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TL/H/11017
ADC12441 Dynamically-Tested Self-Calibrating 12-Bit
Plus Sign A/D Converter with Sample-and-Hold
November 1994
ADC12441 Dynamically-Tested Self-Calibrating 12-Bit
Plus Sign A/D Converter with Sample-and-Hold
General Description
The ADC12441 is a CMOS 12-bit plus sign successive ap-
proximation analog-to-digital converter whose dynamic
specifications (S/N, THD, etc.) are tested and guaranteed.
On request, the ADC12441 goes through a self-calibration
cycle that adjusts positive linearity and full-scale errors to
less than
g
(/2 LSB each and zero error to less than
g
1 LSB. The ADC12441 also has the ability to go through
an Auto-Zero cycle that corrects the zero error during every
conversion.
The analog input to the ADC12441 is tracked and held by
the internal circuitry, and therefore does not require an ex-
ternal sample-and-hold. A unipolar analog input voltage
range (0V to
a
5V) or a bipolar range (
b
5V to
a
5V) can be
accommodated with
g
5V supplies.
The 13-bit word on the outputs of the ADC12441 gives a 2’s
complement representation of negative numbers. The digi-
tal inputs and outputs are compatible with TTL or CMOS
logic levels.
Features
Y
Self-calibration provides excellent temperature stability
Y
Internal sample-and-hold
Y
Bipolar input range with single
a
5V reference
Applications
Y
Digital signal processing
Y
Telecommunications
Y
Audio
Y
High resolution process control
Y
Instrumentation
Key Specifications
Y
Resolution 12 bits plus sign
Y
Conversion Time 13.8 ms (max)
Y
Bipolar Signal/Noise 76.5 dB (min)
Y
Total Harmonic Distortion
b
75 dB (max)
Y
Aperture Time 100 ns
Y
Aperture Jitter 100 ps
rms
Y
Zero Error
g
1 LSB (max)
Y
Positive Full Scale Error
g
1 LSB (max)
Y
Power Consumption
@
g
5V 70 mW (max)
Y
Sampling rate 55 kHz (max)
TRI-STATE
É
is a registered trademark of National Semiconductor Corporation.
Simplified Block Diagram
TL/H/110171
Connection Diagram
Dual-In-Line Package
TL/H/110172
Top View
Order Number
ADC12441CMJ, ADC12441CMJ/883
or ADC12441CIJ
See NS Package Number J28A
C
1995 National Semiconductor Corporation RRD-B30M115/Printed in U. S. A.
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Indice de contenidos

Pagina 1 - TL/H/11017–2

TL/H/11017ADC12441 Dynamically-Tested Self-Calibrating 12-BitPlus Sign A/D Converter with Sample-and-HoldNovember 1994ADC12441 Dynamically-Tested Self

Pagina 2

1.0 Pin DescriptionsDVCC(28),The digital and analog positive power supplyAVCC(4)pins. The digital and analog power supplyvoltage range of the ADC12441

Pagina 3

2.0 Functional Description (Continued)Digital Control InputsA/D FunctionCS WR RD CAL AZßß 1 1 1 Start Conversion without Auto-Zeroß 1 ß 1 1 Read Conve

Pagina 4 - AC Electrical Characteristics

3.0 Analog Considerations (Continued)For absolute accuracy, where the analog input varies be-tween very specific voltage limits, the reference pin can

Pagina 5 - (Continued)

4.0 Dynamic PerformanceMany applications require the A/D converter to digitize acsignals, but the standard dc integral and differential nonlin-earity

Pagina 6 - TL/H/11017–8

ADC12441 Dynamically-Tested Self-Calibrating 12-BitPlus Sign A/D Converter with Sample-and-HoldPhysical Dimensions inches (millimeters)Order Number AD

Pagina 7 - TL/H/11017–9

Absolute Maximum Ratings (Notes1&2)If Military/Aerospace specified devices are required,please contact the National Semiconductor SalesOffice/Dist

Pagina 8 - Timing Diagrams

Converter Electrical CharacteristicsThe following specifications apply for VCCeDVCCeAVCCea5.0V, Vbeb5.0V, VREFea5.0V, Analog Input SourceImpedancee600

Pagina 9 - Timing Diagrams (Continued)

Digital and DC Electrical CharacteristicsThe following specifications apply for DVCCeAVCCea5.0V, Vbeb5.0V, VREFea5.0V, and fCLKe2.0 MHz unlessotherwis

Pagina 10 - 2.0 Functional Description

AC Electrical Characteristics (Continued)Note 4: The power dissipation of this device under normal operation should never exceed 169 mW (Quiescent Pow

Pagina 11 - Figure 2b

Electrical Characteristics (Continued)TL/H/11017–6FIGURE 1b. Simplified Error Curve vs Output Code without Auto-Cal or Auto-Zero CyclesTL/H/11017–7FIG

Pagina 12 - Figure 3

Typical Performance Characteristics (Continued)Linearity Error vs VREFFrequencyLinearity Error vs ClockAmbient TemperatureFull Scale Error Change vsIn

Pagina 13 - 4.0 Dynamic Performance

Typical Performance Characteristics (Continued)Bipolar Spectral Responsewith 20 kHz Sine Wave InputTL/H/11017–10Unipolar Spectral Responsewith 20 kHz

Pagina 14

Timing Diagrams (Continued)Normal Conversion with Auto-Zero (CALe1, AZe0)TL/H/11017–17Normal Conversion without Auto-Zero (CALe1, AZe1)TL/H/11017–189

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