HA16116FP
HA16116FP is Switching Regulator for Chopper Type DC/DC Converter manufactured by Hitachi Semiconductor.
Description
HA16116FP/FPJ and HA16121FP/FPJ are dual-channel PWM switching regulator controller ICs for use in chopper-type DC/DC converters. This IC series incorporates totem pole gate drive circuits to allow direct driving of a power MOS FET. The output logic is preset for booster, step-down, or inverting control in a DC/DC converter. This logic assumes use of an N-channel power MOS FET for booster control, and a P-channel power MOS FET for step-down or inverting control. HA16116 includes a built-in logic circuit for step-down control only, and one for use in both step-down and inverting control. HA16121 has a logic circuit for booster control only and one for both step-down and inverting control. Both ICs have a pulse-by-pulse current limiter, which limits PWM pulse width per pulse as a means of protecting against overcurrent, and which uses an on/off timer for intermittent operation. Unlike conventional methods that use a latch timer for shutdown, when the pulse-by-pulse current limiter continues operation beyond the time set in the timer, the IC is made to operate intermittently (flickering operation), resulting in sharp vertical setting characteristics. When the overcurrent condition subsides, the output is automatically restored to normal. The dual control circuits in the IC output identical triangle waveforms, for pletely synchronous configuring a pact, high efficiency dual-channel DC/DC converter, with fewer external ponents than were necessary previously.
Functions
- -
- -
- -
- - 2.5 V reference voltage (Vref) regulator Triangle wave form oscillator Dual overcurrent detector Dual totem pole output driver UVL (under voltage lock out) system Dual error amplifier Vref overvoltage detector Dual PWM parator
HA16116FP/FPJ, HA16121FP/FPJ
Features
- -
- - Wide operating supply voltage range- (3.9 V to 40.0 V) Wide operating frequency range (600 k Hz maximum operation) Direct power MOS FET driving (output current ±1 A peak in maximum rating) Pulse-by-pulse...