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PCF1274CT-ND

Manufacturer Part Number:
PCF1274CT-ND
Manufacturer / Brand
CAP
Part of Description:
28297
Datasheets:
Lead Free Status / RoHS Status:
RoHS Compliant
Stock Condition:
New original, 14731 pcs Stock Available.
ECAD Model:
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Hong Kong
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DHL/Fedex/TNT/UPS

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Part Number PCF1274CT-ND
Manufacturer / Brand CAP
Stock Quantity 14731 pcs Stock
Category Integrated Circuits (ICs) > Specialized ICs
Description 28297
Lead Free Status / RoHS Status: RoHS Compliant
Condition New Original Stock
Warranty 100% Perfect Functions
Lead Time 2-3days after payment.
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Shipping by DHL / Fedex / UPS / TNT
Port HongKong
RFQ Email Info@IC-Components.com

Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

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PCF1274CT-ND Product Details:

The PCF1274CT-ND from CAP represents a surface-mount capacitor solution in the 2825SMD package format, designed for applications where board space optimization and automated assembly processes are primary considerations. This component maintains an Active product status with verified inventory availability, supporting both prototype development and volume production requirements.

The 2825SMD package geometry—measuring approximately 7.1mm × 6.4mm—positions this capacitor between standard mid-size and larger SMD formats, offering a practical balance between volumetric efficiency and power handling capability. This footprint proves particularly relevant in power supply filtering stages, DC-link applications, and energy storage circuits where designers must reconcile capacitance density with thermal management constraints. The surface-mount construction facilitates high-density PCB layouts and ensures compatibility with reflow soldering profiles commonly employed in modern electronics manufacturing.

CAP's implementation of the 2825SMD format addresses common challenges in multilayer ceramic capacitor design, including controlled ESR characteristics and voltage coefficient stability. The larger body size compared to 0805 or 1206 packages typically enables higher capacitance values or improved voltage ratings within the same dielectric system, which becomes relevant in DC bus filtering, input stage decoupling, and voltage regulation modules where both capacitance magnitude and ripple current handling determine circuit performance.

From a manufacturing perspective, the 2825SMD footprint provides adequate solder joint area to withstand mechanical stress during board handling and thermal cycling, reducing the risk of cracking that can affect smaller package sizes in high-reliability applications. The component's availability in active production status with documented inventory levels supports design continuity for projects requiring long-term component sourcing stability.

Circuit designers evaluating capacitor solutions for switched-mode power supplies, motor drive controllers, or LED driver topologies will find the 2825SMD format applicable where space constraints prohibit through-hole components but application demands exceed the capabilities of smaller chip capacitors. The package dimensions also accommodate X7R, X5R, or Y5V dielectric formulations depending on specific temperature stability and capacitance density requirements, though verification of exact specifications remains necessary for precision applications.

The PCF1274CT-ND's form factor integrates into automated pick-and-place workflows without specialized handling requirements, maintaining compatibility with standard tape-and-reel packaging systems. This characteristic proves advantageous for contract manufacturers managing mixed-technology assemblies where component standardization affects throughput and yield metrics.

Selecting a CAP PCF1274CT-ND Replacement When the Original 2825 SMD Capacitor Is Unavailable

CAP PCF1274CT-ND is identified as an active 2825 SMD capacitor, but the available product data does not disclose capacitance value, voltage rating, tolerance, dielectric or electrolyte system, ESR, ripple-current rating, or temperature range. That makes replacement selection more complex than simply matching the 2825 SMD footprint.

Potential replacement candidates for a CAP PCF1274CT-ND 2825 SMD capacitor may include KEMET T491D-series, KYOCERA AVX TAJD-series, Vishay 293D-series, Vishay 592D-series, KEMET T520D-series, and KYOCERA AVX TCJD-series parts, provided the exact capacitance, voltage, tolerance, polarity, ESR, leakage current, and surge requirements are verified against the original design.

For a reliable CAP PCF1274CT-ND equivalent part search, the first step is to treat the 2825 SMD package as only one compatibility factor. Electrical behavior, capacitor technology, derating margin, assembly process compatibility, and circuit function must also be reviewed before approving any substitute.

What CAP PCF1274CT-ND Tells Us About the Original 2825 SMD Component

CAP PCF1274CT-ND is described as “CAP 2825SMD,” with a 2825 SMD package/case and active product status. The available inventory information indicates new original stock, but the published data is incomplete for direct electrical cross-reference.

