MAX5661EVCMAXQU+ Maxim Integrated Products, MAX5661EVCMAXQU+ Datasheet - Page 2

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MAX5661EVCMAXQU+

Manufacturer Part Number
MAX5661EVCMAXQU+
Description
EVALUATION SYSTEM FOR MAX56611
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX5661EVCMAXQU+

Number Of Dac's
1
Number Of Bits
16
Outputs And Type
2, Single Ended
Data Interface
Serial
Dac Type
Current/Voltage
Voltage Supply Source
Single
Operating Temperature
-40°C ~ 105°C
Utilized Ic / Part
MAX5661
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
V
V
V
V
V
V
DGND, DUTGND, DUTGNDS, DACGND,
Digital Inputs (CS, DIN, SCLK, CLR, LDAC,
Digital Outputs (DOUT, FAULT) to DGND....................................
REF to AGND............................................................-0.3V to +6V
Single 16-Bit DAC with Current and Voltage
Outputs for Industrial Analog Output Modules
ABSOLUTE MAXIMUM RATINGS
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
(V
V
unless otherwise noted. Typical values are at T
2
STATIC PERFORMANCE
Resolution
Integral Nonlinearity
Differential Nonlinearity
Zero-Scale Voltage Error
Zero-Scale Current
(Note 4)
Zero-Scale Current Error
(Note 4)
Voltage-Offset Error Drift
DDCORE
DDI
DDV
SSV
DDI
CC
DACGND
CC
DACGNDS to AGND ............................................-0.3V to +6V
CNF_) to DGND .....................................-0.3V to (V
...............................-0.3V to the lesser of (V
________________________________________________________________________________________
to DGND ...........................................................-0.3V to +6V
to AGND.........................................................-0.3V to +42V
to V
to AGND ........................................................-17V to +0.3V
= +5V, C
to AGND........................................................-0.3V to +17V
SSV
to V
= 0V, R
PARAMETER
...........................................................-0.3V to +59V
SSV
COMPI
...................................................-0.3V to +42V
SERIES
= 22nF, V
= 47Ω, OUTV loaded with 2kΩ || 100pF to AGND, OUTI loaded with 500Ω to AGND, T
DDV
= V
SYM B O L
TCV
DDCORE
V
DNL
I
INL
ZSE
ZSE
OS
CC
A
= +15V, V
+ 0.3V) or +6V
= +25°C. See the Typical Operating Circuit .) (Note 1)
V
I
V
(Note 2)
I
= + 15V , V
(Note 2)
Guaranteed monotonic (Note 3)
OUTV
0 to 20mA mode
4–20mA mode
0 to 20mA mode
4–20mA mode
OUTV
OUT
OUT
OUT
SSV
CC
, V
, V
= V
+ 0.3V)
DDI
DDI
SSV
DDV
S S V
= 40V,
= V
= -15V, V
= - 15V
= 0
DDV
CONDITIONS
OUTV, SVP, SVN, COMPV to V
OUTI, COMPI, OUTI4/0 to AGND ..............-0.3V to (V
Maximum Current into Any Pin .......................................±100mA
Continuous Power Dissipation (T
Junction-to-Ambient Thermal Resistance
Junction-to-Case Thermal Resistance (θ
Operating Temperature Range .........................-40°C to +105°C
Junction Temperature ......................................................+150°C
Storage Temperature Range .............................-65°C to +150°C
Lead Temperature (soldering,10s) ..................................+300°C
Unipolar
Bipolar
T
T
T
T
T
T
T
T
Unipolar
Bipolar
4–20mA
0 to 20mA
4–20mA
0 to 20mA
DDI
64-Pin, 10mm x 10mm TQFP (derate 25mW/°C
above +70°C)............................................................ 2000mW
in Still Air (θ
A
A
A
A
A
A
A
A
= +25°C
= T
= +25°C
= T
= +25°C
= T
= +25°C
= T
= +24V, V
MIN
MIN
MIN
MIN
to T
to T
to T
to T
JA
MAX
MAX
MAX
MAX
) ...………………………………………….40°C/W
REF
= +4.096V, V
3.955
3.94
MIN
-1.0
-45
-60
-15
-30
-15
-30
16
SSV
A
AGND
...........-0.3V to (V
= +70°C)
±0.01
±0.2
±2.0
±2.0
±2.0
±3.0
±7.0
±0.5
±0.2
TYP
3.97
3.97
-30
-30
±6
±2
±6
JC
= V
A
)...................... 8°C/W
DGND
= -40°C to +105°C,
3.985
MAX
+1.0
4.00
±10
±10
+15
+30
+15
+30
-15
±3
±4
0
= V
DDV
DDI
DUTGND
ppm of
FSR/
UNITS
+ 0.3V)
+ 0.3V)
LSB
LSB
Bits
mV
mA
µA
µA
o
C
=

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