X93254UV14I-3 Allicdata Electronics
Allicdata Part #:

X93254UV14I-3-ND

Manufacturer Part#:

X93254UV14I-3

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intersil
Short Description: IC DCP DUAL 50K 32TAP 14-TSSOP
More Detail: Digital Potentiometer 50k Ohm 2 Circuit 32 Taps Up...
DataSheet: X93254UV14I-3 datasheetX93254UV14I-3 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Memory Type: Non-Volatile
Base Part Number: X93254
Supplier Device Package: 14-TSSOP
Package / Case: 14-TSSOP (0.173", 4.40mm Width)
Operating Temperature: -40°C ~ 85°C
Resistance - Wiper (Ohms) (Typ): 1000
Temperature Coefficient (Typ): ±35 ppm/°C
Tolerance: ±30%
Features: --
Voltage - Supply: 2.7 V ~ 3.3 V
Series: XDCP™
Interface: Up/Down (U/D, CS)
Resistance (Ohms): 50k
Number of Taps: 32
Number of Circuits: 2
Configuration: Potentiometer
Taper: Linear
Part Status: Obsolete
Packaging: Tube 
Description

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Data Acquisition - Digital Potentiometers

The X93254UV14I-3 Digital Potentiometer is a nanometer-scale, single-ended digital potentiometer. By utilizing a linear array of nanometer-scale resistors, the X93254UV14I-3 is able to measure and control potentiometer elements up to 100mm in length. This makes it ideal for measuring and controlling systems requiring precision sensing and control of potentiometer elements.

The X93254UV14I-3 Digital Potentiometer is a highly integrated, single-ended device with a package size of 8 mm x 8 mm. It interfaces with a wide range of microcontrollers, including the common I/O bus and microcontroller boards. The X93254UV14I-3 Digital Potentiometer has a built-in 12-bit analog-to-digital converter, allowing for accurate readings and a wide range of adjustment. The built-in control loop circuitry allows for small step current control for accurate sensing.

The X93254UV14I-3 Digital Potentiometer features a maximum output voltage of 5 volts, a minimum input voltage of 3 volts, and a full-scale resolution of 14 bits. The device is also capable of providing feedback to the controller or microcontroller board. It also features a programmable end point which is used to set the desired output voltage level. Additionally, the X93254UV14I-3 has an adjustable resistor taper, allowing the user to customize the response of the device to different input signals.

The X93254UV14I-3 Digital Potentiometer is most commonly used in digital systems that require a precise, repeated adjustment of input/output signals. Applications include: electric motor control, industrial process control, audio mixing, medical imaging, and biometric systems. The X93254UV14I-3 is also used in measuring and controlling the current of automotive systems, as well as telecommunications and avionics.

The working principle of the X93254UV14I-3 Digital Potentiometer is based on a linear array of nanometer-scale resistors. This array consists of a series of switched resistors, connected between two terminals. When a voltage is applied to the resistance, it changes the resistance of the array, creating a proportional amount of current in the terminals. This current is then used to control the resistance, allowing for a precise and repeatable output.

The power source provides the power and voltage to the X93254UV14I-3, which then converts the voltage into a digital format that is then read by the controller or microcontroller board. The output voltage is then transmitted to the terminal or connector, providing a precise and repeatable adjustment of voltage or current. The X93254UV14I-3 is capable of providing feedback to the controller or microcontroller, allowing for more accurate and efficient regulation of voltage and current.

In summary, the X93254UV14I-3 Digital Potentiometer is a highly integrated, single-ended device that is able to measure and control potentiometer elements up to 100mm in length. It is designed to interface with a wide range of microcontrollers and utilizes a linear array of nanometer-scale resistors for precise measurement and control. The X93254UV14I-3 is most commonly used in digital systems that require precise and repeatable adjustment of input/output signals and is suited for a wide range of applications, including automotive, audio mixing, and telecommunications.

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

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