Locale Icon
English
EngineerZone
EngineerZone
RF & Microwave
  • Log In
  • User
  • Site
  • Search
OR
Ask a Question
  • Forums

    Popular Forums

    • LTspice
    • Video
    • Power Management
    • RF & Microwave
    • Precision ADCs
    • FPGA Reference Designs

    Product Forums

    • Amplifiers
    • Clocks & Timers
    • Data Converters
    • Direct Digital Synthesis (DDS)
    • Energy
    • Interface and Isolation
    • MEMS Inertial Sensors
    • Power Management
    • Processors & DSP
    • Processors & Microcontrollers
    • Switches & Multiplexers
    • Sensors
    • Voltage References
    View All

    Application Forums

    • A2B Audio Bus
    • Audio
    • Automated Test Equipment (ATE)
    • Condition-Based Monitoring
    • Depth, Perception & Ranging Technologies
    • Embedded Vision Sensing Library
    • Motor Control Hardware Platforms
    • Precision Technology Signal Chains Library
    • Video
    • Wireless Sensor Networks Reference Library

    Design Center Forums

    • ACE Evaluation Software
    • ADEF System Platforms
    • Design Tools & Calculators
    • FPGA Reference Designs
    • Linux Software Drivers
    • Microcontroller no-OS Drivers
    • Power Studio Designer
    • Power Studio Planner
    • Reference Designs
    • Robot Operating System (ROS) SDK
    • Signal Chain Power (SCP)
    • Software Interface Tools
    • System Demonstration Platform (SDP) Support
  • Learn

    Highlighted Webinar

    Enabling New Space Missions: Commercial Space Screening Approach for Agile, High-Reliability Payloads

    As the Space market evolves and accelerates, mission designers need space-capable electronics that balance performance, reliability, and affordability...

    Places

    • ADI Academy
    • ADI Webinars
    • Video Annex
    • Virtual Classroom

    Libraries

    • 3D ToF Depth Sensing Library
    • Continuous-Wave CMOS Time of Flight (TOF) Library
    • Embedded Vision Sensing Library
    • Gigabit Multimedia Serial Link (GMSL) Library
    • Optical Sensing Library
    • Other Products Library
    • Precision Technology Signal Chains Library
    • Software Modules and SDKs Library
    • Supervisory Circuits Library
    • Wireless Sensor Networks Library

    Latest Webinars

    • Enabling New Space Missions: Commercial Space Screening Approach for Agile, High-Reliability Payloads
    • Understanding and Selecting RF Low Noise Amplifiers for Instrumentation, Phased Array and General Purpose Applications
    • Design Smarter with Compact, Low-Power Precision Current Source Signal Chains
    • Power Management Fundamentals II Session 6: Key Layout Considerations for Power
    • A 16T/16R X-Band Direct Sampling Phased Array Subsystem using Apollo MxFE
    View All Webinars
  • Community Hub

    Challenge Yourself!

      KCC's Quizzes AQQ297 about taking the right dose of medication

      1. First, the quote of the month: " All my life I though air is free until I bought a bag of chips " - unknown 2. New quiz AQQ297 about taking the right...

    View All

    What's Brewing

      Read a Blog, Take this Quiz for Another Chance to Win a Gift Card!

      Important: Read the blog first . The quiz questions are all based on the content from the blog: Mature, Not Old! The Longevity of 4 – 20 mA New...

    View All

    Places

    • Community Help
    • Analog Dialogue Quiz
    • Logic Lounge
    • Super User Program

    Resources

    • EZ Code of Conduct
    • EZ How To Help Articles
    • Getting Started Guide
    • ADI: Words Matter
    • Community Help Videos
    View All
  • Blogs

    Highlighted Blogs

    Charting Calm Seas: Tips for Robust RS-485 Data Transmission

    by Bryson Barney As our world becomes ever more dependent on flawless digital communication, engineers need to find new ways of charting calm seas when...

