TDK Corporation C3225X7R2A105KT0L0U
- Part No.:
- C3225X7R2A105KT0L0U
- Manufacturer:
- TDK Corporation
- Category:
- Ceramic Capacitors
- Package:
- Datasheet:
-
C3225X7R2A105KT0L0U.pdf
- Description:
- SMD/SMT MLCC,1210,X7R,100V,1 F,2mm
- Quantity:
- Payment:

- Shipping:

Inventory:96,200
Please send an inquiry. Send us your inquiry, and we will respond immediately.
Product details
Overview
C3225X7R2A105KT0L0U from TDK is a multilayer ceramic capacitor designed for compact board-level decoupling, filtering, energy buffering, and signal-conditioning roles in dense electronic assemblies. This MLCC combines a 1μF nominal capacitance, 100V rated voltage, X7R dielectric system, ±10% tolerance, and 1210-size package footprint, making it suitable for AI server motherboards, accelerator cards, storage modules, networking hardware, and other high-density digital or mixed-signal platforms where ceramic stability and footprint efficiency matter.
The selected X7R dielectric, -55~+125°C operating-temperature class, and package size give C3225X7R2A105KT0L0U a design profile aligned with high-density decoupling or filtering tasks where board area, impedance behavior, and rail stability are important. For engineers reviewing the C3225X7R2A105KT0L0U datasheet, C3225X7R2A105KT0L0U pinout, C3225X7R2A105KT0L0U application, or C3225X7R2A105KT0L0U equivalent, this device is widely used in power-rail decoupling, point-of-load output filtering, control-plane support networks, storage and networking modules, and compact high-speed embedded hardware.
Applications
| High-Voltage Filtering | Snubber and Clamp Networks |
|---|---|
|
Use Scenario: Used on AI server power-distribution boards where higher-voltage auxiliary rails, hold-off nodes, or isolation-adjacent filters need compact ceramic capacitance. IC Role: C3225X7R2A105KT0L0U provides 1μF capacitance at 100V rating in a 1210-size package body for compact high-voltage bypass and filtering roles. Use Value: Supports board-level high-voltage filtering without moving to much larger film or electrolytic parts. |
Use Scenario: Used around switching transitions, gate-drive edges, or damping networks that see elevated voltage stress. IC Role: The X7R dielectric and 100V rating make the capacitor useful in local high-frequency suppression networks. Use Value: Helps reduce ringing and switching noise in dense power stages. |
| Power Conversion Control | Isolation-Adjacent Support |
|
Use Scenario: Used in PSU and converter support circuitry on server power shelves or accelerator power modules. IC Role: C3225X7R2A105KT0L0U acts as a robust ceramic element for compensation, filtering, or local energy support where voltage margin is important. Use Value: Improves reliability in high-stress power-conversion environments. |
Use Scenario: Used near isolated monitoring or gate-drive sections that need compact high-voltage ceramic capacitors. IC Role: The part provides board-efficient capacitance for support circuitry without sacrificing dielectric stability class. Use Value: Supports cleaner local filtering in constrained layout regions. |
Equivalent & Alternatives
When evaluating a C3225X7R2A105KT0L0U equivalent, engineers should compare capacitance, package size, rated voltage, dielectric class, tolerance, temperature range, and actual board role before substitution.
| Alternative Part | Technical Difference | Application Difference | Selection Advice |
|---|---|---|---|
| C3225X7R2A105K200AA | TDK C3225X7R2A105K200AA offers 1μF capacitance in a 1210-size package package with 100V rating, X7R dielectric, and ±10% tolerance. | Suitable for similar board-level MLCC roles such as decoupling, filtering, or local energy support where package size, dielectric class, and voltage rating are compatible. | Compare capacitance, package, voltage rating, dielectric behavior, tolerance, and temperature class against C3225X7R2A105KT0L0U before substitution. |
| CL32B105KCJSNNE | Samsung CL32B105KCJSNNE offers 1μF capacitance in a 1210-size package package with 100V rating, X7R dielectric, and ±10% tolerance. | Suitable for similar board-level MLCC roles such as decoupling, filtering, or local energy support where package size, dielectric class, and voltage rating are compatible. | Compare capacitance, package, voltage rating, dielectric behavior, tolerance, and temperature class against C3225X7R2A105KT0L0U before substitution. |
Compared with C3225X7R2A105K200AA and CL32B105KCJSNNE, C3225X7R2A105KT0L0U should be selected according to the exact capacitance, package, voltage rating, dielectric behavior, tolerance, and temperature-class needs of the target board location. Substitution decisions for MLCCs should also consider DC-bias behavior, effective capacitance under load, and placement role on the rail or signal path.
Quality
C3225X7R2A105KT0L0U should be sourced as original branded MLCC inventory through traceable supply channels. Quality checks may include package inspection, marking and reel-label verification, solderability review, and lot-level handling controls appropriate for ceramic capacitors.
