AD7641 Analog Devices, AD7641 Datasheet

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AD7641

Manufacturer Part Number
AD7641
Description
18-Bit, 2 MSPS SAR ADC
Manufacturer
Analog Devices
Datasheet

Specifications of AD7641

Resolution (bits)
18bit
# Chan
1
Sample Rate
2MSPS
Interface
Byte,Par,Ser,SPI
Analog Input Type
Diff-Bip
Ain Range
(2Vref) p-p
Adc Architecture
SAR
Pkg Type
CSP,QFP

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD7641BSTZ
Manufacturer:
ADI
Quantity:
266
Part Number:
AD7641BSTZ
Manufacturer:
Analog Devices Inc
Quantity:
10 000
Part Number:
AD7641BSTZRL
Manufacturer:
Analog Devices Inc
Quantity:
10 000
FEATURES
Throughput
INL: ±2 LSB typical, ±3 LSB max; ±8 ppm of full scale
18-bit resolution with no missing codes
Dynamic range: 95.5 dB
SNR: 93.5 dB typical @ 20 kHz (V
THD: −112 dB typical @ 20 kHz (V
2.048 V internal reference: typ drift 10 ppm/°C; TEMP output
Differential input range: ±V
No pipeline delay (SAR architecture)
Parallel (18-, 16-, or 8-bit bus) and
SPI®/QSPI™/MICROWIRE™/DSP compatible
Single 2.5 V supply operation
Power dissipation
Pb-free, 48-lead LQFP and 48-lead LFCSP_VQ
Speed upgrade of the AD7674, AD7678,
APPLICATIONS
Medical instruments
High speed data acquisition/high dynamic data acquisition
Digital signal processing
Spectrum analysis
Instrumentation
Communications
ATE
GENERAL DESCRIPTION
The AD7641 is an 18-bit, 2 MSPS, charge redistribution SAR,
fully differential, analog-to-digital converter (ADC) that
operates from a single 2.5 V power supply. The part contains a
high speed, 18-bit sampling ADC, an internal conversion clock,
an internal reference (and buffer), error correction circuits, and
both serial and parallel system interface ports. It features two
very high sampling rate modes (wideband warp and warp) and
a fast mode (normal) for asynchronous rate applications. The
AD7641 is hardware factory calibrated and tested to ensure ac
parameters, such as signal-to-noise ratio (SNR), in addition to
the more traditional dc parameters of gain, offset, and linearity.
The AD7641 is available in Pb-free only packages with
operation specified from −40°C to +85°C.
Rev. 0
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarks and registered trademarks are the property of their respective owners.
2 MSPS (wideband warp and warp mode)
1.5 MSPS (normal mode)
serial 5 V/3.3 V/2.5 V interface
75 mW typical @ 2 MSPS with internal REF
2 μW in power-down mode
REF
(V
REF
REF
REF
= 2.5 V)
up to 2.5 V)
= 2.5 V)
AD7679
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
PDREF
PDBUF
Table 1. PulSAR® Selection
Type/kSPS
Pseudo
Differential
True Bipolar
True
Differential
18-Bit
Multichannel/
Simultaneous
PRODUCT HIGHLIGHTS
1.
2.
3.
4.
5.
RESET
AGND
AVDD
IN+
IN–
PD
Fast Throughput.
The AD7641 is a 2 MSPS, charge redistribution,
18-bit SAR ADC.
Superior Linearity.
The AD7641 has no missing 18-bit code.
Internal Reference.
The AD7641 has a 2.048 V internal reference with a typical
drift of ±10 ppm/°C and an on
Single-Supply Operation.
The AD7641 operates from a
Serial or Parallel Interface.
Versatile parallel (16- or 8-bit bus) or 2-wire serial interf
arrangement compatible with 2.5 V, 3.3 V, or 5 V logic.
TEMP
REF
CALIBRATION CIRCUITRY
WARP
REFBUFIN
CONTROL LOGIC AND
FUNCTIONAL BLOCK DIAGRAM
18-Bit, 2 MSPS SAR ADC
REF AMP
100 to
250
AD7651,
AD7660,
AD7661
AD7610,
AD7663
AD7675
AD7631,
AD7678
SWITCHED
NORMAL
CAP DAC
REF REFGND
©2006 Analog Devices, Inc. All rights reserved.
CLOCK
CNVST
Figure 1.
500 to
570
AD7650,
AD7652,
AD7664,
AD7666
AD7665
AD7676
AD7679
AD7654
AD7641
2.5 V single supply.
-chip TEMP sensor.
INTERFACE
PARALLEL
SERIAL
DVDD
650 to
1000
AD7653,
AD7667
AD7612,
AD7671
AD7677
AD7634,
AD7674
AD7655
PORT
AD7641
www.analog.com
DGND
18
>1000
AD7621,
AD7622,
AD7623
AD7641,
AD7643
OVDD
OGND
D[17:0]
MODE0
MODE1
BUSY
RD
CS
D0/OB/2C
ace

Related parts for AD7641

AD7641 Summary of contents

Page 1

... The AD7641 MSPS, charge redistribution, 18-bit SAR ADC. 2. Superior Linearity. The AD7641 has no missing 18-bit code. 3. Internal Reference. The AD7641 has a 2.048 V internal reference with a typical drift of ±10 ppm/°C and Single-Supply Operation. The AD7641 operates from a 5. Serial or Parallel Interface. ...