     

    Unpacking IEC 61508: Low Complexity versus Type A Made Simple

    IEC 61508 appears to include two very similar concepts. Type A and simple, which is referred to as “low complexity”. Anything that isn’t low complexity...

    Latest Blogs

    • Taming the AI Power Storm: Part 2 of 3
    • TIA Me Up, But Keep It Stable: Part 2 of 3
    • Celebrating Innovation: Top 3 EngineerZone Spotlight Blogs from 2025
    • Transforming Power: Transfer Techniques in SMPS: Part 3 of 4
    • Taming the Chaos: Correlated and Uncorrelated Sources in LTspice .NOISE Simulations: Part 3 of 3
    Read All Blogs

    ADI Blogs

    • EZ Spotlight
    • The Engineering Mind
  • ContentZone

    Visit ContentZone

    ContentZone

    Technical articles. Blogs. Videos. Your ADI content, all in one place.

    View ContentZone

    Featured Content

    Featured Content Title

    Blurb About Content

    View Content By Industry

    • Aerospace and Defense Systems
    • Automotive Solutions
    • Consumer Technology Solutions
    • Data Center Solutions
    • Energy Solutions
    • Healthcare Solutions
    • Industrial Automation Technology Solutions
    • Instrumentation and Measurement Solutions
    • Intelligent Building Solutions
    • Wireless Communication Solutions

