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LMC6008 датащи(PDF) 3 Page - National Semiconductor (TI) |
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LMC6008 датащи(HTML) 3 Page - National Semiconductor (TI) |
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3 / 4 page ![]() AC Electrical Characteristics Unless otherwise specified all limits guaranteed for TJ e 25 C VCC e 145V and RL e 0X Symbol Parameter Conditions (Note 5) Typ LMC6008 Units Limit (Note 6) SR Slew Rate Buffers 1 3 5 7 (Note 3) 170 V ms min Buffers 2 4 6 8 (Note 3) 085 V ms min tS Settling Time (Notes 3 7) 16 m s max tON Standby Response Time ON 10 m s max tOFF Standby Response Time OFF 10 m s max PBW Power Bandwidth VO e 10 VPP for Hi-Speed 45 VO e 5VPP for Lo-Speed KHz min (Note 3) CL Load Capacitance 01 m F max Note 1 Absolute Maximum Ratings indicate limits beyond which damage to the device may occur Operating ratings indicate conditions for which the device is intended to be functional but specific performance is not guaranteed For guaranteed specifications and the test conditions see the Electrical Characteristics Note 2 Human body model 15 kX in series with 100 pF Note 3 The Load is a series connection of a 01 mF capacitor and a 1X resistor Note 4 The maximum power dissipation is a function of TJ(max) iJA and TA The maximum allowable power dissipation at any ambient temperature is PD e (TJ(max) b TA) iJA where the junction-to-ambient thermal resistance iJA e 50 CW If the maximum allowable power dissipation is exceeded the thermal limit circuit will limit the die temperature to approximately 160 C All numbers apply for packages soldered directly into a PC board Note 5 Typical Values represent the most likely parametric norm Note 6 All limits are guaranteed by testing or statistical analysis Note 7 The settling time is measured from the input transition to a point 50 mV of the final value for both rising and falling transitions The input swing is 05V to 135V for buffers 1 3 5 7 and 375V to 1025V for buffers 2 4 6 8 Input rise time should be less than 1 ms Note 8 High-Speed Buffers are 1 3 5 7 and Low-Speed Buffers are 2 4 6 8 Note 9 Output Voltage Difference is the difference between the highest and lowest buffer output voltage when all buffer inputs are at identical voltages http www nationalcom 3 |
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