Boss Audio CX350 MOSFET 4-Channel Power Amplifier

Boss Audio CX350 MOSFET 4-Channel Power Amplifier

  • Single 4-channel power amplifier
  • Sensitivity: 90 dB
  • Power output: 50w x 4 RMS, 100w x 4 Max
  • Line and speaker level inputs
  • MOSFET power supply

4-CHANNEL POWER AMPLIFIER

Rating: (out of 4 reviews)

List Price: $ 87.00

Price: $ 41.98

BOSS AUDIO AM/FM/CD 6.5"SPEAKERS/REMOTE/ANT. PKG.
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Abandoned car audio enthusiasts to show off the pursuit of sound – car audio, fans, the pursuit of sound – Automotive industry-hc360 HC Network

After more than a decade of development, Yongfu Road, Guangzhou Auto Parts along a street Car Audio Sales, alterations shops have opened was everywhere, and has developed into the most important South China region and the country Car Audio Distribution center. “Earlier this year, the national automobile industry through the revitalization plan, for us it is a blessing,” modified car audio industry in Guangzhou, a concentration of Yongfu Road, reporters heard more than once Modified car The owner said, “more people buy cars, car audio will naturally play more,” practitioners are looking forward to the revitalization plan to boost their business.

According to industry data, car audio, car users in China, only less than 1% of the owners to replace the audio equipment. The good car audio business in Thailand, Audio conversion Proportion reached 15%, China car audio retail market is also small shopkeepers generally considered as the owner of the pursuit of quality of life and individual needs, development potentials.

Market has great potential but yet to be standardized

It is understood in the market for car audio equipment and accessories, large profit margins, the profits of each product may be as high as several hundred or even several thousand dollars. But the industry also claim that they suffered a lot back.

1994 open in Yongfu Road, modified car stereo shop told reporters on Pan permanent complained, because car audio is also not a mainstream consumer, not a necessity, a single piece of cargo sales and purchase grid cells although the difference is not small, but with skilled workers wages, shop rents and other costs, profit no outsiders think so much. Pan permanent stress, even if his boss is also learning every day, to do what one enthusiast. He said the car audio industry began to boom a few years ago, we all want a piece, so a lot of people do not understand sound investment in, but “history has proved that sound if the boss do not know if simply can not do. ”

However, according to insiders, the industry specializing in fake goods. “800 million cargo dare to sell on,” a senior enthusiasts and journalists drove through Yongfu Road, it pointed to a store to tell reporters, this two-story store in almost all sell fakes.

Ah Kam to regulate this phenomenon attributed to lack of, in his car stereo forum, there is a lot of users will experience their own deception paste forum. Ah Kam told reporters, while Guangzhou has the hundreds of thousands of car audio players, but most of these players are all in the entry-level, only basic configuration install 32 thousand dollars, the real big money is not spending much. In this regard, Pan permanently not in a hurry, he said: “All fans are playing from the entry-level, the future of this market has great potential.”

Talk about the latest trends in the current conversion, people in the summary as “the pursuit of more and more hidden decoration”, as the popularity of the car, owning a car is not worth showing off things too, compared to the previous Another point on modified car audio components will show off an even slightly exaggerated, and now the owners are basically not music lights, big speakers exaggerated decoration, but required changes as little as possible what the original car, speakers in the same parking space as possible on the modified The more and more stores are converted from the original vehicle modification shop to today’s professional audio conversion shop that is now converted to integrated audio shop less and less, and basically go to the professional conversion shop .

Revitalization project is expected to boost car market

“Earlier this year, the state passed the automotive industry revitalization plan, for us it is a blessing.” Modified car audio industry in Guangzhou, a concentration of Yongfu Road, reporters heard more than once Modified car The owner said. Yongfu Road

Huang Dong-ming is a leading car audio products wholesalers boss, he told reporters, “more people to buy a car, play will be more natural sound, increased state support for domestic cars, car price low down , lower the threshold to buy a car, play car audio threshold is lower. ” According to reports, will be modified car stereo, there are two people, one is a practical player, they generally only first wife’s car audio a simple modification, spent from 2000 to 5000 yuan; the second is the fever-level players, they constantly upgrade their car audio systems, and even modified several times the cost of cars.

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viewmorepics.myspace.com This video is just a video, testing my new sound system in my bedroom; Powering it with a battery pack -::::In This Video::::- I have two 15″ Boss Chaos Edition Subwoofers 1300watts, and a Boss Audio 755DBI head unit, along with a Boss Audio DD3600 Class D Monoblock Amplifier. I have all of this running to the batterypack enabling me to be able to play this outside of a car for now until I get my liscense.
Video Rating: 4 / 5

Boss Audio CX800 MOSFET Bridgeable 4-Channel Power Amplifier

Boss Audio CX800 MOSFET Bridgeable 4-Channel Power Amplifier

  • Single 4-channel bridgeable power amplifier
  • Sensitivity: 102 dB
  • Power output: 150w x 4 RMS, 400w x 4 Max, 800w x 2 Bridged
  • Line and speaker level inputs
  • MOSFET power supply

4-CHANNEL MOSFET BRIDGEABLE POWER AMPLIFIER WITH REMOTE SUBWOOFER LEVEL CONTROL

List Price: $ 233.00

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Power Acoustik OVN4-1200 4-Channel Class A/B Amplifier

Power Acoustik OVN4-1200 4-Channel Class A/B Amplifier

  • 125 x 4 watts @ 2-Ohm extruded alluminum heatsink
  • No dash mounted bass control
  • 18db. Bass boost @ 45hz.
  • 4-~250hz. Hi-pass
  • 200mv. ~ 8 volts input

Power Acoustik OVN4-1200 4-Channel Class A/B Amplifier

Rating: (out of 1 reviews)

List Price: $ 239.95

Price: $ 88.02

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A Home-theater System Needs a Heart and Brain in Order to Function Normally-this is the Purpose of an A/v Receiver!

