Passive Components Blog
No Result
View All Result
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Common Mistakes in Flyback Transformer Specs

    Vishay Releases Miniature SMD Trimmers for Harsh Environments

    Würth Elektronik Releases Push-Button and Main Switches

    Littelfuse Unveils High-Precision TMR Angle Magnetic Sensors

    Stackpole Extends Voltage of High Temp Chip Resistors

    High Voltage MLCCs Meeting the Growing Demand for Efficiency in Power Conversion

    Bourns Releases High Power High Ripple Chokes

    KYOCERA AVX Releases Hermaphroditic WTW and WTB Connectors

    Radiation Tolerance of Tantalum and Ceramic Capacitors

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

    Understanding Inductor Dot Markings and Their Application in LTspice

    Accelerating Full Bridge LLC Resonant Converter Design with Frenetic AI

    Understanding Switched Capacitor Converters

    Coupled Inductors Circuit Model and Examples of its Applications

    Inductor Resonances and its Impact to EMI

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • Suppliers
    • Who is Who
  • Events
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Common Mistakes in Flyback Transformer Specs

    Vishay Releases Miniature SMD Trimmers for Harsh Environments

    Würth Elektronik Releases Push-Button and Main Switches

    Littelfuse Unveils High-Precision TMR Angle Magnetic Sensors

    Stackpole Extends Voltage of High Temp Chip Resistors

    High Voltage MLCCs Meeting the Growing Demand for Efficiency in Power Conversion

    Bourns Releases High Power High Ripple Chokes

    KYOCERA AVX Releases Hermaphroditic WTW and WTB Connectors

    Radiation Tolerance of Tantalum and Ceramic Capacitors

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

    Understanding Inductor Dot Markings and Their Application in LTspice

    Accelerating Full Bridge LLC Resonant Converter Design with Frenetic AI

    Understanding Switched Capacitor Converters

    Coupled Inductors Circuit Model and Examples of its Applications

    Inductor Resonances and its Impact to EMI

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • Suppliers
    • Who is Who
  • Events
No Result
View All Result
Passive Components Blog
No Result
View All Result

Murata Safety Ceramic Capacitor Solutions for EV Powertrains

20.11.2023
Reading Time: 7 mins read
A A

Modern EV powertrains require effective safety protection solutions. Safety capacitors are important part of the circuit protection designs. Murata product engineers for capacitors Rina Fujiwara and Christian Merkel introduce Murata safety ceramic capacitor solutions and compare its features in this article.

Safety capacitors can be found in on-board chargers (OBCs), traction inverters and DC-DC converters of EV powertrains, being employed for common mode filtering and isolation purposes.

RelatedPosts

High Voltage MLCCs Meeting the Growing Demand for Efficiency in Power Conversion

Murata Releases In-vehicle Compact Crystal in 2016 Size

Murata Announces Mass Manufacturing of World’s First 0402 47µF MLCC

Introduction

Safety rated capacitors are either across the line (class X) or line to chassis devices (class Y) that in the event of short circuit could cause fir or electric shock – as illustrated in Fig. 1.

Figure 1. safety capacitors classifications

X-class capacitors are used across the line where failure would not lead to an electrical shock. X-class capacitors are divided into sub-classes by its rated and pulse voltage. See Table 1.

Table 1. X-class safety capacitors classification

Y-class capacitors are used in “line-to-ground” applications where failure could lead to an electrical shock. It is also divided into sub-classes by their AC voltage and peak surge voltage ratings. See Table 2.

Table 2. Y-class safety capacitors classification

EV Powertrain Applications

Safety capacitors can be found in on-board chargers (OBCs), traction inverters and DC-DC converters of EV powertrains, being employed for common mode filtering and isolation purposes. Examples are shown in Figures 2. to 4. below.

Figure 2: Safety Certified Capacitors in OBC (On board chargers)
Figure 3: Safety Certified Capacitors in Inverter
Figure 4: Safety Certified Capacitors in DC-DC converter

Murata Safety Capacitor Solutions

Figure 5.: The DE6 series Class X1/Y2 capacitors from Murata

The engineering team at Murata has been developing capacitors for the automotive sector for many decades. Drawing on this long-standing experience and access to cutting-edge technology, the company is constantly expanding IEC60384-14 Y2-compliant AEC-Q200 qualified capacitors line up that are specifically optimised for EV deployment.

The Murata DE6 series capacitors (Figure 5.) offers a highly effective THT solution. Available in capacitance values from 100pF to 4.7nF, these 300VAC-rated Class X1/Y2 components are fully compliant with the IEC60384-14 international safety standard. They come in a though-hole packaging format with compact physical dimensions, and are capable of supporting higher temperature operation than film capacitors.

