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Xm Radio Amplifiers

September 28th, 2010 admin No comments

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Frequency Modulation

Theory

Suppose the baseband data signal (the message) to be transmitted is

and is restricted in amplitude to be

and the sinusoidal carrier is

where fc is the carrier’s base frequency and Ac is the carrier’s amplitude. The modulator combines the carrier with the baseband data signal to get the transmitted signal,

In this equation, is the instantaneous frequency of the oscillator and is the frequency deviation, which represents the maximum shift away from fc in one direction, assuming xm(t) is limited to the range 1.

Although it may seem that this limits the frequencies in use to fc f, this neglects the distinction between instantaneous frequency and spectral frequency. The frequency spectrum of an actual FM signal has components extending out to infinite frequency, although they become negligibly small beyond a point.

The harmonic distribution of a sine wave carrier modulated by a sine wave signal can be represented with Bessel functions – this provides a basis for a mathematical understanding of frequency modulation in the frequency domain.

Modulation index

As with other modulation indices, this quantity indicates by how much the modulated variable varies around its unmodulated level. It relates to the variations in the frequency of the carrier signal:

where is the highest frequency component present in the modulating signal xm(t), and is the Peak frequency-deviation, i.e the maximum deviation of the instantaneous frequency from the carrier frequency. If , the modulation is called narrowband FM, and its bandwidth is approximately . If , the modulation is called wideband FM and its bandwidth is approximately . While wideband FM uses more bandwidth, it can improve signal-to-noise ratio significantly.

With a tone-modulated FM wave, if the modulation frequency is held constant and the modulation index is increased, the (non-negligible) bandwidth of the FM signal increases, but the spacing between spectra stays the same; some spectral components decrease in strength as others increase. If the frequency deviation is held constant and the modulation frequency increased, the spacing between spectra increases.

Carson’s rule

A rule of thumb, Carson’s rule states that nearly all (~98%) of the power of a frequency-modulated signal lies within a bandwidth of

where , as defined above, is the peak deviation of the instantaneous frequency from the center carrier frequency .

Noise quieting

The noise power decreases as the signal power increases, therefore the SNR goes up significantly.

Bessel functions

The carrier and sideband amplitudes are illustrated for different modulation indices of FM signals. Based on the Bessel functions.

Modulation

index

Sideband

Carrier

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15

16

0.00

1.00

0.25

0.98

0.12

0.5

0.94

0.24

0.03

1.0

0.77

0.44

0.11

0.02

1.5

0.51

0.56

0.23

0.06

0.01

2.0

0.22

0.58

0.35

0.13

0.03

2.41

0

0.52

0.43

0.20

0.06

0.02

2.5

0.05

0.50

0.45

0.22

0.07

0.02

0.01

3.0

0.26

0.34

0.49

0.31

0.13

0.04

0.01

4.0

0.40

0.07

0.36

0.43

0.28

0.13

0.05

0.02

5.0

0.18

0.33

0.05

0.36

0.39

0.26

0.13

0.05

0.02

5.53

0

0.34

0.13

0.25

0.40

0.32

0.19

0.09

0.03

0.01

6.0

0.15

0.28

0.24

0.11

0.36

0.36

0.25

0.13

0.06

0.02

7.0

0.30

0.00

0.30

0.17

0.16

0.35

0.34

0.23

0.13

0.06

0.02

8.0

0.17

0.23

0.11

0.29

0.10

0.19

0.34

0.32

0.22

0.13

0.06

0.03

8.65

0

0.27

0.06

0.24

0.23

0.03

0.26

0.34

0.28

0.18

0.10

0.05

0.02

9.0

0.09

0.25

0.14

0.18

0.27

0.06

0.20

0.33

0.31

0.21

0.12

0.06

0.03

0.01

10.0

0.25

0.04

0.25

0.06

0.22

0.23

0.01

0.22

0.32

0.29

0.21

0.12

0.06

0.03

0.01

12.0

0.05

0.22

0.08

0.20

0.18

0.07

0.24

0.17

0.05

0.23

0.30

0.27

0.20

0.12

0.07

0.03

0.01

Implementation

FM signals can be generated using either direct or indirect frequency modulation.

Direct FM modulation can be achieved by directly feeding the message into the input of a VCO.

For indirect FM modulation, the message signal is integrated to generate a phase modulated signal. This is used to modulate a crystal controlled oscillator, and the result is passed through a frequency multiplier to give an FM signal.

A common method for recovering the information signal is through a Foster-Seeley discriminator.

