MAX11156

PRODUCTION

18-Bit, 500ksps, ±5V SAR ADC with Internal Reference in TDFN

Industry's Smallest, True Bipolar ±5V, 18-Bit ADC

Part Models
2
1ku List Price
Starting From $22.15
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Part Details

  • High DC/AC Accuracy Improves Measurement Quality
    • 18-Bit Resolution with No Missing Codes
    • 500ksps Throughput Rates without Pipeline Delay/Latency
    • 94.6dB SNR and -101.4dB THD at 10kHz
    • 1.6 LSBRMS Transition Noise
    • ±0.5 LSB DNL (typ) and ±2.8 LSB INL (typ)
  • Highly Integrated ADC Saves Cost and Space
    • 6ppm/°C Internal Reference
    • Internal Reference Buffer
    • ±5V Bipolar Analog Input Range
  • Wide Supply Range and Low Power Simplify Power-Supply Design
    • 5V Analog Supply
    • 2.3V to 5V Digital Supply
    • 25.8mW Power Consumption at 500ksps
    • 10µA in Shutdown Mode
  • Multi-Industry Standard Serial Interface and Small Package Reduce Size
    • SPI/QSPI™/MICROWIRE®/DSP-Compatible Serial Interface
    • 3mm x 3mm Tiny 12-Pin TDFN Package
MAX11156
18-Bit, 500ksps, ±5V SAR ADC with Internal Reference in TDFN
MAX11156: Typical Operating Circuit
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Documentation

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Hardware Ecosystem

Parts Product Life Cycle Description
Product 1
MAX11166 16-Bit, 500ksps, ±5V SAR ADC with Internal Reference in TDFN
Single Channel A/D Converters 1
MAX11167 PRODUCTION 16-Bit, 250ksps, ±5V SAR ADC with Internal Reference in TDFN
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Tools & Simulations


Evaluation Kits

MAX11156EVSYS

Evaluation System for the MAX11156

Features and Benefits

  • Windows XP-, Windows Vista-, and Windows 7-Compatible Software
  • High-Speed USB Interface
  • Various Sample Sizes and Sample Rates
  • Time Domain, Frequency Domain, and Histogram Plotting
  • Collects Up to 1 Mega Samples
  • Frequency, RMS, MIN, MAX, and Average DC Calculations
  • On-Board Voltage Reference
  • 40MHz SPI Interface
  • RoHS Compliant
  • Proven PCB Layout
  • Fully Assembled and Tested

Product Details

The MAX11156 evaluation system (EV system) includes a mother board and daughter board to evaluate the MAX11156 18-bit ADC. The EV system includes a simple graphical user interface (GUI) for exercising the features of the IC. This GUI is compatible with Windows XP®-, Windows Vista®-, and Windows® 7. The EV system GUI allows different sample sizes, adjustable sampling rates, internal or external reference options, and graphing software that includes the following representations of the sampled signals: time domain, frequency domain, histogram, and single conversion.
The EV system is made up of the MAXPRECADCMB mother board with an on-board Altera FPGA and the daughter board for evaluating the IC. The mother board plugs into the PC through a high-speed USB link to send SPI commands through the GUI. The mother board accepts a 5V supply. The daughter board accepts ±15V supplies.
The daughter board comes installed with a MAX11156ETC+ in a 12-pin TDFN-EP package.

Applications

  • Automatic Test Equipment
  • Data Acquisition Systems
  • Industrial Control Systems/Process Control
  • Medical Instrumentation
  • Narrow Band Receiver

MAX11156EVSYS
Evaluation System for the MAX11156

Reference Designs

MAXREFDES74
MAXREFDES74 Circuits from the lab

MAXREFDES74: 18-Bit Precision Data Acquisition System

Features and Benefits

The MAXREFDES74# reference design features:

  • Power and data isolation
  • Flexible, configurable inverting or noninverting input scheme
  • Unipolar or bipolar input (ADC) and output (DAC)

MAX11156

  • 18-bit resolution with no missing codes
  • SNR: 94.4dB
  • THD: -107dB at 1kHz
  • Buffered internal or external voltage reference input
  • Internal reference with -6ppm/°C (typ) temperature coefficient
  • Single 5V supply
  • True bipolar ±5V input range

MAX5318

  • 18-bit resolution with no missing codes
  • High accuracy: ±2 LSB INL (max)
  • 3µs settling time
  • User-programmable offset and gain calibration
  • ±0.5ppm/°C (typ) offset and gain drift over temperature
  • Force/sense output
  • 50MHz SPI-compatible interface with 1.8V to 5.5V logic
MAXREFDES74
MAXREFDES74: 18-Bit Precision Data Acquisition System
MAXREFDES74

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