Page 2

... Multiplexed Inputs ..................................................................... 17 Driver Amplifier Choice ........................................................... 17 Voltage Reference Input ............................................................ 18 Power Supply............................................................................... 20 Conversion Control ................................................................... 20 Interfaces.......................................................................................... 21 Digital Interface.......................................................................... 21 Parallel Interface......................................................................... 21 Serial interface ............................................................................ 22 Master Serial Interface............................................................... 22 Slave Serial Interface .................................................................. 24 Microprocessor Interfacing....................................................... 26 Application Hints ........................................................................... 27 Layout .......................................................................................... 27 Evaluating the AD7641 Performance ...................................... 27 Outline Dimensions ....................................................................... 28 Ordering Guide .......................................................................... 28 Rev Page ...

Page 3

... AD7641 Unit Bits μA ns MSPS ms ns MSPS 4 LSB 4 LSB Bits LSB LSB LSB LSB ppm/° FSR ppm/°C LSB ...

Page 4

... AD7641 Parameter Turn-On Settling Time REFBUFIN Output Voltage REFBUFIN Output Resistance EXTERNAL REFERENCE Voltage Range Current Drain REFERENCE BUFFER REFBUFIN Input Voltage Range REFBUFIN Input Current TEMPERATURE PIN Voltage Output Temperature Sensitivity Output Resistance DIGITAL INPUTS Logic Levels ...

Page 5

... See Table 383/500 12 pF; otherwise, the load maximum. L AD7641 Max Unit 385/520 385/520 385/520 ...

Page 6

... AD7641 Table 4. Serial Clock Timings in Master Read After Convert Mode DIVSCLK[1] DIVSCLK[0] SYNC to SCLK First Edge Delay Minimum Internal SCLK Period Minimum Internal SCLK Period Maximum Internal SCLK High Minimum Internal SCLK Low Minimum SDOUT Valid Setup Time Minimum SDOUT Valid Hold Time Minimum ...

Page 7

... Specification is for the device in free air: −0 +5.5 V 48-Lead LQFP; θ 4 Specification is for the device in free air: ±20 mA 48-Lead LFCSP; θ 700 mW 2.5 W 125°C –65°C to +125°C Rev Page AD7641 = 91°C/W, θ = 30°C/ 26°C/W. JA ...

Page 8

... RDC/SDIN = low), these inputs can be used to slow down the internally generated serial clock that clocks the data output. In other serial modes, these pins are high impedance outputs AGND 1 PIN 1 AVDD IDENTIFIER 2 MODE0 3 MODE1 4 D0/OB/2C 5 AD7641 WARP 6 TOP VIEW NORMAL 7 (Not to Scale) D1/A0 8 D2/ D4/DIVSCLK[0] 11 D5/DIVSCLK[1] 12 ...

Page 9

... When MODE[1: (serial mode), serial data output. In serial mode, this pin is used as the serial data output synchronized to SCLK. Conversion results are stored in an on-chip register. The AD7641 provides the conversion result, MSB first, from its internal shift register. The data format is determined by the logic level of OB/2C ...

Page 10

... CS is also used to gate the external clock in slave serial mode. 33 RESET DI Reset Input. When high, resets the AD7641. Current conversion, if any, is aborted. Falling edge of RESET enables the calibration mode indicated by pulsing BUSY high. Refer to the Digital Interface section. If not used, this pin can be tied to DGND. 34 ...

Page 11

... CNVST input to when the input signal is held for a conversion. Transient Response The time required for the AD7641 to achieve its rated accuracy after a full-scale step function is applied to its input. Reference Voltage Temperature Coefficient It is derived from the typical shift of output voltage at 25° ...

Page 12

... AD7641 TYPICAL PERFORMANCE CHARACTERISTICS 3.0 2.5 2.0 1.5 1.0 0.5 0 –0.5 –1.0 –1.5 –2.0 –2.5 –3.0 0 65536 131072 CODE Figure 5. Integral Nonlinearity vs. Code 40000 34844 35000 31003 30000 25000 20000 15000 10938 10000 4730 5000 683 272 0 CODE IN HEX Figure 6. Histogram of 261,120 Conversions Input at the Code Center (External Reference) 2 ...

Page 13

... Figure 16. THD, Harmonics, and SFDR vs. Temperature Rev Page AD7641 f = 2MSPS 100.8kHz IN SNR = 93dB THD = –101dB SFDR = 101dB SINAD = 92.5dB 100 200 300 400 500 600 700 800 FREQUENCY (kHz) Figure 14 ...