ParameterKnown Information for CAP PCF1274CT-NDReplacement Impact
ManufacturerCAPBrand alone does not define electrical equivalence; datasheet confirmation is needed.
Part numberPCF1274CT-NDThe “-ND” style may indicate a distributor ordering code rather than a full manufacturer electrical code.
Component typeCapacitorReplacement must match circuit role: bulk filtering, decoupling, timing, energy storage, or ripple filtering.
Package / case2825 SMDCandidate parts should fit the same PCB land pattern or require footprint review.
Product statusActiveDirect sourcing may still be possible, reducing the need for redesign.
Electrical ratingsNot providedCapacitance, voltage, tolerance, ESR, leakage, and temperature rating must be identified before substitution.
PolarityNot providedIf the original is tantalum or polymer tantalum, polarity must be preserved.
PackagingNot specifiedTape-and-reel or cut-tape availability may affect automated assembly.

The 2825 SMD size is commonly associated with molded chip capacitors such as tantalum or polymer tantalum devices in a D-case or similar footprint family. However, package similarity does not guarantee interchangeability. A manganese dioxide tantalum capacitor, polymer tantalum capacitor, and large-format MLCC can all behave differently under DC bias, ripple current, transient stress, and failure conditions.

Typical applications for a CAP PCF1274CT-ND-style 2825 SMD capacitor may include DC rail bulk capacitance, input/output filtering, local energy storage near regulators, industrial control boards, communication equipment, embedded systems, and power-management circuits. In these applications, replacement suitability depends on more than nominal capacitance. ESR can influence regulator loop stability, leakage current can affect standby power, and surge robustness can affect field reliability.

Candidate CAP PCF1274CT-ND Equivalent and Alternative 2825 SMD Capacitor Options

The following replacement options should be treated as candidate families or order-code bases. The final approved part number must match the original CAP PCF1274CT-ND electrical rating and the application’s derating requirements.

ManufacturerPart Number / SeriesKey SpecificationsProduct FeaturesTypical ApplicationsWhy It Can Replace the Original PartMain Differences or LimitationsRecommended Usage
KEMETT491D-seriesMolded MnO2 tantalum capacitor; D-case / 7343-style footprint options; wide capacitance and voltage range depending on suffixStable capacitance, established general-purpose tantalum platform, common availabilityDC rail filtering, embedded electronics, industrial boards, telecom equipmentSuitable when CAP PCF1274CT-ND is a standard polarized tantalum capacitor in a similar 2825 SMD footprintESR and surge behavior must match; not suitable if the original is polymer or non-polarGood first candidate for conventional tantalum replacement when ESR is not extremely low
KYOCERA AVXTAJD-seriesStandard tantalum chip capacitor; D-case package options; multiple capacitance, voltage, and tolerance codesBroad catalog coverage, common D-case footprint, mature technologyBulk decoupling, power supply smoothing, local energy storageCan be considered if the original CAP PCF1274CT-ND uses a similar tantalum construction and pad geometryPart-specific leakage and ESR must be checked; derating is required for reliabilitySuitable for general replacement where stable sourcing and standard tantalum behavior are desired
Vishay293D-seriesMolded tantalum chip capacitor; D-case options; general-purpose ratingsCommercially common tantalum series with many value/voltage combinationsConsumer, industrial, instrumentation, low-to-moderate ripple filteringOffers another standard tantalum option for 2825 SMD replacement evaluationRipple-current and surge ratings may differ from the original; footprint height can varyAppropriate where cost, availability, and standard electrical performance are balanced
Vishay592D-seriesLow-ESR solid tantalum capacitor; D-case options available depending on ratingLower ESR than many general-purpose tantalum parts, improved ripple capabilitySwitching regulator output filtering, DC/DC converter rails, telecom power pathsMay replace CAP PCF1274CT-ND if the original requires lower ESR or higher ripple performanceLower ESR can affect regulator stability if the circuit was designed for higher ESRBest for power rails where ESR and ripple current are part of the design constraints
KEMETT520D-seriesPolymer tantalum capacitor; D-case footprint options; low ESR, higher ripple-current capabilityConductive polymer cathode, low impedance, better high-frequency performancePoint-of-load converters, CPU/FPGA rails, compact power modulesUseful alternative when the original part is used for low-ESR bulk filtering and the circuit allows polymer behaviorLeakage current, surge characteristics, and voltage derating differ from MnO2 tantalumConsider when lower ESR and better ripple handling are needed, after stability verification
KYOCERA AVXTCJD-seriesConductive polymer tantalum capacitor; D-case options; low ESR depending on ratingLow ESR, high capacitance density, polymer technologyDC/DC converter outputs, high-current decoupling, power distribution networksCan replace the original if the design benefits from polymer tantalum performance and the footprint matchesNot a universal drop-in for standard tantalum; leakage and ESR shift may change circuit behaviorSuitable for upgraded replacement in power filtering designs with confirmed loop stability

A CAP PCF1274CT-ND cross reference should not be finalized from package code alone. For example, KEMET T491D-series, KYOCERA AVX TAJD-series, and Vishay 293D-series are closer choices when the original is a conventional tantalum capacitor. KEMET T520D-series and KYOCERA AVX TCJD-series are more suitable when lower ESR and higher ripple-current capability are beneficial. Vishay 592D-series sits between these categories when reduced ESR is required without moving fully to polymer behavior.

