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M51995AFP データシート(PDF) 17 Page - Renesas Technology Corp |
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M51995AFP データシート(HTML) 17 Page - Renesas Technology Corp |
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17 / 41 page ![]() M51995AP/AFP REJ03D0835-0201 Rev.2.01 Nov 14, 2007 Page 17 of 40 Oscillator Section The oscillation waveform is the triangle one. The ON-duration of output pulse depends on the rising duration of the triangle waveform and dead-time is decided by the falling duration. The rising duration is determined by the product of external resistor RON and capacitor CF and the falling duration is mainly determined by the product of resistor ROFF and capacitor CF. Waveform of CF terminal Waveform of VOUT terminal in Max ON dutycondition VOSCH ≈ 4.4 V VOSCL ≈ 2.0 V VOH VOL Figure 2 OSC Waveform at Normal Condition (no-operation of intermittent action and OSC control circuit) 1. Oscillator operation when intermittent action and OSC control circuit does not operate Figure 3 shows the equivalent charging and discharging circuit diagram of oscillator when the current limiting circuit does not operate. It means that intermittent action and OSC control circuit does not operate. The current flows through RON from the constant voltage source of 5.8 V. CF is charged up by the same amplitude as RON current, when internal switch SW1 is switched to “charging side”. The rise rate of CF terminal is given as VT-ON RON × CF ≈ (V/s) ………………………………………… (1) where VT-ON ≈ 4.5 V The maximum on duration is approximately given as ≈ (s) ………………… (2) (VOSCH − VOSCL) × RON × CF VT-ON where VOSCH ≈ 4.4 V VOSCL ≈ 2.0 V CF is discharged by the summed-up of ROFF current and one sixteenth (1/16) of RON current by the function of Q2, Q3 and Q4 when SW1, SW2 are switched to “discharge side”. So fall rate of CF terminal is given as ≈ + (V/s) ………………… (3) VT-OFF ROFF × CF VT-ON 16 × RON × CF The minimum off duration approximately is given as ≈ (s) …………………… (4) (VOSCH − VOSCL) × CF VT-OFF ROFF + VT-ON 16 × RON where VT−OFF ≈ 3.5 V The cycle time of oscillation is given by the summation of equations 2 and 4. The frequency including the dead-time is not influenced by the temperature because of the built-in temperature compensating circuit. |
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