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ML4832CS датащи(PDF) 7 Page - Micro Linear Corporation |
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ML4832CS датащи(HTML) 7 Page - Micro Linear Corporation |
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7 / 15 page ![]() ML4832 7 AVERAGE CURRENT AND OUTPUT VOLTAGE REGULATION The PWM regulator in the PFC control section will act to offset the positive voltage caused by the multiplier output by producing an offsetting negative voltage on the current sense resistor at IA+. A cycle-by-cycle current limit is included to protect the MOSFET from high speed current transients. When the voltage at IA+ goes negative by more than 1V, the PWM cycle is terminated. For more information on compensating the average current and boost voltage error amplifier loops, see ML4821 data sheet. OVERVOLTAGE PROTECTION AND INHIBIT The OVP pin serves to protect the power circuit from being subjected to excessive voltages if the load should change suddenly (lamp removal). A divider from the high voltage DC bus sets the OVP trip level. When the voltage on EA–/OVP exceeds 2.75V, the PFC transistors are inhibited. The ballast section will continue to operate. TRANSCONDUCTANCE AMPLIFIERS The PFC voltage feedback, PFC current sense, and the loop current amplifiers are all implemented as operational transconductance amplifiers. They are designed to have low small signal forward transconductance such that a large value of load resistor (R1) and a low value ceramic capacitor (<1µF) can be used for AC coupling (C1) in the frequency compensation network. The compensation network shown in Figure 2 will introduce a zero and a pole at: f RC f RC ZP == 1 2 1 2 11 1 2 ππ (2) Figure 3 shows the output configuration for the operational transconductance amplifiers. A DC path to ground or VCC at the output of the transconductance amplifiers will introduce an offset error. – + 18 2.5V R1 C1 C2 Figure 2. Compensation Network CURRENT MIRROR IN OUT CURRENT MIRROR IN OUT gmVIN io = gmVIN IQ + 2 gmVIN IQ – 2 VIN Differential Linear Slope Region 0 iO Figure 3. Output Configuration Figure 4. Transconductance Amplifier Characteristics FUNCTIONAL DESCRIPTION (Continued) |
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