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REF2125IDBVR 数据表(PDF) 16 Page - Texas Instruments |
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REF2125IDBVR 数据表(HTML) 16 Page - Texas Instruments |
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16 / 24 page ![]() | P P u PEAK CS I 466 A 13.54 A R 16 REF2125 SBAS798 – SEPTEMBER 2017 www.ti.com Product Folder Links: REF2125 Submit Documentation Feedback Copyright © 2017, Texas Instruments Incorporated Feature Description (continued) 8.3.4 Clean Start Feature In many applications (for example, loop powered applications), the supply at VIN has inductive impedance. This can cause the supply to dip during start-up because of the large output capacitor connected to the voltage reference and the inductive supply. The REF2125 family has an internal clean start block to control the peak of the inrush current during start-up. This feature is illustrated in Functional Block Diagram. The peak of inrush current can be calculated as Equation 5: where • IPEAK = Peak of inrush current (µA), has a range of [0.5 mA, 19 mA], • Rcs = External resistor connected to the CS pin (5) During power up, IPEAK is split between the device current and output current. The output current (IOUT) is split between output capacitor and load current (ILOAD). The device current can be estimated to be IQ+IOUT/183, where IQ is quiescent current at no load. Hence for a given ILOAD it is important to choose Rcs such that IPEAK is larger than ILOAD. Above equations capture typical characteristics and hence it is suggested to include ±25% margins while budgeting for inrush current and also while choosing Rcs for a given ILOAD. This inrush current continues to stay at the limiting value (IPEAK) till output reaches close to VREF (2.5 V). When a Ccs is also connected in parallel to Rcs, The inrush current limit shall rise exponentially to the steady state value (IPEAK) as calculated using above equations, with a time constant of Rcs × Ccs. Hence the initial (and maximum) rate of rise of inrush current shall be IPEAK /(Rcs × Ccs). Because the inrush current rate is limited, the loop powered supply dip is controlled. 8.4 Device Functional Modes 8.4.1 EN Pin When the ENABLE pin of the REF2125 is pulled high, the device is in active mode. The device must be in active mode for normal operation. The REF2125 can be placed in a low-power mode by pulling the ENABLE pin low. When in shutdown mode, the output of the device becomes high impedance and the quiescent current of the device reduces to 2 µA in shutdown mode. The EN pin must not be pulled higher than VIN supply voltage. See the Thermal Information for logic high and logic low voltage levels. 8.4.2 Negative Reference Voltage For applications requiring a negative and positive reference voltage, the REF2125 and OPA735 can be used to provide a dual-supply reference from a 5-V supply. Figure 27 shows the REF2125 used to provide a 2.5-V supply reference voltage. The low drift performance of the REF2125 complements the low offset voltage and zero drift of the OPA735 to provide an accurate solution for split-supply applications. Take care to match the temperature coefficients of R1 and R2. |
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