EMI FILTERING & RF INDUCTORS

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1 EMI FILTERING & RF INDUCTORS

2 About Laird Laird is a global technology business focused on enabling wireless communication and smart systems, and providing components and systems that protect electronics. Laird operates through two divisions, Wireless Systems and Performance Materials. Wireless Systems solutions include antenna systems, embedded wireless modules, telematics products and wireless automation and control solutions. Performance Materials solutions include electromagnetic interference shielding, thermal management and signal integrity products. As a leader in the design, supply and support of innovative technology, our products allow people, organisations, machines and applications to connect effectively, helping to build a world where smart technology transforms the way of life. Custom products are supplied to major sectors of the electronics industry including the handset, telecommunications, IT, automotive, public safety, consumer, medical, rail, mining and industrial markets. Providing value and differentiation to our customers through innovation, reliable fulfilment and speed, Laird PLC is listed and headquartered in London, and employs over 9, people in more than 58 facilities located in 18 countries.

3 Table of Contents Part Number Nomenclature Explanation... 2 Ferrite EMI Chip Beads... 3 Ferrite EMI SMT Bead Assemblies Common Mode And Differential Mode Explanation Common Mode Choke Family... 3 Common Mode Chokes Low Frequency Common Mode Chokes Common Mode Arrays CAN-BUS Common Mode Choke Series Passes and Turns Wire-Wound SMT Power Common Mode Chokes Wire-Wound DIP Power Common Mode Chokes Common Mode Choke Series Common Mode Choke Series Differential Mode EMI Filters EMI Filter Arrays Differential Mode Filter Equivalent Circuits Ferrite Chip Inductors... 6 RF Ceramic Chip Inductors Multilayer Power Chip Inductors Pb All parts listed in this catalog are lead free and RoHS compliant. NOTICE Laird products or subcomponents are not specifically designed or tested by Laird for use in any medical applications, surgical applications, medical device manufacturing, or any similar procedure or process requiring approval, testing, or certification by the United States food and drug administration or other similar Governmental entity. Applications with unusual environmental requirements such as military, medical, life-support or Life-sustaining equipment are specifically not recommended without additional testing for such application.

4 PART NUMBER Nomenclature Explanation PART NUMBERING SYSTEM HZ 42 A 61 R -1 PRODUCT SERIES CODE EIA SIZE CODE RATED CURRENT CODE IMPEDANCE (Z) OR INDUCTANCE (L) PACKING CODE ADDITIONAL DESCRIPTION HI = High Current Chip Beads ( 3, ma) MI = Mid Current Chip Beads ( 1, ma to <3, ma ) LI = Low Current Chip Beads (<1, ma, <4 Ω Z) HZ = High Impedance Chip Beads (<1, ma, >4 Ω Z) HF = High Frequency Chip Beads LF = Low Frequency Chip Beads HR = High Bias Retention Chip Beads ( >3, ma) CC = CAN-Bus Common Mode Chokes CM = Common Mode Chokes CMX = Wire-Wound Power Common Mode Chokes CF = Small Size (85, 54) Monolithic Common Mode Chokes DA = Multilines Array Chip Arrays IC = Ferrite Chip Inductors CCI = Ceramic Chip Inductors CPI = Multilayer Power Chip Inductors A < 1 ma B = 2 ma C = 3 ma D = 4 ma E = 5 ma F = 6 ma G = 7 ma H = 8 ma I = 9 ma J = 1, ma K = 1,5 ma L = 2, ma M = 2,5 ma N = 3, ma O = 3,5 ma P = 4, ma Q = 4,5 ma R = 5, ma S = 5,5 ma T = 6, ma U = 7, ma V = 8, ma W = 9, ma X = 1, ma Y = 15, ma Z 2, ma First two numbers are Significant Digits The last number indicates how many zeros are added to the significant digits. Impedance Examples: 1 = 1 OHMS 11 = 1 OHMS 12 = 1, OHMS 22 = 2, OHMS 6 = 6 OHMS Examples: (For IC Series) 47 = 47 nh 471 = 47 nh 472 = 4,7 nh 473 = 47, nh Examples: (For CCI series) N3 =.3 nh 1N2 = 1.2 nh 12N = 12 nh R12 = 12 nh R22 = 22 nh Examples: (For CPI series) R47 =.47 uh 1R = 1. uh 4R7 = 4.7 uh Examples: (For CMX series) 68 = 68 uh 181 = 18 uh 132 = 13 uh B: Bulk Standard Thru- Hole Packaging R : Tape&Reel Standard SMT Package -1 = Lead Free Standard Catalog Part -11 to -99 = Non-Standard or Custom Part -1a = Tolerance Code PART NUMBERING SYSTEM 29 F S R -1 MATERIAL TYPE PRODUCT TYPE CODE PART SIZE CODE MINOR DIMENSION CODE BOARD MOUNTING SYTLE PACKAGING CODE ADDITIONAL DESCRIPTION 28 & 29 = Broad Band Material 35 = Low Freq. Material C = Choke L = Axial Leaded Bead F = Assembled Part Unique Part Identifier or Significant Dimension Height or Length Variation S = Surface Mount T= Thru-Hole O = Bulk Standard R = Tape & Reel Standard SMT Package -1 = Lead Free Standard Catalog Part -11 to -99 = Non Standard or Custom Part TEST CONDITIONS Operation temperature: -4 C ~ +125 C (If no parts are specifically defined) Visit for additional and the most up-to-date information and for other board level part families not included in this catalog. All data charts are available by contacting your local Laird office. A revolutionary new SPICE model for EMI ferrite chip beads in now available from Laird. This new design aid includes the de-rating effects of DC bias currents providing much greater accuracy for better designs the first time. This chip bead SPICE model is available by contacting your local Laird office. Note: Most current ratings (I MAX) are based upon a 4 C temperature rise during continuous operation. Parts have no polarity. 2 lairdtech.com More Info:

5 FERRITE EMI CHIP BEADS FEATURES Pb Up to 1 Amps (I MAX) continuous operating capability Monolithic construction with small footprint and high reliability Excellent retention under bias Economical Broad range of sizes (from EIA 21 up to 3312) For power line, low frequency and high frequency signal lines PART NUMBERING SYSTEM HZ 42 A 61 R -1 Product Series Code EIA Size Code Rated Current Code Impedance Value Code Packing Code Additional Description FOR SIGNAL LINE EIA Pkg. Size Metric Pkg. Size Part Number Z 25 MHz Typical 1 MHz 5 MHz 1 GHz Typical Peak Impedance (Ω) Peak Impedance Frequency (MHz) DCR MAX (Ω) RATED I MAX (continuous) ma LI42E19R , LI42C22R LI42E3R , LI42C47R , LI42E6R LI42B8R LI42E8R LI42D121R LI42C221R LI42B31R HZ42A61R HZ42B12R , , HZ42A152R-1 4 1, , HZ42A182R , , LI63E47R , LI63G8R LI63G121R LI63E151R LI63B21R LI63G221R LI63D31R HZ63B471R , HZ63C61R HZ63C651R HZ63B751R More Info: lairdtech.com 3

6 FERRITE EMI CHIP BEADS FOR SIGNAL LINE EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz HZ63A12R , ,45 2, HZ63B12R , , HZ63D12R , HZ63B112R ,1 1,3 85 1, HZ63A152R ,5 1, , HZ63C152R , , HZ63A182R ,8 1,7 5 2, HZ63A222R , , HZ63A252R ,5 1, , LI85G21R LI85G31R HZ85G471R HZ85E61R HZ85D12R , , MI85J12R , , , HZ85D152R , , HZ85C22R , , HZ85B222R , , HZ85B252R-1 4 2, , HZ85B272R-1 4 2, , GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) HZ126E61R HZ126C22R-1 1, , HZ126E152R , HZ126D12R , , DCR MAX (Ω) RATED I MAX (CONTINUOUS) ma FOR POWER LINE EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER 25 MHZ TYPICAL IMPEDANCE (Ω) 1 MHZ 5 MHZ 1 GHZ TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) ma MI42L1R , LI42E19R , LI42C22R LI42E3R , LI42C47R , LI42E6R LI42E75R LI42B8R LI42E8R LI42D121R MI42K121R , LI42C221R LI42B31R HZ42B12R , , MI63K3R ,.9 1, HI63N3R ,.4 3, HI63R3R , HI63N33R ,.25 3, LI63E47R , MI63J6R , HI63P6R , MI63J68R , HI63O7R , LI63G8R lairdtech.com More Info:

