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LTC4162EUFD-FST#PBF Datasheet(PDF) 36 Page - Analog Devices |
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LTC4162EUFD-FST#PBF Datasheet(HTML) 36 Page - Analog Devices |
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36 / 52 page ![]() 36 LTC4162-F Rev A For more information www.analog.com REGISTER DESCRIPTIONS Symbol Name Command Code Access Bit Range Default Description vbat_lo_alert_limit 0x01 R/W [15:0] 0 Signed number that sets a lower limit that can be used to trigger an interrupt based on the per-cell battery voltage out of range. The value is based on the A/D value, vbat, which has a scaling factor of cell_count × 192.4µV/LSB. To compute the per-cell bit count, divide the desired trigger voltage by both cell_count and 192.4µV. The alert is enabled by setting en_vbat_lo_alert and can be read back and cleared at vbat_lo_alert. vbat_hi_alert_limit 0x02 R/W [15:0] 0 Signed number that sets an upper limit that can be used to trigger an interrupt based on the per-cell battery voltage out of range. The value is based on the A/D value, vbat, which has a scaling factor of cell_count × 192.4µV/LSB. To compute the per-cell bit count, divide the desired trigger voltage by both cell_count and 192.4µV. The alert is enabled by setting en_vbat_hi_alert and can be read back and cleared at vbat_hi_alert. vin_lo_alert_limit 0x03 R/W [15:0] 0 Signed number that sets a lower limit that can be used to trigger an interrupt based on input voltage out of range. The value is based on the A/D value, vin, which has a scaling factor of 1.649mV/LSB. The alert is enabled by setting en_vin_lo_alert and can be read back and cleared at vin_lo_alert. vin_hi_alert_limit 0x04 R/W [15:0] 0 Signed number that sets an upper limit that can be used to trigger an interrupt based on input voltage out of range. The value is based on the A/D value, vin, which has a scaling factor of 1.649mV/LSB. The alert is enabled by setting en_vin_hi_alert and can be read back and cleared at vin_hi_alert. vout_lo_alert_limit 0x05 R/W [15:0] 0 Signed number that sets a lower limit that can be used to trigger an interrupt based on vout voltage out of range. The value is based on the A/D value, vout, which has a scaling factor of 1.653mV/LSB. The alert is enabled by setting en_vout_lo_alert and can be read back and cleared at vout_lo_alert. vout_hi_alert_limit 0x06 R/W [15:0] 0 Signed number that sets an upper limit that can be used to trigger an interrupt based on vout voltage out of range. The value is based on the A/D value, vout, which has a scaling factor of 1.653mV/LSB. The alert is enabled by setting en_vout_hi_alert and can be read back and cleared at vout_hi_alert. iin_hi_alert_limit 0x07 R/W [15:0] 0 Signed number that sets an upper limit that can be used to trigger an interrupt based on input current out of range. The value is based on the A/D value, iin, which has a scaling factor of 1.466µV / RSNSI amperes/LSB. The alert is enabled by setting en_iin_hi_alert and can be read back and cleared at iin_hi_alert. ibat_lo_alert_limit 0x08 R/W [15:0] 0 Signed number that sets a lower limit that can be used to trigger an interrupt based on charge current dropping below a particular value, such as during the constant-voltage phase of charging, or, load current exceeding a particular limit when not charging. When the charger is not running, and telemetry is enabled with force_telemetry_on, this limit indicates that the battery draw has exceeded a particular value. Telemetry will be enabled automatically if the input voltage exceeds the battery voltage, in which case discharge current will be nearly zero. ibat values are positive for charging and negative for discharging so the polarity of this register should be set according to the mode in which the limit alert is of interest. The value is based on the A/D value, ibat, which has a scaling factor of 1.466µV / RSNSB amperes/LSB. The alert is enabled by setting en_ibat_lo_alert and can be read back and cleared at ibat_lo_alert. die_temp_hi_ alert_limit 0x09 R/W [15:0] 0 Signed number that sets an upper limit that can be used to trigger an interrupt based on high die temperature. The value in °C can be calculated from the A/D reading, die_temp, as TDIE(°C) = die_temp × 0.0215°C/LSB - 264.4°C. The alert is enabled by setting en_die_temp_hi_alert and can be read back and cleared at die_temp_hi_alert. bsr_hi_alert_limit 0x0A R/W [15:0] 0 Setsanupperlimitthatcanbeusedtotriggeraninterruptbasedonhighbatteryresistance. The per-cell battery resistance is relative to the battery charge current setting resistor, RSNSB, and can be computed in Ω from: BSR = cell_count × bsr × RSNSB / 500. The alert is enabled by setting en_bsr_hi_alert and can be read back and cleared at bsr_hi_alert. |
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