Top-Notch HDTV Components & Accessories
To engage in a superb high-definition experience with your home theater, we can’t place enough emphasis on the items that complement your HDTV. Sure, it’s fun and exciting to choose a sleek and classy flat-screen, but you won’t reach your maximum entertainment capacity if you simply attach your TV to the wall and plug it in. This month, we want to help you choose the best (and necessary) accessories that help keep you on the edge of your seat during every movie you watch.

A/V Receivers

A home-theater system needs a heart and brain in order to function normally-this is the purpose of an A/V receiver. Not only does a receiver accept signals from radio and other audio devices, but it also processes, for more detail www.mining-auction-gold.com distributes, and amplifies sound and video from selected home-theater components to your various speakers. The inputs and outputs on the back of the receiver are the exterior conduits for carrying signals to the rest of your components, including DVD players, gaming consoles, and speakers.

If you plan to use a BD (Blue-ray Disc) player to watch high-definition video on your HDTV, you’ll need to make sure your receiver includes an HDMI port. Also, for more detail www.auction-professional.com don’t overlook the importance of matching an A/V receiver with an appropriate speaker system that will blend well with other audio devices. Receivers also come equipped with the necessary connections for DVD players, game consoles, Sets (standard-definition TVs), set-top boxes, broadcast antennas, and, of course, speakers.

Power Conditioners & Surge Protectors

Protecting your HDTV investment is just as imperative as choosing the right HDTV for your home-entertainment system. Accessories such as surge protectors and power conditioners can defend your home-theater components from high-voltage spikes and restrict signal interference.

A surge protector is designed to block your HDTV and other entertainment devices from ground voltage spikes and electrical surges. The number of outlets you’ll find on a standard surge suppressor can range from just a few to more than 12. Be sure to check the joule (energy) rating on any surge protector; the higher the number, the more energy the surge protector can channel away from your electrical equipment. A joule rating greater than 1,000 is ideal.

Power conditioners perform a slightly different task: While they do serve to protect your home-theater devices, they also improve the audio and video quality of home-theater devices. Filtering out RF (radio frequency) interference and EMI (electromagnetic interference) will effectively clean out the “dirty power” that can prevent you from receiving the best performance from your home-theater system.

HDMI Cables

HDMI is an important connection for an HDTV because it will carry an uncompressed, digital audio/video connection from compatible home-theater components to your HDTV. Even when you connect your HDTV to a DTS (digital theater system) receiver, you’ll need to use a HDMI cable to transmit common stereo formats, such as Dolby Digital or multi channel surround sound.

Blue-ray Disc Players

You can be sure to take full advantage of your HDTV with the addition of a BD player. Now that Blue-ray is the sure-fire disc player of the hi-def generation, it’s time to make your investment. Blue-ray Disc players will not only play all BD formats but also up convert standard DVDs to 720p or 1080p video resolution on HDTV’s. You’ll certainly find a use for your HDMI cables, as well. Blue-ray Disc players include HDMI ports for high-quality audio and video playback

For more useful tips & hints, please browse for more information at our website:-

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Here it is, folks, the first tour of the Bass Pig’s Lair in high definition! We take a tour of the amplifier and control racks and 15000-watts of driving stereo. Then we take a peek at what all that amplifier power is connected to, and then we shift to a musical topic, with a look at the music production equipment from Kurzweil, Yamaha and Roland. Then we move over to the work area, with general-purpose workstation and my new quad-core HD editing workstation. (Please pardon the mess!) Finally, we get a peek at the MotU 896, multi-channel digital audio interface that I use to record concerts, and back once more for another look at the MIDI gear.. For those that may be curious, yes, the sound system has a dedicated 125-amp 240vac power line to the racks (each of the big QSC amps can pull up to 92A of current off the mains!). 8AWG wire feeds the woofers and subwoofers. One DCX2496 feeds the main speakers, the other is feeding the surround and (coming soon) center channel speaker(s). The most notable hardware here is the new Bassmaxx ZR18 subwoofer, which was designed to take the place of four double 18″ woofer cabinets. It achieves this with an absurdly large piston displacement linear stroke capability. Enjoy the tour!
Video Rating: 5 / 5

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Boss Audio D550.4 MOSFET Bridgeable 4-Channel Power Amplifier

Boss Audio D550.4 MOSFET Bridgeable 4-Channel Power Amplifier

  • Single bridgeable 4-channel power amplifier
  • Remote subwoofer level control
  • Sensitivity: 105 dB
  • Power output: 230w x 4 RMS, 550w x 4 Max, 1100w x 2 Bridged
  • Line and speaker level inputs

4-CHANNEL MOSFET BRIDGEABLE POWER AMPLIFIER WITH REMOTE SUBWOOFER LEVEL CONTROL

List Price: $ 322.00

Price: $ 158.98

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Computer Speakers: Envoicing the Computer

These speakers are commonly equipped with a low power internal amplifier. The standard audio connection is a 3.5 mm stereo jack plug often color-coded lime green for computer sound cards. A plug and socket for a two wire coaxial cable is widely used to connect analog audio and video components. There are USB speakers which are powered from 5 volts to 200 milliamps provided by the USB port, allowing half a watt of output power. Computer speakers are present in a wide variety depending on their quality and price. The computer speakers that accompany the computer systems are small plastic boxes with mediocre sound quality. Some of the slightly better ones have equalization features such as bass and treble controls, improving their sound quality to some extent.

