ACP3225-501-2P-T000
Filter, Common Mode, ACP Series, 500 ohm, 2 A, 3.2mm x 2.5mm x 1.9mm
- Manufacturer: TDK
- Product type: SMD Common Mode Chokes / Filters
- Rated Current:2A; Inductance:-; Product Range:ACP Series; Impedance:500ohm; Common Mode Filter Case:3.2mm x 2.5mm x 1.9mm; Automotive Qualification Standard:-; SVHC:No SVHC (15-Jan-
- SVHC: No SVHC (04-Feb-2026)
- Impedance: 500ohm
- Inductance: -
- Product Range: ACP Series
- Product Width: 2.5mm
- Qualification: -
- Product Height: 1.9mm
- Product Length: 3.2mm
- DC Current Rating: 2A
- DC Resistance Max: 0.04ohm
- Inductor Case / Package: -
- Operating Temperature Max: 85°C
- Operating Temperature Min: -40°C
| Delivery and price | |
|---|---|
| Units per pack | 1000 |
| Price | 0.352 € |
| Current stock | 1000+ |
| Lead time | 30 days |
## **Common mode filters For power line ACP series** **==> picture [103 x 33] intentionally omitted <==** **----- Start of picture text -----**<br> Br [Cl] Pb<br>oi RoHS SVHC-FreeREACH HalogenFree LeadFree<br>**----- End of picture text -----**<br> ## **ACP3225 type** ## **FEATURES** Chip type common mode filter for DC power supply lines. - Can reduce power consumption and improve EMC suppression because of low direct current resistance and excellent common mode impedance. - Compatible with high-density portable devices, which are always being made smaller and lighter, because the height has been reduced. - Operating temperature range: –40 to +85°C (Does not include self-heating. The product can be used up to 105°C including self-heating.) ## **APPLICATION** Power line noise countermeasure for various electronic equipment. Noise countermeasure for AC adapter lines and battery lines for note PCs, portable game machines, and mobile phones. ## **PART NUMBER CONSTRUCTION** |ACP|ACP|||3225|3225|-|102|102|-|2P|2P|-|T|T|||000|000| |---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---| |||||||||||||||||||| |**Series name**||||**L×W×H dimensions**<br>**3.2×2.5×1.9 mm**|||**Impedance**<br>**(****) at 100MHz**|||**Number of lines**|||**Packaging style**||||**Internal code**|| ## **CHARACTERISTICS SPECIFICATION TABLE** |**Common mode impedance**|**Common mode impedance**|**DC resistance**||**Rated current**|**Rated voltage**|**Insulation**|**Part No.**| |---|---|---|---|---|---|---|---| |||||||**resistance**|| |**[at 100MHz]**|||||||| |**(****)**|**Tolerance**|**(m****)typ.**|**(m****)max.**|**(A)max.**|**(V)max.**|**(M****)min.**|| |1000|±25%|50|100|1.5|60|10|ACP3225-102-2P-T000| |500|±25%|40|100|2|60|10|ACP3225-501-2P-T000| |Temperature derating was considered for the rated current.|||||||| ||Measurement equipment||| |---|---|---|---| ||Measurement item|Product No.|Manufacturer| ||Common mode impedance|4991A|Keysight Technologies| ||DC resistance|4338A|Keysight Technologies| |Insulation resistance||4339A|Keysight Technologies| * Equivalent measurement equipment may be used. |**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**<br>**ACP3225-102-2P**<br>O]|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**TEMPERATURE CHARACTERISTICS (DERATING)**|**ACP3225-501-2P**|**ACP3225-501-2P**|**ACP3225-501-2P**|**ACP3225-501-2P**|**ACP3225-501-2P**|**ACP3225-501-2P**||||||||||||| |---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---| ||||2.0<br>2.5||||||||||||||||||2.5<br>3.0||||||||||||||||| ||Current (A)||1.0<br>1.5|||||||||||||||||Current (A)|1.0<br>1.5<br>2.0||||||||||||||||| ||||0.5||||||||||||||||||0.5||||||||||||||||| ||||0.0||||||||||||||||||0.0||||||||||||||||| ||||0||10||20|||30||40||50||60||85|||0||10||20|||30||40||50||60||85|| ||||||||||Temperature (°C)||||||||||||||||||Temperature (°C)||||||||||| Please be sure to request delivery specifications that provide further details on the features and specifications of the products for proper and safe use. Please note that the contents may change without any prior notice due to reasons such as upgrading. (1/4) 20181011 cmf_commercial_power_acp3225_en.fm ## **ACP3225 type** ## a **IMPEDANCE VS. FREQUENCY CHARACTERISTICS** **==> picture [497 x 274] intentionally omitted <==** **----- Start of picture text -----**<br> 10000<br>1000<br>102 Common mode<br>100<br>102 Differential mode<br>10<br>1<br>1 10 100 1000 10000<br>Frequency (MHz)<br>Measurement equipment<br>Product No. Manufacturer<br>4991A Keysight Technologies<br>* Equivalent measurement equipment may be used.