The TPS563900 device is a monolithic dual-synchronous buck converter with a wide 4.5-V to
18-V operating input-voltage range that can operate in
5-, 9-, 12-, or 15-V bus voltages and battery chemistries. Constant-frequency peak-current
mode control simplifies the loop compensation and provides fast transient response.
External feedback resistors can be used to set the initial start-up voltage for each buck
converter in the TPS563900 device. The feedback voltage reference for this start-up option is 0.6
V. When the voltage-identification (VID) DAC is updated through the I2C,
the buck converter switches the feedback resistors from external to internal feedback resistors.
The output voltage in each buck is programmable from 0.68 V to 1.95 V with 10-mV steps by
I2C-controlled 7-bit VID.
Each buck converter in the TPS563900 device can also be I2C
controlled for enabling and disabling the output voltage, reading the output voltage, setting the
pulse skipping mode, and reading the power good status and the warning of die temperature.
The TPS563900 device features a dedicated enable pin when the
I2C interface is not used. An independent soft-start pin provides
flexibility in power-up programmability. Cycle-by-cycle overcurrent protection and hiccup-mode
operation limit MOSFET power dissipation in short circuit or over-loading fault conditions.
Low-side reverse overcurrent protection also prevents excessive sinking current from damaging the
converter.
The TPS563900 device also features a light-load pulse-skipping mode (PSM) that can be
controlled by the I2C or MODE pin configuration. The PSM mode allows a
power loss reduction on the input power supplied to the system to achieve high efficiency at light
loading.
The TPS563900 device is available in a 32-lead thermally-enhanced HTSSOP (DAP)
package.
The TPS563900 device is a monolithic dual-synchronous buck converter with a wide 4.5-V to
18-V operating input-voltage range that can operate in
5-, 9-, 12-, or 15-V bus voltages and battery chemistries. Constant-frequency peak-current
mode control simplifies the loop compensation and provides fast transient response.
External feedback resistors can be used to set the initial start-up voltage for each buck
converter in the TPS563900 device. The feedback voltage reference for this start-up option is 0.6
V. When the voltage-identification (VID) DAC is updated through the I2C,
the buck converter switches the feedback resistors from external to internal feedback resistors.
The output voltage in each buck is programmable from 0.68 V to 1.95 V with 10-mV steps by
I2C-controlled 7-bit VID.
Each buck converter in the TPS563900 device can also be I2C
controlled for enabling and disabling the output voltage, reading the output voltage, setting the
pulse skipping mode, and reading the power good status and the warning of die temperature.
The TPS563900 device features a dedicated enable pin when the
I2C interface is not used. An independent soft-start pin provides
flexibility in power-up programmability. Cycle-by-cycle overcurrent protection and hiccup-mode
operation limit MOSFET power dissipation in short circuit or over-loading fault conditions.
Low-side reverse overcurrent protection also prevents excessive sinking current from damaging the
converter.
The TPS563900 device also features a light-load pulse-skipping mode (PSM) that can be
controlled by the I2C or MODE pin configuration. The PSM mode allows a
power loss reduction on the input power supplied to the system to achieve high efficiency at light
loading.
The TPS563900 device is available in a 32-lead thermally-enhanced HTSSOP (DAP)
package.