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AD8139 Low Noise Rail-to-Rail Differential ADC Driver Data Sheet
AD8139 Low Noise Rail-to-Rail Differential ADC Driver Data Sheet

... The AD8139 is an ultralow noise, high performance differential amplifier with rail-to-rail output. With its low noise, high SFDR, and wide bandwidth, it is an ideal choice for driving ADCs with resolutions to 18 bits. The AD8139 is easy to apply, and its internal common-mode feedback architecture al ...
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... 1. Renesas Technology Corp. puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration ...
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... and stability better than ±50ppm, including aging. Jitter performance is better than 0.7psRMS typically over a 12kHz to 20MHz bandwidth, and duty-cycle performance is better than 48%/52%. The DS4266 has an output frequency of 266MHz, and it supports LVDS and LVPECL output types. The DS4266 is constr ...
Ultra-low Jitter LVCMOS Fanout Buffer/Level Translator w/ Universal
Ultra-low Jitter LVCMOS Fanout Buffer/Level Translator w/ Universal

... The differential voltage of a differential signal can be described by two different definitions causing confusion when reading datasheets or communicating with other engineers. This section will address the measurement and description of a differential signal so that the reader will be able to under ...
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TCET1100, TCET1100G Datasheet

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... The speed of a 3-phase, 440 V, 50 Hz induction motor is to be controlled over a wide range from zero speed to 1.5 time the rated speed using a 3-phase voltage source inverter. It is desired to keep the flux in the machine constant in the constant torque region by controlling the terminal voltage as ...
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... The XTR108 is a 4-20mA current-loop transmitter that allows the user to digitally adjust the gain, offset, and linearity correction of the analog output to calibrate the sensor. The digital data for adjustment are stored in an external EEPROM device. The analog signal path is composed of a compound ...
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... means they must be followed by secondary protection to limit the let through voltage. Spark gap protectors have an AC follow on current, which depends upon the source impedance of supply. This AC follow on current may trip upstream service fuses and circuit breakers particularly in main switchboard ...
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... The functions of the amplifier are shown with a block diagram. The first block shows the rectification and filtering. In this part of the circuit the intermediate circuit voltage Ucc, necessary to operate the device, is generated from the AC voltage supply (except TRM60/8). The output stage is suppl ...
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... 4) See chapter Diagnostics of Relays in our Application Notes or consult the internet at http://relays.te.com/appnotes/ 5) Be aware of using right polarity, see Terminal Assignment. Wrong polarity will reduce endurance. ...
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... • Highly efficient, compact, and light. • A wide input voltage range is available. • The output is maintained for a certain period after input power is turned off. Disadvantages • Switching noise is generated. Market Share 90% or more of power supplies are switching power supplies. ...
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... • DeviceNet models added to the series. *2 *1 Visual confirmation of judgement results is not supported on models that do not have an output or models that do not support DeviceNet. You can change the display color by setting it, but you cannot switch it based on the judgement results. *2 DeviceNet ...
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Low-Power, Wideband, Voltage-Feedback OPERATIONAL AMPLIFIER with Disable OPA890 FEATURES

... bandwidth previously found only in wideband, current-feedback op amps. These capabilities provide exceptional full power bandwidth. Using a single +5V supply, the OPA890 can deliver a 1V to 4V output swing with over 35mA drive current and 220MHz bandwidth. This combination of features makes the OPA8 ...
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Voltage regulator



A voltage regulator is designed to automatically maintain a constant voltage level. A voltage regulator may be a simple ""feed-forward"" design or may include negative feedback control loops. It may use an electromechanical mechanism, or electronic components. Depending on the design, it may be used to regulate one or more AC or DC voltages.Electronic voltage regulators are found in devices such as computer power supplies where they stabilize the DC voltages used by the processor and other elements. In automobile alternators and central power station generator plants, voltage regulators control the output of the plant. In an electric power distribution system, voltage regulators may be installed at a substation or along distribution lines so that all customers receive steady voltage independent of how much power is drawn from the line.
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