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T97R106M075HSB Equivalent & Substitute Parts
Part Overview
The T97R106M075HSB is a 10 µF conformal coated tantalum capacitor manufactured by Vishay Sprague, rated for 75 V operation. This component belongs to the TANTAMOUNT™ T97 series and is designed for surface mount applications in the 3024 (7660 Metric) package. The part is currently active in production with high reliability ratings and COTS qualification. Substitute parts are identified when equivalent electrical and mechanical parameters are required due to inventory constraints, design flexibility, or specific compliance requirements.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Capacitance | 10 µF |
| Voltage Rating | 75 V |
| Tolerance | ±20% |
| Package / Case | 3024 (7660 Metric) |
| ESR (Equivalent Series Resistance) | 500 mOhm |
| Type | Conformal Coated |
| Mounting Type | Surface Mount |
| Operating Temperature Range | -55°C to 85°C |
| Size / Dimension | 0.299" L x 0.236" W (7.60 mm x 6.00 mm) |
| Height - Seated (Max) | 0.157" (4.00 mm) |
| Moisture Sensitivity Level (MSL) | 2A (4 Weeks) |
Substitute Part Grouping Explanation
Substitution eligibility for the T97R106M075HSB is determined by strict equivalence in the following critical parameters:
- Capacitance value: 10 µF (exact match required)
- Voltage rating: 75 V (exact match required)
- Package / Case: 3024 (7660 Metric) (exact match required)
- ESR: 500 mOhm (exact match required)
- Type: Conformal Coated (exact match required)
- Mounting Type: Surface Mount (exact match required)
- Operating Temperature Range: -55°C to 85°C (exact match required)
- Physical dimensions: 0.299" L x 0.236" W, 0.157" max height (exact match required)
The T97R106K075LSA qualifies as a parametric equivalent substitute. This part maintains identical electrical performance characteristics, mechanical compatibility, and thermal specifications. The tolerance specification differs (±10% versus ±20%), representing a tighter tolerance that is functionally compatible with applications designed for the original part.
Parameter Comparison
| Parameter | T97R106M075HSB (Main Part) | T97R106K075LSA (Substitute) | Match Status |
|---|---|---|---|
| Manufacturer | Vishay Sprague | Vishay Sprague | Identical |
| Series | TANTAMOUNT™ T97 | TANTAMOUNT™ T97 | Identical |
| Capacitance | 10 µF | 10 µF | Identical |
| Tolerance | ±20% | ±10% | Tighter tolerance on substitute |
| Voltage Rating | 75 V | 75 V | Identical |
| Type | Conformal Coated | Conformal Coated | Identical |
| ESR | 500 mOhm | 500 mOhm | Identical |
| Package / Case | 3024 (7660 Metric) | 3024 (7660 Metric) | Identical |
| Size / Dimension | 0.299" L x 0.236" W (7.60 mm x 6.00 mm) | 0.299" L x 0.236" W (7.60 mm x 6.00 mm) | Identical |
| Height - Seated (Max) | 0.157" (4.00 mm) | 0.157" (4.00 mm) | Identical |
| Operating Temperature Range | -55°C to 85°C | -55°C to 85°C | Identical |
| Moisture Sensitivity Level (MSL) | 2A (4 Weeks) | 2A (4 Weeks) | Identical |
| Product Status | Active | Active | Identical |
| Ratings | COTS | COTS | Identical |
| Features | High Reliability | High Reliability | Identical |
| ECCN | EAR99 | EAR99 | Identical |
| HTSUS | 8532.21.0050 | 8532.21.0050 | Identical |
Engineering Selection Recommendations
Both the T97R106M075HSB and T97R106K075LSA are active production components with COTS qualification and high reliability designations. Selection between these parts should be based on the following criteria:
T97R106M075HSB is appropriate when the design specification explicitly requires ±20% capacitance tolerance and RoHS3 compliance is mandatory. This part carries RoHS3 Compliant status.
T97R106K075LSA is appropriate when tighter capacitance tolerance (±10%) provides design margin benefits. This part is RoHS non-compliant and carries REACH Unaffected status. Selection of this substitute requires confirmation that RoHS compliance is not a project requirement.
Both parts share identical electrical performance, mechanical compatibility, thermal characteristics, and packaging specifications. The decision between them depends solely on tolerance requirements and regulatory compliance obligations specific to the application.
Frequently Asked Questions (FAQ)
Q: Can T97R106K075LSA be used as a direct replacement for T97R106M075HSB?
A: Yes, from an electrical and mechanical standpoint. Both parts have identical capacitance (10 µF), voltage rating (75 V), ESR (500 mOhm), package dimensions (3024), and operating temperature range (-55°C to 85°C). The substitute has tighter tolerance (±10% versus ±20%), which is functionally compatible. However, RoHS compliance status differs; verify regulatory requirements before substitution.
Q: What is the significance of the tolerance difference?
A: The T97R106K075LSA tolerance of ±10% is tighter than the T97R106M075HSB tolerance of ±20%. This means the substitute part will have capacitance values closer to the nominal 10 µF specification. For most circuit applications, this represents an improvement in performance predictability with no negative impact.
Q: Are the physical dimensions identical?
A: Yes. Both parts use the 3024 (7660 Metric) package with dimensions of 0.299" L x 0.236" W (7.60 mm x 6.00 mm) and maximum seated height of 0.157" (4.00 mm). PCB layout and assembly tooling compatibility is identical.
Q: What is the difference in RoHS compliance status?
A: The T97R106M075HSB is RoHS3 Compliant. The T97R106K075LSA is RoHS non-compliant. If the application or end market requires RoHS compliance, the T97R106M075HSB must be used. If RoHS compliance is not required, both parts are functionally equivalent.
Q: Are both parts available in the same packaging format?
A: Yes. Both parts are supplied in Tape & Reel (TR) packaging format, suitable for automated assembly processes.
Q: What is the ESR specification and why is it important?
A: ESR (Equivalent Series Resistance) is specified at 500 mOhm for both parts. This parameter affects the impedance characteristics of the capacitor at high frequencies and influences ripple current handling capability. Identical ESR values ensure equivalent performance in filtering and decoupling applications.
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