Page 14

... AD7641 96.0 95.5 95.0 SNR 94.5 SINAD 94.0 93.5 93.0 –60 –50 –40 –30 INPUT LEVEL (dB) Figure 17. SNR and SINAD vs. Input Level (Referred to Full Scale –55 –35 – TEMPERATURE (°C) Figure 18. Power-Down Operating Currents vs. Temperature –20 –10 0 DVDD OVDD, 3.3V OVDD, 2.5V AVDD 65 85 105 125 Rev ...

Page 15

... ADC that does not exhibit any pipeline or latency, making it ideal for multiple multiplexed channel applications. The AD7641 can operate from a single 2.5 V supply and interface to either 2.5 V digital logic housed in a 48-lead LQFP package or a tiny 48-lead LFCSP package, ...

Page 16

... AD7641 TRANSFER FUNCTIONS Using the OB/ 2C digital input, except in 18-bit interface mode, the AD7641 offers two output codings: straight binary and twos complement. The LSB size with V = 2.048 × V REF 262,144, which is 15.623 μV. Refer to Figure 22 and Table 8 for the ideal transfer characteristic. ...

Page 17

... MHz, thereby reducing an undesirable aliasing effect and limiting the noise coming from the inputs. Because the input impedance of the AD7641 is very high, the AD7641 can be directly driven by a low impedance source without gain error. To further improve the noise filtering achieved by the AD7641 analog input circuit, an external 1-pole RC filter between the amplifier’ ...

Page 18

... ANALOG INPUT (UNIPOLAR 0V TO 2.048V) VOLTAGE REFERENCE INPUT The AD7641 allows the choice of either a very low temperature drift internal voltage reference or an external reference. Unlike many ADCs with internal references, the internal reference of the AD7641 provides excellent performance and Figure 23, can be used in almost all applications ...

Page 19

... V increase the range 2.8 V with an AVDD = 2.7 V. Temperature Sensor The TEMP pin measures the temperature of the AD7641. To improve the calibration accuracy over the temperature range, the output of the TEMP pin is applied to one of the inputs of the analog switch (such as, used to measure its own temperature ...

Page 20

... To reduce the operating digital supply currents even further, drive the digital inputs close to the power rails (that is, OVDD and OGND). CONVERSION CONTROL The AD7641 is controlled by the CNVST input. A falling edge on CNVST is all that is necessary to initiate a conversion. Detailed timing diagrams of the conversion process are shown in Figure 29 ...

Page 21

... INTERFACES DIGITAL INTERFACE The AD7641 has a versatile digital interface that can be set up as either a serial or a parallel interface with the host system. The serial interface is multiplexed on the parallel data bus. The AD7641 digital interface also accommodates 2 logic with either OVDD at 2 3.3 V. OVDD defines the logic high output voltage ...

Page 22

... Figure 34. 8-Bit and 16-Bit Parallel Interface SERIAL INTERFACE The AD7641 is configured to use the serial interface when MODE[1: The AD7641 outputs 18 bits of data, MSB first, on the SDOUT pin. This data is synchronized with the 18 clock pulses provided on the SCLK pin. The output data is valid on 4 both the rising and falling edge of the data clock ...

Page 23

... Figure 36. Master Serial Data Timing for Reading (Read Previous Conversion During Convert) INVSCLK = INVSYNC = 0 DIVSCLK[1: RDC/SDIN = D16 RDC/SDIN = 1 INVSCLK = INVSYNC = D16 Rev Page AD7641 ...

Page 24

... Figure 38 and Figure 39 show the detailed timing diagrams of these methods. While the AD7641 is performing a bit decision important that voltage transients be avoided on digital input/output pins or degradation of the conversion result could occur. This is particularly important during the second half of the conversion ...

Page 25

... SDOUT X D17 D16 t 16 Figure 39. Slave Serial Data Timing for Reading (Read Previous Conversion During Convert INVSCLK = D15 D1 D0 X15 INVSCLK = D15 D2 D0 Rev Page AD7641 20 X17 X16 Y17 Y16 ...

Page 26

... Figure 40 shows an interface diagram between the AD7641 and an SPI-equipped DSP, the ADSP-219x. To accommodate the slower speed of the DSP, the AD7641 acts as a slave device and data must be read after conversion. This mode also allows the daisy-chain feature. The convert command can be initiated in response to an internal timer interrupt ...

Page 27

... Digital and analog ground planes should be joined in only one place, preferably underneath the AD7641 close as possible to the AD7641. If the AD7641 system where multiple devices require analog-to-digital ground connections, the connections should still be made at one point only, a star ground point, established as close as possible to the AD7641 ...

Page 28

... AD7641BCPZ −40°C to +85°C 1 AD7641BCPZRL −40°C to +85°C 1 AD7641BSTZ −40°C to +85°C 1 AD7641BSTZRL −40°C to +85°C 2 EVAL-AD7641CB 3 EVAL-CONTROLBRD3 Pb-free part. 2 This board can be used as a standalone evaluation board or in conjunction with the EVAL-CONTROL BRD3 for evaluation/demonstration purposes. ...

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