RF064PJ434CS Allicdata Electronics
Allicdata Part #:

RF064PJ434CS-ND

Manufacturer Part#:

RF064PJ434CS

Price: $ 0.01
Product Category:

Resistors

Manufacturer: Samsung Electro-Mechanics
Short Description: RESISTOR ARRAY FLAT TERMINAL 0
More Detail: 430k Ohm ±5% 31.25mW Power Per Element Isolated 4 ...
DataSheet: RF064PJ434CS datasheetRF064PJ434CS Datasheet/PDF
Quantity: 1000
200000 +: $ 0.01116
Stock 1000Can Ship Immediately
$ 0.01
Specifications
Series: RF
Part Status: Active
Circuit Type: Isolated
Resistance (Ohms): 430k
Tolerance: ±5%
Number of Resistors: 4
Resistor Matching Ratio: --
Resistor-Ratio-Drift: --
Number of Pins: 8
Power Per Element: 31.25mW
Temperature Coefficient: ±200ppm/°C
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 and the RF064PJ434CS are a way of creating electrical connections and resistance paths for use in a variety of circuits. They are also used to help reduce the resistance and power consumption of the circuits they are used in, making them ideal for applications that rely on low-power consumption or require resistance to be varied. To understand the applications and working principle of the RF064PJ434CS we need to look at its composition and design.

The RF064PJ434CS is a chip-sized network of resistors that includes nine closely spaced metal contacts and a single output terminal. The resistors are arranged in a two-dimensional array with terminals that are located to the right and left as well as the top and bottom of the chip. Each of these resistors produces a certain amount of power that can be then routed to power circuits or used as a way to reduce the resistance of the circuit as a whole.

The RF064PJ434CS can be used in a variety of applications. For example, the chip can be used as a voltage divider in an amplifier circuit in order to produce a clean signal or act as a potentiometer to control the output voltage in a power supply. It can also be used in device protection circuits to limit the amount of current flowing through the device or protect from electrostatic discharge. Furthermore, the device can also be used in a wide range of analog and digital circuits as part of transistor switching functions.

At its core, the RF064PJ434CS is based on the concept of resistance networks and arrays. By using multiple closely-spaced resistors, a single output terminal can be used to create a wide array of resistance values for a variety of applications. This is achieved by linking the resistors together in a number of different ways, such as by connecting them in parallel, in series, or in a combination of both. The total resistance of the chip can also be varied by adjusting the values of the individual resistors within the circuit. This allows for fine deviations in the total resistance which can be designed to suit a variety of applications.

In addition, the RF064PJ434CS utilizes a low-power silicon technology that is compatible with modern CMOS digital logic circuits. This allows for the design of low-voltage circuits that can draw a significant amount of power without compromising the performance of the chip. Additionally, this integrated technology also helps to reduce the size and complexity of the chip, which can be beneficial in a variety of applications that require space efficiency or weight reduction.

As a result, it is clear to see that the RF064PJ434CS is an excellent choice for many applications. It can be used to control the resistance of an analog circuit, provide device protection functions, and even reduce the power consumption of the overall circuit. Furthermore, its integrated resistors provide a wide range of resistances that can be tailored to the specific needs of the circuit, allowing for efficient, reliable, and long-lasting operation.

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

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