SMT inductors. SIMID series, SIMID 0603-C. Date: July 2016

Similar documents
SMT inductors. SIMID series, SIMID 1210-T. Date: October 2012

SMT inductors. SIMID series, SIMID 2220-A. Date: October 2012

Data and signal line chokes

SMT inductors. SIMID series, SIMID 1812-A. Date: October 2012

SMT power inductors. Size (mm) Date: June 2012

SMT power inductors. Size (mm) Date: June 2012

SMT power inductors. Size (mm) Date: June 2012

ERU chokes. ERU 20, helically wound. Date: February 2016

SMT inductors SIMID series

B82462G2*

SMT power inductors. Size 12.5 x 12.5 x 8.5 mm B82477R4 MAG IN PD

Data and signal line chokes

SMT power inductors. Size 12.5 x 12.5 x 8.5 (mm) B82477R4

Current-compensated ring core double chokes 250 V AC, mh, A, +70 C / +80 C

SMT power inductors. Size (mm) Date: March 2008

Power line chokes. 3.4 µh / 1 MHz, 25 A, +110 C. Ordering code: B82116B2828A010. Date: Version: 01

SMT Push-Pull Transformers

Inductors. 3D transponder coils Size (mm) Series/Type: B82453C*A Date: June 2017

Inductors. RF chokes, LBC series. Date: June 2012

Inductors. RF chokes, LBC series. Date: June 2012

SMT power inductors. Size (mm) Date: March 2008

SMT Inductors. Z-transponder coils, size 7.7 x 7.4 x 2.65 mm. Ordering code: Date: Version: 01

Power line chokes. Current-compensated frame core double chokes 300 V AC, A, mh, +40 C. Series/Type: B82733F/V Date: May 2015

Inductors. VHF chokes B82131, B82132, B82133, B Date: June 2012

B82471B*

SMT power inductors. Size 12.5 x 12.5 x 8.5 mm B82477D4 MAG IN PD

Transformers. DC/DC converters E 6.3. Series/Type: B78304B*A003 Date: October 2012

SMT current sense transformers. EE 5.0 core. Series/Type: B82801B Date: December 2012

Inductors. VHF chokes. Date: June 2012

Current-compensated ring core double chokes 250 V AC, mh, A, +40 C / +50 C / +60 C

Inductors. RF chokes, LBC+ series B82144B2 SZ MAG PD IN/T

Power line chokes. Current-compensated ring core triple chokes 440/250 V AC, 12 A, 0.35 mh. Series/Type: B82745S6123N002 Date: July 2012

Power line chokes. Current-compensated ring core double chokes 250 V AC, A, 1 82 mh. Series/Type: B82724A/J Date: July 2012

Inductors. RF chokes, SBC series. Date: June 2012

Inductors. RF chokes, LBC series, mm. Date: June 2011 Version:

SMT Power Inductors. ERU 20, helically wound B82559*A020

Current-compensated frame core double chokes 250 V AC, A, mh, +40 C

Power line chokes. Current-compensated U core double chokes 300 V AC, A, mh, +40 C. Series/Type: B82730U/G Date: July 2012

Data and signal line chokes

SMT Current Sense Transformers

Power line chokes. Current-compensated D core double chokes 250 V AC, mh, A, +40 C. Series/Type: B82731M/H Date: December 2016

SMT gate drive transformer

Data and signal line chokes

Power line chokes. Current-compensated frame core double chokes 250 V AC, A, mh, +40 C. Series/Type: B82733F Date: March 2011

Inductors. RF chokes, BC series. Date: March 2008

Inductors. VHF chokes B82114 MAG IN PD

Data and signal line chokes

Inductors. RF chokes, HBC series. Date: March 2008

Current-compensated frame core double chokes 300 V AC, A, mh, +40 C

Data and signal line chokes

SHDSL interface transformer

Power line chokes. Current-compensated D core double chokes 250 V AC, A, mh. Series/Type: B82731M/H Date: March 2008

PPD AB PD / PPD AB PM

Surge arrester. 2-electrode arrester B88069X3433B251 V87A-A600XP1

Data and signal line chokes

B3404 B39232-B3404-U410 April 08,

Film Capacitors AC Capacitors

R880 B39431R 880H210 February 04,

B88069X1630T602 A80-C90XSMD PPD AB PD / PPD AB PM

B88069X3651T902 T20-A230XSMDN PPD AB PD / PPD AB PM

PPD AB PD / PPD AB PM

B84143G/Q*R/S176. Date. Function. Please send back to EPCOS MAG PEMC or to your EPCOS sales representative

