I'm designing a portable power bank with a 4S Li-ion pack and my DC-DC buck converter is failing under load transients. So when the load intermittently kicks in, the pack's voltage sags dramatically, momentarily dropping the buck converter's input below its minimum dropout voltage. My synchronous buck is rated for 18V max, but the transient dips hit around 12.5V, while its dropout is 13.5V. This instability is disrupting both the regulation and my ability to trust the SOH readings.
Is this extreme transient sag common for high-C-rate Li-ion cells? Should I simply switch to a buck-boost topology to handle the wide input voltage range, or is there a power electronics solution I'm overlooking for better local decoupling and filtering right at the battery output to smooth that initial voltage kick?
Open to hear your advice! Thanks!
Is this extreme transient sag common for high-C-rate Li-ion cells? Should I simply switch to a buck-boost topology to handle the wide input voltage range, or is there a power electronics solution I'm overlooking for better local decoupling and filtering right at the battery output to smooth that initial voltage kick?
Open to hear your advice! Thanks!