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Datasheet Linear Technology LTC6409CUDB#TRMPBF

Linear Technology LTC6409CUDB#TRMPBF

Производитель:Linear Technology
Серия:LTC6409
Модель:LTC6409CUDB#TRMPBF

10 GHz GBW, 1.1 nV / √Hz Differential Amplifier / ADC Driver

Datasheets

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    FeaTures LTC6409 10GHz GBW, 1.1nV/Hz Differential Amplifier/ADC Driver DescripTion
    The LTC®6409 is a very high speed, low distortion, differential amplifier. Its input common mode range includes ground, so that a ground-referenced input signal can be DC-coupled, level-shifted, and converted to drive an ADC differentially. The gain and feedback resistors are external, so that the exact gain and frequency response can be tailored to each application. For example, the amplifier could be externally compensated in a no-overshoot configuration, which is desired in certain time-domain applications. The LTC6409 is stable in a differential gain of 1. This allows for a low output noise in applications where gain is not desired. It draws 52mA of supply current and has a hardware shutdown feature which reduces current consumption to 100µA. The LTC6409 is available in a compact 3mm Ч 2mm 10-pin leadless QFN package and operates over a ­40°C to 125°C temperature range.
    L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. 10GHz Gain-Bandwidth Product 88dB SFDR at 100MHz, 2VP-P 1.1nV/Hz Input Noise Density Input Range Includes Ground External Resistors Set Gain (Min 1V/V) 3300V/µs Differential Slew Rate 52mA Supply Current 2.7V to 5.25V Supply Voltage Range Fully Differential Input and Output Adjustable Output Common Mode Voltage Low Power Shutdown Small 10-Lead 3mm Ч 2mm Ч 0.75mm QFN Package applicaTions n Differential Pipeline ADC Driver High-Speed Data-Acquisition Cards Automated Test Equipment Time Domain Reflexometry Communications Receivers Typical applicaTion
    DC-Coupled Interface from a Ground-Referenced Single-Ended Input to an LTC2262-14 ADC
    1.3pF VIN LTC6409 Driving LTC2262-14 ADC, fIN = 70MHz, ­1dBFS, fS = 150MHz, 4096-Point FFT
    0 VS = 3.3V ­10 V OUTDIFF = 1.8VP-P ­20 HD2 = ­86.5dBc HD3 = ­89.4dBc ­30 SFDR = 81.6dB ­40 SNR = 71.1dB ­50 ­60 ­70 ­80 ­90 ­100 ­110 ­120 0 10 20 30 40 50 FREQUENCY (MHz) 60 70
    6409 TA01b 150 150 1.8V 3.3V 39pF 33.2 10 AIN+ AIN­ VDD AMPLITUDE (dBFS) ­ +
    VOCM = 0.9V LTC6409 + ­
    150 150 33.2 10 39pF LTC2262-14 ADC GND 6409 TA01 1.3pF 6409fa 1 LTC6409 absoluTe MaxiMuM raTings
    (Note 1) pin conFiguraTion
    TOP VIEW V­ 10 ­OUT +IN 1 2 3 SHDN 4 V+ 5 VOCM V+ 9 11,V­ V­ 8 7 6 +OUT ­IN Total Supply Voltage (V+ ­ V­) .5.5V Input Current (+IN, ­IN, VOCM, SHDN) (Note 2) . ±10mA Output Short-Circuit Duration (Note 3) . Indefinite Operating Temperature Range (Note 4). ­40°C to 125°C Specified Temperature Range (Note 5). ­40 ...

Классификация производителя

Signal Conditioning > Operational Amplifiers (Op Amps) > High Speed Amplifiers

Варианты написания: LTC6409CUDBTRMPBF, LTC6409CUDB TRMPBF

Выписка из документа:
FeaTures LTC6409 10GHz GBW, 1.1nV/Hz Differential Amplifier/ADC Driver DescripTion
The LTC®6409 is a very high speed, low distortion, differential amplifier. Its input common mode range includes ground, so that a ground-referenced input signal can be DC-coupled, level-shifted, and converted to drive an ADC differentially. The gain and feedback resistors are external, so that the exact gain and frequency response can be tailored to each application. For example, the amplifier could be externally compensated in a no-overshoot configuration, which is desired in certain time-domain applications. The LTC6409 is stable in a differential gain of 1. This allows for a low output noise in applications where gain is not desired. It draws 52mA of supply current and has a hardware shutdown feature which reduces current consumption to 100µA. The LTC6409 is available in a compact 3mm Ч 2mm 10-pin leadless QFN package and operates over a ­40°C to 125°C temperature range.
L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear Technol...

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