Applications

Broadcasting

FM is commonly used at VHF radio frequencies for high-fidelity broadcasts of music and speech (see FM broadcasting). Normal (analog) TV sound is also broadcast using FM. A narrow band form is used for voice communications in commercial and amateur radio settings. The type of FM used in broadcast is generally called wide-FM, or W-FM. In two-way radio, narrowband narrow-fm (N-FM) is used to conserve bandwidth. In addition, it is used to send signals into space.

Hardware

FM is also used at intermediate frequencies by all analog VCR systems, including VHS, to record both the luminance (black and white) and the chrominance portions of the video signal. FM is the only feasible method of recording video to and retrieving video from magnetic tape without extreme distortion, as video signals have a very large range of frequency components from a few hertz to several megahertz, too wide for equalizers to work with due to electronic noise below 60 dB. FM also keeps the tape at saturation level, and therefore acts as a form of noise reduction, and a simple limiter can mask variations in the playback output, and the FM capture effect removes print-through and pre-echo. A continuous pilot-tone, if added to the signal as was done on V2000 and many Hi-band formats can keep mechanical jitter under control and assist timebase correction.

These FM systems are unusual in that they have a ratio of carrier to maximum modulation frequency of less than two; contrast this with FM audio broadcasting where the ratio is around 10,000. Consider for example a 6 MHz carrier modulated at a 3.5 MHz rate; by Bessel analysis the first sidebands are on 9.5 and 2.5 MHz, while the second sidebands are on 13 MHz and 1 MHz. The result is a sideband of reversed phase on +1 MHz; on demodulation, this results in an unwanted output at 61 = 5 Mhz. The system must be designed so that this is at an acceptable level.

Sound

FM is also used at audio frequencies to synthesize sound. This technique, known as FM synthesis, was popularized by early digital synthesizers and became a standard feature for several generations of personal computer sound cards.

An audio signal (top) may be carried by an AM or FM radio wave.

Radio

Main article: FM broadcasting

An example of frequency modulation. This diagram shows the modulating, or message, signal, xm(t), superimposed on the carrier wave, xc(t)

The modulated signal, y(t), produced from frequency-modulating xc(t) with xm(t).

Edwin Armstrong presented his paper: “A Method of Reducing Disturbances in Radio Signaling by a System of Frequency Modulation”, which first described FM radio, before the New York section of the Institute of Radio Engineers on November 6, 1935. The paper was published in 1936.

As the name implies, wideband FM (W-FM) requires a wider signal bandwidth than amplitude modulation by an equivalent modulating signal, but this also makes the signal more robust against noise and interference. Frequency modulation is also more robust against simple signal amplitude fading phenomena. As a result, FM was chosen as the modulation standard for high frequency, high fidelity radio transmission: hence the term “FM radio” (although for many years the BBC called it “VHF radio”, because commercial FM broadcasting uses a well-known part of the VHF band; in certain countries, expressions referencing the more familiar wavelength notion are still used in place of the more abstract modulation technique name).

FM receivers employ a special detector for FM signals and exhibit a phenomenon called capture effect, where the tuner is able to clearly receive the stronger of two stations being broadcast on the same frequency. Problematically however, frequency drift or lack of selectivity may cause one station or signal to be suddenly overtaken by another on an adjacent channel. Frequency drift typically constituted a problem on very old or inexpensive receivers, while inadequate selectivity may plague any tuner.

An FM signal can also be used to carry a stereo signal: see FM stereo. However, this is done by using multiplexing and demultiplexing before and after the FM process. The rest of this article ignores the stereo multiplexing and demultiplexing process used in “stereo FM”, and concentrates on the FM modulation and demodulation process, which is identical in stereo and mono processes.

A high-efficiency radio-frequency switching amplifier can be used to transmit FM signals (and other constant-amplitude signals). For a given signal strength (measured at the receiver antenna), switching amplifiers use less battery power and typically cost less than a linear amplifier. This gives FM another advantage over other modulation schemes that require linear amplifiers, such as AM and QAM.

Miscellaneous

Frequency modulation can be regarded as phase modulation where the carrier phase modulation is the time integral of the FM modulating signal.

Frequency-shift keying is the frequency modulation using only a discrete number of frequencies. Morse code transmission has been implemented this way, as were most early telephone-line modems. Radio teletype also use FSK.

By the phenomenon of slope detection whereby FM is converted to AM in a frequency-selective circuit tuned slightly away from the nominal signal frequency, AM receivers may detect some FM transmissions, though this does not provide an efficient method of detection for FM broadcasts.

