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LT1635CS8 датащи(PDF) 4 Page - Linear Technology |
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LT1635CS8 датащи(HTML) 4 Page - Linear Technology |
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4 / 12 page ![]() 4 LT1635 SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VREF Feedback Sense Voltage Voltage at Pin 1 with Pin 1 Connected q 189 200 211 mV to Pin 8 (Note 5) TC VREF Reference Drift (Note 3) q 40 120 ppm/ °C Feedback Current Current into Pin 8 3.5 10 nA q 5.0 15 nA Line Regulation 0 ≤ IREF ≤ 1mA, VREF = 200mV VS = ±0.6V to ±5V 20 25 ppm /V VS = ±0.65V to ±5V (Note 2) q 30 55 ppm/ V Load Regulation IREF = 0 to 1mA 150 300 ppm/mA q 200 500 ppm/mA Reference Amplifier Gain VO = 0.2V to 8.5V 45 90 V/mV VS = 10V, 0V q 25 50 V/mV ELECTRICAL CHARACTERISTICS ±5V OP AMP: V S = ± 5V; VCM = VOUT = 0V, TA = 25°C, unless otherwise noted. (Note 1) ±5V REFERENCE: V S = ± 5V, TA = 25°C, unless otherwise noted. (Note 1) SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS AVOL Large-Signal Voltage Gain VO = – 4.5V to 4.5V, No Load q 175 300 V/mV VO = – 4.5V to 4.5V, RL = 1.1k q 15 100 V/mV VO = – 4.5V to 4.5V, RL = 500Ω q 10 60 V/mV VO Output Voltage Swing VS = ±5V, No Load q ±4.975 ±4.985 mV VS = ±5V, ISINK = 5mA q ±4.65 ±4.75 mV VS = ±5V, ISINK = 10mA q ±4.5 ±4.6 mV ISC Short-Circuit Current VS = ±5V ±25 ±40 mA PSRR Power Supply Rejection Ratio VS = ±1V to ±6V, VCM = VO = 0V 90 100 dB q 88 98 dB IS Supply Current 135 215 µA q 160 280 µA GBW Gain Bandwidth Product f = 1kHz 175 kHz SR Slew Rate AV = –1, RL = ∞ 0.05 V/ µs The q denotes specifications that apply over the full operating temperature range. Note 1: The LT1635C is guaranteed to operate over the commercial temperature range of 0 °C to 70°C. It is designed, characterized and expected to meet these extended temperature limits, but is not tested at –40 °C and 85°C. The LT1635I is guaranteed to meet the industrial temperature range. Note 2: The LT1635 op amp operates on a 1.2V supply over the full industrial temperature range with an input common mode of 0V to 0.2V. The minimum supply voltage for the reference to operate properly over this temperature range is 1.3V. Note 3: This parameter is not 100% tested. Temperature coefficient is measured by dividing the change in output voltage by specified temperature range. Note 4: Shunt gain defines the operation in floating applications when the output is connected to the V + terminal and input common mode is referred to V –. Note 5: If part is stored outside of the specified temperature range, the output may shift due to hysteresis. |
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