Murata’s KCA series of multi-layer ceramic capacitors (MLCCs) on Figure 6. and 7. can act as Y capacitors in DC lines (with a 1kVDC rating being supported) in addition to Y capacitors in AC lines. They have a 4mm creepage distance to prevent high voltage arcing occurring, in accordance with IEC60384-14.

Figure 6.: Murata’s KCA MLCC stacked ceramic capacitor series fits greater capacitance in a smaller space
Figure 7: The metal terminals incorporated into KCA series MLCCs

The high density construction of these units means that they have significantly smaller case sizes. This allows valuable board space and headroom to be saved. Their surface-mount configuration means that they are compatible with reflow soldering – which is highly advantageous from a production perspective, as there is no need to include an extra step for them to be mounted onto the PCB. KCA series capacitors also exhibit very low equivalent series resistance (ESR) and equivalent series inductance (ESL) figures and will significantly contribute to noise suppression activities – see Figure 8.

Figure 8.: ESL and ESR characteristics of the DE6 and KCA ceramic capacitor
Table 3. Overview of the Murata safety ceramic capacitor portfolio


Another major benefit of these stacked type MLCCs with metal bow construction is the elastic action of their metal terminals, which substantially reduces the stress put on the ceramic element. This product is not damaged even with a board deflection >5mm and solder cracks do not occur even with 2,000 heat cycles based on Murata test conditions (note that warranty is for 5mm and 1,000 cycles). The risk of a failure from vibration is also mitigated.

In addition to the two product series just described, Murata will be announcing a new family of 2kVDC rated MLCCs for 800V systems. These will enable higher voltage powertrains to be attended to, with 10mm creepage among their most notable features. 10mm of creepage distance will mean that IEC60384-14 requirements are met, assuming 800VDC as applied voltage. More details on this product will follow soon.

Conclusion

Safety capacitors have a vital role to play in EV systems – enabling EMI suppression, protection from voltage transients, etc. With powertrain voltages being raised while EV powertrains try to reach higher power/volume ratios and pursue elevated efficiencies, a new breed of components are going to be required.

Murata has shown that it is keeping pace with the technological progression being witnessed within the EV sector, and will continue to introduce new solutions that meet the expectations of vehicle manufacturers and their tier 1 systems integrators. 

Please contact Murata or refer to Murata website for more details.



Related

Recent Posts

Common Mistakes in Flyback Transformer Specs

15.8.2025
11

Littelfuse Unveils High-Precision TMR Angle Magnetic Sensors

13.8.2025
5

Stackpole Extends Voltage of High Temp Chip Resistors

13.8.2025
9

High Voltage MLCCs Meeting the Growing Demand for Efficiency in Power Conversion

12.8.2025
65

KYOCERA AVX Releases Hermaphroditic WTW and WTB Connectors

8.8.2025
10

Radiation Tolerance of Tantalum and Ceramic Capacitors

8.8.2025
63

TDK Releases Compact Polypropylene Film Capacitors for Resonant Topologies

7.8.2025
31

Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

6.8.2025
36

Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

6.8.2025
50

Knowles Unveils High-Performance Safety-Certified MLCC Capacitors

6.8.2025
40

Upcoming Events

Aug 27
17:00 - 18:00 CEST

Capacitor Assemblies for High-Power Circuit Designs

Sep 3
15:30 - 17:30 CEST

How to Choose Your Magnetic Supplier

Sep 22
September 22 @ 13:00 - September 25 @ 15:15 EDT

Pre Cap Visual Inspection per Mil-Std-883 (TM 2017)

Sep 30
September 30 @ 12:00 - October 2 @ 14:00 EDT

MIL-Std-883 TM 2010

Oct 17
12:00 - 14:00 EDT

External Visual Inspection per MIL-STD-883 TM 2009

View Calendar

Popular Posts

  • Buck Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Boost Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Flyback Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • LLC Resonant Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • What is a Dielectric Constant and DF of Plastic Materials?

    4 shares
    Share 4 Tweet 0
  • Ripple Current and its Effects on the Performance of Capacitors

    3 shares
    Share 3 Tweet 0
  • Dual Active Bridge (DAB) Topology Explained

    0 shares
    Share 0 Tweet 0
  • How to Design an Inductor

    0 shares
    Share 0 Tweet 0
  • MLCC Case Sizes Standards Explained

    0 shares
    Share 0 Tweet 0
  • MLCC and Ceramic Capacitors

    0 shares
    Share 0 Tweet 0

Newsletter Subscription

 

Passive Components Blog

© EPCI - Leading Passive Components Educational and Information Site

  • Home
  • Privacy Policy
  • EPCI Membership & Advertisement
  • About

No Result
View All Result
  • Home
  • Knowledge Blog
  • Premium Suppliers

© EPCI - Leading Passive Components Educational and Information Site

This website uses cookies. By continuing to use this website you are giving consent to cookies being used. Visit our Privacy and Cookie Policy.
Go to mobile version