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MAX16806EVCMAXQU, MAX16806EVKIT
Evaluation Kit/Evaluation System for the MAX16806


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Status
Active: In Production.

Data Sheet
FULL DATA SHEET (PDF, 448kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail


Description
The MAX16806 evaluation kit (EV kit) demonstrates the features of the MAX16806 high-current LED driver, capable of delivering regulated current of up to a total of 350mA to one or more strings of high-brightness LEDs with high accuracy. This EV kit operates at supply voltages between 5.5V to 40V and temperatures ranging from 0°C to +70°C.

The MAX16806 EV kit provides a user-selectable three-level LED current setting, connection to the 5V-regulated output, and a momentary switch to enable or disable the dimming function. This EV kit features wide-range dimming, controllable through a PWM input or analog input generated using an on-board trim pot. The MAX16806 EV kit is a fully assembled and tested PCB.

The MAX16806 EV kit provides access to the I²C interface of the MAX16806 IC, through which the internal dynamic registers and the EEPROM are written/read to control various device features. A CMAXQUSB board can be used to enable PC communication using the I²C 2-wire interface. Windows® 98SE/2000/XP-compatible GUI software is provided to access the MAX16806 IC. The MAX16806 EV kit can also be interfaced directly to a user-provided I²C system.

The MAX16806 evaluation system (EV system) consists of the MAX16806 EV kit and a companion CMAXQUSB serial-interface board. The CMAXQUSB interface board allows a PC to control an I²C interface using the USB port. Order the MAX16806EVCMAXQU+ for a complete PC-based evaluation of the MAX16806. Order the MAX16806EVKIT+ if you already have a CMAXQUSB interface board, or if you have your I²C interface, or do not require PC-based evaluation of the MAX16806.

NOTE: This product requires use of the following:

  • MAX16806EVSYS Graphical User Interface

    Key Features   Applications/Uses
    • 5.5V to 40V Supply Voltage Range
    • Jumper Selectable 150mA, 250mA, or 350mA Output Current
    • 5V-Regulated Output
    • Wide-Range Dimming Control with PWM or Analog Control Signal
    • On-Board Trim Pot to Provide Analog Control Voltage for PWM Dimming
    • Tactile Momentary Switch
    • PC-Based Evaluation of Features Using I²C Interface
    • LED Current Thermal Foldback with Connection for Optional Thermal Sensor
    • Windows 98SE/2000/XP-Compatible GUI Software
    • Package Dissipates Up to 2.760W at TA = +70°C
    • Lead-Free and RoHS Compliant
    • Fully Assembled and Tested

     
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    Design Guides
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    Reliability Reports
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    Software/Models
  • MAX16806EVSYS Graphical User Interface

    Ordering Information
    Notes:

    1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
    2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
    3. Part number suffixes: T or T&R = tape and reel;+ = RoHS/lead-free;# = RoHS/lead-exempt. More: SeeFull Data Sheet or Part Naming Conventions.
    4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.


    Devices: 1-2 of 2

    MAX16806EVCMAXQU Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX16806EVCMAXQU+    
    Active

    Land Pattern: Not Available

    -40°C to +125°C See data sheet
    MAX16806EVKIT Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX16806EVKIT+    
    Active

    Land Pattern: Not Available

    See data sheet

    Related Products
    MAX16805, MAX16806 EEPROM-Programmable, High-Voltage, 350mA LED Drivers with LED Current Foldback

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    Document Ref.: 19-0682; Rev 3; 2009-01-05
    This page last modified: 2009-01-07


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