Allicdata Part #: | X9313UMI-3-ND |
Manufacturer Part#: |
X9313UMI-3 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Intersil |
Short Description: | IC XDCP 32-TAP 50K 3-WIRE 8-MSOP |
More Detail: | Digital Potentiometer 50k Ohm 1 Circuit 32 Taps Up... |
DataSheet: | X9313UMI-3 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Memory Type: | Non-Volatile |
Base Part Number: | X9313 |
Supplier Device Package: | 8-MSOP |
Package / Case: | 8-TSSOP, 8-MSOP (0.118", 3.00mm Width) |
Operating Temperature: | -40°C ~ 85°C |
Resistance - Wiper (Ohms) (Typ): | 40 |
Temperature Coefficient (Typ): | ±300 ppm/°C |
Tolerance: | ±20% |
Features: | -- |
Voltage - Supply: | 3 V ~ 5.5 V |
Series: | XDCP™ |
Interface: | Up/Down (U/D, INC, CS) |
Resistance (Ohms): | 50k |
Number of Taps: | 32 |
Number of Circuits: | 1 |
Configuration: | Potentiometer |
Taper: | Linear |
Part Status: | Obsolete |
Packaging: | Tube |
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Data Acquisition - Digital Potentiometers are one of the most widely used analytical tools for obtaining information about a range of applications. The X9313UMI-3 is a digital potentiometer which is used to measure and precisely control the electrical resistance of a circuit. It is an 8-bit potentiometer with a range that can measure from 0 to 127, and an adjustable resistance that can be changed from 10 Ω to 95 kΩ in incremental steps.
The X9313UMI-3 is mainly used for temperature and pressure measurement in industrial applications, including air and water quality monitoring devices, pollution control systems, and other mechanical systems. In addition, it also provides feedback control of heated elements, power controllers, amplifiers, and other systems that require accurate and reliable data acquisition. Furthermore, the X9313UMI-3 can be used as a digital potentiometer for adjusting the voltage or current levels of electrical circuits in medical, laboratory, and other sensitive applications.
The working principle of the X9313UMI-3 digital potentiometer is based on the use of a voltage divider circuit. A voltage divider circuit is one in which two resistors are connected in series to form a "V". When a voltage is applied to the input terminals of the voltage divider, the output voltage is a fraction of the input voltage. The output voltage can be calculated using Ohm\'s law. By adjusting the values of the two resistors in the voltage divider, the output voltage can be regulated.
The X9313UMI-3 utilizes this principle by using a series of resistors connected in series. A stationary reference voltage is applied to the input terminals of the circuit. The resistance values of the resistors in the circuit can be changed to influence the voltage at the output terminal. By adjusting the resistance in the circuit, the reference voltage is divided into smaller increments, resulting in an output voltage that is controlled. The output voltage can range from 0 to 127, and the adjustable resistance can be changed from 10 Ω to 95 kΩ in incremental steps.
The X9313UMI-3 can be used for data acquisition in numerous applications. It is used to measure temperature, pressure, and other environmental parameters, to adjust the voltage and current levels of circuits, and to provide feedback control in electrically heated elements, power controllers, and amplifiers. Its ability to precisely control the electrical resistance of a circuit makes it suitable for several industrial and scientific applications. In addition, its ability to provide accurate and reliable data makes it invaluable to numerous research and development operations.
The X9313UMI-3 is an ideal choice for anyone requiring accurate and reliable data acquisition. It offers great performance and reliability, making it suitable for a range of applications. The adjustable resistance and precise control of the output voltage enable it to be used in a variety of different applications, making it one of the most versatile digital potentiometers available.
The specific data is subject to PDF, and the above content is for reference
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X9313UM-3 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UM-3T1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UM-3T2 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UMI-3 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UMI-3T1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UMIT1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UMT1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UP | Intersil | -- | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UP-3 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UPI | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313US-3 | Intersil | -- | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313US-3T1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313US-3T2 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313USIT1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313USM | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UST1 | Intersil | -- | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313UST2 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 50K 3-WIRE... |
X9313WM | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WM-3 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WM-3T1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WM-3T2 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WMI | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
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X9313WMI-3T1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WMIT1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
X9313WMT1 | Intersil | 0.0 $ | 1000 | IC XDCP 32-TAP 10K 3-WIRE... |
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