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MAX173CNGN/a7avaiComplete 5s CMOS 10-Bit A/D Converter
MAX173CWGMAXIMN/a10avaiComplete 5s CMOS 10-Bit A/D Converter


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MAX173CNG-MAX173CWG
Complete 5s CMOS 10-Bit A/D Converter
AVH/Il Ji)45 il s4'ilAl
Complete bs CMOS 10-Bit A/D Converter
- General Description
The MAX173 is a complete, IO-bit linear analog-to-
digital converter (ADC) that combines high speed, low
power consumption, and an on-chip voltage reference.
The conversion time is Susi The buried zener reference
provides low drift and low noise performance.
External component requirements are limited to only
decoupling capacitors for the power supply and refer-
ence voltages. On-chip clock circuitry is also included
which can either be driven from an external source, or
in' stand-alone applications, from a crystal.
The MAX173 uses a standard microprocessor interface
architectuLe. Three-state data_o_utputs are controlled
by Read (RD) and Chip Select (CS) inputs. Data access
and bus release times of 90ns and 75ns respectively
ensure compatibility with most popular microproces-
sors without resorting to wait states.
Applications
Digital Signal Processing (DSP)
High Accuracy Process Control
High Speed Data Acquisition
Electro-Mechanical Systems
-7 Functional Diagram
AEND her "
[a I: ll
Features
. 12-Bit Resolution and 10-Bit Linearity
. 5ps Conversion Time
. On-Chip i40ppml°C Voltage Reference
. 90ns Access Time
. 215mw (Max) Power Consumption
. 24-Lead Narrow DIP and Wide SO Packages
Ordering Information
PART TEMP. RANGE PACKAGE'
MAX173CNG 0°C to +70°C Plastic DIP
MAX173CWG 0°C to +70°C Wide so -
MAX173C/D 0°C to +70°C Dice"
MAX173ENG -40''C to +85°C Plastic DIP. _
MAX173EWG -40''G to +85° 0 Wide SO
MAX173MHG -55"C to +125° C CERDIP
' All devices - 24 lead packages
.. Consult factory for dice specifications,
Pin Configurations
Top View
g _m AIN1 . V mm
REFERENCE “REF '2 E V38
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MAXIM is a registered trademark of Maxim Integrated Products.
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MAX173
Complete Sps CMOS 10-Bit A/D Converter
ABSOLUTE MAXIMUM RATINGS
V01) to DGND ..........................
Vss to DGND
AGND to DGND
AIN to AGND
Digital Input Voltage to DGND .........
(Pins 17, 19-21)
Digital Output Voltage to DGND .........
(Pins 4-11, 13-16, 18, 22)
-0.3V to +7V
+0.3V to -17V
A13V, Voo + 0.3V
... -15V to +15V
-O.3V, Voro + (13V
-0.3V, VDD + 0.3V
Operating Temperature Ranges
MAX173XC ............................. 0°C to +70''C
MAX173XE ........................... -40° C to +85°C
MAX173XM ........................ -55°C to 0 125°C
Storage Temperature Range ............ -65"C to +160°C
Power Dissipation (any Package) to +75°C ...... 1000mW
Derates Above +75°C by .................... 10mW/°C
Lead Temperature (Soldering 10 seconds) ........ +300°C
Stresses above those lisIed 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 above those indicated in the operational sections of the specifications IS not
implied. Exposure to absolute manmum ratmg conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
Moro = +5V i 5%, Vss = -12V or -15V i 5%; Slow Memory Mode; TA = TM." to TMAX unless otherwise noted, fCLK : 2.5MHz.)
_ PARAMETER i swam CONDITIONS MIN TYP MAX l UNITS
ACCURACY
Resolution 12 Bits
No Missing Code Resolution 10 Bits
Integral Non-Linearily INL i005 "/oFSR
Offset Error (Note 1) 15 mV
Full Scale Error (Note 2) tOA %
Full Scale Tempco (Notes 3, 4) b45 ppm/°C
ANALOG INPUT
Input Voltage Range 0 5 V
Input Current AIN = 0V to HN 3.5 mA
INTERNAL REFERENCE
VREF Output Voltage TA = 25°C -5.2 -5.25 -5.3 V
Vngr Output Tempco (Note 5) IMO ppm/°C
Titput Current Sink Capability (Note 6) 5 n,'A _
LOGIC INPUTS
Input Low Voltage " C's. M, HBEN, CLKIN 0.8 v
jnput High Voltage Ihr, C_S, FTD. HBEN, CLKIN 2.4 V
Input Capacitance (Note 7) cIN is WF), HBEN, CLKIN 10 pF
Input Current hr: gEkTB‘ HBEN VIN = 0 to Voc, Egg pA
Eoac OUTPUTS -
Output Low Voltage VOL D11-DO/8, Ticfi5, CLKOUT ISM = 1.5 mA 0.4 v
Output High Voltage D Vor, 011-DOZ3, bu-sy, CLKOUT lsouncg _ 200PA 4 v
2332: State Leakage um; D11-DO/8. VouT = OV to v00 +10 PA
g2tti21ae"ifouttep)')t Cour 15 pF
T:avEmuoN TIME
MAM” tcoo 3133333333; 1325 /it'kciglei), 4.8 55.2 “S
2 - Alli] Xl/Vl
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