AC-DC и DC-DC преобразователи напряжения Top Power на складе ЭЛТЕХ

Datasheet ADA4939-1/ADA4939-2 (Analog Devices) - 10

ПроизводительAnalog Devices
ОписаниеUltralow Distortion Differential ADC Driver
Страниц / Страница24 / 10 — ADA4939-1/ADA4939-2. Data Sheet. OUT, dm = 100mV p-p. OUT, dm = 2V p-p. N …
ВерсияA
Формат / Размер файлаPDF / 597 Кб
Язык документаанглийский

ADA4939-1/ADA4939-2. Data Sheet. OUT, dm = 100mV p-p. OUT, dm = 2V p-p. N (. D CL. –10. –11. L = 1kΩ. RL = 200Ω. –12. 100. FREQUENCY (MHz). 6 V

ADA4939-1/ADA4939-2 Data Sheet OUT, dm = 100mV p-p OUT, dm = 2V p-p N ( D CL –10 –11 L = 1kΩ RL = 200Ω –12 100 FREQUENCY (MHz) 6 V

15 предложений от 13 поставщиков
Микросхема Буферный усилитель, SP Amp Differential ADC Driver Dual 5.25V 24Pin LFCSP EP T/R
AiPCBA
Весь мир
ADA4939-2YCPZ-RL
Analog Devices
690 ₽
IC Home
Весь мир
ADA4939-2YCPZ-RL
Analog Devices
760 ₽
Maybo
Весь мир
ADA4939-2YCPZ-RL
Analog Devices
928 ₽
Augswan
Весь мир
ADA4939-2YCPZ-RL
Analog Devices
по запросу

Модельный ряд для этого даташита

Текстовая версия документа

ADA4939-1/ADA4939-2 Data Sheet 3 3 V V 2 OUT, dm = 100mV p-p 2 OUT, dm = 2V p-p B) 1 B) d 1 d N ( 0 N ( 0 AI –1 AI –1 G G P –2 P O –2 O O –3 O –3 -L -L D –4 D E –4 E S –5 S O –5 O –6 –6 D CL D CL E –7 E –7 IZ IZ –8 –8 AL AL –9 –9 RM RM –10 –10 NO R NO R –11 L = 1kΩ –11 L = 1kΩ RL = 200Ω RL = 200Ω –12 –12 1 10 100 1k
13 16 0
1 10 100 1k
0 9- 9-
FREQUENCY (MHz)
42
FREQUENCY (MHz)
42 07 07 Figure 13. Small Signal Frequency Response for Various Loads Figure 16. Large Signal Frequency Response for Various Loads
6 V –55 OUT, dm = 100mV p-p VOUT, dm = 2V p-p –60 HD2, G = 2 3 –65 HD3, G = 2 Bc) –70 d HD2, G = 3.16 ) ( HD3, G = 3.16 B N –75 0 HD2, G = 5 (d IO T IN R –80 HD3, G = 5 O GA T –85 S M –3 DI OC –90 V IC N O –95 –6 –100 ARM H VOCM = 1.0V –105 VOCM = 3.9V V –110 OCM = 2.5V –9 1 10 100 1k
19
–115
0 9-
1 10 100
22 0
FREQUENCY (MHz)
42 9- 07
FREQUENCY (MHz)
42 07 Figure 14. VOCM Small Signal Frequency Response at Various DC Levels Figure 17. Harmonic Distortion vs. Frequency at Various Gains
0.5 –60 VOUT, dm = 100mV p-p VOUT, dm = 2V p-p 0.4 V B) –65 S = ±2.5V d HD2, RL, dm = 1kΩ N ( 0.3 –70 HD3, R AI Bc) L, dm = 1kΩ HD2, R G d L, dm = 200Ω 0.2 ( P –75 N HD3, RL, dm = 200Ω O O IO 0.1 –80 -L RT D O E 0 T S –85 S O –0.1 C DI –90 D CL NI E RL = 1kΩ O IZ –0.2 R M –95 L = 200Ω AL –0.3 RL = 1kΩ OUT1 HAR –100 RM RL = 1kΩ OUT2 NO –0.4 RL = 200Ω OUT1 –105 RL = 200Ω OUT2 –0.5 –110 1 10 100 1k
20 23 0
1 10 100
0 9- 9-
FREQUENCY (MHz)
42
FREQUENCY (MHz)
42 07 07 Figure 15. 0.1 dB Flatness Small Signal Response for Various Loads Figure 18. Harmonic Distortion vs. Frequency at Various Loads Rev. A | Page 10 of 24 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAMS TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS 5 V OPERATION ±DIN to VOUT, dm Performance VOCM to VOUT, cm Performance General Performance 3.3 V OPERATION ±DIN to VOUT, dm Performance VOCM to VOUT, cm Performance General Performance ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE MAXIMUM POWER DISSIPATION ESD CAUTION PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS OPERATIONAL DESCRIPTION DEFINITION OF TERMS Differential Voltage Common-Mode Voltage Balance THEORY OF OPERATION ANALYZING AN APPLICATION CIRCUIT SETTING THE CLOSED-LOOP GAIN STABLE FOR GAINS ≥2 ESTIMATING THE OUTPUT NOISE VOLTAGE IMPACT OF MISMATCHES IN THE FEEDBACK NETWORKS CALCULATING THE INPUT IMPEDANCE FOR AN APPLICATION CIRCUIT Terminating a Single-Ended Input INPUT COMMON-MODE VOLTAGE RANGE INPUT AND OUTPUT CAPACITIVE AC COUPLING MINIMUM RG VALUE OF 50 Ω SETTING THE OUTPUT COMMON-MODE VOLTAGE LAYOUT, GROUNDING, AND BYPASSING HIGH PERFORMANCE ADC DRIVING OUTLINE DIMENSIONS ORDERING GUIDE
ТМ Электроникс. Электронные компоненты и приборы. Скидки, кэшбэк и бесплатная доставка