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A standing wave in a rectangular cavity resonator.

A resonator is a device or system that exhibits resonance or resonant behavior, that is, it naturally oscillates at some frequencies, called its resonant frequencies, with greater amplitude than at others. The oscillations in a resonator can be either electromagnetic or mechanical (including acoustic). Resonators are used to either generate waves of specific frequencies or to select specific frequencies from a signal. Musical instruments use acoustic resonators that produce sound waves of specific tones.

A cavity resonator, usually used in reference to electromagnetic resonators, is one in which waves exist in a hollow space inside the device. Acoustic cavity resonators, in which sound is produced by air vibrating in a cavity with one opening, are known as Helmholtz resonators.

Contents

[edit] Explanation

A physical system can have as many resonant frequencies as it has degrees of freedom; each degree of freedom can vibrate as a harmonic oscillator. Systems with one degree of freedom, such as a mass on a spring, pendulums, balance wheels, and LC tuned circuits have one resonant frequency. Systems with two degrees of freedom, such as coupled pendulums and resonant transformers can have two resonant frequencies. As the number of coupled harmonic oscillators grows, the time it takes to transfer energy from one to the next becomes significant. The vibrations in them begin to travel through the coupled harmonic oscillators in waves, from one oscillator to the next.

The term resonator is most often used for a homogeneous object in which vibrations travel as waves, at an approximately constant velocity, bouncing back and forth between the sides of the resonator. Resonators can be viewed as being made of millions of coupled moving parts (such as atoms). Therefore they can have millions of resonant frequencies, although only a few may be used in practical resonators. The oppositely moving waves interfere with each other to create a pattern of standing waves in the resonator. If the distance between the sides is d\,, the length of a round trip is 2d\,. In order to cause resonance, the phase of a sinusoidal wave after a round trip has to be equal to the initial phase so the waves will reinforce. So the condition for resonance in a resonator is that the round trip distance, 2d\,, be equal to an integral number of wavelengths \lambda\, of the wave:

2d = N\lambda,\qquad\qquad N \in \{1,2,3,\dots\}

If the velocity of a wave is c\,, the frequency is f = c / \lambda\, so the resonant frequencies are:

f = \frac{Nc}{2d}\qquad\qquad N \in \{1,2,3,\dots\}

So the resonant frequencies of resonators, called normal modes, are equally spaced multiples (harmonics) of a lowest frequency called the fundamental frequency. The above analysis assumes the medium inside the resonator is homogeneous, so the waves travel at a constant speed, and that the shape of the resonator is rectilinear. If the resonator is inhomogeneous or has a nonrectilinear shape, like a circular drumhead or a cylindrical microwave cavity, the resonant frequencies may not occur at equally spaced multiples of the fundamental frequency. They are then called overtones instead of harmonics. There may be several such series of resonant frequencies in a single resonator, corresponding to different modes of vibration.

[edit] Electromagnetic

An electrical circuit composed of discrete components can act as a resonator when both an inductor and capacitor are included. Oscillations are limited by the inclusion of a resistor, which will be present, even if not specifically included, due to the resistance of the inductor windings. Such resonant circuits are also called RLC circuits after the circuit symbols for the components.

A distributed-parameter resonator has capacitance, inductance, and resistance that cannot be isolated into separate lumped capacitors, inductors, or resistors. An example of this, much used in filtering, is the helical resonator.

A single layer coil (or solenoid) that is used as a secondary or tertiary winding in a Tesla coil or magnifying transmitter is also a distributed resonator.

[edit] Cavity resonators

A cavity resonator is a hollow conductor blocked at both ends and along which an electromagnetic wave can be supported. It can be viewed as a waveguide short-circuited at both ends (see Microwave cavity).

The cavity has interior surfaces which reflect a wave of a specific frequency. When a wave that is resonant with the cavity enters, it bounces back and forth within the cavity, with low loss (see standing wave). As more wave energy enters the cavity, it combines with and reinforces the standing wave, increasing its intensity.

[edit] Examples

RF cavities in the linac of the Australian Synchrotron are used to accelerate and bunch beams of electrons; the linac is the tube passing through the middle of the cavity.
An illustration of the electric and magnetic field of one of the possible modes in a cavity resonator.

