Rainbow-electronics ADC12138 Bedienungsanleitung

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TL/H/12079
ADC12130/ADC12132/ADC12138 Self-Calibrating 12-Bit Plus Sign
Serial I/O A/D Converters with MUX and Sample/Hold
March 1995
ADC12130/ADC12132/ADC12138 Self-Calibrating 12-Bit
Plus Sign Serial I/O A/D Converters with MUX and
Sample/Hold
General Description
The ADC12130, ADC12132 and ADC12138 are 12-bit plus
sign successive approximation A/D converters with serial
I/O and configurable input multiplexer. The ADC12132 and
ADC12138 have a 2 and an 8 channel multiplexer, respec-
tively. The differential multiplexer outputs and A/D inputs
are available on the MUXOUT1, MUXOUT2, A/DIN1 and
A/DIN2 pins. The ADC12130 has a two channel multiplexer
with the multiplexer outputs and A/D inputs internally con-
nected. The ADC12130 family is tested with a 5 MHz clock.
On request, these A/Ds go through a self calibration pro-
cess that adjusts linearity, zero and full-scale errors to typi-
cally less than
g
1 LSB each.
The analog inputs can be configured to operate in various
combinations of single-ended, differential, or pseudo-differ-
ential modes. A fully differential unipolar analog input range
(0V to
a
5V) can be accommodated with a single
a
5V sup-
ply. In the differential modes, valid outputs are obtained
even when the negative inputs are greater than the positive
because of the 12-bit plus sign output data format.
The serial I/O is configured to comply with the NSC
MICROWIRE
TM
. For complementary voltage references see
the LM4040, LM4041 or LM9140.
Applications
Y
Pen-based computers
Y
Digitizers
Y
Global positioning systems
Features
Y
Serial I/O (MICROWIRE, SPI and QSPI Compatible)
Y
2 or 8 channel differential or single-ended multiplexer
Y
Analog input sample/hold function
Y
Power down mode
Y
Programmable acquisition time
Y
Variable digital output word length and format
Y
No zero or full scale adjustment required
Y
0V to 5V analog input range with single 5V power
supply
Key Specifications
Y
Resolution 12-bit plus sign
Y
12-bit plus sign conversion time 8.8 ms (max)
Y
12-bit plus sign throughput time 14 ms (max)
Y
Integral linearity error
g
2 LSB (max)
Y
Single supply 3.3V or 5V
g
10%
Y
Power dissipation
Ð 3.3V 15 mW (max)
Ð 3.3V power down 40 mW (typ)
Ð 5V 33 mW (max)
Ð 5V power down 100 mW (typ)
ADC12138 Simplified Block Diagram
TL/H/120791
TRI-STATE
É
is a registered trademark of National Semiconductor Corporation.
COPS
TM
microcontrollers, HPC
TM
and MICROWIRE
TM
are trademarks of National Semiconductor Corporation.
C
1995 National Semiconductor Corporation RRD-B30M75/Printed in U. S. A.
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Inhaltsverzeichnis

Seite 1 - Sample/Hold

TL/H/12079ADC12130/ADC12132/ADC12138 Self-Calibrating 12-Bit Plus SignSerial I/O A/D Converters with MUX and Sample/HoldMarch 1995ADC12130/ADC12132/AD

Seite 2 - Ordering Information

AC Electrical Characteristics (Continued)TL/H/12079–5FIGURE 1a. Transfer CharacteristicTL/H/12079–6FIGURE 1b. Simplified Error Curve vs Output Code wi

Seite 3

AC Electrical Characteristics (Continued)TL/H/12079–7FIGURE 1c. Simplified Error Curve vs Output Code after Auto-Calibration CycleTL/H/12079–8FIGURE 2

Seite 4

Typical Performance CharacteristicsThe following curves apply for 12-bitasign mode after auto-calibration unless otherwise specified.vs Clock Frequenc

Seite 5 - Electrical Characteristics

Typical Performance CharacteristicsThe following curves apply for 12-bitasign mode after auto-calibration unless otherwise specified. (Continued)vs Te

Seite 6

Typical Dynamic Performance CharacteristicsThe following curves apply for 12-bitasign mode after auto-calibration unless otherwise specified.with 1 kH

Seite 7 - AC Electrical Characteristics

Typical Dynamic Performance CharacteristicsThe following curves apply for 12-bitasign mode after auto-calibration unless otherwise specified. (Continu

Seite 8

Test CircuitsDO ‘‘TRI-STATE’’ (t1H,t0H)TL/H/12079–13DO except ‘‘TRI-STATE’’TL/H/12079–14Leakage CurrentTL/H/12079–15Timing DiagramsDO Falling and Risi

Seite 9 - Figure 2

Timing Diagrams (Continued)DO Data Output Timing Using CSTL/H/12079–19DO Data Output Timing with CS Continuously LowTL/H/12079–20ADC12138 Auto Cal or

Seite 10 - (Continued)

Timing Diagrams (Continued)ADC12138 Read Data without Starting a Conversion Using CSTL/H/12079–22ADC12138 Read Data without Starting a Conversion with

Seite 11

Timing Diagrams (Continued)ADC12138 Conversion Using CSwith 16-Bit Digital Output FormatTL/H/12079–24ADC12138 Conversion with CS Continuously Low and