7 FERRITE EMI CHIP BEADS FOR POWER LINE EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER 25 MHZ TYPICAL IMPEDANCE (Ω) 1 MHZ 5 MHZ Z@ 1 GHZ TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHZ) DCR MAX (Ω) RATED I MAX (CONTINUOUS) MA LI63G121R MI63M121R , LI63E151R MI63K181R , LI63B21R LI63G221R MI63L221R , LI63D31R MI63L31R , HZ63B471R , MI63J471R , MI63K471R , HZ63C61R MI63J61R , HZ63C651R HZ63B751R HZ63B12R , , MI63J12R , , , HZ63B112R ,1 1,3 85 1, HZ63C152R , , MI85K11R ,.6 1, HI85Q31R , HI85N31R , HI85P39R ,5.8 4, LI85H4R , MI85K4R , HI85T5R , HI85N6R , LI85H75R HI85R8R , LI85H121R HI85O121R , HI85R121R , HI85P121R , LI85H151R LI85G21R MI85M221R , HI85N221R , LI85G31R MI85L31R , MI85L331R , HZ85G471R HZ85E61R MI85K61R , MI85L61R , HZ85D12R , , MI85J12R , , , HZ85D152R , , HZ85C22R , , MI126K26R ,.6 1, MI126K31R ,.45 1, HI126T5R ,.1 6, HI126N68R ,.12 3, HI126N8R , MI126K9R , HI126N11R , LI126H121R HI126P121R , LI126H151R HI126T161R , MI126L391R , More Info: lairdtech.com 5

8 FERRITE EMI CHIP BEADS FOR POWER LINE EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER 25 MHZ TYPICAL IMPEDANCE (Ω) 1 MHZ 5 MHZ 1 GHZ TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHZ) MI126L51R , HZ126E61R MI126K61R , MI126L61R , HZ126E152R , HZ126C22R-1 1, , HZ126D12R , , MI121K6R , HI1612X56R ,.4 1, HI186T6R ,.1 6, LI186E8R , MI186J8R , HI186N91R ,.3 3, LI186E11R LI186C151R HZ186K12R-1 6 1, , , HI1812T8R ,.1 6, HI1812V11R , LI1812D121R MI1812K121R , HI222T11R , HI222R151R , HI222P171R , HI222R181R , HI222P251R , HI222P271R , HI222R31R , HI222Q41R , HI222P551R , HI222P61R , HR222P61R , HI222P71R , HR222V71R , HR222V81R , HI3312X11R ,.4 1, DCR MAX (Ω) RATED I MAX (CONTINUOUS) MA 4 LINES CHIP BEAD ARRAY EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHZ) DCR MAX (Ω) RATED I MAX (CONTINUOUS) MA DA126E3R , DA126D6R , DA126C121R DA126D31R DA126B61R DA126B12R , , LOW FREQUENCY EMI CHIP BEADS EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER TYPICAL IMPEDANCE (Ω) Z 1 MHz 5 MHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHZ) DCR MAX (Ω) RATED I MAX (CONTINUOUS) ma LF126A32R-1 1 MHz , LF126C22R-1 3 MHz , LF126E152R-1 5 MHz , LF85A252R-1 1 MHz 1, , lairdtech.com More Info:

9 FERRITE EMI CHIP BEADS 42 Chip Bead Impedance Under DC Bias ma 25 ma 5 ma 1 ma 15 ma 2 ma MI42L1R ma 6 ma 12 ma 18 ma 25 ma 3 ma LI42C22R LI42E19R-1 ma 1 ma 2 ma 3 ma 4 ma 5 ma LI42C47R-1 ma 6 ma 12 ma 18 ma 24 ma 3 ma LI42E3R-1 3 LI42B8R amp 1 ma 2 ma 3 ma 4 ma 5 ma ma 4 ma 8 ma 12 ma 16 ma.2 A LI42E6R-1 LI42E8R amp 1 ma 2 ma 3 ma 4 ma 5 ma More Info: lairdtech.com 7

10 FERRITE EMI CHIP BEADS 42 Chip Bead Impedance Under DC Bias 25 LI42D121R-1 5 LI42C221R amp 5 ma 1 ma 2 ma 3 ma 4 ma ma 6 ma 12 ma 18 ma 25 ma 3 ma LI42B31R-1 12 HZ42A61R amp 25 ma 5 ma 1 ma 15 ma 2 ma amp 25 ma 5 ma 75 ma 1 ma ma 25 ma 5 ma 75 ma 1 ma HZ42B12R HZ42A152R ma 12 1 ma 2 ma 1 3 ma 4 ma 8 5 ma HZ42A182R-1 12 LI42E75R ma 2 ma 4 ma 6 ma 8 ma 1 ma ma 1 ma 2 ma 3 ma 4 ma 5 ma lairdtech.com More Info:

11 FERRITE EMI CHIP BEADS 42/63 Chip Bead Impedance Under DC Bias MI42K121R ma 14 2 ma 12 4 ma 8 ma 1 1 ma 8 16 ma LI63E47R-1 ma.1 ma.2 ma.3 ma.4 ma.5 ma LI63G8R-1 amp 1 ma 2 ma 3 ma 5 ma 7 ma LI63G121R-1 amp 1 ma 2 ma 3 ma 5 ma 7 ma LI63E151R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma MI63K181R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma LI63B21R-1 3 LI63G221R ma 4 ma 8 ma 12 ma 18 ma amp 1 ma 2 ma 3 ma 5 ma 7 ma 2 ma More Info: lairdtech.com 9

12 FERRITE EMI CHIP BEADS 63 Chip Bead Impedance Under DC Bias LI63D31R-1 amp 5 ma 1 ma 2 ma 3 ma 4 ma ma 25 ma 5 ma 75 ma 1 ma 2 ma HZ63B471R HZ63C61R-1 amp 5 ma 1 ma 2 ma 3 ma HZ63C651R-1 amp 5 ma 1 ma 2 ma 3 ma HZ63B751R amp 7 25 ma 5 ma 6 1 ma 5 15 ma 4 2 ma HZ63A12R amp 8 5 ma 1 ma 6 15 ma 4 2 ma amp 5 ma 1 ma 15 ma 2 ma HZ63B12R amp 2 ma 4 ma 6 ma 8 ma 1 ma MI63J12R lairdtech.com More Info:

13 FERRITE EMI CHIP BEADS 63 Chip Bead Impedance Under DC Bias 12 MI63J6R-1 6 HI63N3R amp 1 ma 2 ma 4 ma 8 ma 1 ma amp 1 amp 2 amp 3 amp HI63R3R amp 1 ma 25 ma 3 5 ma ma 15 ma HI63N33R-1 amp 1 amp 2 amp 3 amp HI63P6R ma 8 2 ma 7 4 ma 8 ma 6 24 ma 5 4 ma MI63J68R-1 amp 1 ma 25 ma 5 ma 75 ma 1 ma HI63O7R-1 ma 14 ma 21 ma 28 ma 35 ma MI63M121R-1 amp 5 ma 1 ma 15 ma 2 ma 25 ma More Info: lairdtech.com 11

14 FERRITE EMI CHIP BEADS 63 Chip Bead Impedance Under DC Bias amp 5 ma 1 ma 15 ma 2 ma A.2 A.4 A.6 A.8 A.1 A HZ63D12R HZ63A152R HZ63A222R-1 amp 25 ma 5 ma 75 ma 1 ma HZ63B112R amp 14 5 ma 12 1 ma 15 ma 1 2 ma HZ63C152R ma 5 ma 1 1 ma 8 2 ma 3 ma MI63L31R ma 3 1 ma 25 ma 25 5 ma 2 1 ma 2 ma A.1 ma.2 ma.3 ma.4 ma.5 ma HZ63A252R MI63K3R amp 35 1 ma 25 ma 3 5 ma 25 1 ma 2 15 ma lairdtech.com More Info:

15 FERRITE EMI CHIP BEADS 63/85 Chip Bead Impedance Under DC Bias MI63J471R-1 amp 1 ma 25 ma 5 ma 75 ma 1 ma MI63L221R-1 amp 5 ma 1 ma 2 ma 5 ma 1 ma 2 ma MI63K471R MI63J61R-1 amp 1 ma 25 ma 5 ma 75 ma 1 ma ma 1 ma 2 ma 3 ma 4 ma 5 ma HZ63A182R LI85G31R amp 3 1 ma 2 ma 25 3 ma 5 ma 2 7 ma HZ85G471R-1 8 HZ85E61R amp 1 ma 2 ma 3 ma 5 ma 7 ma amp 1 ma 2 ma 3 ma 4 ma 5 ma More Info: lairdtech.com 13

16 FERRITE EMI CHIP BEADS 85 Chip Bead Impedance Under DC Bias HZ85D12R-1 MI85J12R amp 1 ma 2 ma 3 ma 4 ma HZ85D152R amp 5 ma 1 ma ma 3 ma 4 ma amp 1 ma 2 ma 4 ma 8 ma 1 ma HZ85C22R-1 amp 5 ma 1 ma 2 ma 3 ma HZ85B222R-1 35 HZ85B252R ma 25 ma 5 ma 75 ma 1 ma 2 ma ma 25 ma 5 ma 75 ma 1 ma 2 ma LF85A252R-1 35 HZ85B272R A.2 A.4 A.6 A.8 A.1 A amp 25 ma 5 ma 75 ma 1 ma 2 ma lairdtech.com More Info:

17 FERRITE EMI CHIP BEADS 85 Chip Bead Impedance Under DC Bias MI85K11R-1 amp 25 ma 5 ma 75 ma 1 ma 15 ma HI85N31R amp 25 ma 35 5 ma 3 1 ma 2 ma 25 3 ma HI85Q31R amp 35 1 amp 3 2 amp 25 3 amp 4 amp 2 5 amp HI85P39R-1 LI85H4R amp 1 ma 2 ma 4 ma 6 ma 8 ma LI85G21R-1 amp 1 ma 2 ma 3 ma 5 ma 7 ma MI85K4R amp 6 25 ma 5 ma 5 75 ma 1 ma 4 15 ma HI85T5R amp 1 amp 7 2 amp 6 3 amp 4 amp 5 5 amp More Info: lairdtech.com 15

