The TL594 device incorporates all the
functions required in the construction of a pulse width modulation (PWM) control
circuit on a chip. Designed primarily for power-supply control, this device offers
the systems engineer the flexibility to tailor the power-supply control circuitry to
a specific application.
The TL594 device contains two error
amplifiers, an on-chip adjustable oscillator, a dead-time control (DTC) comparator,
a pulse-steering control flip-flop, a 5V regulator with a precision of 1%, an
undervoltage lockout control circuit, and output control circuitry.
The uncommitted output transistors
provide either common-source or source-follower output capability. Each device
provides for push-pull or single-ended output operation, with selection by means of
the output-control function. The architecture of these devices prohibits the
possibility of either output pulsing twice during push-pull operation. The
undervoltage lockout control circuit locks the outputs off until the internal
circuitry is operational.
The TL594 device incorporates all the
functions required in the construction of a pulse width modulation (PWM) control
circuit on a chip. Designed primarily for power-supply control, this device offers
the systems engineer the flexibility to tailor the power-supply control circuitry to
a specific application.
The TL594 device contains two error
amplifiers, an on-chip adjustable oscillator, a dead-time control (DTC) comparator,
a pulse-steering control flip-flop, a 5V regulator with a precision of 1%, an
undervoltage lockout control circuit, and output control circuitry.
The uncommitted output transistors
provide either common-source or source-follower output capability. Each device
provides for push-pull or single-ended output operation, with selection by means of
the output-control function. The architecture of these devices prohibits the
possibility of either output pulsing twice during push-pull operation. The
undervoltage lockout control circuit locks the outputs off until the internal
circuitry is operational.