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MAS6250 数据表(PDF) 14 Page - Micro Analog systems |
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MAS6250 数据表(HTML) 14 Page - Micro Analog systems |
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14 / 24 page ![]() DA6250.007 13 April, 2018 14 (24) In piezo driving mode (DIN=HIGH or switching) the boost DC/DC converter output voltage can be controlled by external voltage division resistors R1 and R2. See figures 3-4 and 9-12. The output voltage is regulated to level which sets the FB feedback pin voltage to 0.4V typically. Table 3 shows example resistors values for different output voltages. Note that the feedback resistors are not always necessary since when not connected the output voltage will be regulated to over voltage protection (OVP) voltage 17.5V typically. See figures 1-2 and 5-8. When driving only LEDs (CTRL=HIGH or PWM signal, DIN=LOW) the maximum output voltage (VOUT) is limited to OVP voltage regardless of the FB pin connection. Table 3. Feedback resistor (R1, R2) and DC/DC boost output voltage (VOUT) examples R1 [kΩ] R2 [M Ω] VOUT [V] 200 4.3 9 150 3.6 10 162 4.7 12 274 10 15 - - 17.5 Note: VOUT=VFB*(1+R2/R1), VFB=0.4V Note that use of external VOUT adjusting feedback resistors increases shutdown current by amount of IEXT_FB = VIN/(R1+R2) since VOUT follows VIN voltage when the device is in shutdown. To keep the shutdown current low the external feedback resistance (R1+R2) should be close to 10M level. For good feedback regulation the max R1 should not exceed 400k . When driving LEDs they are connected in series from VOUT to ILED which is the current sink pin. Additionally LED current setting resistor RLED needs to be connected from RLED pin to GND. See figures 4-6 and 10. The table 4 shows example RLED resistor values and corresponding LED current levels. Additionally PWM signal can be applied to the CTRL pin for LED dimming to reduce average LED current from level defined with the RLED resistor. Table 4. LED current setting resistor examples RLED [ Ω] ILED [mA] 40.2 5.0 20 10.0 13.3 15.0 Note: ILED=VRLED/RLED, VRLED=0.2V typ In self-drive mode (frequency adjustment resistor connected from ROSC pin to GND) the piezo audio signal frequency is generated from an internal oscillator. The oscillator frequency is controlled by external oscillator resistor ROSC. Table 5 shows examples of piezo audio signal frequencies achieved at different ROSC resistor values. Internal oscillator is factory trimmed to produce 3.435kHz frequency when using 121k Ω ROSC resistor. See note below the table 5. Table 5. Self-drive mode oscillator resistor and output frequency examples ROSC [kΩ] (E96 1%) FAUDIO [kHz] 412 1.0 280 1.5 210 2.0 165 2.5 140 3.0 133 3.1 127 3.3 121 3.4 118 3.5 105 4.0 Note: FAUDIO [kHz] = 415.6 / ROSC [k Ω] |
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