The cavity magnetron is a vacuum tube with a filament in the center of an evacuated, lobed, circular cavity resonator. A perpendicular magnetic field is imposed by a permanent magnet. The magnetic field causes the electrons, attracted to the (relatively) positive outer part of the chamber, to spiral outward in a circular path rather than moving directly to this anode. Spaced about the rim of the chamber are cylindrical cavities. The cavities are open along their length and so they connect with the common cavity space. As electrons sweep past these openings they induce a resonant high frequency radio field in the cavity, which in turn causes the electrons to bunch into groups. A portion of this field is extracted with a short antenna that is connected to a waveguide (a metal tube usually of rectangular cross section). The waveguide directs the extracted RF energy to the load, which may be a cooking chamber in a microwave oven or a high gain antenna in the case of radar.

The klystron, tube waveguide, is a beam tube including at least two apertured cavity resonators. The beam of charged particles passes through the apertures of the resonators, often tunable wave reflection grids, in succession. A collector electrode is provided to intercept the beam after passing through the resonators. The first resonator causes bunching of the particles passing through it. The bunched particles travel in a field-free region where further bunching occurs, then the bunched particles enter the second resonator giving up their energy to excite it into oscillations. It is a particle accelerator that works in conjunction with a specifically tuned cavity by the configuration of the structures. On the beamline of an accelerator system, there are specific sections that are cavity resonators for RF.

The reflex klystron is a klystron utilizing only a single apertured cavity resonator through which the beam of charged particles passes, first in one direction. A repeller electrode is provided to repel (or redirect) the beam after passage through the resonator back through the resonator in the other direction and in proper phase to reinforce the oscillations set up in the resonator.

In a laser, light is amplified in a cavity resonator which is usually composed of two or more mirrors. Thus an optical cavity, also known as a resonator, is a cavity with walls which reflect electromagnetic waves (light). This will allow standing wave modes to exist with little loss outside the cavity.

[edit] Mechanical

Mechanical resonators are used in electronic circuits to generate signals of a precise frequency. These are called piezoelectric resonators, the most common of which is the quartz crystal. They are made of a thin plate of quartz with metal plates attached to each side, or in low frequency clock applications a tuning fork shape. The quartz material performs two functions. Its high dimensional stability and low temperature coefficient makes it a good resonator, keeping the resonant frequency constant. Second, the quartz's piezoelectric property converts the mechanical vibrations into an oscillating voltage, which is picked up by the plates on its surface, which are electrically attached to the circuit. These crystal oscillators are used in quartz clocks and watches, to create the clock signal that runs computers, and to stabilize the output signal from radio transmitters. Mechanical resonators can also be used to induce a standing wave in other medium. For example a multiple degree of freedom system can be created by imposing a base excitation on a cantilever beam. In this case the standing wave is imposed on the beam.[1] This type of system can be used as a sensor to track changes in frequency or phase of the resonance of the fiber. One application is as a measurement device for dimensional metrology.[2]

[edit] Acoustic

The most familiar examples of acoustic resonators are in musical instruments. Every musical instrument has resonators. Some generate the sound directly, such as the wooden bars in a xylophone, the head of a drum, the strings in stringed instruments, and the pipes in an organ. Some modify the sound by enhancing particular frequencies, such as the sound box of a guitar or violin. Organ pipes, the bodies of woodwinds, and the sound boxes of stringed instruments are examples of acoustic cavity resonators.

[edit] Automobiles

sport motorcycle, equipped with exhaust resonator, designated for the performance

The exhaust pipes in automobile exhaust systems are designed as acoustic resonators that work with the muffler to reduce noise, by making sound waves "cancel each other out"[1]. The "exhaust note" is an important feature for many vehicle owners, so both the original manufacturers and the after-market suppliers use the resonator to enhance the sound. In 'tuned exhaust' systems designed for performance, the resonance of the exhaust pipes is also used to 'pull' the combustion products out of the combustion chamber quicker.

[edit] Percussion instruments

In many keyboard percussion instruments, below the centre of each note is a tube, which is an acoustic cavity resonator, referred to simply as the resonator. The length of the tube varies according to the pitch of the note, with higher notes having shorter resonators. The tube is open at the top end and closed at the bottom end, creating a column of air which resonates when the note is struck. This adds depth and volume to the note. In string instruments, the body of the instrument is a resonator.

The tremolo effect of a vibraphone is obtained by a mechanism which opens and shuts the resonators.