The internal amplifiers require an external power source, known as wall-wart. More sophisticated computer speakers may have a sub woofer unit to enhance bass output, and these units usually include the power amplitude and the small satellite speakers. some may even have built-in speakers as well.

Most of the computer speakers are equipped with an LED power indicator, a 3.5 mm headphone jack, controls for volume and sometimes for even bass and treble and a remote volume control. When computers were originally released, they had on board speakers that generated a series of different tone and beeps. As multimedia and games became popular, higher quality sound effects and music. Speakers are generally rated in frequency response, total Harmonic Distortions and watts. Today, good quality speakers are self-powered and equipped with all the latest features. These are relatively small in size to fit on desks or on the side of monitors and contain magnetic shielding.

Adding speakers to one’s computers can increase its functionality and enriches the experience of using it besides adding to the extent of recreation one gets after getting on with them. In today’s world, when we are getting advanced each second, its very hard to imagine using computers without speakers attached to them. The Computer Speakers are essential for the smooth functioning of all the functionalities. Nowadays, there are various speakers like standard, USB and multi-channel etc available and one can choose according to his needs and comforts.

Know more about computer components and cheap computers.

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Bazooka MC-HD-AMK 4-Channel Harley Amplifier Kit

Bazooka MC-HD-AMK 4-Channel Harley Amplifier Kit

  • Plug and play interface harness
  • 200-watt max power amplifier
  • Auxillary subwoofer output

Harley Davidson 4 channel motorcycle amplifier kit includes our FAST-HD plug and play interface cable with OEM connectors that plug directly into the factory Harley Davidson harness and our 4 channel 200W amplifier. This allows for seamless integration of the amplifier into the Harley system and maintains full use of all factory handle bar controls. The amplifier easily mounts under the front faring on top of the factory Harley radio

List Price: $ 479.95

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Evolution of Semiconductor Parameter Analyzers for Three Critical Types of Semiconductor Measurement ? Part II

To replace traditional DC I-V techniques, various implementations of high-speed (i.e., pulsed) I-V techniques have been developed for applications such as characterizing high-k dielectrics and Silicon-On-Insulator (SOI) isothermal testing. When testing SOI devices with traditional DC I-V techniques, their insulating substrates cause them to retain the self-heat generated by the test signal, skewing their measured characteristics; testing with pulsed signals reduces this effect. Similar problems arise in the testing of high-k gate structures of CMOS devices, nanotechnology devices, solar cells, and many materials using advanced technologies.

 

Traditional High-Speed-Pulse/Measure Systems. Earlier high-speed-pulse/measure test systems typically involved an external pulse generator, a multi-channel oscilloscope, specially designed interconnect hardware, and software to integrate and control the instruments. Unfortunately, this approach tended to create latencies that complicated the coordination of signal source and measurement functions.

 

Depending on the instruments and how well they were integrated, it could also place limitations on how short the pulses and their duty cycle could be. Despite these limitations, users of these earlier pulsed I-V test systems soon began applying them to a variety of other characterization tasks, including non-volatile memory testing, ultrafast NBTI reliability testing, and many other applications.

 

Given their somewhat limited dynamic range, these systems remained something of a specialty technology. In order to become a mainstream test technology, the next generation of ultra-fast I-V testing systems would have to provide a very broad source and measure dynamic range. That meant they had to be able to source sufficient voltage to characterize flash memory devices, as well as voltages low enough to handle the latest CMOS processes.

 

For example, consider an embedded flash device in a CMOS process—the flash device might require up to 40V to program, but the CMOS process is running on 2.5V, so the test system used must be able to supply voltages for both requirements. It also needed to have a broad enough current range to handle the newest technologies, and fast enough rise times and long enough pulse widths to cover a wide range of applications. It had to be simple to use, and have an interconnect system that would allow the system to deliver accurate results reliably.

 

The New Generation of Parameter Analyzers. Semiconductor parameter analyzers have evolved to solve many of these test problems. Now it’s possible to find test systems that combine DC I-V, C-V, and ultra-fast pulse I-V test capabilities. For example, in the Keithley Model 4200-SCS system, the Model 4225-PMU Ultra-Fast I-V Module has been added to the DC I-V and C-V measurement modules. Thus, all three required measurement types can be integrated in a single test system that’s optimized for advanced applications such as:

Flash, PCRAM, and other nonvolatile memory tests
Isothermal testing of medium-sized power devices
Materials research testing for scaled CMOS, such as high-k dielectrics
NBTI/PBTI reliability tests
LDMOS testing
Testing of III-V materials and devices such as GaAs

 

Naturally, the computerized operating system and test library of an integrated test system of this type must make it easy handle a broad range of test protocols, and quickly switch between the three different types of test. An example of this is the Keithley Test Environment Interactive (KTEI) operating software, which provides a single test environment that allows a user to combine measurements made with different instrument types into a single test sequence.

 

By using plug-in modules for the hardware chassis in a parameter analyzer, the test system can be readily optimized to address specific applications or sets of applications. Just as important, as new applications come along, a modular architecture allows for cost-effective system upgrades. For instance, in the Model 4200-SCS system, builders can choose from medium- and high-power Source-Measure Units for DC I-V measurements, an optional capacitance meter for C-V measurements, and an ultra-fast (pulsed) I-V module for high-speed pulse measurements.

 

Thus, the latest generation of parameter analyzers offers users a complete solution for an application like charge pumping, because the test system can be configured for the ultra-fast pulse generation and sensitive DC current measurements required. The test libraries include predefined tests for making most of the common charge pumping measurements, such as a pulsed base voltage sweep or a pulsed voltage amplitude sweep. In the case of solar cell testing, integrated I-V and C-V measurement capabilities make it possible to perform a wide range of measurements, including capacitance-frequency (C-f), drive level capacitance profiling (DLCP), four-probe resistivity (?, ?), and Hall voltage (VH). In addition, the software automates the measurements and provides results analysis.

