TPL0501 100K Digital Potentiometer Module (256-Step SPI)
- 🎚️ TPL0501 digital potentiometer module (100KΩ)
- 🔢 256-step resolution for precise resistance control
- 🚌 SPI interface for easy microcontroller control
- ⚡ Fast, repeatable adjustments—no mechanical wear
- 🧩 Ideal for gain/volume tuning, threshold setting, calibration
- 🔌 Works great with Arduino, ESP32, STM32, Raspberry Pi
- 🛠️ Simple wiring: VCC, GND, SCK, MOSI, CS
- 📦 Compact module for prototyping and embedded projects
250,00 EGP
In stock
In stock
Payment Methods:
Description
Description:
The TPL0501 100K Digital Potentiometer Module is a precision 256-step digitally controlled resistor, perfect for adjusting voltage, signal gain, or contrast in electronic circuits. Controlled via SPI interface, it allows for accurate and repeatable resistance adjustments without mechanical wear, making it ideal for Arduino, Raspberry Pi, and other microcontroller projects.
Specifications:
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Potentiometer Type: Digital (256-step)
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Resistance: 100 KΩ
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Interface: SPI
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Supply Voltage: 3.3V–5V
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Step Resolution: 256 steps (8-bit)
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Temperature Range: -40°C to 125°C
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Package Type: Module with pins for easy breadboard connection
Short Features:
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100KΩ digitally controlled potentiometer
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256-step high-resolution adjustment
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SPI interface for precise digital control
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Compact module, easy to integrate in projects
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Wide voltage range: 3.3V–5V
Package Includes:
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1 × TPL0501 100K Digital Potentiometer Module
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1 × Pin Header (if not pre-soldered)
Specification
General
| Weight Weight | 0,004 g |
|---|---|
Dimensions
|
2,5 × 2 × 0,3 mm |
| Product Name |
TPL0501 100K Digital Potentiometer Module (256-Step SPI) |
| IC Type |
Digital Potentiometer |
| Resistance Value |
100 kΩ |
| Resolution |
256 Steps (8-Bit) |
| Interface |
SPI |
| Operating Voltage |
2.7V – 5.5V |
| Wiper Resistance |
Low |
| Non-Volatile Memory |
No |
| End-to-End Resistance Tolerance |
±20% |
| Operating Temperature |
-40°C to +85°C |
| Response Time |
Fast |
| Application |
Signal Adjustment, Gain Control, Calibration, Embedded Systems |
