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IV Semester
IV Semester

... CO2: Able to analyze and design the analog modulator and demodulator circuits. CO3: Able to calculate the effect of noise in analog modulations. CO4:Able to demonstrate about various blocks in Transmitters and Receivers CO5: Able to know about AM Radio Broadcasting Frequency CO6: Able to know FM Rad ...
TS1107, TS1110 - uri=media.digikey
TS1107, TS1110 - uri=media.digikey

... Current-shunt resistors are available in metal film, metal strip, and wire-wound constructions. Wire-wound current-shunt resistors are constructed with wire spirally wound onto a core. As a result, these types of current shunt resistors exhibit the largest self-inductance. In applications where the ...
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CA3240, CA3240A - Experimentalists Anonymous

... FIGURE 4. INPUT CURRENT vs TEMPERATURE ...
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... Equation 12 illustrates how the resistor divider affects the amplifier gain. The gain of the amplifier is reduced if large resistor values are used for R1 and R2. By solving Equation 12 for R2, Equation 2 used in Method 1 can be obtained. This allows the full effect of the resistor divider on the am ...
DC1058A - Linear Technology
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... Depending on the quality of the power supplies provided to DC1058,it may be desirable to add larger bulk capacitors at C27, C35, and C39. This is not necessary with clean,low-impedance DC power supplies. FILTER NETWO R KS Components for an RC or LC filter are included at the ADC input for low-pass o ...
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TPA311x-PLimit-100810 - TI E2E Community

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LMH6551 Differential, High Speed Op Amp
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... The LMH6551 is a fully differential amplifier designed to provide low distortion amplification to wide bandwidth differential signals. The LMH6551, though fully integrated for ultimate balance and distortion performance, functionally provides three channels. Two of these channels are the V+ and V− s ...
Experiment - University of Guelph Physics
Experiment - University of Guelph Physics

... The regulator circuit is as shown below: it uses a Zener diode as a voltage reference (VZ = 5.5V), and a single transistor connected as a voltage follower (or Emitter Follower). Double check to be sure you have not accidentally interchanged any of the transistor leads, also the connections on the Ze ...
TBD62783A
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... Output Considerations The outputs are DC offset from the input by 150mV; therefore, VOUT = 2 • VIN DC + 150mV. This offset is required for optimal performance from the output driver and is held at the minimum value to decrease the standing DC current into the load. Since the FMS6404 has a 2 x (6dB) ...
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... • No ID current flow in Regions A and E if nothing attached to output; current flows only during logic transition • If another inverter (or other CMOS logic) attached to output, transistor gate terminals of attached stage do not permit current: current still flows only during logic transition ...
LT6552 - 3.3V Single Supply Video Difference Amplifier
LT6552 - 3.3V Single Supply Video Difference Amplifier

... to 2.9V while driving a 150Ω load. The LT6552 features 75MHz – 3dB bandwidth, 600V/µs slew rate, and ±70mA output current making it ideal for driving cables directly. The LT6552 maintains its performance for supplies from 3V to 12.6V and is fully specified at 3.3V, 5V and ±5V supplies. The shutdown ...
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Amplifier



An amplifier, electronic amplifier or (informally) amp is an electronic device that increases the power of a signal.It does this by taking energy from a power supply and controlling the output to match the input signal shape but with a larger amplitude. In this sense, an amplifier modulates the output of the power supply to make the output signal stronger than the input signal. An amplifier is effectively the opposite of an attenuator: while an amplifier provides gain, an attenuator provides loss.An amplifier can either be a separate piece of equipment or an electrical circuit within another device. The ability to amplify is fundamental to modern electronics, and amplifiers are extremely widely used in almost all electronic equipment. The types of amplifiers can be categorized in different ways. One is by the frequency of the electronic signal being amplified; audio amplifiers amplify signals in the audio (sound) range of less than 20 kHz, RF amplifiers amplify frequencies in the radio frequency range between 20 kHz and 300 GHz. Another is which quantity, voltage or current is being amplified; amplifiers can be divided into voltage amplifiers, current amplifiers, transconductance amplifiers, and transresistance amplifiers. A further distinction is whether the output is a linear or nonlinear representation of the input. Amplifiers can also be categorized by their physical placement in the signal chain.The first practical electronic device that amplified was the Audion (triode) vacuum tube, invented in 1906 by Lee De Forest, which led to the first amplifiers. The terms ""amplifier"" and ""amplification"" (from the Latin amplificare, 'to enlarge or expand') were first used for this new capability around 1915 when triodes became widespread. For the next 50 years, vacuum tubes were the only devices that could amplify. All amplifiers used them until the 1960s, when transistors appeared. Most amplifiers today use transistors, though tube amplifiers are still produced.
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