 

Pushing the Limits of Instrumentation. While it’s important for a test system to handle the day-to-day measurements of modern devices and materials, the development of leading edge technology often demands more. This makes parameter analyzers with open system architectures even more important. To address the needs of advanced technologies, Keithley’s Model 4200-SCS allows users to modify any of the measurements in its test libraries, such as C-V, C-t, and C-f measurements. This opens the door for more customized testing and analysis, such as that needed for solar cells; high- and low-k structures; MOSFETs; BJTs; diodes; III-V compound devices; carbon nanotube (CNT) devices; doping profiles, TOX, and carrier lifetime tests; as well as junction, pin-to-pin, and interconnect capacitance measurements.

 

System speed and hardware flexibility are equally important, including the ability to add external instrumentation without sacrificing throughput and measurement performance. Many of the new ultra-fast I-V tests that lab users wish to perform, such as charge pumping and NBTI testing, may require greater current sensitivity than a standard instrument module provides (e.g., the Keithley Model 4225-PMU). This may require the addition of an external preamp.

 

For such an application, the optional Model 4225-RPM Remote Amplifier/Switch for Keithley’s parameter analyzer offers additional low current ranges that extend the system’s current sensitivity down to tens of picoamps. It also reduces cable capacitance effects and supports automatic switching as needed between the system’s ultra-fast pulse module, C-V module, and SMU modules to perform different types of testing on the fly. There is no need to disconnect a module’s wiring then reconnect it to a different instrument. These features reduce test system latencies and help improve throughput.

 

Older parameter analyzers typically were designed for specific types of test within the current-sensitivity/measurement-time application space, such as ultra-fast (UF) NBTI in statistical process control testing (SPCT), and even higher speeds in PCRAM testing. The traditional DC I-V SMU can source and measure currents up to about 1A and down to about a picoamp. Although adding a remote preamplifier allows resolving signals as low as 0.1fA, the best speed is about 10 milliseconds. In contrast, the Keithley Model 4225-PMU ultra-fast I-V module allows making a measurement in as little 10ns, which is critical for characterizing device recovery. Its optional remote amplifier/switch extends the current resolution of the module down to tens of picoamps, just slightly above the limit established by the Johnson noise produced by devices under test.

 

Part III of this 3-part article will discuss cabling considerations for different types of testing. This can be just as important as instrument capabilities in achieving the optimum throughput and signal integrity.

 

Lee Stauffer is the Senior Staff Technologist for Keithley Instruments’ Semiconductor Measurements Group, based in Cleveland, Ohio. Prior to joining Keithley, his career included designing satellite communication systems, as well as equipment and product engineering in semiconductor fabs. Keithley designs, develops, manufactures and markets complex electronic instruments and systems geared to the specialized needs of electronics manufacturers for high-performance production testing, process monitoring, product development and research.

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Boss CX1000 Chaos Exxtreme 2000 Watts 4-Channel MOSFET Power Amplifier

Boss CX1000 Chaos Exxtreme 2000 Watts 4-Channel MOSFET Power Amplifier

  • MAX POWER, 2 OHM 500w x 4; RMS POWER, 4 OHM 200w x 4; MAX BRIDGED POWER, 4 OHM 1000w x 2
  • SIGNAL-TO-NOISE RATIO 102 dB; THD 0.01%
  • DIMENSIONS: 11-7/8-InchW X 2-5/8 -InchH X 23-7/8-InchL
  • Trimode operation; Bridgeable; Remote subwoofer level control; Line and speaker level inputs; Variable gain control
  • Power and protection LEDs; Variable lowpass crossover; High pass crossover; 0-+18dB variable bass boost; MOSFET power supply

CHAOS EXXTREME 2000 Watts, 4-Channel MOSFET Power Amplifier

List Price: $ 315.00

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Alpine PDX F4 – Amplifier – 4-channel

Alpine PDX F4 – Amplifier – 4-channel

  • 100W RMS x 4

4-Channel Power Density Digital Amplifier, 100 watts x 4 chan @ 2 ohms, Total RMS: 400 watts, Signal-to-Noise Ratio: 76dBA, Switch-Mode Digital Topology, CEA-2006 Compliant Amplifier

Price: $ 294.99

HDMI LPCM 7.1 5.1 Multi-Channel Audio Decoder Amplifier
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KICKER 08 ZX700.5 AMPLIFIER MULTI-CHANNEL CAR AUDIO AMP
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Computer Speakers Buying Guide

Adding speakers to your computer can increase its functionality and enriches the experience of using it. Computer speakers are functional devices that are attached to the computer and are very much useful for recreation as well as other activities. These not only produce the most exciting sound but also are capable of bringing music, movies or games to life.


In today’s scenario where we can find all sorts of multimedia applications, games and MP3 music, it is very hard to imagine a computer without speakers. The speakers have become essential for any computer so that it can be used for all the applications. With time these have seen many changes and are getting better. We can find them for all applications and budgets.


The most popular type of speakers available today are standard speakers, multi-channel surround sound speakers, and USB speakers. Lets learn more about them.

Standard Speakers


Most popular of the lot that can be found easily in most of the households. The standard speakers are normal 2.1 channel or 2 channel output which include a subwoofer in the 2.1 channel version. These produce enough sound required by a home or corporate user. On the price band, these are considered cheap and easily installable with lesser wiring compared to the multi channel models.


