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HIP6013CBZ датащи(PDF) 4 Page - Renesas Technology Corp |
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HIP6013CBZ датащи(HTML) 4 Page - Renesas Technology Corp |
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4 / 11 page ![]() HIP6013 FN4325 Rev 1.00 Page 4 of 11 November 3, 2005 Functional Pin Description RT (Pin 1) This pin provides oscillator switching frequency adjustment. By placing a resistor (RT) from this pin to GND, the nominal 200kHz switching frequency is increased according to the following equation: Conversely, connecting a pull-up resistor (RT) from this pin to VCC reduces the switching frequency according to the following equation.: OCSET (Pin 2) Connect a resistor (ROCSET) from this pin to the drain of the upper MOSFET. ROCSET, an internal 200A current source (IOCS), and the upper MOSFET on-resistance (rDS(ON)) set the converter over-current (OC) trip point according to the following equation: An over-current trip cycles the soft-start function. SS (Pin 3) Connect a capacitor from this pin to ground. This capacitor, along with an internal 10 A current source, sets the soft-start interval of the converter. COMP (Pin 4) and FB (Pin 5) COMP and FB are the available external pins of the error amplifier. The FB pin is the inverting input of the error amplifier and the COMP pin is the error amplifier output. These pins are used to compensate the voltage-control feedback loop of the converter. EN (Pin 6) This pin is the open-collector enable pin. Pull this pin below 1V to disable the converter. In shutdown, the soft start pin is discharged and the UGATE and LGATE pins are held low. GND (Pin 7) Signal ground for the IC. All voltage levels are measured with respect to this pin. PHASE (Pin 8) Connect the PHASE pin to the upper MOSFET source. This pin is used to monitor the voltage drop across the MOSFET for over-current protection. This pin also provides the return path for the upper gate drive. UGATE (Pin 9) Connect UGATE to the upper MOSFET gate. This pin provides the gate drive for the upper MOSFET. BOOT (Pin 10) This pin provides bias voltage to the upper MOSFET driver. A bootstrap circuit may be used to create a BOOT voltage suitable to drive a standard N-Channel MOSFET. VCC (Pin 14) Provide a 12V bias supply for the chip to this pin. Typical Performance Curves FIGURE 1. RT RESISTANCE vs FREQUENCY FIGURE 2. BIAS SUPPLY CURRENT vs FREQUENCY 10 100 1000 SWITCHING FREQUENCY (kHz) 10 100 1000 RT PULLUP TO +12V RT PULLDOWN TO VSS 100 200 300 400 500 600 700 800 900 1000 40 35 30 25 20 15 10 5 0 SWITCHING FREQUENCY (kHz) CGATE = 3300pF CGATE = 1000pF CGATE = 10pF 8 9 10 11 12 13 14 7 6 5 4 3 2 1 OCSET SS EN COMP FB RT VCC NC NC BOOT UGATE PHASE GND NC Fs 200kHz 510 6 RT ------------------ + (RT to GND) Fs 200kHz 410 7 RT ------------------ – (RT to 12V) IPEAK IOCS ROCSET rDS ON -------------------------------------------- = |
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