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AN47 - High Speed Amplifier Techniques
AN47 - High Speed Amplifier Techniques

... The resultant level of detail is justified in the hope that it will be catalytic. The circuits should stimulate new ideas to suit particular needs, while demonstrating fast amplifiers’ capabilities in an instructive manner. PERSPECTIVES ON HIGH SPEED DESIGN A substantial amount of design effort has ...
System and device for supplying desired liquid volumes by means of
System and device for supplying desired liquid volumes by means of

... late the corresponding number of pump strokes and thus matic machines for distributing beverages and speci? the number of current pulses applied to the electromag cally warm beverages such as coffee percolators and net from the desired volume divided by the volume automatic machines for preparing an ...
Test Methodologies for Today`s Fastest Digital Data Interfaces
Test Methodologies for Today`s Fastest Digital Data Interfaces

... – A TDR test coupon can be designed on to PCB for testing impedance and monitoring PCB production lots. – The coupon should use the same routing guidelines used for the Rambus channel to represent process. – The probe land pattern used with the coupon needs to match the type and method of TDR probin ...
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MAX19791 50MHz to 4000MHz Dual Analog Voltage Variable
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... Frequency Ranges and Attenuation Settings S On-Chip Comparator (for Successive Approximation Measurement of Attenuator ...
Non-inverting amplifier
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ADL5387 数据手册DataSheet 下载
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AD7949 数据手册DataSheet下载
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MC33972, Multiple Switch Detection Interface with Suppressed
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fvco VREF
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MAX19793 1500MHz to 6000MHz Dual Analog Voltage Variable
MAX19793 1500MHz to 6000MHz Dual Analog Voltage Variable

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Results E-cloud Measurements MD Week 29
Results E-cloud Measurements MD Week 29

... For the amplifiers usual engineering approaches can’t be applied, they have to be operated very far below the typically used 1dB compression point! In fact we have to operate about 20dB below this value (or 0.01dB compression) ...
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Oscilloscope



An oscilloscope, previously called an oscillograph, and informally known as a scope, CRO (for cathode-ray oscilloscope), or DSO (for the more modern digital storage oscilloscope), is a type of electronic test instrument that allows observation of constantly varying signal voltages, usually as a two-dimensional plot of one or more signals as a function of time. Other signals (such as sound or vibration) can be converted to voltages and displayed.Oscilloscopes are used to observe the change of an electrical signal over time, such that voltage and time describe a shape which is continuously graphed against a calibrated scale. The observed waveform can be analyzed for such properties as amplitude, frequency, rise time, time interval, distortion and others. Modern digital instruments may calculate and display these properties directly. Originally, calculation of these values required manually measuring the waveform against the scales built into the screen of the instrument.The oscilloscope can be adjusted so that repetitive signals can be observed as a continuous shape on the screen. A storage oscilloscope allows single events to be captured by the instrument and displayed for a relatively long time, allowing observation of events too fast to be directly perceptible.Oscilloscopes are used in the sciences, medicine, engineering, and telecommunications industry. General-purpose instruments are used for maintenance of electronic equipment and laboratory work. Special-purpose oscilloscopes may be used for such purposes as analyzing an automotive ignition system or to display the waveform of the heartbeat as an electrocardiogram.Before the advent of digital electronics, oscilloscopes used cathode ray tubes (CRTs) as their display element (hence were commonly referred to as CROs) and linear amplifiers for signal processing. Storage oscilloscopes used special storage CRTs to maintain a steady display of a single brief signal. CROs were later largely superseded by digital storage oscilloscopes (DSOs) with thin panel displays, fast analog-to-digital converters and digital signal processors. DSOs without integrated displays (sometimes known as digitisers) are available at lower cost and use a general-purpose digital computer to process and display waveforms.
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