18 FERRITE EMI CHIP BEADS 85 Chip Bead Impedance Under DC Bias HI85N6R amp 1 amp 7 2 amp 6 3 amp 4 amp 5 5 amp LI85H75R-1 amp 1 ma 2 ma 4 ma 6 ma 8 ma ma 25 ma 5 ma 1 ma 3 ma 5 ma HI85R8R MI85L31R amp ma 3 5 ma 1 ma ma 2 2 ma HI85O121R A.75 A A 1 2 A 2.75 A A LI85H121R amp 1 ma 2 ma ma 6 ma 8 ma HI85P121R-1 25 LI85H151R amp 1 ma 2 ma 4 ma 6 ma 8 ma lairdtech.com More Info:

19 FERRITE EMI CHIP BEADS 85/126 Chip Bead Impedance Under DC Bias HI85R121R-1 3 HI85N221R amp 5 ma 1 ma 15 ma 2 ma 25 ma amp 5 ma 1 ma 15 ma 2 ma 25 ma MI85M221R MI85L331R-1 amp 25 ma 5 ma 1 ma 15 ma 2 ma MI85K61R-1 MI85L61R amp 25 ma 5 ma 75 ma 1 ma 15 ma LF126C22R-1 amp 5 ma 1 ma 2 ma 3 ma HZ126E61R amp 6 1 ma 2 ma 5 3 ma 4 ma 4 5 ma More Info: lairdtech.com 17

20 FERRITE EMI CHIP BEADS 126 Chip Bead Impedance Under DC Bias HZ126E152R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma HZ126D12R-1 amp 1 ma 2 ma 3 ma 4 ma HZ126C22R-1 amp 5 ma 1 ma 2 ma 3 ma LF126E152R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma LF126A32R-1 A.2 A.4 A.6 A.8 A.1 A LI126H121R-1 amp 1 ma 3 ma 5 ma 6 ma MI126K26R amp 25 ma 5 ma 75 ma 1 ma 15 ma MI126K31R-1 amp 25 ma 5 ma 1 ma 15 ma lairdtech.com More Info:

21 FERRITE EMI CHIP BEADS 126 Chip Bead Impedance Under DC Bias 8 HI126T5R-1 14 HI126N8R amp 1 amp 2 amp 3 amp 4 amp 5 amp amp 5 ma 1 ma 15 ma 2 ma 3 ma HI126N68R-1 16 HI126N11R amp 25 ma 5 ma 1 ma 2 ma 3 ma MI126K9R amp 2 ma 4 ma ma 1 ma 15 ma HI126P121R amp 1 amp 1 2 amp 3 amp 8 4 amp 6 5 amp More Info: lairdtech.com 19

22 FERRITE EMI CHIP BEADS 126/121/1612 Chip Bead Impedance Under DC Bias LI126H151R-1 amp 1 ma 2 ma 4 ma 6 ma 8 ma ma 3 ma 6 ma 9 ma 24 ma 6 ma HI126T161R MI126L391R ma ma 5 ma 3 1 ma ma 2 ma MI126L51R-1 amp 25 ma 5 ma 1 ma 15 ma 2 ma MI126K61R-1 amp 25 ma 5 ma 1 ma 15 ma MI126L61R-1 amp 25 ma 5 ma 1 ma 15 ma MI121K6R-1 ma 25 ma 5 ma 1 ma 15 ma HI1612X56R-1 amp 1 amp 2 amp 3 amp 4 amp 5 amp lairdtech.com More Info:

23 FERRITE EMI CHIP BEADS 186/1812 Chip Bead Impedance Under DC Bias HI186T6R amp 7 1 amp 2 amp 6 3 amp 5 4 amp 4 5 amp LI186E8R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma MI186J8R-1 16 HI186N91R amp 1 ma 2 ma 4 ma 8 ma 1 ma amp 25 ma 5 ma 1 ma 2 ma 3 ma LI186E11R-1 amp 1 ma 2 ma 3 ma 4 ma 5 ma LI186C151R-1 ma 5 ma 1 ma 2 ma 3 ma HZ186K12R A 1.1 A 8.25 A.5 A 6 1 A 1.5 A HI1812T8R-1 amp 1 amp 2 amp 3 amp 4 amp 5 amp More Info: lairdtech.com 21

24 FERRITE EMI CHIP BEADS 1812/222 Chip Bead Impedance Under DC Bias HI1812V11R amp 12 1 amp 2 amp 1 3 amp 8 4 amp 5 amp LI1812D121R-1 amp 5 ma 1 ma 2 ma 3 ma 4 ma ma 25 ma 5 ma 1 ma 15 ma MI1812K121R HI222P61R-1 amp 5 ma 1 ma 2 ma 3 ma 4 ma A 1 A 2 A 3 A 4 A 5 A HR222V71R HR222V81R amp 7 1 amp 2 amp 6 3 amp 5 4 amp 4 5 amp HR222P61R-1 amp 5 ma 1 amp 2 amp 3 amp 4 amp ma 1 ma 2 ma 3 ma 4 ma 5 ma HI222T11R lairdtech.com More Info:

25 FERRITE EMI CHIP BEADS 222 Chip Bead Impedance Under DC Bias ma 1 ma 2 ma 3 ma 4 ma 5 ma HI222R151R ma 1 ma 2 ma 3 ma 4 ma HI222P171R ma 1 ma 2 ma 3 ma 4 ma 5 ma HI222R181R ma 1 ma 2 ma 3 ma 4 ma HI222P251R ma 1 ma 2 ma 3 ma 4 ma HI222P271R More Info: lairdtech.com 23

26 FERRITE EMI CHIP BEADS 222/3312 Chip Bead Impedance Under DC Bias ma 1 ma 2 ma 3 ma 4 ma 5 ma HI222R31R HI222Q41R ma 4 1 ma 35 2 ma 3 3 ma 4 ma ma ma 1 ma 2 ma 3 ma 4 ma HI222P551R HI222P71R-1 amp 5 ma 1 ma 2 ma 3 ma 4 ma HI3312X11R-1 amp 1 amp 2 amp 3 amp 4 amp 5 amp lairdtech.com More Info:

27 FERRITE EMI CHIP BEADS 4 Line Array Impedance Under DC Bias 6 DA126E3R-1 14 DA126D6R amp 1 ma 2 ma 3 ma 4 ma 5 ma amp 25 ma 5 ma 1 ma 2 ma 3 ma DA126C121R DA126B61R-1 amp 5 ma 1 ma 15 ma 2 ma amp 5 ma 1 ma 2 ma 3 ma 4 ma DA126D31R-1 amp 5 ma 1 ma 2 ma 3 ma 4 ma DA126B12R-1 amp 5 ma 1 ma 15 ma 2 ma More Info: lairdtech.com 25

28 FERRITE EMI SMT BEAD ASSEMBLIES FEATURES 1 Amps continuous operating current capability Very low RDC Broadband (28F) and (35F) parts available Lead free and RoHS compliant Pb PART NUMBERING SYSTEM 28 F S R -1 Material Code Product Code (EIA) EIA Size Code Selected Dimension Code Additional Description Packing Code Additional Description SMT BEAD ASSEMBLIES - POWER LINE EIA PKG. SIZE Metric Pkg. Size Part Number MHz Typical 1 MHz 5 MHz 1 GHz Typical Peak Impedance (Ω) Peak Impedance Frequency (MHz) DCR MAX (Ω) RATED I MAX (continuous) ma F121-SR , F121-1SR , F181-1SR , LOW FREQUENCY BEAD ASSEMBLIES - POWER LINE EIA PKG. SIZE Metric Pkg. Size Part Number MHz Typical 1 MHz 5 MHz 1 GHz Typical Peak Impedance (Ω) Peak Impedance Frequency (MHz) DCR MAX (Ω) RATED I MAX (continuous) ma F121-SR , F121-1SR , 26 lairdtech.com More Info:

29 FERRITE EMI SMT BEAD ASSEMBLIES SMT Bead Assemblies Impedance Under DC Bias ma 5 ma 1 ma 2 ma 4 ma 8 ma 28F121-SR ma 5 ma 1 ma 2 ma 3 ma 5 ma 28F121-1SR ma 5 ma 1 ma 2 ma 3 ma 5 ma 28F181-1SR F121-SR-1 ma 25 ma 5 ma 75 ma 1 ma 5 ma F121-1SR-1 ma 25 ma 5 ma 75 ma 1 ma 5 ma More Info: lairdtech.com 27

