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MAX7034 315MHz/434MHz ASK Superheterodyne Receiver General Description
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... A unique feature of the MAX7034 is the integrated image rejection of the mixer. This device eliminates the need for a costly front-end SAW filter for most applications. Advantages of not using a SAW filter are increased sensitivity, simplified antenna matching, less board space, and lower cost. The ...
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... Several topologies of active power filters (APFs) have been proposed [5]–[7] as a solution to passive-filter problems. Most of the APFs that have been implemented until now are of shunt type [8]–[11], but they are comparatively more expensive due to its large rating of about 30%–60% of the load [12] ...
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... distinguishing feature of this curve is the single low frequency turnover from a flat response to a uniform −20 dB per decade of frequency (−6 dB/octave) drop in gain, at least until the curve passes through the 0 dB line. Closing the loop to 40 dB (X100) as shown with a dotted line on Figure 1 does ...
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... which eventually leads to larger chip area to handle the ever increasing number of communication bands and a higher cost [3],[4]. Therefore to mitigate these disadvantages, some hardware sharing among different frequency bands is required. Wideband Frontends allow concurrent reception of more than o ...
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... requires two dual-output second-generation current conveyors (DO-CCIIs) as active elements. Besides, it provides a variable gain in the form of two resistors ratio but it is not suitable for providing very high gain since the spread of the resistance values becomes large, which is an undesired featu ...
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... The input is fed into the LM741 op-amp through C1 20µF capacitor. The capacitor is used to remove any DC offset. The op-amp is setup in inverting configuration. The voltage gain is controlled by R1 and R2. I have used a 1kΩ for R1 and a 50kΩ variable resistor for R2. R2 is used as the volume control ...
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Audio crossover



Audio crossovers are a class of electronic filter used in audio applications. Most individual loudspeaker drivers are incapable of covering the entire audio spectrum from low frequencies to high frequencies with acceptable relative volume and absence of distortion so most hi-fi speaker systems use a combination of multiple loudspeaker drivers, each catering to a different frequency band. Crossovers split the audio signal into separate frequency bands that can be separately routed to loudspeakers optimized for those bands.Active crossovers are distinguished from passive crossovers in that they divide the audio signal prior to amplification. Active crossovers come in both digital and analog varieties. Digital active crossovers often include additional signal processing, such as limiting, delay, and equalization.Signal crossovers allow the audio signal to be split into bands that are processed separately before they are mixed together again. Some examples are: multiband dynamics (compression, limiting, de-essing), multiband distortion, bass enhancement, high frequency exciters, and noise reduction such as Dolby A noise reduction.
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