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LM3595LD 数据表(PDF) 8 Page - National Semiconductor (TI) |
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LM3595LD 数据表(HTML) 8 Page - National Semiconductor (TI) |
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8 / 11 page ![]() Circuit Description The LM3595 is a parallel white-LED driver with four matched current outputs. This part is intended to be driven off of an existing power supply rail or other regulated voltage source found within the surrounding system. The matched current regulators each have a 100:1 current ratio between the OUTx outputs and the I SET currents. The mirrors control the current through the LEDs without the use of external ballast resistors. With a total of 100mA of total output current avail- able, the LM3595 is easily capable of supplying 25mA per each of the four outputs through the proper selection of the R SET resistor. LED brightness control can be achieved on the LM3595 with a PWM signal and/or an analog voltage. Application Information ENABLE / SHUTDOWN When the voltage on the active-high-logic enable pin is low, the LM3595 will be in shutdown. While disabled, the LM3595 typically draws 0.1µA. When the EN pin is unconnected, the part automatically goes into shutdown due to an internal 1M Ω pull-down resistor that is tied between EN and GND. OUTPUT CURRENT CAPABILITY The LM3595 is capable of providing up to 25mA of current to each of the four outputs given an input voltage of 3.0V to 5.5V. The outputs have a typical current matching of 0.5% between adjacent sources. An external resistor can be used to set the output current, as approximated with the following the equation: R SET=100 x (1.22V / IOUTX ) with BR-ON = 0V In order for the output currents to be regulated properly, sufficient headroom voltage (V HR) must be present. The headroom voltage refers to the minimum amount of voltage that must be present across the current source in order to ensure the desired current is realizable. To ensure the de- sired current is obtained, apply the following equations to find the minimum input voltage required: V IN -VOUTX ≥ V HR V OUTX is the diode forward voltage, and VHR is defined by the following equation: V HR =kHR x (0.95 x IOUTX) I OUTX is the desired diode current, and k HR, typically 23mV/mA in the LM3595, is a proportionality constant that represents the ON-resistance of the internal current mirror transistors. For worst-case design calculations, using a k HR of 30mV/mA is recommended. (Worst-case recommendation accounts for parameter shifts from part-to-part variation and applies over the full operating temperature range). Changes in headroom voltage from one output to the next, possible with LED forward voltage mismatch, will result in different output currents and LED brightness mismatch. Thus, oper- ating the LM3595 with insufficient headroom voltage across all current sources should be avoided. TABLE 1. I OUT,RSET and VHR-MIN Voltage (BR-ON = 0V), k HR= 30 mV/mA (worst-case) I OUT R SET V HEADROOM 10mA 12.4k Ω 285mV 15mA 8.25k Ω 430mV 25mA 4.88k Ω 715mV PWM BRIGHTNESS CONTROL Brightness control can be implemented by pulsing a signal at the EN pin. When a PWM signal is used to drive the EN pin of the LM3595, the BR-ON pin should be driven low. The R SET value should be selected using the RSET equation when the analog brightness control feature is disabled. LED brightness is proportional to the duty cycle (D) of the PWM signal. For linear brightness control over the full duty cycle adjustment range, the PWM frequency (f) should be limited to accommodate the turn-on time (T ON = 50µs) of the de- vice. D x (1/f) > T ON f MAX =DMIN ÷TON If the PWM frequency is much less than 100Hz, flicker may be seen in the LEDs. For the LM3595, zero duty cycle will turn off the LEDs and a 50% duty cycle will result in an average I OUT being half of the programmed LED current. For example, if R SET is set to program 15mA, a 50% duty cycle will result in an average I LED of 7.5mA. IOUT being half the programmed LED current. R SET should be chosen not to exceed the maximum current delivery capability of the de- vice. ANALOG BRIGHTNESS CONTROL The LM3595 allows for analog brightness control using the BR-ON, and BRGT pin. To enable this function, the BR-ON pin must be set to a voltage greater or equal to 0.45*V IN. With analog brightness enabled, the voltage delivered to pin BRGT can be used to adjust the output currents. Use the maximum desired current (I OUTX(max)) and the maximum analog voltage to be used in the adjustment (V(BR) (max) )to size R SET according to the following equation: Table 2 shows the current through each LED for the LM3595 with various BRGT and RSET values. When analog brightness is used, applying 0V to the BRGT pin does not turn the LEDs off completely. There is a small amount of leakage current (100µA) that typically causes a small amount of light to be emitted from the LED. In order to completely turn off the LEDs, drive the EN pin low to disable the part. www.national.com 8 |
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