Multi-channel Speakers

More advanced is the multi-channel version that can deliver a surround sound effect. In the multi-channel model the channels refer to the output of the device. For instance The 5.1 channel surround sound system means a 5 speaker and one subwoofer included in it which delivers superior sound quality and can bring any PC game or movie to life. These new generation models are exceptional on sound quality but comparatively costly than the standard versions.


USB speakers

Considering the portability issues you will also find USB models that are powered from the 5 volts at a few milliamps provided by the USB port, per the standard. In such speakers, the USB powered amplifier draws the power through a USB cable/plug. For the USB version no batteries or AC power source is required.


Considering your application need and budget you can decide on the type you want to buy. Pro’s can opt for multi-channel speakers that allow sound/video editing or gaming in real time delivering the best sound output. For budget conscious the standard speakers are the best options as they deliver a handsome sound quality and save you money on the device as well as on its installation.


If budget is not a constraint a 5.1 channel surround sound system is the best buy but also has some drawbacks like wiring and high cost. A 2.1 system with 2 speakers and a subwoofer is a decent alternative if compared to the above. Even the 2 speakers would be a great idea for limited sound quality and budget.

Find cheap or high-end computer speakers at computer-speakers.org.

Pioneer GM-D9500F Class-FD 4-Channel Bridgeable Amplifier

Pioneer GM-D9500F Class-FD 4-Channel Bridgeable Amplifier

  • Four-channel bridgeable amplifier with 800-watt max power capability
  • Delivers continuous 75 watts x 4 at 4 ohms, 100 watts x 4 at 2 ohms, 200 watts x 2 bridged at 4 ohms
  • Four-channel high- and low-pass crossover (40~500Hz, at -12 dB per octave)
  • Speaker-level inputs for connecting to most source units
  • Pass-thru RCA outputs for system expansion

Pioneer Gm-D9500F 4-Channel Class Fd Bridgeable Amplifier

Rating: (out of 5 reviews)

List Price: $ 270.00

Price: $ 245.00

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JL AUDIO A4300 CAR STEREO MULTI CHANNEL 4 AMPLIFIER
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Recommended Linn Systems from Rococo

The web definition of Hi Fi is:* “High fidelity or hi-fi reproduction is a term used by home stereo listeners and home audio enthusiasts (audiophiles) to refer to high-quality reproduction of sound or images that are very faithful to the original performance”

In that case Linn Hi Fi’s definitely fit that bill perfectly because Linn have spent the last thirty years honing their considerable skills to create music that is, not only, an experience for your ears, but because the raw emotion within the music is heard, it, also, becomes much greater than an auditory event, but, involves the mind and heart, too.

All Linn Hi Fi products have been produced by hand utilising the latest engineering advances to produce Hi Fi’s that can extricate the greatest amount of information from the audio format of the CD, thereby, allowing Linn Hi Fi’s the possibility of recreating a truer, clearer musical resonance.
Linn Hi Fi products may be bought as complete music systems, which will enhance your music experience beyond your wildest dreams:

The Majik Music System:

Linn’s Majik Hi Fi music system incorporates:

CD player (with the ability to extract data from CD’s, HDCD- encoded data, DTS CD’s and MP3 files) Integrated amplifier (combination pre- and stereo amplifier) Four-way floor standing loudspeakers

The Klimax Music System:

Features:

Digital Stream Player (can give an enhanced listening experience for WAV, AIFF, ALAC, FLAC and MP3 digital audio formats through network connection to home computer) Pre-amplifier, which has a simplicity and ease of use, whilst at the same time, sophisticated engineering to remove interference and vibration from many sources 350A loudspeakers are floor-standing loudspeakers, which are arguably the premier loudspeaker available today

The Akurate Music System:

Real audiophiles will truly be amazed by the quality of the Akurate music system from Linn, which incorporates:

CD player, which supports multi format audio files in stereo or surround sound Pre-amplifier. Engineered to eliminate noise and distortion Power amplifier with a choice of 2-4 channel models Tuner. Available in FM/AM or FM/AM + DAB functionality Floor standing high performance, multi-channelled loudspeakers

Linn produce Hi Fi music systems that whole an entirely new listening and emotional experience for lovers of great music. All Linn Hi Fi products are upgradeable and can be integrated into Linn’s Knekt multi-room system, which allows your listening pleasure to be extended throughout the home.
Rococo Systems and Design can offer advice, design and install Linn Hi Fi products in your home.

Definition from Wikipedia.org.

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Polk Audio PA200.4 4-Channel Bridgeable Power Amplifier

Polk Audio PA200.4 4-Channel Bridgeable Power Amplifier

  • 4-channel, dual bridge-mono (2-channel) power amplifier
  • Power handling: 35 watts x 4 (2 ohm) continuous power, 80 x 4 (2 ohm) dynamic power, or 100 watts x 2 (4 ohm) continuous power
  • Double layer fiberglass epoxy printed circuit boards
  • 6-way smart system protection (SSP) circuits
  • High-speed MOSFET switching power supply

With multiple configurations available, the Polk Audio PA200.4 power amplifier is ideal for audio setup use. 4-channel, dual bridge-mono (2-channel), or dual simultaneous stereo/mono operation provide a variety of configurations and setups: 4-channel for front and rear speakers; 2 speakers and a sub; as 2 subwoofers; or as 2 subs and 4-channels in passive-tri mode all allow you to set up your system the way you want to. Cast aluminum textured end caps for optimized heat dissipation and hiding of

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Car DVD choose strategy: right is the best

Car  DVDchoose strategy: right is the best

Different owners on the car’s requests for a DVD machine is different from the appearance of some attention, some focus on sound quality, some focus on functionality, some focus on cost, so buy DVD machines should be based on their needs to do in the same grade of product comprehensive comparison, a balance which most suited to their specific products.

