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LT1228CS8 датащи(PDF) 4 Page - Linear Technology |
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LT1228CS8 датащи(HTML) 4 Page - Linear Technology |
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4 / 20 page ![]() 4 LT1228 1228fc IB Input Bias Current TA = 25°C 0.4 1 µA ● 5 µA en Input Noise Voltage Density f = 1kHz 20 nV/ √Hz RIN Input Resistance-Differential Mode VIN ≈ ±30mV ● 30 200 k Ω Input Resistance-Common Mode VS = ±15V, VCM = ±12V ● 50 1000 M Ω VS = ±5V, VCM = ±2V ● 50 1000 M Ω CIN Input Capacitance 3pF Input Voltage Range VS = ±15V, TA = 25°C ±13 ±14 V VS = ±15V ● ±12 V VS = ±5V, TA = 25°C ±3 ±4V VS = ±5V ● ±2V CMRR Common Mode Rejection Ratio VS = ±15V, VCM = ±13V, TA = 25°C 60 100 dB VS = ±15V, VCM = ±12V ● 60 dB VS = ±5V, VCM = ±3V, TA = 25°C 60 100 dB VS = ±5V, VCM = ±2V ● 60 dB PSRR Power Supply Rejection Ratio VS = ±2V to ±15V, TA = 25°C 60 100 dB VS = ±3V to ±15V ● 60 dB gm Transconductance ISET = 100µA, IOUT = ±30µA, TA = 25°C 0.75 1.00 1.25 µA/mV Transconductance Drift ● – 0.33 %/ °C IOUT Maximum Output Current ISET = 100µA ● 70 100 130 µA IOL Output Leakage Current ISET = 0µA (+IIN of CFA), TA = 25°C 0.3 3 µA ● 10 µA VOUT Maximum Output Voltage Swing VS = ±15V , R1 = ∞ ● ±13 ±14 V VS = ±5V , R1 = ∞ ● ±3 ±4V RO Output Resistance VS = ±15V, VOUT = ±13V ● 28 M Ω VS = ±5V, VOUT = ±3V ● 28 M Ω Output Capacitance (Note 3) VS = ±5V 6 pF IS Supply Current, Both Amps ISET = 1mA ● 915 mA THD Total Harmonic Distortion VIN = 30mVRMS at 1kHz, R1 = 100k 0.2 % BW Small-Signal Bandwidth R1 = 50 Ω,ISET = 500µA 80 MHz tr Small-Signal Rise Time R1 = 50 Ω,ISET = 500µA, 10% to 90% 5 ns Propagation Delay R1 = 50 Ω,ISET = 500µA, 50% to 50% 5 ns ELECTRICAL C C HARA TERISTICS SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: A heat sink may be required depending on the power supply voltage. Note 3: This is the total capacitance at Pin 1. It includes the input capacitance of the current feedback amplifier and the output capacitance of the transconductance amplifier. Note 4: Slew rate is measured at ±5V on a ±10V output signal while operating on ±15V supplies with RF = 1k, RG = 110Ω and RL = 400Ω. The slew rate is much higher when the input is overdriven, see the applications section. Note 5: Rise time is measured from 10% to 90% on a ±500mV output signal while operating on ±15V supplies with RF = 1k, RG = 110Ω and RL = 100Ω. This condition is not the fastest possible, however, it does guarantee the internal capacitances are correct and it makes automatic testing practical. Note 6: AC parameters are 100% tested on the ceramic and plastic DIP packaged parts (J and N suffix) and are sample tested on every lot of the SO packaged parts (S suffix). Note 7: NTSC composite video with an output level of 2V. Note 8: Back to back 6V Zener diodes are connected between Pins 2 and 3 for ESD protection. The ● denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. Transconductance Amplifier, Pins 1, 2, 3, 5. ±5V ≤ VS ≤ ±15V, ISET = 100 µA, VCM = 0V unless otherwise noted. |
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