    View Content By Technology

    • A2B Audio Bus
    • ADI OtoSense Predictive Maintenance Solutions
    • Dynamic Speaker Management
    • Gallium Nitride (GaN) Technology
    • Gigabit Multimedia Serial Link (GMSL)
    • Industrial Vision
    • Power Solutions
    • Precision Technology
    • RF
    • Sensor Interfaces
    • SmartMesh
RF & Microwave
RF & Microwave
Documents PLL Normalized phase noise floor and 1/f phase noise
  • Q&A
  • File Uploads
  • FAQs/ Docs
  • Members
  • Tags
  • Cancel
  • +Documents
  • +RF Switches & Attenuators: FAQ
  • +$product: FAQ
  • +1/f noise of the ADL5387: FAQ
  • -1/f phase noise: FAQ
    • PLL Normalized phase noise floor and 1/f phase noise
  • +24GHz FMCW Radar: FAQ
  • +AD608: FAQ
  • +AD8302: FAQ
  • +AD8306: FAQ
  • +AD8307: FAQ
  • +AD8309: FAQ
  • +AD8310: FAQ
  • +AD8314: FAQ
  • +AD8318: FAQ
  • +AD8319: FAQ
  • +AD831: FAQ
  • +AD8333: FAQ
  • +AD8339 : FAQ
  • +AD8339: FAQ
  • +AD8340: FAQ
  • +AD8342: FAQ
  • +AD8343: FAQ
  • +AD8345: FAQ
  • +AD8346: FAQ
  • +AD8347: FAQ
  • +AD8348 and ADL5387: FAQ
  • +AD8349: FAQ
  • +AD8361: FAQ
  • +AD8362: FAQ
  • +AD8363: FAQ
  • +AD8364: FAQ
  • +AD8366: FAQ
  • +AD8368: FAQ
  • +AD8370: FAQ
  • +AD8375: FAQ
  • +AD9854 DDS: FAQ
  • +AD9901: FAQ
  • +ADAR1000: FAQ
  • +ADAR2004: FAQ
  • +ADF4001: FAQ
  • +ADF4002: FAQ
  • +ADF41020: FAQ
  • +ADF4106: FAQ
  • +ADF4107: FAQ
  • +ADF4108: FAQ
  • +ADF4113: FAQ
  • +ADF4118: FAQ
  • +ADF4150: FAQ
  • +ADF4153: FAQ
  • +ADF4155: FAQ
  • +ADF4158: FAQ
  • +ADF4159: FAQ
  • +ADF4193: FAQ
  • +ADF41XX: FAQ
  • +ADF4208: FAQ
  • +ADF4212: FAQ
  • +ADF4252: FAQ
  • +ADF4350 and ADF4351: FAQ
  • +ADF4350: FAQ
  • +ADF4351: FAQ
  • +ADF4355-2: FAQ
  • ADF435x New boards
  • +ADF4360-0: FAQ
  • +ADF4360-1: FAQ
  • +ADF4360-5: FAQ
  • +ADF4360-6: FAQ
  • +ADF4360-7: FAQ
  • +ADF4360-8: FAQ
  • +ADF4360-9: FAQ
  • +ADF4360-x: FAQ
  • +ADF4372: FAQ
  • +ADF4377: FAQ
  • +ADF5355: FAQ
  • +ADF5356: FAQ
  • +ADF5709: FAQ
  • +ADF7021-N: FAQ
  • +ADF9010: FAQ
  • +ADG901: FAQ
  • +ADG904: FAQ
  • +ADG918: FAQ
  • +ADG936: FAQ
  • ADI Products Suitable for Software Defined Radio?
  • +ADI's RF/IF gain blocks: FAQ
  • +ADIsimRF: FAQ
  • +ADL5240_ADL5243: FAQ
  • +ADL5330: FAQ
  • +ADL5336: FAQ
  • +ADL5350: FAQ
  • +ADL5370: FAQ
  • +ADL5371: FAQ
  • +ADL5373: FAQ
  • +ADL5375-05: FAQ
  • +ADL5375: FAQ
  • +ADL5380: FAQ
  • +ADL5382: FAQ
  • +ADL5385: FAQ
  • +ADL5387: FAQ
  • +ADL5390: FAQ
  • +ADL5502: FAQ
  • +ADL5505: FAQ
  • +ADL5511: FAQ
  • +ADL5513 : FAQ
  • +ADL5513: FAQ
  • +ADL5519: FAQ
  • +ADL5535/6: FAQ
  • +ADL5569 : FAQ
  • +ADL5601/2: FAQ
  • +ADL5602: FAQ
  • +ADL5801 : FAQ
  • +ADL5801: FAQ
  • +ADL5802: FAQ
  • +ADL5902: FAQ
  • +ADL5903: FAQ
  • +ADL5904 : FAQ
  • +ADL5906: FAQ
  • +ADL5920: FAQ
  • +ADL5960 : FAQ
  • +ADL8101: FAQ
  • +ADL8106ACEZ: FAQ
  • +ADL8107 : FAQ
  • +ADL8120: FAQ
  • +ADMV4530: FAQ
  • +ADMV8526: FAQ
  • +ADPA1107: FAQ
  • +ADPA7009-2: FAQ
  • +ADRF6520: FAQ
  • +ADRF6620: FAQ
  • +ADRF6650 : FAQ
  • +ADRF6703: FAQ
  • +ADRF6755: FAQ
  • +Auxiliary DACs: FAQ
  • +Calculating VSWR: FAQ
  • +CyUSB PLL: FAQ
  • +DAC/IQ Modulator Combination: FAQ
  • +dc bias level: FAQ
  • +Decoupling(Bypass) and AC-Coupling Capacitors: FAQ
  • EV-TINYRAD24G Linux Drivers
  • +FAQ: ADRF6821
  • FAQ: in a PLL active loop filter, what effect does the op amp bias current have?
  • +Footprint for ADI components: FAQ
  • +Fractional-N PLLs: FAQ
