© Fraunhofer HIGH RESOLUTION ULTRASOUND GONIOMETER Enabling versatile acoustic angular measurements.

Slides:



Advertisements
Similar presentations
EPOCH 1000 Series Procedure Conventional Angle Beam Calibration
Advertisements

A high level inspection method with a handy instrument
Chapter3 Pulse-Echo Ultrasound Instrumentation
Target Test Diagnostics Richard Brownsword Engineering, Rutherford Appleton Laboratory.
Wave propagation via laser ultrasound IR laser focused on 19 mm line Laser line source.
Foundations of Medical Ultrasonic Imaging
NE 110 – Introduction to NDT & QA/QC
INSPECTION OF CASTINGS SEVERAL METHODS VISUAL OPTICAL - FOR SURFACE DEFECTS SUBSURFACE AND INTERNAL DEFECTS THROUGH NDTs & DTs PRESSURE TIGHTNESS OF VALVES.
Microscopy Lecture I.
Elizabeth Merten and Fumio Ohuchi University of Washington, Seattle Department of Materials Science & Engineering.
إعداد : أ. بلسم فهد صوفي 1 Ultrasound in Medicine Ch.3 Ultrasound pictures of the body.
إعداد : أ. بلسم فهد صوفي،،،المصدر:محاضرات د.حنان 1 Ultrasound in Medicine Ch.4 Ultrasound pictures of the body.
“ULTRASONIC SYSTEM OF DISTANT DETERMINATION COORDINATES”
ECE 501 Introduction to BME
Ultrasonic Nonlinear Imaging- Tissue Harmonic Imaging.
Echoes. Reflection  The reflection of sound waves applies to frequencies above human hearing. 20 kHz is human maximum20 kHz is human maximum Bats can.
Microscopy Techniques for Biomaterial Characterization: A Primer Prabhas V. Moghe Lecture 3 September 21, 1999 RU CBE 533 or BME 553; NJIT BME 698.
Thermo-elastic properties characterization by photothermal microscopy J.Jumel,F.Taillade and F.Lepoutre Eur. Phys. J. AP 23, Journal Club Presentation.
Ultrasound – Physics & Advances
Advanced NDE Technologies for Quality Control November 9 th, 2012 Dr. Jeong Na Technology Leader NDE Group 1250 Arthur E. Adams Drive Columbus, OH
THE ULTRASOUND IMAGE: GENERATION AND DISPLAY
Tweez 200si System Aresis Advanced Research Instrumentation Solutions.
Ultrasound Physics Sound is a mechanical, longitudinal wave that travels in a straight line Sound requires a medium through which to travel Ultrasound.
Ultrasound T1, T3, T4, T6 April 27, 2013.
Ultrasonic Sensor Made By: 1.Hadeer Radwan 2.Alaa Mustafa 3.Amany Amr.
Objective To study the effect of sub surface defects in surface roughness monitoring through ultrasonic flaw detector. To study the sizing of defects.
Doppler echocardiography & Magnetic Resonance Imaging.
Acousto optic modulators Additional details relevant for servos.
RADAR Detection of Extensive Air Showers Nils Scharf III. Physikalisches Institut A Bad Honnef Nils Scharf III. Physikalisches Institut A Bad.
TIRF Total Internal Reflection Fluorescence Microscopy specialized fluorescence microscopy technique specifically images a very thin optical section (50-250nm)
Fiber-Optic Accelerometer Using Wavefront-Splitting Interferometry Hsien-Chi Yeh & Shulian Zhang July 14, 2006.
KeyWords: radiation, diagnosis, ultrasound, CAT scanners, endoscopes, non-ionising radiation P3 topic 1 (part i) Radiation in treatment and medicine This.
Building Three-Dimensional Images Using a Time-Reversal Chaotic Cavity
10/20/2015Copyright © 2008 Ballios, Dow, Vogtmann, Zofchak.
The Microscope The Microscope. The Microscope ► in the microscope and development of related biological techniques made our present knowledge of cell.
Sarah Gillies Ultrasound Sarah Gillies
Introduction to the Physics Echocardiography Introduction to the Physics Echocardiography Jose L. Rivera, M.D. January 9, 2010.
Noncontact Modal Analysis of a Pipe Organ Reed using Airborne Ultrasound Stimulated Vibrometry May 25, 2004 Acoustical Society of America Meeting Thomas.
Properties of Matter and the Analysis of Glass
Ultrasonic İmaging.
8/12/2000Guy Crockford BI days New application software for SPS wire scanner controls G.Crockford SL/OP.
University of Kurdistan Food Quality Evaluation Methods (FQEM) Lecturer: Kaveh Mollazade, Ph.D. Department of Biosystems Engineering, Faculty of Agriculture,
Ultrasonic imaging parameters ~Attenuation coefficient Advisor: Pai-Chi Li Student: Mei-Ru Yang Wei-Ning Lee.
SIDE SCAN Theory and Operation
microscopy There are three well-known branches of microscopy:
Fundamental Ultrasound Principles Karen Potts Clinical Scientist Review date Jan 2010 Department of Medical Physics Kent & Canterbury.
Atacama Large Millimeter/submillimeter Array Karl G. Jansky Very Large Array Robert C. Byrd Green Bank Telescope Very Long Baseline Array ALMA Correlator.
TWI Ultrasonic Testing Part 1.
Use of Ultrasonic Phased Arrays for Examination of Austenitic Steel Welds Santanu Saha Technical Manager, Non-Destructive Testing Intertek INSPEC.
1 Opto-Acoustic Imaging 台大電機系李百祺. 2 Conventional Ultrasonic Imaging Spatial resolution is mainly determined by frequency. Fabrication of high frequency.
Ultrasonic Inspection (UT). Definitions Ultrasonic Testing (UT) - A nondestructive test method that uses high frequency sound energy to conduct examinations.
Light Microscope Terms and Practices.
UNIT-5 Measuring Machines and Metrology for Nano Measurements
DVM Summary and Acoustic Microscopy Imaging of Cu Sample
Good if: you can explain what is meant by ultrasound.
New Wire Scanner Calibration Bench Software
LIGHT!!!!.
Ultrasound.
Waves Jeopardy 1-1 What are Waves? 1-2 Properties of Waves 1-3
Non-Destructive testing of Weldments
Introduction What is a transducer? A device which converts energy in one form to another. Transducer Active Passive Generates its own electrical voltage.
How an Ultrasonic Range Finder works
Spatially Varying Frequency Compounding of Ultrasound Images
Photo acoustic tomography
Date of download: 3/3/2018 Copyright © ASME. All rights reserved.
Review of Ultrasonic Imaging
LIGHT MICROSCOPY basic
Ay 123 Lecture 9 - Helioseismology
Knowledge Organiser – Waves
VINNO E35 Introduction VINNO Technology (Suzhou) Co., LTD.
Presentation transcript:

© Fraunhofer HIGH RESOLUTION ULTRASOUND GONIOMETER Enabling versatile acoustic angular measurements

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Key Properties: Independently adjustable probe inclination angles Linear drive for various probe turn point distances Exchangeable probes Target mark lasers Fine alignment Microscope tripod Ultrasonic Hardware „PCUS ® pro Single“ LabVIEW-based control software

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Technical data: Probe angle range: 0 … 50° Drive resolution: 0,02° Linear range: -1 … 95 mm Drive resolution: 1 µm Ultrasound frequency range: 0.2 … 32 MHz Signal sampling: 100 MS/s, 14 Bit

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Operation Mode Example 1: Reflection Mode Classic Ultrasound Goniometer SenderReceiver Water Specimen

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Operation Mode Example 2: Refraction Mode Ultrasound Goniometer with separate turn points Sender Receiver Water Specimen

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Operation Mode Example 3: Scanning Mode Linear scanning with fixed probe angles Sender Receiver Water Specimen

© Fraunhofer High Resolution Ultrasound Goniometer HUGO III Examples of use Designed for measuring surface acoustic wave velocity dispersion HUGO III also enables angular immersion technique i. e. for Bulk wave experiments (refraction, wave conversion) Lamb wave experiments Custom modifications and enhancements on demand Further information is provided on our flyer