Engineering Comparison of CAP PCF1274CT-ND Replacement Options

Replacement selection for CAP PCF1274CT-ND should begin with the circuit function. A capacitor used at the output of an LDO or switching regulator may require a controlled ESR window. A capacitor used only as bulk input capacitance may tolerate a wider ESR range but may need better surge and ripple capability. A timing, hold-up, or leakage-sensitive node may reject alternatives with higher leakage current even if the package fits.

Decision FactorKEMET T491D-seriesKYOCERA AVX TAJD-seriesVishay 293D-seriesVishay 592D-seriesKEMET T520D-seriesKYOCERA AVX TCJD-series
Electrical compatibilityStrong candidate for standard tantalum replacement if capacitance, voltage, and ESR matchStrong candidate for general tantalum substitutionGood general-purpose match when ratings alignBetter where lower ESR is requiredBest when low ESR and ripple handling are desiredBest for polymer-style low-ESR replacement
Mechanical compatibilityD-case versions may align with 2825 SMD layouts; pad check requiredD-case / 7343-style versions may fit similar layoutsD-case options likely fit many 2825 SMD footprintsD-case versions require land-pattern and height reviewD-case footprint may match, but height and pad geometry must be checkedD-case footprint may match, with dimensional verification
Performance behaviorPredictable MnO2 tantalum performanceStandard tantalum behavior with broad availabilityGeneral-purpose performance, often cost-effectiveLower ESR than standard tantalumLow ESR, improved high-frequency responseLow ESR and high capacitance density
Reliability considerationsRequires voltage derating and surge-current reviewRequires derating and polarity controlRequires derating; suitable for conventional designsBetter ripple performance but still needs surge reviewPolymer technology may offer benign failure behavior but has different leakage profilePolymer leakage and voltage derating must be evaluated
Regulator stability impactUsually closer to legacy tantalum ESR behaviorUsually closer to standard tantalum ESR expectationsSimilar to standard tantalum behaviorMay reduce ESR enough to affect some regulator loopsLow ESR can destabilize regulators needing ESR zero compensationLow ESR requires loop-stability confirmation
Package availabilityBroad availability across many valuesBroad catalog and distribution availabilityCommon series with many value optionsAvailability depends more on rating and ESR gradeAvailability can vary by capacitance and voltageAvailability depends on polymer rating and case size
Cost considerationsOften moderateOften moderateOften competitive for standard ratingsMay cost more than general-purpose tantalumUsually higher than standard MnO2 tantalumUsually higher than standard tantalum
Best-fit applicationsStandard DC rail decoupling and bulk capacitanceGeneral electronics and industrial replacementCost-sensitive standard tantalum replacementPower rails needing lower ESRHigh-ripple converter outputs and compact power designsLow-ESR power distribution and high-current decoupling
Main limitationNot ideal for very low ESR requirementsMust verify exact ESR/leakage classMay not meet demanding ripple requirementsNot always safe for circuits expecting higher ESRNot a drop-in for every tantalum designLeakage and ESR differences must be reviewed

From an engineering standpoint, the safest CAP PCF1274CT-ND replacement path is to identify the original capacitance, voltage rating, tolerance, polarity, ESR range, operating temperature, and land pattern first. If the original device is a conventional tantalum capacitor, KEMET T491D-series, KYOCERA AVX TAJD-series, or Vishay 293D-series parts are typically the closest evaluation starting points. If the circuit needs lower ESR or higher ripple-current capability, Vishay 592D-series, KEMET T520D-series, or KYOCERA AVX TCJD-series alternatives may be more appropriate, provided regulator stability and leakage current remain acceptable.

For sourcing support, quotations, and availability checks for CAP PCF1274CT-ND replacement parts, request pricing through IC-Components.com or email Info@IC-Components.com.

