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Low Distortion Differential RF/IF Amplifier AD8351 Data Sheet
Low Distortion Differential RF/IF Amplifier AD8351 Data Sheet

... The AD8351 is a low cost differential amplifier useful in RF and IF applications up to 2.2 GHz. The voltage gain can be set from unity to 26 dB using a single external gain resistor. The AD8351 provides a nominal 150 Ω differential output impedance. The excellent distortion performance and low noise ...
IOSR Journal of Electronics and Communication Engineering (IOSR-JECE)
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... Transmission line is a device designed to guide electrical energy from one point to another. It is used, for example, to transfer the output rf energy of a transmitter to an antenna. This energy will not travel through normal electrical wire without great losses. Although the antenna can be connecte ...
MDP-1 Vacuum Tube Mic/DI Preamp- Operating Manual Features
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... (178mm). Do not mount the MDP-1 near other heat-producing equipment such as power amplifiers or other vacuum tube products. If possible, leave open at least one rack space above the unit, and use a rack spacer with a ventilation grille. Never operate the MDP-1 inside a road case where the side panel ...
Termination and Biasing of HOTLink IITM High
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... The serial line receiver for the HOTLink II is constructed using a high-impedance differential receiver. Using the notation from the impedance definitions, the Rb and Ra values for the receiver are both high and essentially infinite. Since the input impedance of the receiver is high, external compon ...
MAX2023 High-Dynamic-Range, Direct Up-/Downconversion 1500MHz to 2500MHz Quadrature Mod/Demod General Description
MAX2023 High-Dynamic-Range, Direct Up-/Downconversion 1500MHz to 2500MHz Quadrature Mod/Demod General Description

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Application Note 020 Converting a 1 Form A / 1 Form
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... cable. The AD8133 is a triple, low cost differential or singleended input to differential output driver, and each amplifier has a fixed gain of 2 to compensate for the attenuation of line termination resistors. The AD8133 is specifically designed for RGB signals but can be used for any type of analo ...
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AD8215 - Analog Devices
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... are usually very close to one another, so that the increments are measured with a reduced systematic error but with a doubled random error. These two errors, referred to as a ‘calculation error,’ affect the accuracy of the system parameters. Dropping the n-subscript for simplicity, the crms values o ...
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... Any source impedance the reference is connected to will be loaded during fast common-mode transi- tions, attenuating the signal. Worse yet, the high capacitance can damage some circuits. Connecting the oscilloscope common to the upper gate in an inverter may slow the gate-drive signal, preventing th ...
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... 1mA to 100mA can be field configured. Bipolar inputs are also accepted. Both models offer configurable latching, failsafe and HI/ LO operation. The AP1080 and AP1090 also include 0.25%-50% adjustable deadbands and selectable 120/240VAC input power. ...
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... The MAX9110/MAX9112 single/dual low-voltage differential signaling (LVDS) transmitters are designed for high-speed applications requiring minimum power consumption, space, and noise. Both devices support switching rates exceeding 500Mbps while operating from a single +3.3V supply, and feature ultra- ...
TT2D User Manual - Electronic Devices, Inc.
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... display shows ‘Cal mode’. If the buttons are not released quickly, the unit will not enter the calibration mode. Wait a few seconds after the display changes to “ADC=xxx” on the top line and then press button ‘B’ to store the ADC calibration value. Turn the TT-2D off then back on. Check to make sure ...
ADN4664 数据手册DataSheet 下载
ADN4664 数据手册DataSheet 下载

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... The LN CSAC provides a 10 MHz sine wave output and 1 PPS output, with short-term stability [Allan Deviation] of ≤2E-11 @ TAU = 1 sec, long–term aging of ≤9E-10/month, and maximum frequency change of ±5E-10 over an operating temperature range of –10°C to +35°C. ...
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... the high degree of electrical isolation only transformers can provide. The primary applications for the IT-8 are in sound reinforcement systems where it may be necessary to break ground loops between pieces of equipment connected with unbalanced lines. For instance, the IT-8 can be used to float the ...
General Specifications Model UT150L Limit Controller
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... IEC/EN61010-1) Rated measurement input voltage : 10V DC max.(across terminals), 300V AC max.(across ground) Rated transient overvoltage : 1500V (Note) Note : It is a value on the safety standard which is assumed by IEC/EN61010-1 in Measurement category I, and is not the value which guarantees an app ...
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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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