FM modulation is also used in telemetry applications.

Inventor of FM

Edwin Howard Armstrong (18901954) was an American electrical engineer and inventor who invented frequency modulation (FM) radio.[citation needed]

Armstrong was born in New York City, New York, in 1890. He studied at Columbia University and later became a professor there. He invented the regenerative circuit while he was an undergraduate and patented it in 1914, the super-regenerative circuit (patented 1922), and the superheterodyne receiver (patented 1918).[citation needed]

See also

Amplitude modulation

Carson bandwidth rule (Estimate of RF bandwidth required for an FM signal)

Frequency modulation synthesis (FM as an audio synthesis method)

FM-UWB (FM and Ultra Wideband)

Modulation, for a list of other modulation techniques

History of radio

Phase modulation

FM broadcasting

FM broadcast band

Notes

^ “Communication Systems” 4th Ed, Simon Haykin, 2001

^ : “FM Systems Of Exceptional Bandwidth” Proc. IEEE vol 112, no. 9, p. 1664, September 1965

^ Armstrong, E. H. (May 1936). “A Method of Reducing Disturbances in Radio Signaling by a System of Frequency Modulation”. Proceedings of the IRE (IRE) 24 (5): 689740. doi:10.1109/JRPROC.1936.227383. 

^ Stan Gibilisco (2002). Teach yourself electricity and electronics. McGraw-Hill Professional. p. 477. ISBN 9780071377300. http://books.google.com/books?id=-Q6SBAKsmXkC&pg=PA477&dq=morse-code+frequency-shift-keying+sent-using-fsk&lr;=&as_brr=3&as_pt=ALLTYPES&ei=1C7zSZOlMIfmkATsra2NCg. 

^ David B. Rutledge (1999). The Electronics of Radio. Cambridge University Press. p. 310. ISBN 9780521646451. http://books.google.com/books?id=ZvJYLhk4N64C&pg=RA2-PA310&dq=radio-teletype+fsk&lr;=&as_brr=3&as_pt=ALLTYPES&ei=JTDzSeyPAoWqlQSR0b3ABg. 

References

A. Bruce Carlson: “Communication systems, 2nd edition”, McGraw-Hill, Inc, 1981, ISBN 0-07-085082-2

External links

Frequency Modulation

Frequency Modulation

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Car Audio : About Car Sound Systems

Wall Plate Amplifier

September 28th, 2010 admin No comments

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Amplifier circuit for electret condenser microphone

An amplifier circuit for an electret condenser microphone includes an operational amplifier, an operational amplifier, a bias circuit and a power circuit. The operational amplifier has an inverting input for receiving an output of a two-wire lead electret condenser microphone and a noninverting input for receiving a bias voltage. The bias circuit divides a supply voltage to the bias voltage to generate. The Circuit, the supply voltage of the electret condenser microphone through the bias circuit and a first resistance.

Condenser microphone, and construction is well known. The Microphone consists of a cup-shaped housing with a base and an upright outer wall. The wall terminates at an outer edge of an opening. The microphone has Furthermore, a membrane and ring assembly disposed applied to the surface, with a peripheral edge, a back plate with a peripheral edge and a spacer between the membrane and arranged ring assembly and the back plate to separate the membrane and ring assembly from the backplate. The microphone is also a substrate close to open the case. The spacer is between the peripheral housing wall and the outer edges of the diaphragm and the ring assembly and the rear plate arranged. The spacer has a radially inward-looking Flange that engages an upper peripheral surface of the back plate.

In the bottom of this ECM, the parts are dropped into a aluminum case, or can. Due the part tolerance problems can not the parts can be properly centered within, and this results in the active part of the moving membrane contact Elements that are not supposed to touch it to influence such a negative effect resulting performance and production.

The main problem is that the upper part as ECM closed cans are rolled across the top. The forces used to the microphone role can closed and sealed to be very large, and this force is, however, all Parts transferred. All ECM using the product Teflon "FEP" somewhere in their design to keep the electrostatic charge. Sometimes it is used as the mobile screen and sometimes it is used to coat the back plate. But Teflon is soft, and the rolling / sealing force, it is distorted and changed his strength. Since the thickness changes, the performance and yield of the microphone changes due to changes in the critical space between the movable panel and the back plate.