Surge arrester. 2-electrode arrester B88069X1620T602 A80-A230XSMD

B9522 B39182B9522P810 December, 12,

B4402 B39781B4402P810 June 13,

B8018 B39182B8018P810 February 25,

B5235 B39141B5235Z810 Sep 23,

Film Capacitors AC Capacitors

Surge arrester. 2-electrode arrester B88069X9761B201 H25-E70X

Film Capacitors AC Capacitors

B5139 B39262B5139U410 June 18,

SAW Components. SAW IF filter for base stations. RF360 Europe GmbH. A Qualcomm TDK Joint Venture. Date: Mar 21, 2016 Version: 2.3

SMT Power Inductors. ERU 20, helically wound B82559*A020

SAW Components. SAW RF filter for base stations. RF360 Europe GmbH. A Qualcomm TDK Joint Venture CDMA 450. Date: Mar 3, 2016 Version: 2.

SAW Components. SAW filter. Automotive telematics. B3519 B39162B3519U410 May 08, Series/type: Ordering code: Date: Version:

SAW Components. SAW RF filter for base stations. RF360 Europe GmbH. A Qualcomm TDK Joint Venture. Band 29 downlink. Date: Mar 03, 2015 Version: 2.

EMC filters. Date: November 2012

SAW Components. SAW RF filter for base stations. RF360 Europe GmbH. A Qualcomm TDK Joint Venture. Band 3 uplink. Date: Jul 14, 2015 Version: 2.

B8831 B39242B8831P810 August 18,

Surge Arrester. 3-Electrode-Arrester. T83-A230X B88069X8910B502 Date: Version: Issue 03. Series/Type: Ordering code:

B9513 B39202B9513L310 May 27,

B7943 B39262B7943P810 November 7,

B3725 B39871B3725U410 May 16,

B3710 B39431B3710U410 December 17,

B3470 B39162B3470H910 February 14,

B8313 B39162B8313P810 February 12,

B3520 B39162B3520U410 February 22,

Film Capacitors AC Capacitors

B9898 B39272B9898P810 May 15,

B3913 B39162B3913U410 January 31,

Data and signal line chokes

LTE Band 17 (lower 700MHz band, blocks B and C) B8566 B39741B8566P810 February 06,

B1653 B39122-B1653-B510 December 18,

SAW Components. SAW RF filter for base stations. RF360 Europe GmbH. A Qualcomm TDK Joint Venture TETRA. Date: Aug 24, 2015 Version: 2.

B8094 B39212B8094P810 April 03,

B9474 B39162B9474P810 October 19,

Ferrites and accessories

B4401 B39941B4401P810 June 13,

PPD AB PD / PPD AB PM

B3517 B39162B3517U510 January 30,

Transcription:

SMT inductors SIMID series, Series/Type: a~í~=püééí Date: July 2016 EPCOS AG 2016. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS prior express consent is prohibited. EPCOS AG is a TDK Group Company.

Size 0603 (EIA) and/or 1608 (IEC) Rated inductance 1... 220 nh Rated current 110... 1800 ma Construction Copper-plated ceramic core Laser-cut winding, epoxy-coated Features Temperature range up to +150 C High resonance frequency Close inductance tolerance Free of polarization effect High mechanical stability Qualified to AEC-Q200 Suitable for lead-free reflow soldering as referenced in JEDEC J-STD 020D RoHS-compatible Applications Resonant circuits, impedance matching for Multimedia Car access systems Wireless communication systems TPMS (Tire Pressure Monitoring System) GPS (Global Positioning System) Digital cameras Terminals Base material Al 2 O 3 ceramic with Cu layer Layer composition Ni, Sn (lead-free) Electro-plated Marking No marking on component Minimum data on reel: Manufacturer, ordering code, L value, quantity, date of packing Delivery mode and packing unit 8-mm cardboard tape, wound on 180-mm reel Packing unit: 4000 pcs./reel 2 07/16

Dimensional drawing and layout recommendation Dimensions in mm A B C 0.8 0.1 2.3 0.3 0.9 0.1 Taping and packing Cardboard tape Reel Dimensions in mm 3 07/16