<br>)Ω<br>Impedance (<br>**----- End of picture text -----**<br> (2/4) Please be sure to request delivery specifications that provide further details on the features and specifications of the products for proper and safe use. Please note that the contents may change without any prior notice due to reasons such as upgrading. 20181011 cmf_commercial_power_acp3225_en.fm ## **ACP3225 type** ## **SHAPE & DIMENSIONS** **==> picture [201 x 174] intentionally omitted <==** **----- Start of picture text -----**<br> 3.2±0.2<br>tm GJ<br>(0.65) (1.9) (0.65) (0.3) (0.3)<br>Dimensions in mm<br>p a liiiiat<br>1.9±0.1 (0.4)<br>(0.3)<br>(0.9)<br>2.5±0.2<br>(0.3)<br>**----- End of picture text -----**<br> **==> picture [58 x 6] intentionally omitted <==** **----- Start of picture text -----**<br> Dimensions in mm<br>**----- End of picture text -----**<br> **==> picture [202 x 202] intentionally omitted <==** **----- Start of picture text -----**<br> PACKAGING STYLE<br>REEL DIMENSIONS<br>2.0±0.5 2 typ.<br>OSC-TN<br>1.0<br>ø13.0±0.2 9+1/–0<br>ø21.0±0.8 13±1<br>Ie , IT<br>ø180±3<br>60+1/–0<br>**----- End of picture text -----**<br> ## **RECOMMENDED LAND PATTERN** Dimensions in mm ## **TAPE DIMENSIONS** **==> picture [106 x 80] intentionally omitted <==** **----- Start of picture text -----**<br> 0.9 1.9 0.9<br>Dimensions in mm<br>0.4<br>0.75<br>0.4<br>**----- End of picture text -----**<br> **==> picture [236 x 228] intentionally omitted <==** **----- Start of picture text -----**<br> 0.25±0.05 Sprockethole 1.5 [+0.1] 0 2.0±0.1 4.0±0.1<br>K A 4.0±0.1 Cavity<br>Dimensions in mm<br>Typeypee A B K<br>ACP3225 2.90±0.1 3.60±0.1 2.35<br>Be<br>500 to 560min.<br>160min. Tapingpingingg 440min.<br>Drawing direction<br>1.75±0.1 3.50±0.1<br>B<br>8.00±0.1<br>**----- End of picture text -----**<br> ## **CIRCUIT DIAGRAM** Dimensions in mm **==> picture [473 x 338] intentionally omitted <==** **----- Start of picture text -----**<br> 1 4<br>2 3 Typeypee A B K<br>ACP3225 2.90±0.1 3.60±0.1 2.35<br>=a • No polarity Be<br>500 to 560min.<br>160min. Tapingpingingg 440min.<br>RECOMMENDED REFLOW PROFILE<br>Preheating Soldering Natural Drawing direction<br>cooling<br>Peak<br>245°C<br>PACKAGE QUANTITY<br>230°C 230°C<br>Package quantity 1000 pcs/reel<br>180°C<br>TEMPERATURE RANGE, INDIVIDUAL WEIGHT<br>5s max.<br>150°C Operating Storage<br>temperature rangeperature rangeerature rangegee [[]] temperature rangeperature rangeerature rangegee [[]]<br>60 to 120s 10 to 30s –40 to +85 °C –40 to +85 °C<br> The operating temperature range of this product does not include self-<br>B N —— heating. The product can be used up to 105°C including self-heating.<br>Time For actual use, use within the temperature derating range shown in page<br>1/4 of this catalog, taking into account self-heating.<br> The storage temperature range is for after the assembly.<br>Please be sure to request delivery specifications that provide further details on the features and specifications of the products for proper and safe use.<br>Please note that the contents may change without any prior notice due to reasons such as upgrading.<br>Temperature<br>**----- End of picture text -----**<br> Dimensions in mm **TEMPERATURE RANGE, INDIVIDUAL WEIGHT Operating Storage Individual temperature rangeperature rangeerature rangegee**[[]] **temperature rangeperature rangeerature rangegee**[[]] **weight** –40 to +85 °C –40 to +85 °C 60 mg The operating temperature range of this product does not include selfheating. The product can be used up to 105°C including self-heating. For actual use, use within the temperature derating range shown in page 1/4 of this catalog, taking into account self-heating. (3/4) 20181011 cmf_commercial_power_acp3225_en.fm ## **REMINDERS FOR USING THESE PRODUCTS** Before using these products, be sure to request the delivery specifications. ## **SAFETY REMINDERS** Please pay sufficient attention to the warnings for safe designing when using this products. ## **REMINDERS** - The storage period is less than 6 months. Be sure to follow the storage conditions (temperature: 5 to 40°C, humidity: 10 to 75% RH or less). If the storage period elapses, the soldering of the terminal electrodes may deteriorate. Do not use or store in locations where there are conditions such as gas corrosion (salt, acid, alkali, etc.). - Before soldering, be sure to preheat components. - The preheating temperature should be set so that the temperature difference between the solder temperature and chip temperature does not exceed 150°C. - Soldering corrections after mounting should