#A915AY-150M=P3

#A915AY-150M=P3

$0.28
  • Description:FIXED IND 15UH 1.1A 0.142OHM SMD
  • Series:D53LC
  • Mfr:Murata Electronics
  • Package:Tape & Reel (TR)

SKU:b9c02f42046d Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:FIXED IND 15UH 1.1A 0.142OHM SMD
  • Series:D53LC
  • Mfr:Murata Electronics
  • Package:Tape & Reel (TR)
  • Type:Drum Core, Wirewound
  • Material - Core:Ferrite
  • Inductance:15 µH
  • Tolerance:±20%
  • Current Rating (Amps):1.1 A
  • Current - Saturation (Isat):1.05A
  • Shielding:Shielded
  • DC Resistance (DCR):142mOhm Max
  • Q @ Freq:-
  • Frequency - Self Resonant:-
  • Ratings:-
  • Operating Temperature:-40°C ~ 85°C
  • Inductance Frequency - Test:100 kHz
  • Mounting Type:Surface Mount
  • Package / Case:2020 (5050 Metric)
  • Supplier Device Package:2020
  • Size / Dimension:0.197" L x 0.197" W (5.00mm x 5.00mm)
  • Height - Seated (Max):0.118" (3.00mm)
  • Features:-

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#A915AY-150M=P3

Buying Guide
Summary

Murata Electronics A915AY-150MP3 is used in Fixed Inductors category where integration and verification need to stay predictable. Key specs include Description (FIXED IND 15UH 1.1A 0.142OHM SMD), Series (D53LC), Type (Drum Core, Wirewound), Packaging (Tape & Reel (TR)), and Temperature (-40°C ~ 85°C).

Selection Notes
  • For A915AY-150MP3, confirm the operating temperature range (-40°C ~ 85°C) meets your deployment conditions.
  • Confirm Height - Seated (Max) (0.118" (3.00mm)) and ensure it matches your integration requirements.
  • Confirm the mounting type (Surface Mount) matches your assembly process and reliability requirements.
Alternates & Substitutions
  • For Fixed Inductors substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • Confirm the physical match (package/case 2020 (5050 Metric), supplier package 2020, mounting Surface Mount) and the operating corners (temperature -40°C ~ 85°C) so the substitution is not a hidden redesign.
  • If you are qualifying a second source, align documentation/traceability requirements early to avoid surprises in procurement.
  • To speed up alternate matching, provide your must-have constraints (package 2020 (5050 Metric), frequency 100 kHz) and any compliance/traceability needs.
FAQ

What should I verify before using A915AY-150MP3 in production?
Confirm footprint/pinout, min/max ratings, operating temperature, and the datasheet test conditions behind key specifications.

Which Material - Core is specified for A915AY-150MP3?
Ferrite

What current consumption is specified for A915AY-150MP3?
1.1 A

Can you confirm the Shielding for A915AY-150MP3?
Shielded

Application Scenarios

When sourcing Murata Electronics A915AY-150MP3 for Fixed Inductors, engineers typically focus on de-risking integration and keeping validation repeatable. Inductors are vetted for saturation and thermal rise under real ripple, because lab conditions often understate stress. Teams often focus on saturation behavior and heating because those can dominate EMI outcomes and reliability under load transients. Within telecom hardware, filtering protects sensitive receivers and stabilizes supplies in dense racks. In networking gear, ferrites and filter networks improve compliance and signal integrity on dense multi-rail boards. In RF designs, filtering controls out-of-band energy and improves coexistence with nearby radios and high-speed digital noise. In the end, reducing integration uncertainty is what keeps schedules predictable and field reliability high. Within production builds, repeatability is what protects you from lot variation and environmental stress.

Compatibility Advice
  • For Fixed Inductors compatibility, confirm tolerance, derating, ESR or impedance versus frequency, and thermal rise on the assembled PCB. This keeps acceptance criteria measurable and repeatable.
Project Fit
  • Good fit when you can bench-verify Murata Electronics A915AY-150MP3 for Fixed Inductors integration across temperature and supply corners, and you have a defined accuracy budget and can verify drift and tolerance stack-up in production.
  • Poor fit when frequency behavior and parasitics are not measured, so stability and noise outcomes are uncertain, because validation would rely on assumptions that cannot be re-tested later.
#A915AY-150M=P3#A915AY-150M=P3
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