. **The warnings, cautions and product-specific notes must be observed** . 4. In order to satisfy certain technical requirements, **some of the products described in this publication may contain substances subject to restrictions in certain jurisdictions (e.g. because they are classed as hazardous)** . Useful information on this will be found in our Material Data Sheets on the Internet (www.epcos.com/material). Should you have any more detailed questions, please contact our sales offices. 5. We constantly strive to improve our products. Consequently, **the products described in this publication may change from time to time** . The same is true of the corresponding product specifications. Please check therefore to what extent product descriptions and specifications contained in this publication are still applicable before or when you place an order. We also **reserve the right to discontinue production and delivery of products** . Consequently, we cannot guarantee that all products named in this publication will always be available. The aforementioned does not apply in the case of individual agreements deviating from the foregoing for customer-specific products. 6. Unless otherwise agreed in individual contracts, **all orders are subject to the current version of the “General Terms of Delivery for Products and Services in the Electrical Industry” published by the German Electrical and Electronics Industry Association (ZVEI)** . 7. The trade names EPCOS, BAOKE, Alu-X, CeraDiode, CeraLink, CSMP, CSSP, CTVS, DeltaCap, DigiSiMic, DSSP, FilterCap, FormFit, MiniBlue, MiniCell, MKD, MKK, MLSC, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, ThermoFuse, WindCap are **trademarks registered or pending** in Europe and in other countries. Further information will be found on the Internet at www.epcos.com/trademarks. **9** 10/12 -
Updated at February 9, 2023
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