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MAX3005EBP-T Datasheet(PDF) 4 Page - Maxim Integrated Products |
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MAX3005EBP-T Datasheet(HTML) 4 Page - Maxim Integrated Products |
4 / 25 page +1.2V to +5.5V, ±15kV ESD-Protected, 0.1µA, 35Mbps, 8-Channel Level Translators 4 _______________________________________________________________________________________ TIMING CHARACTERISTICS (VCC = +1.65V to +5.5V, VL = +1.2V to VCC, EN = VL (MAX3000E/MAX3001E/MAX3002/MAX3004–MAX3012), EN A/B = VL or 0 (MAX3003), TA = TMIN to TMAX. Typical values are at VCC = +1.65V, VL = +1.2V, and TA = +25°C.) (Notes 1, 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS RS = 50 Ω, CVCC = 50pF, MAX3000E, Figures 1a, 1b 400 800 1200 RS = 50 Ω, CVCC = 50pF, MAX3001E, Figures 1a, 1b 25 50 I/O VCC_ Rise Time tRVCC RS = 50 Ω, CVCC = 50pF, MAX3002–MAX3012, Figures 1a, 1b 15 ns RS = 50 Ω, CVCC = 50pF, MAX3000E, Figures 1a, 1b 400 800 1200 RS = 50 Ω, CVCC = 50pF, MAX3001E, Figures 1a, 1b 25 50 I/O VCC_ Fall Time tFVCC RS = 50 Ω, CVCC = 50pF, MAX3002–MAX3012, Figures 1a, 1b 15 ns RS = 50 Ω, CVL = 50pF, MAX3000E, Figures 2a, 2b 400 800 1200 RS = 50 Ω, CVL = 50pF, MAX3001E, Figures 2a, 2b 25 50 I/O VL_ Rise Time tRVL RS = 50 Ω, CVL = 15pF, MAX3002–MAX3012, Figures 2a, 2b 15 ns RS = 50 Ω, CVL = 50pF, MAX3000E, Figures 2a, 2b 400 800 1200 RS = 50 Ω, CVL = 50pF, MAX3001E, Figures 2a, 2b 25 65 I/O VL_ Fall Time tFVL RS = 50 Ω, CVL = 15pF, MAX3002–MAX3012, Figures 2a, 2b 15 ns RS = 50 Ω, CVCC = 50pF, MAX3000E, Figures 1a, 1b 1000 RS = 50 Ω, CVCC = 50pF, MAX3001E, Figures 1a, 1b 50 Propagation Delay (Driving I/O VL_) I/OVL-VCC RS = 50 Ω, CVCC = 50pF, MAX3002–MAX3012, Figures 1a, 1b 20 ns RS = 50 Ω, CVL = 50pF, MAX3000E, Figures 2a, 2b 1000 RS = 50 Ω, CVL = 50pF, MAX3001E, Figures 2a, 2b 50 Propagation Delay (Driving I/O VCC_) I/OVCC-VL RS = 50 Ω, CVL = 15pF, MAX3002–MAX3012, Figures 2a, 2b 20 ns Note 1: All units are 100% production tested at TA = +25°C. Limits over the operating temperature range are guaranteed by design and not production tested. Note 2: For normal operation, ensure that VL < VCC. During power-up, VL > VCC does not damage the device. |
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