SS26V-080350 Common Mode Choke Equivalent & Substitute Parts

Part Overview

The SS26V-080350 is a 35 mH Common Mode Choke (CMC) manufactured by KEMET, designed for power line filtering applications. This through-hole component features a 2-line configuration with 800mA maximum current rating and 1Ohm DC resistance. The part is currently in active production status with full RoHS3 compliance and REACH unaffected designation. Substitute parts are identified when inventory constraints, lead time requirements, or application-specific inductance needs necessitate alternative component selection within the same product family.

Substiute Parts

SS26V-080350
KEMETIn Stock: 1089SS26V-080350 Datasheet
SS26V-080350
Current Part
SS26V-R080470
KEMETIn Stock: 1173SS26V-R080470 Datasheet
SS26V-R080470
Parametric Equivalent

Key Parameters

Parameter Value Unit
Manufacturer Part Number SS26V-080350
Manufacturer KEMET
Series SS
Filter Type Power Line
Number of Lines 2
Inductance @ 1 kHz 35 mH
Current Rating (Max) 800 mA
DC Resistance (Max) 1 Ohm
Voltage Rating (AC) 250 V
Operating Temperature Range -25 to 120 °C
Mounting Type Through Hole
Physical Dimensions (L × W) 26.00 × 20.50 mm
Height (Max) 30.50 mm
Package / Case Vertical, 4 PC Pin
RoHS Status ROHS3 Compliant
REACH Status REACH Unaffected
Product Status Active

Substitute Part Grouping Explanation

Substitute parts within the KEMET SS series are qualified based on the following critical parameters that must remain constant or within acceptable tolerance:

Fixed Parameters (Must Match):

  • Manufacturer: KEMET
  • Series: SS
  • Filter Type: Power Line
  • Number of Lines: 2
  • Current Rating (Max): 800mA
  • DC Resistance (Max): 1Ohm
  • Voltage Rating (AC): 250V
  • Operating Temperature Range: -25°C to 120°C
  • Mounting Type: Through Hole
  • Physical Dimensions: 26.00mm L × 20.50mm W × 30.50mm H (Max)
  • Package / Case: Vertical, 4 PC Pin
  • RoHS Status: ROHS3 Compliant
  • REACH Status: REACH Unaffected
  • Product Status: Active

Variable Parameter (Allows Substitution):

  • Inductance @ 1 kHz: 35 mH (main part) to 47 mH (substitute part)

The SS26V-R080470 substitute part maintains all mechanical, electrical, and compliance specifications identical to the main part, with the exception of inductance value, which increases from 35 mH to 47 mH at 1 kHz. This inductance variation remains within the same product family design envelope and does not alter the component's form factor, thermal characteristics, or regulatory compliance.

Parameter Comparison

Parameter SS26V-080350 (Main) SS26V-R080470 (Substitute) Compatibility
Manufacturer KEMET KEMET Identical
Series SS SS Identical
Filter Type Power Line Power Line Identical
Number of Lines 2 2 Identical
Inductance @ 1 kHz 35 mH 47 mH Variable
Current Rating (Max) 800 mA 800 mA Identical
DC Resistance (Max) 1 Ohm 1 Ohm Identical
Voltage Rating (AC) 250 V 250 V Identical
Operating Temperature Range -25 to 120 °C -25 to 120 °C Identical
Mounting Type Through Hole Through Hole Identical
Physical Dimensions (L × W) 26.00 × 20.50 mm 26.00 × 20.50 mm Identical
Height (Max) 30.50 mm 30.50 mm Identical
Package / Case Vertical, 4 PC Pin Vertical, 4 PC Pin Identical
RoHS Status ROHS3 Compliant ROHS3 Compliant Identical
REACH Status REACH Unaffected REACH Unaffected Identical
Product Status Active Active Identical

Engineering Selection Recommendations

Both the SS26V-080350 and SS26V-R080470 are active production components manufactured by KEMET with full RoHS3 compliance and REACH unaffected status. Selection between these parts is determined by the required inductance specification for the application circuit.

SS26V-080350 Selection Criteria:

  • Applications requiring 35 mH inductance at 1 kHz
  • Primary component choice when specified in design documentation

SS26V-R080470 Selection Criteria:

  • Applications requiring 47 mH inductance at 1 kHz
  • Substitute selection when SS26V-080350 availability is constrained
  • Inventory availability: 1113 pieces in stock (compared to 1001 pieces for main part)

Both components share identical mechanical footprint, thermal operating range, current handling capacity, and regulatory compliance certifications. The inductance differential of 12 mH must be evaluated against circuit performance requirements and filtering specifications.

Frequently Asked Questions (FAQ)

Q: Can SS26V-R080470 be used as a direct replacement for SS26V-080350?

A: Direct mechanical and electrical substitution is possible only if the application circuit design accommodates the higher inductance value of 47 mH. The components share identical physical dimensions, pin configuration, current rating, and compliance certifications. Circuit simulation or testing is required to confirm performance equivalence for the specific application.

Q: What is the primary difference between these two parts?

A: The inductance value at 1 kHz differs: SS26V-080350 provides 35 mH, while SS26V-R080470 provides 47 mH. All other electrical parameters, mechanical specifications, and compliance ratings are identical.

Q: Are both parts available in the same packaging format?

A: Yes. Both SS26V-080350 and SS26V-R080470 are supplied in bulk packaging with vertical, 4-pin through-hole configuration. Physical dimensions are identical: 26.00mm length × 20.50mm width × 30.50mm maximum height.

Q: Do these parts have the same thermal operating range?

A: Yes. Both components operate across the identical temperature range of -25°C to 120°C with no derating specified within this range.

Q: Are both parts RoHS and REACH compliant?

A: Yes. Both SS26V-080350 and SS26V-R080470 are ROHS3 compliant and REACH unaffected, meeting current environmental and regulatory requirements.

Q: What is the current handling capacity for both parts?

A: Both components are rated for a maximum continuous current of 800mA with a maximum DC resistance of 1Ohm.

Q: Can these parts be used interchangeably in PCB assembly?

A: Yes, from a mechanical and assembly perspective. Both parts use identical through-hole pin configuration and footprint. However, circuit-level compatibility depends on whether the application design can accommodate the inductance difference.

Request Quote (Ships tomorrow)