RF064PJ000CS Allicdata Electronics
Allicdata Part #:

RF064PJ000CS-ND

Manufacturer Part#:

RF064PJ000CS

Price: $ 0.01
Product Category:

Resistors

Manufacturer: Samsung Electro-Mechanics
Short Description: RESISTOR ARRAY FLAT TERMINAL 0
More Detail: Ohm Jumper 31.25mW Power Per Element Isolated 4 Re...
DataSheet: RF064PJ000CS datasheetRF064PJ000CS Datasheet/PDF
Quantity: 1000
200000 +: $ 0.01116
Stock 1000Can Ship Immediately
$ 0.01
Specifications
Series: RF
Part Status: Active
Circuit Type: Isolated
Tolerance: Jumper
Number of Resistors: 4
Resistor Matching Ratio: --
Resistor-Ratio-Drift: --
Number of Pins: 8
Power Per Element: 31.25mW
Temperature Coefficient: --
Operating Temperature: -55°C ~ 125°C
Applications: --
Mounting Type: Surface Mount
Package / Case: 0502 (1406 Metric), Long Side Terminals
Supplier Device Package: 0603
Size / Dimension: 0.055" L x 0.024" W (1.40mm x 0.60mm)
Height - Seated (Max): 0.013" (0.33mm)
Description

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Resistor Networks, Arrays are electrical components composed of multiple resistors, which perform tasks such as limiting current, dividing voltage, and providing feedback in an electronic circuit. One of the most common resistor networks is RF064PJ000CS, which is often used for high-speed signal and power distribution applications. In this article, we will explore the application fields and working principle of RF064PJ000CS resistor networks.

Application Field

RF064PJ000CS resistor networks are designed to be highly flexible, providing excellent performance in applications such as high-frequency signal distribution, voltage division, current limiting, phase compensation, and power delivery. These applications are found in a variety of settings, including automotive, commercial, and military electronics, making RF064PJ000CS resistor networks a popular choice for system designers in a wide range of industries.

One of the most common applications of RF064PJ000CS resistor networks is voltage division, where a resistor network is used to reduce a signal\'s amplitude by dividing its voltage. This can be done using either two or more resistors in parallel or series, depending on the desired outcome. For example, in an audio system, the amplifier\'s output voltage can be reduced by coupling a series of resistors to its output, which will help to reduce distortion.

Another application of RF064PJ000CS resistor networks is current limiting, where a resistor network is used to reduce a signal\'s amplitude and the current delivered to it. This is typically done by connecting one or more resistors in parallel, with the resistance carefully chosen to ensure the current limit is not exceeded. Current limiting is often used in power supply circuits, such as personal computers, where it is used to prevent the power supply from delivering too much current and potentially damaging the system.

RF064PJ000CS resistor networks are also widely used in phase compensation applications, where they are used to adjust the phase of a signal to match the phase of an external signal. This is typically done by connecting one or more resistors in parallel, which will cause the phase of the signal to shift. Phase compensation is often used in audio systems, where it can help to reduce distortion and improve sound quality.

Finally, RF064PJ000CS resistor networks are also used for power delivery applications. Here, the resistor network is used to deliver and distribute power to different components and devices. This is typically done by connecting the resistor network between the power supply and the components, with the resistance chosen carefully to ensure the maximum current is delivered.

Working Principle

The working principle of RF064PJ000CS resistor networks is relatively simple. The resistor network consists of multiple resistors connected in either parallel or series, depending on the type of application. These resistors are carefully chosen to provide the desired characteristics, such as a specific voltage or current limit.

In voltage division applications, a series of resistors are connected in series to reduce the output voltage of the signal. The size of the resistors will determine the amount of reduction in the signal\'s voltage, with larger resistors providing a greater voltage reduction.

In current limiting applications, one or more resistors are connected in parallel to limit the current delivered to the signal. The resistance of the resistor or resistors is carefully chosen to ensure the current limit is not exceeded.

For phase compensation applications, one or more resistors are connected in parallel to shift the phase of the signal. This is typically done by connecting the resistor in between the signal source and the signal recipient. The size of the resistor will determine the amount of phase shift, with larger resistors providing greater phase shift.

Finally, in power delivery applications, the resistor network is connected between the power supply and the components. Here, the resistor network is used to deliver and distribute power to the components, with the resistance chosen carefully to ensure the maximum current is delivered.

Conclusion

In conclusion, RF064PJ000CS resistor networks are one of the most common resistor networks on the market, offering high performance and flexibility in a wide variety of applications. These applications include voltage division, current limiting, phase compensation, and power delivery, making them a popular choice for system designers in a variety of industries. The working principle of RF064PJ000CS resistor networks is fairly straightforward, relying on a series or parallel combination of resistors to achieve the desired characteristics.

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

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