Production validation should include capacitance verification where needed, board-level placement review, reflow-process compatibility, and local rail or signal-integrity confirmation in the final mounted application.
Availability
C3225X7R2A105KT0L0U is suitable for AI server, accelerator, storage, networking, and high-density embedded hardware that needs compact MLCC support for decoupling, filtering, or local energy storage.
Sample and NPI supply support, as well as urgent in-stock supply support, can also be arranged for prototype builds, pilot runs, and time-critical production needs.
For production builds, confirming capacitance, package size, dielectric class, rated voltage, tolerance, temperature range, lifecycle status, and sourcing continuity helps reduce passive-component procurement risk.
Manufacturer
TDK is a passive-component manufacturer specializing in multilayer ceramic capacitors, inductors, magnetic devices, and electronic materials for automotive, industrial, communication, computing, and consumer electronic systems.
TDK's commercial multilayer ceramic capacitor series covers general-purpose, high-voltage, and higher-capacitance MLCC options for decoupling, filtering, timing, and local energy storage in compact electronic assemblies.
FAQ
What is C3225X7R2A105KT0L0U used for?
C3225X7R2A105KT0L0U is used for MLCC decoupling, filtering, local energy storage, and signal-support functions on dense electronic boards such as servers, accelerators, networking cards, and control modules.
Where can I find the C3225X7R2A105KT0L0U datasheet download?
The datasheet for C3225X7R2A105KT0L0U is the specification link provided in the workbook and should be used to confirm electrical and mechanical details for final part approval.
What should be considered when selecting C3225X7R2A105KT0L0U?
Designers should verify capacitance, package size, rated voltage, dielectric class, tolerance, temperature range, and the expected effective capacitance at the actual working bias and placement point.
Is C3225X7R2A105KT0L0U suitable for power-rail decoupling?
C3225X7R2A105KT0L0U can be suitable for power-rail decoupling when its capacitance, dielectric, package, and voltage class align with the target rail and placement objective.
What are common C3225X7R2A105KT0L0U equivalent solutions?
Common equivalents should be chosen by matching capacitance, package, voltage rating, dielectric behavior, tolerance, and operating-temperature class as closely as possible.
C3225X7R2A105KT0L0U Specifications
- Product attributes
- Attribute value
- Manufacturer:
- TDK Corporation
- Series:
- -
- Packaging:
- Tape & Reel
- Product Status:
- -
- Capacitance:
- 1μF
- Tolerance:
- ±10%
- Voltage - Rated:
- 100V
- Temperature Coefficient:
- X7R
- Operating Temperature:
- -55~+125°C
- Features:
- -
- Ratings:
- -
- Applications:
- -
- Failure Rate:
- -
- Mounting Type:
- Surface Mount
- Package / Case:
- 1210
- Size / Dimension:
- -
- Height - Seated (Max):
- -
- Thickness (Max):
- -
- Lead Spacing:
- -
- Lead Style:
- -
C3225X7R2A105KT0L0U FAQ
1.How can I place an order for C3225X7R2A105KT0L0U through Aetrix?
Please submit a Request for Quotation (RFQ) for C3225X7R2A105KT0L0U on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.
2.Are the price and stock information for C3225X7R2A105KT0L0U reliable?
The price and inventory of C3225X7R2A105KT0L0U are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for C3225X7R2A105KT0L0U is usually 5 days.
3.What payment methods are accepted for C3225X7R2A105KT0L0U?
We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for C3225X7R2A105KT0L0U transactions.
Note: Certain payment methods may incur a processing fee.
4.How is shipping managed for C3225X7R2A105KT0L0U?
C3225X7R2A105KT0L0U orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.
Once your C3225X7R2A105KT0L0U order is processed, you will receive an email with the shipment details and tracking number.
Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.
5.How can I obtain technical support or documentation for C3225X7R2A105KT0L0U?
For technical support, including C3225X7R2A105KT0L0U datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your C3225X7R2A105KT0L0U requirements.
6.How does Aetrix verify that C3225X7R2A105KT0L0U is sourced from the original manufacturer or authorized distributors?
All C3225X7R2A105KT0L0U products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that C3225X7R2A105KT0L0U meets industry standards.
7.What is the process for return or replacement of C3225X7R2A105KT0L0U?
All C3225X7R2A105KT0L0U units undergo pre-shipment inspection (PSI). If there is an issue with C3225X7R2A105KT0L0U, returns or replacements are accepted under the following conditions:
1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.
2.The issue is reported within 90 days of delivery.
3.The C3225X7R2A105KT0L0U part is unused and in its original packaging.
Return procedure for C3225X7R2A105KT0L0U:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
C3225X7R2A105KT0L0U Tags

