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LTH2 Marking, LT3465 Datasheet(PDF) 5 Page - Linear Technology |
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LT3465 Datasheet(HTML) 5 Page - Linear Technology |
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5 / 12 page ![]() LT3465/LT3465A 5 3465af BLOCK DIAGRA – + + RQ S 0.2 Ω SW DRIVER COMPARATOR 2 CTRL 4 6 VOUT VIN 3 FB 200mV 5 – + Σ RAMP GENERATOR OVERVOLTAGE PROTECT RC 10k 40k CC 1.2MHz* OSCILLATOR *2.4MHz FOR LT3465A GND 3465A F02 Q1 A2 A1 VREF 1.25V 1 Figure 2. LT3465 Block Diagram APPLICATIO S I FOR ATIO Operation The LT3465 uses a constant frequency, current mode control scheme to provide excellent line and load regula- tion. Operation can be best understood by referring to the block diagram in Figure 2. At the start of each oscillator cycle, the SR latch is set, which turns on the power switch Q1. A voltage proportional to the switch current is added to a stabilizing ramp and the resulting sum is fed into the positive terminal of the PWM comparator A2. When this voltage exceeds the level at the negative input of A2, the SR latch is reset turning off the power switch. The level at the negative input of A2 is set by the error amplifier A1, and is simply an amplified version of the difference between the feedback voltage and the reference voltage of 200mV. In this manner, the error amplifier sets the correct peak current level to keep the output in regulation. If the error amplifier’s output increases, more current is delivered to the output; if it decreases, less current is delivered. The CTRL pin voltage is used to adjust the reference voltage. The block diagram for the LT3465A (not shown) is identical except that the oscillator frequency is 2.4MHz. Minimum Output Current The LT3465 can drive a 3-LED string at 1.5mA LED current without pulse skipping. As current is further reduced, the device will begin skipping pulses. This will result in some low frequency ripple, although the LED current remains regulated on an average basis down to zero. The photo in Figure 3a details circuit operation driving three white LEDs at a 1.5mA load. Peak inductor current is less than 40mA and the regulator operates in discontinuous mode, meaning the inductor current VSW 5V/DIV IL 20mA/DIV VOUT 10mV/DIV VIN = 4.2V 0.2 µs/DIV 3465A F03a ILED = 1.5mA 3 LEDs Figure 3b. Switching Waveforms (LT3465A) VSW 5V/DIV IL 20mA/DIV VOUT 10mV/DIV VIN = 4.2V 0.1 µs/DIV 3465A F03b ILED = 0.2mA 3 LEDs Figure 3a. Switching Waveforms (LT3465) |
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