30 FERRITE EMI SMT BEAD ASSEMBLIES DIMENSION METRIC ( EIA ) PKG. SIZE A mm B mm C* mm D mm 63 (21).6 (.23).3 (.11).3 (.11).15 (.6) 15 (42) 1.1 (.4).5 (.2).5 (.2).3 (.12) 168 (63) 1.6 (.63).8 (.31).8 (.31).36 (.14) 21 (84) 2. (.79) 1. (.39).5 (.2).25 (.1) 212 (85) 2. (.79) 1.25 (.49).9 (.35).51 (.2) 3216 (126) 3.2 (.126) 1.6 (.63) 1.1 (.43).51 (.2) 3225 (121) 3.2 (.126) 2.5 (.98) 1.4 (.55).46 (.18) 43 (1612) 4.6 (.16) 3.5 (.12) 2.28 (.9).46 (.18) 4516 (186) 4.5 (.177) 1.6 (.63) 1.6 (.63).51 (.2) 4532 (1812) 4.5 (.177) 3.2 (.126) 1.4 (.55).46 (.18) 565 (222) 5.59 (.22) 5.8 (.2) 3.45 (.136).76 (.3) 853 (3312) 8.5 (.335) 3.5 (.12) 2.28 (.9).51 (.2) PART NUMBER A mm B mm C* mm D mm MONOLITHIC CHIP BEAD FERRITE SMT BEAD ASSEMBLIES F121-SR 3.5 (.12) 2.54 (.1) 4.6 (.16) - - F121-1SR 3.5 (.12) 2.54 (.1) 8.51 (.335) - - F181-SR 4.57 (.18) 2.54 (.1) 8.51 (.335) - - *C Dimension (height) may vary with current and impedance rating requirements. Refer to part print for specific dimensions. Parts have no polarity. 28 lairdtech.com More Info:

31 COMMON MODE AND DIFFERENTIAL MODE EXPLANATION Laird common mode chokes are the ideal components for EMI filtering of power and signal lines. These components withstand high DC currents without degradation of filtering performance that can occur with differential mode filters like small chip beads. Stable common mode chokes allow most signals to pass unaffected, yet filter the noise (EMI) from these circuits. Switch mode power supplies are required for most advanced electronics because harmonics of the switch mode power supply can escape the power supply as EMI. The power delivery circuit often creates opportunities for unintended common mode current loops to form in the end product, even when using a certified or regulation compliant power supply. Installation of a common mode choke to the supply output can significantly reduce this common mode energy flow and help insure product performance and EMI regulatory compliance. Small ferrite chip beads or inductors are degraded by the power supply output. However, common mode chokes continue their high performance regardless of the high power currents that might flow or spike in the circuit. Modern systems are frequently an interconnection of functional blocks and connections made by cables or wiring harnesses. These interconnections often present the opportunity for common mode current loops between devices that can lead to EMI regulatory failure. The addition of a common mode choke before the connector filters these common mode currents while allowing the desired signals to pass unaffected. The result is effective communication between devices, reliable product and system operation and product EMI regulatory compliance. Most well-designed power and signal circuits present no EMI caused from intended currents. As an example, at 3 MHz a pair of traces or wires 1 m long, separated by 1.3 mm, require over 2 ma differential current imbalance to exceed 1 µv/m radiation 3 meters away. However, unintended, unforeseen common mode currents can exceed 1 µv/m radiation with only 8 µa common mode current flow! Suppression of these tiny common mode currents is often crucial to assuring EMI regulatory compliance and reliable product performance. Ferrite common mode chokes operate by acting on the magnetic fields surrounding a pair of conductors. Black arrows represent differential (normal) mode. Red arrows represent common mode. Two conductors used in a standard differential transmission circuit create magnetic fields surrounding the conductors. These magnetic fields flow around the conductors in the directions depicted by the black arrows. Likewise, common mode currents generate magnetic fields surrounding the conductors. The red arrows depict the common mode current path and the associated flux paths around the wires. The same two wires shown above have been fitted above with two separate ferrite EMI cores in a differential-mode configuration with one core per line. In this application, each core must contain the total magnetic flux resulting from both the differential mode (intended) current and the common mode (unintended) by the intended current. Differential mode filters (like small chip beads) are not stable under significant load. The same two wires have now been fitted with a ferrite EMI core in a common mode configuration; a single core with both lines through a common opening in the core. The differential mode (black) fields in the core are now equal and opposite, which yields a net flux seen by the core of approximately zero. Saturation is no longer an issue, and a much smaller ferrite core/choke can be used. The field from the common mode noise (red arrows) is additive and is the only remaining flux to be inflected by the core. The common mode choke configuration applies to both cable cores and board level components. Common mode chokes are stable under load. More Info: lairdtech.com 29

32 COMMON MODE CHOKE FAMILY PART SERIES SPECIAL FEATURES EIA PACKAGE SIZE IMPEDANCE ( Z ) 1 MHz RATED I MAX (CONTINUOUS) ma PEAK IMPEDANCE (Z) FREQUENCY # OF SINGLE LINE PAIRS OR CHOKES CM 5 USB 2., Low Normal Mode Z GHz GHz 1 CH 5 HDMI High Speed Signal CF Beads Normal Signal, Small Package CM 21 High Current, Low Profile , 1GHz 1 CM 22 Array Firewire, Gigabit Ethernet , 2 MHz - 3 GHz 2,3,4 CM 32 Array High Current, High Frequency , 15 MHz - 2 GHz 2,3,4 CM 4 Array CM 41 High Current, Low to High Frequency Ultra High Current, Low to High Frequency , 1 GHz 1, , 6 MHz - 7 MHz 1 CM 44 3 Line Power , 5 MHz 3 CM 45 2 & 4 Line Power , 5 MHz - 1 GHz 1,2 LF CM Low Frequency , 3 MHz - 8 MHz 1 IMPEDANCE TEST FOR COMMON MODE CHOKES Open Mode Normal/Differential Mode Common Mode Open-Mode Impedance Measurement - The open-mode impedance characterizes the impedance of only a single conductor in the ferrite common mode choke. Normal (Differential) Mode Impedance Measurement The normal mode impedance characterizes the impedance presented by the common mode choke to the normal (differential) signals present in the circuit. The test circuit represents the forward and return paths through the device. Common Mode Impedance Measurement - The common mode impedance characterizes the impedance presented by the choke to the unintended common mode currents that might flow in the circuit and cause EMI failures. Since this current flows in both conductors, it is necessary to short the conductors on each side of the choke so that test current flows equally through both conductors. 3 lairdtech.com More Info:

33 COMMON MODE CHOKES FEATURES Pb Wire wound SMT and through hole structure rated current up to 75 Amps Low DCR with small package Stable performance under load bias Excellent impedance vs frequency feature Small size and high reliability For power, low frequency and high frequency signal lines For USB, HDMI, 1394, DVI, S-ATA, LVDS signal line applications Suitable for power saving especially for portable application PART NUMBERING SYSTEM CM 85 D 9 R -1 Product Series Code EIA Size Code Rated Current Code Inductance Value Code Packing Code Additional Description HIGH SPEED SERIAL INTERFACE COMMON MODE CHOKE APPLICATION TYPE PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) (ma) CM85D9R CM85C161R CM85C221R USB2./LVDS CM85B361R Wirewound (For 2 lines) CM85A371R CM85B51R CM85C61R CH85D9R HDMI/DVI/SATA CM126A61R USB/Signal Line Multilayer (For 2 lines) CM126C161R CF54C9R CF54C121R CF85D67R CF85D9R CF85D121R CF85D181R CF85C221R More Info: lairdtech.com 31

34 COMMON MODE CHOKES 6 CM85D9R-1 8 CM85C161R CM85C221R CM85B361R CM85A371R CM85B51R CM85C61R CH85D9R lairdtech.com More Info:

35 COMMON MODE CHOKES CM126A61R CF54C9R CM126C161R-1 35 CF54C121R CF85D67R-1 3 CF85D9R CF85D121R More Info: lairdtech.com 33

36 COMMON MODE CHOKES 35 CF85D181R-1 35 CF85C221R DIMENSION PART NUMBER EIA PKG SIZE METRIC PKG SIZE A mm B mm C mm D mm D1 mm E mm CM85 CH (.79) 1.2 (.47) 1.2 (.47) CF (.49) 1. (.39).82 (.32).3 (.12).2 (.8).5 (.2) CF (.79) 1.25 (.49) 1. (.39).3 (.12).4 (.16) POWER LINES COMMON MODE CHOKE APPLICATION TYPE PART NUMBER Power Lines Surface Mount ( For 2 lines) Thru-Hole ( For 2 lines) Thru-Hole ( For 4 lines) Surface Mount ( For 2 lines) Surface Mount ( For 4 lines) Surface Mount ( For 3 lines) 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) (ma) CM221Y33R , CM3421Y6R , CM344Z171B , CM574Z171B , CM344Z171R , CM574Z171R , CM444Z111R , CM444Z121R , Thru-Hole ( For 2 lines) CM5441Z11B CM5441Z161B CM5441Z161R , 25 C Temp Rise 7, 3 C Temp Rise 34 lairdtech.com More Info:

37 COMMON MODE CHOKES CM221Y33R CM3421Y6R CM344Z171B-1 CM344Z171R CM574Z171B-1 CM574Z171R CM444Z111R CM5441Z11B CM5441Z161B More Info: lairdtech.com 35

