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Product Detailed Parameters
- Description:FIXED IND 560UH .54A 1.2OHM SMD
- Series:RL-7500-2
- Mfr:Renco Electronics, Inc.
- Package:Tape & Reel (TR),Cut Tape (CT)
- Type:Drum Core, Wirewound
- Material - Core:-
- Inductance:560 µH
- Tolerance:±20%
- Current Rating (Amps):540 mA
- Current - Saturation (Isat):540mA
- Shielding:Shielded
- DC Resistance (DCR):860mOhm Max
- Q @ Freq:-
- Frequency - Self Resonant:-
- Ratings:-
- Operating Temperature:-40°C ~ 130°C
- Inductance Frequency - Test:100 kHz
- Mounting Type:Surface Mount
- Package / Case:Nonstandard
- Supplier Device Package:-
- Size / Dimension:0.504" L x 0.504" W (12.80mm x 12.80mm)
- Height - Seated (Max):0.236" (6.00mm)
- Features:-
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Buying Guide
Renco Electronics, Inc. RL-7500-2-561M is a component in Fixed Inductors category typically evaluated for fit, operating limits, and supportability in production. Key specs include Description (FIXED IND 560UH .54A 1.2OHM SMD), Series (RL-7500-2), Type (Drum Core, Wirewound), Packaging (Tape & Reel (TR), Cut Tape (CT)), and Temperature (-40°C ~ 130°C).
- For RL-7500-2-561M, verify the operating frequency (100 kHz) matches your timing and performance targets.
- Validate the operating temperature range (-40°C ~ 130°C) for your environment and margin.
- Confirm Size / Dimension (0.504" L x 0.504" W (12.80mm x 12.80mm)) meets your design constraints and system-level expectations.
- For RL-7500-2-561M, if Fixed Inductors is moving to a second source, the better candidates usually stay comfortable inside the same fit, interface, and use conditions.
- For RL-7500-2-561M substitutions in Fixed Inductors, the strongest candidates usually keep the same footprint, interface, and application role before secondary advantages matter (key constraints: package Nonstandard, frequency 100 kHz).
- Alternates that already match package/case Nonstandard, mounting Surface Mount, packaging Tape & Reel (TR), Cut Tape (CT) are usually the easiest to adopt without mechanical surprises.
- Candidates that remain credible across temperature -40°C ~ 130°C tend to be closer to the original production intent.
What should I verify before using RL-7500-2-561M in production?
Confirm footprint/pinout, min/max ratings, operating temperature, and the datasheet test conditions behind key specifications.
Can you confirm the Height - Seated (Max) for RL-7500-2-561M?
0.236" (6.00mm)
Which package/case is listed for RL-7500-2-561M?
Nonstandard
Which Tolerance is listed for RL-7500-2-561M?
±20%
Application Scenarios
In the Fixed Inductors category, Renco Electronics, Inc. RL-7500-2-561M is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. Well-specified filtering reduces compliance risk and improves perceived quality and reliability. They shape current and suppress EMI by providing inductance, impedance, or filtering across defined frequency bands. In practice, once those conditions are defined, the remaining application scenarios become much easier to rank and qualify. In RF designs, filtering controls out-of-band energy and improves coexistence with nearby radios and high-speed digital noise. In networking gear, ferrites and filter networks improve compliance and signal integrity on dense multi-rail boards. In industrial cabinets, chokes and filters reduce conducted emissions on long cables routed near high-power switching equipment. For compliance and safety work, repeatable behavior and documentation usually matter more than small performance gains.
Compatibility Advice
- With Renco Electronics, Inc. RL-7500-2-561M, in practice, verify impedance or ESR behavior across frequency so the real dynamics match your stability and noise expectations before committing to volume builds.
Project Fit
- Renco Electronics, Inc. RL-7500-2-561M makes sense in Fixed Inductors work when the design needs stable impedance or ESR behavior that remains predictable after heat soak.
- Renco Electronics, Inc. RL-7500-2-561M becomes harder to justify for Fixed Inductors when derating and self-heating cannot be verified, so performance drift may appear after deployment because validation would rely on assumptions that cannot be re-tested later.
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