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quality Coilank AACM2012T901W2 Common Mode Choke Coil Filter for in USB2 0 LVDS and IEEE1394 Data Interfaces factory
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quality Coilank AACM2012T901W2 Common Mode Choke Coil Filter for in USB2 0 LVDS and IEEE1394 Data Interfaces factory
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Specifications
Insulation Resistance(IR):
10MΩ
Operating Temperature:
-40℃~+125℃
DC Resistance(DCR):
300mΩ
Voltage Rating - DC:
50V
Voltage Withstand:
125V
Mfr. Part #:
AACM2012T901W2
Package:
SMD-4P,2x1.2mm
Key Attributes
Model Number: AACM2012T901W2
Product Description

Product Overview

The AACM Series Common Mode Filters are designed for effective high-frequency noise suppression, particularly for radiation noise in signal cables. These filters utilize a common mode choke coil structure to suppress noise without degrading signal quality. They are qualified to AEC-Q200, halogen-free, and support lead-free soldering. The AACM series offers a small size and low profile, making them suitable for applications such as LVDS, USB2.0, and IEEE1394 interfaces. The products are 100% Lead (Pb) and RoHS compliant, ensuring reliability.

Product Attributes

  • Qualification: AEC-Q200
  • Material Compliance: Halogen Free, Lead (Pb) Free, RoHS Compliant
  • Soldering Support: Lead-free soldering
  • Polarity: No Polarity

Technical Specifications

Model Dimensions (L*W) (mm) Common Mode Impedance Z () @100MHz DC Resistance (m) Max. Irms (mA) Max. Rated Voltage Vdc (V) Max Withstanding Voltage Vdc (V) Max Insulation Resistance (M) Min. QTY/Reel
AACM1210 1.20.2 x 1.00.2 35 - 360 180 - 550 430 - 250 20 50 10 3000
AACM2012 2.00.2 x 1.20.2 30 - 1000 200 - 1000 450 - 100 50 125 10 2000
AACM2520 2.50.2 x 2.00.2 300 - 1000 250 - 500 400 - 240 50 125 10 2000
AACM3216 3.20.2 x 1.60.2 50 - 2200 250 - 1200 400 - 200 50 125 10 2000
AACM3225 3.20.2 x 2.50.2 90 - 2400 60 - 300 1000 - 640 50 125 10 1500
AACM4532 4.50.2 x 3.20.2 800 - 1400 50 - 100 2500 - 1000 50 125 10 500

Operating Conditions

  • Ambient Temperature: 25 (for test data reference)
  • Operating Temperature Range: -40 to +125 (including self-temperature rise)
  • Maximum Part Temperature: Should not exceed 125 under worst-case operating conditions. Factors affecting part temperature include circuit design, component placement, PCB trace size and thickness, airflow, and other cooling provisions. Verification in the end application is recommended.

2506061750_Coilank-AACM2012T901W2_C49073920.pdf

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