MAX1813

Features: *High-Efficiency Voltage Positioning* Quick-PWM Architecture* ±1% VOUT Accuracy Over Line* Adjustable Output Slew Rate* 0.600V to 2V Adjustable Output Range (5-Bit DAC)* 2V to 28V Battery Input Range* 200/300/600/1000kHz Switching Frequency* Output Undervoltage and Overvoltage Protection...

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MAX1813 Picture
SeekIC No. : 004409337 Detail

MAX1813: Features: *High-Efficiency Voltage Positioning* Quick-PWM Architecture* ±1% VOUT Accuracy Over Line* Adjustable Output Slew Rate* 0.600V to 2V Adjustable Output Range (5-Bit DAC)* 2V to 28V Battery ...

floor Price/Ceiling Price

Part Number:
MAX1813
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/27

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Product Details

Description



Features:

* High-Efficiency Voltage Positioning
* Quick-PWM Architecture
* ±1% VOUT Accuracy Over Line
* Adjustable Output Slew Rate
* 0.600V to 2V Adjustable Output Range (5-Bit DAC)
* 2V to 28V Battery Input Range
* 200/300/600/1000kHz Switching Frequency
* Output Undervoltage and Overvoltage Protection
* Drives Large Synchronous-Rectifier MOSFETs
* ±20% Accurate Current-Limit
* 10µA Shutdown Supply Current
* 2V ±1% Reference Output
* Power-Good (PGOOD) Indicator
* Small 28-Pin QSOP Package



Application

* Notebook Computers
   (Intel IMVPII™/Coppermine™)
* Docking Stations
* CPU Core Supply
* Single-Stage (BATT to VCORE) Converters
* Two-Stage (+5V to VCORE) Converters



Pinout

  Connection Diagram


Specifications

V+ to GND .................................................................-0.3V to +30V
VCC, VDD to GND .........................................................-0.3V to +6V
PGND to GND.........................................................................±0.3V
D0D4, CODE, ZMODE, SUS, PGOOD to GND .............-0.3V to +6V
SKP/SDN to GND (Note 1) .........................................-0.3V to +16V
ILIM, FB, CC, REF,
   TON, TIME, S0, S1 to GND...........................-0.3V to (VCC + 0.3V)
VPCS to GND ...............................................................-2V to +30V
DL to PGND....................................................-0.3V to (VDD + 0.3V)
BST to PGND.............................................................-0.3V to +36V
DH to LX.......................................................-0.3V to (VBST + 0.3V)
LX to BST....................................................................-6V to +0.3V
REF Short Circuit to GND ..............................................Continuous
Continuous Power Dissipation (TA = +70)
   28-Pin QSOP (derate 10.8mW/ above +70)..............860mW
Operating Temperature Range ...............................-40 to +85
Junction Temperature.........................................................+150
Storage Temperature Range ................................-65 to +150
Lead Temperature (soldering, 10s) ....................................+300



Description

The MAX1813 step-down controller is intended for core CPU DC-DC converters in notebook computers. The controller features a dynamically adjustable output (5- bit DAC), ultra-fast transient response, high DC accuracy, and high efficiency necessary for leading-edge CPU core power supplies. Maxim's proprietary Quick- PWM™ quick-response, constant-on-time PWM control scheme handles wide input/output voltage ratios with ease and provides 100ns "instant-on" response to load transients while maintaining a relatively constant switching frequency.

The MAX1813 is designed specifically for CPU core applications requiring a voltage-positioned supply. The voltage-positioning input (VPCS), combined with a high-DC-accuracy control loop, is used to implement a power supply that modifies its output set point in response to the load current. This arrangement decreases full-load power dissipation and reduces the required number of output capacitors.

The output voltage can be dynamically adjusted through the 5-bit digital-to-analog converter (DAC) inputs over a 0.600V to 2V range. The MAX1813 includes an internal multiplexer that selects between three different DAC code settings. The first two inputs are controlled by five digital input pins (D0D4). The third input is used for the suspend mode and controlled by two 4-level input pins (S0, S1). Output voltage transitions are accomplished with a proprietary precision slew-rate control that minimizes surge currents to and from the battery while guaranteeing "just-in-time" arrival at the new DAC setting.

The MAX1813's 28V input range enables single-stage buck conversion from high-voltage batteries for the maximum possible efficiency. Alternatively, the controller'shigh-frequency capability combined with twostage conversion (stepping down the +5V system supply instead of the battery) allows the smallest possible physical size.

The MAX1813 is available in a 28-pin QSOP package.




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