-
GRM31CR61C476ME44L
Murata Electronics

-
AMK105EBJ226MV-F
TAIYO YUDEN

-
C1608X7R1A106M080AT
TDK Corporation

-
C1608X7R1H104K080AA
TDK Corporation

-
C3225C0G3B103J250AC
TDK Corporation

-
C3225X5R0J107M250AB
TDK Corporation

-
C3225X7R1C226M250AC
TDK Corporation

-
C3225X7R1E106K250AC
TDK Corporation

-
C3225X7R2A105K200AA
TDK Corporation

-
C3225X7R2A105KT0L0U
TDK Corporation

-
CGA5L1X7R0J226M160AE
TDK Corporation

-
CGA5L1X7R1V106K160AC
TDK Corporation
Tech Hub
SiC, or silicon carbide, is a wide-bandgap semiconductor material used in high-efficiency power electronics.
Type C, more formally called USB Type-C or USB-C, is a reversible connector used for charging, data transfer, display output, and accessory connection.
Voltage testing is a fundamental skill for electricians, engineers, technicians, and electronics hobbyists. Accurate voltage measurement ensures safe operation, prevents equipment damage, and verifies …
MLCCs are widely used in power supply circuits, DC-DC converters, decoupling networks, RF filters, automotive modules, industrial controllers, and high-density digital hardware. Their low ESR, compact …
MLCC damage is a common reliability problem in modern electronics, especially in compact PCB layouts, power supply circuits, automotive modules, industrial controllers, and high-density computing hardw…
The SR626SW battery is a small silver oxide button cell commonly used in analog watches, compact electronic devices, calculators, small instruments, and other low-drain circuits. It is often searched u…
Practical guide to understanding LDO dropout voltage, calculating input margin, and ensuring stable output regulation. Includes tips on battery-powered designs, load effects, and using the LDO Dropout …
LDO regulators are widely used in embedded systems, analog circuits, industrial controllers, communication hardware, and low-noise power supplies. While LDOs are simple to use compared with switching r…
SCR silicon controlled rectifier guide covering SCR working principle, SCR circuits, symbols, triggering methods, testing procedures, motor control, dimmer circuits, and industrial power control applic…
A soldering iron is one of the most commonly used tools in electronics repair, PCB assembly, prototype development, and component replacement work. From simple through-hole boards to fine-pitch surface…