38 COMMON MODE CHOKES DIMENSION PART NUMBER A mm B mm C mm CM221Y33R-1 5. (.197) 5.6 (.22) 2.85 (.112) CM3421Y6R (.342) 5.6 (.22) 2.85 (.112) CM344Z171B (.335) 1.3 (.395) 9.32 (.367) CM344Z171R (.335) 1.3 (.395) 9.32 (.367) CM574Z171B (.57) 1.3 (.395) 9.32 (.367) CM574Z171R (.57) 1.3 (.395) 9.32 (.367) CM444Z111R (.435) 1.3 (.395) 9.32 (.367) CM5441Z11B (.54) 1.41 (.41) 1.52 (.414) CM5441Z161B (.54) 1.41 (.41) (.6) 36 lairdtech.com More Info:

39 LOW FREQUENCY COMMON MODE CHOKES APPLICATION TYPE PART NUMBER 1 MHz TYPICAL IMPEDANCE (Ω) 4 MHz 1 MHz 1 MHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) (ma) Signal/ Power Line Surface Mount (For 2 lines) Thru-Hole (For 4 lines) CM1812C282R ,1 1,9 2, CM2824B13R-1 1, 8,9 3, , CM2824E182R ,8 1, CM2824E352R ,1 3,5 3, CM2824E72R-1 3, 7, 5,8 8 7, CM574Z241B-1 17 (2 Turns) 24 (2 Turns) 173 (2 Turns) 1 (2 Turns) 276 (2 Turns) 3 (2 Turns).13 2, Impedance (Z) versus Frequency CM2824E352R-1 CM1812C282R-1 CM2824E182R CM2824B13R-1 CM2824E72R-1 CM574Z241B-1, 2 Turn Impedance (Z) 3 25 CM574Z241B-1, 2 Turn Impedance (Z) DIMENSION PART NUMBER A mm B mm C mm CM1812C282R-1 5. (.197) 3.5 (.138) 5.55 (.14) CM2824B13R (.295) 5.5 (.217) 3.8 (.15) CM2824E182R (.295) 5.5 (.217) 3.8 (.15) CM2824E352R (.295) 5.5 (.217) 3.8 (.15) CM2824E72R (.295) 5.5 (.217) 3.8 (.15) CM574Z241B (.57) 1.3 (.395) 9.32 (.387) More Info: lairdtech.com 37

40 COMMON MODE ARRAYS APPLICATION FOR POWER LINES TYPE Surface Mount (For 4 lines) Surface Mount (For 6 lines) Surface Mount (For 8 lines) Surface Mount (For 4 lines) Surface Mount (For 6 lines) Surface Mount (For 8 lines) PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) (ma) CM2722R8R , CM2722R151R , CM2722R21R , CM3822R8R , CM3822R151R , CM3822R21R , CM522R8R , CM522R151R , CM522R21R , CM332V121R , CM332V21R , CM332V31R , CM4732V21R , CM4732V31R , CM632V21R , CM632V31R , Thru-Hole ( For 2 lines) CM2545X171B , Surface Mount ( For 2 lines) CM2545X171R , Thru-Hole ( For 4 lines) CM4545Z131B , Surface Mount ( For 4 lines) CM4545Z131R , PART NUMBER # OF CHOKES 1 MHz TYPICAL IMPEDANCE (Ω) FOR MULTIPLE PASS BOARD LAYOUT OPTIONS ONE PASS TWO PASS THREE PASS FOUR PASS 5 MHz 1 GHz CM2722R8R CM2722R151R CM2722R21R CM3822R8R CM3822R151R CM3822R21R CM522R8R CM522R151R CM522R21R CM332V121R CM332V21R CM332V31R CM4732V21R CM4732V31R CM632V21R CM632V31R MHz 5 MHz 1 GHz 1 MHz 5 MHz 1 GHz 1 MHz 5 MHz 1 GHz 38 lairdtech.com More Info:

41 COMMON MODE ARRAYS Part Impedance CM2722R8R-1, CM3822R8R-1, CM522R8R CM2722R151R-1M, CM3822R151R-1, CM522R151R Multi-Pass Impedance (for multiple pass board layout options) CM2722R8R-1, CM3822R8R-1, CM522R8R CM2722R151R-1M, CM3822R151R-1, CM522R151R CM2722R21R-1, CM3822R21R-1, CM522R21R CM2722R21R-1, CM3822R21R-1, CM522R21R More Info: lairdtech.com 39

42 COMMON MODE ARRAYS Part Impedance CM332V121R CM332V21R-1, CM4732V21R-1, CM632V21R Multi-Pass Impedance (for multiple pass board layout options) CM332V121R CM332V21R-1, CM4732V21R-1, CM632V21R CM332V31R-1, CM4732V31R-1, CM632V31R CM332V31R-1, CM4732V31R-1, CM632V31R lairdtech.com More Info:

43 COMMON MODE ARRAYS CM2545X171B-1, CM2545X171R-1 CM4545X131B-1, CM4545X131R CM4545X131B-1, CM4545X131R-1, Multi-Turn Impedance More Info: lairdtech.com 41

44 42 COMMON MODE ARRAYS DIMENSION PART NUMBER A mm B mm C mm CM2722R8R (.275) 5.72 (.225) 4.32 (.17) CM2722R151R (.275) 5.72 (.225) 7.62 (.3) CM2722R21R (.275) 5.72 (.225) 9.53 (.375) CM3822R8R (.385) 5.72 (.225) 4.32 (.17) CM3822R151R (.385) 5.72 (.225) 7.62 (.3) CM3822R21R (.385) 5.72 (.225) 9.53 (.375) CM522R8R (.495) 5.72 (.225) 4.32 (.17) CM522R151R (.495) 5.72 (.225) 7.62 (.3) CM522R21R (.495) 5.72 (.225) 9.53 (.375) CM332V121R (.3) 8.13 (.32) 5.72 (.225) CM332V21R (.3) 8.13 (.32) 9.45 (.372) CM332V31R (.3) 8.13 (.32) (.57) CM4732V21R (.47) 8.13 (.32) 9.45 (.372) CM4732V31R (.47) 8.13 (.32) (.57) CM632V21R (.6) 8.13 (.32) 9.45 (.372) CM632V31R (.6) 8.13 (.32) (.57) CM2545X171B (.248) (.448) 9.32 (.367) CM2545X171R (.248) (.448) 9.32 (.367) CM4545Z131B (.448) (.448) 9.32 (.367) CM4545Z131R (.448) (.448) 9.32 (.367) PART NUMBER A mm B mm C mm lairdtech.com More Info:

45 CAN-BUS COMMON MODE CHOKE SERIES FEATURES Accurate current matching capability over a broad range of inductance values Sector wound coils at 25 & 51 μh to filter differential mode noise from the data signal. Low distortion Custom designs possible Open bottom case construction Small (1812) size parts are so available Surface Mount HIGH SPEED SERIAL INTERFACE COMMON MODE CHOKE TYPE PART NUMBER Lp IMPEDANCE (µh) TEST CONDITION MIN NOM MAX PEAK IMPEDANCE (Z) L LEAKAGE (µh) HI-POT (VAC).5 ma 2 SEC DCR TYPICAL (Ω) Idc (ma) CC1812C513R-1* 1 KHz / 5mV MHz CC2824J52R-1 1 KHz / 5 mv MHz CC2824E113R-1 1 KHz / 5mV MHz Surface Mount (For 2 lines) CC2824E253R-1 1 KHz / 5mV MHz CC2824E513R-1* 1 KHz / 5mV MHz CC2824E474R-1 1 KHz / 5mV MHz CC2824E15R-1 1 KHz / 5mV MHz CC2824D225R-1 1 KHz / 5mV MHz CC2824B475R-1 1 KHz / 5mV MHz * Sector Wound DIMENSION PART NUMBER A mm B mm C mm CC MAX (.295 MAX) 5.5 MAX (.217 MAX) 3.8 MAX (.15 MAX) CC MAX (.197 MAX) 3.5 MAX (.138 MAX) 5.55 MAX (.14 MAX) More Info: lairdtech.com 43

46 CAN-BUS COMMON MODE CHOKE SERIES Typical Insertion 5 Ω CC2824J52R-1 CC2824E113R IL (db) IL (db) CC2824E253R-1 CC1812C513R-1, CC2824E513R IL (db) IL (db) CC2824E471R-1 CC2824E15R IL (db) IL (db) IL (db) CC2824D225R-1 IL (db) CC2824B475R lairdtech.com More Info:

47 PASSES AND TURNS EMI Chip Beads, Chip Inductors CM Beads, CM 5 / 21 / 4 / 41 / 45, LF CM, Can Bus CM574Z241B-1, CM 45 Array CM22 Array, CM 32 Array, CM 4 Array CM22 Array, CM 32 Array CM22 Array, CM 32 Array EXPLANATION OF PASSES & TURNS Laird multi-choke arrays can be electrically connected in the PC board to increase effective impedance. When the PCB circuits are configured, as shown above, such that individual side-by-side chokes within one array part are connected in series, the impedance is increased by a factor of the number of passes through the part. Since internal construction of Laird ferrite common mode chokes varies, Laird refers to this special installation configuration using the different terms of pass (additive) or turn (multiplicative). When the term pass is used to describe series connections through a choke, each additional pass increases the impedance (Z) in proportion to the number of series PCB connections applied. Each additional pass adds a choke in series. If needed, it s an optional effective method of increasing impedance with an array. When the term turn is used to describe series connection through a choke, each additional turn increases the impedance in proportion to the square of the number of series PCB connections applied. Each turn multiplies impedance. Parts have no polarity. More Info: lairdtech.com 45

