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LMH6503MA bảng dữ liệu(PDF) 4 Page - Texas Instruments |
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LMH6503MA bảng dữ liệu(HTML) 4 Page - Texas Instruments |
4 / 33 page +0.2VDC +VIN -VIN RF IN R2 50: RG 820: R1 50: C1 0.01PF +5V -5V 0V DC RT 50: RP1 10k: RF 910: ROUT 50: RL 50: 2 VG + - LMH6503 PORT 1 PORT 2 LMH6503 SNOSA78E – OCTOBER 2003 – REVISED APRIL 2013 www.ti.com Electrical Characteristics (1) Unless otherwise specified, all limits ensured for TJ = 25°C, VS = ±5V, AV(MAX) = 10, VCM = 0V, RF = 1kΩ, RG = 174Ω, VIN_DIFF = ±0.1V, RL = 100Ω, VG = +1V. Boldface limits apply at the temperature extremes. Parameter Test Conditions Min(2) Typ(2) Max(2) Units Frequency Domain Response BW -3dB Bandwidth VOUT < 0.5PP 135 MHz VOUT < 0.5PP, AV(MAX) = 100 50 GF Gain Flatness VOUT < 0.5VPP, 40 MHz −1V < VG < 1V, ±0.2dB Att Range Flat Band (Relative to Max Gain) ±0.2dB Flatness, f < 30MHZ 20 MHz Attenuation Range(3) ±0.1dB, f < 30MHZ 6.6 BW Gain Control Bandwidth VG = 0V (4) 100 MHz Control PL Linear Phase Deviation DC to 60MHz 1.6 deg G Delay Group Delay DC to 130MHz 2.6 ns CT (dB) Feed-through VG = −1.2V, 30MHz (Output −48 dB Referred) GR Gain Adjustment Range f < 10MHz 79 dB f < 30MHz 68 Time Domain Response tr , tf Rise and Fall Time 0.5V Step 2.2 ns OS% Overshoot 0.5V Step 10 % SR Slew Rate 4V Step(5) 1800 V/µs ΔG Rate Gain Change Rate VIN = 0.3V, 10%−90% of final 4.6 dB/ns output Distortion & Noise performance HD2 2nd Harmonic Distortion 2VPP, 20MHz −60 dBc HD3 3rdHarmonic Distortion 2VPP, 20MHz −61 dBc THD Total Harmonic Distortion 2VPP, 20MHz −57 dBc En tot Total Equivalent Input Noise 1MHz to 150MHz 6.6 nV/ √Hz In Input Noise Current 1MHz to 150MHz 2.4 pA/ √Hz DG Differential Gain f = 4.43MHz, RL = 150Ω, Neg. 0.15 % Sync DP Differential Phase f = 4.43MHz, RL = 150Ω, Neg. 0.22 deg Sync (1) Electrical Table values apply only for factory testing conditions at the temperature indicated. Factory testing conditions result in very limited self-heating of the device such that TJ = TA. No ensured specification of parametric performance is indicated in the electrical tables under conditions of internal self-heating where TJ > TA. (2) Typical values represent the most likely parametric norm. Bold numbers refer to over temperature limits. (3) Flat Band Attenuation (Relative To Max Gain) Range Definition: Specified as the attenuation range from maximum which allows gain flatness specified (either ±0.2dB or ±0.1dB), relative to AVMAX gain. For example, for f<30MHz, here are the Flat Band Attenuation ranges:±0.2dB: 10V/V down to 1V/V=20dB range±0.1dB: 10V/V down to 4.7V/V=6.5dB range (4) Gain Control Frequency Response Schematic: (5) Slew Rate is the average of the rising and falling rates. 4 Submit Documentation Feedback Copyright © 2003–2013, Texas Instruments Incorporated Product Folder Links: LMH6503 |
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