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LPV531 Arkusz danych(PDF) 13 Page - Texas Instruments |
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LPV531 Arkusz danych(HTML) 13 Page - Texas Instruments |
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13 / 27 page ![]() RINT VINT PROGRAMMABLE BIAS GENERATOR IPROG LOW POWER BIAS GERERATOR IREF ISTDB VCC VEE OUT +IN -IN BIAS ISEL LPV531 www.ti.com SNOSAK5B – MARCH 2006 – REVISED MARCH 2013 APPLICATION INFORMATION The LPV531 is an extremely versatile operational amplifier because performance and power consumption can be adjusted during operation. This provides a method to dynamically optimize the supply current, the bandwidth and the output short circuit current in the application. The power level can be set by the current drawn from the ISEL pin according to the application performance requirements. CIRCUIT TOPOLOGY As shown in Figure 35, the LPV531 contains two internal bias reference generators that deliver a reference current (IREF) to the amplifier core. The programmable bias generator generates a 110 mV reference voltage (VINT). This reference voltage is converted into a programmable reference current (IPROG) through the internal resistor (RINT) and the external resistor (REXT) connected to the ISEL pin. Internally, IPROG is added to the output current from the low power bias generator (ISTDB). When the ISEL pin is left floating, IPROG equals zero and the IREF equals ISTDB. The value of ISTDB is such that in this mode the power supply current is below 1 µA. In this 1 µA power mode, the LPV531 is functional but performance over the full temperature range is not ensured. The 1 µA power mode operation is only recommended for applications with a temperature range between 0 and 70°C. Figure 35. Simplified Schematic POWER MODE CONTROL To illustrate typical configurations three possible solutions to control the power mode(s) of the LPV531 will be described. Single Power Mode If the application requires one single power mode for the LPV531, then the easiest way to achieve this is to connect a resistor (REXT) from the ISEL pin to V −. Together with the internal circuitry, R EXT will determine the current drawn from the ISEL pin. Internally the ISEL pin is connected to an 11 kΩ internal series resistor (RINT) which is biased at VINT = 110 mV. This set up is illustrated in Figure 36. For a desired supply current, bandwidth, short circuit current, or load resistance, the required value of REXT can be calculated using the equations in the section “DETERMINING THE ISEL LEVELS”. Copyright © 2006–2013, Texas Instruments Incorporated Submit Documentation Feedback 13 Product Folder Links: LPV531 |
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