  • +Gerber files: FAQ
  • +High Voltage VCOs: FAQ
  • +HMC Microwave Frequency Dividers: FAQ
  • +HMC Phase Frequency Detectors: FAQ
  • HMC PLL Design Tool V1.15
  • +HMC PLL's & PLLVCO: FAQ
  • +HMC-ABH241: FAQ
  • +HMC-C019: FAQ
  • +HMC-C030: FAQ
  • +HMC-T2220: FAQ
  • +HMC1013: FAQ
  • +HMC1020: FAQ
  • +HMC1048A: FAQ
  • +HMC1056: FAQ
  • +HMC1110: FAQ
  • +HMC1119 : FAQ
  • +HMC1119: FAQ
  • +HMC156A: FAQ
  • +HMC194: FAQ
  • +HMC241: FAQ
  • +HMC253: FAQ
  • +HMC270AMS8GE: FAQ
  • +HMC273MS10G: FAQ
  • +HMC292A: FAQ
  • +HMC305SLP4E: FAQ
  • +HMC322ALP4E: FAQ
  • +HMC346AMS8GE : FAQ
  • +HMC348: FAQ
  • +HMC399: FAQ
  • +HMC406MS8G: FAQ
  • +HMC414MS8GE?, HMC414: FAQ
  • +HMC440: FAQ
  • +HMC451: FAQ
  • +HMC457 : FAQ
  • +HMC463-Die : FAQ
  • +HMC542BLP4E: FAQ
  • +HMC550: FAQ
  • +HMC554A: FAQ
  • +HMC557A: FAQ
  • +HMC558A: FAQ
  • +HMC574: FAQ
  • +HMC587LC4B: FAQ
  • +HMC589: FAQ
  • +HMC595E: FAQ
  • +HMC611LP4: FAQ
  • +HMC624ALP4E: FAQ
  • +HMC625B: FAQ
  • +HMC634LC4 : FAQ
  • +HMC634LC4: FAQ
  • +HMC641ALP4E: FAQ
  • +HMC685LP4: FAQ
  • +HMC686LP4/686LP4E: FAQ
  • +HMC694LP4 : FAQ
  • +HMC703: FAQ
  • +HMC7044 : FAQ
  • +HMC710: FAQ
  • +HMC739 : FAQ
  • +HMC767: FAQ
  • +HMC769: FAQ
  • +HMC773ALC3B: FAQ
  • +HMC778LP6CE: FAQ
  • +HMC787: FAQ
  • +HMC807LP6CE: FAQ
  • +HMC830: FAQ
  • +HMC832LP6GE vs HMC830LP6GE: FAQ
  • +HMC833: FAQ
  • +HMC8412: FAQ
  • +HMC8415: FAQ
  • +HMC862: FAQ
  • +HMC904LC5: FAQ
  • +HMC905: FAQ
  • +HMC909: FAQ
  • +HMC915LP4ETR: FAQ
  • +HMC917LP3E: FAQ
  • +HMC939: FAQ
  • +HMC986A: FAQ
  • +Int-N PLL evaluation boards: FAQ
  • +IQ demodulator: FAQ
  • +IQ Modulators: FAQ
  • +LNA: FAQ
  • +LTC5507 : FAQ
  • +LTC5507: FAQ
  • +LTC5510: FAQ
  • +LTC5552 : FAQ
  • LTC5584 : FAQ
  • +LTC5584, LTC5599: FAQ
  • +LTC694x: FAQ
  • Matching Components for HMC1010
  • MAX1470: FAQ
  • +MAX1470EUI+_T1: FAQ
  • +MAX1471ATJ/V+: FAQ
  • +MAX1471EVKIT-433: FAQ
  • +MAX1473ETJ+: FAQ
  • +MAX1473EVKIT-315: FAQ
  • +MAX2014: FAQ
  • +MAX2016ETI+: FAQ
  • MAX2112: FAQ
  • +MAX2112CTI+: FAQ
  • +MAX2112EVKIT+: FAQ
  • +MAX2120: FAQ
  • +MAX21210ELD+: FAQ
  • MAX2121B: FAQ
  • +MAX2121BETI+: FAQ
  • +MAX2172ETL/V+TCBM: FAQ
  • +MAX2223 : FAQ
  • +MAX2223ETI+: FAQ
  • +MAX2306EVKIT: FAQ
  • +MAX2606EUT: FAQ
  • MAX2620: FAQ
  • +MAX2620EUA+: FAQ
  • +MAX2623EUA+: FAQ
  • +MAX2680EVKIT#: FAQ
  • +MAX2754: FAQ
  • +MAX2754EUA+: FAQ
  • MAX2769BETI/V+: FAQ
  • +MAX2769BETI/V+_T1: FAQ
  • +MAX2769CC/D+: FAQ
  • +MAX2769CETI+: FAQ
  • +MAX2769CEVKIT#: FAQ
  • +MAX2771 GUI: FAQ
  • MAX2771: FAQ
  • +MAX2771C/D+: FAQ
  • MAX2771ETI+: FAQ
  • +MAX2771ETI+T: FAQ
  • +MAX2771EVKIT#: FAQ
  • +MAX2771_/D+_A1: FAQ
  • MAX2870: FAQ
  • +MAX2870ETJ+: FAQ
  • MAX2871: FAQ
  • +MAX2871ETJ+: FAQ
  • +MAX2880 PLL EV KIT SOFTWARE: FAQ
  • +MAX2880ETP+: FAQ
  • +MAX2880EVKIT#: FAQ
  • +MAX4002EBL+: FAQ
  • +MAX4003EUA+: FAQ
  • +MAX41470: FAQ
  • +MAX41473: FAQ
  • MAX7033: FAQ
  • +MAX7033EUI+T: FAQ
  • +MAX7034AUI/V+: FAQ
  • +MAX7036GTP+: FAQ
  • +MAX7036GTP/V+: FAQ
  • +MAX7042ATJ+: FAQ
  • +MAX7042EVKIT: FAQ
  • +OP-AMP: FAQ
  • +PLL USB adapter board: FAQ
  • Recommended regulators for ADI PLLs and VCOs
  • +RF & Microwave: FAQ
  • +RF Connectors: FAQ
  • +RF Detector Overdrive: FAQ
  • +rms detector: FAQ
  • +S-Parameters: FAQ
  • +SC1894-EVK2400: FAQ
  • +SC1894A-00A00: FAQ
  • +SC1894A-00C13: FAQ
  • +SC2200-EVK1900: FAQ
  • +SC2200-EVK2400: FAQ
  • SC2200: FAQ
  • +Standard S-Parameter Files: FAQ