In accordance with this aspect of the invention, the method includes providing a cup-shaped housing with a base and an upright outer wall. The Wall ends at an outer edge of an opening. The method further includes inserting a diaphragm and ring assembly on the ground. The diaphragm and has a surrounding ring Edge. The method further includes placing a spacer on the peripheral edge of the membrane and ring assembly by a back plate on the spacer, the back plate with a peripheral Edge, and place a spacer between the peripheral housing wall and the outer edges of the diaphragm and the ring assembly and the back plate of the spacer with an upper surface. The method further includes placing a substrate in the open case and on the spacer top and rolling the housing distal edge engagement with the substrate to seal the microphone. The spacer transmits the rolling force of the substrate to the housing base.

Conventional condenser microphones this type consist of a membrane electrode back up located under the diaphragm, back-chamber forming plate under the rear electrode is arranged, a circuit assembly Plate under theback-chamber forming plate, a plurality of electronic circuit elements including a preamplifier located on the upper surface of the circuit Mounting plate, and a space between the electrode and the backs back-chamber forming plate forming surprised chamber.

Such conventional condenser microphone can obtain advantageous properties of the optimal microphone frequency response, since the back-chamber forming plate arranged permit the distance between the electrode and back theback-chamber forming plate, ie the capacity of Appeal dismissed, be changed freely.

On the other hand, however, as conventional condenser microphones are that the microphone is defective structure complicated.

The electronic circuit elements are that the lower surface of the soldered circuit board assembly, to that such an electronic circuit elements are not appropriate. Soldering lower surface is not inward towards the microphone or theback electrode, but after the outside face with respect to the microphone. Thus, such a soldering lower surface susceptible to negative influences from outside noise, and should therefore be covered with a shield.

Accordingly, in addition to the back-plate chamber is like a shield is absolutely necessary to avoid adversely increase the Number of members shall constitute a microphone.

Conventional condenser microphones of other species are in the back-chamber-forming disk in the conventional condenser microphone above mentioned, is known eliminated.

In such a condenser microphone, the rear compartment between the back electrode and the circuit board assembly is formed. For example, a condenser microphone advantageously constructed in such a manner as not to require theback-chamber-forming disk. But due to the presence of electronic Components, the distance between the back electrode and the circuit board assembly can not be reduced below a predetermined distance so that the capacity of the back chamber can not be reduced below a predetermined value. So it is a case where the optimal characteristics of microphone frequency response can not be obtained.

Furthermore, as a conventional condenser microphone mandatory to have a shield so that the reduction in the number of members representing the microphone and microphone simplification of the structure can not be realized.

About the Author

Ningbo Tongxin Microphones offers the best variety of quality Condenser Microphone for Studio, Podcast, USB, Instrumen, Conference, Broadcast and Field Recording.

Cerwin Vega CLS-215 Home Theatre Room!!

Guitar Valve Amplifier Kit

September 28th, 2010 admin No comments

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Absolute KIT4BL 4 Gauge Amplifier Kit (Blue)


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Absolute KIT4BL 4 Gauge Amplifier Kit (Blue)

Wilson SOHO Amplifier Kit. Each


Wilson SOHO Amplifier Kit. Each


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Boss KIT-10 - car amplifier installation kit. Each


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Guitar Amplifier Handbook - Understanding Tube Amplifiers and Getting Great Sounds (Softcover)


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Designing Tube Preamps for Guitar and Bass is the world’s first comprehensive guide to the design of tube-based preamplifiers, specifically for musical instrument use, in a single volume. From the input to the phase inverter, this book discusses the inner workings of every part of a conventional guitar preamp, including the use of triodes, pentodes, tone controls, effects loops and much more. Elim…

Hi-Fi Man EF2A Tube USB DAC Headphone Amp


Hi-Fi Man EF2A Tube USB DAC Headphone Amp


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The compact EF2A headphone amp from HiFiMan offers a USB input and built in DAC with Burr-Brown PCM2702 chipset for direct connection to your PC. Analog RCA inputs let you plug in a line level source, such as a CD player. A front panel button lets you toggle between inputs. “This $169 little dude will deliver performance of amps twice the price… and if looks are your thing, you’ll certainly be …

PreSonus Tubepre Single-Channel Vacuum Tube Mic Pre


PreSonus Tubepre Single-Channel Vacuum Tube Mic Pre


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The TubePRE is the highest quality vacuum tube preamp in its class. Loaded with PreSonus award winning dual servo preamplifier, the TubePre affordably delivers low noise tube warmth for vocals, guitars, bass guitars, synths and sound modules. The TubePre noticeably outperforms preamps in low cost mixers and recording interfaces making it an easy choice for anyone desiring to enhance their recordin…

Qinpu Q-2 Hybrid Integrated Amplifier


Qinpu Q-2 Hybrid Integrated Amplifier


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