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ADS1602IPFBTG4 PDF预览

ADS1602IPFBTG4

更新时间: 2024-09-17 22:11:59
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26页 395K
描述
16-Bit, 2.5MSPS Analog-to-Digital Converter

ADS1602IPFBTG4 数据手册

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ADS1602  
SBAS341B − DECEMBER 2004 − REVISED APRIL 2005  
16-Bit, 2.5MSPS  
Analog-to-Digital Converter  
FEATURES  
DESCRIPTION  
The ADS1602 is  
delta-sigma analog-to-digital  
a
high-speed, high-precision,  
converter (ADC)  
D
High Speed:  
Data Rate: 2.5MSPS  
Bandwidth: 1.23MHz  
manufactured on an advanced CMOS process. The  
ADS1602 oversampling topology reduces clock jitter  
sensitivity during the sampling of high-frequency, large  
amplitude signals by a factor of four over that achieved by  
Nyquist-rate ADCs. Consequently, signal-to-noise ratio  
(SNR) is particularly improved. Total harmonic distortion  
(THD) is −101dB, and the spurious-free dynamic range  
(SFDR) is 103dB.  
D
Outstanding Performance:  
SNR: 91dB at f = 100kHz, −1dBFS  
THD: −101dB at f = 100kHz, −6dBFS  
SFDR: 103dB at f = 100kHz, −6dBFS  
IN  
IN  
IN  
D
Ease-of-Use:  
High-Speed 3-Wire Serial Interface  
Directly Connects to TMS320 DSPs  
On-Chip Digital Filter Simplifies Anti-Alias  
Requirements  
Simple Pin-Driven Control—No On-Chip  
Registers to Program  
Selectable On-Chip Voltage Reference  
Simultaneous Sampling with Multiple  
ADS1602s  
Optimized for power and performance, the ADS1602  
dissipates only 530mW while providing a full-scale  
differential input range of 3V. Having such a wide input  
range makes out-of-range signals unlikely. The OTR pin  
indicates if an analog input out-of-range condition does  
occur. The differential input signal is measured against the  
differential reference, which can be generated internally or  
supplied externally on the ADS1602.  
D
Low Power:  
The ADS1602 uses an inherently stable advanced  
modulator with an on-chip decimation filter. The filter stop  
band extends to 38.6MHz, which greatly simplifies the  
anti-aliasing circuitry. The modulator samples the input  
signal up to 40MSPS, depending on fCLK, while the 16x  
decimation filter uses a series of four half-band FIR filter  
stages to provide 75dB of stop band attenuation and  
0.001dB of passband ripple.  
530mW at 2.5MSPS  
Power-Down Mode  
APPLICATIONS  
D
D
D
Sonar  
Vibration Analysis  
Data Acquisition  
Output data is provided over a simple 3-wire serial  
interface at rates up to 2.5MSPS, with a −3dB bandwidth  
of 1.23MHz. The output data or its complementary format  
directly connects to DSPs such as TI’s TMS320 family,  
FPGAs, or ASICs. A dedicated synchronization pin  
enables simultaneous sampling with multiple ADS1602s  
in multi-channel systems. Power dissipation is set by an  
external resistor that allows a reduction in dissipation  
when operating at slower speeds. All of the ADS1602  
features are controlled by dedicated I/O pins, which  
simplify operation by eliminating the need for on-chip  
registers.  
VREFP VREFN VMID RBIAS VCAP AVDD  
Reference and Bias Circuits  
DVDD  
IOVDD  
CLK  
SYNC  
FSO  
FSO  
SCLK  
SCLK  
Serial  
Interface  
AINP  
AINN  
∆Σ  
Modulator  
Linear Phase  
FIR Digital Filter  
DOUT  
DOUT  
OTR  
PD  
ADS1602  
REFEN  
The high performing, easy-to-use ADS1602 is especially  
suitable for demanding measurement applications in  
sonar, vibration analysis, and data acquisition. The  
ADS1602 is offered in a small, 7mm x 7mm TQFP-48  
package and is specified from −40°C to +85°C.  
AGND  
DGND  
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments  
semiconductor products and disclaimers thereto appears at the end of this data sheet.  
All other trademarks are the property of their respective owners.  
ꢀꢁ ꢂ ꢃꢄ ꢅ ꢆꢇ ꢂꢈ ꢃ ꢉꢆꢉ ꢊꢋ ꢌꢍ ꢎ ꢏꢐ ꢑꢊꢍꢋ ꢊꢒ ꢓꢔ ꢎ ꢎ ꢕꢋꢑ ꢐꢒ ꢍꢌ ꢖꢔꢗ ꢘꢊꢓ ꢐꢑꢊ ꢍꢋ ꢙꢐ ꢑꢕꢚ ꢀꢎ ꢍꢙꢔ ꢓꢑꢒ  
ꢓ ꢍꢋ ꢌꢍꢎ ꢏ ꢑꢍ ꢒ ꢖꢕ ꢓ ꢊ ꢌꢊ ꢓ ꢐ ꢑꢊ ꢍꢋꢒ ꢖ ꢕꢎ ꢑꢛꢕ ꢑꢕ ꢎ ꢏꢒ ꢍꢌ ꢆꢕꢜ ꢐꢒ ꢇꢋꢒ ꢑꢎ ꢔꢏ ꢕꢋꢑ ꢒ ꢒꢑ ꢐꢋꢙ ꢐꢎ ꢙ ꢝ ꢐꢎ ꢎ ꢐ ꢋꢑꢞꢚ  
ꢀꢎ ꢍ ꢙꢔꢓ ꢑ ꢊꢍ ꢋ ꢖꢎ ꢍ ꢓ ꢕ ꢒ ꢒ ꢊꢋ ꢟ ꢙꢍ ꢕ ꢒ ꢋꢍꢑ ꢋꢕ ꢓꢕ ꢒꢒ ꢐꢎ ꢊꢘ ꢞ ꢊꢋꢓ ꢘꢔꢙ ꢕ ꢑꢕ ꢒꢑꢊ ꢋꢟ ꢍꢌ ꢐꢘ ꢘ ꢖꢐ ꢎ ꢐꢏ ꢕꢑꢕ ꢎ ꢒꢚ  
Copyright 2004−2005, Texas Instruments Incorporated  
www.ti.com  

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