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LTC4100 Datasheet(PDF) 35 Page - Linear Technology |
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LTC4100 Datasheet(HTML) 35 Page - Linear Technology |
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35 / 48 page ![]() LTC1760 35 1760fa OPERATION The delta-sigma modulator and switch SWV convert the VDAC value to a variable resistance equal to (11/8)RVSET/ (VDAC(VALUE)/2047). In regulation, VSET is servo driven to the 0.8V reference voltage, VREF. Capacitors CB1 and CB2 are used to average the voltage present at the VSET pin as well as provide a zero in the voltage loop to help stability and transient response time to voltage variations. 10 The Current DAC Block The current DAC is a delta-sigma modulator which controls the effective value of an internal resistor, RSET = 18.77k, used to program the maximum charger current. Figure 8 is a simplified diagram of the DAC operation. The delta- sigma modulator and switch convert the IDAC value to a variable resistance equal to 1.25RSET/(IDAC(VALUE)/1023). In regulation, ISET is servo driven to the 0.8V reference voltage, VREF,andthecurrentfromRSETismatchedagainst a current derived from the voltage between pins CSP and CSN. This current is (VCSP – VCSN)/3k. Therefore programmed current is: ICHG = VREF • 3k/(1.25 RSNS RSET) • (IDAC(VALUE)/1023) = (102.3mV/RSNS) • (IDAC(VALUE)/1023) During wake-up current operation, the current DAC enters a low current mode. The current DAC output is pulse- width modulated with a high frequency clock having a duty cycle value of 1/8. Therefore, the maximum output current provided by the charger is IMAX/8. The delta-sigma output gates this low duty cycle signal on and off. The delta-sigma shift registers are then clocked at a slower rate, about 40ms/bit, so that the charger has time to settle to the IMAX/8 value. – + CB1 CB2 CSN 1760 F07 EA VREF VSET RVSET 7.2k RVF 405.3k ΔΣ MODULATOR SWV 11 TO ITH DAC VALUE (11 BITS) – + 1760 F08 VREF ISET RSET 18.77k ΔΣ MODULATOR 10 TO ITH DAC VALUE (10 BITS) CSET (VCSP – VCSN) 3kΩ (FROM CA1 AMPLIFIER) Figure 7. Voltage DAC Operation Figure 8. Current Dac Operation |
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