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Presentation Title Here
Presentation Title Here

... • Choose a FET with low RdsOn • Choose a FET with low capacitance • Lower the switching frequency BUT • Lowering frequency affects the inductor selection • We want to keep the inductor ripple current constant – Because this changes the peak switch current and the Vout ripple ...
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Harmonic Issues of AEP Welsh HVDC System

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Measuring Output - Transformer Performance

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MS Word - Sonoma State University

Transmission Lines Physics 623
Transmission Lines Physics 623

... and the module is really a parallel termination connecting each signal line via a suitable resistor to a voltage of about +3V.] The signal of voltage E injected on the left passes through a resistor with resistance R = Z0 before it reaches the transmission line. Thus for the first few nanoseconds, t ...
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Radiation learning outcomes - Deans Community High School

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Power Dense and Robust Traction Power Inverter for the Second

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RANE`S MP2015 ROTARY MIXER TECHNOLOGY

... compact size and shape for a rotary mixer, with all controls selected, designed and located for effortless professional performance playback. Its size makes it portable and easy to move about. Sound Quality Professional high-end sound quality begins and ends with the audio signal converters. The MP2 ...
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MT-097: 高速逻辑的应用(英文)

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... Setting the low frequency cutoff Low frequency cutoff can be set for 240Hz or 85Hz. This setting acts on both: local audio input and on all digital channels. Setting for 240 Hz protects small speakers from being overload with bass impulses. Speech intelligibility may be improved. This setting is not ...
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INTRODUCTION - AEP has a long tradition of technical excellence

... comply with the requirements of all appropriate regulatory agencies during the siting process, and all applicable environmental and regulatory permits must be obtained for the transmission facilities. The TO should describe any known environmental issues and associated estimated costs in its Study E ...
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Transmission line loudspeaker

A transmission line loudspeaker is a loudspeaker enclosure design (topology) that uses an acoustic transmission line within the cabinet, compared to the simpler enclosures used by sealed (closed) or ported (bass reflex) designs. Instead of reverberating in a fairly simple damped enclosure, sound from the back of the bass speaker is directed into a long (generally folded) damped pathway within the speaker enclosure, which allows far greater control and use of speaker energy, and the resulting sound.Inside a transmission line loudspeaker, is a (usually folded) pathway into which the sound is directed. The pathway is often covered with varying types and depths of absorbent material, may vary in size or taper, and may be open or closed at its far end. Used correctly, such a design ensures that undesired resonances and energies, which would otherwise cause undesirable auditory effects, are instead selectively absorbed or reduced (""damped"") due to the effects of the duct, or alternatively only emerge from the open end in phase with the sound radiated from the front of the driver, enhancing the output level (""sensitivity"") at low frequencies. The transmission line acts as an acoustic waveguide, and the padding both reduces reflection and resonance, and also slows the speed of sound within the cabinet to allow for better tuning.Transmission line loudspeakers designs are more complex to implement, making mass production difficult, but their advantages have led to acclaim for a number of manufacturers such as IMF, TDL, PMC, KVART & BØLGE and the like. As a rule, transmission line speakers tend to have exceptionally high fidelity low frequency response far below that of a typical speaker or subwoofer, into the infrasonic (British company TDL's studio monitor range from the 1990s quoted their frequency responses as starting from as low as 7 Hz depending upon model) at sensitivity 96 dB, without need for a separate enclosure or driver. Acoustically, TL speakers roll off slower at low frequencies and provide better driver control than standard reflex cabinet designs, are less sensitive to positioning, and tend to create a very spacious soundstage. Modern TL speakers were described in a 2000 review as ""match[ing] reflex cabinet designs in every respect, but with an extra octave of bass, lower LF distortion and a frequency balance which is more independent of listening level"".Although more complex to design and tune, and not as easy to analyze and calculate as other designs, the transmission line design is valued by several smaller manufacturers, as it avoids many of the major disadvantages of other loudspeaker designs. In particular, the basic parameters and equations describing sealed and reflex designs are fairly well understood, the range of options involved in a transmission line design mean that the general design can be somewhat calculated but final transmission line tuning requires considerable attention and is less easy to automate.
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