MX7705EWE+T Maxim Integrated Products, MX7705EWE+T Datasheet - Page 30

IC ADC 16BIT 2CH 16-SOIC

MX7705EWE+T

Manufacturer Part Number
MX7705EWE+T
Description
IC ADC 16BIT 2CH 16-SOIC
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MX7705EWE+T

Number Of Bits
16
Sampling Rate (per Second)
500
Data Interface
MICROWIRE™, QSPI™, Serial, SPI™
Number Of Converters
1
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (0.300", 7.50mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Connect the differential inputs of the MX7705 to the
bridge network of the strain gauge. In Figure 12, the ana-
log positive supply voltage powers the bridge network
and the MX7705, along with the reference voltage in a
ratiometric configuration. The on-chip PGA allows the
MX7705 to handle an analog input voltage range as low
as 20mV to full scale.
Use the MX7705 for temperature measurements from a
thermocouple (Figure 13). Operate the MX7705 in
buffered mode to allow large decoupling capacitors at
the analog inputs. The decoupling capacitors eliminate
any noise pickup from the thermocouple leads. AIN1- is
biased up at the reference voltage to accommodate the
reduced common-mode input range in buffered mode.
For applications that require an optically isolated inter-
face, see Figure 14. With 6N136-type optocouplers,
maximum clock speed is 4MHz. Maximum clock speed
is limited by the degree of mismatch between the indi-
vidual optocouplers. Faster optocouplers allow faster
signaling at a higher cost.
Use PC boards with separate analog and digital
ground planes. Connect the two ground planes togeth-
er at the MX7705 GND. Isolate the digital supply from
the analog with a low-value resistor (10Ω) or ferrite
bead when the analog and digital supplies come from
the same source.
Ensure that digital return currents do not pass through
the analog ground and that return-current paths are low
impedance. A 5mA current flowing through a PC board
ground trace impedance of only 0.05Ω creates an error
voltage of about 250µV.
Layout the PC board to ensure digital and analog sig-
nal lines are kept separate. Do not run digital lines
(especially the SCLK and DOUT) parallel to any analog
lines. If they must cross another, do so at right angles.
Bypass V
capacitor in parallel with a 1µF to 10µF low-ESR capac-
itor. Keep capacitor leads short for best supply-noise
rejection. Bypass REF+ and REF- with a 0.1µF capaci-
tor to GND. Place all bypass capacitors as close to the
device as possible to achieve the best decoupling.
16-Bit, Low-Power, 2-Channel,
Sigma-Delta ADC
30
______________________________________________________________________________________
DD
to the analog ground plane with a 0.1µF
Applications Information
Layout, Grounding, Bypassing
Applications Examples
Strain-Gauge Measurement
Temperature Measurement
Optical Isolation
Figure 12. Strain-Gauge Measurement
Figure 13. Temperature Measurement
THERMOCOUPLE
*USE A 1.225V REFERENCE FOR V
DUMMY
ACTIVE
GAUGE
GAUGE
JUNCTION
R
REF
REFERENCE*
1.225V/2.5V
0.1μF
0.1μF
R
R
DD
= 3V OR A 2.5V REFERENCE FOR V
REF+
AIN1+
AIN1-
REF-
0.1μF
0.1μF
MX7705
GND
V
V
DD
DD
AIN1+
AIN1-
REF+
REF-
V
DD
0.1μF
10μF
V
GND
= 3V/5V*
DD
CLKOUT
RESET
MX7705
CLKIN
DOUT
DRDY
SCLK
DIN
CS
10μF
10μF
CLKOUT
DD
CLKIN
RESET
DOUT
DRDY
SCLK
= 5V.
DIN

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