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FAN2106MPX 数据表(PDF) 11 Page - Fairchild Semiconductor |
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FAN2106MPX 数据表(HTML) 11 Page - Fairchild Semiconductor |
11 / 14 page © 2006 Fairchild Semiconductor Corporation www.fairchildsemi.com FAN2106 Rev. 1.0.1 11 Calculating the Inductor Value Typically the inductor is set for a ripple current ( ΔIL) of 10% to 35% of the maximum DC load. Regulators requiring fast transient response use a value on the high side of this range, while regulators that require very low output ripple and/or use high-ESR capacitors restrict allowable ripple current: F L D) - (1 V I OUT L • • = Δ EQ. 5 where F is the oscillator frequency, and F I D) - (1 V L L OUT • Δ • = EQ. 6 Setting the Ramp Resistor Value The internal ramp voltage excursion (ΔVRAMP) during tON should be set to 0.6V. RRAMP is approximately: 2 F V 10 x 18 V ) 8 . 1 V ( R IN 6 OUT IN ) K ( RAMP − • • • − = − Ω EQ. 7 where frequency (F) is expressed in KHz. Setting the Current Limit The FAN2106 uses its internal low-side MOSFET as the current-sensing element. The current-limit threshold voltage (VILIM) is compared to the voltage drop across the low-side MOSFET, sampled at the end of each PWM off-time/cycle. The default threshold (ILIM open) is temperature compensated. The 10µA current sourced from the ILIM pin can be used to establish a lower, temperature–dependent, current-limit threshold by connecting an external resistor (RILIM) to AGND: 5 . 142 ) 2 I I ( K R 45 . 0 R L OUT T DS ) K ( ILIM + Δ − • • • = Ω EQ. 8 where: I = desired current limit set point in Amps, RDS is expressed in mΩ, KT = the normalized temperature coefficient of the low-side MOSFET (Q2) from Figure 8. After 16 consecutive, pulse-by-pulse, current-limit cycles, the fault latch is set and the regulator shuts down. Cycling VCC or EN restores operation after a normal soft-start cycle (refer to Auto-Restart section). The over-current protection fault latch is active during the soft-start cycle. Loop Compensation The loop is compensated using a feedback network around the error amplifier. Figure 21 shows a complete Type-3 compensation network. Type-2 compensation eliminates R3 and C3. Figure 21. Compensation Network Since the FAN2106 employs summing current-mode architecture, Type-2 compensation can be used for many applications. For applications that require wide loop bandwidth and/or use very low-ESR output capacitors, Type-3 compensation may be required. The AN-6033 spreadsheet calculator can be used to calculate these component values. Protection The converter output is monitored and protected against extreme overload, short-circuit, over-voltage, and under- voltage conditions. An internal “Fault Latch” is set for any fault intended to shut down the IC. When the fault latch is set, the IC discharges VOUT by enhancing the low-side MOSFET until FB<0.25V. The MOSFET is not turned on again unless FB>0.5V. This behavior discharges the output without causing undershoot (negative output voltage). GATE DRIVE PWM 0.25/0.5V FAULT PWM LATCH FB Figure 22. Latched Fault Response Under-Voltage Shutdown If FB remains below the under-voltage threshold for 16 consecutive clock cycles, the fault latch is set and the converter shuts down. This fault is prevented from setting the fault latch during soft-start. Over-Voltage Protection / Shutdown If FB exceeds 115% • V REF for two consecutive clock cycles, the fault latch is set and shutdown occurs. A shorted high-side MOSFET condition is detected when SW voltage exceeds ~0.7V while the low-side |
类似零件编号 - FAN2106MPX |
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类似说明 - FAN2106MPX |
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