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MAX1496EAIMAXN/a1avai3.5-digit, single-chip ADC with LED driver


MAX1496EAI ,3.5-digit, single-chip ADC with LED driverApplications Ordering InformationDigital Panel MetersPIN- RESOLUTIONPART TEMP RANGEHand-Held Meters ..
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MAX149ACAP ,+2.7V to +5.25V / Low-Power / 8-Channel / Serial 10-Bit ADCsGeneral Description ________
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MAX149AEAP ,+2.7V to +5.25V / Low-Power / 8-Channel / Serial 10-Bit ADCsELECTRICAL CHARACTERISTICSV = +2.7V to +5.25V; COM = 0V; f = 2.0MHz; external clock (50% duty cycle ..
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MAX4121CSA ,330MHz Buffered Video Switches/ Crosspoint Building Blocksfeaturesinclude -92dB crosstalk and -78dB isolation (MAX4121).' Ultra-Low Switching GlitchThe MAX41 ..
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MAX4122EUK+T ,Single/Dual/Quad, Wide-Bandwidth, Low-Power, Single-Supply Rail-to-Rail I/O Op AmpsMAX4122–MAX412919-1087; Rev 1; 8/97Single/Dual/Quad, Wide-Bandw idth, Low -Pow er,Single-Supply Rai ..
MAX4122EUK-T ,Single/Dual/Quad, Wide-Bandwidth, Low-Power, Single-Supply Rail-to-Rail I/O Op AmpsFeaturesThe MAX4122–MAX4129 family of operational amplifiers♦ 5-Pin SOT23 Package (MAX4122/4)combin ..


MAX1496EAI
4.5-digit, single-chip ADC with LED driver
General Description
The MAX1447/MAX1496/MAX1498 low-power, 3.5- and
4.5-digit, analog-to-digital converters (ADCs) with inte-
grated light-emitting diode (LED) drivers operate from a
single 2.7V to 5.25V power supply. They include an
internal reference, a high-accuracy on-chip oscillator,
and a multiplexed LED display driver. An internal charge
pump generates the negative supply needed to power
the integrated input buffers for single-supply operation.
The ADC is configurable for either a ±2V or ±200mV
input range and it outputs its conversion results to an
LED. The MAX1496 is a 3.5-digit (±1999 count) device
and the MAX1447/MAX1498 are 4.5-digit (±19,999
count) devices.
The MAX1447/MAX1496/MAX1498 do not require exter-
nal precision integrating capacitors, autozero capaci-
tors, crystal oscillators, charge pumps, or other circuitry
required with dual-slope ADCs (commonly used in
panel meter circuits).
These devices also feature on-chip buffers for the dif-
ferential signal and reference input, allowing direct
interface with high-impedance signal sources. In addi-
tion, they use continuous internal offset-calibration and
offer >100dB rejection of 50Hz and 60Hz line noise.
Other features include data hold and peak detection
and overrange/underrange detection. The MAX1447
features on-demand enhanced offset calibration for
improved offset performance.
The MAX1447/MAX1498 are available in a 32-pin, 7mm7mm TQFP package and the MAX1496 is available in
28-pin SSOP and 28-pin PDIP packages. All devices in
this family operate over the -40°C to +85°C extended
temperature range.
Applications

Digital Panel Meters
Hand-Held Meters
Digital Voltmeters
Digital Multimeters
Features
High Resolution
MAX1447/MAX1498: 4.5 Digits (±19,999 Count)
MAX1496: 3.5 Digits (±1999 Count)
Sigma-Delta ADC Architecture
No Integrating Capacitors Required
No Autozeroing Capacitors Required
>100dB of Simultaneous 50Hz and 60Hz
Rejection
Selectable Input Range of ±200mV or ±2VSelectable Voltage Reference: Internal 2.048V or
External
Internal High-Accuracy Oscillator Needs No
External Components
Automatic Offset CalibrationOn-Demand Enhanced Offset Calibration
(MAX1447)
Operate from a Single 2.7V to 5.25V SupplyLow Power (Exclude LED-Driver Current)
Maximum 744µA Operating Current (MAX1496)
Maximum 960µA Operating Current
(MAX1447/MAX1498)
Maximum 325µA Shutdown Current
Multiplexed Common-Cathode LED Drivers
Resistor-Programmable Segment Current
Small 32-Pin, 7mm x 7mm TQFP Package (4.5
Digits), 28-Pin SSOP Package (3.5 Digits)
Also Available in a PDIP Package (3.5 Digits)
MAX1447/MAX1496/MAX1498
3.5- and 4.5-Digit, Single-Chip ADCs
with LED Drivers
Ordering Information