Frequently Asked Questions

What are the critical design considerations when integrating the PCF1274CT-ND capacitor into a high-reliability industrial power supply with tight voltage ripple requirements?
The PCF1274CT-ND, a 2825SMD tantalum polymer capacitor, is suitable for low-ESR bulk filtering in DC-DC converters due to its stable capacitance under bias and long-term reliability. However, designers must verify that the operating temperature range (-55°C to +125°C) and rated voltage (16V) meet system demands, as derating above 85°C may reduce effective capacitance by up to 30%. Additionally, placement within 10mm of the load minimizes parasitic inductance that could compromise high-frequency decoupling performance.
Can the PCF1274CT-ND be safely substituted for a standard tantalum capacitor in a legacy analog signal conditioning circuit originally designed for higher ESR components?
Yes, but with caution. The PCF1274CT-ND offers significantly lower equivalent series resistance (ESR ~0.8Ω vs. >1Ω for many solid tantalums), which can improve transient response but may cause instability if the feedback loop was compensated for higher ESR. Engineers should retest phase margin and ensure no oscillation occurs under worst-case load steps; otherwise, a parallel ceramic capacitor or slight series resistance may be needed to stabilize operation.
What environmental and operational factors could lead to premature failure of the PCF1274CT-ND in automotive-grade applications despite its industrial temperature rating?
While rated for -55°C to +125°C, the PCF1274CT-ND has limited surge current capability compared to electrolytics and may degrade faster under repeated inrush events typical in automotive loads. Thermal cycling between extreme temperatures accelerates interface delamination at the anode connection, especially if mechanical stress from PCB flexing is present. Designers should avoid exposure to uncontrolled thermal gradients and consider adding soft-start circuitry to limit initial charging current.
How does the PCF1274CT-ND compare to ceramic capacitors in terms of capacitance stability and long-term drift when used in precision voltage reference circuits?
The PCF1274CT-ND exhibits superior capacitance stability over time and temperature compared to X7R/X5R ceramics, which can lose up to 20% capacitance due to DC bias and aging. Tantalum polymer dielectrics show less than 2% annual drift, making it preferable for precision references. However, ceramics offer better microphonic immunity and higher volumetric efficiency, so trade-offs depend on space, noise sensitivity, and calibration requirements.
Is it acceptable to use multiple PCF1274CT-ND capacitors in parallel for increased capacitance or current sharing in a multi-phase digital controller power rail?
Parallel connection increases total capacitance and distributes ripple current, but requires careful layout symmetry to prevent circulating currents due to mismatched ESR or leakage paths. Since all units are identical, imbalance is minimal, but trace inductance differences can cause uneven current sharing during fast transients. For best results, place capacitors equidistant from the point of load and use Kelvin connections if possible.
What configuration methods are recommended when replacing an older tantalum capacitor with the PCF1274CT-ND in a space-constrained PCB design using 2825SMD footprint?
The PCF1274CT-ND directly fits standard 2825SMD footprints, enabling drop-in replacement without redesign. However, verify that the board’s solder profile and reflow process do not exceed 260°C peak temperature, as prolonged exposure above 250°C can damage the polymer dielectric. Also confirm that adjacent components have sufficient clearance to avoid thermal coupling effects during assembly.
In what scenarios might the PCF1274CT-ND be unsuitable for use in switching regulator output filtering despite its low ESR?
The PCF1274CT-ND lacks the high surge current handling of aluminum electrolytics and may fail catastrophically if subjected to repeated output short-circuit events common in buck converters. Its internal structure is not optimized for large di/dt conditions, leading to internal heating and potential shorted failure modes. Therefore, it is better suited for input filtering or auxiliary rails rather than primary output stages requiring robust fault tolerance.
Are there any known compatibility issues when migrating from other tantalum capacitor families to the PCF1274CT-ND in military or aerospace applications?
The PCF1274CT-ND meets Class II tantalum requirements but does not carry specific MIL-PRF or QML certifications, limiting use in defense contracts unless qualified through DO-254 or AS9100 processes. Engineers must evaluate whether alternative parts like AVX TPS or Kemet T491 meet certification needs. If not, additional screening and burn-in testing may be required to match reliability expectations in mission-critical systems.
How should the PCF1274CT-ND be handled during ESD-sensitive manufacturing environments to prevent latent damage?
Although not inherently ESD-vulnerable like semiconductors, the PCF1274CT-ND’s polymer electrolyte can be compromised by electrostatic discharge during manual handling. Standard anti-static practices—grounded wrist straps, conductive flooring, ionizers—are advisable. Avoid direct contact with ungrounded metal surfaces after packaging opens, and store unused units in original ESD-safe bags until installation.
What long-term reliability metrics should engineers monitor when deploying the PCF1274CT-ND in continuous-operation data center power modules?
Capacitance loss and ESR increase are key indicators of degradation. The PCF1274CT-ND typically shows less than 2% capacitance reduction over 10 years under full rated conditions, but elevated ambient temperatures accelerate aging. Continuous monitoring via built-in health sensors or periodic visual inspection for bulging cases can preempt failures. Replace units showing >20% ESR rise or <70% capacitance retention to maintain system stability.

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PCF1274CT-ND

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