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LT5568 - 700MHz - 1050MHz High Linearity Direct Quadrature Modulator.
LT5568 - 700MHz - 1050MHz High Linearity Direct Quadrature Modulator.

Impedance Measurements, Computations and their
Impedance Measurements, Computations and their

Power System Series Resonance Studies by Modified Admittance
Power System Series Resonance Studies by Modified Admittance

... These methods are primarily suitable for parallel resonance problem with little adaptation to the analysis of series resonance. The reason lies in the close relationship between loop impedance and the occurrence of series resonance. An attempt to apply the modal analysis to series resonance problem ...
High-Side, Bidirectional Current Shunt Monitor
High-Side, Bidirectional Current Shunt Monitor

... This integrated circuit can be damaged by ESD. Texas Instruments recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete devi ...
lab sheet
lab sheet

... megahertz range. The frequencies between 1MHz to 300MHz are collectively known as radio frequency (RF). Frequencies higher than 300MHz are categorized as microwave frequency (MF). An RF amplifier is an amplifier that would work well into the radio frequency region. RF amplifier is difficult to desig ...
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Towards Developing a Standard for

... side and the other port on the board side. It includes the entire package structure from C4 or wirebonds to solder balls. On either the die side or the board side, all the pads of the power net are regarded as one end of the port, and all the pads of the corresponding ground net are regarded as the ...
Lab 5 Stepper Motor And A/D Conversion
Lab 5 Stepper Motor And A/D Conversion

... 2. Connect multimeter to yellow wire. Adjust the potentiometer and verify that voltages in the range 0 – 5 V can be generated. 3. Set potentiometer to generate approx. 750 mV. Check with the multimeter probe that the generated voltage passes through the port E protection card and arrives at actual p ...
Input Impedance Measurement Using ADC FFT
Input Impedance Measurement Using ADC FFT

... required to form M(f1). The transfer function is a complex function that contains both magnitude and phase information. However, because all the measurements taken from the FFT contain only the magnitude information, the function M(f1) must be the magnitude of the ratio between the two transfer func ...
A 60-GHz Superheterodyne Downconversion Mixer in Silicon
A 60-GHz Superheterodyne Downconversion Mixer in Silicon

... single-balanced mixer is chosen over a double-balanced design because it simplifies the 60-GHz circuitry, having only two switching transistors (Q3 and Q4 in Fig. 1) and requiring only a single (unbalanced) RF input. The LO signal and any second-order distortion products present at the mixer output ...
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RF5565 2.4GHz TO 2.5GHz, 802.11b/g/n WiFi FRONT END MODULE Features

... The RF5565 integrates the matching networks and DC blocking capacitors for all RF ports. This greatly reduces the number of external components and layout area needed to implement this FEM. Typically only a total of four external components are required to achieve nominal performance. However, depen ...
the mcintosh mc 2105 solid state stereo power amplifier
the mcintosh mc 2105 solid state stereo power amplifier

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Operational Amplifier

... Inputs on an op-amp have extremely high input impedances. That is, the input currents entering or exiting an op-amp’s two input signal connections are extremely small. For most purposes of op-amp circuit analysis, we treat them as though they don’t exist at all. We analyze the circuit as though ther ...
Action PAK AP7380 ® Frequency Input, Field Configurable
Action PAK AP7380 ® Frequency Input, Field Configurable

... swapping units. The wide ranging power supply can be configured for either 120 or 240VAC power. ...
Universal Calibrator for Electrical Quantities for Power
Universal Calibrator for Electrical Quantities for Power

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ELEG2111 Lab 5
ELEG2111 Lab 5

... transistor’s characteristic curves. To ensure this, the designer must bias it properly and also ensure that the input signal current (IB) does not place it out of the active region. In addition to maintaining the transistor in the active region, the designer must also ensure that the amplifier is de ...
Fundamentals of Floating Measurements and Isolated Input Oscilloscopes.pdf
Fundamentals of Floating Measurements and Isolated Input Oscilloscopes.pdf

... isolators. Channel-to-power line isolation eliminates the path between ground of the signal source and the oscilloscope. ...
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Tektronix: Application Note > Fundamentals of Floating

... isolators. Channel-to-power line isolation eliminates the path between ground of the signal source and the oscilloscope. ...
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Shure M63 User Guide

... The resultant curve shown might be typical of a sound system where low-frequency noise was a problem (stage noise, etc.) and the room was relatively dead (heavily draped and carpeted). The low-frequency rolloff would keep objectionable thumping noises to a minimum, while the slight increase in respo ...
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... Differential signaling is used in high performance signal chains, where distortion performance, signal-to-noise ratio, and low power consumption is critical. Differential circuits inherently provide improved common-mode rejection and harmonic distortion performance as well as better immunity to inte ...
a high-drive fully differential current mode operational
a high-drive fully differential current mode operational

... output stages, the amplifier can drive a 1kΩ load resistance with a maximum bipolar output current of about 350 μA while the quiescent current of all the branches are only 20 μA. Furthermore it exhibits 100dB DC gain, 85 MHz gainbandwidth product and 6.1 GΩ output resistance. Finally, a second order ...
Return Loss
Return Loss

... Peak Power-is limited by the voltage rating of the connector. The peak power is determined by the equation V^2/Z where V=the peak voltage rating and Z is the characteristic impedance Peak Power is not a function of frequency Peak Power is an inverse function of VSWR and modulation schemes and must b ...
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Scattering parameters

Scattering parameters or S-parameters (the elements of a scattering matrix or S-matrix) describe the electrical behavior of linear electrical networks when undergoing various steady state stimuli by electrical signals.The parameters are useful for electrical engineering, electronics engineering, and communication systems design, and especially for microwave engineering.The S-parameters are members of a family of similar parameters, other examples being: Y-parameters, Z-parameters, H-parameters, T-parameters or ABCD-parameters. They differ from these, in the sense that S-parameters do not use open or short circuit conditions to characterize a linear electrical network; instead, matched loads are used. These terminations are much easier to use at high signal frequencies than open-circuit and short-circuit terminations. Moreover, the quantities are measured in terms of power.Many electrical properties of networks of components (inductors, capacitors, resistors) may be expressed using S-parameters, such as gain, return loss, voltage standing wave ratio (VSWR), reflection coefficient and amplifier stability. The term 'scattering' is more common to optical engineering than RF engineering, referring to the effect observed when a plane electromagnetic wave is incident on an obstruction or passes across dissimilar dielectric media. In the context of S-parameters, scattering refers to the way in which the traveling currents and voltages in a transmission line are affected when they meet a discontinuity caused by the insertion of a network into the transmission line. This is equivalent to the wave meeting an impedance differing from the line's characteristic impedance.Although applicable at any frequency, S-parameters are mostly used for networks operating at radio frequency (RF) and microwave frequencies where signal power and energy considerations are more easily quantified than currents and voltages. S-parameters change with the measurement frequency, so frequency must be specified for any S-parameter measurements stated, in addition to the characteristic impedance or system impedance.S-parameters are readily represented in matrix form and obey the rules of matrix algebra.
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