The goal of this project is to test frequency aspects of the ADF 4350 synthesizer using the EVAL-ADF4350 evaluation board.

Slides:



Advertisements
Similar presentations
A Stabilization Technique for Phase-Locked Frequency Synthesizers Tai-Cheng Lee and Behzad Razavi IEEE Journal of Solid-State Circuits, Vol. 38, June 2003.
Advertisements

3-D Computational Vision CSc Image Processing II - Fourier Transform.
Frequency modulation and circuits
Foundations of Medical Ultrasonic Imaging
System Block Diagram VCO As A Multiple Signal Oscillator 4 to 1 Power Combiner System Layout System Practical Operation – room 319 “To do” List Gantt.
Signal and System I Magnitude-phase representation of Fourier Transform Magnitude-phase representation of frequency response of LTI systems.
COMMUNICATION SYSTEM EEEB453 Chapter 3 (III) ANGLE MODULATION
ELEN 5346/4304 DSP and Filter Design Fall Lecture 8: LTI filter types Instructor: Dr. Gleb V. Tcheslavski Contact:
SYED SYAHRIL TRADITIONAL MUSICAL INSTRUMENT SIMULATOR FOR GUITAR1.
ICI mitigation in OFDM systems 2005/11/2 王治傑. 2 Reference Y. Mostofi, D.C. Cox, “ICI mitigation for pilot-aided OFDM mobile systems,” IEEE trans. on wireless.
AM/FM Receiver.
Physics 434 Module 5 1 Module 5 – Serial devices using VISA An application to measure capacitance.
Polar Loop Transmitter T. Sowlati, D. Rozenblit, R. Pullela, M. Damgaard, E. McCarthy, D. Koh, D. Ripley, F. Balteanu, I. Gheorghe.
Testing elements in a fast communication channel 100GB/s Midterm Presentation Spring 2010 Developers: Hanna Alam and Yousef Badran Project supervised by:
Chapter 3 – Angle Modulation
Chapter 6 FM Circuits.
 Distortion – the alteration of the original shape of a waveform.  Function of distortion analyzer: measuring the extent of distortion (the o/p differs.
High Speed, high common mode immunity communication interface Team May12-05 Chendong Yang Mengfei Xu Advisor: Nathan Neihart Client: RBC Medical Development.
Pulse Modulation 1. Introduction In Continuous Modulation C.M. a parameter in the sinusoidal signal is proportional to m(t) In Pulse Modulation P.M. a.
1 Timing System Timing System Applications. 2 Timing System components Counting mechanisms Input capture mechanisms Output capture mechanisms.
Technion – Israel Institute of Technology Department of Electrical Engineering Winter 2009 Instructor Amit Berman Students Evgeny Hahamovich Yaakov Aharon.
Ankit Jain B.Tech 5 th Sem (ECE) IIIT Allahabad. High Gain ( db) Low cross polarization Reasonable bandwidth, Fractional Bandwidth being at least.
Group/Presentation Title Agilent Restricted Month ##, 200X Using the New Agilent 81495A O/E with Infiniium Real-time Oscilloscopes.
COMPUTED ENVELOPE LINEARITY OF SEVERAL FM BROADCAST ANTENNA ARRAYS J. Dane Jubera 2008 NAB Engineering Conference.
Generation of FM Two methods of FM generation: A. Direct method:
Modulasi Sudut (2) Levy Olivia MT.
H IGH S PEED, HIGH COMMON MODE IMMUNITY COMMUNICATION INTERFACE Team May12-05 Chendong Yang Mengfei Xu Advisor: Nathan Neihart Client: RBC Medical Development.
Controlling the dynamics time scale of a diode laser using filtered optical feedback. A.P.A. FISCHER, Laboratoire de Physique des Lasers, Universite Paris.
CHAPTER 15 Special ICs. Objectives Describe and Analyze: Common Mode vs. Differential Instrumentation Amps Optoisolators VCOs & PLLs Other Special ICs.
The Wireless Channel Lecture 3.
1 BIEN425 – Lecture 8 By the end of the lecture, you should be able to: –Compute cross- /auto-correlation using matrix multiplication –Compute cross- /auto-correlation.
Sept. 25, 2006 Assignment #1 Assignment #2 and Lab #3 Now Online Formula Cheat Sheet Cheat SheetCheat Sheet Review Time, Frequency, Fourier Bandwidth Bandwidth.
1 Programming of FPGA in LiCAS ADC for Continuous Data Readout Week 3 Report Jack Hickish.
The World Leader in High-Performance Signal Processing Solutions Design a Clock Distribution for a WCDMA Transceiver System CSNDSP 2006 Session: B.11 Systems.
Network Analyzers From Small Signal To Large Signal Measurements
Eeng Chapter 5 AM, FM, and Digital Modulated Systems  Phase Modulation (PM)  Frequency Modulation (FM)  Generation of PM and FM  Spectrum of.
11/22/20151 Digital Filters. 11/22/20152 Time domain to Frequency Domain and vice versa Filter Characteristics.
Presented by: Sergey Volkovich Vladimir Dibnis Spring 2011 Supervisor: Mony Orbach.
University of Kansas 2004 ITTC Summer Lecture Series Network Analyzer Operation John Paden.
A Microwave Reflectometry Based On Amplitude Modulation onHT-7 Tokamak B.L.Ling, Institute of Plasma Physics, Chinese Academy of Sciences, P.O.Box 1126,
Final Presentation Winter 2010 Performed by: Tomer Michaeli Liav Cohen Supervisor: Shlomo Beer Gingold In collaboration with: characterization.
THE PRINT-SCAN Machine 3-D Spatial Mapping Device Nia Cook Stephen Tan Anil Rohatgi Senior Design Final Report Presentation ECE4006 Spring2005.
Receive Antenna Performance Comparison. Receive Antenna Monitoring The receive antenna was installed in its permanent location inside the chamber A spectrum.
8. Frequency Response of Amplifiers
Module 4 Forecasting Multiple Variables from their own Histories EC 827.
SCROD CAL buffer test results The buffer was fed with sinewave in range 150 – 750 MHz, and first the input and then the output were measured on scope for.
Topics 1 Specific topics to be covered are: Discrete-time signals Z-transforms Sampling and reconstruction Aliasing and anti-aliasing filters Sampled-data.
EE 3200: Principle of Communication Angle Modulation EE Principle of Communication- Dr Hassan Yousif Ahmed.
11. FM Receiver Circuits. FM Reception RF Amplifiers Limiters
Math – Introduction to Functions 1. Let’s look at a graph of fuel prices (in $ per liter) over time… 2.
1 Status report 2011/8/12 Atsushi Nukariya. 2 Progress ・ FPGA -> Revision is completed. -> Obtained data from front-end chip. ・ Software.
Testing elements in a fast communication channel 100GB/s Final Presentation Spring 2010 Developers: Hanna Alam and Yousef Badran Project supervised by:
Comparison Between AM and FM Reception. 21/06/20162 FM Receiver.
A function generator is usually a piece of electronic test equipment or software used to generate different types of electrical waveforms over a wide.
SUPERHETERODYNE SPECTRUM ANALYZER. TOPICS Superheterodyne spectrum analyzer – Basic architecture – Frequency resolution – Sweep time – Video section.
FUNCTION GENERATOR.
Angle Modulation Part 2 FM Bandwidth Power distribution of FM
EE 597G/CSE 578A Final Project
Generation & Detection of FM Application of FM
PART 3:GENERATION AND DETECTION OF ANGLE MODULATION
How to Select a PNA IFBW with Performance Comparable to an 8510
pocketVNA What is a Vector Network Analyzer?
RF Front End Radio Design- Simulations and Specifications
Phase Noise… How much is too much?
Crash Course on Clock Jitter
Selectivity / Channel Rejection
Microwave Synthesisers
Phase Noise… How much is too much?
Phase Noise… How much is too much?
Electronically Steered Antennas
Presentation transcript:

