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ph104exp11_AM_Radio_04 - Physics Department, Princeton
ph104exp11_AM_Radio_04 - Physics Department, Princeton

... It is almost impossible to build a circuit as complicated as the one above such that it works correctly on the first try. Rather, it is helpful to have a step-by-step set of checkout procedures to verify that one part of the circuit is working before constructing the next. Here we sketch a possibly ...
Lab 11 - Physics Department, Princeton University
Lab 11 - Physics Department, Princeton University

... If you have a set of headphones with a 1/8” stereo plug (the most common type), please bring it with you to Lab to listen to your AM radio. Introduction. Like the transistor amplifier lab (Lab 10), this Lab goes beyond the material that you learn in lecture and class. You will use your knowledge of ...
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EC312 Lecture 11

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EUP2412 500kHz Synchronous Step-Up Converter with 600mA LDO

... synchronous step-up converter and a low noise, high PSRR, low dropout (LDO) fixed output linear regulator with independent enable pins. EUP2412 input voltage range is 2.2V to 5.5V, making it ideal for applications with either a 2-cell NiMH/NiCd or a single-cell lithium-ion/polymer batteries. The EUP ...
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Homework Problem Set 8 Solutions How is an LRC circuit similar to

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EEEE 482 Lab2_Rev2015_2 - RIT - People

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... Expected input signal of -60 dBm/GHz will raise these levels by 20 dB. There are 10+6 dB pads between the two 38 dB IF amplifiers. Test data on SN2 is almost identical with -25.3 dBm output power and monitor detector output -1.98mV at 5.0V DC. ...
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... To improve SR, increase tail current and current at output stage. Ideally a buffer should be used for the output, but implementation of high-swing low impedance buffer is difficult. Using a buffer would make gain and bandwidth independent of loading MG7 Use advanced compensation techniques, such as ...
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SGA2163Z 数据资料DataSheet下载

... infringement of patents, or other rights of third parties, resulting from its use. No license is granted by implication or otherwise under any patent or patent rights of RFMD. RFMD reserves the right to change component circuitry, recommended application circuitry and specifications at any time with ...
Figure Q5 - University of Brighton
Figure Q5 - University of Brighton

... (b) Semiconductor devices are integral part of any switched mode power electronic circuit and Metal-Oxide-Semiconductor Field Effect Transistor (MOSFET) are often used for such applications. The data-sheet of such a MOSFET specifies the following switching times corresponding to the linearized chara ...
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Project 1 - Synthesis of Musical Notes and Instrument Sounds with

... Since the derivative of a sinusoidal is also sinusoidal, the instantaneous frequency will oscillate sinusoidally. The general equation for an FM sound synthesizer is x(t) = A(t) cos(2πfc t + I(t) cos(2πfm t + θm ) + θc ) and the instantaneous frequency ...
must be adjusted as shown for the CLASS E PA. More power is
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Section H5: High-Frequency Amplifier Response

... slightly different notation and taking a different approach than your author. As usual, if this results in confusion, or you are more comfortable with his technique, let me know and we’ll work it out. High Frequency Response of the CE and ER Amplifier The generic common-emitter amplifier circuit of ...
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... drawback of this type of computation. The main advantage is better current waveforms, giving better iron loss accuracy. ...
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IC Technology and Device Models

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... identical mirror image sidebands: • We can improve efficiency of transmission by transmitting only one sideband and then reconstruct the missing sideband at the receiver. ...
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Solution for HW6 - EECS: www
Solution for HW6 - EECS: www

... Model the load as ZL= R+jX. The power dissipated in the resistor is proportional to |I2| R=|[100/(10+R+j(5-X))] |2 R=1002/((10+R)2+(5-X)2)*R. This function is monotonically decreasing in (5-X)2X Hence set X=5. Now we are left with the conventional maximum power transfer problem, so R=10 must be chos ...
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DMT 231 / 3 Lecture V Frequency Response of BJT

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File

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Radio transmitter design

A radio transmitter is an electronic device which, when connected to an antenna, produces an electromagnetic signal such as in radio and television broadcasting, two way communications or radar. Heating devices, such as a microwave oven, although of similar design, are not usually called transmitters, in that they use the electromagnetic energy locally rather than transmitting it to another location.
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