X9317US8IZ Allicdata Electronics
Allicdata Part #:

X9317US8IZ-ND

Manufacturer Part#:

X9317US8IZ

Price: $ 2.84
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intersil
Short Description: IC XDCP 100TAP 50K 3-WIRE 8-SOIC
More Detail: Digital Potentiometer 50k Ohm 1 Circuit 100 Taps U...
DataSheet: X9317US8IZ datasheetX9317US8IZ Datasheet/PDF
Quantity: 1000
800 +: $ 2.58313
Stock 1000Can Ship Immediately
$ 2.84
Specifications
Memory Type: Non-Volatile
Base Part Number: X9317
Supplier Device Package: 8-SOIC
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Operating Temperature: -40°C ~ 85°C
Resistance - Wiper (Ohms) (Typ): 200
Temperature Coefficient (Typ): ±300 ppm/°C
Tolerance: ±20%
Features: --
Voltage - Supply: 5V
Series: XDCP™
Interface: Up/Down (U/D, INC, CS)
Resistance (Ohms): 50k
Number of Taps: 100
Number of Circuits: 1
Configuration: Potentiometer
Taper: Linear
Part Status: Active
Packaging: Tube 
Description

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Data acquisition plays an important role in today’s industrial world, in a range of applications spanning from biotechnology to aerospace. Digital potentiometers are an essential component of data acquisition systems and are used to measure the voltage or current from one or more channels. The X9317US8IZ is a particularly interesting digital potentiometer for data acquisition, as it combines advanced features with reliable performance, and a reasonable cost. In this article, we will look at the working principle of the X9317US8IZ, as well as its potential applications in a range of industries.

The X9317US8IZ digital potentiometer is a highly sophisticated digital board that fulfills all the requirements of a valuable data acquisition system. Using advanced methods such as track and hold, it is able to measure in both a proportional and differential format. To ensure accuracy and reliability, the X9317US8IZ features an advanced calibration process that enables the user to measure and store the voltage or current within multiple parameters in order to better adjust the device for various tasks and conditions. Furthermore, the X9317US8IZ features a unique noise-isolated design, which allows it to record even the smallest of signals while producing minimal amount of noise.

It is this advanced feature set that makes the X9317US8IZ a popular choice in various industries. In medical and biotechnology applications, the device can be used to measure the electrical activity of the heart or brain. The advanced noise-isolated design of the X9317US8IZ ensures accurate and reliable readings. In aerospace engineering, the device can be used to measure and monitor aircraft performance, as well as vibration, temperature and pressure. The device is also ideal for industrial applications, such as robotic arms, soldering and welding machines, where precise electrical measurements are required. Additionally, the X9317US8IZ can be used in other areas, such as automotive testing and product development.

As for the working principle of the X9317US8IZ, it utilizes a tracking-and-holding technique, which allows it to measure both proportional and differential voltages. The device features a multi-channel input, to which multiple sensor signals can be connected. These inputs are then amplified and compared against one another, and the difference between them is then measured. The signals are then filtered and amplified to produce an output signal that contains the differences between the two inputs, the amplified differences forming the X9317US8IZ’s output. This output can then be analyzed by an external processor or device to determine the input values.

In summary, the X9317US8IZ is a digital potentiometer specifically designed for data acquisition. It is able to measure and record voltage or current parameters within multiple parameters and records the data accurately and reliably. Furthermore, the device has advanced noise-isolated features, making it ideal for medical, biotechnology, aerospace and industrial applications where precise recordings are needed. The X9317US8IZ utilizes a tracking-and-holding techniques, which allows it to measure both proportional and differential voltages, producing an output signal that contains the differences between the two inputs.

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

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