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LT1210CR Datasheet(PDF) 3 Page - Linear Technology |
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LT1210CR Datasheet(HTML) 3 Page - Linear Technology |
3 / 16 page 3 LT1210 SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS CMRR Common Mode Rejection Ratio VS = ±15V, VCM = ±12V q 55 62 dB VS = ±5V, VCM = ±2V q 50 60 dB Inverting Input Current VS = ±15V, VCM = ±12V q 0.1 10 µA/V Common Mode Rejection VS = ±5V, VCM = ±2V q 0.1 10 µA/V PSRR Power Supply Rejection Ratio VS = ±5V to ±15V q 60 77 dB Noninverting Input Current VS = ±5V to ±15V q 30 500 nA/V Power Supply Rejection Inverting Input Current VS = ±5V to ±15V q 0.7 5 µA/V Power Supply Rejection AV Large-Signal Voltage Gain TA = 25°C, VS = ±15V, VOUT = ±10V, 55 71 dB RL = 10Ω (Note 3) VS = ±15V, VOUT = ±8.5V, RL = 10Ω (Note 3) q 55 68 dB VS = ±5V, VOUT = ±2V, RL = 10Ω q 55 68 dB ROL Transresistance, ∆VOUT/∆IIN– TA = 25°C, VS = ±15V, VOUT = ±10V, RL = 10Ω (Note 3) 100 260 k Ω VS = ±15V, VOUT = ±8.5V, RL = 10Ω (Note 3) q 75 200 k Ω VS = ±5V, VOUT = ±2V, RL = 10Ω q 75 200 k Ω VOUT Maximum Output Voltage Swing TA = 25°C, VS = ±15V, RL = 10Ω (Note 3) ±10.0 ±11.5 V q ±8.5 V TA = 25°C, VS = ±5V, RL = 10Ω±2.5 ±3.0 V q ±2.0 V IOUT Maximum Output Current (Note 3) VS = ±15V, RL = 1Ω q 1.1 2.0 A IS Supply Current (Note 3) TA = 25°C, VS = ±15V, VSD = 0V 35 50 mA q 65 mA Supply Current, RSD = 51k (Notes 3, 4) TA = 25°C, VS = ±15V 15 30 mA Positive Supply Current, Shutdown VS = ±15V, VSD = 15V q 200 µA Output Leakage Current, Shutdown VS = ±15V, VSD = 15V q 10 µA SR Slew Rate (Note 5) TA = 25°C, AV = 2, RL = 400Ω 400 900 V/ µs Slew Rate (Note 3) TA = 25°C, AV = 2, RL = 10Ω 900 V/ µs Differential Gain (Notes 3, 6) VS = ±15V, RF = 750Ω, RG = 750Ω, RL = 15Ω 0.3 % Differential Phase (Notes 3, 6) VS = ±15V, RF = 750Ω, RG = 750Ω, RL = 15Ω 0.1 DEG BW Small-Signal Bandwidth AV = 2, VS = ±15V, Peaking ≤ 1dB, 55 MHz RF = RG = 680Ω, RL = 100Ω AV = 2, VS = ±15V, Peaking ≤ 1dB, 35 MHz RF = RG = 576Ω, RL = 10Ω ELECTRICAL CHARACTERISTICS VCM = 0V, ±5V ≤ VS ≤ ±15V, pulse tested, VSD = 0V, unless otherwise noted. supply voltages greater than ±5V, use the TO-220 or DD package. See “Thermal Considerations” in the Applications Information section for details on calculating junction temperature. If the maximum dissipation of the package is exceeded, the device will go into thermal shutdown. Note 4: RSD is connected between the Shutdown pin and ground. Note 5: Slew rate is measured at ±5V on a ±10V output signal while operating on ±15V supplies with RF = 1.5k, RG = 1.5k and RL = 400Ω. Note 6: NTSC composite video with an output level of 2V. The q denotes specifications which apply for 0 °C ≤ TA ≤ 70°C. Note 1: Applies to short circuits to ground only. A short circuit between the output and either supply may permanently damage the part when operated on supplies greater than ±10V. Note 2: Commercial grade parts are designed to operate over the temperature range of – 40 °C ≤ TA ≤ 85°C, but are neither tested nor guaranteed beyond 0 °C ≤ TA ≤ 70°C. Industrial grade parts tested over –40 °C ≤ TA ≤ 85°C are available on special request. Consult factory. Note 3: SO package is recommended for ±5V supplies only, as the power dissipation of the SO package limits performance on higher supplies. For |
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