Seite 12 - TL/H/12079–9

Connection Diagrams16-Pin Dual-In-Line andWide Body SO PackagesTL/H/12079–2Top View20-Pin SSOP PackageTL/H/12079–47Top View28-Pin Dual-In-Line, SSOP a

Seite 13 - TL/H/12079–48

Timing Diagrams (Continued)ADC12138 Software Power Up/Down Using CSwith 16-Bit Digital Output FormatTL/H/12079–26ADC12138 Software Power Up/Down with

Seite 14 - TL/H/12079–11

Timing Diagrams (Continued)ADC12138 Hardware Power Up/DownTL/H/12079–28Note: Hardware power up/down may occur at any time. If PD is high while a conve

Seite 15 - TL/H/12079–12

Pin DescriptionsCCLK The clock applied to this input controls the suces-sive approximation conversion time interval andthe acquisition time. The rise

Seite 16 - Timing Diagrams

Pin Descriptions (Continued)VREFbThe negative voltage reference input. In orderto maintain accuracy, the voltage at this pinmust not go below GND or e

Seite 17 - Timing Diagrams (Continued)

TablesTABLE I. Data Out FormatsDO Formats DB0 DB1 DB2 DB3 DB4 DB5 DB6 DB7 DB8 DB9 DB10 DB11 DB12 DB13 DB14 DB15 DB16SignwithMSBFirst17X X X X Sign MSB

Seite 18

Tables (Continued)TABLE III. ADC12130 and ADC12132 Multiplexer AddressingAnalog Channel AddressedA/D InputMultiplexerModeMUX and AssignmentPolarityOut

Seite 19

Tables (Continued)TABLE VI. Status RegisterStatus BitDB0 DB1 DB2 DB3 DB4 DB5 DB6 DB7 DB8LocationStatus Bit PU PD Cal 12 or 13 16 or 17 Sign Justificat

Seite 20

Application Hints (Continued)it will expect to see 13 SCLK pulses for each I/O transmis-sion. The number of SCLK pulses that the ADC expects tosee is

Seite 21

Application Hints (Continued)1.6 User Mode and Test ModeAn instruction may be issued to the ADC to put it into testmode. Test mode is used by the manu

Seite 22 - Figure 4

Application Hints (Continued)With the single-ended multiplexer configuration CH0through CH7 can be assigned to the MUXOUT1 pin. TheCOM pin is always a

Seite 23

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

Seite 24 - High or Low state

Application Hints (Continued)For pseudo-differential signed operation, the biasing circuitshown inFigure 10shows a signal AC coupled to the ADC.This g

Seite 25 - Tables (Continued)

Application Hints (Continued)TL/H/12079–41FIGURE 12. Pseudo-Differential Biasing without the Loss of Digital Output RangeTL/H/12079–42FIGURE 13. Fully

Seite 26 - Application Hints

Application Hints (Continued)3.0 REFERENCE VOLTAGEThe difference in the voltages applied to the VREFaandVREFbdefines the analog input span (the differ

Seite 27 - Figure 6

Application Hints (Continued)6.0 INPUT SOURCE RESISTANCEFor low impedance voltage sources (k600X), the inputcharging current will decay, before the en

Seite 28 - Figure 7

Application Hints (Continued)11.0 CLOCK SIGNAL LINE ISOLATIONThe ADC12130/2/8’s performance is optimized by routingthe analog input/output and referen

Seite 29 - Figure 9

Application Hints (Continued)TL/H/12079–46Note: VAa,VDa, and VREFaon the ADC12138 each have 0.01 mF and 0.1 mF chip caps, and 10 mF tantalum caps. All

Seite 30 - Figure 13

Application Hints (Continued)’variables DOL4Data Out word length, DI4Data string for A/D DI input,’DO4A/D result string’SET CS# HIGHOUT &H3FC, (&a

Seite 31 - Application Hints (Continued)

Physical Dimensions inches (millimeters)Order Number ADC12130CIWMNS Package Number M16BOrder Number ADC12138CIWMNS Package Number M28B37

Seite 32 - Figure 15

Physical Dimensions inches (millimeters) (Continued)Order Number ADC12132CIMSANS Package Number MSA20Order Number ADC12138CIMSANS Package Number MSA28

Seite 33

Physical Dimensions inches (millimeters) (Continued)Order Number ADC12130CINNS Package Number N16E39

Seite 34

Converter Electrical CharacteristicsThe following specifications apply for (VaeVAaeVDaea5V, VREFaea4.096V, and fully differential input with fixed2.04

Seite 35

ADC12130/ADC12132/ADC12138 Self-Calibrating 12-Bit Plus SignSerial I/O A/D Converters with MUX and Sample/HoldPhysical Dimensions inches (millimeters)

Seite 36

Electrical CharacteristicsThe following specifications apply for (VaeVAaeVDaea5V, VREFaea4.096V, and fully differential input with fixed2.048V common-

Seite 37

DC and Logic Electrical CharacteristicsThe following specifications apply for (VaeVAaeVDaea5V, VREFaea4.096V, and fully-differential input with fixed2

Seite 38

AC Electrical CharacteristicsThe following specifications apply for (VaeVAaeVDaea5V, VREFaea4.096V, and fully-differential input with fixed2.048V comm

Seite 39 - NS Package Number N16E

AC Electrical CharacteristicsThe following specifications apply for (VaeVAaeVDaea5V, VREFaea4.096V, and fully-differential input with fixed2.048V comm

Seite 40

AC Electrical Characteristics (Continued)Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratin

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