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Maxim > Design Support > Technical Documents > Subsystem Boards > APP 5561
Keywords: Santa Fe, MAXREFDES5#, subsystem reference design, analog front end, AFE, industrial sensors,
isolated power and data, industrial automation, PLC, medical, MAXREFDESS#, MAXREFDE55#,
MAXREFDESS, MAXREFDE55, isolation
SUBSYSTEM BOARD 5561
Santa Fe (MAXREFDES5#): 16-Bit High Accuracy
Multi-Input Isolated Analog Front End (AFE)
Jan 11, 2013
Abstract: This document explains how the Santa Fe (MAXREFDES5#) subsystem reference design meets the
higher resolution, higher voltage, and isolation needs of industrial control and industrial automation applications.
Hardware and firmware design files as well as FFTs and histograms from lab measurements are provided.
On February 28, 2014, the name of MAXREFDES5# was changed from Cupertino to Santa Fe. Maxim made this
change in an effort to distinctly identify MAXREFDES5# as a design focused on industrial applications. Other
than the name change, the design remains the same, with similar high performance analog functionality.
Introduction
Today's field programmable gate
arrays (FPGAs) and microcontrollers
with internal analog-to-digital
converters (ADCs) are capable of low-
resolution and low-voltage analog
inputs. However, they fall short on
being able to meet the needs of
industrial control and industrial automation applications, where isolation, higher resolutions, and higher voltage
system solutions are often needed. The Santa Fe (MAXREFDES5#) subsystem reference design is a 16-bit high-
accuracy industrial analog front end (AFE) that accepts -10V to +10V, 0 to 10V, and 4–20mA current loop signals
with isolated power and data integrated into a small form factor. The Santa Fe design integrates low-noise high-
impedance analog buffers (MAX9632); a highly accurate ADC with innovative on-chip attenuation (MAX1301); an
ultra-high precision 4.096V voltage reference (MAX6126); 600VRMS data isolation (MAX14850); and
isolated/regulated +12V, -12V, and 5V power rails (MAX256/MAX1659). This AFE solution can be used in any
application that needs high-accuracy analog-to-digital conversion, but it is mainly targeted for industrial sensors,
industrial automation, process control, programmable logic controllers (PLCs), and medical applications.