48 WIRE-WOUND SMT POWER COMMON-MODE CHOKES CMX 1211 Series Pb FEATURES Small size with high current Stable performance under load bias and high reliability High suppression of asymmetric interferences at both low and high frequency SMT Type with less height Operation temperature: -4 C to 125 C (Including self-heating) Custom designs on request APPLICATIONS Interferences suppression of common mode noise Power line filter Switch-mode power supplies ELECTRICAL SPECIFICATIONS PART NO. 1 KHZ / 1 mv (uh) NOM MIN MAX DCR MAX (mω) CURRENT RATING MAX (A) RATING VOLTAGE MAX (Vrms) HIPOT COIL COIL (VAC) CMX1211Z68B CMX1211Z181B CMX1211Z321B CMX1211Z61B CMX1211Y81B CMX1211X132B CMX1211W182B DIMENSIONS CMX1211 Unit: mm A Max B Max C Max ORDERING INFORMATION CMX1211 SERIES PART NUMBER EXAMPLE C M X Z B Product series code EIA size code (L x W) Rated Current Code X = 1, ma Y = 15, ma Z = 2, ma Inductance value code (L) 41 = 396 uh 171 = 176 uh 222 = 2156 uh Packing Code B = Bulk Packaging Additional Description 46 lairdtech.com More Info:

49 CMX1211 SERIES WIRE-WOUND SMT POWER COMMON-MODE CHOKES TYPICAL CHARACTERISTICS ZRX VS FREQUENCY CMX1211Z68B Z R XL CMX1211Z181B CMX1211Z321B CMX1211Z61B-1 CMX1211Y81B CMX1211X132B CMX1211W182B More Info: lairdtech.com 47

50 WIRE-WOUND DIP POWER COMMON-MODE CHOKES CMX 1616 Series FEATURES Current rating up to 62 Amp Stable performance and high reliability High suppression of asymmetric interferences at both low and high frequency Operation temperature: -4 C to 125 C (Including self-heating) Custom designs on request Pb APPLICATIONS Interferences suppression of common mode noise Power line filter Switch-mode power supplies ELECTRICAL SPECIFICATIONS PART NO. 1 KHZ / 1 mv (uh) NOM MIN MAX DCR MAX (mω) CURRENT RATING MAX (A) RATING VOLTAGE MAX (Vrms) HIPOT COIL COIL (VAC) CMX1616X282B CMX1616Y222B CMX1616Z112B CMX1616Z162B CMX1616Z171B CMX1616Z41B CMX1616Z71B ORDERING INFORMATION CMX1616 SERIES PART NUMBER EXAMPLE C M X Z B - 1 Product series code EIA size code (L x W) Rated Current Code X = 1, ma Y = 15, ma Z = 2, ma Inductance value code (L) 41 = 396 uh 171 = 176 uh 222 = 2156 uh Packing Code B = Bulk Packaging Additional Description 48 lairdtech.com More Info:

51 CMX1616 SERIES WIRE-WOUND DIP POWER COMMON-MODE CHOKES DIMENSIONS Unit: mm Part Number A Max B Max C Max LAND PATTERN CMX1616X282B CMX1616Y222B CMX1616Z112B CMX1616Z162B CMX1616Z171B CMX1616Z41B CMX1616Z71B More Info: lairdtech.com 49

52 CMX1616 SERIES WIRE-WOUND DIP POWER COMMON-MODE CHOKES TYPICAL CHARACTERISTICS ZRX VS FREQUENCY CMX1616X282B-1 Z R XL CMX1616Y222B-1 CMX1616Z112B-1 CMX1616Z162B-1 CMX1616Z171B-1 CMX1616Z41B-1 CMX1616Z71B-1 5 lairdtech.com More Info:

53 COMMON MODE CHOKE SERIES SORTED BY 1 MHz OR 4 MHz PART NUMBER TYPICAL Z 25 MHz NOMINAL Z 1 MHz TYPICAL Z 5 MHz TYPICAL Z 1 GHz TYPICAL PEAK IMPEDANCE (Ω) TYPICAL PEAK IMPEDANCE FREQ. (MHz) DCR MAX (Ω) RATED CONTINUOUS CURRENT (ma) A (mm) LENGTH B (mm) WIDTH C (mm) HEIGHT CM221Y33R , CM3421Y6R , CF85D67R CM2722R8R , CM3822R8R , CM522R8R , CF54C9R CF85D9R CM85D9R CH85D9R CM5441Z11B , CM444Z111R , CM444Z121R , CF54C121R CF85D121R CM332V121R , CM4545Z131B , CM4545Z131R , CM522R151R , CM2722R151R , CM3822R151R , CM85C161R CM126C161R CM5441Z161B , CM5441Z161R , CM344Z171B , CM344Z171R , CM574Z171B , CM574Z171R , CM2545X171B , CM2545X171R , CF85D181R CM632V21R , CM332V21R , CM522R21R , CM2722R21R , CM4732V21R , CM3822R21R , CF85C221R CM85C221R CM332V31R , CM4732V31R , CM632V31R , CM85A371R Low Frequency MHz (Ohms) (MHz) (Ohms) (ma) (mm) (mm) (mm) CM574Z241B (2 Turns) (2 Turns) (2 Turns) (2 Turns) (2 Turns) (2 Turns).1 2, CM2824E182R CM1812C282R CM2824E352R CM2824E72R CM2824B13R More Info: lairdtech.com 51

54 COMMON MODE CHOKE SERIES SORTED BY RATED CURRENT (AT CONTINUOUS OPERATION) PART NUMBER TYPICAL Z 25 MHz NOMINAL Z 1 MHz TYPICAL Z 5 MHz TYPICAL Z 1 GHz TYPICAL PEAK IMPEDANCE (Ω) TYPICAL PEAK IMPEDANCE FREQ. (MHz) DCR MAX (Ω) RATED CONTINUOUS CURRENT (ma) A (mm) LENGTH B (mm) WIDTH CM85A371R , CM85C161R , CM85C221R , CF54C9R CF54C121R CF85C221R CF85D67R CF85D9R CF85D121R CF85D181R CH85D9R CM85D9R , CM2722R151R , , CM2722R21R , CM2722R8R ,.2 5, CM3822R151R , , CM3822R21R , CM3822R8R ,.2 5, CM522R151R ,92.2 5, CM522R21R , CM522R8R ,.2 5, CM332V121R ,1.1 8, CM332V21R , CM332V31R , CM4732V21R , CM4732V31R , CM632V21R , CM632V31R , CM2545X171B , CM2545X171R , CM4545Z131B , CM4545Z131R , CM221Y33R ,1.1 15, CM3421Y6R ,.1 15, CM344Z171B ,.1 2, CM344Z171R ,.1 2, CM444Z111R , CM574Z171B ,.1 2, CM574Z171R ,.1 2, CM5441Z11B , CM5441Z11B , CM5441Z161B , CM5441Z161B , Low Frequency MHz (Ohms) (MHz) (Ohms) (ma) (mm) (mm) (mm) C (mm) HEIGHT CM1812C282R ,1 1,9 2,7 3, CM2824B13R-1 1, 8,9 3,98 1,8 13, CM2824E72R-1 3, 7, 5,8 4,8 7, CM2824E182R ,4 1, CM2824E352R ,4 2,1 3,2 3, CM574Z241B-1 17 (2 Turns) 24 (2 Turns) 173 (2 Turns) 14 (2 Turns) 276 (2 Turns) 3 (2 Turns).1 2, lairdtech.com More Info:

55 WIRE-WOUND SMT POWER COMMON MODE CHOKES CM76 Series FEATURES Common mode filter for large current Current up to 9Amp Excellent common mode impedance and noise suppression Compact size Operating temperature -4 to 15 (Including self-heating) APPLICATIONS Power line applications Industry Device Medical Device Noise suppression for adapter Lines and battery lines ELECTRICAL SPECIFICATIONS PART NUMBER IMPEDANCE INSULATION RATING RATING DCR 1 MHz RESISTANCE CURRENT VOLTAGE 1 line (Ω) MIN NOM MIN (MΩ) (A) (V) CM76M132R CM76N12R CM76P71R CM76R31R CM76R51R CM76W11R SHAPES AND DIMENSIONS Unit:mm A B C D E F G 7.±.5 6.± MAX. 3.5 REF. 1.5±.2 1.5± ±.2 PART NUMBER SYSTEM EXAMPLE CM 76 M 132 R -1 Common Mode Part Size Rated Current Impedance Packing Standard or Custom Chokes Code Code (Z) Code Part More info: lairdtech.com 53

56 CM76 SERIES WIRE-WOUND SMT POWER COMMON MODE CHOKES TYPICAL CHARACTERISTICS 1 CM76M132R-1 1 CM76N12R-1 1 Common mode 1 Common mode 1 1 Differential mode 1 1 Differential mode CM76P71R-1 1 CM76R31R Common mode Differential mode Common mode Differential mode CM76R51R-1 1 CM76W11R-1 Common mode Common mode 1 1 Differential mode 1 1 Differential mode lairdtech.com More info:

57 DIFFERENTIAL MODE EMI FILTERS FEATURES Pb Differential mode EMI filter, high current, thru-hole type Up to 5 Amps continuous operation current Low DCR For power lines application for LCD-TV, automotive, telecom, test equipment etc. PART NUMBERING SYSTEM 28 L R -1 Material Code Product Code EIA Size Code Stated Dimension Code Additional Description Packing Code Additional Description TYPE Power Line Thru-Hole (Single Turn) Power Line Thru-Hole (Multiple Turns) PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHZ) DCR MAX (Ω) RATED I MAX (CONTINUOUS) ma 28L138-1R , 28L138-4R , 28L138-5R , 28L138-7R , 28L138-8R , 28C236-BS , 28C236-BW , 28C236-DW , 28C236-EW , 28C236-JW , L138-1R L138-4R More Info: lairdtech.com 55

58 DIFFERENTIAL MODE EMI FILTERS L138-5R L138-7R L138-8R C236-BS C236-BW C236-DW C236-EW C236-JW lairdtech.com More Info:

59 DIFFERENTIAL MODE EMI FILTERS DIMENSION PART NUMBER A mm B mm C mm 28L138-1R (.138) 59. (2.323) 4.45 (.175) 28L138-4R (.138) 59. (2.323) 8.89 (.35) 28L138-5R (.138) 59. (2.323) 9.53 (.375) 28L138-7R (.138) 59. (2.323) (.55) 28L138-8R (.138) 59. (2.323) 5.23 (.26) DIMENSION PART NUMBER A mm B mm C mm D mm E mm F mm L1 mm 28C236-BS-1 6. (.236) (.59) 1. (.394).51 (.2) (.575) (.236) 28C236-BW-1 6. (.236) (3.44) 1. (.394).51 (.2) (.575) (1.5) 28C236-DW-1 6. (.236) (3.44) 1. (.394).51 (.2) (.575) (1.55) 28C236-EW-1 6. (.236) 5.53 (1.989) 1. (.394).51 (.2) (.575) (1.5) 28C236-JW-1 6. (.236) 2.96 (.825) 1. (.394).51 (.2) 15.9 (.626) 5.8 (.2) 5.8 (.2) More Info: lairdtech.com 57

60 EMI FILTER ARRAYS POWER LINE TYPE PART NUMBER 25 MHz TYPICAL IMPEDANCE (Ω) 1 MHz 5 MHz 1 GHz TYPICAL PEAK IMPEDANCE (Ω) PEAK IMPEDANCE FREQUENCY (MHz) DCR MAX (Ω) RATED I MAX (CONTINUOUS) ma Thru-Hole (3 lines) 29F33-T , Surface Mount (3 lines) 29F318-1SR , Thru-Hole (3 lines) 29F328-T , Surface Mount (3 lines) 29F33-2SR , Surface Mount (4 lines) 29F418-SR , Surface Mount (4 lines) 29F418-1SR , Thru-Hole (4 lines) 29F428-T , Thru-Hole (4 lines) 29F429-T , Surface Mount (4 lines) 29F43-2SR , Surface Mount (4 lines) 29F43-4SR , Thru-Hole (5 lines) 29F528-T , Surface Mount (8 lines) 29F818-SR , Surface Mount (8 lines) 29F818-1SR , 29F33-T-1 29F318-1SR F328-T-1, 29F528-T F33-2SR lairdtech.com More Info:

61 EMI FILTER ARRAYS F418-SR-1, 29F818-SR-1 29F418-1SR-1, 29F818-1SR F428-T F429-T F43-2SR F43-4SR More Info: lairdtech.com 59

62 EMI FILTER ARRAYS DIMENSION PART NUMBER # OF LINES A mm B mm C mm 29F33-T (.3) 5.8 (.2) Thru-hole 29F328-T (.328) 1.88 (.428) 1.44 (.411) 1.57 (.416) 29F318-1SR (.19) 4.5 (.177) 4.19 (.165) Surface-Mount 29F33-2SR (.328) 1.87 (.428) 6.35 (.25) 29F428-T (.428) 1.88 (.428) 1.57 (.416) Thru-hole 29F429-T (.428) 5.49 (.216) 1.44 (.411) 29F418-SR (.24) 4.5 (.177) 2.92 (.115) 29F418-1SR (.24) 4.5 (.177) 4.19 (.165) Surface-Mount 29F43-2SR (.428) 1.87 (.428) 6.35 (.25) 29F43-4SR (.428) 1.87 (.428) 8.89 (.35) 29F528-T-1 Thru-hole (.528) 1.88 (.428) 1.57 (.416) 29F818-SR-1 8 Surface-Mount 29F818-1SR (.45) (.45) 4.5 (.177) 2.92 (.115) 4.5 (.177) 4.19 (.165) 6 lairdtech.com More Info:

63 DIFFERENTIAL MODE FILTER EQUIVALENT CIRCUITS More Info: lairdtech.com 61

64 FERRITE CHIP INDUCTORS FEATURES Monolithic construction, small size High reliability Economical Broadband and high frequency available For RF and wireless communication, computers, telecommunications, automotive electronics etc. Pb PART NUMBERING SYSTEM IC 63 A 12 R -1 Product Series EIA Size Code Rated Inductance Packing Code Additional Description Code Current Code Value Code EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER L (nh) ± 1% Q (MIN) TEST FREQ. L,Q (MHZ) SELF- RESONANT FREQ. (MHZ) DCR MAX (Ω) RATED I MAX (ma) IC63A12R-1 1, IC63A13R-1 1, IC63A152R IC63A472R IC63A182R-1 1, IC63A681R IC63B181R IC63B47R IC63A821R IC63B82R IC85A13R-1 1, IC85A153R-1 15, IC85A183R-1 18, IC85A223R-1 22, IC85A272R-1 2, IC85A333R-1 33, IC85A472R-1 4, IC85A681R IC85A821R IC85A822R-1 8, IC85B11R IC85B12R-1 1, IC85B122R IC85B182R-1 1, IC85B222R-1 2, IC85B331R IC85B332R IC85C47R IC85C68R IC126A13R-1 1, IC126A332R-1 3, IC126A333R-1 33, IC126A472R-1 4, IC126B153R-1 15, IC126B183R-1 18, IC126B331R IC126B821R lairdtech.com More Info:

65 FERRITE CHIP INDUCTORS 63 Characteristics 1 L vs Frequency 1nH 1 Q vs Frequency Inductance (nh) nH 47nH Q Characteristics Inductance (nh) L vs Frequency 85 inductance Vs Frequency nH 47nH 1nH 47nH Frequency(MHz) Q Q vs Frequency Characteristics 1 L vs Frequency 126 inductance Vs Frequency 1 Q vs Frequency Inductance (nh) nH 33nH 33nH Q More Info: lairdtech.com 63

66 RF CERAMIC CHIP INDUCTORS FEATURES Monolithic construction, small size High reliability Economical Broadband and high frequency available For RF and wireless communication, computers, telecommunications, automotive electronics etc Pb Operation temperature: 21 and 42 Size : -55 C ~ +125 C PART NUMBERING SYSTEM CCI 21 B N3 R -1 Product Series EIA Size Code Rated Inductance Packing Code Additional Description Code Current Code Value Code EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER L (nh) Q (MIN) TEST FREQ. L,Q (MHZ) Q (TYPICAL) 1 MHz 5 MHz 8 MHz SELF- RESONANT FREQ. (MHZ) CCI21BN3R CCI21BN4R CCI21BN5R CCI21BN6R CCI21BN7R CCI21BN8R CCI21BN9R CCI21B1NR CCI21B1N1R CCI21B1N2R CCI21B1N3R CCI21B1N5R CCI21B1N6R CCI21B1N8R CCI21B2NR CCI21B2N2R CCI21B2N4R CCI21B2N7R CCI21A3NR CCI21A3N3R CCI21A3N6R CCI21A3N9R CCI21A4N3R CCI21A4N7R CCI21A5N1R CCI21A5N6R CCI21A6N2R CCI21A6N8R CCI21A7N5R CCI21A8N2R CCI21A9N1R CCI21A1NR DCR MAX (Ω) RATED I MAX (ma) 64 lairdtech.com More Info:

67 RF CERAMIC CHIP INDUCTORS EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER L (nh) Q (MIN) CCI21A12NR CCI21A15NR CCI21A18NR CCI21A22NR CCI21A27NR CCI21A33NR CCI21A39NR CCI42C1NR CCI42C1N1R CCI42C1N2R CCI42C1N3R CCI42C1N5R CCI42C1N6R CCI42C1N8R CCI42C2NR CCI42C2N2R CCI42C2N4R CCI42C2N7R CCI42C3NR CCI42C3N3R CCI42C3N6R CCI42C3N9R CCI42C4N3R CCI42C4N7R CCI42C5N1R CCI42C5N6R CCI42C6N2R CCI42C6N8R CCI42C8N2R CCI42C1NR CCI42C12NR CCI42C15NR CCI42C18NR CCI42C22NR CCI42C27NR CCI42B33NR CCI42B39NR CCI42B47NR CCI42B56NR CCI42A68NR CCI42A82NR CCI42AR1R CCI42AR12R CCI42AR15R Tolerance: B= ±.1 nh C= ±.2 nh S= ±.3 nh G= ± 2 % J= ± 5 % K= ± 1 % TEST FREQ. L,Q (MHZ) Q (TYPICAL) 1 MHz 5 MHz 8 MHz SELF- RESONANT FREQ. (MHZ) DCR MAX (Ω) RATED I MAX (ma) More Info: lairdtech.com 65