PLL Normalized phase noise floor and 1/f phase noise

Q.

What is the difference between the PLL normalized phase noise floor and a normalized 1/f noise number?

----------------------------------------------------------------------------------------------------------------------

A.

You may have noticed in the past few months we have broken out our PLL phase noise specifications into two separate specs - a normalized phase noise floor (PNSYNTH) and a Normalized 1/f Noise number (PN1_f). This was done to more accurately represent the PLL noise profile and allow a more equal comparison with competitors who are specifying PLL phase noise in a similar manner.

The normalized phase noise floor (sometimes called the PLL Figure of Merit or FOM) is calculated as before:

PNSYNTH = PNmeas - 10log(PFD) - 20log(N)

The difference is that we now widen out the loop bandwidth to 500kHz or greater and measure the phase noise (PNmeas) at an offset of 100kHz

or more to accurately capture the PLL noise floor. This has meant that our PNSYNTH numbers that we specify have improved in many cases.

This is reflected in the PLL selection tables and is in the process of being updated in all the older data sheets.

the new 1/f spec is calculated as

PN1_f = PNmeas - 10log(10kHz / foffset) - 20log(fRF / 1GHz)

where you input the measured phase noise (PNmeas) at an offset foffset. This formula just assumes a 10dB/decade 1/f noise slope and is normalized

to 1GHz as the 1/f noise scales with frequency.

