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74LVX3L383QSCX Arkusz danych(PDF) 2 Page - National Semiconductor (TI) |
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74LVX3L383QSCX Arkusz danych(HTML) 2 Page - National Semiconductor (TI) |
2 / 6 page Absolute Maximum Ratings (Note 1) If MilitaryAerospace specified devices are required please contact the National Semiconductor Sales OfficeDistributors for availability and specifications Supply Voltage (VCC) b 05V to a70V DC Switch Voltage (VS) b 05V to a70V DC Input Voltage (VI) (Note 2) b 05V to a70V DC Input Diode Current (IIN) with VI k 0 b 20 mA DC Output (IO) Sink Current 120 mA Storage Temperature Range (TSTG) b 65 Cto a150 C Power Dissipation 05W Note 1 The ‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaran- teed The device should not be operated at these limits The parametric values defined in the ‘‘Electrical Characteristics’’ table are not guaranteed at the absolute maximum ratings The ‘‘Recommended Operating Conditions’’ table will define the conditions for actual device operation Note 2 The input and output negative voltage ratings may be exceeded if the input and output diode current ratings are observed Recommended Operating Conditions Supply Voltage (VCC) 40V to 55V Free Air Operating Temperature (TA) b 40 Cto a85 C DC Electrical Characteristics Symbol Parameter VCC (V) 74LVX3L383 Units Conditions TA eb40 Cto a85 C Min Typ Max (Note 5) VIK Maximum Clamp 475 b 12 V IIN eb18 mA Diode Voltage VIH Minimum High 475 – 525 20 V Level Input Voltage VIL Maximum Low 475 – 525 08 Level Input Voltage IIN Maximum Input 0 10 m A 0 s VIN s 525V Leakage Current 525 g 1 IOZ Maximum TRI-STATE 525 g 10 m A 0 s A B s VCC IO Leakage IOS Short Circuit Current 475 100 mA VI(A) VI(B) e 0V VI(B) VI(A) e 475V RON Switch On 475 57 X VI e 0V ION e 30 mA Resistance (Note 3) 10 15 X VI e 24V ION e 15 mA ICC Maximum Quiescent 525 02 10 m A VI e VCC GND Supply Current IO e 0 D ICC Increase in ICC 525 25 mA VIN e 315V IO e 0 per Input (Note 4) Per Control Input Note 3 Measured by voltage drop between A and B pin at indicated current through the switch On resistance is determined by the lower of the voltages on the two (A or B) pins Note 4 Per TTL driven input (VIN e 315V control inputs only) A and B pins do not contribute to ICC Note 5 All typical values are at VCC e 50V TA e 25 C http www nationalcom 2 |
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