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LT6204 Datasheet(PDF) 5 Page - Linear Technology |
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LT6204 Datasheet(HTML) 5 Page - Linear Technology |
5 / 16 page 5 LT1818/LT1819 18189f ELECTRICAL CHARACTERISTICS The q denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C (Note 9). VS = 5V, 0V; VCM = 2.5V, RL to 2.5V unless otherwise noted. Note 1: Absolute Maximum Ratings are those values beyond which the life of a device may be impaired. Note 2: Differential inputs of ±6V are appropriate for transient operation only, such as during slewing. Large sustained differential inputs can cause excessive power dissipation and may damage the part. Note 3: A heat sink may be required to keep the junction temperature below absolute maximum when the output is shorted indefinitely. Note 4: Input offset voltage is pulse tested and is exclusive of warm-up drift. Note 5: With ±5V supplies, slew rate is tested in a closed-loop gain of –1 by measuring the rise time of the output from –2V to 2V with an output step from –3V to 3V. With single 5V supplies, slew rate is tested in a closed-loop gain of –1 by measuring the rise time of the output from 1.5V to 3.5V with an output step from 1V to 4V. Falling edge slew rate is not production tested, but is designed, characterized and expected to be within 10% of the rising edge slew rate. Note 6: Full power bandwidth is calculated from the slew rate: FPBW = SR/2 πVP Note 7: This parameter is not 100% tested. Note 8: The LT1818C/LT1818I and LT1819C/LT1819I are guaranteed functional over the operating temperature range of – 40 °C to 85°C. Note 9: The LT1818C/LT1819C are guaranteed to meet specified performance from 0 °C to 70°C and is designed, characterized and expected to meet the extended temperature limits, but is not tested at –40 °C and 85°C. The LT1818I/LT1819I are guaranteed to meet the extended temperature limits. Note 10: Thermal resistance ( θJA) varies with the amount of PC board metal connected to the package. The specified values are for short traces connected to the leads. If desired, the thermal resistance can be significantly reduced by connecting the V– pin to a large metal area. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IOUT Output Current VOUT = 1.5V or 3.5V, 30mV Overdrive ±30 ±50 mA TA = 0°C to 70°C q ±25 mA TA = –40°C to 85°C q ±20 mA ISC Output Short-Circuit Current VOUT = 2.5V, 1V Overdrive (Note 3) ±80 ±140 mA TA = 0°C to 70°C q ±70 mA TA = –40°C to 85°C q ±50 mA SR Slew Rate AV = 1 1000 V/ µs AV = –1 (Note 5) 450 800 V/ µs TA = 0°C to 70°C q 375 V/ µs TA = –40°C to 85°C q 300 V/ µs FPBW Full Power Bandwidth 2VP-P (Note 6) 125 MHz GBW Gain Bandwidth Product f = 4MHz, RL = 500Ω 240 360 MHz TA = 0°C to 70°C q 230 MHz TA = –40°C to 85°C q 220 MHz tr, tf Rise Time, Fall Time AV = 1, 10% to 90%, 0.1V Step 0.7 ns tPD Propagation Delay AV = 1, 50% to 50%, 0.1V Step 1.1 ns OS Overshoot AV = 1, 0.1V, RL = 100Ω 20 % HD Harmonic Distortion HD2, AV = 2, f = 5MHz, VOUT = 2VP-P, RL = 500Ω –72 dBc HD3, AV = 2, f = 5MHz, VOUT = 2VP-P, RL = 500Ω –74 dBc dG Differential Gain AV = 2, RL = 150Ω 0.07 % dP Differential Phase AV = 2, RL = 150Ω 0.07 DEG IS Supply Current Per Amplifier 8.5 10 mA TA = 0°C to 70°C q 13 mA TA = –40°C to 85°C q 14 mA |
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