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LMH6505 bảng dữ liệu(PDF) 4 Page - Texas Instruments |
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LMH6505 bảng dữ liệu(HTML) 4 Page - Texas Instruments |
4 / 30 page LMH6505 SNOSAT4E – DECEMBER 2005 – REVISED APRIL 2013 www.ti.com Electrical Characteristics (1) (continued) Unless otherwise specified, all limits are ensured for TJ = 25°C, VS = ±5V, AVMAX = 9.4 V/V, RF = 1 kΩ, RG = 100Ω, VIN = ±0.1V, RL = 100Ω, VG = +2V. Boldface limits apply at the temperature extremes. Symbol Parameter Conditions Min Typ Max Units (2) (3) (2) Distortion & Noise Performance HD2 2nd Harmonic Distortion 2VPP, 20 MHz −47 HD3 3rd Harmonic Distortion –61 dBc THD Total Harmonic Distortion −45 En tot Total Equivalent Input Noise f > 1 MHz, RSOURCE = 50Ω 4.4 nV/ √Hz IN Input Noise Current f > 1 MHz 2.6 pA/ √Hz DG Differential Gain f = 4.43 MHz, RL = 100Ω 0.30 % DP Differential Phase 0.15 deg DC & Miscellaneous Performance GACCU Gain Accuracy VG = 2.0V 0 ±0.50 dB (See Application Information) 0.8V < VG < 2V +0.1/ −0.53 +4.3/ −3.9 G Match Gain Matching VG = 2.0V — ±0.50 dB (See Application Information) 0.8V < VG < 2V — +4.2/ −4.0 K Gain Multiplier 0.890 0.940 0.990 V/V (See Application Information) 0.830 1.04 VIN NL Input Voltage Range RG Open ±3 V VIN L RG = 100Ω ±0.60 ±0.74 ±0.50 I RG_MAX RG Current Pin 3 ±6.0 ±7.4 mA ±5.0 IBIAS Bias Current Pin 2 (7) −0.6 −2.5 µA −2.6 TC IBIAS Bias Current Drift Pin 2 (8) 1.28 nA/°C RIN Input Resistance Pin 2 7 M Ω CIN Input Capacitance Pin 2 2.8 pF IVG VG Bias Current Pin 1, VG = 2V (7) 0.9 µA TC IVG VG Bias Drift Pin 1 (8) 10 pA/°C R VG VG Input Resistance Pin 1 25 M Ω C VG VG Input Capacitance Pin 1 2.8 pF VOUT L Output Voltage Range RL = 100Ω ±2.1 ±2.4 ±1.9 V VOUT NL RL = Open ±3.1 ROUT Output Impedance DC 0.12 Ω IOUT Output Current VOUT = ±4V from Rails ±60 ±80 mA ±40 VO OFFSET Output Offset Voltage 0V < VG < 2V ±10 ±55 mV ±70 +PSRR +Power Supply Rejection Ratio Input Referred, 1V change, VG = –65 –72 dB (9) 2.2V −PSRR −Power Supply Rejection Ratio Input Referred, 1V change, VG = –65 –75 dB (9) 2.2V IS Supply Current No Load 9.5 11 14 mA 7.5 16 (7) Positive current corresponds to current flowing into the device. (8) Drift is determined by dividing the change in parameter distribution at temperature extremes by the total temperature change. (9) +PSRR definition: [| ΔVOUT/ΔV +| / A V], −PSRR definition: [|ΔVOUT/ΔV −| / A V] with 0.1V input voltage. ΔVOUT is the change in output voltage with offset shift subtracted out. 4 Submit Documentation Feedback Copyright © 2005–2013, Texas Instruments Incorporated Product Folder Links: LMH6505 |
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