MAX1270EVKIT Maxim Integrated Products, MAX1270EVKIT Datasheet - Page 5

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MAX1270EVKIT

Manufacturer Part Number
MAX1270EVKIT
Description
EVALUATION KIT FOR MAX1270
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX1270EVKIT

Number Of Adc's
1
Number Of Bits
12
Sampling Rate (per Second)
110k
Data Interface
Serial
Inputs Per Adc
8 Single Ended
Input Range
±10 V
Power (typ) @ Conditions
30mW @ 110kSPS
Voltage Supply Source
Single Supply
Operating Temperature
0°C ~ 70°C
Utilized Ic / Part
MAX1270, MAX1271, MAX127, MAX128
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Average value is the arithmetic mean; i.e., the sum of all
values divided by the number of samples. Standard
deviation is used as an approximation to RMS voltage.
The Device Characteristics dialog box is used to select
between the MAX1270 and MAX1271.
The MAX1270 software can evaluate the MAX1271
directly. From the Window menu, pick Device
Characteristics. Next, change the device type from
MAX1270 to MAX1271 and click the Apply button. This
tells the program that the input voltage span is ±V
instead of ±10V.
The MAX1270 EV kit software assumes a 4.096V refer-
ence voltage, unless otherwise specified by the user. To
use the on-board MAX6141 reference (V
close JU2 and JU3. For an external, user-supplied refer-
ence, close JU2, open JU3, and apply the reference to
the V
and JU3. See the MAX1270 data sheet for more infor-
mation. From the Window menu, select Device
Characteristics, then type the new reference voltage
into the Reference Voltage edit box.
U1 is a MAX1270/MAX1271/MAX127/MAX128 analog-
to-digital converter. C10 bypasses the internal
bandgap reference, and C11 bypasses the 4.096 volt
reference output. Sockets U2 and U3 accommodate
optional unity-gain-stable quad op amp buffers. C2–C9
and R6–R13 form anti-aliasing input filters for the eight
input channels. U4 is an optional MAX6141 external ref-
erence. U5 is a linear regulator that provides +5V to U1
when used in stand-alone mode.
Supply current can be monitored by measuring the volt-
age across resistor R1. This resistor is 10Ω ±5%, so
every 1mV across R1 represents 100µA of supply cur-
rent.
REF
pad. To use the internal reference, open JU2
_______________________________________________________________________________________
Changing the Reference Voltage
Measuring Supply Current
Detailed Description
Device Characteristics
Evaluating the MAX1271
of Hardware
REF
= 4.096V)
MAX1270 EV Kit/EV System
REF
Problem: No output measurement. System seems to
report zero voltage or fails to make a measurement.
• Check the +5V supply voltage. Check the buffer op-
• Check the V
• Use an oscilloscope to verify that pin 5 (SCLK/SCL) is
• Verify that SHDN is not being pulled low.
Problem: Erratic, unstable measurement. Use an
oscilloscope to measure:
• V
• SHDN—ensure that shutdown mode is not activated.
• Analog input (while triggering on DIN)—large voltage
Table 2. Jumper Functions
Table 3. Voltage Reference Truth Table
JUMPER STATE
Closed
Closed
amp supply voltages if applicable.
using a digital voltmeter.
receiving clock strobe pulses.
disturbances can be cured by using an op amp
buffer (see Op Amp Buffers section).
Open
Open
JU2
REF
JU1
JU2
JU3
—increase reference capacitor if necessary.
Closed*
Closed*
Closed
Closed
Open
Open
Open
Open
JU3
2-3*
1-2
REF
U1 = MAX127 or MAX128. Use 2-wire
interface signals on TP1 test points.
U1 = MAX1270 or MAX1271. Use
3-wire interface signals on TP1 test
points, or use 68HC16 module and
supplied software.
Enable U1’s internal reference. JU3
must be open.
Disable U1’s internal reference. Refer to
Table 3, Voltage Reference Truth Table.
If JU2 is open, selects internal
reference. If JU2 is closed, user must
provide reference at VREF input pad.
Refer to Table 3, Voltage Reference
Truth Table.
Use voltage reference U4. Jumper JU2
must be closed.
Enable U1’s internal reference
Invalid operating configuration
User must provide a reference at the
Use voltage reference U4
and REFADJ reference voltages
FUNCTION
FUNCTION
Troubleshooting
5

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