1. Tailor-made: first step in choosing car DVD machine to determine the suitability of the machine the size of your car.  from the panel size, the routine has 1DIN and 2DIN two categories, generally more commonly used small vehicles for the 1DIN size products, occupy a standard CASE. 2DIN panel size are relatively large, many products look more luxurious, are used for medium-sized business,  2DIN size of equipment required on vehicles Gaizao Huan some. Proposed a general user tried to use small vehicles 1DIN standard size equipment, so installation and replacement of the existing deck is more convenient. Single-spindle DVD sub-screen and without screen, with two categories, single-spindle of DVD because of small size, so the integration of the modules requires high production costs will naturally increase, or with the screen if the screen must be made telescopic ( Built-in), so prices naturally come up. Some owners also choose a single-spindle non-screen DVD and a single tablet of the telescopic display, this first requires the installation space is a two-spindle, but the two single-spindle machines with relatively heat with a single spindle for the screen larger, so it is recommended to use a single tablet with the screen better.

Now come with dual-screen DVD spindle, dual spindle function space can be more natural.
2. Targeted: the second step according to their budget and needs, determine the structure and grade of DVD machines. Double Din Car DVD player platter for its structural properties, multi-plate divided. Multi-disc DVD machine there are front and multi-disk player with “backpack” of the post-Multi disk player. Ordinary single platter DVD machine structure is simple and relatively cheap prices for middle and low car. The benefits of multi-disk player is convenient for CDs, but due to the host disc DVD box and between the need for cable, there will be some loss of signal and the interference of the car will have some effect, of course, high-end for discs opportunity to use digital processing at all costs, prices have soared. In fact, our general car owners, not a manual for disc trouble, and can save a thousand dollars of the cost, affordable option is a single disc. Have installed the DVD in the sun visor pocket, more stylish, but also to facilitate manual changer.

3. Performance and function: The third step is to weigh the different grades of product performance and functionality. If you are music fans and like to hear some big dynamic sound music, DVD machine that can look at the output of features and sound quality. Car DVD machine output power related to the dynamic performance of musical ability, the current DVDs nominal average output power per channel are between 30 ~ 55W for 4-channel output can drive an ordinary loudspeaker. Car DVD itself does not contain some high-end amplifier, car amplifier requires external dedicated work, in general, the performance of external professional power amplifier is superior to the built-in DVD machine power amplifier module, and more powerful. The same brand of car amplifier valuable, so is fever with type configuration, have a good effect is necessary to update the car stereo and line. If the owner of the ear is not particularly special picky, do not recommend that burn up!

4. Car DVD machine panel and with the car: If you are concerned about the DVD machine’s “face”, as one of the car’s major feature, it should focus weigh DVD machine panel. DVD machine panel design not only reflects the degree of luxury products related to operability. DVD machines that display the most conspicuous place, DVD has used monochrome LCD screen can only display basic information. In the high-end DVD machines are used or VFD screen TFT color LCD, etc.. VFD screen with high brightness, the advantages of bright color, with the dynamic display design is widely used in a variety of audio and video products. The more advanced car audio and video use in TFT LCD. Because it is based on dot-matrix display, so display rich content without restriction. But DVD machine panel is not more light the better, although the relatively high brightness of the display looks luxurious, but at night driving easier on the eyes of people affected. TFT screen you can adjust the brightness according to individual needs. DVD  panel backlight design related to products in a dark environment, convenience of operation, excellent products are all commonly used buttons have backlight, but even the buttons are easy to look at functional tip text.

5. Auxiliary parameters: in addition to appearance, DVD machine is more user some basic properties of interest. Overhead Car DVD player functions and features a lot of information on the product description is also more information provided, but there are several parameters which compare the key note of this when we buy: shock resistance, anti-jamming, DVD compatible disc format, the screen clarity and so on.

Angelina ,A writer for car DVD,Also has a shop for Parking sensor,Sunvisor Monitor.

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Modulation

Aim

The aim of digital modulation is to transfer a digital bit stream over an analog passband channel, for example over the public switched telephone network (where a bandpass filter limits the frequency range to between 300 and 3400 Hz), or over a limited radio frequency band.

The aim of analog modulation is to transfer an analog baseband (or lowpass) signal, for example an audio signal or TV signal, over an analog passband channel, for example a limited radio frequency band or a cable TV network channel.

Analog and digital modulation facilitate frequency division multiplexing (FDM), where several low pass information signals are transferred simultaneously over the same shared physical medium, using separate passband channels.

The aim of digital baseband modulation methods, also known as line coding, is to transfer a digital bit stream over a baseband channel, typically a non-filtered copper wire such as a serial bus or a wired local area network.

The aim of pulse modulation methods is to transfer a narrowband analog signal, for example a phone call over a wideband baseband channel or, in some of the schemes, as a bit stream over another digital transmission system.

Analog modulation methods

In analog modulation, the modulation is applied continuously in response to the analog information signal.

A low-frequency message signal (top) may be carried by an AM or FM radio wave.

Common analog modulation techniques are:

Amplitude modulation (AM) (here the amplitude of the carrier signal is varied in accordance to the instantaneous amplitude of the modulating signal)

Double-sideband modulation (DSB)

Double-sideband modulation with unsuppressed carrier (DSB-WC) (used on the AM radio broadcasting band)

Double-sideband suppressed-carrier transmission (DSB-SC)

Double-sideband reduced carrier transmission (DSB-RC)

Single-sideband modulation (SSB, or SSB-AM),

SSB with carrier (SSB-WC)

SSB suppressed carrier modulation (SSB-SC)

Vestigial sideband modulation (VSB, or VSB-AM)

Quadrature amplitude modulation (QAM)

Angle modulation

Frequency modulation (FM) (here the frequency of the carrier signal is varied in accordance to the instantaneous frequency of the modulating signal)

Phase modulation (PM) (here the phase shift of the carrier signal is varied in accordance to the instantaneous phase shift of the modulating signal)

Digital modulation methods

In digital modulation, an analog carrier signal is modulated by a digital bit stream. Digital modulation methods can be considered as digital-to-analog conversion, and the corresponding demodulation or detection as analog-to-digital conversion. The changes in the carrier signal are chosen from a finite number of M alternative symbols (the modulation alphabet).