be within the range of the conditions determined in the specifications. If overheated, a short circuit, performance deterioration, or lifespan shortening may occur. - When embedding a printed circuit board where a chip is mounted to a set, be sure that residual stress is not given to the chip due to the overall distortion of the printed circuit board and partial distortion such as at screw tightening portions. - Self heating (temperature increase) occurs when the power is turned ON, so the tolerance should be sufficient for the set thermal design. - Carefully lay out the coil for the circuit board design of the non-magnetic shield type. A malfunction may occur due to magnetic interference. - Use a wrist band to discharge static electricity in your body through the grounding wire. - Do not expose the products to magnets or magnetic fields. - Do not use for a purpose outside of the contents regulated in the delivery specifications. - The products listed on this catalog are intended for use in general electronic equipment (AV equipment, telecommunications equipment, home appliances, amusement equipment, computer equipment, personal equipment, office equipment, measurement equipment, industrial robots) under a normal operation and use condition. The products are not designed or warranted to meet the requirements of the applications listed below, whose performance and/or quality require a more stringent level of safety or reliability, or whose failure, malfunction or trouble could cause serious damage to society, person or property. If you intend to use the products in the applications listed below or if you have special requirements exceeding the range or conditions set forth in the each catalog, please contact us. - (1) Aerospace/aviation equipment (8) Public information-processing equipment - (2) Transportation equipment (cars, electric trains, ships, etc.) - (3) Medical equipment - (9) Military equipment - (10) Electric heating apparatus, burning equipment - (4) Power-generation control equipment (11) Disaster prevention/crime prevention equipment - (5) Atomic energy-related equipment - (12) Safety equipment - (6) Seabed equipment (13) Other applications that are not considered general-purpose (7) Transportation control equipment applications When designing your equipment even for general-purpose applications, you are kindly requested to take into consideration securing protection circuit/device or providing backup circuits in your equipment. (4/4) Please be sure to request delivery specifications that provide further details on the features and specifications of the products for proper and safe use. Please note that the contents may change without any prior notice due to reasons such as upgrading. 20181011 cmf_commercial_power_acp3225_en.fm
Updated at June 5, 2026
TDK Corporation is a globally recognized leader in electronic components and magnetic materials. Founded in 1935 to commercialize ferrites, the Tokyo-based company has evolved into a comprehensive manufacturer of high-performance passive components, sensors, and power electronics. TDK’s advanced materials technology serves as the foundation for its extensive portfolio, driving innovation across automotive, industrial, consumer electronics, and communication technologies. Our selection of TDK components heavily features their industry-leading passive components, with a primary focus on magnetics. TDK excels in manufacturing reliable inductive solutions, offering a vast array of power inductors and RF inductors optimized for demanding power management and high-frequency applications. Furthermore, their expertise in electromagnetic compatibility is showcased through a comprehensive range of EMC and RFI suppression products. This includes common mode chokes, power line filters, and specialized shielding materials designed to ensure superior signal integrity in complex designs. Beyond inductors and filtering components, TDK provides robust circuit protection and sensing solutions essential for modern engineering. The portfolio includes precision temperature sensing and compensation NTC thermistors, alongside TVS varistors and inrush current limiting components that safeguard sensitive electronics. Complemented by fixed value inductors, supercapacitors, and charging coils, TDK's versatile product offering delivers the reliability and performance required for sophisticated circuit design.
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