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THS6022CGQE Datasheet(PDF) 5 Page - Texas Instruments |
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THS6022CGQE Datasheet(HTML) 5 Page - Texas Instruments |
5 / 38 page THS6022 250-mA DUAL DIFFERENTIAL LINE DRIVER SLOS225C – SEPTEMBER 1998 – REVISED JANUARY 2000 5 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics, VCC = ±15 V, RL = 50 Ω, RF = 1 kΩ, TA = 25°C (unless otherwise noted) dynamic performance PARAMETER TEST CONDITIONS MIN TYP MAX UNIT VO = 200 mV G = 1 VCC = ± 15 V RF = 787 Ω 210 VO = 200 mV, G = 1 VCC = ± 5 V RF = 910 Ω 150 VO = 200 mV G = 2 VCC = ± 15 V RF = 590 Ω 200 Small signal bandwidth ( 3 dB) VO = 200 mV, G = 2 VCC = ± 5 V RF = 715 Ω 140 MHz Small-signal bandwidth (–3 dB) RL = 100 Ω G=1 VCC = ± 15 V RF = 750 Ω 300 MHz BW RL = 100 Ω, G = 1 VCC = ± 5 V RF = 910 Ω 210 BW RL = 100 Ω G=2 VCC = ± 15 V RF = 620 Ω 260 RL = 100 Ω, G = 2 VCC = ± 5 V RF = 680 Ω 180 RL =50 Ω G=2 VCC = ± 15 V RF = 590 Ω 115 Bandwidth for 0 1 dB flatness RL = 50 Ω, G = 2, VCC = ± 5 V RF = 715 Ω 70 MHz Bandwidth for 0.1 dB flatness RL = 100 Ω G=2 VCC = ± 15 V RF = 620 Ω 140 MHz RL = 100 Ω, G = 2, VCC = ± 5 V RF = 680 Ω 80 SR Slew rate (see Note 2) VCC = ± 15 V, VO(PP) = 20 V, G = 5 1900 V/ µs SR Slew rate (see Note 2) VCC = ± 5 V, VO(PP) = 5 V, G = 2 950 V/ µs ts Settling time to 0.1% 0 V to 10 V Step, G = 2, RL = 1 kΩ 70 ns Full power bandwidth VCC = ± 15 V, VO = 20 V(PP) 30 MHz (see Note 3) VCC = ± 5 V, VO = 4 V(PP) 75 MHz NOTES: 2. Slew rate is measured from an output level range of 25% to 75%. 3. Full power bandwidth = slew rate/2 πVpeak noise/distortion performance PARAMETER TEST CONDITIONS MIN TYP MAX UNIT f = 500 kHz VO(PP) = 20 V –69 VCC = ± 15 V G=2 f = 500 kHz VO(PP) = 2 V –80 VCC = ± 15 V, G = 2 f=1MHz VO(PP) = 20 V –66 THD Total harmonic distortion f = 1 MHz VO(PP) = 2 V –75 dBc THD Total harmonic distortion RL =25 Ω f = 500 kHz –71 dBc VCC = ± 5 V, RL = 25 Ω f = 1 MHz –65 CC , VO(PP) = 2 V, G = 2 RL =50 Ω f = 500 kHz –78 RL = 50 Ω f = 1 MHz –72 I Input noise Positive (IN+) VCC = ± 5Vor ± 15 V G2 f=10kHz 11.5 pA/ √Hz In current Negative (IN–) VCC = ± 5 V or ± 15 V, G = 2, f = 10 kHz, 16 pA/ √Hz AD Differential gain error RL = 150 Ω G=2 NTSC, VCC = ± 5 V 0.03% AD Differential gain error RL = 150 Ω, G = 2 , 40 IRE Mod. VCC = ± 15 V 0.04% φD Differential phase error RL = 150 Ω G=2 NTSC, VCC = ± 5 V 0.08 ° φD Differential hase error RL = 150 Ω, G = 2 40 IRE Mod. VCC = ± 15 V 0.06 ° Crosstalk VI = 200 mV, f = 1 MHz –64 dB Vn Input voltage noise VCC = ± 5 V or ± 15 V, Single-ended f = 10 kHz, G = 2, 1.7 nV/ √Hz |
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