ADP3212MNR2G
- Manufacturer's Part No.:ADP3212MNR2G
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- Description:IC CTLR BUCK 7BIT 2PHASE 48QFN
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- Available: 22
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The ADP3212/NCP3218 is a highly efficient, multiphase, synchronous buck switching regulator controller. With its integrated drivers, the ADP3212/NCP3218 is optimized for converting the notebook battery voltage into the core supply voltage required by high performance Intel processors. An internal 7-bit DAC is used to read a VID code directly from the processor and to set the CPU core voltage to a value within the range of 0.3 V to 1.5 V.
The ADP3212/NCP3218 is programmable for 1-, 2-, or 3-phase operation.
The output signals ensure interleaved 2- or 3-phase operation.
The ADP3212/NCP3218 uses a multimode architecture run at a programmable switching frequency and optimized for efficiency depending on the output current requirement.
The ADP3212/NCP3218 switches between single- and multi-phase operation to maximize efficiency with all load conditions.
The chip includes a programmable load line slope function to adjust the output voltage as a function of the load current so that the core voltage is always optimally positioned for a load transient.
The ADP3212/NCP3218 also provides accurate and reliable short circuit protection, adjustable current limiting, and a delayed power-good output.
The IC supports on-the-fly output voltage changes requested by the CPU.
The ADP3212/NCP3218 are specified over the extended commercial temperature range of -40°C to 100°C.
The ADP3212 is available in a 48-lead QFN 7x7mm 0.5 mm pitch package.
The NCP3218 is available in a 48-lead QFN 6x6mm 0.4 mm pitch package. Except for the packages, the ADP3212 and NCP3218 are identical. ADP3212 and NCP3218 are Halogen Free, Pb-Free and RoHS compliant.
FEATURES Single-chip solution Fully compatible with the Intel® IMVP-6.5™ specifications Selectable 1- , 2-, or 3-phase operation with up to 1 MHz per phase switching frequency Phase 1 and Phase 2 Integrated MOSFET drivers Input Voltage Range of 3.3 V to 22 V Guaranteed ±8 mV worst-case differentially sensed core voltage error over temperature Automatic power-saving mode maximizes efficiency with light load during deeper sleep operation Active current balancing between output phases Independent current limit and load line setting inputs for additional design flexibility Built-in power-good blanking supports voltage identification (VID) on-the-fly transients 7-bit, digitally programmable DAC with 0.3 V to 1.5 V output Short-circuit protection with programmable latch-off delay Clock enable output
Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.
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