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Data Acquisition - Digital Potentiometers
Data Acquisition - Digital Potentiometers

Data Acquisition - Digital Potentiometers

Definition:
Digital Potentiometers, often referred to as "digipots," are integrated circuits (ICs) designed to emulate the functionality of traditional mechanical potentiometers but with digital control. These devices provide variable resistance through electronic signals, enabling precise adjustment of voltage division, current control, or signal attenuation in a circuit. As a key component in data acquisition systems, digital potentiometers offer enhanced accuracy, programmability, and reliability compared to their analog counterparts.

Types of Digital Potentiometers:
1. Volatile vs. Non-Volatile:
- Volatile Digipots lose their settings when power is removed, suitable for dynamic applications requiring frequent adjustments.
- Non-Volatile Digipots retain settings after power-off, ideal for preset configurations or memory-critical systems.

  1. Interface Types:

    • I2C/SPI-Compatible: Enable serial communication for microcontroller-based designs.
    • Up/Down Interface: Simple pulse-controlled adjustment for basic applications.
  2. Resolution & Channels:

    • Ranging from 6-bit to 10-bit resolution for fine-tuning precision.
    • Single, dual, or quad-channel options to support multi-circuit control.

Purchasing Recommendations:
- Match Resolution to Application: Higher bit counts (e.g., 10-bit) are critical for sensitive analog signal processing, while 6-8 bits suffice for general-purpose use.
- Consider Endurance: For frequently adjusted systems, select digipots with high write-cycle ratings (e.g., >50,000 cycles).
- Verify Voltage Compatibility: Ensure the IC s operating voltage range aligns with your circuit s requirements (e.g., 3.3V, 5V, or 15V).
- Package Size: SMD packages (e.g., TSSOP, QFN) save space in compact designs, while DIP options simplify prototyping.

Digital potentiometers bridge analog flexibility with digital precision, making them indispensable for audio equipment, sensor calibration, and automated test systems. Evaluate technical specs against your design s needs to optimize performance and cost-efficiency.

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TPL0401A-10QDCKRQ1

IC DGTL POT 10KOHM 128TAP SC70-6


MCP4431T-104E/ST

IC DGT POT 100KOHM 129TP 20TSSOP


X9317UV8IZ

IC DGTL POT 50KOHM 100TAP 8TSSOP


AD8403ARU1

IC DGTL POT 1KOHM 256TAP 24TSSOP


MCP4132T-502E/SN

IC DGTL POT 5KOHM 129TAP 8SOIC


X9317ZV8I-2.7

DIGIPOT, 1000OHM, 100 PSTN


AD7376ARUZ50-REEL7

IC DGT POT 50KOHM 128TAP 14TSSOP


AD5144BRUZ100

IC DGT POT 100KOHM 256TP 20TSSOP


CAT5133ZI-10-GT3

IC DGTL POT 10KOHM 128TAP 10MSOP


MCP4152-103E/MS

IC DGTL POT 10KOHM 257TAP 8MSOP


ISL23348TFVZ-T7A

DIGIPOT, CMOS


MCP4151-104E/MF

IC DGTL POT 100KOHM 257TAP 8DFN


MCP4251T-103E/ML

IC DGTL POT 10KOHM 257TAP 16QFN


MCP4541T-502E/MS

IC DGTL POT 5KOHM 129TAP 8MSOP


CAT5401WI-00-T1

IC DGTL POT 100KOHM 64TAP 24SOIC


MAX5415EUD+T

IC DGT POT 100KOHM 256TP 14TSSOP


CAT5132ZI-10-G

IC POT DGTL 10K 128-TAP 10MSOP


X9C503ST1

DIGIPOT, 50000OHM, 100 PSTN


MCP4341T-503E/ML

IC DGTL POT 50KOHM 129TAP 20QFN


X9314WSZ-3T1

IC DGTL POT 10KOHM 32TAP 8SOIC


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