SS11VL-R22020 Common Mode Choke Equivalent & Substitute Parts

Part Overview

The SS11VL-R22020 is a 2 mH common mode choke (CMC) manufactured by KEMET, designed for power line filtering applications. This through-hole component features a 2-line configuration with a maximum current rating of 2.2A and operates across a temperature range of -25°C to 120°C. The part is currently in active production status with ROHS3 compliance and REACH unaffected classification. Substitute parts are identified when equivalent electrical and mechanical parameters align with application requirements, enabling component procurement flexibility while maintaining circuit performance specifications.

Substiute Parts

SS11VL-R22020
KEMETIn Stock: 1232SS11VL-R22020 Datasheet
SS11VL-R22020
Current Part
SS11VL-22013
KEMETIn Stock: 1383SS11VL-22013 Datasheet
SS11VL-22013
Parametric Equivalent

Key Parameters

Parameter Value Unit
Inductance @ 1 kHz 2 mH mH
Current Rating (Maximum) 2.2 A
DC Resistance (Maximum) 120 mOhm
Voltage Rating (AC) 250 V
Number of Lines 2
Mounting Type Through Hole
Operating Temperature Range -25 to 120 °C
Package Configuration Vertical, 4 PC Pin
Physical Dimensions (L × W) 22.00 × 14.50 mm
Height (Maximum) 19.50 mm

Substitute Part Grouping Explanation

Substitution eligibility for the SS11VL-R22020 is determined by strict alignment of the following critical parameters:

Mandatory Matching Parameters:

  • Current Rating (Maximum): 2.2A
  • DC Resistance (Maximum): 120 mOhm
  • Voltage Rating (AC): 250V
  • Number of Lines: 2
  • Mounting Type: Through Hole
  • Package Configuration: Vertical, 4 PC Pin
  • Physical Dimensions: 22.00 mm L × 14.50 mm W × 19.50 mm H (maximum)
  • Operating Temperature Range: -25°C to 120°C
  • Series: SS
  • RoHS Status: ROHS3 Compliant

Variable Parameter:

  • Inductance @ 1 kHz: May differ from 2 mH while maintaining all other specifications

The substitute part SS11VL-22013 meets all mandatory parameters with an inductance value of 1.3 mH @ 1 kHz, representing a lower inductance alternative within the same mechanical and electrical envelope.

Parameter Comparison

Parameter SS11VL-R22020 (Main Part) SS11VL-22013 (Substitute) Match Status
Manufacturer KEMET KEMET Identical
Series SS SS Identical
Inductance @ 1 kHz 2 mH 1.3 mH Different
Current Rating (Maximum) 2.2 A 2.2 A Identical
DC Resistance (Maximum) 120 mOhm 120 mOhm Identical
Voltage Rating (AC) 250 V 250 V Identical
Number of Lines 2 2 Identical
Mounting Type Through Hole Through Hole Identical
Operating Temperature Range -25°C to 120°C -25°C to 120°C Identical
Package Configuration Vertical, 4 PC Pin Vertical, 4 PC Pin Identical
Physical Dimensions (L × W × H) 22.00 × 14.50 × 19.50 mm 22.00 × 14.50 × 19.50 mm Identical
RoHS Status ROHS3 Compliant ROHS3 Compliant Identical
REACH Status REACH Unaffected REACH Unaffected Identical
Product Status Active Active Identical

Engineering Selection Recommendations

SS11VL-R22020 (Primary Selection): Select this part when the circuit design requires 2 mH inductance at 1 kHz. The component is in active production with full ROHS3 compliance and REACH unaffected status, ensuring long-term availability and regulatory alignment.

SS11VL-22013 (Substitute Selection): Select this part when circuit requirements permit 1.3 mH inductance at 1 kHz. This substitute maintains identical current rating, DC resistance, voltage rating, mounting configuration, and physical dimensions. Both parts share the same series designation (SS), active product status, and regulatory compliance profile. The lower inductance value represents the only functional difference between the two components.

Selection between these parts depends solely on the inductance specification required by the application circuit. Both parts are suitable for power line filtering applications with identical thermal, electrical, and mechanical constraints.

Frequently Asked Questions (FAQ)

Q: Can SS11VL-22013 be used as a direct replacement for SS11VL-R22020?

A: SS11VL-22013 is mechanically and electrically compatible in terms of current rating, DC resistance, voltage rating, mounting type, and physical dimensions. The inductance differs (1.3 mH versus 2 mH @ 1 kHz). Substitution is valid only if the circuit design accommodates 1.3 mH inductance instead of 2 mH.

Q: Are there any differences in thermal performance between these parts?

A: Both parts operate across the identical temperature range of -25°C to 120°C with the same DC resistance specification of 120 mOhm maximum. No thermal performance difference exists between the two components.

Q: Do both parts fit the same PCB footprint?

A: Yes. Both SS11VL-R22020 and SS11VL-22013 share identical physical dimensions (22.00 mm L × 14.50 mm W × 19.50 mm H maximum) and package configuration (Vertical, 4 PC Pin through-hole). PCB layout compatibility is confirmed.

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

A: The inductance value at 1 kHz is the only functional difference. SS11VL-R22020 provides 2 mH, while SS11VL-22013 provides 1.3 mH. All other electrical parameters, mechanical specifications, and regulatory certifications are identical.

Q: Are both parts ROHS3 compliant?

A: Yes. Both SS11VL-R22020 and SS11VL-22013 are ROHS3 compliant and REACH unaffected, meeting current regulatory requirements for electronic component manufacturing and distribution.

Q: Can I use SS11VL-22013 if my design specifies SS11VL-R22020?

A: Substitution requires verification that the circuit design functions correctly with 1.3 mH inductance instead of 2 mH. If the design is inductance-specific, substitution is not appropriate. If the design permits inductance variation within the range provided by both parts, substitution is valid.

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