A simple example: A telephone line is designed for transferring audible sounds, for example tones, and not digital bits (zeros and ones). Computers may however communicate over a telephone line by means of modems, which are representing the digital bits by tones, called symbols. If there are four alternative symbols (corresponding to a musical instrument that can generate four different tones, one at a time), the first symbol may represent the bit sequence 00, the second 01, the third 10 and the fourth 11. If the modem plays a melody consisting of 1000 tones per second, the symbol rate is 1000 symbols/second, or baud. Since each tone represents a message consisting of two digital bits in this example, the bit rate is twice the symbol rate, i.e. 2000 bits per second.

According to one definition of digital signal, the modulated signal is a digital signal, and according to another definition, the modulation is a form of digital-to-analog conversion. Most textbooks would consider digital modulation schemes as a form of digital transmission, synonymous to data transmission; very few would consider it as analog transmission.

Fundamental digital modulation methods

These are the most fundamental digital modulation techniques:

In the case of PSK, a finite number of phases are used.

In the case of FSK, a finite number of frequencies are used.

In the case of ASK, a finite number of amplitudes are used.

In the case of QAM, a finite number of at least two phases, and at least two amplitudes are used.

In QAM, an inphase signal (the I signal, for example a cosine waveform) and a quadrature phase signal (the Q signal, for example a sine wave) are amplitude modulated with a finite number of amplitudes, and summed. It can be seen as a two-channel system, each channel using ASK. The resulting signal is equivalent to a combination of PSK and ASK.

In all of the above methods, each of these phases, frequencies or amplitudes are assigned a unique pattern of binary bits. Usually, each phase, frequency or amplitude encodes an equal number of bits. This number of bits comprises the symbol that is represented by the particular phase.

If the alphabet consists of M = 2N alternative symbols, each symbol represents a message consisting of N bits. If the symbol rate (also known as the baud rate) is fS symbols/second (or baud), the data rate is NfS bit/second.

For example, with an alphabet consisting of 16 alternative symbols, each symbol represents 4 bits. Thus, the data rate is four times the baud rate.

In the case of PSK, ASK or QAM, where the carrier frequency of the modulated signal is constant, the modulation alphabet is often conveniently represented on a constellation diagram, showing the amplitude of the I signal at the x-axis, and the amplitude of the Q signal at the y-axis, for each symbol.

Modulator and detector principles of operation

PSK and ASK, and sometimes also FSK, are often generated and detected using the principle of QAM. The I and Q signals can be combined into a complex-valued signal I+jQ (where j is the imaginary unit). The resulting so called equivalent lowpass signal or equivalent baseband signal is a complex-valued representation of the real-valued modulated physical signal (the so called passband signal or RF signal).

These are the general steps used by the modulator to transmit data:

Group the incoming data bits into codewords, one for each symbol that will be transmitted.

Map the codewords to attributes, for example amplitudes of the I and Q signals (the equivalent low pass signal), or frequency or phase values.

Adapt pulse shaping or some other filtering to limit the bandwidth and form the spectrum of the equivalent low pass signal, typically using digital signal processing.

Perform digital-to-analog conversion (DAC) of the I and Q signals (since today all of the above is normally achieved using digital signal processing, DSP).

Generate a high-frequency sine wave carrier waveform, and perhaps also a cosine quadrature component. Carry out the modulation, for example by multiplying the sine and cosine wave form with the I and Q signals, resulting in that the equivalent low pass signal is frequency shifted into a modulated passband signal or RF signal. Sometimes this is achieved using DSP technology, for example direct digital synthesis using a waveform table, instead of analog signal processing. In that case the above DAC step should be done after this step.

Amplification and analog bandpass filtering to avoid harmonic distortion and periodic spectrum

At the receiver side, the demodulator typically performs:

Bandpass filtering.

Automatic gain control, AGC (to compensate for attenuation, for example fading).

Frequency shifting of the RF signal to the equivalent baseband I and Q signals, or to an intermediate frequency (IF) signal, by multiplying the RF signal with a local oscillator sinewave and cosine wave frequency (see the superheterodyne receiver principle).

Sampling and analog-to-digital conversion (ADC) (Sometimes before or instead of the above point, for example by means of undersampling).

Equalization filtering, for example a matched filter, compensation for multipath propagation, time spreading, phase distortion and frequency selective fading, to avoid intersymbol interference and symbol distortion.

Detection of the amplitudes of the I and Q signals, or the frequency or phase of the IF signal.

Quantization of the amplitudes, frequencies or phases to the nearest allowed symbol values.

Mapping of the quantized amplitudes, frequencies or phases to codewords (bit groups).

Parallel-to-serial conversion of the codewords into a bit stream.

Pass the resultant bit stream on for further processing such as removal of any error-correcting codes.

As is common to all digital communication systems, the design of both the modulator and demodulator must be done simultaneously. Digital modulation schemes are possible because the transmitter-receiver pair have prior knowledge of how data is encoded and represented in the communications system. In all digital communication systems, both the modulator at the transmitter and the demodulator at the receiver are structured so that they perform inverse operations.

