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LM9070 Datasheet(PDF) 7 Page - National Semiconductor (TI) |
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LM9070 Datasheet(HTML) 7 Page - National Semiconductor (TI) |
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7 / 13 page ![]() Control Logic Truth Table ON/OFF Input Keep-Alive Input Output Voltage Reset Output Operating Condition L X 0V L Low quiescent current standby (OFF) condition ↑ X5V ↑ after delay Output turns ON H X 5V H Normal ON condition ↓ H 0V L Output turns OFF ↓ L 5V H Output kept ON by Keep-Alive Input ↑ L 5V H Output remains ON (or turns ON) HX ∆V OUT ≥ −300 mV L Output pulled out of regulation, reset flag generated LL V OUT ≤ 4V L Output latches OFF Block Diagram Application Information The LM9070 voltage regulator has been optimized for use in microprocessor based automotive systems. Several unique design features have been incorporated to address many FMEA (Failure Mode Effects Analysis) concerns for fail-safe system performance. FAULT TOLERANT FEATURES While not specifically guaranteed due to production testing limitations, the LM9070 has been tested and shown to con- tinue to provide a regulated output and, not generate an er- roneous system reset signal while subjected to high levels of RF electric field energy (up to 300 V/m signal strength over a 2 MHz to 400 MHz frequency range). This is very important in vehicle safety related applications where the system must continue to operate normally. To maintain this immunity to RFI the output bypass capacitor is important (47 µF is rec- ommended). This regulator is suitable for applications where continuous connection to the battery is required ( Refer to the Typical Ap- plication Circuit ). ON/OFF control of the regulator and sys- tem can be accomplished by switching the ON/OFF input to the battery or ignition supply V IN supply through a SPST switch. If this input becomes open circuited, an internal pull-down resistor ensures that the regulator turns OFF. When the regulator is switched OFF the current load on the battery drops to less than 60 µA. With the possibility in many applications for V IN and the ON/OFF input pins to be con- nected in a system through long lengths of wire, the ESD protection of these pins has been increased to 12 kV with the addition of small input bypass capacitors. DS012831-22 DS012831-23 FIGURE 1. Typical Application Circuit www.national.com 7 |
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