The LM25137F is a 42V, dual-channel, buck controller offered from a family with three
options for functional safety: Capable, SIL 2, or SIL 3. The device uses an interleaved, stackable, peak
current-mode architecture for easy loop compensation, fast transient response,
excellent load and line regulation, and accurate current sharing with paralleled
phases for high output current. A high-side switch minimum on-time of 22ns
facilitates large step-down ratios, enabling the direct conversion from 12V and 24V inputs to low-voltage rails for reduced system design cost and complexity. The LM25137F
continues to operate during input voltage dips as low as 4V, at 100% duty cycle if
needed.
Several
features are included to simplify compliance with CISPR 11 and CISPR 32 EMI requirements. Adaptively timed, high-current
MOSFET gate drivers minimize body diode conduction during switching transitions,
reducing switching losses and improving thermal and EMI performance at high input
voltage and high switching frequency. To reduce input capacitor ripple current and
EMI filter size, 180° interleaved operation is provided for two outputs. A 90°
out-of-phase clock output works well for cascaded, multi-channel or multiphase power
stages. Resistor-adjustable switching frequency as high as 2.2MHz can be
synchronized to an external clock source up to 2.64MHz to eliminate beat frequencies
in noise-sensitive applications.
The 1.8µA
sleep quiescent current with the output voltage in regulation extends operating
run-time in battery-powered systems. Additional features of the LM25137F include 150°C maximum junction temperature operation,
user-selectable PFM mode for lower current consumption at light-load conditions,
configurable soft-start functions, open-drain FAULT and PG flags for fault reporting
and output monitoring, independent enable inputs, monotonic start-up into prebiased
loads, integrated VCC bias supply regulator powered from VIN or VOUT1, hiccup-mode
overload protection, and thermal shutdown protection with automatic recovery.
Current is sensed using an optional shunt resistor for
high accuracy. Specific features for functional safety applications, including ABIST
at start-up, VOUT1/2 and VCC ripple detection, redundant bandgap with error
monitoring, redundant and fast VOUT1/2 monitoring, feedback path failure detection,
and redundant thermal shutdown significantly reduces FIT rate.
The LM25137F controller comes in
a 6mm × 6mm thermally-enhanced, 36-pin VQFN package with additional pin clearance
for increased reliability. Also included are wettable flank pins to facilitate
optical inspection during manufacturing. The wide input voltage range, low quiescent
current consumption, high-temperature operation, cycle-by-cycle current limit, low
EMI signature, and small design size provide an excellent point-of-load regulator design
for functional safety (FuSa) applications requiring enhanced robustness and
durability.
The LM25137F is a 42V, dual-channel, buck controller offered from a family with three
options for functional safety: Capable, SIL 2, or SIL 3. The device uses an interleaved, stackable, peak
current-mode architecture for easy loop compensation, fast transient response,
excellent load and line regulation, and accurate current sharing with paralleled
phases for high output current. A high-side switch minimum on-time of 22ns
facilitates large step-down ratios, enabling the direct conversion from 12V and 24V inputs to low-voltage rails for reduced system design cost and complexity. The LM25137F
continues to operate during input voltage dips as low as 4V, at 100% duty cycle if
needed.
Several
features are included to simplify compliance with CISPR 11 and CISPR 32 EMI requirements. Adaptively timed, high-current
MOSFET gate drivers minimize body diode conduction during switching transitions,
reducing switching losses and improving thermal and EMI performance at high input
voltage and high switching frequency. To reduce input capacitor ripple current and
EMI filter size, 180° interleaved operation is provided for two outputs. A 90°
out-of-phase clock output works well for cascaded, multi-channel or multiphase power
stages. Resistor-adjustable switching frequency as high as 2.2MHz can be
synchronized to an external clock source up to 2.64MHz to eliminate beat frequencies
in noise-sensitive applications.
The 1.8µA
sleep quiescent current with the output voltage in regulation extends operating
run-time in battery-powered systems. Additional features of the LM25137F include 150°C maximum junction temperature operation,
user-selectable PFM mode for lower current consumption at light-load conditions,
configurable soft-start functions, open-drain FAULT and PG flags for fault reporting
and output monitoring, independent enable inputs, monotonic start-up into prebiased
loads, integrated VCC bias supply regulator powered from VIN or VOUT1, hiccup-mode
overload protection, and thermal shutdown protection with automatic recovery.
Current is sensed using an optional shunt resistor for
high accuracy. Specific features for functional safety applications, including ABIST
at start-up, VOUT1/2 and VCC ripple detection, redundant bandgap with error
monitoring, redundant and fast VOUT1/2 monitoring, feedback path failure detection,
and redundant thermal shutdown significantly reduces FIT rate.
The LM25137F controller comes in
a 6mm × 6mm thermally-enhanced, 36-pin VQFN package with additional pin clearance
for increased reliability. Also included are wettable flank pins to facilitate
optical inspection during manufacturing. The wide input voltage range, low quiescent
current consumption, high-temperature operation, cycle-by-cycle current limit, low
EMI signature, and small design size provide an excellent point-of-load regulator design
for functional safety (FuSa) applications requiring enhanced robustness and
durability.