[edit] Stringed instruments

String instruments such as the bluegrass banjo may also have resonators. Many five-string banjos have removable resonators, to allow the instrument to be used with resonator in bluegrass style, or without in folk music style. The term resonator, used by itself, may also refer to the resonator guitar.

The modern ten-string guitar, invented by Narciso Yepes, adds four string resonators to the traditional classical guitar. By tuning these resonators in a very specific way (C, Bb, Ab, Gb) and making use of their strongest partials (corresponding to the octaves and fifths of the strings' fundamental tones), the bass strings of the guitar now resonate equally with any of the 12 tones of the chromatic octave. The guitar resonator is a device for driving guitar string harmonics by an electromagnetic field. This resonance effect is caused by a feedback loop and is applied to drive the fundamental tones, octaves, 5th, 3rd to an infinite sustain.

[edit] See also

[edit] References and notes

  1. ^ M.B. Bauza, R.J Hocken, S.T Smith, S.C Woody, (2005), The development of a virtual probe tip with application to high aspect ratio microscale features, Rev. Sci Instrum, 76 (9) 095112  .
  2. ^ http://www.insitutec.com

20354 videos foundNext > 

How to select a Resonator Guitar and Bottleneck Slide for Blues

Information about selecting a National Guitar (Tricone or Biscuit Bridge Single Cone) or Dobro Guitar (Spider Bridge Single Cone) and finding a Bottleneck Slide .

Yuppy Blues - bottleneck resonator guitar

A bit of noodling around 12 bars on my Michael Palm resonator in Dropped-D Tuning. If you'd like to know more about playing slide in standard or dropped D tunings, check out the DVD I put together . Go to www.bottleneckguitar.com

Republic Tricone Resonator open D tuning slide guitar Amazing Grace

visit my music blog at tattooedheartsbrokenpromises.blogspot.com for video, audio and free downloads of my bands the past 25 years including The BRUISERS, NPD, Cadillac Hitmen, Death & Taxes and more. Recently picked up playing slide, thought I'd put a video up. Hope you enjoy it. (update Dec 2010) It is very humbling to hear so many comments from people who enjoy this video. I have to say, this is really basic playing, and anyone can do it with a little practice. There are a lot of guys on YouTube that play AMAZING slide, Kenny Lee Burgess, Deltablues4761, Bottleneck John and others. You can see them in my favorites that I subscribe to. You really should check these guys out, you'll love it. BTW, since this was recorded I have switched to fingerstyle. I recommend anyone starting out avoid the crutch I used with the pick and just jump in with both feet. (update JAN 2011) for those who are interested in the gear - the instrument is a Republic Tricone. The recording setup uses both an amplified track and a room mic. If you look closely you can see the neck mounted LACE pickup. This is a slim humbucker made specifically for this type of application. It gives what you would expect, a more electric blues sound than natural acoustic tone. This sounds really great through a cranked old National lap steel amp for instance. The electric signal is going into a Behringer V-Amp Pro where I'm adding reverb and tremelo and using a Fender tweed deluxe type of amp setting. The acoustic ...

resonator dobro ,Baritone 8 string guitar demo with ellis stompbox

more info on the ellis stomp box at www.ellisguitars.com.au more info on Ellis guitars at www.ellisguitars.com http jamesmichaelthompson.com Blending the sounds of Delta slide greats such as Blind Willie Johnson and Robert Johnson with his own eclectic past experience and training in classical guitar and heavy metal, Tompo is a 27 year old Australian blues musician with a big voice and a quietly endearing stage presence, using his guitars, blues harp, stomp-box and shakers to convey his heartfelt songs of 'good news blues.' James Michael Thompson sound has been honed and refined by the influences of Jeff Lang, John Lee Hooker, Lloyd Spiegel, Paul Simon and Skip James. Beginning to gig in earnest in late 2004, James Michael Thompson credits include debuting at the acclaimed Bridgetown Blues Festival in 2005; supports for 'The Bondi Cigars and Lloyd Spiegel at the Perth Blues Club, hosting the Melbourne Blues Appreciation Society's (MBAS) blues night at the Cornish Arms and demonstrating the one-of-a-kind Ellis Guitars Seven String Resonator at the Frankston Guitar Festival in 2005. James Michael Thompson has also performed alongside the likes of Collard, Greens and Gravy; The Black Sorrows and Guy Davis at the Mordialloc Music by the Bay; Queensland songsmiths Loren & Marcus Bancroft; as well as performing on the same bill as Michael Franti and Jamie Cullum at the West Coast Blues and Roots Festival. James Michael Thompson recorded his first EP 'Light Your Way' in 2005 ...

resonator blues

a little resonator guitar.

