資料介紹
Wide Input Voltage Range Buck-Boost Converter Simplifi es Design of Variable Input Supplies:Many of today’s portable electronic devices require
the ability to operate from a variety of power sources
including USB, wall adapters, and alkaline and lithium
batteries. Designing a power conversion solution that
is compatible with this wide array of power sources can
be daunting. The LTC?3530 monolithic synchronous
converter simplifi es the task by operating in both buck
and boost modes over an extended input voltage range
of 1.8V to 5.5V. No complicated topology is required to
account for varying inputs that can be above, below or
equal to the output.
The LTC3530 utilizes a proprietary switching algorithm
that provides seamless transitions between buck and
boost modes while simultaneously optimizing effi ciency
over all operating conditions. Using this advanced control
algorithm, the LTC3530 is capable of high effi ciency, fi xed
frequency operation with input voltages that are above,
below, or equal to the output voltage, while requiring only
a single inductor. This capability makes the LTC3530 well
suited for lithium-ion/polymer and 2-cell alkaline or NiMH
applications which require a supply voltage that is within
the battery voltage range. In such cases, the high effi ciency
and extended input operating range of the LTC3530 offer
greatly improved battery run-time, as much as 25% in some cases, over alternative solutions.
the ability to operate from a variety of power sources
including USB, wall adapters, and alkaline and lithium
batteries. Designing a power conversion solution that
is compatible with this wide array of power sources can
be daunting. The LTC?3530 monolithic synchronous
converter simplifi es the task by operating in both buck
and boost modes over an extended input voltage range
of 1.8V to 5.5V. No complicated topology is required to
account for varying inputs that can be above, below or
equal to the output.
The LTC3530 utilizes a proprietary switching algorithm
that provides seamless transitions between buck and
boost modes while simultaneously optimizing effi ciency
over all operating conditions. Using this advanced control
algorithm, the LTC3530 is capable of high effi ciency, fi xed
frequency operation with input voltages that are above,
below, or equal to the output voltage, while requiring only
a single inductor. This capability makes the LTC3530 well
suited for lithium-ion/polymer and 2-cell alkaline or NiMH
applications which require a supply voltage that is within
the battery voltage range. In such cases, the high effi ciency
and extended input operating range of the LTC3530 offer
greatly improved battery run-time, as much as 25% in some cases, over alternative solutions.
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