LDEIC2270JA0N00 >
LDEIC2270JA0N00
KEMET
CAP FILM SMD PEN
6453 Pcs New Original In Stock
Film Capacitor
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LDEIC2270JA0N00 KEMET
5.0 / 5.0 - (303 Ratings)

LDEIC2270JA0N00

Product Overview

11264516

DiGi Electronics Part Number

LDEIC2270JA0N00-DG

Manufacturer

KEMET
LDEIC2270JA0N00

Description

CAP FILM SMD PEN

Inventory

6453 Pcs New Original In Stock
Film Capacitor
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 3000 0.5613 1683.9864
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LDEIC2270JA0N00 Technical Specifications

Category Film Capacitors

Manufacturer KEMET

Packaging Tape & Box (TB)

Series *

Product Status Active

Datasheet & Documents

HTML Datasheet

LDEIC2270JA0N00-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 2A (4 Weeks)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8532.25.0010

Additional Information

Other Names
399-LDEIC2270JA0N00TB
399-LDEIC2270JA0N00TR
DEIC2270JA0N00
399-LDEIC2270JA0N00TB-DG
Standard Package
3,000

Reviews

5.0/5.0-(Show up to 5 Ratings)
Pen***Pure
грудня 02, 2025
5.0
Ils ont répondu à mes attentes avec une grande rapidité.
Melo***eadow
грудня 02, 2025
5.0
DiGi Electronics impresses with their eco-friendly packaging solutions that truly make a difference.
Vel***Vibe
грудня 02, 2025
5.0
I commend DiGi Electronics for their punctuality and high-quality packaging.
Spar***Story
грудня 02, 2025
5.0
Excellent balance between cost and quality packaging, making it my preferred brand.
Dreamsc***Journey
грудня 02, 2025
5.0
Their quick logistics and prompt after-sales support are key reasons for our ongoing partnership.
Tranq***Spirit
грудня 02, 2025
5.0
After months of use, I can confirm that their products are still functioning flawlessly and without issues.
Starr***urney
грудня 02, 2025
5.0
Their logistics updates are consistently timely and accurate.
Wildf***erGlow
грудня 02, 2025
5.0
Their affordable pricing makes purchasing stress-free.
Ec***ave
грудня 02, 2025
5.0
Reliability in packaging safety is evident, reinforcing trust in their delivery process.
Tru***rth
грудня 02, 2025
5.0
Reliable as ever—these products perform consistently and never crash during critical moments.
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Frequently Asked Questions (FAQ)

What are the key design-in considerations for the LDEIC2270JA0N00 when replacing traditional radial leaded film capacitors in a surface-mount power stage?

When designing in the LDEIC2270JA0N00 as a replacement for leaded film capacitors, engineers must account for its SMD flat termination and planar layout requirements. Unlike through-hole parts, this device transfers mechanical stress directly to solder joints, so avoid PCB cutouts or thin board areas beneath the footprint. Use symmetric copper pads with moderate thermal relief to prevent tombstoning during reflow. Additionally, ensure the reflow profile adheres to MSL 2A guidelines to avoid delamination. The LDEIC2270JA0N00 offers lower inductance and better vibration resistance than leaded types, but requires rigid board support to mitigate flex-induced cracking in high-stress environments.

How does the LDEIC2270JA0N00 compare to the EPCOS B32778L5224J in terms of reliability and board-level performance for industrial motor drive applications?

The LDEIC2270JA0N00 and EPCOS B32778L5224J both serve AC filter roles in motor drives, but differ critically in packaging and stress resilience. The LDEIC2270JA0N00 uses a molded SMD PEN construction with full RoHS compliance and better thermal cycling performance due to its homogeneous material stack. In contrast, the B32778L5224J uses an epoxied radial design more prone to crack propagation under repeated thermal swings. The LDEIC2270JA0N00 also offers a defined MSL 2A rating, making it safer for automated assembly versus the moisture-sensitive B32778L5224J. However, ensure adequate creepage distance on the PCB with the LDEIC2270JA0N00 since its compact SMD body reduces clearance compared to the radial form factor.

Can the LDEIC2270JA0N00 be safely used in series configurations for higher voltage AC line filtering, and what are the balancing requirements?

Yes, the LDEIC2270JA0N00 can be used in series for elevated voltage ratings, but requires careful balancing to avoid overvoltage stress due to capacitance tolerance and dielectric absorption differences. Use identical lot codes for matched units and add high-value resistors (e.g., 100 kΩ) across each capacitor to equalize DC leakage current. For AC line filtering in 230VAC+ systems, also consider transient overvoltage risks during switching events—simulate worst-case voltage division with ±20% tolerance skew. Avoid using the LDEIC2270JA0N00 in series without balancing in high-humidity environments, as surface contamination can unbalance voltage sharing and accelerate tracking failure.

What are the PCB layout risks with the LDEIC2270JA0N00 in high dv/dt circuits, and how can leakage currents be minimized?

In high dv/dt applications like IGBT or SiC inverters, the LDEIC2270JA0N00's low inherent inductance is beneficial, but poor PCB layout can negate its performance. Avoid long, parallel copper runs between input and output nodes to reduce capacitive coupling and ground loop currents. Use a solid, low-impedance ground plane directly under the LDEIC2270JA0N00, but maintain at least 2mm creepage distance for reinforced insulation. Route high-voltage nodes away from low-level sensing circuits to prevent displacement currents from interfering with control signals. Additionally, minimize solder mask exposure in high-field areas to reduce surface leakage, especially in environments with conductive contaminants.

Is the LDEIC2270JA0N00 suitable for long-life energy storage in pulsed power systems, and what aging mechanisms should be monitored?

The LDEIC2270JA0N00 is based on biaxially oriented polyethylene naphthalate (PEN), which has higher glass transition temperature and better hydrolytic stability than PET, but lower longevity than polypropylene (PP) in sustained high-temperature storage. For pulsed power applications with intermittent duty, the LDEIC2270JA0N00 is reliable if peak voltage stays below 80% of rated and self-heating is minimized. Avoid continuous operation above 85°C ambient, as PEN degrades faster than PP under combined thermal and electrical stress. Monitor dissipation factor drift over time—increasing tan δ indicates onset of dielectric breakdown. For mission-critical systems exceeding 10-year lifespan targets, consider PP-based alternatives like the MKP1848 series, but the LDEIC2270JA0N00 remains a space-efficient, RoHS-compliant choice for moderate-life industrial designs.

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