ADP3210MNR2G The ON Semiconductor ADP3210MNR2G is a multiphase, synchronous buck controller designed for notebook power supplies. It offers programmable output voltage and operates over an extended commercial temperature range.
Mfr Part #:

ADP3210MNR2G

Available from 1 distributors
Mfr Name: On Semiconductor
On Semiconductor
The ON Semiconductor ADP3210MNR2G is a multiphase, synchronous buck controller designed for notebook power supplies. It offers programmable output voltage and operates over an extended commercial temperature range.
Total Stock: 454 pcs
$ Price Range: $0.75

ADP3210MNR2G Available from 1 distributor

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454 pcs
454 pcs On Request 1 On Request On Request 1306+ On Request On Request

ADP3210MNR2G Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Applications
Input Voltage
Mounting Type
Number of Outputs
Operating Temperature
SVHC Present
Supplier Device Package
Supplier Package
Voltage

ADP3210MNR2G Description

Short technical summary and product information.

The ADP3210MNR2G from ON Semiconductor is a high-efficiency, multiphase, synchronous buck switching regulator controller. It is optimized for converting notebook battery voltage to the core supply voltage required by high-performance Intel processors. The device utilizes an internal 7-bit DAC to read the Voltage Identification (VID) code directly from the processor, setting the output voltage accordingly.

 

The controller supports 1-, 2-, or 3-phase operation with interleaved switching, up to 1 MHz per phase. It features a multi-mode architecture that switches between multiphase and single-phase operation based on system signals, shedding phases as a function of load to maximize power conversion efficiency. The ADP3210MNR2G also supports programmable load-line resistance adjustment for optimal positioning of the output voltage during load transients.

 

Key electrical specifications include an input voltage range of 3.3 V to 22 V and a programmable output voltage range of 0.01 V to 1.5 V. The device offers accurate short-circuit protection with an adjustable current limit threshold and a delayed power-good output. It operates within an extended commercial temperature range of -10°C to 100°C.

 

Packaged in a 40-lead QFN (6x6) with exposed pad, the ADP3210MNR2G is designed for surface mount applications. It is suitable for power supplies for next-generation Intel processors.

ADP3210MNR2G Quick Information

Product Type: Synchronous Buck Controller
Canonical Name: ADP3210 Multiphase Mobile CPU Synchronous Buck Controller
Subcategory: Synchronous Buck Controller

ADP3210MNR2G Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected
Lead Free: Pb-Free

ADP3210MNR2G Estimated Pricing

Qty Low High
1+ $0.75 $0.75

Estimated market price range - modelled values for guidance only, not live distributor offers.

ADP3210MNR2G Features

  • Multiphase synchronous buck controller
  • Programmable output voltage via 7-bit DAC
  • Input voltage range 3.3V to 22V
  • Operating temperature -10°C to 100°C
  • 40-QFN package for surface mounting

ADP3210MNR2G Applications

  • Ideal for power management in computing.
  • Used in voltage regulator modules (VRMs).
  • Suitable for multi-phase buck converters.
  • Common in motherboard power supplies.

ADP3210MNR2G FAQs

7 frequently asked questions generated from this part’s specifications.
What is the input voltage range of the ADP3210MNR2G?

The input voltage range is 3.3 V to 22 V.

What is the output voltage range of the ADP3210MNR2G?

The output voltage range is 0.01 V to 1.5 V, digitally programmable via a 7-bit DAC.

What is the operating temperature range?

The operating temperature range is -10°C to 100°C.

What package does the ADP3210MNR2G come in?

It comes in a 40-VFQFN Exposed Pad (40-QFN 6x6 mm) package for surface mount.

How many outputs does the ADP3210MNR2G have?

It has a single output.

What is the maximum switching frequency?

The switching frequency is up to 1 MHz per phase.

What is the differential sensing error?

The worst-case differential sensing error is ±6 mV over temperature.

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