Non-coherent modulation methods do not require a receiver reference clock signal that is phase synchronized with the sender carrier wave. In this case, modulation symbols (rather than bits, characters, or data packets) are asynchronously transferred. The opposite is coherent modulation.

List of common digital modulation techniques

The most common digital modulation techniques are:

Phase-shift keying (PSK):

Binary PSK (BPSK), using M=2 symbols

Quadrature PSK (QPSK), using M=4 symbols

8PSK, using M=8 symbols

16PSK, using M=16 symbols

Differential PSK (DPSK)

Differential QPSK (DQPSK)

Offset QPSK (OQPSK)

/4PSK

Frequency-shift keying (FSK):

Audio frequency-shift keying (AFSK)

Multi-frequency shift keying (M-ary FSK or MFSK)

Dual-tone multi-frequency (DTMF)

Continuous-phase frequency-shift keying (CPFSK)

Amplitude-shift keying (ASK)

On-off keying (OOK), the most common ASK form

M-ary vestigial sideband modulation, for example 8VSB

Quadrature amplitude modulation (QAM) – a combination of PSK and ASK:

Polar modulation like QAM a combination of PSK and ASK.[citation needed]

Continuous phase modulation (CPM) methods:

Minimum-shift keying (MSK)

Gaussian minimum-shift keying (GMSK)

Orthogonal frequency-division multiplexing (OFDM) modulation:

discrete multitone (DMT) – including adaptive modulation and bit-loading.

Wavelet modulation

Trellis coded modulation (TCM), also known as trellis modulation

Spread-spectrum techniques:

Direct-sequence spread spectrum (DSSS)

Chirp spread spectrum (CSS) according to IEEE 802.15.4a CSS uses pseudo-stochastic coding

Frequency-hopping spread spectrum (FHSS) applies a special scheme for channel release

MSK and GMSK are particular cases of continuous phase modulation. Indeed, MSK is a particular case of the sub-family of CPM known as continuous-phase frequency-shift keying (CPFSK) which is defined by a rectangular frequency pulse (i.e. a linearly increasing phase pulse) of one symbol-time duration (total response signaling).

OFDM is based on the idea of frequency-division multiplexing (FDM), but is utilized as a digital modulation scheme. The bit stream is split into several parallel data streams, each transferred over its own sub-carrier using some conventional digital modulation scheme. The modulated sub-carriers are summed to form an OFDM signal. OFDM is considered as a modulation technique rather than a multiplex technique, since it transfers one bit stream over one communication channel using one sequence of so-called OFDM symbols. OFDM can be extended to multi-user channel access method in the orthogonal frequency-division multiple access (OFDMA) and multi-carrier code division multiple access (MC-CDMA) schemes, allowing several users to share the same physical medium by giving different sub-carriers or spreading codes to different users.

Of the two kinds of RF power amplifier, switching amplifiers (Class C amplifiers) cost less and use less battery power than linear amplifiers of the same output power. However, they only work with relatively constant-amplitude-modulation signals such as angle modulation (FSK or PSK) and CDMA, but not with QAM and OFDM. Nevertheless, even though switching amplifiers are completely unsuitable for normal QAM constellations, often the QAM modulation principle are used to drive switching amplifiers with these FM and other waveforms, and sometimes QAM demodulators are used to receive the signals put out by these switching amplifiers.

Digital baseband modulation or line coding

Main article: Line code

The term digital baseband modulation (or digital baseband transmission) is synonymous to line codes. These are methods to transfer a digital bit stream over an analog baseband channel (a.k.a. lowpass channel) using a pulse train, i.e. a discrete number of signal levels, by directly modulating the voltage or current on a cable. Common examples are unipolar, non-return-to-zero (NRZ), Manchester and alternate mark inversion (AMI) coding.

Pulse modulation methods

Pulse modulation schemes aim at transferring a narrowband analog signal over an analog baseband channel as a two-level signal by modulating a pulse wave. Some pulse modulation schemes also allow the narrowband analog signal to be transferred as a digital signal (i.e. as a quantized discrete-time signal) with a fixed bit rate, which can be transferred over an underlying digital transmission system, for example some line code. These are not modulation schemes in the conventional sense since they are not channel coding schemes, but should be considered as source coding schemes, and in some cases analog-to-digital conversion techniques.

Analog-over-analog methods:

Pulse-amplitude modulation (PAM)

Pulse-width modulation (PWM)

Pulse-position modulation (PPM)

Analog-over-digital methods:

Pulse-code modulation (PCM)

Differential PCM (DPCM)

Adaptive DPCM (ADPCM)

Delta modulation (DM or -modulation)

Sigma-delta modulation ()

Continuously variable slope delta modulation (CVSDM), also called Adaptive-delta modulation (ADM)

Pulse-density modulation (PDM)

Miscellaneous modulation techniques

The use of on-off keying to transmit Morse code at radio frequencies is known as continuous wave (CW) operation.

Adaptive modulation

Space modulation A method whereby signals are modulated within airspace, such as that used in Instrument landing systems.

See also

Wikimedia Commons has media related to: Modulation

Demodulation

Electrical resonance

Modulation order

Types of radio emissions

Communications channel

Channel access methods

Channel coding

Line code

Telecommunication

Modem

RF modulator

Codec

Ring modulation

References

Please help improve this article by adding reliable references. Unsourced material may be challenged and removed. (June 2008)

Digital Communication, J.R.Barry,E.A.Lee,D.G.Messerschmidt,Kluwer Academic Publishers,2004.

Categories: Telecommunication theory | Radio modulation modes | Physical layer protocolsHidden categories: Articles lacking sources from December 2007 | All articles lacking sources | All articles with unsourced statements | Articles with unsourced statements from October 2008 | Articles needing additional references from June 2008 | All articles needing additional references

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