68 RF CERAMIC CHIP INDUCTORS DIMENSION METRIC (EIA) PKG. SIZE A mm B mm C* mm D mm MIN/MAX MONOLITHIC CHIP INDUCTOR 63 (21).6 (.24).3 (.12).3 (.12).1/.2 (.4/.8) 15 (42) 1. (.4).5 (.2).5(.2).1/.3 (.4/.12) 21 Characteristics Inductance (nh) L vs Frequency 2nH 12nH 56nH Q Q vs Frequency 2nH 12nH 56nH Characteristics Inductance (nh) L vs Frequency 2nH 12nH 56nH 15nH Q Q vs Frequency 2nH 12nH 56nH 15nH lairdtech.com More Info:

69 MULTILAYER POWER CHIP INDUCTORS FEATURES Pb Small size (L x W : EIA 85, 86 and 18) with max 1. mm in thickness Lead-free product and support lead-free soldering Applications: mainly for DC-DC converters and power modules. Compact electrical instruments like DSCs, DVCs, PDA, DVD and HDDs, cellular phones Operation temperature: -55 C ~ +125 C Rated Current Definition: Temperature rise to 4 C max. PART NUMBERING SYSTEM CPI 85 J R47 R -1 Product Series Code EIA Size Code Rated Current Code Inductance Value Code Packing Code Additional Description RATED CURRENT CODE E = 5 ma F = 6 ma G = 7 ma H = 8 ma I = 9 ma J= 1 ma IDC < 15 ma K= 15 ma IDC < 2 ma INDUCTANCE VALUE CODE R47 =.47 µh 1R = 1. µh 4R7 = 4.7 µh EIA PKG. SIZE METRIC PKG. SIZE PART NUMBER INDUCTANCE (µh) INDUCTANCE TOLERANCE TEST FREQ. (MHz) DCR (Ω) RATED CURRENT MAX (ma) CPI85JR47R % 1.1±25% CPI85JR68R % 1.12±25% CPI85IR82R % 1.14±25% CPI85H1RR % 1.16±25% CPI85H1R2R % 1.16±25% CPI85G1R5R % 1.22±25% CPI85G1R8R % 1.22±25% CPI85F2R2R % 1.25±25% CPI85E3R3R % 1.22±25% CPI85E4R7R % 1.3±25% CPI86KR47R % 1.14±3% CPI86KR68R % 1.15±3% CPI86KR82R % 1.16±3% CPI86J1RR % 1.16±3% CPI86J1R2R % 1.16±3% CPI86J1R5R % 1.2±3% CPI86J1R8R % 1.2±3% CPI86J2R2R % 1.22±3% CPI86J3R3R % 1.24±3% CPI86J4R7R % 1.3±3% CPI18KR47R % 1.7±25% CPI18KR68R % 1.9±25% CPI18KR82R % 1.1±25% CPI18K1RR % 1.11±25% CPI18K1R2R % 1.11±25% CPI18K1R5R % 1.13±25% CPI18K1R8R % 1.13±25% CPI18J2R2R % 1.17±25% CPI18J3R3R % 1.16±25% CPI18J4R7R % 1.2±25% 11 DIMENSION METRIC ( EIA ) PKG. SIZE A mm B mm C* mm D mm MONOLITHIC POWER CHIP INDUCTOR 212 (85) 2.±.2 (.79±.8) 1.25±.2 (.49±.8).9±.1 (.35±.4).5±.2 (.2±.8) 216 (86) 2.±.15 (.79±.6) 1.6±.15 (.63±.6).9±.1 (.35±.4).5±.2 (.2±.8) 252 (18) 2.5±.2 (.98±.8) 2.±.2 (.79±.8).9±.1 (.35±.4).6±.2 (.24±.8) More Info: lairdtech.com 67

70 MULTILAYER POWER CHIP INDUCTORS 85 Characteristics 6 L vs Frequency 6 L vs DC Bias Current 5 5 Inductance (uh) Inductance (uh) CPI85E4R7R-1 CPI85F2R2R-1 CPI85JR47R DC Bias Current (A) Characteristics 6 L vs Frequency 6 L vs DC Bias Current 5 5 Inductance (uh) Inductance (uh) CPI86J4R7R-1 CPI86J3R3R-1 CPI86J2R2R DC Bias Current (A) 18 Characteristics 6 L vs Frequency 6 L vs DC Bias Current 5 5 Inductance (uh) Inductance (uh) CPI18J4R7R-1 CPI18J2R2R-1 CPI18KR47R DC Bias Current (A) lairdtech.com More Info:

71 LOW DCR & HIGH CURRENT POWER INDUCTORS LDZ Series FEATURES Extremely low DC and AC resistance Saturation current up to 1Amp High power, High saturation inductors Ideal inductors for DC-DC conversion Available for both through hole and SMT type Custom designs on request APPLICATIONS Notebook /Desktop/server applications. Battery Power equipment DC/DC converters Power supplier ELECTRICAL SPECIFICATIONS PART NUMBER Inductance (μh) Temperature DCR MAX SRF 5 KHz/.1V, ±1% Rise (mω) (MHz) Current(A) MIN NOM MAX Current(A) LDZ28181K LDZ281833K LDZ29144R7K Operating Temperature Range : -4 to +125 (including self-heating) 2. The Rated Current is lowest one of the saturation current and the temperature Rise 3. Saturation Current is DC Current at which the inductance drops 3% from its value without current.(ambient temperature 25± 5 ) 4. Temperature Current is DC Current at which temperature increase up to 4 (ambient temperature 25±5 ) SHAPES AND DIMENSIONS Unit:mm Series A B C D E F G H LDZ Max 19.8 Max 27.9 Max Max 6.9 ref ref 3.8 ref 3.8 ref LDZ Max 19.3 Max Series J K L LDZ2818 LDZ ref 5.33 ref 4.83 ref PART NUMBER SYSTEM EXAMPLE More info: lairdtech.com 69

72 LDZ SERIES Low DCR & High Current Power Inductors PART NUMBER SYSTEM EXAMPLE LDZ K -1 Product Series Part Size Inductance Tolerance % Standard or Custom Code Code (i.e. 1μH) (i.e. K:±1%) Part TYPICAL CHARACTERISTICS 7 lairdtech.com More info:

73 FERRITE ROD Inductor FEATURES Extremely low DC and AC resistance Multiple sizes offered Current up to 19A Operating temp up to 15 degree C APPLICATIONS Automotive motor & audio Automotive antenna 1XC Series ELECTRICAL SPECIFICATIONS PART NUMBER Inductance (uh) 1KHz/.1v ± 25% DCR (Ω) Rated Current (A) MIN NOM MAX 1XC118-1T XC118-2T XC118-3T XC236-T XC236-1T XC236-2T XC394-T XC394-1T XC394-2T SHAPES AND DIMENSIONS Unit:mm PART NUMBER A A1 B C D E F 1XC118-1T-1 3.± Max 12.±.5 8.±1. 1.5±1. 3.6±.3.55±.1 1XC118-2T-1 3.±.2 4.9±.5 12.±.5 8.±1. 1.±1. 3.9±.3.75±.1 1XC118-3T-1 3.± ±.5 12.±.5 8.±1. 9.5± ±.3 1.5±.1 1XC236-T-1 6.± Max 21.5 Max 8.± ±1. 7.5±.5.95±.1 1XC236-1T-1 6.± Max 21.5 Max 8.±1. 17.±1. 7.5±.5 1.2±.1 1XC236-2T-1 6.± Max 21.5 Max 8.± ±1. 8.± ±.15 1XC394-T-1 1.± Max 3.±.3 8.± ±1. 12.±.5 1.2±.1 1XC394-1T-1 1.± Max 3.±.3 8.± ±1. 12.±.5 1.5±.1 1XC394-2T-1 1.± Max 3.±.3 8.± ±1. 12.± ±.1 PART NUMBER SYSTEM EXAMPLE 1XC 118-1T -1 Ferrite Rod Part Size Inductance Standard or Custom Inductor Code Code Part More info: lairdtech.com 71

74 FERRITE ROD INDUCTORS TYPICAL CHARACTERISTICS - ZRX VS FREQUENCY Z R X 1XC118-1T-1 1XC118-2T-1 1XC118-3T-1 1XC236-T-1 1XC236-1T-1 1XC236-2T-1 72 lairdtech.com More info:

75 FERRITE ROD INDUCTORS 1XC394-T-1 1XC394-1T-1 1XC394-2T-1 TYPICAL CHARACTERISTICS - INDUCTANCE VS FREQUENCY Inductance (uh) XC118-1T-1 1XC118-2T-1 1XC118-3T-1 1XC236-T-1 1XC236-1T-1 1XC236-2T-1 1XC394-T-1 1XC394-1T-1 1XC394-2T-1 More info: lairdtech.com 73

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