The goal of this project is to test frequency aspects of the ADF 4350 synthesizer using the EVAL-ADF4350 evaluation board.

In order to achieve the goal, we had to learn how to utilize the HP 8133A 3Ghz pulser to learn about the infiniium DSO80204B 6Ghz osiloscope.

We first needed to study theoretical square waves: 1 GHz, log scale (dB) MATLAB theoretical results: Scope’s practical results:

We examined the output signal in the time and frequency domain. Time domainFrequency domain 1.5 GHz1.8 GHz

In order to find a stabilization time constant of the PLL, we toggled between 2 frequencies and measured the variation time.

Low frequencies, high jump: 1.3 GHz to 650 MHz

Center frequencies, low jump: 1.8 GHz to 1.5 GHz

High frequencies, average jump: 2.25 GHz to 3.6 GHz

We concluded that: Beginning frequency (GHz)End frequency (GHz)Frequency gap (GHz)Time delay (nanosec)

We checked the linear frequency variation – the ability to generate signals whose frequency is changing in a controlled manner. Example:

Here are the results of the frequency sweep from the scope: Time domain:Frequency domain: 1 GHz1.1 GHz1.2 GHz1.3 GHz1.4 GHz 1.5 GHz

As can be seen in the image, the first harmony changes between 1GHz and 1.5 GHz during a period of 5msec:

We also tested other frequencies. The above is between 1.5 GHz and 2 GHz during a period of 5msec:

2. We can toggle between frequencies adequately. The toggling time rests approximately between 8 ns and 5 ns. 1. The VCO produces an adequate square wave for frequencies of over 800 MHz. Lower than 800MHz we’re getting into low frequency problems of the VCO. 3. The synthesizer is able to generate a linear frequency sweep.

1.If this VCO is used as a linear frequency sweep transmitter, it couldn’t perform sweeps of under 1msec spacing with current software. 2.The real limit of the device is measured to be between 5ns and 8ns, and therefore linear sweep spacing could be narrowed. 3.This VCO’s software cannot toggle between operation modes (such as linear sweep, frequency toggling etc.). If needed in the future it is possible to develop a new software.