K220K15C0GF53H5 Equivalent & Substitute Parts

Part Overview

The K220K15C0GF53H5 is a 22 pF ceramic capacitor manufactured by Vishay Beyschlag/Draloric/BC Components, rated for 50V with C0G/NP0 temperature coefficient. This radial through-hole component is designed for general-purpose applications requiring stable capacitance across the operating temperature range of -55°C to 125°C. The part is currently active in production with 1116 pieces available in stock. Substitute parts are identified when equivalent electrical specifications and mechanical compatibility are maintained within the allowed parameter tolerances for this capacitor category.

Substiute Parts

K220K15C0GF53H5
Vishay Beyschlag/Draloric/BC ComponentsIn Stock: 1202K220K15C0GF53H5 Datasheet
K220K15C0GF53H5
Current Part
C315C220K5G5TA
KEMETIn Stock: 3732C315C220K5G5TA Datasheet
C315C220K5G5TA
MFR Recommended

Key Parameters

Parameter Value
Capacitance 22 pF
Tolerance ±10%
Voltage Rating 50V
Temperature Coefficient C0G, NP0
Operating Temperature Range -55°C to 125°C
Mounting Type Through Hole
Package Type Radial
RoHS Status ROHS3 Compliant

Substitute Part Grouping Explanation

Substitution eligibility for the K220K15C0GF53H5 is determined by strict equivalence in the following parameters:

  • Capacitance value: 22 pF
  • Tolerance: ±10%
  • Voltage rating: 50V or higher
  • Temperature coefficient: C0G or NP0
  • Operating temperature range: -55°C to 125°C minimum
  • Mounting type: Through Hole
  • Package configuration: Radial leads
  • Regulatory compliance: ROHS3 Compliant

The substitute part C315C220K5G5TA meets all these criteria and is therefore classified as an equivalent substitute.

Parameter Comparison

Parameter K220K15C0GF53H5 (Vishay) C315C220K5G5TA (KEMET)
Manufacturer Vishay Beyschlag/Draloric/BC Components KEMET
Capacitance 22 pF 22 pF
Tolerance ±10% ±10%
Voltage Rating 50V 50V
Temperature Coefficient C0G, NP0 C0G, NP0
Operating Temperature -55°C to 125°C -55°C to 125°C
Mounting Type Through Hole Through Hole
Package / Case Radial Radial
Lead Style Formed Leads Straight
RoHS Status ROHS3 Compliant ROHS3 Compliant
REACH Status REACH Unaffected REACH Unaffected
Product Status Active Active

Engineering Selection Recommendations

Both the K220K15C0GF53H5 and C315C220K5G5TA are active production components with full ROHS3 compliance and REACH unaffected status. Selection between these parts should be based on availability, lead time, and mechanical fit considerations. The primary difference is lead style: the Vishay part features formed leads while the KEMET substitute provides straight leads. This distinction may affect board layout and insertion force requirements in automated assembly processes. Both parts satisfy identical electrical specifications and regulatory requirements for general-purpose applications.

Frequently Asked Questions (FAQ)

Q: Can C315C220K5G5TA replace K220K15C0GF53H5 in existing designs?

A: Yes. Both parts share identical electrical specifications: 22 pF capacitance, ±10% tolerance, 50V rating, and C0G/NP0 temperature coefficient. The primary consideration is mechanical compatibility. The KEMET part has straight leads versus the Vishay part's formed leads, which may require adjustment to board hole spacing or insertion tooling.

Q: Are there differences in physical dimensions between these parts?

A: Yes. The K220K15C0GF53H5 measures 0.157" L × 0.102" W with 0.260" seated height and 0.197" lead spacing. The C315C220K5G5TA measures 0.150" L × 0.100" W with 0.183" seated height and 0.100" lead spacing. These dimensional differences must be evaluated for PCB layout compatibility.

Q: Do both parts meet the same regulatory standards?

A: Yes. Both the K220K15C0GF53H5 and C315C220K5G5TA are ROHS3 compliant and REACH unaffected, meeting equivalent environmental and regulatory requirements.

Q: What is the temperature stability difference between these capacitors?

A: Both parts use C0G/NP0 temperature coefficient with identical operating range of -55°C to 125°C. Temperature stability performance is equivalent.

Q: Which part should be selected for new designs?

A: Selection should be based on component availability, cost, and mechanical fit requirements. Both parts are active production items suitable for new designs. Verify lead spacing and insertion method compatibility with your assembly process.

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