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HT06BN223KN Equivalent & Substitute Parts
Part Overview
The HT06BN223KN is a 0.022 µF ceramic capacitor rated at 50V with C0G/NP0 temperature coefficient, manufactured by KEMET. This radial through-hole component is designed for general-purpose applications requiring high-temperature operation across -55°C to 200°C. The part is classified as obsolete, necessitating identification of active equivalent alternatives that maintain functional compatibility while meeting current procurement requirements.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Capacitance | 0.022 µF |
| Voltage Rating | 50V |
| Temperature Coefficient | C0G, NP0 |
| Mounting Type | Through Hole |
| Package Type | Radial |
| Lead Spacing | 0.200" (5.08mm) |
| Operating Temperature Range | -55°C to 200°C (main part); -55°C to 125°C (substitute) |
Substitute Part Grouping Explanation
Substitution of the obsolete HT06BN223KN is based on the following critical parameters that must remain constant or compatible:
Fixed Parameters (Must Match):
- Capacitance value: 0.022 µF
- Voltage rating: 50V minimum
- Temperature coefficient: C0G/NP0
- Mounting type: Through Hole
- Package type: Radial
- Lead spacing: 0.200" (5.08mm)
Variable Parameters (Acceptable Variation):
- Tolerance: ±10% (main part) to ±5% (substitute) — tighter tolerance is acceptable
- Operating temperature range: Substitute operates -55°C to 125°C versus main part -55°C to 200°C — acceptable for applications not requiring extended high-temperature operation above 125°C
- Physical dimensions: Minor variations in length, width, and height within standard radial package tolerances
- Lead style: Straight (main part) to Formed Leads (substitute) — both suitable for through-hole PCB mounting
The substitute C330C223J5G5TA maintains all critical electrical parameters while offering improved tolerance specification and active product status.
Parameter Comparison
| Parameter | HT06BN223KN (Main Part) | C330C223J5G5TA (Substitute) | Compatibility |
|---|---|---|---|
| Capacitance | 0.022 µF | 0.022 µF | Identical |
| Tolerance | ±10% | ±5% | Compatible (tighter tolerance) |
| Voltage Rating | 50V | 50V | Identical |
| Temperature Coefficient | C0G, NP0 | C0G, NP0 | Identical |
| Operating Temperature | -55°C to 200°C | -55°C to 125°C | Compatible for standard applications |
| Mounting Type | Through Hole | Through Hole | Identical |
| Package Type | Radial | Radial | Identical |
| Lead Spacing | 0.200" (5.08mm) | 0.200" (5.08mm) | Identical |
| Product Status | Obsolete | Active | Substitute is current production |
| RoHS Compliance | Not specified | ROHS3 Compliant | Substitute meets current standards |
Engineering Selection Recommendations
Primary Substitute: C330C223J5G5TA
The C330C223J5G5TA is the direct functional equivalent for the obsolete HT06BN223KN. Selection of this substitute is based on:
-
Electrical Equivalence: Identical capacitance (0.022 µF), voltage rating (50V), and temperature coefficient (C0G/NP0) ensure electrical interchangeability in circuit applications.
-
Mechanical Compatibility: Identical lead spacing (0.200") and radial through-hole package configuration permit direct PCB footprint compatibility without layout modification.
-
Tolerance Improvement: The ±5% tolerance specification of the substitute provides superior capacitance accuracy compared to the ±10% tolerance of the main part, beneficial for precision circuit requirements.
-
Product Status: The substitute is classified as Active with current manufacturing availability (1018 pcs in stock), eliminating procurement risk associated with obsolete components.
-
Compliance Status: ROHS3 compliance and REACH unaffected status of the substitute align with current regulatory requirements for electronic component procurement.
-
Operating Temperature Consideration: The substitute operates across -55°C to 125°C. Applications requiring operation above 125°C must evaluate alternative solutions, as the substitute does not support the extended high-temperature range (-55°C to 200°C) of the original part.
Frequently Asked Questions (FAQ)
Q: Can C330C223J5G5TA be used as a direct replacement for HT06BN223KN without PCB modification?
A: Yes. Both components share identical lead spacing (0.200"), radial package configuration, and through-hole mounting type. PCB footprints are compatible without modification.
Q: What is the difference between ±10% and ±5% tolerance specifications?
A: Tolerance defines the acceptable deviation of actual capacitance from the nominal 0.022 µF value. The ±10% specification (main part) allows 0.0198 µF to 0.0242 µF. The ±5% specification (substitute) allows 0.0209 µF to 0.0231 µF. The substitute provides tighter capacitance control, suitable for applications with stricter circuit performance requirements.
Q: Are there operating temperature limitations when substituting with C330C223J5G5TA?
A: Yes. The substitute operates from -55°C to 125°C, while the original part operates from -55°C to 200°C. Applications requiring sustained operation above 125°C must retain the original HT06BN223KN or identify alternative high-temperature rated components.
Q: What does C0G/NP0 temperature coefficient mean?
A: C0G and NP0 are equivalent designations for temperature coefficient indicating negligible capacitance change across the operating temperature range. This specification is critical for precision timing circuits, filters, and applications where capacitance stability is required.
Q: Is the substitute RoHS compliant?
A: Yes. The C330C223J5G5TA is ROHS3 compliant and REACH unaffected, meeting current environmental and regulatory standards for electronic component procurement.
Q: What is the lead style difference between the main part and substitute?
A: The main part features straight leads, while the substitute features formed leads. Both configurations are suitable for through-hole PCB mounting. Formed leads may provide improved mechanical retention during assembly processes.
Q: Can the substitute be used in high-reliability or military applications?
A: Component selection for high-reliability or military applications requires evaluation against specific qualification standards and procurement specifications. The substitute's active status and compliance certifications support general commercial and industrial applications.
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