MCP45HV51T-103E/MQ Allicdata Electronics
Allicdata Part #:

MCP45HV51T-103E/MQ-ND

Manufacturer Part#:

MCP45HV51T-103E/MQ

Price: $ 0.81
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microchip Technology
Short Description: IC DGTL POT 10K
More Detail: Digital Potentiometer 10k Ohm 1 Circuit 256 Taps I...
DataSheet: MCP45HV51T-103E/MQ datasheetMCP45HV51T-103E/MQ Datasheet/PDF
Quantity: 1000
3300 +: $ 0.73975
Stock 1000Can Ship Immediately
$ 0.81
Specifications
Memory Type: Volatile
Base Part Number: MCP45HV51
Supplier Device Package: 20-QFN (5x5)
Package / Case: 20-VQFN Exposed Pad
Operating Temperature: -40°C ~ 125°C
Resistance - Wiper (Ohms) (Typ): 145
Temperature Coefficient (Typ): 100 ppm/°C
Tolerance: ±20%
Features: Mute, Selectable Address
Voltage - Supply: 1.8 V ~ 5.5 V, 10 V ~ 36 V, ±5V ~ 18 V
Series: --
Interface: I²C
Resistance (Ohms): 10k
Number of Taps: 256
Number of Circuits: 1
Configuration: Potentiometer
Taper: Linear
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Data acquisition systems are used for many applications. One of the most commonly used components of a data acquisition system is the digital potentiometer or MCP45HV51T-103E/MQ. This type of potentiometer is capable of producing a number of different outputs, and is one of the most versatile components within the data acquisition system.

The MCP45HV51T-103E/MQ is a digital potentiometer that utilizes a memory cell array and a linear-to-linear voltage transfer function to determine the output voltage. This means that it is capable of producing a wide range of linear outputs, with a wide range of accuracy, precision, and resolution. The output voltage can be programmed to a specific voltage in order to achieve the desired range. The linear-to-linear transfer function also makes it easier to program the output voltage, as it uses a incremental voltage change to program the output voltage.

The MCP45HV51T-103E/MQ is available in both eight-bit and sixteen-bit resolution versions. The eight-bit resolution version is designed for applications that require a high level of accuracy, whereas the sixteen-bit version is designed for applications that require higher resolution and accuracy. The digital potentiometer is typically used in two-wire digital systems, and its outputs can be controlled either by a host processor through an I2C or SPI interface, or directly through a programmed resistance divider network.

The MCP45HV51T-103E/MQ digital potentiometer is primarily used in applications where precise and accurate voltage control is needed. It can be used in a variety of different applications, such as automotive, industrial, medical, communications, electronics, aerospace, and many more. Examples of applications where the MCP45HV51T-103E/MQ can be used are motor speed control, motor power control, battery charging, solar energy systems, telecommunications, and connected device control.

The working principle of the MCP45HV51T-103E/MQ digital potentiometer is quite straightforward. It utilizes a series of memory cells in order to store a value, and a linear-to-linear voltage transfer function to determine the output voltage. When a voltage is applied to the memory cells, the linear-to-linear voltage transfer function is used to calculate the output voltage, which can then be programmed to a specific voltage. This makes the MCP45HV51T-103E/MQ one of the most versatile and precise digital potentiometers available on the market.

Overall, the MCP45HV51T-103E/MQ digital potentiometer is an excellent choice for a wide range of applications. It is capable of producing a wide range of linear outputs, and can be programmed to a specific voltage. Its linear-to-linear transfer function makes it easy to program the output voltage, and its eight-bit and sixteen-bit resolution versions provide a high level of accuracy and resolution. The MCP45HV51T-103E/MQ is an excellent choice for applications that require precise and accurate control of a range of output voltages.

The specific data is subject to PDF, and the above content is for reference

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