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FSP3303 датащи(PDF) 7 Page - FOSLINK SEMICONDUCTOR CO.,LTD |
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FSP3303 датащи(HTML) 7 Page - FOSLINK SEMICONDUCTOR CO.,LTD |
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7 / 10 page ![]() 4 & 6 CHANNEL CHARGE PUMPS FOR WHITE LED BIAS 2007-4-10 7/10 FSP3302/FSP3303 TYPICAL PERFORMANCE CHARACTERISTICS (CONTINUED) ( Circuit of Figure 1, VIN = 3.5V, TA = 25°C unless otherwise specified.) APPLICATION INFORMATION CAPACITOR SELECTION For best performance, use only ceramic capacitors, as they offer small size, low ESR, low cost, and high reliability. Since the dropout resistance is dependent on the ESR of the capacitors, lower ESR also allows the circuit to supply the required output currents at lower input voltage. X7R and X5R ceramic types are most stable (±15%) over bias voltage and temperature ranges and thus are highly recommended. Lower cost Y5V and Z5U ceramic types vary widely with voltage and temperature, and they should only be used after careful verification of the effects the capacitance degradation has on the application. Choose values for the flying capacitors of at least 1µF. For best results choose input and output capacitors of at least 1µF. WHITE LED SELECTION The FSP3302/FSP3303 are designed to bias multiple parallel white LEDs. The LED currents are internally matched and change very little with each LED's forward voltage. For best operation, ensure that the maximum LED forward voltage is 4.2V. The FSP3302/FSP3303 utilizes a proprietary design that results in significantly better dropout performance than competing products. Whereas other products maintain constant current for input voltages down to 3.0V, the FSP3302/FSP3303 are capable of providing constant output current for input voltages extending down to as low as 2.7V. EFFICIENCY The FSP3302/FSP3303 automatically adjust their operating mode to ensure the highest possible efficiency for a given set of operating conditions. The theoretical maximum efficiency of a charge pump is a function of its operating mode, and is given by ηMAX = VLED / KVIN where K is equal to 1 for a 1x operating mode and 1.5 for a 1.5x operating mode. Compared to this theoretical maximum efficiency, the FSP3302/FSP3303 achieve efficiency that is within just 2% of the theoretical maximum for full scale output currents. This ensures the lowest possible battery current and the maximum possible battery life in portable applications. |
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