PA5006.XXXNLT PULSE | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 4

Technical content

P810.D (04/20) SMT Power Inductors High Current Composite Inductor - PA5006.XXXNLT and PM2206.XXXNLT POWER PRODUCTS Power.PulseElectronics.com Height: 2.05mm Max Footprint: 8.05mm x 7.8mm Max Current Rating: up to 35Apk Inductance Range: 0.27uH to 1.0uH High current, low DCR, and high efficiency High reliability Minimized acoustic noise and minimized leakage flux noise Available in Commercial (PA5006) and Automotive (PM2206) grades Electrical Specifications @ 25°C, Operating Temperature Range -55°C to +155°C Part Number Inductance 100KHz, 0.1V Rated3 Current DC Resistance Saturation2 Current (25°C) Mechanical D K Factor for Core LossCommerical Automotive6 T Y P. MAX. uH±20% A mΩ mΩ A mm±0.3 1. Actual temperature of the component during system operation (ambient plus temperature rise) must be within the standard operating range. 2. The saturation current is the current at which the initial inductance is guaranteed to drop by no more than 40%. The typical inductance at a specified current can be found on the typical performance curves. 3. The rated current is the DC current required to raise the component temperature by approximately 40C. Take note that the components’ performanc varies depending on the system condition. It is suggested that the component be tested at the system level, to verify the temperature rise of the component during system operation. 4. The part temperature (ambient+temp rise) should not exceed 155C under worst case operating conditions. Circuit design, PCB trace size and thickness, airflow and other cooling provisions all affect the part temperature. Part temperature should be verified in the end application. 5. The PM2206.XXXNLT part numbers are AEC-Q200 and IATF16949 certified. The mechanical dimensions are 100% tested in production but do not necessarily meet a product capability index (Cpk) >1.33 and therefore may not strictly conform to PPAP . 6. Special Characteristics Notes: IATF 16949

P810.D (04/20) SMT Power Inductors High Current Composite Inductor - PA5006.XXXNLT and PM2206.XXXNLT POWER PRODUCTS Power.PulseElectronics.com Mechanical SUGGESTED PAD LAYOUTFINAL LAYOUT Series A B C D E F L G H All Dimensions in mm. TAPE & REEL INFO Blank portionsBlank portions Chip cavity 200mm or more 400mm or more Direction of tape P W K A G SURFACE MOUNTING TYPE, REEL/TAPE LIST REEL SIZE (mm) TAPE SIZE (mm) QTY A G P1 W K0 PCS/REEL PA5006/PM2206 Ø330 16.4 12 16 2.3 2000 B C E F A 1R2 1602 D D/C XXX L G H PA5006.XXXNLT and PM2206.XXXNLT Typical Performance Curves 100 0.00 0.07 0.14 0.21 0.28 0.35 0 7 14 21 28 35 Inductance (uH ) IDC(A) 271NLT △T(°C) 100 0.00 0.08 0.16 0.24 0.32 0.40 0 8 16 24 32 40 Inductance (uH ) IDC(A) 311NLT △T(°C)

P810.D (04/20) SMT Power Inductors High Current Composite Inductor - PA5006.XXXNLT and PM2206.XXXNLT POWER PRODUCTS Power.PulseElectronics.com 100 0.00 0.12 0.24 0.36 0.48 0.60 0 7 14 21 28 Inductance (uH ) IDC(A) 471NLT △T(°C) 100 0.00 0.09 0.18 0.27 0.36 0.45 0 7 14 21 28 35 Inductance (uH ) IDC(A) 331NLT △T(°C) 100 0.0 0.3 0.6 0.9 1.2 1.5 0 5 10 15 20 25 Inductance (uH ) IDC(A) 102NLT △T(°C) 100 0.00 0.18 0.36 0.54 0.72 0.90 0 5 10 15 20 25 Inductance (uH ) IDC(A) 681NLT △T(°C)

Power.PulseElectronics.com P810.D (04/20) POWER PRODUCTS SMT Power Inductors High Current Composite Inductor - PA5006.XXXNLT and PM2206.XXXNLT For More Information: Americas - prodinfo_power@pulseelectronics.com | Europe - power-apps-europe@pulseelectronics.com | Asia - power-apps-asia@pulseelectronics.com Performance warranty of products offered on this data sheet is limited to the parameters specified. Data is subject to change without notice. Other brand and product names mentioned herein may be trademarks or registered trademarks of their respective owners. © Copyright, 2020. Pulse Electronics, Inc. All rights reserved. CORE LOSS vs FLUX DENSITY 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 500 1,000 1,500 2,000 2,500 Core Loss (W) Bp-p (Gauss) 200KHz 400KHz 600KHz 800KHz 1000KHz 1400KHz 1800KHz Bp-p = K *L(uH) *delta I(A)