 

For low PLL loop bandwidths (< 20kHz) the in-band phase noise will be entirely dominated by the 1/f noise. For newer PLL devices we are actively improving our 1/f performance through design - an example of this is the improvement in 1/f noise seen going from the ADF4350 to the ADF4351

(PN1_f goes from -111dBc/Hz to -116dBc/Hz). For wide loop bandwidths > 50kHz, the normalized noise floor becomes important.

ADIsimPLL V3.3 and higher now models both the noise floor and 1/f noise so you can accurately simulate PLL phase noise vs. PLL loop bandwidth.

I've pasted a plot comparing measured vs. simulated results for an older and newer version of ADIsimPLL. The reference noise was omitted in ADIsimPLL to more clearly see the effect of the 1/f noise.

 

I've also attached a simple Windows app which performs the above calculations for you - hope this is useful.

 

..Austin

 

Attachments:
  • Share
  • History
  • More
  • Cancel
 
Related Content
  • Explain how the ADF41XX datasheet PLL noise is specified?
    Sara Collins
    The phase noise in an PLL can be described as having 2 components as shown in figure.1, a flat noise component known as the PLL Noise Floor, and a flicker 1/f Noise known as the PLL 1/f Noise. Figure...
  • RE: ADF4159 Phase noise improvement
    aandrews
    Also see here for more info on PLL FOM PLL Normalized phase noise floor and 1/f phase noise
  • Comment on PLL Normalized phase noise floor and 1/f phase noise
    ADIApproved
    Hi, The value of normalized 1/f noise (PN1_f) is normalized to 1 GHz frequency and 10 kHz offset and it is usually in the specification table in the datasheet, in the Noise Characteristic section of...
 
Related Content
  • Explain how the ADF41XX datasheet PLL noise is specified?
    Sara Collins
    The phase noise in an PLL can be described as having 2 components as shown in figure.1, a flat noise component known as the PLL Noise Floor, and a flicker 1/f Noise known as the PLL 1/f Noise. Figure...
  • RE: ADF4159 Phase noise improvement
    aandrews
    Also see here for more info on PLL FOM PLL Normalized phase noise floor and 1/f phase noise
  • Comment on PLL Normalized phase noise floor and 1/f phase noise
    ADIApproved
    Hi, The value of normalized 1/f noise (PN1_f) is normalized to 1 GHz frequency and 10 kHz offset and it is usually in the specification table in the datasheet, in the Noise Characteristic section of...
analog-devices logo

About Analog Devices

  • Who We Are
  • Careers
  • Newsroom
  • What We Do (Signals+)
  • Investor RelationsExternalLink
  • Quality & Reliability
  • Sales and Distribution
  • What's New on Analog.com
  • Contact Us

Find Help

  • Support
  • Resources
  • WikiExternalLink
  • Analog Dialogue
  • ADI Developer PortalExternalLink

myAnalog

Interested in the latest news and articles about ADI products, design tools, training, and events?

Go to myAnalog
  • Instagram page
  • Twitter page
  • Linkedin page
  • Youtube page
  • Facebook
  • Legal and Risk
  • Accessibility
  • Privacy Policy
  • Privacy Settings
  • Cookie Settings

©2026 Analog Devices, Inc. All Rights Reserved

analog-devices

About Analog Devices

Down Up
  • Who We Are
  • Careers
  • Newsroom
  • What We Do (Signals+)
  • Investor RelationsExternalLink
  • Quality & Reliability
  • Sales and Distribution
  • What's New on Analog.com
  • Contact Us

Find Help

Down Up
  • Support
  • Resources
  • WikiExternalLink
  • Analog Dialogue
  • ADI Developer PortalExternalLink

myAnalog

Interested in the latest news and articles about ADI products, design tools, training, and events?

Go to myAnalog
Instagram page Facebook Twitter page Linkedin page Youtube page
  • Legal and Risk
  • Accessibility
  • Privacy Policy
  • Privacy Settings
  • Cookie Settings

©2026 Analog Devices, Inc. All Rights Reserved