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LF351N 데이터시트(PDF) 4 Page - Texas Instruments |
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LF351N 데이터시트(HTML) 4 Page - Texas Instruments |
4 / 14 page Absolute Maximum Ratings (Note 1) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage ±18V Power Dissipation (Notes 2, 7) 670 mW Operating Temperature Range 0˚C to +70˚C T j(MAX) 115˚C Differential Input Voltage ±30V Input Voltage Range (Note 3) ±15V Output Short Circuit Duration Continuous Storage Temperature Range −65˚C to +150˚C Lead Temp. (Soldering, 10 sec.) Metal Can 300˚C DIP 260˚C θ jA N Package 120˚C/W M Package TBD Soldering Information Dual-In-Line Package Soldering (10 sec.) 260˚C Small Outline Package Vapor Phase (60 sec.) 215˚C Infrared (15 sec.) 220˚C See AN-450 “Surface Mounting Methods and Their Effect on Product Reliability” for other methods of soldering surface mount devices. ESD rating to be determined DC Electrical Characteristics (Note 4) Symbol Parameter Conditions LF351 Units Min Typ Max V OS Input Offset Voltage R S = 10 kΩ,TA = 25˚C 5 10 mV Over Temperature 13 mV ∆V OS/∆T Average TC of Input Offset R S=10 kΩ 10 µV/˚C Voltage I OS Input Offset Current T j = 25˚C, (Notes 4, 5) 25 100 pA T j ≤ 70˚C 4 nA I B Input Bias Current T j = 25˚C, (Notes 4, 5) 50 200 pA T j ≤ ±70˚C 8 nA R IN Input Resistance T j=25˚C 10 12 Ω A VOL Large Signal Voltage Gain V S= ±15V, TA=25˚C 25 100 V/mV V O= ±10V, RL=2kΩ Over Temperature 15 V/mV V O Output Voltage Swing V S= ±15V, RL=10 kΩ ±12 ±13.5 V V CM Input Common-Mode Voltage +15 V Range V S= ±15V ±11 −12 V CMRR Common-Mode Rejection Ratio R S≤10 kΩ 70 100 dB PSRR Supply Voltage Rejection Ratio (Note 6) 70 100 dB I S Supply Current 1.8 3.4 mA Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is func- tional, but do not guarantee specific performance limits. Note 2: For operating at elevated temperature, the device must be derated based on the thermal resistance, θJA. Note 3: Unless otherwise specified the absolute maximum negative input voltage is equal to the negative power supply voltage. Note 4: These specifications apply for VS=±15V and 0˚C≤TA≤+70˚C. VOS,IB and IOS are measured at VCM=0. Note 5: The input bias currents are junction leakage currents which approximately double for every 10˚C increase in the junction temperature, Tj. Due to the limited production test time, the input bias currents measured are correlated to junction temperature. In normal operation the junction temperature rises above the ambient temperature as a result of internal power dissipation, PD.Tj=TA+θjA PD where θjA is the thermal resistance from junction to ambient. Use of a heat sink is recom- mended if input bias current is to be kept to a minimum. Note 6: Supply voltage rejection ratio is measured for both supply magnitudes increasing or decreasing simultaneously in accordance with common practice. From ±15V to ±5V. Note 7: Max. Power Dissipation is defined by the package characteristics. Operating the part near the Max. Power Dissipation may cause the part to operate outside guaranteed limits. 3 www.national.com PrintDate=1998/04/07 PrintTime=13:52:34 38265 ds005648 Rev. No. 3 cmserv Proof 3 |
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