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

    YAGEO Introduces C0G Flexible Termination Automotive MLCCs

    SCHURTER Releases SMT Micro Switch for Compact HMIs

    binder Releases Tool‑Tightenable M12 Connectors for Improved Reliability

    Vishay Introduced Thin Film Submount Platform for Optical and RF Modules

    Murata Introduces Crystal and NTC Set for Automotive UWB Timing

    Kyocera Developed Multilayer Ceramic Core Substrate for AI Packages

    Modeling Fringing Field Losses in Inductors & Transformers

    YMIN Introduces Polymer Tantalum Capacitors for AI Server SSDs

    Littelfuse Expands High-Voltage TVS Diodes

    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

    Modeling Fringing Field Losses in Inductors & Transformers

    Why Power Inductors Use a Ferrite Core With an Air Gap

    Transformer-Based Power-Line Harvester Magnetic Design

    Thermal Modeling of Magnetics

    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

    Enabling Software‑Defined Vehicle Architectures: Automotive Ethernet and Zonal Smart Power

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • DossiersNew
  • Suppliers
    • Who is Who
  • PCNS
    • PCNS 2025
    • PCNS 2023
    • PCNS 2021
    • PCNS 2019
    • PCNS 2017
  • 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

    YAGEO Introduces C0G Flexible Termination Automotive MLCCs

    SCHURTER Releases SMT Micro Switch for Compact HMIs

    binder Releases Tool‑Tightenable M12 Connectors for Improved Reliability

    Vishay Introduced Thin Film Submount Platform for Optical and RF Modules

    Murata Introduces Crystal and NTC Set for Automotive UWB Timing

    Kyocera Developed Multilayer Ceramic Core Substrate for AI Packages

    Modeling Fringing Field Losses in Inductors & Transformers

    YMIN Introduces Polymer Tantalum Capacitors for AI Server SSDs

    Littelfuse Expands High-Voltage TVS Diodes

    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

    Modeling Fringing Field Losses in Inductors & Transformers

    Why Power Inductors Use a Ferrite Core With an Air Gap

    Transformer-Based Power-Line Harvester Magnetic Design

    Thermal Modeling of Magnetics

    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

    Enabling Software‑Defined Vehicle Architectures: Automotive Ethernet and Zonal Smart Power

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • DossiersNew
  • Suppliers
    • Who is Who
  • PCNS
    • PCNS 2025
    • PCNS 2023
    • PCNS 2021
    • PCNS 2019
    • PCNS 2017
  • Events
No Result
View All Result
Passive Components Blog
No Result
View All Result

Phase-in Filter Impact to Radar Applications

2.5.2024
Reading Time: 3 mins read
A A

This article based on Knowles Precision Devices blog explains role of phase-in filter in radar application.

In the first article RF Components for Radar Application,  we provided an overview of the key functional units in radar, including duplexing, filtering, power amplification, waveform generation, low-noise amplification (LNA), receiving and analog-to-digital conversion (ADC). Since then, we’ve covered duplexing, switch filter banks and filters in detail: Filters in Radar Receivers.

RelatedPosts

Knowles Doubles Capacitance of its Class I Ceramic C0G Capacitors

Knowles Releases High Q Non-Magnetic X7R MLCCs for Medical Imaging

Knowles Unveils High-Performance Safety-Certified MLCC Capacitors

In this post, we’ll discuss what phase can tell us about filter performance in radar applications.

Characterizing phase is an important, and often overlooked, aspect of assessing filter performance. Phase performance can be described in several different ways, including:

Phase Linearity

Also known as group delay, phase linearity describes how the phase of the frequency components of a signal change in relation to the frequency itself. Conceptually, group delay is the negative derivative of the phase of a signal in relation to angular frequency. Since real-world operating conditions aren’t ideal, variations over frequency are expected. Within a small bandwidth, group delay remains near-constant. In many applications, flat group delay is a desirable characteristic, so it’s best to select filters with a linear phase response.

When steering a beam in a phased array, phase settings that are independent of frequency help maintain the correct beam position, even when frequencies shift. For example, in image processing or digital data transmission, filters with a linear phase response maintain the signal’s wave shape and avoid phase distortion, since all frequency components experience the same amount of delay. Modulation schemes 256-QAM and 1024-QAM also rely on phase accuracy to achieve the desired bit error ratio (BER).

Phase Stability Across a Range of Temperatures

Radar leverages electromagnetic energy to accurately measure distances. The frequency content of radar pulses can span upwards of one gigahertz (GHz) of bandwidth. Pulses must be treated the same across that bandwidth or you can expect distortion to cause inaccuracies in radar range measurements.

The flatness of group delay over temperature is particularly important in phased array systems and synthetic aperture radar (SAR), which is used for creating high-resolution images of the surface of the Earth and other planets. In addition to more accurate measurements, minimizing phase variability over temperature reduces calibration requirements.

Phase Length Repeatability

Along with the flatness of group delay, consistency—over variables like temperature and frequency—is important in scenarios where achieving an appropriate null depth involves amplitude and phase tracking. Consistency and repeatability positively contribute to signal coherence, image quality and measurement accuracy.

Temperature-stable ceramics and precision thin film processes can minimize phase variation over temperature and drive repeatability in phase and frequency metrics from part to part and batch to batch.

At Knowles Precision Devices, we measure phase over environmental conditions as part of our acceptance test protocol (ATP) for all custom filters to ensure a high-quality product. Talk to an engineer.

Related

Source: Knowles Precision Devices

Recent Posts

Vishay Introduced Thin Film Submount Platform for Optical and RF Modules

30.4.2026
8

Exxelia Introduces SMD High‑Voltage Mica Capacitors

28.4.2026
22

YAGEO Introduces High Rel MLCCs Beyond MIL-Spec Limits

16.4.2026
61

KYOCERA AVX MIL-PRF-32535 BME NP0 MLCCs Approved to the DLA QPD

16.4.2026
33

ECIA March 2026 Industry Pulse Points to Best Sales Climate in Five Years

13.4.2026
62

Exxelia Releases Updated Microwave Materials and Frequency Tuning Catalogues

8.4.2026
19

TDK Releases Ultra‑small EMI Noise Suppression Filters

8.4.2026
29

Molex Completes Acquisition of Smiths Interconnect, Expanding Portfolio of High-Reliability Connectivity Solutions

1.4.2026
16

New J‑STD‑075B Standard Elevates Process Sensitivity Classification for Passive and Solid-State Components

27.3.2026
70

Upcoming Events

May 5
16:00 - 17:00 CEST

Understanding and Selecting Capacitors – Fundamentals, Technologies and Latest Trends

May 7
17:00 - 18:00 CEST

From Grid to Motion: How Industrial Electrification is Redefining Power System Design

May 12
8:00 - 15:00 CEST

ESCC Space Splice connectors

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
  • MLCC and Ceramic Capacitors

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

    0 shares
    Share 0 Tweet 0
  • What Electronics Engineer Needs to Know About Passive Low Pass Filters

    0 shares
    Share 0 Tweet 0
  • Capacitor Charging and Discharging

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

    3 shares
    Share 3 Tweet 0
  • MLCC Case Sizes Standards Explained

    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
  • PCNS

© 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