ROASTING PAN RESONATOR HOME MADE GUITAR.mov

ROASTING PAN RESONATOR - HOME MADE GUITAR

Resonator Blues - Bottleneck guitar

Playing my Michael Palm resonator to a home made backing track. In dropped D tuning. Drop into www.bottleneckguitar.com for a visit!

AlvaRezo - Homemade resonator guitar

I'd always wanted a resonator guitar to play slide on, but couldn't afford one. So a couple years ago I bought an old Alvarez classical guitar with a broken top and cracked headstock to convert into a resonator. The guitar cost me $20. I took lots of pictures thinking I might create a web page of the process, or something, but I never did. So, here's a slide show with narration. A video of me playing the guitar is tacked on at the end. The total cost of the end product was less than $100. Ingredients: One old busted-up Alvarez guitar One 9 inch resonator cone One biscuit bridge One tail piece One indoor grilling pan (cover plate) One cabinet handle Some plywood Lotsa' glue Unrealistic sense of what you can accomplish with your own two hands. Please let me know if you have any questions. I'd be glad to go into more details on certain aspects of the project. For more information on this instrument and other projects, go to deepcreekstrings.blogspot.com

Magnetic resonator piano demo

The magnetic resonator piano is a hybrid acoustic-electronic instrument which uses electromagnets to augment a grand piano. This instrument expands the piano's vocabulary to include infinite sustain, crescendos from silence, harmonics, and new timbres.

Resonator Neuronium

Resonator Neuronium Jomox/Jayemsonic - Tweaking neutrons Minidemo www.sequencer.de basically it has a sequencer (midi clockable) that controls 6 filters (self resonating), all filters FM each other and work as oscillators.

97 news items

 
AnnArbor.com
Mon, 21 May 2012 19:24:31 -0700

I have a sort of medium-quality "resonator" banjo, meaning that it is only loud enough to deafen a jackhammer operator at 100 yards. A really good Gibson resonator can actually blister paint. I wish I had me one of them there ones.
 
EE Times
Thu, 17 May 2012 07:23:22 -0700

s SX1243 is a fully integrated, low cost FSK/OOK radio transmitter designed to replace a surface acoustic wave (SAW)-based resonator transmitters in garage door openers, remote keyless entry (RKE) and other consumer remote control systems.
 
TheStreet.com (press release)
Wed, 16 May 2012 05:14:19 -0700

The SX1243 features a fractional-N phase lock loop (PLL), which delivers higher performance and more flexibility, while minimizing the BOM cost versus traditional SAW-based resonator designs. The part covers the frequency bands from 310 MHz to 450 MHz, ...
 
EE Herald
Sun, 20 May 2012 10:12:51 -0700

Semtech Corporation has expanded its RFIC platform with the new SX1243, a fully integrated FSK / OOK radio transmitter designed to replace a surface acoustic wave (SAW)-based resonator transmitters in garage door openers, remote keyless entry (RKE) and ...
 
MarketWatch (press release)
Wed, 09 May 2012 03:30:38 -0700

The IDT 4M series high-performance LVDS / LVPECL oscillators leverage IDT's patented CrystalFree pMEMS resonator technology, enabling IDT to rapidly factory-program the desired output frequency without the need to fine-tune expensive crystals.

ElectroIQ

ElectroIQ
Fri, 11 May 2012 13:13:18 -0700

May 11, 2012 -- Mixed-signal semiconductor supplier Integrated Device Technology, Inc. (IDT, NASDAQ: IDTI), introduced a piezoelectric micro electro mechanical system (MEMS) resonator technology that does not use crystals.
 
Gizmag
Sun, 20 May 2012 17:51:52 -0700

The mass sensor technology is based on development of nanoelectromechanical systems (NEMS) which oscillate at a very precise frequency through electromechanical interaction of an electronic oscillator and a mechanical resonator made up of a single ...

Mandolin Cafe

Mandolin Cafe
Sun, 20 May 2012 12:19:47 -0700

The resonator makes it a "jaminator." At workshops and parties I find myself surrounded by guitars (often resonators), pianos, harmonicas and bass, and the RM-1 just cuts above the rest, an option I learned from the players of the 20s like Vol Stevens ...
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