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PDF ADS7813U Data sheet ( Hoja de datos )

Número de pieza ADS7813U
Descripción Low-Power/ Serial 16-Bit Sampling ANALOG-TO-DIGITAL CONVERTER
Fabricantes Burr-Brown Corporation 
Logotipo Burr-Brown Corporation Logotipo



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No Preview Available ! ADS7813U Hoja de datos, Descripción, Manual

® ADS7813
ADS7813
ADS7813
Low-Power, Serial 16-Bit Sampling
ANALOG-TO-DIGITAL CONVERTER
FEATURES
DESCRIPTION
q 20µs max CONVERSION TIME
q SINGLE +5V SUPPLY OPERATION
q PIN-COMPATIBLE WITH 12-BIT ADS7812
q EASY-TO-USE SERIAL INTERFACE
q 16-PIN 0.3" PLASTIC DIP AND SOIC
q ±2.0LSB max INL
q 87dB min SINAD
q USES INTERNAL OR EXTERNAL
REFERENCE
q MULTIPLE INPUT RANGES
q 35mW max POWER DISSIPATION
q NO MISSING CODES
q 50µW POWER DOWN MODE
APPLICATIONS
The ADS7813 is a low-power, single +5V supply, 16-
bit sampling analog-to-digital converter. It contains a
complete 16-bit capacitor-based SAR A/D with a
sample/hold, clock, reference, and serial data inter-
face.
The converter can be configured for a variety of input
ranges including ±10V, ±5V, 0V to 10V, and 0.5V to
4.5V. A high impedance 0.3V to 2.8V input range is
also available (input impedance > 10M). For most
input ranges, the input voltage can swing to +16.5V or
–16.5V without damage to the converter.
A flexible SPI compatible serial interface allows data
to be synchronized to an internal or external clock.
The ADS7813 is specified at a 40kHz sampling rate
over the –40°C to +85°C temperature range. It is
available in a 16-pin 0.3" plastic DIP or a 16-lead
SOIC package.
q MEDICAL INSTRUMENTATION
q DATA ACQUISITION SYSTEMS
q ROBOTICS
q INDUSTRIAL CONTROL
q TEST EQUIPMENT
q DIGITAL SIGNAL PROCESSING
q DSP SERVO CONTROL
BUSY
PWRD
CONV
CS
Successive Approximation Register and Control Logic
Clock
R1IN
R2IN
R3IN
BUF
CAP
REF
40k(1)
8k(1)
20k(1)
CDAC
Buffer
4k(1)
Internal
+2.5V Ref
Comparator
Serial
Data
Out
EXT/INT
DATACLK
DATA
NOTE: (1) Actual value may vary ±30%.
International Airport Industrial Park • Mailing Address: PO Box 11400, Tucson, AZ 85734 • Street Address: 6730 S. Tucson Blvd., Tucson, AZ 85706 • Tel: (520) 746-1111 • Twx: 910-952-1111
Internet: http://www.burr-brown.com/ • FAXLine: (800) 548-6133 (US/Canada Only) • Cable: BBRCORP • Telex: 066-6491 • FAX: (520) 889-1510 • Immediate Product Info: (800) 548-6132
©1997 Burr-Brown Corporation
PDS-11302A
APDrinSted7in8U1.S3.A. March, 1997
®

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ADS7813U pdf
TYPICAL PERFORMANCE CURVES
At TA = +25°C, fS = 40kHz, VS = +5V, ±10V input range, using internal reference, unless otherwise noted.
0
–20
–40
–60
–80
–100
–120
–140
0
FREQUENCY SPECTRUM
(8192 Point FFT; fIN = 980Hz, 0dB)
5 10 15
Frequency (kHz)
20
0
–20
–40
–60
–80
–100
–120
–140
0
FREQUENCY SPECTRUM
(8192 Point FFT; fIN = 9.8kHz, 0dB)
5 10 15
Frequency (kHz)
20
92
91
90
89
88
87
86
–50
SNR AND SINAD vs TEMPERATURE
(fIN = 1kHz, 0dB)
SNR
SINAD
–25 0
25 50 75
Temperature (°C)
100
106
105
104
103
102
101
100
–50
SFDR AND THD vs TEMPERATURE
(fIN = 1kHz, 0dB)
SFDR
THD
–25 0
25 50 75
Temperature (°C)
–106
–105
–104
–103
–102
–101
–100
100
90
89
88
87
86
85
84
83
100
SIGNAL-TO-(NOISE + DISTORTION)
vs INPUT FREQUENCY (fIN = 0dB)
1k
Input Signal Frequency (Hz)
10k 20k
2.515
2.510
2.505
2.500
2.495
2.490
2.485
–50
INTERNAL REFERENCE VOLTAGE
vs TEMPERATURE
–25 0
25 50 75
Temperature (°C)
100
®
5 ADS7813

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ADS7813U arduino
might be possible to use the rising edge of the DATACLK
signal. However, one extra clock period (not shown in
Figures 6, 7, and 8) is needed for the final bit.
The external DATACLK signal must be LOW or CS must
be HIGH prior to BUSY rising (see time t25 in Figures 7 and
8). If this is not observed during this time, the output shift
register of the ADS7813 will not be updated with the
conversion result. Instead, the previous contents of the shift
register will remain and the new result will be lost.
Before reading the next three paragraphs, consult the Sensi-
tivity to External Digital Signals section of this data sheet.
This will explain many of the concerns regarding how and
when to apply the external DATACLK signal.
External DATACLK Active After the Conversion
The preferred method of obtaining the conversion result is to
provide the DATACLK signal after the conversion has been
completed and before the next conversion starts—as shown
in Figure 6. Note that the DATACLK signal should be static
before the start of the next conversion. If this is not ob-
served, the DATACLK signal could affect the voltage that
is acquired.
External DATACLK Active During the Next Conversion
Another method of obtaining the conversion result is shown
in Figure 7. Since the output shift register is not updated
until the end of the conversion, the previous result remains
valid during the next conversion. If a fast clock (2MHz)
can be provided to the ADS7813, the result can be read
during time t2. During this time, the noise from the
DATACLK signal is less likely to affect the conversion
result.
CONV
t1
t2
BUSY
DATACLK
DATA
t24
t19
t20
t21
t23
1234
t22
MSB
Bit 14 Bit 13
15 16
Bit 1
LSB
t25
1
MSB
FIGURE 7. Serial Data Timing, External Clock, Clocking During the Next Conversion (EXT/INT HIGH,
CS LOW).
CONV
BUSY
DATACLK
t4
1
2
n
t5
t24
n+1 15 16
t25
DATA
MSB
Bit 14
Bit n
Bit n-1 Bit 1
LSB
FIGURE 8. Serial Data Timing, External Clock, Clocking After the Conversion Completes and During the Next Conversion
(EXT/INT HIGH, CS LOW).
®
11 ADS7813

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