X9317US8-2.7T1 Allicdata Electronics
Allicdata Part #:

X9317US8-2.7T1-ND

Manufacturer Part#:

X9317US8-2.7T1

Price: $ 0.00
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: X9317US8-2.7T1 datasheetX9317US8-2.7T1 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
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: 0°C ~ 70°C
Resistance - Wiper (Ohms) (Typ): 400
Temperature Coefficient (Typ): ±300 ppm/°C
Tolerance: ±20%
Features: --
Voltage - Supply: 2.7 V ~ 5.5 V
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Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Data Acquisition - Digital Potentiometers encompasses a wide range of devices which are used in applications to control either analog or digital signals. The X9317US8-2.7T1 is an integrated circuit used in many different types of data acquisition applications. This device is particularly suited for controlling digital signals, and it is ideal for the development of both analog and digital control systems.

The X9317US8-2.7T1 is an integrated circuit comprised of several components, including a digital potentiometer, a control register, an adjustable reference, and an analog-to-digital (AD) converter. The digital potentiometer is responsible for controlling an adjustable output voltage, while the control register provides a way to read the potentiometer\'s current output level. The adjustable reference allows the voltage at the potentiometer\'s input pin to be adjusted, while the AD converter is used to convert the analog input signal into a digital signal.

The X9317US8-2.7T1 is a low-cost, low-power integrated circuit, which makes it ideal for use in data acquisition applications in which power consumption is a factor. This device is extremely versatile and can be used in a variety of applications, including direct digital synthesis (DDS) and multi-channel instrumentation systems. Moreover, it is used in many medical and automotive applications, as well as in robotics and home automation applications.

In terms of its working principle, the X9317US8-2.7T1 is used to convert an input voltage into a digital equivalent voltage (Vd). This process is accomplished through a series of operations which include analog-to-digital conversion, digital filtering, and digital gain control. By adjusting the gain control, either analog or digital signals can be produced from the input.

The X9317US8-2.7T1 also features a digital potentiometer, which is used to control the gain of the device and adjust the output level. By using a digital potentiometer, the device can provide a resolution to three decimal places, which is very high for digital potentiometers. This level of precision is highly beneficial in instrumentation applications and can be used to precisely control the voltage in electronic systems.

The X9317US8-2.7T1 also features an adjustable reference, which is used to control the voltage applied to the input pin of the device. This provides a means to adjust the device for higher accuracy and can be used to calibrate the device for improved performance. Furthermore, the integrated circuit also includes a voltage monitor which alerts the user if the input voltage exceeds the limits of the device.

Finally, the X9317US8-2.7T1 includes a number of other features which make it an ideal choice for data acquisition applications. It includes a wide operating temperature range, low power consumption, and a high level of integration for system level designs. Moreover, it is compatible with popular electrical interfaces such SPI and I2C, making it an ideal choice for building communications-centric designs.

In summary, the X9317US8-2.7T1 is a versatile integrated circuit which is used in many different types of data acquisition applications. It is particularly well-suited for controlling digital signals and provides a high level of accuracy and precision. Moreover, the device includes many features which make it ideal for applications such as direct digital synthesis, instrumentation systems, medical applications, automotive applications, and robotics.

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

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