Datasheet AD8369 (Analog Devices) - 10

HerstellerAnalog Devices
Beschreibung600 MHz, 45 dB Digitally Controlled Variable Gain Amplifier
Seiten / Seite24 / 10 — AD8369. 120. 150. GAIN. 750MHz. CODE. 10MHz. 180. 380MHz. GAIN CODES. 0, …
RevisionA
Dateiformat / GrößePDF / 671 Kb
DokumentenspracheEnglisch

AD8369. 120. 150. GAIN. 750MHz. CODE. 10MHz. 180. 380MHz. GAIN CODES. 0, 1, AND 9. 500MHz. 330. 210. 240. 300. 270. AVERAGE OF 128 SAMPLES

AD8369 120 150 GAIN 750MHz CODE 10MHz 180 380MHz GAIN CODES 0, 1, AND 9 500MHz 330 210 240 300 270 AVERAGE OF 128 SAMPLES

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Textversion des Dokuments

AD8369 90 90 120 60 120 60 150 30 150 30 GAIN 750MHz GAIN CODE CODE 15 15 10MHz 10MHz 750MHz 180 0 180 0 380MHz 380MHz GAIN CODES GAIN CODES 0, 1, AND 9 500MHz 0, 1, AND 9 330 500MHz 330 210 210 240 300 240 300 270 270
TPC 19. Differential Input Reflection Coefficient, TPC 22. Differential Output Reflection Coefficient, S11, ZO = 50 W Differential, Selected Gain Codes S22, ZO = 50 W Differential, Selected Gain Codes
AVERAGE OF 128 SAMPLES INPUT = 250mV p-p, 10MHz OUTPUT DIFFERENTIAL OUTPUT 1V/VERTICAL OVERDRIVE 250mV/VERTICAL DIVISION DIVISION ZERO ZERO RECOVERY BIT 3 BIT 0 2V/VERTICAL DIVISION 2V/VERTICAL DIVISION GND GND TIME – 20ns/DIV TIME – 1

s/DIV
TPC 20. Gain Step Time Domain Response, 3 dB Step, TPC 23. Overdrive Recovery, Maximum Gain, VS = 5 V, RL = 1 kW, Parallel Transparent Mode VS = 5 V, RL = 1 kW, Parallel Transparent Mode
DIFFERENTIAL OUTPUT 200mV/DIV ZERO DIFFERENTIAL OUTPUT 70MHz, 750mV/DIV ZERO INPUT PWUP 2V/VERTICAL DIVISION 2mV/DIV GND GND TIME – 2

s/DIV TIME – 20

s/DIV
TPC 21. PWUP Time Domain Response, TPC 24. Pulse Response, Maximum Gain, VS = 5 V, Maximum Gain, VS = 5 V, RL = 1 kW RL = 1 kW –10– REV. A Document Outline Features Applications Functional Block Diagram Product Description Specifications Timing Specifications Absolute Maximum Ratings Pin Configuration Typical Performance Characteristics Theroy of Operation Input Attentuator and Output 3 dB Step Fixed Gain Amplifier Input and Output Interfaces Noise and Distortion Offset Control Loop Digital Control Basic Connections Input-Output Interface Reducing Gain Sensitivity to Input and Output Impedance Variation Operation from a Single-Sided Source Interfacing to an ADC PCB Layout Considerations Evaluation Board Evaluation Board Software Appendix Characterization Equipment Definitions of Selected Parameters Composite Waveform Assumption Outline Dimensions Ordering Guide Revision History