MAX5488EVKIT# Maxim Integrated Products, MAX5488EVKIT# Datasheet - Page 4

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MAX5488EVKIT#

Manufacturer Part Number
MAX5488EVKIT#
Description
KIT EVALUATION FOR MAX5488
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX5488EVKIT#

Main Purpose
Digital Potentiometer
Utilized Ic / Part
MAX5488
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Secondary Attributes
-
Embedded
-
Primary Attributes
-
The MAX5488 EV kit software graphical user interface
(GUI) is a Windows program that provides a convenient
means to control the MAX5488 (Figure 1).
Clicking the Factory Reset button returns wiper A and
wiper B (and the nonvolatile memory) to the factory-
programmed midscale tap position.
In the Channel A group box, set the tap value (either by
typing the decimal tap number into one of the edit boxes
or by moving the slider), and then click the Write button.
As confirmation, the Command History window shows
SPI sequence 0x01 nn, where nn = the hexadecimal
W-L tap value.
MAX5488 Evaluation Kit
Figure 1. MAX5488 EV Kit Main Window
4
Detailed Description of Software
_______________________________________________________________________________________
Wipers A and B Position
Factory Reset
In the Channel B group box, set the tap value (either by
typing the decimal tap number into one of the edit boxes
or by moving the slider), and then click the Write button.
As confirmation, the Command History window shows
SPI sequence 0x02 nn, where nn = the hexadecimal
W-L tap value.
In the Channel A group box, set the tap value (either by
typing the decimal tap number into one of the edit boxes
or by moving the slider), and then click the Write NV
button. As confirmation, the Command History window
shows SPI sequence 0x11 nn, where nn = the hexadeci-
mal W-L tap value.
In the Channel B group box, set the tap value (either by
typing the decimal tap number into one of the edit boxes
or by moving the slider), and then click the Write NV
button. As confirmation, the Command History window
shows SPI sequence 0x12 nn, where nn = the hexadeci-
mal W-L tap value.
Nonvolatile Programming

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