28 /10 — AD8337. Data Sheet. –40. f = 10MHz,. HD3. VGAIN = 0.7V. HD2. /√Hz. Bc). …
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AD8337. Data Sheet. –40. f = 10MHz,. HD3. VGAIN = 0.7V. HD2. /√Hz. Bc). –50. INPUT-REFERRED NOISE. E IS. –60. R R. IC DI. E R. S THERMAL NOISE ALONE. –70
link to page 16 link to page 15 link to page 15 link to page 15 link to page 15 link to page 15 AD8337Data Sheet10–40f = 10MHz,HD3VGAIN = 0.7VHD2)/√HzBc)V–50nINPUT-REFERRED NOISE(d(NE ISIOORTNODTE1–60SR RIC DIFENE RROS THERMAL NOISE ALONET-RMU–70PHAIN 4 21 -0 -02 575 0.1 5575 0 –80 05 1101001k05101520253035404550SOURCE RESISTANCE (Ω)LOAD CAPACITANCE (pF) Figure 21. Input Referred Noise vs. RS Figure 24. Harmonic Distortion vs. Load Capacitance (See Figure 61) (See Figure 52) 35–3050Ω SOURCEBc) d30N ( IO –40 RT O TB) 25dIS(DWITH 50Ω SHUNT–50CTERMINATION AT INPUTURENI20OIG F EUNTERMINATED–60IS O 15R HARMNRDE O –70101MHzND-10MHz 22 25 0 CO35MHz 0 E 5- 75- S100MHz 57 5 055 –80 05 –800–600–400–2000200400600800–800–600–400–2000200400600800VVGAIN (mV)GAIN (mV) Figure 22. Noise Figure vs. VGAIN Figure 25. HD2 vs. VGAIN at Four Frequencies (See Figure 51) (See Figure 52) –30–401MHzVOUT = 1V p-pHD3 VS = ±2.5V10MHzVHD3 VBc)GAIN = 0VS = ±5VHD2 V35MHzS = ±2.5V(dHD2 VN100MHzS = ±5V–40c)IO T–50dBR ON (T SIO–50RTCDIONIT –60OS DI–60C NI OR HARM DE–70R O –70HARMRD- 26 HI -0 -023 T 575 575 –80 05 05 –80–800–600–400–200020040060080002004006008001.0k 1.2k 1.4k 1.6k 1.8k 2.0kVGAIN (mV)LOAD RESISTANCE (Ω) Figure 23. Harmonic Distortion vs. RL and Supply Voltage Figure 26. HD3 vs. VGAIN at Four Frequencies (See Figure 52) (See Figure 52) Rev. D | Page 10 of 28 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAM TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS THEORY OF OPERATION OVERVIEW PREAMPLIFIER VGA GAIN CONTROL OUTPUT STAGE ATTENUATOR SINGLE-SUPPLY OPERATION AND AC COUPLING NOISE APPLICATIONS INFORMATION PREAMPLIFIER CONNECTIONS Noninverting Gain Configuration Inverting Gain Configuration DRIVING CAPACITIVE LOADS GAIN CONTROL CONSIDERATIONS THERMAL CONSIDERATIONS PSI (Ψ) BOARD LAYOUT EVALUATION BOARDS CIRCUIT OPTIONS OUTPUT PROTECTION MEASUREMENT SETUP BOARD LAYOUT CONSIDERATIONS OUTLINE DIMENSIONS ORDERING GUIDE