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MVE35VC10RME55TP Equivalent & Substitute Parts
Part Overview
The MVE35VC10RME55TP is a 10 µF, 35 V aluminum electrolytic capacitor manufactured by Chemi-Con in the MVE series. This surface mount component is rated for 1000 hours at 105°C with a ±20% capacitance tolerance and operates across -40°C to 105°C. The part is classified as obsolete, necessitating identification of active equivalent alternatives that maintain electrical and mechanical compatibility for continued system support and new production requirements.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Capacitance | 10 µF |
| Voltage Rating | 35 V |
| Tolerance | ±20% |
| ESR @ 120 Hz | 23.205 Ohm |
| Lifetime @ 105°C | 1000 Hrs |
| Operating Temperature Range | -40°C ~ 105°C |
| Ripple Current @ 120 Hz | 27 mA |
| Case Size | 5.00 mm Dia × 5.20 mm Height |
| Land Size | 5.30 mm × 5.30 mm |
| Mounting Type | Surface Mount |
| Polarization | Polar |
Substitute Part Grouping Explanation
Substitution eligibility is determined by strict equivalence across the following parameters: capacitance (10 µF), voltage rating (35 V), tolerance (±20%), case dimensions (5.00 mm diameter, maximum height 5.50 mm), land pattern (5.30 mm × 5.30 mm), surface mount configuration, and polar orientation. Parts are grouped into two categories:
Direct Manufacturer Equivalents maintain identical electrical specifications including ESR, ripple current, and lifetime ratings. These parts are sourced from Chemi-Con's active product lines (EMVY350ARA100ME55G, EMVE350ARA100ME55G) and provide pin-for-pin compatibility with identical performance characteristics.
Parametric Equivalents satisfy core electrical requirements (capacitance, voltage, tolerance, lifetime) and mechanical fit but may exhibit variations in ESR, ripple current handling, or operating temperature range. These parts from Cornell Dubilier, Rubycon, CDE, Panasonic, Elna, and Nichicon are functionally interchangeable within the specified parameter envelope.
Parameter Comparison
| Part Number | Manufacturer | Capacitance | Voltage | Tolerance | ESR @ 120 Hz | Lifetime @ 105°C | Operating Temp | Ripple Current @ 120 Hz | Case Height | Product Status | RoHS |
|---|---|---|---|---|---|---|---|---|---|---|---|
| MVE35VC10RME55TP | Chemi-Con | 10 µF | 35 V | ±20% | 23.205 Ohm | 1000 Hrs | -40°C ~ 105°C | 27 mA | 5.20 mm | Obsolete | Non-compliant |
| EMVY350ARA100ME55G | Chemi-Con | 10 µF | 35 V | ±20% | — | 1000 Hrs | -55°C ~ 105°C | 38 mA | 5.20 mm | Active | ROHS3 Compliant |
| EMVE350ARA100ME55G | Chemi-Con | 10 µF | 35 V | ±20% | — | 1000 Hrs | -40°C ~ 105°C | 27 mA | 5.20 mm | Active | ROHS3 Compliant |
| 106AXZ035M | Cornell Dubilier | 10 µF | 35 V | ±20% | 19.89 Ohm | 2000 Hrs | -55°C ~ 105°C | 75 mA | 5.50 mm | Active | ROHS3 Compliant |
| 35SKV10M5X5.5 | Rubycon | 10 µF | 35 V | ±20% | — | 1000 Hrs | -55°C ~ 105°C | 24 mA | 5.50 mm | Last Time Buy | ROHS3 Compliant |
| 35SZV10M5X5.5 | Rubycon | 10 µF | 35 V | ±20% | — | 1000 Hrs | -55°C ~ 105°C | 52.25 mA | 5.50 mm | Last Time Buy | ROHS3 Compliant |
| AVEZ106M35C12T-F | CDE | 10 µF | 35 V | ±20% | — | 1000 Hrs | -55°C ~ 105°C | 88 mA | 5.50 mm | Active | ROHS3 Compliant |
| EEE-FC1V100R | Panasonic | 10 µF | 35 V | ±20% | — | 1000 Hrs | -40°C ~ 105°C | 71.25 mA | 5.40 mm | Not For New Designs | RoHS Compliant |
| EEE-HA1V100R | Panasonic | 10 µF | 35 V | ±20% | — | 1000 Hrs | -40°C ~ 105°C | 30 mA | 5.40 mm | Not For New Designs | RoHS Compliant |
| RVS-35V100ME55U-R | Elna America | 10 µF | 35 V | ±20% | 22 Ohm | 1000 Hrs | -55°C ~ 105°C | 23 mA | 5.50 mm | Not For New Designs | ROHS3 Compliant |
| UUQ1V100MCL1GB | Nichicon | 10 µF | 35 V | ±20% | — | 1000 Hrs | -40°C ~ 105°C | 25 mA | 5.40 mm | Active | ROHS3 Compliant |
Engineering Selection Recommendations
Primary Recommendation for New Designs: EMVE350ARA100ME55G (Chemi-Con) provides direct electrical and mechanical equivalence to the MVE35VC10RME55TP with identical operating temperature range (-40°C ~ 105°C) and ripple current specification (27 mA @ 120 Hz). This part is active and ROHS3 compliant, eliminating obsolescence risk.
