IMS05SH560K Equivalent & Substitute Parts

Part Overview

The IMS05SH560K is a 56 µH shielded molded inductor manufactured by Vishay Dale, designed for through-hole applications requiring fixed inductance with moderate current handling. This component belongs to the IMS-5 series and is specified for 190 mA operation with a maximum DC resistance of 2.23 Ohm. The part is currently in stock with 1,065 pieces available as new original inventory.

Substitute parts are identified when they maintain electrical equivalence across inductance value, current rating, DC resistance, and shielding characteristics, combined with compatible through-hole axial packaging.

Substiute Parts

IMS05SH560K
Vishay DaleIn Stock: 1162IMS05SH560K Datasheet
IMS05SH560K
Current Part
9250A-563-RC
Bourns Inc.In Stock: 9169250A-563-RC Datasheet
9250A-563-RC
Direct

Key Parameters

Parameter IMS05SH560K
Inductance 56 µH
Current Rating 190 mA
DC Resistance (Max) 2.23 Ohm
Shielding Shielded
Mounting Type Through Hole
Package Type Axial
Series IMS-5

Substitute Part Grouping Explanation

Substitution eligibility for the IMS05SH560K is determined by strict equivalence across the following electrical and mechanical parameters:

  • Inductance Value: 56 µH (exact match required)
  • Current Rating: 190 mA minimum
  • DC Resistance: 2.23 Ohm maximum
  • Shielding Type: Shielded construction
  • Mounting Configuration: Through-hole axial package

The substitute part 9250A-563-RC from Bourns Inc. meets all substitution criteria. Both components are molded inductors with ferrite cores, operate across the same temperature range (-55°C to 125°C), and are designed for identical circuit applications.

Parameter Comparison

Parameter IMS05SH560K (Vishay Dale) 9250A-563-RC (Bourns Inc.)
Inductance 56 µH 56 µH
Inductance Tolerance Not specified ±10%
Current Rating (Amps) 190 mA 190 mA
Current - Saturation (Isat) Not specified 160 mA
DC Resistance (Max) 2.23 Ohm 2.23 Ohm
Shielding Shielded Shielded
Core Material Not specified Ferrite
Q @ Frequency Not specified 50 @ 2.5 MHz
Frequency - Self Resonant Not specified 25 MHz
Operating Temperature Range Not specified -55°C ~ 125°C
Mounting Type Through Hole Through Hole
Package / Case Axial Axial
Size / Dimension Not specified 0.162" Dia x 0.410" L (4.11mm x 10.41mm)
RoHS Status Not specified ROHS3 Compliant
REACH Status Not specified REACH Unaffected

Engineering Selection Recommendations

The 9250A-563-RC from Bourns Inc. is an active product with full regulatory compliance (ROHS3 and REACH unaffected status). Selection between the IMS05SH560K and 9250A-563-RC should be based on:

  • Inventory Availability: IMS05SH560K has 1,065 pieces in stock; 9250A-563-RC has 827 pieces in stock
  • Regulatory Requirements: The 9250A-563-RC provides documented ROHS3 compliance and REACH status
  • Packaging: Both components use identical through-hole axial configuration with compatible physical dimensions
  • Electrical Equivalence: Both parts maintain 56 µH inductance, 190 mA current rating, and 2.23 Ohm maximum DC resistance

Frequently Asked Questions (FAQ)

Q: Can the 9250A-563-RC directly replace the IMS05SH560K in existing designs?

A: Yes. Both inductors share identical electrical specifications (56 µH, 190 mA, 2.23 Ohm DCR) and use through-hole axial packaging. Physical dimensions are compatible (0.162" diameter x 0.410" length).

Q: What are the key parameters that determine substitution eligibility?

A: Inductance value (56 µH), current rating (190 mA minimum), DC resistance (2.23 Ohm maximum), shielding type (shielded), and mounting configuration (through-hole axial) must all match or exceed the original specification.

Q: Are there compliance differences between these parts?

A: The 9250A-563-RC provides explicit ROHS3 compliance and REACH unaffected status. Compliance documentation for the IMS05SH560K was not provided in the available data.

Q: What is the saturation current specification used for?

A: The saturation current (Isat) of 160 mA for the 9250A-563-RC indicates the current level at which the inductor begins to lose inductance due to core saturation. This specification is relevant for applications operating near maximum current ratings.

Q: How do the self-resonant frequency specifications affect circuit performance?

A: The self-resonant frequency (SRF) of 25 MHz for the 9250A-563-RC defines the upper frequency limit for stable inductor behavior. Applications operating below this frequency will maintain specified inductance characteristics.

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