The TPS40200-Q1 is a flexible, nonsynchronous controller with a built-in 200-mA driver
for P-channel FETs. The circuit operates with inputs up to 52 V, with a power-saving feature that
turns off driver current once the external FET has been turned on fully. This feature extends the
flexibility of the device, allowing it to operate with an input voltage up to 52 V without
dissipating excessive power. The circuit operates with voltage-mode feedback and has feed-forward
input-voltage compensation that responds instantly to input voltage change. The integral
700-mV reference is trimmed to 2%, providing the means to accurately control low voltages.
The TPS40200-Q1 is available in an 8-pin SOIC package and supports many of the features of more
complex controllers. Clock frequency, soft start, and overcurrent limit are each easily programmed
by a single, external component. The device has undervoltage lockout (UVLO) and can be easily
synchronized to other controllers or a system clock to satisfy sequencing and/or noise-reduction
requirements.
The TPS40200-Q1 is a flexible, nonsynchronous controller with a built-in 200-mA driver
for P-channel FETs. The circuit operates with inputs up to 52 V, with a power-saving feature that
turns off driver current once the external FET has been turned on fully. This feature extends the
flexibility of the device, allowing it to operate with an input voltage up to 52 V without
dissipating excessive power. The circuit operates with voltage-mode feedback and has feed-forward
input-voltage compensation that responds instantly to input voltage change. The integral
700-mV reference is trimmed to 2%, providing the means to accurately control low voltages.
The TPS40200-Q1 is available in an 8-pin SOIC package and supports many of the features of more
complex controllers. Clock frequency, soft start, and overcurrent limit are each easily programmed
by a single, external component. The device has undervoltage lockout (UVLO) and can be easily
synchronized to other controllers or a system clock to satisfy sequencing and/or noise-reduction
requirements.