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MAX15303 Evaluation Kit: Datasheet, Product Overview and Features

  • Contents

 

Catalog

Description

Required Equipment

System Setup

Detailed Description of Hardware

Features

Performance Characteristics

Datasheet

Manufacturer

Using Warning

Description

The MAX15303 evaluation kit (EV kit) is a proven application circuit design for the MAX15303 digital DC-DC controller integrated circuit (IC). The EV kit allows the user to easily modify and test the EV kit with different operating conditions. The EV kit can be used as a standalone board if desired.

 

However, to take full advantage of the IC’s capability, the user must connect the EV kit to a PC with the Maxim PowerTool MAXPOWERTOOL002# USB-toPMBus interface dongle and then control and monitor the EV kit with Maxim’s digital PowerTool graphical user interface (GUI) software. The PowerTool GUI allows a PC to control the PMBus interface and to collect real-time data from the EV kit. The PowerTool is Windows XP, Windows Vista, and Windows7 compatible. It provides a simple interface for exercising the features of the IC.

 

Required Equipment

  • MAX15303 EV kit
  • MAXPOWERTOOL002# USB-to-PMBus interface kit
  • 6.5V to 12V, 5A DC supply
  • 100MHz oscilloscope with ≥ 2 channels
  • Electronic load
  • Digital multimeters (DMMs)
  • Windows XP, Windows Vista, or Windows 7 PC and an available USB port
  • RG-174 BNC-to-SMB cables for oscilloscope connection

 

System Setup

Figure-MAX15303-System-Setup

 

Figure: System Setup

Detailed Description of Hardware

Setting the Output Voltage

Configure the output voltage by connecting a resistance between the SET pin of the MAX15303 and GND (refer to Table 1 in the MAX15303 IC data sheet). Do this by placing a shunt across any one of the five-labeled locations of header J8 on the EV kit. Make additional pinstrap settings by removing the jumper from J8 and placing a leaded resistor across J9. Once input power is applied to the EV kit, the SET resistor is read. The output-voltage set point can be changed at any time by sending a new VOUT_COMMAND value from the GUI through the PMBus interface.

 

Setting the PMBus Slave Address

Configure the EV kit slave address by connecting resistors between ADDR0 and GND and ADDR1 and GND on the IC (refer to Table 4a in the MAX15303 IC data sheet).Resistor R46 on the EV kit connects to ADDR1, selecting both the address column and setting the current-limit voltage for the inductor DCR signal. Select the ADDR0 resistor value, from one of four possible values, by placing a shunt in one of the labeled locations on header J6. Make additional pin-strap settings by removing the jumper from J6 and placing a leaded resistor across J7. The ADDR0 and ADDR1 resistors are read once when input power is applied to the EV kit; the slave address cannot be changed through the PMBus interface.

 

LED Indicators

The EV kit features two LED indicators, one to show that auxiliary power is present and one to show that the IC’s output power is good. The +3.3V VAUX LED (D2) illuminates green when the on-board 3.3V auxiliary supply is available. VAUX becomes available when an input voltage is applied to VIN at J11 or J17. The PG LED (D3) illuminates green when the following conditions are met:

  • VIN is present
  • VAUX is present
  • The IC asserts power good (PG pin is open)

 

Enable Switch

The EV kit includes a switch (SW2) to control the IC’s EN input. This switch has two labeled positions:

  • ON: EN pin (EN_BUS) is pulled high by the threestated debounce circuit
  • OFF: EN pin (EN_BUS) is driven low by the debounce circuit

 

HSSP-NORMAL Switch

The EV kit’s HSSP-NORMAL switch (SW1) must be set to the NORMAL position for proper operation.

 

SMB Connectors

The EV kit includes easy-to-use SMB connectors for precision monitoring of the output voltage (VOUT) at J14, and the switch node (LX) at J13. These connectors are back terminated with 50Ω resistance and can be connected directly to oscilloscope inputs for low-noise measurement.

 

Features

  • InTune™ Digital Point-of-Load (PoL) Switched-Mode Power Supply (SMPS)
  • Digital State-Space Control
  • Dual-Edge-Modulated Pulse-Width Modulation (PWM)
  • 300kHz to 1MHz Switching Frequency
  • 5V to 12V Input Voltage Range Using Linear Mode
  • 6.5V to 12V Input Voltage Range Using BabyBuck Mode
  • 0.6V to 3.3V Output Voltage Range
  • 6A Output Current Capability
  • Single-Phase Operation
  • Pin-Strap or PMBus Configuration
  • SMB Connectors for Low-Noise Measurements
  • Connectors for Multiple-Rail Evaluation
  • PMBus Interface for Control and Monitoring
  • High-Speed Serial-Port Diagnostics

 

Performance Characteristics

Figure-MAX15303-Performance-Characteristics-01

Figure-MAX15303-Performance-Characteristics-02

 

Figure: Performance Characteristics

Datasheet

MAX15303E-Maxim-Integrated-Datasheet

 

Manufacturer

Maxim Integrated, a subsidiary of Analog Devices, designs, manufactures, and sells analog and mixed-signal integrated circuits for the automotive, industrial, communications, consumer, and computing markets. Maxim's product portfolio includes power and battery management ICs, sensors, analog ICs, interface ICs, communications solutions, digital ICs, embedded security, and microcontrollers. The company is headquartered in San Jose, California, and has design centers, manufacturing facilities, and sales offices worldwide.

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

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