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MCP4011-103E/SN
+StücklisteIC DGTL POT 10KOHM 64TAP 8SOIC
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HerstellerMikrochip-Technologie
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Herstellerteil #MCP4011-103E/SN
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Datenblatt MCP4011-103E/SN DataSheet
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Auf Lager9357
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Spezifikationen
| Attribut | Wert |
| PartStatus | Active |
| DigiKeyProgrammable | Not Verified |
| Taper | Linear |
| Configuration | Potentiometer |
| NumberofCircuits | 1 |
| NumberofTaps | 64 |
| Resistance(Ohms) | 10k |
| Interface | Up/Down (U/D, CS) |
| MemoryType | Volatile |
| Voltage-Supply | 1.8V ~ 5.5V |
| Tolerance | ±20% |
| TemperatureCoefficient(Typ) | 150ppm/°C |
| MountingType | Surface Mount |
| SupplierDevicePackage | 8-SOIC |
| Package/Case | 8-SOIC (0.154", 3.90mm Width) |
| OperatingTemperature | -40°C ~ 125°C |
| Resistance-Wiper(Ohms)(Typ) | 70 |
| BaseProductNumber | MCP4011 |
Übersicht
Description
Key specifications include a supply voltage range of 2.7V to 5.5V, low power consumption, and a temperature range suitable for various environments. The MCP4011-103E/SN is ideal for applications such as tone control, volume adjustment, and calibration in audio equipment, industrial controls, and sensor applications. Its non-volatile EEPROM ensures that resistance settings are retained even when powered off. Overall, this digital potentiometer offers flexibility and precision in resistance control for modern electronic designs.
Equivalent
Features
1. Resistance Value: Offers a total resistance of 10 kΩ.
2. Digital Control: Adjusts resistance via an I2C-compatible interface, allowing for precise digital control of resistance.
3. Non-volatile Memory: Includes EEPROM to store the last wiper position, ensuring settings are retained after power loss.
4. Wiper Configuration: Supports a single-ended configuration with a single wiper terminal.
5. Taps: Provides 256 discrete wiper positions for fine control.
6. Power Supply: Operates on a supply voltage range of 2.7V to 5.5V.
7. Operating Temperature: Suitable for industrial applications, with an extended temperature range from -40°C to +125°C.
8. Low Power Consumption: Designed for low power usage, enhancing battery life in portable applications.
9. Compact Package: Available in a small form factor, making it suitable for space-constrained designs.
This combination of features makes the MCP4011-103E/SN ideal for signal conditioning, volume control, and other applications requiring adjustable resistance.
Pinout
1. VDD (Pin 1): Power supply pin (operating voltage).
2. VSS (Pin 2): Ground reference.
3. SDA (Pin 3): Serial Data Input/Output for I²C communication.
4. SCL (Pin 4): Serial Clock Input for I²C communication.
5. Wiper (Pin 5): The adjustable output that provides resistance based on the wiper position.
6. A (Pin 6): One terminal of the potentiometer.
7. B (Pin 7): The other terminal of the potentiometer.
8. NC (Pin 8): Not connected.
The MCP4011-103E/SN is a 10kΩ digital potentiometer designed for applications such as volume control, tone control, and adjustable gain circuits. It can be controlled through I²C, allowing for easy integration into digital systems.
Manufacturer
Microchip focuses on providing high-quality components and tools for circuit designers and engineers, enabling them to create energy-efficient and cost-effective solutions. Its offerings include microcontrollers, digital signal controllers, and a variety of analog and interface products, such as potentiometers and programmable gain amplifiers.
Microchip is recognized for its commitment to innovation, customer support, and a strong emphasis on reliability in its products, making it a key player in the semiconductor industry.
Application
1. Audio Equipment: For volume control and tone adjustments.
2. Sensor Calibration: To fine-tune sensor readings in measurement systems.
3. Signal Conditioning: Adjusting gain in analog circuits.
4. Embedded Systems: In microcontroller-based applications for setting variable resistance.
5. Home Automation: For controlling lighting and motor speeds.
6. Industrial Controls: In process control systems to adjust parameters remotely.
Its digital interface allows for easy integration and precise adjustments in electronic designs.