Technical data and measuring conditions Rated inductance L R Q factor Q min, Q typ Rated temperature T R Rated current I R Measured with impedance analyzer Agilent 4291A and test fixture Agilent 16196A at frequency f L, 0.1 V, +20 C Measured with impedance analyzer Agilent 4291A and test fixture Agilent 16196A, Q min measured at frequency f Q, +20 C +125 C Maximum permissible DC with a temperature increase of 15 K at rated temperature Self-resonance frequency f res,min Measured with network analyzer Agilent 8720D, +20 C DC resistance R max Measured at +20 C Solderability (lead-free) Sn95.5Ag3.8Cu0.7: +(245 5) C, (5 0.3) s Wetting of soldering area 95% (based on IEC 60068-2-58) Resistance to soldering heat +260 C, 40 s (as referenced in JEDEC J-STD 020D) Climatic category 55/150/56 (to IEC 60068-1) Storage conditions Mounted: 55 C +150 C Packaged: 25 C +40 C, 75% RH Weight Approx. 4 mg 4 07/16

Characteristics and ordering codes L R nh Tolerance Q min Q typ (at 800 MHz) f L ;f Q MHz Special versions on request. Higher currents possible at temperatures <T R on request. Sample kit available (see also chapter Sample kits. Ordering code: B82496X001 I R ma R max f res,min GHz Ordering code 1) (reel packing) 1.0 0.3 nh ^ A 7 60 100 1800 0.02 16 3109+000 1.2 0.2 nh ^ Z 8 60 100 1800 0.025 15 3129+000 1.5 8 50 100 1500 0.03 13 3159+000 1.8 12 50 100 1500 0.033 12 3189+000 2.2 14 50 100 1500 0.035 10 3229+000 2.7 14 40 100 1400 0.04 10 3279+000 3.3 14 40 100 1200 0.06 9 3339+000 3.9 5% ^ J 14 40 100 1100 0.065 8 3399+000 4.7 0.2 nh ^ Z 14 40 100 800 0.10 7 3479+000 5.6 14 40 100 700 0.15 6 3569+000 6.8 14 40 100 700 0.15 6 3689+000 8.2 14 40 100 650 0.18 6 3829+000 10 5% ^ J 14 40 100 600 0.20 5 3100+000 12 2% ^ G 14 40 100 450 0.35 5 3120+000 15 14 40 100 420 0.40 4.5 3150+000 18 14 40 100 400 0.45 4.0 3180+000 22 14 40 100 380 0.50 4.0 3220+000 27 14 35 100 360 0.55 3.0 3270+000 33 14 35 100 350 0.60 3.0 3330+000 39 14 35 100 300 0.80 2.5 3390+000 47 14 35 100 270 0.95 2.5 3470+000 56 14 35 100 250 1.2 2.5 3560+000 68 14 35 100 230 1.3 2.0 3680+000 82 14 35 100 220 1.5 2.0 3820+000 100 14 30 100 200 1.8 1.8 3101+000 120 5 30 25.2 160 3.0 1.8 3121+000 150 5 30 25.2 130 5.0 1.6 3151+000 180 4 25 25.2 120 6.0 1.4 3181+000 220 4 25 25.2 110 7.0 1.3 3221+000 1) Replace the + by the code letter for the required inductance tolerance. 5 07/16

Impedance Z versus frequency f measured with impedance analyzer Agilent 4291A/16196A, typical values at +20 C Inductance L versus DC load current I DC measured with LCR meter Agilent 4275A, typical values at +20 C Q factor versus frequency f measured with impedance analyzer Agilent 4291A/16196A, typical values at +20 C Current derating I op /I R versus ambient temperature T A (rated temperature T R = +125 C) 6 07/16

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. Display of ordering codes for EPCOS products The ordering code for one and the same product can be represented differently in data sheets, data books, other publications and the website of EPCOS, or in order-related documents such as shipping notes, order confirmations and product labels. The varying representations of the ordering codes are due to different processes employed and do not affect the specifications of the respective products. Detailed information can be found on the Internet under www.epcos.com/orderingcodes. 7 07/16

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, Alu-X, CeraDiode, CeraLink, CeraPad, CeraPlas, CSMP, CSSP, CTVS, DeltaCap, DigiSiMic, DSSP, ExoCore, FilterCap, FormFit, LeaXield, MiniBlue, MiniCell, MKD, MKK, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, PQSine, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, TFAP, 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. 8 07/16