19-3166; Rev 0; 1/04Pin Configurations appear at end of data sheet.
*Future product—contact factory for availability.
MAX1447/MAX1496/MAX1498
3.5- and 4.5-Digit, Single-Chip ADCs
with LED Drivers
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.
AVDDto GND (MAX1447/MAX1498)........................-0.3V to +6V
DVDDto GND (MAX1447/MAX1498)........................-0.3V to +6V
AIN+, AIN- to GND
(MAX1447/MAX1498)......................VNEG to (AVDDto +0.3V)
REF+, REF- to GND
(MAX1447/MAX1498).....................VNEG to (AVDDto +0.3V)
INTREF, RANGE, DPSET1, DPSET2, HOLD, PEAK,
DPON to GND (MAX1447/MAX1498)..-0.3V to (DVDD+ 0.3V)
VNEG to GND (MAX1447/MAX1498).......-2.6V to (AVDD+ 0.3V)
LED_EN to GND (MAX1447/MAX1498)...-0.3V to (DVDD+ 0.3V)
ISET to GND (MAX1447/MAX1498).........-0.3V to (AVDD+ 0.3V)
VDDto GND (MAX1496)...........................................-0.3V to +6V
AIN+, AIN- to GND (MAX1496)..............VNEG to (VDDto +0.3V)
REF+, REF- to GND (MAX1496)...........VNEG to (VDDto +0.3V)
INTREF, RANGE, DPSET1, DPSET2, HOLD, PEAK,
DPON to GND (MAX1496).....................-0.3V to (VDD+ 0.3V)
VNEG to GND (MAX1496)..........................-2.6V to (VDD+ 0.3V)
ISET to GND (MAX1496)............................-0.3V to (VDD+ 0.3V)
VLED to GLED..........................................................-0.3V to +6V
GLED to GND........................................................-0.3V to +0.3V
SEG_ to GLED..........................................-0.3V to (VLED + 0.3V)
DIG_ to GLED..........................................-0.3V to (VLED + 0.3V)
DIG_ Sink Current.............................................................300mA
DIG_ Source Current...........................................................50mA
SEG_ Sink Current..............................................................50mA
SEG_ Source Current..........................................................50mA
Maximum Current Input into Any Other Pin........................50mA
Continuous Power Dissipation (TA= +70°C)
32-Pin TQFP (derate 20.7mW/°C above +70°C).....1652.9mW
28-Pin SSOP (derate 9.5mW/°C above +70°C)...........762mW
28-Pin PDIP (derate 14.3mW/°C above +70°C)......1142.9mW
Operating Temperature Range...........................-40°C to +85°C
Junction Temperature......................................................+150°C
Storage Temperature Range.............................-60°C to +150°C
Lead Temperature (soldering, 10s).................................+300°C
ELECTRICAL CHARACTERISTICS

(AVDD= DVDD= VDD= +2.7V to +5.25V, GND = 0, VLED= +2.7V to +5.25V, GLED = 0, VREF+- VREF-= 2.048V (external reference),
CREF+= CREF-= 0.1µF, CVNEG= 0.1µF. Internal clock mode, unless otherwise noted. All specifications are at TA= TMINto TMAX.
Typical values are at TA= +25°C, unless otherwise noted.)
MAX1447/MAX1496/MAX1498
3.5- and 4.5-Digit, Single-Chip ADCs
with LED Drivers
ELECTRICAL CHARACTERISTICS (continued)

(AVDD= DVDD= VDD= +2.7V to +5.25V, GND = 0, VLED= +2.7V to +5.25V, GLED = 0, VREF+- VREF-= 2.048V (external reference),
CREF+= CREF-= 0.1µF, CVNEG= 0.1µF. Internal clock mode, unless otherwise noted. All specifications are at TA= TMINto TMAX.
MAX1447/MAX1496/MAX1498
3.5- and 4.5-Digit, Single-Chip ADCs
with LED Drivers
ELECTRICAL CHARACTERISTICS (continued)

(AVDD= DVDD= VDD= +2.7V to +5.25V, GND = 0, VLED= +2.7V to +5.25V, GLED = 0, VREF+- VREF-= 2.048V (external reference),
CREF+= CREF-= 0.1µF, CVNEG= 0.1µF. Internal clock mode, unless otherwise noted. All specifications are at TA= TMINto TMAX.
Typical values are at TA= +25°C, unless otherwise noted.)
MAX1447/MAX1496/MAX1498
3.5- and 4.5-Digit, Single-Chip ADCs
with LED Drivers
ELECTRICAL CHARACTERISTICS (continued)

(AVDD= DVDD= VDD= +2.7V to +5.25V, GND = 0, VLED= +2.7V to +5.25V, GLED = 0, VREF+- VREF-= 2.048V (external reference),
CREF+= CREF-= 0.1µF, CVNEG= 0.1µF. Internal clock mode, unless otherwise noted. All specifications are at TA= TMINto TMAX.
Typical values are at TA= +25°C, unless otherwise noted.)
Note 1:
Integral nonlinearity is the deviation of the analog value at any code from its theoretical value after nulling the gain error and
offset error.
Note 2:
Offset calibrated.
Note 3:
Offset nulled.
Note 4:
Drift error is eliminated by recalibration at the new temperature.
Note 5:
The input voltage range for the analog inputs is given with respect to the voltage on the negative input of the differential pair.
Note 6:
VAIN+ or VAIN- = -2.2V to +2.2V. VREF+ or VREF- = -2.2V to +2.2V. All input structures are identical. Production tested on
AIN+ and REF+ only.
Note 7:
Power-supply currents are measured with all digital inputs at either GND or DVDD.
Note 8:
Measured at DC by changing the power-supply voltage from 2.7V to 5.25V and measuring the effect on the conversion
error with external reference. PSRR at 50Hz and 60Hz exceeds 120dB with filter notches at 50Hz and 60Hz (Figure 2).
Note 9:
LED drivers are disabled.
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