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LMP7300MA/NOPB Fiches technique(PDF) 10 Page - Texas Instruments |
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LMP7300MA/NOPB Fiches technique(HTML) 10 Page - Texas Instruments |
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10 / 30 page ![]() OUT + - V+ V+ GND 2.048 V GND VREF INP INN HYSTP HYSTN LMP7300 SNOSAT7G – AUGUST 2007 – REVISED OCTOBER 2015 www.ti.com 7 Detailed Description 7.1 Overview The LMP7300 device is a unique combination of micropower and precision. The open collector comparator has low offset, high CMRR, high PSRR, programmable hysteresis and microamp supply current. The precision 2.048- V reference provides a DAC or ADC with an accurate binary divisible voltage. The comparator and reference combination forms an ideal single IC solution for low power sensor or portable applications. 7.2 Functional Block Diagram 7.3 Feature Description 7.3.1 Voltage Reference The reference output voltage is a band gap derived 2.048 V that is trimmed to achieve typically 0.2% accuracy over the full operating temperature range of −40°C to 125°C. The trim procedure employs a curvature correction algorithm to compensate for the base emitter thermal nonlinearity inherent in band gap design topologies. The reference accuracy and the set resistor tolerance determine the magnitude and precision of the programmable hysteresis. In situations where reference noise filtering is required, TI recommends a 5-µF capacitor in series with a 190- Ω resistor to ground. 7.3.2 Comparator 7.3.2.1 Output Stage The comparator employs an open collector output stage that can switch microamp loads for micropower precision threshold detection to applications requiring activating a solenoid, a lamp, or an LED. The wired-OR type output easily interfaces to TTL, CMOS, or multiple outputs, as in a window comparator application, over a range of 0.5 V to 12 V. The output is capable of driving greater than 10-mA output current and yet maintaining a saturation voltage less than 0.4 V over temperature. The supply current increases linearly when driving heavy loads, so TI recommends a pullup resistor of 100 k Ω or greater for micropower applications. 7.3.2.2 Fault Detection Rate The user’s choice of a pullup resistor and capacitive load determines the minimum response time and the event detection rate. By optimizing overdrive, the pullup resistor and capactive load fault update rates of 200 kHz to 250 kHz or greater can be achieved. 10 Submit Documentation Feedback Copyright © 2007–2015, Texas Instruments Incorporated Product Folder Links: LMP7300 |
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