Size Dimen­sions L
(mm)
W
(mm)
H
(mm)
Mount
0603
1.6 0.85 1.1 SMT
0805
2 1.2 1.2 SMT
1206
3.2 1.6 1.8 SMT
NEW 1210
3.2 2.5 2.4 SMT
1812
4.5 3.2 2.8 SMT

Characteristics

  • Current compensated data line filter
  • High common mode noise suppression at high frequencies
  • Small influence on high speed signals through winding symmetry
  • Climatic category 40/105/21 (Size 0603)
  • Climatic category 40/125/21 (Size 0805/1206/1812)
  • Reference Designs
  • RD22 GB PoE+-Ethernet-USB“ adapter for industrial use with an EMC perspective

Applications

  • USB 2.0
  • IEEE 1394 (Firewire)
  • LVDS
  • High Speed Data Lines
  • LAN
  • Size 1812: recommended for CAN bus and CAN FD

One Pair is all you need.

The WE-LAN AQ is a LAN transformer manufactured by a fully automated production process.

Video and more

Products

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0603
0805
1206
1210
1812
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Order Code
Data­sheet
Simu­lation
Downloads
Status
Winding Style
L (µH)
Z @ 10 MHz (Ω)
Z @ 100 MHz (Ω)
IR (mA)
RDC max. (Ω)
VR (V)
VT (V (AC))
Design Kit
Filter Stick
Filter Bag
Samples
744230220
bifilar, 0.027 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.027 µH
Impedance @ 100 MHz 22 Ω
Rated Current 800 mA
DC Resistance 0.08 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744230450
bifilar, 0.056 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.056 µH
Impedance @ 100 MHz 45 Ω
Rated Current 650 mA
DC Resistance 0.11 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744230900
bifilar, 0.134 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.134 µH
Impedance @ 100 MHz 90 Ω
Rated Current 550 mA
DC Resistance 0.145 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744230121
bifilar, 0.146 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.146 µH
Impedance @ 100 MHz 120 Ω
Rated Current 450 mA
DC Resistance 0.175 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744230181
bifilar, 0.22 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.22 µH
Impedance @ 100 MHz 180 Ω
Rated Current 400 mA
DC Resistance 0.21 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744230251
bifilar, 0.279 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.279 µH
Impedance @ 100 MHz 250 Ω
Rated Current 350 mA
DC Resistance 0.28 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231061
bifilar, 0.088 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.088 µH
Impedance @ 100 MHz 67 Ω
Rated Current 400 mA
DC Resistance 0.25 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231091
bifilar, 0.131 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.131 µH
Impedance @ 100 MHz 90 Ω
Rated Current 370 mA
DC Resistance 0.3 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231121
bifilar, 0.166 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.166 µH
Impedance @ 100 MHz 120 Ω
Rated Current 370 mA
DC Resistance 0.3 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231181
bifilar, 0.252 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.252 µH
Impedance @ 100 MHz 180 Ω
Rated Current 330 mA
DC Resistance 0.35 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231261
bifilar, 0.367 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.367 µH
Impedance @ 100 MHz 260 Ω
Rated Current 300 mA
DC Resistance 0.4 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744231371
bifilar, 0.478 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.478 µH
Impedance @ 100 MHz 370 Ω
Rated Current 280 mA
DC Resistance 0.45 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232090
bifilar, 0.111 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.111 µH
Impedance @ 100 MHz 90 Ω
Rated Current 370 mA
DC Resistance 0.3 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232161
bifilar, 0.196 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.196 µH
Impedance @ 100 MHz 160 Ω
Rated Current 340 mA
DC Resistance 0.4 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232261
bifilar, 0.304 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.304 µH
Impedance @ 100 MHz 260 Ω
Rated Current 310 mA
DC Resistance 0.5 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232601
bifilar, 0.3621 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.3621 µH
Impedance @ 100 MHz 600 Ω
Rated Current 260 mA
DC Resistance 0.8 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232102
bifilar, 1.263 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 1.263 µH
Impedance @ 100 MHz 1000 Ω
Rated Current 230 mA
DC Resistance 1 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232222
bifilar, 2.578 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 2.578 µH
Impedance @ 100 MHz 2200 Ω
Rated Current 200 mA
DC Resistance 1.2 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235900
bifilar, 0.3 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 0.3 µH
Impedance @ 100 MHz 90 Ω
Rated Current 2000 mA
DC Resistance 0.05 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235601
bifilar, 1 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 1 µH
Impedance @ 100 MHz 600 Ω
Rated Current 1200 mA
DC Resistance 0.1 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235801
bifilar, 1.3 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 1.3 µH
Impedance @ 100 MHz 800 Ω
Rated Current 1000 mA
DC Resistance 0.12 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235110
bifilar, 11 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 11 µH
Impedance @ 100 MHz 5000 Ω
Rated Current 450 mA
DC Resistance 0.8 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235220
bifilar, 22 µH, –
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 22 µH
Impedance @ 100 MHz 8000 Ω
Rated Current 250 mA
DC Resistance 2.65 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235510
bifilar, 51 µH, 3000 Ω
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 51 µH
Impedance @ 10 MHz 3000 Ω
Rated Current 200 mA
DC Resistance 1 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235101
bifilar, 100 µH, 5000 Ω
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 100 µH
Impedance @ 10 MHz 5000 Ω
Rated Current 150 mA
DC Resistance 2 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744232101
bifilar, 105.3 µH, 6000 Ω
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 105.3 µH
Impedance @ 10 MHz 6000 Ω
Rated Current 90 mA
DC Resistance 5.5 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744235251
bifilar, 250 µH, 10000 Ω
Simu­lation
Status Active i | Production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 250 µH
Impedance @ 10 MHz 10000 Ω
Rated Current 200 mA
DC Resistance 1.6 Ω
Rated Voltage 60 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744234510
bifilar, 51 µH, 2800 Ω
Simu­lation
Status New i | Product is new in our portfolio and production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 51 µH
Impedance @ 10 MHz 2800 Ω
Rated Current 400 mA
DC Resistance 1.1 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag
744234101
bifilar, 100 µH, 5500 Ω
Simu­lation
Status New i | Product is new in our portfolio and production is active. Expected lifetime: >10 years.
Winding Style bifilar 
Inductance 100 µH
Impedance @ 10 MHz 5500 Ω
Rated Current 200 mA
DC Resistance 3 Ω
Rated Voltage 50 V
Insulation Test Voltage 125 V (AC)
Design Kit
Filter Stick
Filter Bag