Alternative for Extended Temperature Range: EMVY350ARA100ME55G (Chemi-Con) extends the operating range to -55°C ~ 105°C while maintaining 1000-hour lifetime at 105°C. This part is active and ROHS3 compliant, suitable for applications requiring broader thermal performance.
High-Reliability Alternative: 106AXZ035M (Cornell Dubilier) offers doubled lifetime (2000 hours @ 105°C) with lower ESR (19.89 Ohm @ 120 Hz) and higher ripple current capacity (75 mA @ 120 Hz). Case height increases to 5.50 mm; PCB layout verification is required. ROHS3 compliant and active.
Legacy System Support: RVS-35V100ME55U-R (Elna America) maintains ESR specification (22 Ohm @ 120 Hz) closely matching the original part (23.205 Ohm @ 120 Hz). Product status is "Not For New Designs"; use only for existing system maintenance.
Automotive-Qualified Options: EEE-FC1V100R and EEE-HA1V100R (Panasonic) carry AEC-Q200 certification. Both are classified "Not For New Designs" and should be reserved for automotive legacy applications requiring specific qualification documentation.
Frequently Asked Questions (FAQ)
Q: Can EMVE350ARA100ME55G directly replace MVE35VC10RME55TP without PCB modification?
A: Yes. EMVE350ARA100ME55G maintains identical case dimensions (5.00 mm diameter, 5.20 mm height) and land pattern (5.30 mm × 5.30 mm). Electrical specifications match: 10 µF, 35 V, ±20% tolerance, 1000-hour lifetime at 105°C, and 27 mA ripple current at 120 Hz. No PCB layout changes are required.
Q: Why do some substitute parts have 5.50 mm height instead of 5.20 mm?
A: Parts including 106AXZ035M, 35SKV10M5X5.5, 35SZV10M5X5.5, AVEZ106M35C12T-F, and RVS-35V100ME55U-R use taller case designs. While land patterns remain compatible (5.30 mm × 5.30 mm), PCB clearance above the component must be verified to prevent mechanical interference with adjacent components or enclosure constraints.
Q: What is the difference between "Active," "Not For New Designs," and "Last Time Buy" product status?
A: "Active" parts are in current production with ongoing supply availability. "Not For New Designs" indicates the manufacturer no longer recommends these parts for new applications but may continue limited production for legacy support. "Last Time Buy" signals final production runs with no future availability; these parts should be avoided for new designs.
Q: Are all substitute parts RoHS compliant?
A: The original MVE35VC10RME55TP is RoHS non-compliant. All listed substitutes are either ROHS3 compliant or RoHS compliant, meeting current environmental regulations. Verify compliance requirements for your specific application and regulatory jurisdiction.
Q: Which substitute offers the best ripple current performance?
A: AVEZ106M35C12T-F (CDE) provides the highest ripple current at 88 mA @ 120 Hz, followed by 106AXZ035M (Cornell Dubilier) at 75 mA @ 120 Hz. The original part specifies 27 mA @ 120 Hz. Higher ripple current capacity allows operation in higher-frequency switching applications with reduced thermal stress.
Q: Can I use parts with different operating temperature ranges interchangeably?
A: Operating temperature range substitution depends on your application's thermal environment. The original part operates -40°C ~ 105°C. Parts with -55°C lower limit (EMVY350ARA100ME55G, 106AXZ035M, 35SKV10M5X5.5, 35SZV10M5X5.5, AVEZ106M35C12T-F, RVS-35V100ME55U-R) provide extended cold-temperature performance. Parts limited to -40°C (EMVE350ARA100ME55G, EEE-FC1V100R, EEE-HA1V100R, UUQ1V100MCL1GB) match the original specification. Verify your system's minimum operating temperature before selection.
Q: What does ESR (Equivalent Series Resistance) mean for capacitor selection?
A: ESR represents internal resistance at specified frequency (120 Hz in this case). Lower ESR reduces heat generation and voltage ripple. The original part specifies 23.205 Ohm @ 120 Hz. Substitutes with published ESR values include 106AXZ035M (19.89 Ohm, lower) and RVS-35V100ME55U-R (22 Ohm, comparable). Lower ESR is beneficial for high-ripple-current applications; higher ESR may be acceptable in low-frequency, low-current circuits.
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