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AD7490BRU-REEL7 PDF预览

AD7490BRU-REEL7

更新时间: 2024-12-01 12:27:15
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亚德诺 - ADI /
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28页 673K
描述
16-Channel, 1 MSPS, 12-Bit ADC with Sequencer in 28-Lead TSSOP

AD7490BRU-REEL7 数据手册

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16-Channel, 1 MSPS, 12-Bit ADC  
with Sequencer in 28-Lead TSSOP  
Data Sheet  
AD7490  
FEATURES  
FUNCTIONAL BLOCK DIAGRAM  
V
DD  
Fast throughput rate: 1 MSPS  
Specified for VDD of 2.7 V to 5.25 V  
AD7490  
REF  
V
IN  
0
Low power at maximum throughput rates  
5.4 mW maximum at 870 kSPS with 3 V supplies  
12.5 mW maximum at 1 MSPS with 5 V supplies  
16 (single-ended) inputs with sequencer  
Wide input bandwidth  
12-BIT  
SUCCESSIVE  
APPROXIMATION  
ADC  
T/H  
IN  
INPUT  
MUX  
69.5 dB SNR at 50 kHz input frequency  
Flexible power/serial clock speed management  
No pipeline delays  
High speed serial interface, SPI/QSPI™/MICROWIRE™/  
DSP compatible  
V
15  
IN  
SCLK  
DOUT  
DIN  
CONTROL  
LOGIC  
SEQUENCER  
CS  
Full shutdown mode: 0.5 µA maximum  
28-lead TSSOP and 32-lead LFCSP packages  
V
DRIVE  
AGND  
Figure 1.  
GENERAL DESCRIPTION  
The AD7490 is a 12-bit high speed, low power, 16-channel,  
successive approximation ADC. The part operates from a single  
2.7 V to 5.25 V power supply and features throughput rates up  
to 1 MSPS. The part contains a low noise, wide bandwidth  
track-and-hold amplifier that can handle input frequencies in  
excess of 1 MHz.  
frequency because this is also used as the master clock to  
control the conversion.  
The AD7490 is available in a 32-lead LFCSP and a 28-lead  
TSSOP package.  
PRODUCT HIGHLIGHTS  
1. The AD7490 offers up to 1 MSPS throughput rates. At  
maximum throughput with 3 V supplies, the AD7490  
dissipates just 5.4 mW of power.  
The conversion process and data acquisition are controlled  
CS  
using  
and the serial clock signal, allowing the device to  
easily interface with microprocessors or DSPs. The input signal  
2. A sequence of channels can be selected, through which the  
CS  
is sampled on the falling edge of , and conversion is also  
AD7490 cycles and converts.  
initiated at this point. There are no pipeline delays associated  
with the part.  
3. The AD7490 operates from a single 2.7 V to 5.25 V supply.  
The VDRIVE function allows the serial interface to connect  
directly to either 3 V or 5 V processor systems independent  
The AD7490 uses advanced design techniques to achieve very  
low power dissipation at high throughput rates. For maximum  
throughput rates, the AD7490 consumes just 1.8 mA with 3 V  
supplies, and 2.5 mA with 5 V supplies.  
of VDD  
.
4. The conversion rate is determined by the serial clock,  
allowing the conversion time to be reduced through the  
serial clock speed increase. The part also features various  
shutdown modes to maximize power efficiency at lower  
throughput rates. Power consumption is 0.5 µA, maximum,  
when in full shutdown.  
By setting the relevant bits in the control register, the analog  
input range for the part can be selected to be a 0 V to REFIN  
input or a 0 V to 2 × REFIN input, with either straight binary  
or twos complement output coding. The AD7490 features 16  
single-ended analog inputs with a channel sequencer to allow a  
preprogrammed selection of channels to be converted sequen-  
tially. The conversion time is determined by the SCLK  
5. The part features a standard successive approximation  
CS  
ADC with accurate control of the sampling instant via a  
input and once off conversion control.  
Rev. D  
Document Feedback  
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.  
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.  
Tel: 781.329.4700 ©2002–2012 Analog Devices, Inc. All rights reserved.  
Technical Support  
www.analog.com  
 
 
 
 

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