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PFS7323L 数据表(PDF) 5 Page - Power Integrations, Inc. |
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PFS7323L 数据表(HTML) 5 Page - Power Integrations, Inc. |
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5 / 30 page ![]() Rev. D 06/15 5 PFS7323-7329 www.power.com IS dt VE VOFF (VOUT-VIN)dt Latch RESET Latch SET Gate Drive (Q) Maximum ON-time Minimum OFF-time Timing Supervisor Figure 4. Idealized Converter Waveforms. Figure 5. Typical Normalized Output Voltage Characteristics as Function of Normalized Peak Load Rating Figure 6. Normalized Minimum Power Limit as Function of Input Voltage. 0 0.2 0.4 0.6 1 1.2 1.4 0.8 Normalized to Peak Power Rating 1.2 1 0.8 0.6 0.4 0.2 0 The relationship of (4) demonstrates that by controlling a constant amp-second on-time and constant volt-second off-time, the input current I IN is proportional to the input voltage VIN, therefore providing the fundamental requirement of power factor correction. This control produces a continuous mode power switch current waveform that varies both in frequency and peak current value across a line half-cycle to produce an input current proportional to the input voltage. Control Engine The controller features a low bandwidth error-amplifier which connects its non-inverting terminal to an internal voltage reference of 6 V. The inverting terminal of the error-amplifier is available on the external CONTROL pin which connects to the loop compensation and voltage divider network to regulate the output voltage. The FEEDBACK pin connects directly to the divider network for fast transient load response. The internal sense-FET switch current is integrated and scaled by the input voltage peak detector current sense gain (M ON) and compared with the error-amplifier signal (V E) to determine the cycle on-time. Internally the difference between the input and output voltage is derived and the resultant is scaled, integrated, and compared to a voltage reference (V OFF) to determine the cycle off-time. Careful selection of the internal scaling factors produce input current waveforms with very low distortion and high power factor. Line Feed-Forward Scaling Factor (M ON) The VOLTAGE MONITOR (V) pin current is used internally to derive the peak of the input line voltage which is used to scale the gain of the current sense signal through the M ON variable. This contribution is required to reduce the dynamic range of the control feedback signal as well as maintain a constant loop gain over the operating input line range. This line-sense feed- forward gain adjustment is proportional to the square of the peak rectified AC line voltage and is adjusted as a function of VOLTAGE MONITOR pin current. The line-sense feed-forward gain is also important in providing a switch power limit over the input line range. Besides modifying brown- in/out thresholds, the VOLTAGE MONITOR pin resistor also affects power limit of the device. This characteristic is optimized to maintain a relatively constant internal error-voltage level at full load from an input line of 100 to 230 VAC input. Beyond the specified peak power rating of the device, the internal power limit feature will regulate the output voltage below the set regulation threshold as a function of output overload beyond the peak power rating. Figure 5 illustrates the typical regulation characteristic as function of load. Below the brown-in threshold (I UV+) the power limit is reduced when the device is operated in the ‘Full’ power mode as shown in the figure below. As the input line voltage is reduced toward the brown-out threshold (I UV-) and if the load exceeds the power limit derating the boost output voltage will drop out of regulation in accordance to Figure 6. 70 75 80 85 95 100 90 Input Voltage (VAC) 1.2 1 0.8 0.6 0.4 0.2 0 |
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