Microchip MCP42010-E/P Digital Potentiometer 256-Position 10 kΩ Linear 2-Channel 14-Pin PDIP-14

Subtotal (1 box of 120 units)*

PHP25,894.92

(exc. VAT)

PHP29,002.32

(inc. VAT)

Add to Basket
Select or type quantity
Temporarily out of stock
  • Shipping from April 08, 2026
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units
Per Unit
Per Box*
120 +PHP215.791PHP25,894.92

*price indicative

RS Stock No.:
598-262
Mfr. Part No.:
MCP42010-E/P
Manufacturer:
Microchip
Find similar products by selecting one or more attributes.
Select all

Brand

Microchip

Product Type

Digital Potentiometer

Number of Positions

256

Resistance

10kΩ

Taper Type

Linear

Memory Type

Volatile

Temperature Coefficient

5 ppm/°C

Number of Pots per Package

2

Interface Type

3 Wire

Mount Type

Through Hole

Package Type

PDIP-14

Pin Count

14

Minimum Supply Voltage

2.7V

Maximum Supply Voltage

5.5V

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

125°C

Standards/Approvals

RoHS

Width

6.35 mm

Height

3.3mm

Length

19.3mm

Series

MCP42010

Automotive Standard

No

COO (Country of Origin):
TH
The Microchip Digital potentiometer offers a unique solution for precise control, catering specifically to engineers and designers seeking reliable and versatile components. With its ability to provide an adjustable resistance, it enhances product performance while simultaneously reducing design complexity. The integrated SPI interface allows for easy communication with microcontrollers, making it an ideal choice for applications where space and efficiency are paramount. This product empowers users to create sophisticated designs with seamless functionality, ensuring they can meet evolving demands without compromising quality.

Supports a wide resistance range for flexibility in applications

Integrated EEPROM allows for non volatile data storage

Low power consumption ensures efficient operation and battery longevity

Compact size makes it easy to integrate into space constrained designs

High speed digital communication via the SPI interface optimises performance

Related links