| 전자부품 데이터시트 검색엔진 |
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ML4950CS 데이터시트(PDF) 8 Page - Micro Linear Corporation |
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ML4950CS 데이터시트(HTML) 8 Page - Micro Linear Corporation |
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8 / 10 page ![]() ML4950 8 It is important to note that the accuracy of these resistors directly affects the accuracy of the output voltage. The SENSE pin threshold variation is ±3%, and the tolerance of R1 and R2 will add to this to determine the total output variation. Under some circumstances, input ripple cannot be reduced effectively. This occurs primarily in applications where inductor currents are high, causing excess output ripple due to “pulse grouping”, where the charge- discharge pulses are not evenly spaced in time. In such cases it may be necessary to add a small 20pF to 100pF ceramic feedforward capacitor (CFF) from the VIN pin to the SENSE pin. This is particularly true if the ripple voltage at VIN is greater than 100mV. SETTING THE RESET THRESHOLD To use the RESET comparator as an input voltage monitor, it is necessary to use an external resistor divider tied to the DETECT pin as shown in Figure 7. The resistor values RA and RB can be calculated using the following equation: V RR R IN MIN AB B () . = + 02 16 (7) The value of RB should be 100kW or less to minimize bias current errors. RA is then found by rearranging the equation: RR V AB IN MIN = - () . 02 1 (8) LAYOUT Good PC board layout practices will ensure the proper operation of the ML4950. Important layout considerations include: s Use adequate ground and power traces or planes s Keep components as close as possible to the ML4950 s Use short trace lengths from the inductor to the VL pin and from the output capacitor to the VOUT pin s Use a single point ground for the ML4950 PWR GND pin and the input and output capacitors, and connect GND to PWR GND with a separate trace A typical PC board layout is shown in Figure 8. DESIGN CONSIDERATIONS (Continued) Figure 8. Typical PC Board Layout Figure 6. No Load Input Current vs. VIN For 2V, R1 = 365k W, R2 = 40.2kW For 3V, R1 = 562k W, R2 = 40.2kW L = Sumida CD43, 22µH 80 60 40 20 0 VIN (V) 1.0 1.5 2.0 3.0 2.5 2V OUTPUT 3V OUTPUT Figure 7. Battery Monitoring Circuit VIN RA RB 1 DETECT 4 RESET VREF FROM START-UP CIRCUITRY + – COMP 7 |
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