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MAX11128ATI/V+ PDF预览

MAX11128ATI/V+

更新时间: 2024-01-04 12:49:09
品牌 Logo 应用领域
美信 - MAXIM /
页数 文件大小 规格书
40页 1886K
描述
1Msps, Low-Power, Serial 12-/10-/8-Bit, 4-/8-/16-Channel ADCs

MAX11128ATI/V+ 数据手册

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EVALUATION KIT AVAILABLE  
Click here for production status of specific part numbers.  
MAX11120–MAX11128  
1Msps, Low-Power, Serial 12-/10-/8-Bit,  
4-/8-/16-Channel ADCs  
General Description  
Benefits and Features  
Scan Modes, Internal Averaging, and Internal Clock  
16-Entry First-In/First-Out (FIFO)  
SampleSet: User-Defined Channel Sequence with  
Maximum Length of 256  
Analog Multiplexer with True Differential Track/Hold  
• 16-/8-/4-Channel Single-Ended  
8-/4-/2-Channel Fully-Differential Pairs  
15-/8-/4-Channel Pseudo-Differential Relative to a  
Common Input  
Two Software-Selectable Bipolar Input Ranges  
The MAX11120–MAX11128 are 12-/10-/8-bit with external  
reference and industry-leading 1.5MHz, full linear band-  
width, high speed, low-power, serial output successive-  
approximation register (SAR) analog-to-digital converters  
(ADCs). The MAX11120–MAX11128 include both internal  
and external clock modes. These devices feature scan  
mode in both internal and external clock modes. The inter-  
nal clock mode features internal averaging to increase  
SNR. The external clock mode features the SampleSet™  
technology, a user-programmable analog input channel  
sequencer. The SampleSet approach provides greater  
sequencing flexibility for multichannel applications while  
alleviating significant microcontroller or DSP (controlling  
unit) communication overhead.  
• ±V  
/2, ±V  
REF+  
REF+  
Flexible Input Configuration Across All Channels  
High Accuracy  
The internal clock mode features an integrated FIFO  
allowing data to be sampled at high speeds and then held  
for readout at any time or at a lower clock rate. Internal  
averaging is also supported in this mode improving SNR  
for noisy input signals. The devices feature analog input  
channels that can be configured to be single-ended  
inputs, fully differential pairs, or pseudo-differential inputs  
with respect to one common input. The MAX11120–  
MAX11128 operate from a 2.35V to 3.6V supply and  
consume only 5.4mW at 1Msps.  
• ±1 LSB INL, ±1 LSB DNL, No Missing Codes  
Over Temperature Range  
70dB SINAD Guaranteed at 250kHz Input Frequency  
1.5V to 3.6V Wide Range I/O Supply  
• Allows the Serial Interface to Connect Directly to  
1.8V, 2.5V, or 3.3V Digital Systems  
2.35V to 3.6V Supply Voltage  
Longer Battery Life for Portable Applications  
• Low Power  
• 5.4mW at 1Msps with 3V Supplies  
2μA Full-Shutdown Current  
The MAX11120–MAX11128 include AutoShutdown™, fast  
wake-up, and a high-speed 3-wire serial interface. The  
devices feature full power-down mode for optimal power  
management.  
External Differential Reference (1V to V  
)
DD  
16MHz, 3-Wire SPI-/QSPI-/MICROWIRE-/DSP-  
Compatible Serial Interface  
Wide -40°C to +125°C Operation  
The 16MHz, 3-wire serial interface directly connects to  
SPI, QSPI™, and MICROWIRE devices without external  
®
Space-Saving, 28-Pin, 5mm x 5mm TQFN Packages  
1Msps Conversion Rate, No Pipeline Delay  
12-/10-/8-Bit Resolution  
logic.  
Excellent dynamic performance, low voltage, low power,  
ease of use, and small package size make these convert-  
ers ideal for portable battery-powered data-acquisition  
applications, and for other applications that demand low  
power consumption and small space.  
AECQ-100 Qualified Variant Available (MAX11128ATI/V+)  
Applications  
High-Speed Data Acquisition Systems  
High-Speed Closed-Loop Systems  
Industrial Control Systems  
Medical Instrumentation  
The MAX11120–MAX11128 are available in 28-pin, 5mm  
x 5mm, TQFN packages and operate over the -40°C to  
+125°C temperature range.  
Battery-Powered Instruments  
Portable Systems  
SampleSet and AutoShutdown are trademarks of Maxim  
Integrated Products, Inc.  
QSPI is a trademark of Motorola, Inc.  
MICROWIRE is a registered trademark of National  
Semiconductor Corporation.  
Ordering Information appears at end of data sheet.  
19-6148; Rev 4; 2/19  

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