Highest reliability in terms of

  • EMC compatibility
  • Solderability
  • Humidity
  • Temperature influences

While the WE-CNSW series can work up to USB 2.0 interfaces, the WE-CNSW HF was designed to have wider frequency band to be able to work with the newest high-speed interfaces.

Thanks to the fully automated process, a high degree of winding symmetry and constantly high quality can be achieved. The winding symmetry ensures low parasitic effects and therefore high signal integrity.

Common and Differential Mode Behavior

common mode component

When the common mode component of a signal tries to pass through the choke, it encounters a high impedance. This is caused by the magnetization of the core and the resulting mutual inductance in the coil.

differential mode

In contrast to the common mode behavior, the differential mode signal will see almost no impedance, which can be explained by the magnetic field compensation in the core. If the core is not magnetized, there is no mutual inductance so that the useful signal can pass through.

Speed up your design-in process!

The following tools and libraries make component search and selection easier for you

The online platform for easy component selection, simulation and design-in with high-precision component and circuit models.

  • Common Mode Attenuation and Impedance
  • Differential Mode Attenuation and Impedance
  • Temperature Derating
  • EDA models: Altium, Cadstar, Cadence and Eagle
  • CAD files: IGS and STP
  • S-Parameter, measured with 4 ports and high accuracy equipment
  • Pspice
  • LTspice

More Tools and Support

With the Würth Elektronik Application Guide, you can find useful information about interfaces like USB, Ethernet, LVDS and a few more.

Or use one of the various ways to get in touch with us. Feel free to contact us with your questions. Our technical specialists will be happy to help and advise you.


temperature derating curve of WE-CNSW

How to interpret the temperature derating curve?

Check the data sheets for operating temperature. All derating curves for our CMC can be found in REDEXPERT.

TR = Rated Temperature
Tmax = Upper limit of the operating temperature and max. temperature allowed
ΔT = Tmax – TR

Example of use:
The maximum abient temperature with maximum current capability is 85 °C over this temperature the current capabilities sink. For a higher ambient temperature the maximum current can be read easily from the derating curve with the help of the chart marker.


Bifilar winding shows the lowest attenuation in differential mode. These chokes are recommended for data lines, where a high isolation is not needed and some high speed signals are involved.  Girl in a jacket Sectional winding shows the highest attenuation in differential mode. This chokes are recommended for power lines, where a high isolation is mandatory, and the power delivery is happening at low frequency.

 


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#askLorandt explains: Influence of a Common Mode Choke to the noise on the data line