OverviewAll applicationsCategoryE-MobilityApplicationCharging Station

Charging Station

Component selectionDesign tips

Characteristics

The market for electric vehicles is booming: more and more electric vehicles on the road means that a comprehensive and demand-oriented charging infrastructure for electric vehicles is becoming increasingly important. Whether at home, at work or on the road, an optimal and attractive range of charging options is indispensable. The long-term goal is to successfully integrate and establish electric mobility in our everyday lives.

Würth Elektronik has made it its business to help shape this future: From mobile charging cables (ICCPD) to wallboxes for the home and public charging stations (HPC).

Würth Elektronik develops and manufactures electronic and electromechanical components for a wide range of these applications. Swipe over the plusses, to learn more about electronic products insight charging station.

Top Sellers for Charging Station

WE-MAPI SMT Power Inductor

Characteristics

  • Magnetic iron alloy allows high rated currents
  • Compact design
  • Magnetically shielded
  • High current capability and handles high transient current spikes
  • Low acoustic noise and low leakage flux noise
  • AEC-Q 200 qualified

WE-HCF SMT High Current Inductor

Characteristics

  • Saturation current up to 125 A
  • Flat, round and litz wire version to optimize the DC & AC losses
  • Inductance values ranging from 0.7 µH to 680 µH
  • Low core losses (MnZn)
  • Magnetically shielded
  • Litz and round wire: base for SMT mount and coplanarity

WE-XHMI SMT Power Inductor

Characteristics

  • Flat wire coil for low copper losses
  • Composite core material allows high saturation currents
  • Compact design
  • Magnetically shielded
  • High current capability and handles high transient current spikes
  • Low leakage flux noise

WE-MPSB EMI Multilayer Power Suppression Bead

Characteristics

  • Specified peak current capability
  • Ultra low RDC
  • High rated current up to 10.5 A
  • Operating temperature: -55 °C to +125 °C
  • AEC-Q200 qualified

REDEXPERT loss simulation

Find the best inductor!

REDEXPERT has the world’s most accurate AC loss model, which even includes the DC-bias current. With dedicated DC-DC topologies or the generic loss simulator, you can accurately determine the AC and DC losses for your converter. The model includes the core material, shape and winding structure of the inductor. REDEXPERT recommends suitable inductors and allows you to add more filters to find the best inductor for your application.

Videos

How to choose the right coil type (inductor)?!